JP3230061U - Trough support - Google Patents

Trough support Download PDF

Info

Publication number
JP3230061U
JP3230061U JP2020004526U JP2020004526U JP3230061U JP 3230061 U JP3230061 U JP 3230061U JP 2020004526 U JP2020004526 U JP 2020004526U JP 2020004526 U JP2020004526 U JP 2020004526U JP 3230061 U JP3230061 U JP 3230061U
Authority
JP
Japan
Prior art keywords
trough
support
shaft
pile
horizontal frame
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
JP2020004526U
Other languages
Japanese (ja)
Inventor
誠治 君岡
誠治 君岡
Original Assignee
誠治 君岡
誠治 君岡
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 誠治 君岡, 誠治 君岡 filed Critical 誠治 君岡
Priority to JP2020004526U priority Critical patent/JP3230061U/en
Application granted granted Critical
Publication of JP3230061U publication Critical patent/JP3230061U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Laying Of Electric Cables Or Lines Outside (AREA)

Abstract

【課題】ケーブルトラフを載置する枠体及びトラフ支持体の高さ位置、及び傾斜位置を調整できるトラフ支持器具を提供する。【解決手段】枠体、水平枠材15に平行に配置されて枠体に固定される回動支持軸体2、左側の垂直枠材16A、Bに固定されてトラフ敷設箇所に打込んだ支持杭に外嵌される杭嵌込み筒体3と、杭嵌込み筒体を支持杭に固定する筒体固定具43、44、51、52と、回動支持軸体に回動自在に配置されてケーブルトラフを載置するトラフ支持体63、64と、トラフ支持体を回動支持軸体に固定する支持体固定具70、79、80と、ケーブルトラフをトラフ支持体に固定するトラフ固定具83〜86と、水平枠材と直交方向に移動自在に水平枠材を貫通するネジ脚101と、ネジ脚の調整ネジ軸105に螺着されて、ネジ脚を水平枠材に固定する上側及び下側ナット102、104を備える。【選択図】図7PROBLEM TO BE SOLVED: To provide a trough support device capable of adjusting a height position and an inclination position of a frame body on which a cable trough is placed and a trough support. SOLUTION: A rotating support shaft body 2 arranged in parallel with a frame body and a horizontal frame member 15 and fixed to the frame body, and a support fixed to vertical frame members 16A and B on the left side and driven into a trough laying place. The pile fitting cylinder 3 externally fitted to the pile, the cylinder fixtures 43, 44, 51, 52 for fixing the pile fitting cylinder to the support pile, and the rotating support shaft are rotatably arranged. Trough supports 63, 64 on which the cable trough is placed, support fixtures 70, 79, 80 for fixing the trough support to the rotary support shaft, and trough fixtures for fixing the cable trough to the trough support. 83 to 86, a screw leg 101 that movably penetrates the horizontal frame material in a direction orthogonal to the horizontal frame material, and an upper side that is screwed to the adjusting screw shaft 105 of the screw leg to fix the screw leg to the horizontal frame material. The lower nuts 102 and 104 are provided. [Selection diagram] FIG. 7

Description

本考案は、ケーブルトラフを敷設するために使用するトラフ支持器具に関する。 The present invention relates to a trough support device used for laying a cable trough.

ケーブルトラフを敷設する技術として、特許文献1は、トラフ支持構造を開示する。トラフ支持構造は、複数のトラフ支持杭、及びトラフ支持台を備える。各トラフ支持杭は、外周に羽根を有するスクリュー状に形成される。トラフ支持構造において、各トラフ支持杭は、相互に間隔を隔てて配置されて、回転されて地中に差込まれる。トラフ支持台は、各トラフ支持杭に架設される。トラフ支持構造は、ケーブルトラフをトラフ支持台上に配置して敷設する。 As a technique for laying a cable trough, Patent Document 1 discloses a trough support structure. The trough support structure includes a plurality of trough support piles and a trough support base. Each trough support pile is formed in a screw shape having blades on the outer circumference. In the trough support structure, the trough support piles are spaced apart from each other and rotated to be inserted into the ground. The trough support is erected on each trough support pile. The trough support structure is laid by arranging the cable trough on the trough support base.

特開2001−95137号公報Japanese Unexamined Patent Publication No. 2001-95137

特許文献1のトラフ支持構造は、トラフ支持台の高さ位置、及びトラフ支持台の傾斜を調整する機構がなく、傾斜等するトラフ敷設箇所に応じてケーブルトラフを敷設するのに時間を要する。 The trough support structure of Patent Document 1 does not have a mechanism for adjusting the height position of the trough support and the inclination of the trough support, and it takes time to lay the cable trough according to the trough laying location such as inclination.

本考案は、ケーブルトラフを載置するトラフ支持体及び枠体の高さ位置を調整でき、及びトラフ支持体の傾斜位置を調整できるトラフ支持器具を提供することにある。 The present invention is to provide a trough support device capable of adjusting the height position of a trough support and a frame on which a cable trough is placed, and adjusting the tilted position of the trough support.

本考案に係る請求項1は、水平枠材、前記水平枠材に直交する左側の垂直枠材、左側の前記垂直枠材に間隔を隔てて平行し、及び前記水平枠材に直交する右側の垂直枠材を有する枠体と、前記水平枠材に間隔を隔てて配置され、軸中心線を前記水平枠材に平行に配置して、各軸端を前記各垂直枠材に固定する回動支持軸体と、杭嵌込み穴を有し、穴中心線を前記水平枠材と直交方向に向けて一方の前記垂直枠材に固定され、トラフ敷設箇所に打込まれた支持杭に外嵌され、前記支持杭の杭中心線の方向に移動自在に、当該支持杭を前記杭嵌込み穴に挿通する杭嵌込み筒体と、前記杭嵌込み筒体を前記支持杭に固定する筒体固定具と、前記回動支持軸体の軸中心線を中心に回動自在として前記回動支持軸体に配置され、ケーブルトラフを載置するトラフ支持体と、前記トラフ支持体を前記回動支持軸体に固定する軸体固定具と、前記トラフ支持体に配置され、前記ケーブルトラフを前記トラフ支持体に固定するトラフ固定具と、調整ネジ軸、及び前記調整ネジ軸の軸中心線に直交して、前記調整ネジ軸の一方の軸端に固定される座板を有し、他方の前記垂直枠材側の前記水平枠材に配置されるネジ脚と、上側の固定ナットと、下側の固定ナットと、を備え、前記調整ネジ軸は、軸中心線を前記水平枠材と直交方向に向けて配置され、前記水平枠材と直交方向に移動自在に、前記水平枠材を貫通し、及び他方の軸端を前記水平枠材及び前記回動支持軸体の間に突出して配置され、上側の前記固定ナットは、前記調整ネジ軸の他方の軸端、及び前記水平枠材の間の前記調整ネジ軸に螺着され、及び前記水平枠材に当接自在にされ、下側の前記固定ナットは、前記座板、及び前記水平枠材の間の前記調整ネジ軸に螺着され、及び前記水平枠材に当接自在にされることを特徴とするトラフ支持器具である。 The first aspect of the present invention is a horizontal frame material, a vertical frame material on the left side orthogonal to the horizontal frame material, parallel to the vertical frame material on the left side at intervals, and a right side perpendicular to the horizontal frame material. Rotation in which a frame having a vertical frame and a horizontal frame are arranged at intervals, the axis center line is arranged parallel to the horizontal frame, and each shaft end is fixed to each vertical frame. It has a support shaft and a pile fitting hole, and is fixed to one of the vertical frame members with the hole center line directed in the direction perpendicular to the horizontal frame member, and is externally fitted to the support pile driven into the trough laying location. A pile fitting cylinder that inserts the support pile into the pile fitting hole and a cylinder that fixes the pile fitting cylinder to the support pile so as to be movable in the direction of the pile center line of the support pile. The fixture, the trough support which is arranged on the rotation support shaft so as to be rotatable around the axis center line of the rotation support shaft, and on which the cable trough is placed, and the trough support are rotated. On the shaft fixture fixed to the support shaft, the trough fixture arranged on the trough support and fixing the cable trough to the trough support, the adjusting screw shaft, and the axis centerline of the adjusting screw shaft. A screw leg that has a seat plate that is orthogonal to one of the adjusting screw shafts and is fixed to one of the shaft ends and is arranged on the horizontal frame material on the other side of the vertical frame material, an upper fixing nut, and a lower portion. The adjusting screw shaft is provided with a fixing nut on the side, and the axis center line is arranged so as to be perpendicular to the horizontal frame material, and penetrates the horizontal frame material so as to be movable in a direction perpendicular to the horizontal frame material. And the other shaft end is arranged so as to project between the horizontal frame member and the rotation support shaft body, and the upper fixing nut is the other shaft end of the adjusting screw shaft and the horizontal frame material. It is screwed to the adjusting screw shaft between the adjusting screw shafts and is made abuttable to the horizontal frame material, and the lower fixing nut is screwed to the adjusting screw shaft between the seat plate and the horizontal frame material. It is a trough support device characterized in that it is made to come into contact with the horizontal frame member.

本考案に係る請求項1によれば、杭嵌込み筒体は、トラフ敷設箇所に打込んだ支持杭に移動自在に外嵌され、ネジ脚は、各固定ナットの一方又は両方を回動して、水平枠材から離間することで、水平枠材と直交方向(杭中心線の方向)に移動自在にされる。杭嵌込み筒体及びネジ脚を移動自在にすると、枠体は、支持杭及びネジ脚に対して移動自在となる。ネジ脚の座板をトラフ敷設箇所に当接して、枠体を支持杭、及びネジ脚に対して移動することで、枠体及びトラフ支持体の高さ位置(支持杭の杭中心線の方向の位置)を調整する。
これにより、ケーブルトラフを載置するトラフ支持体及び枠体は、任意の高さ位置(支持杭の杭中心線の方向の任意の位置)に調整できる。
本考案に係る請求項1において、枠体の高さ位置を調整すると、各固定ナットを回動して水平枠材に当接して、各固定ナットよって水平枠材を挟持することで、ネジ脚は、枠体に固定される。杭嵌込み筒体は、筒体固定具によって支持杭に固定される。
本考案の請求項1によれば、トラフ支持体を回動支持軸体に対して回動することで、トラフ支持体の傾斜位置を調整することができる。トラフ支持体の傾斜位置を調整すると、支持体固定具によってトラフ支持体を回動支持軸体に固定する。
本考案に係る請求項1において、枠体を支持杭、及びネジ脚に固定し、トラフ支持体を回動支持軸体に固定すると、ケーブルトラフをトラフ支持体に載置して、トラフ固定具によってトラフ支持体に固定する。
ケーブルトラフ内には、電線、光ファイバー等のケーブルが収納される。
According to the first aspect of the present invention, the pile fitting cylinder is movably externally fitted to the support pile driven into the trough laying location, and the screw leg rotates one or both of the fixing nuts. By separating it from the horizontal frame material, it can be moved in a direction orthogonal to the horizontal frame material (direction of the pile center line). When the pile fitting cylinder and the screw legs are movable, the frame body becomes movable with respect to the support pile and the screw legs. By abutting the seat plate of the screw leg against the trough laying point and moving the frame with respect to the support pile and the screw leg, the height position of the frame and the trough support (direction of the pile center line of the support pile). Position) is adjusted.
Thereby, the trough support and the frame on which the cable trough is placed can be adjusted to an arbitrary height position (arbitrary position in the direction of the pile center line of the support pile).
In claim 1 according to the present invention, when the height position of the frame body is adjusted, each fixing nut is rotated to come into contact with the horizontal frame material, and the horizontal frame material is sandwiched by each fixing nut, whereby the screw leg is screwed. Is fixed to the frame. The pile fitting cylinder is fixed to the support pile by the cylinder fixture.
According to claim 1 of the present invention, the tilted position of the trough support can be adjusted by rotating the trough support with respect to the rotation support shaft. When the tilted position of the trough support is adjusted, the trough support is fixed to the rotating support shaft by the support fixture.
In claim 1 according to the present invention, when the frame body is fixed to the support pile and the screw leg and the trough support is fixed to the rotation support shaft body, the cable trough is placed on the trough support and the trough fixing tool. Secured to the trough support by.
Cables such as electric wires and optical fibers are stored in the cable trough.

本考案に係る請求項2は、前記トラフ支持体は、前記各垂直枠材に間隔を隔てて、前記各垂直枠材の間に配置され、前記回動支持軸体の軸中心線を中心に回動自在、及び前記回動支持軸体の軸中心線の方向に移動自在として、前記回動支持軸体に配置されることを特徴とする請求項1に記載のトラフ支持器具である。 According to the second aspect of the present invention, the trough support is arranged between the vertical frame members at intervals from the vertical frame members, and is centered on the axis center line of the rotation support shaft members. The trough support device according to claim 1, wherein the trough support device is arranged on the rotation support shaft body so as to be rotatable and movable in the direction of the axis center line of the rotation support shaft body.

本考案に係る請求項2によれば、トラフ支持体を回動支持軸に沿って移動することで、各垂直枠材の間において、トラフ支持体の回動支持軸体の軸中線の方向の位置を調整できる。 According to claim 2 according to the present invention, by moving the trough support along the rotation support shaft, the direction of the axis midline of the rotation support shaft of the trough support between the vertical frame members. You can adjust the position of.

本考案は、トラフ支持体及び枠体の高さ位置を調整でき、トラフ支持体の傾斜位置を調整でき、及びトラフ支持体の回動支持軸体の軸中心線の方向の位置を調整できるので、傾斜等するトラフ敷設箇所の地形に応じて、ケーブルトラフを短時間で容易に敷設することが可能となる。 In the present invention, the height positions of the trough support and the frame can be adjusted, the tilted position of the trough support can be adjusted, and the position of the rotating support shaft of the trough support in the direction of the axial center line can be adjusted. It is possible to easily lay a cable trough in a short time according to the topography of the trough laying location such as slope.

トラフ支持器具を示す正面図である。It is a front view which shows the trough support device. トラフ支持器具を示す背面図(裏面図)である。It is a back view (back view) which shows the trough support device. トラフ支持器具を示す左側面図である。It is a left side view which shows the trough support equipment. トラフ支持器具を示す右側面図である。It is a right side view which shows the trough support equipment. トラフ支持器具を示す平面図(上面図)である。It is a top view (top view) which shows the trough support equipment. トラフ支持器具を示す底面図(下面図)である。It is a bottom view (bottom view) which shows the trough support device. トラフ支持器具を示す背面斜視図(裏面斜視図)である。It is a back perspective view (back side perspective view) which shows the trough support device. 図1のA−A断面図である。FIG. 1 is a sectional view taken along the line AA of FIG. 図1のB−B断面拡大図である。It is a cross-sectional enlarged view of BB of FIG. 図5のE−E断面図である。FIG. 5 is a cross-sectional view taken along the line EE of FIG. 図5のF−F断面拡大図である。FIG. 5 is an enlarged cross-sectional view taken along the line FF of FIG. 図5のG−G断面拡大図である。FIG. 5 is an enlarged cross-sectional view taken along the line GG of FIG. 図2の一部拡大図であって、杭嵌込み筒体及び各杭案内筒体を示す図である。It is a partially enlarged view of FIG. 2, and is the figure which shows the pile fitting cylinder and each pile guide cylinder. (a)は、図2のC部分拡大図、(b)は、図2のD部分拡大図である。(A) is a C partial enlarged view of FIG. 2, and (b) is a D partial enlarged view of FIG. 図5のH部分拡大図である。It is H partial enlarged view of FIG. 図5のI部分拡大図である。It is the I partial enlarged view of FIG. 図8のJ部分拡大図である。It is a J partial enlarged view of FIG. 鉄道線路の側方(トラフ敷設箇所)に打込んだ支持杭に、トラフ支持器具を設置した側面図である。It is a side view which installed the trough support equipment on the support pile driven into the side (trough laying place) of the railroad track. 図18のK部分拡大図である。It is a K partial enlarged view of FIG. 図18のL−L矢視図である。It is an arrow view of LL of FIG. 図20のM部分拡大図である。It is the M partial enlarged view of FIG. 図20のN部分拡大図である。It is an N partial enlarged view of FIG. 鉄道路線の側方(トラフ敷設箇所)であって、ケーブルトラフ、トラフ支持器具及び支持杭を示す正面図である。It is a side view (trough laying place) of a railway line, and is a front view showing a cable trough, a trough support device, and a support pile. 図23のケーブルトラフ、トラフ支持器具を示す一部拡大図である。It is a partially enlarged view which shows the cable trough and the trough support device of FIG. (a)は、図24のO部分拡大図、(b)は、図24のP部分拡大図である。(A) is an enlarged view of the O part of FIG. 24, and (b) is an enlarged view of the P part of FIG. 24. 鉄道線路の側方(トラフ敷設箇所)であって、ケーブルトラフ、支持杭及びトラフ支持器具をCable troughs, support piles and trough support equipment on the side of the railroad track (trough laying location)

本発明に係るトラフ支持器具について、図1乃至図26を参照して説明する。 The trough support device according to the present invention will be described with reference to FIGS. 1 to 26.

トラフ支持器具Xは、図1乃至図17に示すように、枠体1、回動支持軸体2、軸体固定具30、杭嵌込み筒体3、上側の杭案内筒体4、下側の杭案内筒体5、筒体固定具6、トラフ支持体7、支持体固定具8、トラフ固定具9、及び位置調整具10を備える。 As shown in FIGS. 1 to 17, the trough support device X includes a frame body 1, a rotation support shaft body 2, a shaft body fixture 30, a pile fitting cylinder 3, an upper pile guide cylinder 4, and a lower side. The pile guide cylinder body 5, the cylinder body fixture 6, the trough support 7, the support fixture 8, the trough fixture 9, and the position adjuster 10 are provided.

枠体1(支持枠体/基礎体)は、図1乃至図9、図11及び図12に示すように、下側の水平枠材15(下水平枠材/下枠材)、左側の垂直枠材16(左垂直枠材/左枠材)、及び右側の垂直枠材17(右垂直枠材/右枠材)を有する。 As shown in FIGS. 1 to 9, 11 and 12, the frame 1 (support frame / foundation) includes a lower horizontal frame 15 (lower horizontal frame / lower frame) and a left vertical frame. It has a frame material 16 (left vertical frame material / left frame material) and a right vertical frame material 17 (right vertical frame material / right frame material).

水平枠材15、及び各垂直枠材16,17は、図1乃至図9、図11及び図12に示すように、例えば、金属(鉄、ステンレス等)のL字曲げ板で形成される。
水平枠材15は、図2及び図6に示すように、長さ:L1、及び板幅:Hを有し、各垂直枠材16,17は、図2乃至図4に示すように、長さ:L2(但し、L2<L1)、及び板幅:Hを有する。
As shown in FIGS. 1 to 9, 11 and 12, the horizontal frame member 15 and the vertical frame members 16 and 17 are formed of, for example, an L-shaped bent plate made of metal (iron, stainless steel, etc.).
The horizontal frame member 15 has a length: L1 and a plate width: H as shown in FIGS. 2 and 6, and the vertical frame members 16 and 17 have a length as shown in FIGS. 2 to 4. S: L2 (where L2 <L1), and plate width: H.

左側の垂直枠材16は、図1及び図2に示すように、水平枠材15の一方の板端15a(板長手端)に当接して配置される。左側の垂直枠材16は、水平枠材15に直交(交差)して配置されて、水平枠材15に連結(固定)される。
左側の垂直枠材16は、L字曲げ板の一方の垂直板16Aを水平枠材15の一方の板端15aに当接し、及びL字曲げ板の他方の垂直板16Bを水平枠材15の板端15aより外側(板端15aより左側)に配置して、水平枠材15に連結(固定)される。
As shown in FIGS. 1 and 2, the vertical frame member 16 on the left side is arranged in contact with one plate end 15a (plate longitudinal end) of the horizontal frame member 15. The vertical frame member 16 on the left side is arranged orthogonally (intersects) with the horizontal frame member 15 and is connected (fixed) to the horizontal frame member 15.
The left vertical frame member 16 abuts one vertical plate 16A of the L-shaped bending plate against one plate end 15a of the horizontal frame material 15, and the other vertical plate 16B of the L-shaped bending plate of the horizontal frame material 15. It is arranged outside the plate edge 15a (on the left side of the plate edge 15a) and is connected (fixed) to the horizontal frame member 15.

右側の垂直枠材17は、図1及び図2に示すように、左側の垂直枠材16に間隔を隔てて平行に配置される。右側の垂直枠材17は、水平枠材15の他方の板端15b(板長手端)に当接して配置される、右側の垂直枠材17は、水平枠材15に直交(交差)して配置されて、水平枠材15に連結(固定)される。
右側の垂直枠材17は、L字曲げ板の一方の垂直板17Aを水平枠材15の他方の板端15bに当接し、及びL字曲げ板の他方の垂直板17Bを水平枠材15の板端15bより外側(板端15bより右側)に配置して、水平枠材15に連結(固定)される。
As shown in FIGS. 1 and 2, the vertical frame member 17 on the right side is arranged parallel to the vertical frame member 16 on the left side at intervals. The vertical frame member 17 on the right side is arranged in contact with the other plate end 15b (longitudinal end of the plate) of the horizontal frame member 15, and the vertical frame member 17 on the right side is orthogonal (intersects) to the horizontal frame member 15. It is arranged and connected (fixed) to the horizontal frame member 15.
The vertical frame member 17 on the right side abuts one vertical plate 17A of the L-shaped bending plate against the other plate end 15b of the horizontal frame material 15, and the other vertical plate 17B of the L-shaped bending plate of the horizontal frame material 15. It is arranged outside the plate edge 15b (on the right side of the plate edge 15b) and is connected (fixed) to the horizontal frame member 15.

各垂直枠材16,17は、図1、図3乃至図8及び図10に示すように、各軸固定材18,19(左側の軸固定材18、右側の軸固定材19)を有する。
各軸固定材18,19は、例えば、金属(鉄、ステンレス等)のL字曲げ板で形成される。
As shown in FIGS. 1, 3 to 8 and 10, each of the vertical frame members 16 and 17 has shaft fixing members 18 and 19 (the left shaft fixing member 18 and the right shaft fixing member 19).
The shaft fixing members 18 and 19 are formed of, for example, an L-shaped bent plate made of metal (iron, stainless steel, etc.).

左側の軸固定材18は、図1、図3及び図7に示すように、水平枠材15と直交方向UD(以下、「上下方向UD」という)において、水平枠材15から離間する垂直枠材16の板端側(板上端側)に配置されて、左側の垂直枠材16に固定される。軸固定材18は、図1、図3、及び図5乃至図8に示すように、各垂直枠材16,17と直交方向LR(以下、「左右方向LR」という)において、L字曲げ板の一方の固定板18Aを右側の垂直枠材17側に向け、及びL字曲げ板の他方の固定板18Bを垂直枠材16の他方の垂直板16Bに当接して、左側の垂直枠材16に固定される。軸固定材18は、水平枠材15及び各垂直枠材16,17と直交方向FR(以下、「前後方向FR」という)において、左側の垂直枠材16の後側に並列して配置される。 As shown in FIGS. 1, 3 and 7, the left shaft fixing member 18 is a vertical frame separated from the horizontal frame member 15 in the direction orthogonal to the horizontal frame member 15 (hereinafter referred to as “vertical direction UD”). It is arranged on the plate end side (plate upper end side) of the material 16 and fixed to the vertical frame material 16 on the left side. As shown in FIGS. 1, 3 and 5 to 8, the shaft fixing member 18 is an L-shaped bending plate in an orthogonal direction LR (hereinafter, referred to as “left-right direction LR”) with each of the vertical frame members 16 and 17. One fixing plate 18A is directed to the right vertical frame member 17 side, and the other fixing plate 18B of the L-shaped bending plate is in contact with the other vertical plate 16B of the vertical frame member 16, and the left vertical frame member 16 Is fixed to. The shaft fixing member 18 is arranged in parallel with the horizontal frame member 15 and the vertical frame members 16 and 17 on the rear side of the left vertical frame member 16 in the orthogonal direction FR (hereinafter referred to as “front-rear direction FR”). ..

右側の軸固定材19は、図1、図4及び図7に示すように、上下方向UDにおいて、水平枠材15から離間する垂直枠材17の板端17a側(板上端側)に配置されて、右側の垂直枠材17に固定される。軸固定材19は、図1、図4、及び図5乃至図8に示すように、左右方向LRにおいて、L字曲げ板の一方の固定板19Aを左側の垂直枠材16に向け(軸固定材18の固定板18Aに対向し)、及びL字曲げ板の他方の固定板19Bを垂直枠材17の他方の垂直板17Bに当接して、右側の垂直枠材17に固定される、軸固定材18は、前後方向FRにおいて、右側の垂直枠材17の後側に並列して配置される。 As shown in FIGS. 1, 4 and 7, the shaft fixing member 19 on the right side is arranged on the plate end 17a side (plate upper end side) of the vertical frame member 17 separated from the horizontal frame member 15 in the vertical direction UD. It is fixed to the vertical frame member 17 on the right side. As shown in FIGS. 1, 4, and 5 to 8, the shaft fixing member 19 directs one fixing plate 19A of the L-shaped bending plate toward the left vertical frame member 16 in the left-right direction LR (shaft fixing). A shaft that abuts the fixing plate 18A of the material 18) and the other fixing plate 19B of the L-shaped bending plate against the other vertical plate 17B of the vertical frame material 17 and is fixed to the vertical frame material 17 on the right side. The fixing member 18 is arranged in parallel on the rear side of the vertical frame member 17 on the right side in the front-rear direction FR.

枠体1において、水平枠材15は、図1、図9及び図11に示すように、脚ガイド穴20を有する。脚ガイド穴20は、左右方向LRにおいて、右側の垂直枠材17(他方の垂直枠材)に間隔を隔てて、垂直枠材17に隣接して配置される。脚ガイド穴20は、前後方向FRにおいて、水平板15Aの板幅:Hの中心に配置される。
脚ガイド穴20は、上下方向UDにおいて、水平枠材15の水平板15Aを貫通して形成される。
In the frame body 1, the horizontal frame member 15 has leg guide holes 20 as shown in FIGS. 1, 9 and 11. The leg guide holes 20 are arranged adjacent to the vertical frame member 17 on the right side (the other vertical frame member) at intervals in the left-right direction LR. The leg guide hole 20 is arranged at the center of the plate width: H of the horizontal plate 15A in the front-rear direction FR.
The leg guide hole 20 is formed so as to penetrate the horizontal plate 15A of the horizontal frame member 15 in the vertical direction UD.

回動支持軸体2は、図1乃至図12に示すように、例えば、金属(鉄、ステンレス等)で円筒状の支持軸体(支持円筒体)に形成され、水平枠材15の板長:L1と同一の軸長を有する。回動支持軸体2は、図9乃至図12に示すように、左側及び右側の軸支持板25,26を有する。各軸支持板25,26は、金属(鉄、ステンレス等)で形成される。
各軸支持板25,26は、図9乃至図12に示すように、回動支持軸体2内に挿入(収納)されて、回動支持軸体2の軸中心線aの方向において、回動支持軸体2の各軸端2A,2B側(各筒軸端側)に配置される。各軸支持板25,26は、回動支持軸体2内において、回動支持軸体2に固定される。
As shown in FIGS. 1 to 12, the rotary support shaft body 2 is formed of, for example, a metal (iron, stainless steel, etc.) into a cylindrical support shaft body (support cylindrical body), and has a plate length of the horizontal frame member 15. : Has the same shaft length as L1. As shown in FIGS. 9 to 12, the rotation support shaft body 2 has left and right shaft support plates 25 and 26. The shaft support plates 25 and 26 are made of metal (iron, stainless steel, etc.).
As shown in FIGS. 9 to 12, the shaft support plates 25 and 26 are inserted (stored) in the rotation support shaft body 2 and rotated in the direction of the axis center line a of the rotation support shaft body 2. It is arranged on each shaft end 2A, 2B side (each cylinder shaft end side) of the dynamic support shaft body 2. Each of the shaft support plates 25 and 26 is fixed to the rotation support shaft body 2 in the rotation support shaft body 2.

回動支持軸体2は、図1、図2及び図5乃至図12に示すように、軸中心線aを左右方向LRに向け、及び軸中心線aを水平枠材15(水平板15A)に平行に配置される。回動支持軸体2は、水平枠材15と軸間隔W1(但し、W1<L1)を隔てて平行に配置される。回動支持軸体2は、各垂直枠材16,17(各軸固定材18,19)の間に配置される。回動支持軸体2は、各軸端2A,2Bを各軸固定材18,19の一方の固定板18A,19Aに当接して配置される。 In the rotation support shaft body 2, as shown in FIGS. 1, 2 and 5 to 12, the shaft center line a is directed to the left-right direction LR, and the shaft center line a is the horizontal frame member 15 (horizontal plate 15A). Arranged parallel to. The rotation support shaft body 2 is arranged in parallel with the horizontal frame member 15 with a shaft spacing W1 (however, W1 <L1). The rotation support shaft body 2 is arranged between the vertical frame members 16 and 17 (each shaft fixing member 18, 19). The rotation support shaft body 2 is arranged so that the shaft ends 2A and 2B are in contact with one of the fixing plates 18A and 19A of the shaft fixing members 18 and 19.

軸体固定具30は、図1、図3乃至図6、及び図8乃至図12に示すように、回動支持軸体2を各垂直枠材16,17(各軸固定材18,19)に固定する。軸体固定具30は、複数(一対)の軸固定ボルト31,32を有する。各軸固定ボルト31,32は、例えば、金属(鉄、ステンレス等)で形成されて、ネジ軸33及び頭部34を有する。
各軸固定ボルト31,32(軸体固定具30)は、図9乃至図12に示すように、ネジ軸33を各軸固定材18,19(各垂直枠材16,17)の一方の固定板18A,19Aに挿通(貫通)して、各軸端2A,2Bから回動支持軸体2内に挿入して配置される。各軸固定ボルト31,32は、頭部34を各軸固定材18,19の固定板18A,19Aに当接して配置される。
各軸固定ボルト31,32において、ネジ軸33は、回動支持軸体2の軸中心線aと同心に配置されて、各軸端2A,2Bから回動支持軸体2内に挿入される。各軸固定ボルト31,32のネジ軸33は、各軸端2A,2B側の回動支持軸体2内において、回動によって各軸支持板25,26に螺着されて、回動支持軸体2の各軸端2A,2B側を各垂直枠材16,17(各軸固定材18,19)に固定する。
これにより、回動支持軸体2は、各軸端2A,2Bを各垂直枠材16,17(各軸固定材18,19)に固定して、各垂直枠材16,17に支持される。
As shown in FIGS. 1, 3 to 6, and 8 to 12, the shaft body fixing tool 30 attaches the rotation support shaft body 2 to the vertical frame members 16, 17 (each shaft fixing material 18, 19). Fix to. The shaft body fixing tool 30 has a plurality of (pair) shaft fixing bolts 31 and 32. Each of the shaft fixing bolts 31 and 32 is made of, for example, metal (iron, stainless steel, etc.) and has a screw shaft 33 and a head 34.
As shown in FIGS. 9 to 12, each of the shaft fixing bolts 31 and 32 (shaft fixing tool 30) fixes the screw shaft 33 to one of the shaft fixing members 18 and 19 (vertical frame members 16 and 17). It is inserted (penetrated) into the plates 18A and 19A and inserted into the rotation support shaft body 2 from the shaft ends 2A and 2B, respectively. The shaft fixing bolts 31 and 32 are arranged so that the head 34 is in contact with the fixing plates 18A and 19A of the shaft fixing members 18 and 19.
In the shaft fixing bolts 31 and 32, the screw shaft 33 is arranged concentrically with the shaft center line a of the rotation support shaft body 2 and is inserted into the rotation support shaft body 2 from the shaft ends 2A and 2B. .. The screw shaft 33 of the shaft fixing bolts 31 and 32 is screwed to the shaft support plates 25 and 26 by rotation in the rotation support shaft body 2 on the shaft ends 2A and 2B sides, and the rotation support shaft The shaft ends 2A and 2B sides of the body 2 are fixed to the vertical frame members 16 and 17 (the shaft fixing members 18 and 19).
As a result, the rotation support shaft body 2 is supported by the vertical frame members 16 and 17 by fixing the shaft ends 2A and 2B to the vertical frame members 16 and 17 (each shaft fixing members 18 and 19). ..

杭嵌込み筒体3は、図1乃至図8、及び図12に示すように、例えば、金属(鉄、ステンレス等)の円筒体(円筒状)に形成される。杭嵌込み筒体3は、直径:Dの円形の杭嵌込み穴41(杭嵌込み円穴)、スリット穴42、及び複数(一対)の突出片43,44を有する。 As shown in FIGS. 1 to 8 and 12, for example, the pile fitting cylinder 3 is formed in a cylindrical body (cylindrical shape) of metal (iron, stainless steel, etc.). The pile fitting cylinder 3 has a circular pile fitting hole 41 (pile fitting circular hole) having a diameter of D, a slit hole 42, and a plurality of (pair) protruding pieces 43, 44.

杭嵌込み穴41は、図1、図3、図8及び図13に示すように、杭嵌込み筒体3の両筒端に開口する。 As shown in FIGS. 1, 3, 8 and 13, the pile fitting holes 41 are opened at the ends of both cylinders of the pile fitting cylinder 3.

スリット穴42は、図8及び図13に示すように、杭嵌込み筒体3の円周方向にスリット幅HSを有して、杭嵌込み穴41の穴中心線cの方向に延在される。スリット穴42は、杭嵌込み筒体3の両筒端に開口する。スリット穴42は、杭嵌込み穴41の穴中心線cと直交方向に杭嵌込み筒体3を貫通して、杭嵌込み筒体3の外周面3A及び杭嵌込み穴41(内周面)に開口する。 As shown in FIGS. 8 and 13, the slit hole 42 has a slit width HS in the circumferential direction of the pile fitting cylinder 3 and extends in the direction of the hole center line c of the pile fitting hole 41. Slit. The slit holes 42 are opened at the ends of both cylinders of the pile fitting cylinder 3. The slit hole 42 penetrates the pile fitting cylinder 3 in the direction orthogonal to the hole center line c of the pile fitting hole 41, and the outer peripheral surface 3A of the pile fitting cylinder 3 and the pile fitting hole 41 (inner peripheral surface). ).

各突出片43,44は、図3、図4、図7、図8及び図13に示すように、杭嵌込み筒体3の外周面3Aに固定される。各突出片43,44は、杭嵌込み筒体3の円周方向に並列されて、杭嵌込み筒体3の外周面3Aから径外方向に突出される。各突出片43,44は、相互の間にスリット穴42を位置して、スリット穴42に連続して配置される。 Each of the protruding pieces 43 and 44 is fixed to the outer peripheral surface 3A of the pile fitting cylinder 3 as shown in FIGS. 3, 4, 7, 8 and 13. The protruding pieces 43 and 44 are arranged in parallel in the circumferential direction of the pile fitting cylinder 3 and protrude in the outer diameter direction from the outer peripheral surface 3A of the pile fitting cylinder 3. Each of the protruding pieces 43 and 44 has a slit hole 42 located between them and is continuously arranged in the slit hole 42.

突出片43は、図5、図6及び図13に示すように、複数(一対)のネジ通し穴46を有し、各ネジ通し穴46は、上下方向UD(杭嵌込み穴41の穴中心線cの方向)に並列されて、左右方向LR(杭嵌込み穴41の穴中心線cと直交方向)において、突出片43を貫通して形成される。 As shown in FIGS. 5, 6 and 13, the protruding piece 43 has a plurality of (pair) screw through holes 46, and each screw through hole 46 is UD in the vertical direction (hole center of the pile fitting hole 41). It is formed in parallel with the line c) and penetrates the protruding piece 43 in the left-right direction LR (direction orthogonal to the hole center line c of the pile fitting hole 41).

突出片44は、図4乃至図6、及び図13に示すように、複数(一対)のネジ穴47を有し、各ネジ穴47は、各ネジ通し穴46に対向(対峙)して、突出片44に配置される。各ネジ穴47は、上下方向UD(杭嵌込み穴41の穴中心線cの方向)に並列されて、左右方向LR(杭嵌込み穴41の穴中心線cと直交方向)において、突出片44を貫通して形成される。 As shown in FIGS. 4 to 6 and 13, the protruding piece 44 has a plurality of (pair) screw holes 47, and each screw hole 47 faces (opposes) each screw through hole 46. It is arranged on the protruding piece 44. Each screw hole 47 is arranged in parallel in the vertical direction UD (direction of the hole center line c of the pile fitting hole 41), and is a protruding piece in the horizontal direction LR (direction orthogonal to the hole center line c of the pile fitting hole 41). It is formed through 44.

杭嵌込み筒体3は、図2、図3、図7、図8及び図13に示すように、例えば、枠体1の外側に配置されて、左側の垂直枠材16(一方の垂直枠材)に固定される。杭嵌込み筒体3は、杭嵌込み穴41の穴中心線c(筒中心線)を、上下方向UD(水平枠材15又は回動支持軸体2の軸中心線aと直交方向)に向けて左側の垂直枠材16(一方の垂直板16A及び他方の垂直板16B)に固定される。 As shown in FIGS. 2, 3, 7, 8 and 13, for example, the pile fitting cylinder 3 is arranged outside the frame 1 and the left vertical frame member 16 (one vertical frame). It is fixed to the material). The pile fitting cylinder 3 has the hole center line c (cylinder center line) of the pile fitting hole 41 in the vertical direction UD (direction orthogonal to the axis center line a of the horizontal frame member 15 or the rotation support shaft body 2). It is fixed to the vertical frame member 16 (one vertical plate 16A and the other vertical plate 16B) on the left side.

上側の杭案内筒体4は、図1乃至図3、図5、図7及び図13に示すように、例えば、金属(鉄、ステンレス等)の円筒体(円筒状)に形成される。杭案内筒体4は、杭嵌込み筒体3と同一直径の案内穴48(案内円穴)を有する。案内穴48は、上側の杭案内筒体4の両筒端に開口する。
上側の杭案内筒体4は、図2、図3、図7及び図13に示すように、枠体1の外側に配置されて、杭嵌込み筒体3に並列される、上側の杭案内筒体4は、左側の垂直枠材16(各垂直板16A,16B)に固定される。上側の杭案内筒体4は、上下方向UDにおいて、回動支持軸体2及び杭嵌込み筒体3の間(杭嵌込み筒体3より回動支持軸体2側)に配置される。上側の杭案内筒体4は、案内穴48の穴中心線を、上下方向UDに向けて、杭嵌込み筒体3(杭嵌込み穴41)と同心に配置される。
The upper pile guide cylinder 4 is formed in, for example, a metal (iron, stainless steel, etc.) cylindrical body (cylindrical shape) as shown in FIGS. 1 to 3, 5, 7, and 13. The pile guide cylinder 4 has a guide hole 48 (guide circular hole) having the same diameter as the pile fitting cylinder 3. The guide holes 48 are opened at the ends of both cylinders of the upper pile guide cylinder 4.
As shown in FIGS. 2, 3, 7, and 13, the upper pile guide cylinder 4 is arranged outside the frame 1 and is arranged in parallel with the pile fitting cylinder 3, the upper pile guide. The tubular body 4 is fixed to the left vertical frame member 16 (each vertical plate 16A, 16B). The upper pile guide cylinder 4 is arranged between the rotation support shaft body 2 and the pile fitting cylinder 3 (on the rotation support shaft body 2 side from the pile fitting cylinder 3) in the vertical direction UD. The upper pile guide cylinder 4 is arranged concentrically with the pile fitting cylinder 3 (pile fitting hole 41) with the hole center line of the guide hole 48 facing up and down UD.

下側の杭案内筒体5は、図1乃至図3、図6、図7及び図13に示すように、例えば、金属(鉄、ステンレス等)の円筒体(円筒状)に形成される。杭案内筒体5は、杭嵌込み筒体3と同一直径の案内穴49(案内円穴)を有する。案内穴49は、下側の杭案内筒体5の両端側に開口する。
下側の杭案内筒体5は、図2、図3、図7及び図13に示すように、枠体1の外側に配置されて、杭嵌込み筒体3に並列される。下側の杭案内筒体5は、左側の垂直枠材16(各垂直板16A,16B)に固定される。下側の杭案内筒体5は、上下方向UDにおいて、水平枠材15及び杭嵌込み筒体3の間(杭嵌込み筒体3より水平枠材15側)に配置される。下側の杭案内筒体5は、案内穴49の穴中心線を、上下方向UDに向けて、杭嵌込み筒体3(杭嵌込み穴41)と同心に配置される。
The lower pile guide cylinder 5 is formed in, for example, a metal (iron, stainless steel, etc.) cylindrical body (cylindrical shape) as shown in FIGS. 1 to 3, 6, 7, and 13. The pile guide cylinder 5 has a guide hole 49 (guide circular hole) having the same diameter as the pile fitting cylinder 3. The guide holes 49 are opened on both end sides of the lower pile guide cylinder 5.
As shown in FIGS. 2, 3, 7, and 13, the lower pile guide cylinder 5 is arranged outside the frame 1 and is arranged in parallel with the pile fitting cylinder 3. The lower pile guide cylinder 5 is fixed to the left vertical frame member 16 (each vertical plate 16A, 16B). The lower pile guide cylinder 5 is arranged between the horizontal frame member 15 and the pile fitting cylinder 3 (on the horizontal frame 15 side of the pile fitting cylinder 3) in the vertical direction UD. The lower pile guide cylinder 5 is arranged concentrically with the pile fitting cylinder 3 (pile fitting hole 41) with the hole center line of the guide hole 49 facing in the vertical direction UD.

筒体固定具6は、図1、図3乃至図8及び図13に示すように、例えば、金属(鉄、ステンレス等)のボルト51,52(筒体固定ボルト)を備える。各ボルト51,52は、ネジ軸53及び頭部54を有する。
各ボルト51,52は、図4乃至図6、図8及び図13に示すように、ネジ軸53を突出片43の各ネジ通し穴46に挿通(貫通)して、更に、ネジ軸53を突出片44の各ネジ穴47に螺着(螺入)して、杭嵌込み筒体3(各突出片43,44)に取付けられる。各ボルト51,52は、頭部54を突出片43に当接して配置される。
As shown in FIGS. 1, 3 to 8 and 13, for example, the tubular fixing tool 6 includes metal (iron, stainless steel, etc.) bolts 51 and 52 (cylindrical fixing bolts). Each bolt 51, 52 has a screw shaft 53 and a head 54.
As shown in FIGS. 4 to 6, 8 and 13, each bolt 51 and 52 inserts (penetrates) the screw shaft 53 into each screw through hole 46 of the protruding piece 43, and further inserts the screw shaft 53. It is screwed (screwed) into each screw hole 47 of the projecting piece 44 and attached to the pile fitting cylinder 3 (each projecting piece 43, 44). The bolts 51 and 52 are arranged so that the head 54 is in contact with the projecting piece 43.

トラフ支持体7は、ケーブルトラフYを載置する(図23乃至図26参照)。トラフ支持体7は、図1乃至図9、図11及び図12に示すように、複数(一対)のトラフ支持材61,62、複数(一対)のトラフ載置板63,64、回動筒体65(回動筒材)及び複数(4つ)のガイド穴75〜78を備える。 The trough support 7 mounts the cable trough Y (see FIGS. 23 to 26). As shown in FIGS. 1 to 9, FIG. 11 and FIG. 12, the trough support 7 includes a plurality of (pair) trough support members 61 and 62, a plurality of (pair) trough mounting plates 63 and 64, and a rotating cylinder. A body 65 (rotary cylinder material) and a plurality (4) guide holes 75 to 78 are provided.

各トラフ支持材61,62は、例えば、金属(鉄、ステンレス等)のL字曲げ板で形成される。各トラフ支持材61,62は、図5に示すように、板長:LXを有する。各トラフ支持材61,62の板長:LXは、回動支持軸体2の軸長:L1(水平枠材15の板長:L1)より短く形成される(LX<L1)。
各トラフ支持材61,62(トラフ支持部材)は、図1乃至9、図11及び図12に示すように、一方の各支持板61A,62Aを面一にして、及び他方の各支持板61B,62Bを対向(対峙)して並設される。各支持材61,62は、板長さ方向RL(左右方向LR)と直交方FR(前後方向FR)において、向他方の各支持板61B,62Bの間に板間隔を隔てて平行に配置される。
Each trough support member 61, 62 is formed of, for example, an L-shaped bent plate made of metal (iron, stainless steel, etc.). As shown in FIG. 5, each trough support member 61, 62 has a plate length: LX. The plate length: LX of each trough support member 61, 62 is formed shorter than the shaft length: L1 of the rotation support shaft body 2 (plate length of the horizontal frame member 15: L1) (LX <L1).
As shown in FIGS. 1 to 9, 11 and 12, each trough support member 61, 62 (trough support member) has one support plate 61A, 62A flush with each other and the other support plate 61B. , 62B are installed side by side facing each other. The support members 61 and 62 are arranged in parallel between the other support plates 61B and 62B in the plate length direction RL (horizontal direction LR) and the orthogonal direction FR (front-rear direction FR) with a plate spacing. Orthogonal.

各トラフ載置板63,64は、例えば、金属(鉄、ステンレス等)の平板で形成される。各トラフ載置板63,64は、図1乃至図9、図11及び図12に示すように、トラフ支持材61,62上に配置される。各トラフ載置板63,64は、各トラフ支持材61,62の板長さ方向(左右方向LR)に間隔を隔てて配置される。トラフ載置板63は、各トラフ支持材61,62の板長さ方向において、各トラフ支持材61,62一方の各板長さ端61a,62a側に配置される。トラフ載置板64は、各トラフ支持材61,62の左右方向LRにおいて、各トラフ支持材61,62の他方の各板長さ端61b,62b側に配置される。各トラフ載置板63,64は、板裏平面を一方の各支持板61A,62Aに当接して、各トラフ支持材61,62上(各支持板61A,62A上)に固定される。各トラフ載置板63,64は、各トラフ支持材61,62の前後方向FRにおいて、各トラフ支持材61,62(各支持板61B,62B)から突出して配置される。 Each trough mounting plate 63, 64 is formed of, for example, a flat plate of metal (iron, stainless steel, etc.). The trough mounting plates 63 and 64 are arranged on the trough support members 61 and 62 as shown in FIGS. 1 to 9, 11 and 12. The trough mounting plates 63 and 64 are arranged at intervals in the plate length direction (left-right direction LR) of the trough support members 61 and 62. The trough mounting plate 63 is arranged on the plate length ends 61a and 62a of one of the trough support members 61 and 62 in the plate length direction of the trough support members 61 and 62. The trough mounting plate 64 is arranged on the other plate length ends 61b and 62b of the trough support members 61 and 62 in the left-right direction LR of the trough support members 61 and 62. Each trough mounting plate 63, 64 abuts the plate back plane on one of the support plates 61A, 62A, and is fixed on the trough support members 61, 62 (on each support plate 61A, 62A). The trough mounting plates 63 and 64 are arranged so as to project from the trough support members 61 and 62 (support plates 61B and 62B) in the front-rear direction FR of the trough support members 61 and 62.

回動筒体65は、例えば、金属(鉄、ステンレス等)の円筒体(円筒状)に形成される。回動筒体65は、図1乃至図9、図11、図12及び図17に示すように、回動支持軸体2の直径(外径)より僅かに大径の軸体嵌込み穴67(円形穴)、締付けスリット穴68、及び複数(一対)の締付け突出片69,70を有する。 The rotating cylinder 65 is formed in, for example, a cylindrical body (cylindrical shape) of metal (iron, stainless steel, etc.). As shown in FIGS. 1 to 9, 11, 12, and 17, the rotating cylinder 65 has a shaft fitting hole 67 having a diameter slightly larger than the diameter (outer diameter) of the rotating support shaft 2. It has (circular holes), tightening slit holes 68, and a plurality (pair) of tightening protrusions 69,70.

軸体嵌込み穴67は、図17に示すように、回動筒体65の両筒端に開口する。 As shown in FIG. 17, the shaft body fitting holes 67 are opened at both cylinder ends of the rotating cylinder body 65.

締付けスリット穴68は、図9、図11、図12及び図17に示すように、回動筒体65の円周方向にスリット幅HTを有して、軸体嵌込み穴67の穴中心線gの方向に延在される。締付けスリット穴68は、回動筒体65の両筒端に開口する。締付けスリット穴68は、軸体嵌込み穴67の穴中心線gと直交方向に回動筒体65を貫通して、回動筒体65の外周面65A及び軸体嵌込み穴67(内周面)に開口する。 As shown in FIGS. 9, 11, 12, and 17, the tightening slit hole 68 has a slit width HT in the circumferential direction of the rotating cylinder 65, and is the hole center line of the shaft fitting hole 67. It extends in the direction of g. The tightening slit holes 68 are opened at the ends of both cylinders of the rotating cylinder 65. The tightening slit hole 68 penetrates the rotating cylinder 65 in a direction orthogonal to the hole center line g of the shaft fitting hole 67, and the outer peripheral surface 65A of the rotating cylinder 65 and the shaft fitting hole 67 (inner circumference). Open to the surface).

各締付け突出片69,70は、図1乃至図9、図12及び図17に示すように、回動筒体65の外周面65Aに固定される。各締付け突出片69,70は、回動筒体65の円周方向に並列されて、回動筒体65の外周面65Aから径外方向に突出される。各締付け突出片69,70は、相互の間に締付けスリット穴68を位置して、締付けスリット穴68に連続して配置される。 As shown in FIGS. 1 to 9, 12 and 17, the tightening projecting pieces 69 and 70 are fixed to the outer peripheral surface 65A of the rotating cylinder 65. The tightening projecting pieces 69 and 70 are parallel to each other in the circumferential direction of the rotating cylinder 65, and project outward from the outer peripheral surface 65A of the rotating cylinder 65. The tightening projecting pieces 69 and 70 are arranged so as to have a tightening slit hole 68 between them and are continuously arranged in the tightening slit hole 68.

締付け突出片69は、図17に示すように、複数(一対)のネジ通し穴71を有し、各字ネジ通し穴71は、軸体嵌込み穴67の穴中心線gの方向に並列されて、穴中心線と直交方向において、締付け突出片69を貫通して形成される。 As shown in FIG. 17, the tightening protruding piece 69 has a plurality of (pair) screw through holes 71, and each character screw through hole 71 is arranged in parallel in the direction of the hole center line g of the shaft body fitting hole 67. It is formed so as to penetrate the tightening protrusion 69 in a direction orthogonal to the hole center line.

締付け突出片70は、図17に示すように、複数(一対)のネジ穴72を有し、各ネジ穴72は、各ネジ通し穴71に対向(対峙)して、締付け突出片70に配置される。各ネジ穴72は、軸体嵌込み穴67の穴中心線gの方向に並列されて、穴中心線gと直交方向において、締付け突出片70を貫通して形成される。 As shown in FIG. 17, the tightening protruding piece 70 has a plurality of (pair) screw holes 72, and each screw hole 72 is arranged in the tightening protruding piece 70 so as to face (oppose) each screw through hole 71. Will be done. Each screw hole 72 is formed in parallel in the direction of the hole center line g of the shaft body fitting hole 67 and penetrates the tightening protrusion 70 in the direction orthogonal to the hole center line g.

回動筒体65は、図1、図2、図5、図11、図12及び図17に示すように、軸体嵌込み穴67の穴中心線gを各トラフ支持材61,62の左右方向LRに向けて、各トラフ載置板63,64の間に配置される。回動筒体65は、図5、図8、図9、図11、図12及び図17に示すように、各トラフ支持材61,62の支持板61B,62Bの間に配置される。回動筒体65は、各締付け突出片69,70を各トラフ支持材61,62の左右方向LR及び前後方向FRと直交方向UD(上下方向UD)に向けて配置され、外周面65Aを各支持板61B,62Bに当接して配置される。回動筒体65は、各トラフ支持材61,62(支持板61B,62B)に固定される。 As shown in FIGS. 1, 2, 5, 11, 12, and 17, the rotating cylinder 65 has a hole center line g of the shaft body fitting hole 67 on the left and right of the trough support members 61 and 62. It is arranged between the trough mounting plates 63 and 64 in the direction LR. As shown in FIGS. 5, 8, 9, 11, 12, and 17, the rotating cylinder 65 is arranged between the support plates 61B and 62B of the trough support members 61 and 62. In the rotating cylinder 65, the tightening projecting pieces 69 and 70 are arranged so that the trough support members 61 and 62 are oriented in the horizontal direction LR and the front-rear direction FR and the orthogonal direction UD (vertical direction UD), and the outer peripheral surface 65A is provided. It is arranged in contact with the support plates 61B and 62B. The rotating cylinder 65 is fixed to the trough support members 61 and 62 (support plates 61B and 62B).

各ガイド穴75〜78は、図8、図11及び図12に示すように、各トラフ支持材61,62の前後方向FRにおいて、各支持板61B,62Bから突出する各トラフ載置板63,64に配置される。
各ガイド穴75,77は、図5に示すように、各トラフ支持材61,62の左右方向LRに間隔を隔てて対向(対峙)して、各トラフ載置板63,64に形成される。各ガイド穴76,78は、図5に示すように、各トラフ支持材61,62の左右方向LRに間隔を隔てて対向(対峙)して、各トラフ載置板63,64に形成される。
As shown in FIGS. 8, 11 and 12, each of the guide holes 75 to 78 is a trough mounting plate 63, which projects from the support plates 61B, 62B in the front-rear direction FR of the trough support members 61, 62. It is arranged at 64.
As shown in FIG. 5, the guide holes 75 and 77 are formed on the trough mounting plates 63 and 64 so as to face (oppose) the trough support members 61 and 62 in the left-right direction LR at intervals. .. As shown in FIG. 5, the guide holes 76 and 78 are formed in the trough mounting plates 63 and 64 so as to face (oppose) the trough support members 61 and 62 in the left-right direction LR at intervals. ..

各ガイド穴75,76は、図5及び図11に示すように、トラフ載置板63に形成される。各ガイド穴75,76は、各トラフ支持材61,62の前後方向FRに間隔を隔ててトラフ載置板63に配置される。各ガイド穴75,76は、各トラフ支持材61,62の上下方向UDにおいて、トラフ載置板63を貫通して形成される。 The guide holes 75 and 76 are formed in the trough mounting plate 63 as shown in FIGS. 5 and 11. The guide holes 75 and 76 are arranged in the trough mounting plate 63 at intervals in the front-rear direction FR of the trough support members 61 and 62. The guide holes 75 and 76 are formed so as to penetrate the trough mounting plate 63 in the vertical direction UD of the trough support members 61 and 62.

各ガイド穴77,78は、図5及び図12に示すように、トラフ載置板64に形成される。各ガイド穴77,78は、各トラフ支持材61,62の前後方向FRに間隔を隔ててトラフ載置板64に配置される。各ガイド穴77,78は、各トラフ支持材61,62の上下方向UDにおいて、トラフ載置板64を貫通して形成される。 The guide holes 77 and 78 are formed in the trough mounting plate 64 as shown in FIGS. 5 and 12. The guide holes 77 and 78 are arranged on the trough mounting plate 64 at intervals in the front-rear direction FR of the trough support members 61 and 62. The guide holes 77 and 78 are formed so as to penetrate the trough mounting plate 64 in the vertical UD of the trough support members 61 and 62.

トラフ支持体7は、図1、図2、図5乃至図5、図11及び図12に示すように、各垂直枠材16,17に移動間隔ε(間隔)を隔てて、各垂直枠材16,17の間に配置される。トラフ支持体7は、軸体嵌込み穴67の穴中心線gを回動支持軸体2の軸中心線aの方向(左右方向LR)に向けて配置される。トラフ支持体7は、回動筒体65を回動支持軸体2に外嵌して、回動支持軸体2の軸中心線aを中心として、回動支持軸体2に回動自在に配置(支持)される。
これにより、トラフ支持体7は、各垂直枠材16,17(各軸固定材18,19)の間において、回動支持軸体2の軸中心線aの方向(左右方向LR)に移動自在として、回動支持軸体2に配置される。
As shown in FIGS. 1, 5, 5, 11, and 12, the trough support 7 is provided with vertical frame members 16 and 17 separated by a movement interval ε (interval). It is placed between 16 and 17. The trough support 7 is arranged so that the hole center line g of the shaft body fitting hole 67 faces the direction of the shaft center line a of the rotation support shaft body 2 (left-right direction LR). The trough support body 7 has a rotating cylinder body 65 fitted onto the rotating support shaft body 2 so as to be rotatable around the axis center line a of the rotating support shaft body 2 to the rotating support shaft body 2. Be placed (supported).
As a result, the trough support 7 can move in the direction of the axis center line a of the rotation support shaft 2 (left-right direction LR) between the vertical frame members 16 and 17 (each shaft fixing material 18, 19). Is arranged on the rotation support shaft body 2.

支持体固定具8は、図1乃至図4、図6乃至図9、図11、図12及び図17に示すように、トラフ支持体7を回動支持軸体2に固定する。支持体固定具8は、例えは、金属(鉄、ステンレス等)のボルト79,80(支持体固定ボルト)を備える。各ボルト79,80は、ネジ軸81及び頭部82を有する。
各ボルト79,80は、図17に示すように、ネジ軸81を締付け突出片69の各ネジ通し穴71に挿通(貫通)し、更に、ネジ軸81を締付け突出片70の各ネジ穴72に螺着(螺入)して、回動筒体65(各締付け突出片69,70)に取付けられる。各ボルト79,80は、頭部82を締付け突出片69に当接して配置される。
The support fixture 8 fixes the trough support 7 to the rotary support shaft 2 as shown in FIGS. 1 to 4, 6 to 9, 11, 12, and 17. The support fixture 8 includes, for example, metal (iron, stainless steel, etc.) bolts 79, 80 (support fixing bolts). Each bolt 79, 80 has a screw shaft 81 and a head 82.
As shown in FIG. 17, each bolt 79, 80 inserts (penetrates) the screw shaft 81 into each screw through hole 71 of the tightening protrusion piece 69, and further inserts (penetrates) the screw shaft 81 into each screw hole 72 of the tightening protrusion piece 70. It is screwed (screwed) into the rotating cylinder 65 (each tightening projecting piece 69, 70). The bolts 79 and 80 are arranged so that the head 82 is brought into contact with the tightening protruding piece 69.

トラフ固定具9は、図1乃至図12、及び図14乃至図16に示すように、トラフ支持体7(各トラフ載置板63,64)に配置されて、ケーブルトラフYをトラフ支持体7(各トラフ載置板63,64)に固定する。
トラフ固定具9は、図1乃至図12に示すように、複数(4つ)のトラフ固定体83〜86を備える。
As shown in FIGS. 1 to 12 and 14 to 16, the trough fixture 9 is arranged on the trough support 7 (each trough mounting plate 63, 64), and the cable trough Y is attached to the trough support 7. It is fixed to (each trough mounting plate 63, 64).
As shown in FIGS. 1 to 12, the trough fixture 9 includes a plurality of (four) trough fixtures 83 to 86.

各トラフ固定体83〜86は、図14乃至図16に示すように、トラフ固定本体87、トラフ固定ボルト88及びトラフ固定ナット89を有して構成される。 As shown in FIGS. 14 to 16, each trough fixing body 83 to 86 includes a trough fixing main body 87, a trough fixing bolt 88, and a trough fixing nut 89.

トラフ固定本体87は、図14乃至図16に示すように、複数(一対)のトラフ固定板90,91及びボルト通し穴97を有して構成される。 As shown in FIGS. 14 to 16, the trough fixing main body 87 is configured to have a plurality of (pair) trough fixing plates 90, 91 and bolt through holes 97.

トラフ固定板90は、図14乃至図16に示すように、例えば、金属(鉄、ステンレス等)のL字曲げ板で形成されて、固定水平板92及び固定垂直板93を有する。
トラフ固定板91は、図14乃至図16に示すように、例えば、金属(鉄、ステンレス等)のL字曲げ板で形成されて、固定水平板94及び固定垂直板95を有する。
As shown in FIGS. 14 to 16, the trough fixing plate 90 is formed of, for example, an L-shaped bent plate made of metal (iron, stainless steel, etc.), and has a fixed horizontal plate 92 and a fixed vertical plate 93.
As shown in FIGS. 14 to 16, the trough fixing plate 91 is formed of, for example, an L-shaped bent plate made of metal (iron, stainless steel, etc.), and has a fixed horizontal plate 94 and a fixed vertical plate 95.

トラフ固定板90は、図14乃至図16に示すように、固定水平板92をトラフ固定板91の固定水平板94に平行に配置して、固定水平板92をトラフ固定板91の固定垂直板95に当接して配置される。
トラフ固定板91は、図14乃至図16に示すように、固定水平板94をトラフ固定板90の固定水平板92に平行に配置して、固定水平板94をトラフ固定板90の固定垂直板93に当接して配置される。
In the trough fixing plate 90, as shown in FIGS. 14 to 16, the fixed horizontal plate 92 is arranged parallel to the fixed horizontal plate 94 of the trough fixing plate 91, and the fixed horizontal plate 92 is arranged as a fixed vertical plate of the trough fixing plate 91. It is placed in contact with 95.
In the trough fixing plate 91, as shown in FIGS. 14 to 16, the fixed horizontal plate 94 is arranged in parallel with the fixed horizontal plate 92 of the trough fixing plate 90, and the fixed horizontal plate 94 is placed in the fixed vertical plate of the trough fixing plate 90. It is placed in contact with 93.

各トラフ固定板90,91は、図14乃至図16に示すように、各固定水平板92,94を各固定垂直板93,95の板端93a,95aに間隔δを隔てて各固定垂直板93,95に固定される。
これにより、各トラフ固定体83〜86(トラフ固定本体87)は、図14乃至図16に示すように、トラフ固定板91の固定垂直板95(固定垂直板95の外側)に挟持平面SP(挟持面)、及びトラフ固定板91の固定水平板94(固定水平板94の外側)に挟持平面SPと直交(交差)する押え平面OP(押え面)を有する。
As shown in FIGS. 14 to 16, the trough fixing plates 90 and 91 have the fixed horizontal plates 92 and 94 separated from the plate ends 93a and 95a of the fixed vertical plates 93 and 95 at intervals of δ. It is fixed at 93 and 95.
As a result, the trough fixing bodies 83 to 86 (trough fixing main body 87) are placed on the fixed vertical plate 95 (outside of the fixed vertical plate 95) of the trough fixing plate 91 as shown in FIGS. The holding plane) and the fixed horizontal plate 94 (outside of the fixed horizontal plate 94) of the trough fixing plate 91 have a holding plane OP (holding surface) orthogonal to (crossing) the holding plane SP.

各トラフ固定体83〜86(トラフ固定本体87)は、図14乃至図16に示すように、トラフ固定板90の固定垂直板93をトラフ固定板91の固定水平板94から突出した突起片96(突起)を有する。突起片96は、トラフ固定板91の固定水平板94(押え平面OP)に間隔δ(突出間隔)を隔てて、固定水平板94から突出する。 In each trough fixing body 83 to 86 (trough fixing main body 87), as shown in FIGS. 14 to 16, the projection piece 96 in which the fixed vertical plate 93 of the trough fixing plate 90 protrudes from the fixed horizontal plate 94 of the trough fixing plate 91 Has (protrusions). The protrusion 96 projects from the fixed horizontal plate 94 (pressing plane OP) of the trough fixing plate 91 with an interval δ (projection interval).

ボルト通し穴97は、図11及び図12に示すように、各トラフ固定板90,91の固定水平板92,94の中心に配置される。ボルト通し穴97は、各固定水平板92,94と直交方向において、各固定水平板92,94を貫通して、各トラフ固定体83〜86(トラフ固定本体87)に形成される。 As shown in FIGS. 11 and 12, the bolt through hole 97 is arranged at the center of the fixed horizontal plates 92 and 94 of the trough fixing plates 90 and 91. The bolt through holes 97 pass through the fixed horizontal plates 92 and 94 in the direction orthogonal to the fixed horizontal plates 92 and 94, and are formed in the trough fixing bodies 83 to 86 (trough fixing main body 87).

各トラフ固定体83,84は、図1乃至図3、図7、図12及び図15に示すように、前後方向FRに間隔を隔ててトラフ載置板63上(トラフ支持体7)に配置される。各トラフ固定体83,84は、ボルト通し穴97をトラフ載置板63の各ガイド穴75,76に位置して、トラフ載置板63上に配置される。
各トラフ固定体83,84は、図12及び図14(a)に示すように、挟持平面SP(固定垂直板95)を右側の垂直枠材17に向け、及び押え平面OP(固定水平板94)をトラフ載置板63に向けて、トラフ載置板63上に配置される。
これにより、各トラフ固定体83,84は、突起片96をトラフ載置板63に当接した状態において、トラフ載置板63及び押え平面OP(固定水平板94)の間にトラフ隙間δ(間隔δ)を有して、トラフ載置板63上に配置される。
As shown in FIGS. 1 to 3, 7, 12, and 15, the trough fixing bodies 83 and 84 are arranged on the trough mounting plate 63 (trough support 7) at intervals in the front-rear direction FR. Will be done. The trough fixing bodies 83 and 84 are arranged on the trough mounting plate 63 by locating the bolt through holes 97 in the guide holes 75 and 76 of the trough mounting plate 63.
As shown in FIGS. 12 and 14A, each trough fixed body 83, 84 has a holding plane SP (fixed vertical plate 95) directed toward the vertical frame member 17 on the right side, and a holding plane OP (fixed horizontal plate 94). ) Is arranged on the trough mounting plate 63 with the) facing the trough mounting plate 63.
As a result, each of the trough fixing bodies 83 and 84 has a trough gap δ (fixed horizontal plate 94) between the trough mounting plate 63 and the holding plane OP (fixed horizontal plate 94) in a state where the protrusion 96 is in contact with the trough mounting plate 63. It is arranged on the trough mounting plate 63 with an interval δ).

各トラフ固定体85,86は、図11及び図14(b)に示すように、前後方向FRに間隔を隔てて、トラフ載置板64上(トラフ支持体7)に配置される。各トラフ固定体85,86は、ボルト通し穴97をトラフ載置板64の各ガイド穴77,78に位置して、トラフ載置板64上に配置される。
各トラフ固定体85,86は、図11及び図14(b)に示すように、挟持平面SP(固定垂直板95)を左側の垂直枠材16に向け、及び押え平面OP(固定水平板94)をトラフ載置板64に向けて、トラフ載置板64上に配置される。
これにより、各トラフ固定体85,86は、突起片96をトラフ載置板64に当接した状態において、トラフ載置板64及び押え平面OP(固定水平板94)の間にトラフ隙間δ(間隔δ)を有して、トラフ載置板64上に配置される。
各トラフ固定体83,85は、図1、図7及び図10に示すように、左右方向LRに間隔を隔てて並設されて、挟持平面SPを対向(対峙)して配置される。
各トラフ固定体84,86は、図2及び図7に示すように、左右方向LRに間隔を隔てて並設されて、挟持平面SPを対向(対峙)して配置される。
As shown in FIGS. 11 and 14 (b), the trough fixing bodies 85 and 86 are arranged on the trough mounting plate 64 (trough support 7) at intervals in the front-rear direction FR. The trough fixing bodies 85 and 86 are arranged on the trough mounting plate 64 by locating the bolt through holes 97 in the guide holes 77 and 78 of the trough mounting plate 64.
In each trough fixed body 85, 86, as shown in FIGS. 11 and 14 (b), the sandwiching plane SP (fixed vertical plate 95) is directed toward the left vertical frame member 16, and the holding plane OP (fixed horizontal plate 94). ) Is directed on the trough mounting plate 64 and is arranged on the trough mounting plate 64.
As a result, each of the trough fixing bodies 85 and 86 has a trough gap δ (fixed horizontal plate 94) between the trough mounting plate 64 and the holding plane OP (fixed horizontal plate 94) in a state where the protrusion 96 is in contact with the trough mounting plate 64. It is arranged on the trough mounting plate 64 with an interval δ).
As shown in FIGS. 1, 7, and 10, the trough fixing bodies 83 and 85 are arranged side by side at intervals in the left-right direction LR, and are arranged so as to face (oppose) the sandwiching plane SP.
As shown in FIGS. 2 and 7, the trough fixing bodies 84 and 86 are arranged side by side at intervals in the left-right direction LR, and are arranged so as to face (oppose) the sandwiching plane SP.

トラフ固定ボルト88は、図11、図12、及び図14乃至図16に示すように、金属(鉄、ステンレス等)で形成されて、ネジ軸98及び頭部99を有する。
各トラフ固定ボルト88は、図11及び図12に示すように、ネジ軸98を各トラフ固定体83〜86のボルト通し穴97、及び各ガイド穴75〜78の順に挿通(貫通)して、各トラフ載置板63,64から水平枠材15側(水平板15A側)に突出して配置される。
各トラフ固定ボルト88は、頭部99をトラフ固定板90の固定水平板92に当接して配置される。
The trough fixing bolt 88 is made of metal (iron, stainless steel, etc.) and has a screw shaft 98 and a head 99, as shown in FIGS. 11, 12, and 14 to 16.
As shown in FIGS. 11 and 12, each trough fixing bolt 88 is inserted (penetrated) through the screw shaft 98 in the order of the bolt through holes 97 of the trough fixing bodies 83 to 86 and the guide holes 75 to 78. It is arranged so as to project from the trough mounting plates 63 and 64 to the horizontal frame member 15 side (horizontal plate 15A side).
Each trough fixing bolt 88 is arranged so that the head 99 is in contact with the fixed horizontal plate 92 of the trough fixing plate 90.

トラフ固定ナット89は、図11及び図12に示すように、金属(鉄、ステンレス等)で形成されて、各トラフ載置板63,64、及び水平枠材15の間に配置される。
各トラフ固定ナット89は、各トラフ載置板63,64から突出した各トラフ固定ボルト88のネジ軸98に螺着して、各トラフ載置板63,64(板裏平面)に当接自在に配置される。
As shown in FIGS. 11 and 12, the trough fixing nut 89 is made of metal (iron, stainless steel, etc.) and is arranged between the trough mounting plates 63 and 64 and the horizontal frame member 15.
Each trough fixing nut 89 is screwed to the screw shaft 98 of each trough fixing bolt 88 protruding from each trough mounting plate 63, 64, and can be brought into contact with each trough mounting plate 63, 64 (plate back plane). Is placed in.

位置調整具10は、枠体1(水平枠材15)に配置されて、上下方向UDにおいて、枠体1の位置(枠体1の高さ位置)を調整する。
位置調整具10は、図1乃至図5、図7、図9及び図11に示すように、ネジ脚101、上側の固定ナット102(上固定ナット)、下側の固定ナット103(下固定ナット)、及び回止めナット104を備える。
The position adjuster 10 is arranged on the frame body 1 (horizontal frame member 15), and adjusts the position of the frame body 1 (height position of the frame body 1) in the vertical direction UD.
As shown in FIGS. 1 to 5, FIG. 7, FIG. 9 and FIG. 11, the position adjuster 10 includes a screw leg 101, an upper fixing nut 102 (upper fixing nut), and a lower fixing nut 103 (lower fixing nut). ), And a turn stop nut 104.

ネジ脚101は、図1乃至図5、図7、図9及び図11に示すように、例えば、金属(鉄、ステンレス等)で形成されて、調整ネジ軸105、及び座板106を有する。座板106は、板表平面Fa及び板裏平面Fbを調整ネジ軸105の軸中心線kに直交して、調整ネジ軸105の一方の軸端Ja(一方のネジ軸端)に固定される。 As shown in FIGS. 1 to 5, 7, 9 and 11, for example, the screw leg 101 is made of metal (iron, stainless steel, etc.) and has an adjusting screw shaft 105 and a seat plate 106. The seat plate 106 is fixed to one shaft end Ja (one screw shaft end) of the adjustment screw shaft 105 so that the plate front plane Fa and the plate back plane Fb are orthogonal to the axis center line k of the adjustment screw shaft 105. ..

ネジ脚101は、図1、図2、図5及び図7に示すように、右側の垂直枠材17側(他方の垂直枠材側)の水平枠材15(水平板15A)に配置される。 As shown in FIGS. 1, 2, 5, and 7, the screw legs 101 are arranged on the horizontal frame member 15 (horizontal plate 15A) on the right side of the vertical frame member 17 (the other vertical frame member side). ..

ネジ脚101において、調整ネジ軸105は、図1乃至図5、図7、図9及び図11に示すように、軸中心線k(ネジ軸中心線)を水平枠材15(水平板15A)と直交方向UD(上下方向UD)に向けて配置される。調整ネジ軸105は、図2、図9及び図11に示すように、上下方向UDに移動自在に、脚ガイド穴20(水平板15A)を貫通して、及び他方の軸端Jb(他方のネジ軸端)を水平枠材15及び回動支持軸体2の間に突出して配置される。
これにより、ネジ脚101は、水平枠材15及び回動支持軸体2の間に調整ネジ軸105の他方の軸端Jbが配置され、枠体1の外側(水平枠材15の下方)に調整ネジ軸105の他方の軸端Ja及び座板106が配置される。
In the screw leg 101, the adjusting screw shaft 105 has a shaft center line k (screw shaft center line) as a horizontal frame member 15 (horizontal plate 15A) as shown in FIGS. 1 to 5, 7, 9, and 11. And is arranged in the direction perpendicular to UD (vertical direction UD). As shown in FIGS. 2, 9 and 11, the adjusting screw shaft 105 penetrates the leg guide hole 20 (horizontal plate 15A) so as to be movable in the vertical direction UD, and the other shaft end Jb (the other). The end of the screw shaft) is projected and arranged between the horizontal frame member 15 and the rotation support shaft body 2.
As a result, in the screw leg 101, the other shaft end Jb of the adjusting screw shaft 105 is arranged between the horizontal frame member 15 and the rotation support shaft body 2, and the screw leg 101 is located outside the frame body 1 (below the horizontal frame member 15). The other shaft end Ja of the adjusting screw shaft 105 and the seat plate 106 are arranged.

上側の固定ナット102(上側の固定部材)は、図1、図2、図7、図9及び図11に示すように、金属(鉄、ステンレス等)で形成されて、調整ネジ軸105の他方の軸端Jb及び水平枠材15(水平板15A)の間の調整ネジ軸105に螺着されて配置される。
上側の固定ナット102は、図1、図2、図7及び図11に示すように、水平枠材15(水平板15A)に当接自在に配置される。
The upper fixing nut 102 (upper fixing member) is made of metal (iron, stainless steel, etc.) as shown in FIGS. 1, 2, 7, 9, and 11, and is the other side of the adjusting screw shaft 105. Is screwed onto the adjusting screw shaft 105 between the shaft end Jb and the horizontal frame member 15 (horizontal plate 15A).
As shown in FIGS. 1, 2, 7, and 11, the upper fixing nut 102 is arranged so as to be in contact with the horizontal frame member 15 (horizontal plate 15A).

下側の固定ナット103(下側の固定部材)は、図1乃至図4、図9及び図11に示すように、金属(鉄、ステンレス等)で形成されて、座板106及び水平枠材15(水平板15A)の間の調整ネジ軸105に螺着して配置される。下側の固定ナット103は、水平枠材15(水平板15A)に当接自在に配置される。 The lower fixing nut 103 (lower fixing member) is made of metal (iron, stainless steel, etc.) as shown in FIGS. 1 to 4, 9 and 11, and has a seat plate 106 and a horizontal frame member. It is screwed onto the adjusting screw shaft 105 between 15 (horizontal plate 15A) and arranged. The lower fixing nut 103 is arranged so as to be in contact with the horizontal frame member 15 (horizontal plate 15A).

回止めナット104は、図1乃至図4、図7、図9及び図11に示すように、金属(鉄、ステンレス等)で形成されて、座板106及び下側の固定ナット103の間の調整ネジ軸105に螺着して配置される。回止めナット104は、下側の固定ナット103に当接自在にされる。 As shown in FIGS. 1 to 4, 7, 9 and 11, the turning nut 104 is made of metal (iron, stainless steel, etc.) and is located between the seat plate 106 and the lower fixing nut 103. It is screwed onto the adjusting screw shaft 105 and arranged. The rotation stop nut 104 is made abuttable to the lower fixing nut 103.

図18乃至図26において、トラフ支持器具Xは、支持杭Zと共に、ケーブルトラフYを敷設するのに使用される。
ケーブルトラフYの敷設する箇所SO(場所)は、図18、図20、図23及び図26に示すように、例えば、鉄道路線RWの側方である。
In FIGS. 18-26, the trough support device X is used to lay the cable trough Y together with the support pile Z.
The location SO (location) where the cable trough Y is laid is, for example, the side of the railway line RW, as shown in FIGS. 18, 20, 23, and 26.

ケーブルトラフY(トラフ)は、図23乃至図26に示すように、例えば、トラフ長さ:LTの長尺の箱体に形成されて、トラフ本体111、トラフ蓋板112、左側の固定突起113(左固定突起)、及び右側の固定突起114(右固定突起)を備える。トラフ本体111は、四角形の箱体に形成され、底側の水平壁板116(底水平壁板)、左側の垂直壁板117(左垂直壁板)、及び右側の垂直壁板118(右垂直壁板)を有する。各垂直壁板117,118は、水平壁板116の各壁幅端に配置されて、水平壁板116に直交して一体に形成される。トラフ本体111は、水平壁板116と直交方向において、各垂直壁板117,118の壁端に開口119を有する。
トラフ蓋板112は、開口119を閉塞して、トラフ本体111(各垂直壁板117,118)に取付けられる。ケーブルトラフYは、例えば、樹脂で形成される。
As shown in FIGS. 23 to 26, the cable trough Y (trough) is formed in, for example, a long box having a trough length: LT, and has a trough body 111, a trough lid plate 112, and a fixing protrusion 113 on the left side. (Left fixing protrusion) and right fixing protrusion 114 (right fixing protrusion) are provided. The trough body 111 is formed in a quadrangular box body, and has a bottom horizontal wall plate 116 (bottom horizontal wall plate), a left vertical wall plate 117 (left vertical wall plate), and a right vertical wall plate 118 (right vertical). Wall board). The vertical wall plates 117 and 118 are arranged at each wall width end of the horizontal wall plate 116 and are integrally formed orthogonal to the horizontal wall plate 116. The trough body 111 has an opening 119 at the wall end of each of the vertical wall plates 117 and 118 in the direction orthogonal to the horizontal wall plate 116.
The trough lid plate 112 closes the opening 119 and is attached to the trough main body 111 (each vertical wall plate 117, 118). The cable trough Y is made of, for example, a resin.

各固定突起113,114は、図23乃至図26に示すように、トラフ本体111と一体に形成される。固定突起113は、水平壁板116に連続して形成され、左側の垂直壁板117から突出される。固定突起114は、水平壁板116に連続して形成され、右側の垂直壁板118から突出される。
各固定突起113,114は、図25及び図26に示すように、各垂直壁板117,118と直交方向に突出量:βを有し、及び水平壁板116と直交方向に突出高さ:γを有して、各垂直壁板117,118から突出される。各固定突起113,114の突出高さ:γは、トラフ隙間δより高く(大きく)される(δ<γ)。
As shown in FIGS. 23 to 26, the fixing protrusions 113 and 114 are integrally formed with the trough main body 111. The fixing protrusion 113 is continuously formed on the horizontal wall plate 116 and protrudes from the vertical wall plate 117 on the left side. The fixing protrusion 114 is continuously formed on the horizontal wall plate 116 and protrudes from the vertical wall plate 118 on the right side.
As shown in FIGS. 25 and 26, each of the fixed protrusions 113 and 114 has a protrusion amount: β in the direction orthogonal to the vertical wall plates 117 and 118, and a protrusion height: β in the direction orthogonal to the horizontal wall plate 116. It has γ and protrudes from each of the vertical wall plates 117 and 118. Protrusion height of each fixed protrusion 113, 114: γ is made higher (larger) than the trough gap δ (δ <γ).

ケーブルトラフYの敷設箇所SOにおいて、支持杭Zは、図18乃至図20、図22、図23及び図26に示すように、金属(鉄、ステンレス等)の丸棒パイプであって、杭嵌込み穴41の直径:Dより僅かに小さい小径の円筒体に形成される。支持杭Zの下端側Zaは、鋭角形に形成される。
支持杭Zは、下端側Zaからトラフ敷設箇所SO(鉄道路線RWの側方)に打込まれる。支持杭Zは、途中までトラフ敷設箇所SO(地中)に打込まれる。
これにより、支持杭Zは、図18、図20、図23及び図26に示すように、上下方向UDにおいて、地面から突出して立設される。
At the laying point SO of the cable trough Y, the support pile Z is a metal (iron, stainless steel, etc.) round bar pipe as shown in FIGS. 18 to 20, 22, 23, and 26, and is pile-fitted. Diameter of insertion hole 41: It is formed in a cylindrical body having a diameter slightly smaller than D. The lower end side Za of the support pile Z is formed in an acute angle shape.
The support pile Z is driven into the trough laying location SO (side of the railway line RW) from the lower end side Za. The support pile Z is driven halfway into the trough laying location SO (underground).
As a result, the support pile Z is erected so as to project from the ground in the vertical direction UD, as shown in FIGS. 18, 20, 23 and 26.

支持杭Zの打込みに続いて、支持杭Zにトラフ支持器具Xを設置する。
トラフ支持器具Xは、図18乃至図20、図20、図22、図23及び図26に示すように、支持杭Zの上端から下側の杭案内筒体5、杭嵌込み筒体3、及び上側の杭案内筒体4の順に、支持杭Zを嵌込んで配置される。
これにより、トラフ支持器具Xにおいて、杭嵌込み筒体3、及び各杭案内筒体4,5は、トラフ敷設開所SOに打込んだ支持杭Zに外嵌されて、支持杭Zの杭中心線mの方向(上下方向UD)に移動自在に、支持杭Zを杭嵌込み穴41、及び各案内穴48,49に挿通する。
トラフ支持器具Xは、図19及び図22に示すように、支持杭Zを案内穴49、杭嵌込み穴41及び案内穴48の順に挿通(貫通)して配置される。
Following the driving of the support pile Z, the trough support device X is installed on the support pile Z.
As shown in FIGS. 18 to 20, FIG. 20, FIG. 22, FIG. 23, and FIG. 26, the trough support device X includes a pile guide cylinder 5 and a pile fitting cylinder 3 below the upper end of the support pile Z. The support pile Z is fitted and arranged in the order of the upper pile guide cylinder 4 and the upper pile guide cylinder 4.
As a result, in the trough support device X, the pile fitting cylinder 3 and the pile guide cylinders 4 and 5 are externally fitted to the support pile Z driven into the trough laying opening SO, and the pile center of the support pile Z. The support pile Z is inserted into the pile fitting hole 41 and the guide holes 48 and 49 so as to be movable in the direction of the line m (vertical direction UD).
As shown in FIGS. 19 and 22, the trough support device X is arranged by inserting (penetrating) the support pile Z in the order of the guide hole 49, the pile fitting hole 41, and the guide hole 48.

杭嵌込み筒体3に支持杭Zを嵌込むと、トラフ支持器具Xは、図20及び図21に示すように、位置調整具10によって枠体1の位置(枠体1の高さ位置)を調整する。
位置調整具10において、各固定ナット102,103、及び回止めナット104をネジ脚101の調整ネジ軸105に対して回動(回転)して、枠体1の水平枠材15(水平板15A)から離間する。
これにより、ネジ脚101は、上下方向UDにおいて、枠体1に対して移動自在にされ、枠体1は、上下方向UDにおいて、ネジ脚101に対して移動自在にされる。
When the support pile Z is fitted into the pile fitting cylinder 3, the trough support device X is moved to the position of the frame 1 by the position adjuster 10 (height position of the frame 1) as shown in FIGS. 20 and 21. To adjust.
In the position adjuster 10, each of the fixing nuts 102, 103 and the turning nut 104 is rotated (rotated) with respect to the adjusting screw shaft 105 of the screw leg 101, and the horizontal frame material 15 (horizontal plate 15A) of the frame body 1 is rotated. ).
As a result, the screw leg 101 is made movable with respect to the frame body 1 in the vertical direction UD, and the frame body 1 is made movable with respect to the screw leg 101 in the vertical direction UD.

枠体1を移動自在にすると、トラフ支持器具Xのネジ脚101は、図22に示すように、座板106(板裏平面Fb)をトラフ敷設箇所SOの地面に載置(当接)して、トラフ敷設開所SOに立設される。 When the frame body 1 is made movable, the screw legs 101 of the trough support device X place (contact) the seat plate 106 (plate back plane Fb) on the ground of the trough laying location SO, as shown in FIG. It will be erected at the trough laying opening SO.

ネジ脚101をトラフ敷設箇所SOに立設すると、トラフ支持器具Xの枠体1を上下方向UDに移動して、枠体1及びトラフ支持体7の高さ位置(上下方向UDの位置)を調整する。
杭嵌込み筒体3、及び各杭案内筒体4,5は、図19及び図22に示すように、トラフ支持器具Xの移動に伴って、杭嵌込み穴41、各案内穴48,49及び支持杭Zによって案内されながら、上下方向UD(支持杭Zの杭中心線mの方向)に移動される。
トラフ支持器具Xにおいて、枠体1は、図21に示すように、水平枠材15(水平板15A)の脚ガイド穴20及び調整ネジ軸105によって案内されながら、ネジ脚101に対して上下方向UDに移動される。
これにより、枠体1及びトラフ支持体7は、上下方向UD(杭中心線mの方向)において、支持杭Zに対して任意の位置に高さ調整される。
When the screw leg 101 is erected at the trough laying location SO, the frame body 1 of the trough support device X is moved in the vertical direction UD, and the height position of the frame body 1 and the trough support 7 (the position of the vertical direction UD) is set. adjust.
As shown in FIGS. 19 and 22, the pile fitting cylinder 3 and the pile guide cylinders 4 and 5 have a pile fitting hole 41 and each guide hole 48, 49 as the trough support device X moves. And while being guided by the support pile Z, it is moved in the vertical direction UD (direction of the pile center line m of the support pile Z).
In the trough support device X, as shown in FIG. 21, the frame body 1 is guided in the vertical direction with respect to the screw legs 101 while being guided by the leg guide holes 20 and the adjusting screw shaft 105 of the horizontal frame member 15 (horizontal plate 15A). Moved to UD.
As a result, the heights of the frame body 1 and the trough support 7 are adjusted to arbitrary positions with respect to the support pile Z in the vertical direction UD (direction of the pile center line m).

枠体1(トラフ支持体7)の高さ調整すると、各固定ナット102,103を回動(回転)して、水平枠材15(水平板15A)に当接する。
各固定ナット102,103は、図21に示すように、上下方向UD(調整ネジ軸105の軸中心線kの方向)から水平枠材15の水平板15Aを挟持して、ネジ脚101を枠体1(水平枠材15)に固定する。
回止めナット104を回動(回転)して、下側の固定ナット103に押付ける。これにより、回止めナット104は、下側の固定ナット103の回動(回転)を止める。
When the height of the frame body 1 (trough support 7) is adjusted, the fixing nuts 102 and 103 are rotated (rotated) to come into contact with the horizontal frame member 15 (horizontal plate 15A).
As shown in FIG. 21, the fixing nuts 102 and 103 sandwich the horizontal plate 15A of the horizontal frame member 15 from the vertical direction UD (direction of the axis center line k of the adjusting screw shaft 105) to frame the screw legs 101. It is fixed to the body 1 (horizontal frame material 15).
The rotation stop nut 104 is rotated (rotated) and pressed against the lower fixing nut 103. As a result, the rotation stop nut 104 stops the rotation (rotation) of the lower fixing nut 103.

ネジ脚101を枠材1に固定すると、トラフ支持器具Xの各ボルト51,52(筒体固定具6)を回動(回転)して、杭嵌込み筒体3(枠体1)を支持杭Zに固定する。
杭嵌込み筒体3は、図19及び図22に示すように、各ボルト51,52の回動によって、杭嵌込み穴41の直径:Dを狭めつつ、支持杭Zに当接、及び押付けられて、支持杭Zに固定される。
これにより、トラフ支持器具Xは、トラフ敷設箇所SOに打込んだ支持枠Zに固定され、及びトラフ敷設箇所SOの地面に立設されたネジ脚101に固定されて、トラフ敷設箇所SO(地面)及び支持杭Zに設置される。
When the screw legs 101 are fixed to the frame material 1, the bolts 51 and 52 (cylinder fixing tool 6) of the trough support device X are rotated (rotated) to support the pile fitting cylinder 3 (frame 1). Fix to pile Z.
As shown in FIGS. 19 and 22, the pile fitting cylinder 3 abuts and presses against the support pile Z while narrowing the diameter: D of the pile fitting hole 41 by rotating the bolts 51 and 52. And fixed to the support pile Z.
As a result, the trough support device X is fixed to the support frame Z driven into the trough laying location SO, and is fixed to the screw legs 101 erected on the ground of the trough laying location SO, and is fixed to the trough laying location SO (ground). ) And the support pile Z.

トラフ支持器具Xを支持杭Zに設置すると、トラフ支持器具Xは、図18乃至図20、及び図26に示すように、トラフ支持体7の傾斜位置(傾斜角度)を鉄道路線RWの傾斜に調整する。
トラフ支持器具Xにおいて、トラフ支持体7は、図19に示すように、回動支持軸体2の軸中心線aを中心として回動して傾斜される。
これにより、トラフ支持体7は、回動支持軸体2及び回動筒体65によって案内されながら、回動支持軸体2の円周方向の任意の位置に調整される。
トラフ支持器具Xにおいて、トラフ支持体7は、図20及び図24に示すように、傾斜角度の調整と共に、左右方向LR(回動支持軸体2の軸中心線aの方向)の位置を調整する。
トラフ支持体7は、左右方向LRの各垂直枠材16,17の間において、回動支持軸体2に沿って移動される。
これにより、トラフ支持体7は、回動支持軸体2及び回動筒体65によって案内されながら、左右方向LR(回動支持軸体2の軸中心線aの方向)の任意の位置に調整される。
When the trough support device X is installed on the support pile Z, the trough support device X sets the tilt position (tilt angle) of the trough support 7 to the slope of the railway line RW as shown in FIGS. 18 to 20 and 26. adjust.
In the trough support device X, as shown in FIG. 19, the trough support 7 is rotated and tilted about the axis center line a of the rotation support shaft body 2.
As a result, the trough support 7 is adjusted to an arbitrary position in the circumferential direction of the rotation support shaft 2 while being guided by the rotation support shaft 2 and the rotation cylinder 65.
In the trough support device X, as shown in FIGS. 20 and 24, the trough support 7 adjusts the tilt angle and the position of the LR in the left-right direction (direction of the axis center line a of the rotation support shaft 2). To do.
The trough support 7 is moved along the rotation support shaft 2 between the vertical frame members 16 and 17 in the left-right direction LR.
As a result, the trough support 7 is adjusted to an arbitrary position in the left-right direction LR (direction of the axis center line a of the rotation support shaft 2) while being guided by the rotation support shaft 2 and the rotation cylinder 65. Will be done.

トラフ支持体7の調整をすると、トラフ支持器具Xは、図17、図19及び図24に示すように、各ボルト79,80(トラフ固定具9)を回動して、トラフ支持体7を回動支持軸体2に固定する。
回動筒体65は、図17に示すように、各ボルト79,80の回動によって、軸体嵌込み穴67の直径を狭めつつ、回動支持軸体2に当接、及び押付けられて、回動支持軸体2に固定される。
When the trough support 7 is adjusted, the trough support device X rotates each of the bolts 79 and 80 (trough fixture 9) to move the trough support 7 as shown in FIGS. 17, 19 and 24. It is fixed to the rotation support shaft body 2.
As shown in FIG. 17, the rotating cylinder 65 is brought into contact with and pressed against the rotating support shaft 2 while narrowing the diameter of the shaft fitting hole 67 by the rotation of the bolts 79 and 80. , Fixed to the rotation support shaft body 2.

トラフ支持体7を回動支持軸体2に固定すると、ケーブルトラフYをトラフ支持体7に載置して、トラフ固定具9によってトラフ支持体7に固定する。
ケーブルトラフYは、図23乃至図26に示すように、水平壁板116からトラフ支持体7上(各トラフ載置板63,64上)に載置される。ケーブルトラフYは、図26に示すように、トラフ長さ:LTの中央部を各トラフ載置板63,64上に載置して配置される。
ケーブルトラフYは、各トラフ固定体83〜86のトラフ隙間δに、各固定突起113,114を挿入して、各トラフ載置板63,64上に載置される。
ケーブルトラフYの各固定突起113,114は、図25に示すように、各トラフ固定体83〜86の押え平面OP(固定水平板94)及び各トラフ載置板63,64の間(トラフ隙間δ)に配置されて、押え平面OP及び各トラフ載置板63,64に当接される。
ケーブルトラフYは、図25に示すように、各トラフ固定体83〜86の挟持平面SP(固定垂直板95)に各垂直壁板117,118を当接して、各トラフ載置板63,64上に載置される。
これにより、各トラフ固定体83〜86は、押え平面OPを各固定突起113,114に当接して、各トラフ載置板63,64の間に各固定突起113,114を配置する。
各トラフ固定体83,85は、図23乃至図26に示すように、左右方向LRにおいて、各挟持平面SPを各垂直壁板117,118に当接して、各挟持平面SPの間にトラフ本体111を配置する。
各トラフ固定体84,86は、図23乃至図26に示すように、左右方向LRにおいて、各挟持平面SPを各垂直壁板117,118に当接して、各挟持平面SPの間にトラフ本体111を配置する。
このように、各トラフ固定体83〜86は、左右方向LRにおいて、各挟持平面SPによってトラフ本体111を挟持し、及び上下方向UDにおいて、押え平面OP及び各トラフ載置板63,64によって各固定突起113,114を挟持する。
When the trough support 7 is fixed to the rotary support shaft 2, the cable trough Y is placed on the trough support 7 and fixed to the trough support 7 by the trough fixture 9.
As shown in FIGS. 23 to 26, the cable trough Y is mounted on the trough support 7 (on the trough mounting plates 63 and 64) from the horizontal wall plate 116. As shown in FIG. 26, the cable trough Y is arranged by mounting the central portion of the trough length: LT on the trough mounting plates 63 and 64.
The cable trough Y is mounted on the trough mounting plates 63 and 64 by inserting the fixing protrusions 113 and 114 into the trough gaps δ of the trough fixing bodies 83 to 86.
As shown in FIG. 25, the fixing protrusions 113 and 114 of the cable trough Y are between the holding plane OP (fixed horizontal plate 94) of the trough fixing bodies 83 to 86 and the trough mounting plates 63 and 64 (trough gap). It is arranged in δ) and comes into contact with the holding plane OP and the trough mounting plates 63 and 64.
As shown in FIG. 25, the cable trough Y abuts the vertical wall plates 117 and 118 on the sandwiching plane SP (fixed vertical plate 95) of the trough fixed bodies 83 to 86, and the trough mounting plates 63 and 64. Placed on top.
As a result, each of the trough fixing bodies 83 to 86 abuts the pressing plane OP against the fixing protrusions 113 and 114, and arranges the fixing protrusions 113 and 114 between the trough mounting plates 63 and 64.
As shown in FIGS. 23 to 26, each trough fixing body 83, 85 abuts each holding plane SP on each vertical wall plate 117, 118 in the left-right direction LR, and the trough main body is between the holding plane SPs. Place 111.
As shown in FIGS. 23 to 26, each trough fixing body 84, 86 abuts each holding plane SP on each vertical wall plate 117, 118 in the left-right direction LR, and the trough main body is between the holding plane SPs. Place 111.
In this way, each trough fixing body 83 to 86 sandwiches the trough main body 111 by each holding plane SP in the left-right direction LR, and in the vertical direction UD by the holding plane OP and each trough mounting plate 63, 64, respectively. The fixing protrusions 113 and 114 are sandwiched.

ケーブルトラフYをトラフ支持体7に載置すると、トラフ固定ナット89を各トラフ載置板63,64に当接した状態において、各トラフ固定体83〜86のトラフ固定ボルト88をトラフ固定ナット89に対して回動(回転)して、頭部99を各トラフ固定体83〜86の固定水平板92に当接する。
各トラフ固定体83〜86のトラフ固定本体87は、図25及び図26に示すように、上下方向UDにおいて、各トラフ載置板63,64に向けて移動される。各トラフ固定体83〜86は、挟持平面SPをトラフ本体111に当接した状態で、各押え平面OPを各固定突起113,114に押付けて配置される。
これにより、ケーブルトラフYは、図25及び図26に示すように、各トラフ固定体83〜86の挟持平面SPによって挟持され、各トラフ固定体83〜86の押え平面OP及び各トラフ載置板63,64によって各固定突起113,114が挟持されて、トラフ支持体7(各トラフ載置板63,64)に固定される。
ケーブルトラフYは、図26に示すように、鉄道路線RWの側方(トラフ敷設箇所SO)の傾斜角度と同一角度に傾斜されて、トラフ支持器具Xに固定される。
When the cable trough Y is mounted on the trough support 7, the trough fixing bolts 88 of the trough fixing bodies 83 to 86 are attached to the trough fixing nuts 89 in a state where the trough fixing nuts 89 are in contact with the trough mounting plates 63 and 64. The head 99 is brought into contact with the fixed horizontal plate 92 of each trough fixing body 83 to 86 by rotating (rotating) with respect to the trough fixing body.
As shown in FIGS. 25 and 26, the trough fixing main bodies 87 of the trough fixing bodies 83 to 86 are moved toward the trough mounting plates 63 and 64 in the vertical direction UD. The trough fixing bodies 83 to 86 are arranged by pressing each pressing plane OP against the fixing protrusions 113 and 114 in a state where the holding plane SP is in contact with the trough main body 111.
As a result, as shown in FIGS. 25 and 26, the cable trough Y is sandwiched by the sandwiching plane SP of each trough fixing body 83 to 86, and the holding plane OP of each trough fixing body 83 to 86 and each trough mounting plate. The fixing protrusions 113 and 114 are sandwiched by 63 and 64 and fixed to the trough support 7 (the trough mounting plates 63 and 64).
As shown in FIG. 26, the cable trough Y is inclined at the same angle as the inclination angle of the side (trough laying location SO) of the railway line RW, and is fixed to the trough support device X.

このように、鉄道路線RWの側方(トラフ敷設箇所SO)に沿って複数の支持杭Zを打込んで、及び各支持杭Zにトラフ支持器具Xを設置する。複数の支持杭Zに設置した各トラフ支持器具XにケーブルトラフYを連続して載置して固定することで、複数のトラフケーブルYは、鉄道線路RWの側方(トラフ敷設箇所SO)に沿って連続して敷設される。
トラフ支持体7の傾斜位置を調整することで、傾斜する鉄道路線RWの側方(トラフ敷設箇所SO)の傾斜に沿って、ケーブルトラフYを敷設できる。
鉄道線路RWに沿って連続して敷設した複数のケーブルトラフYは、トラフ蓋体112をトラフ本体111から取外して、トラフ本体111内に電線、光ファイバーのケーブルKBを収納する。
In this way, a plurality of support piles Z are driven along the side of the railway line RW (trough laying location SO), and the trough support equipment X is installed on each support pile Z. By continuously mounting and fixing the cable trough Y on each trough support device X installed on the plurality of support piles Z, the plurality of trough cables Y can be placed on the side of the railroad track RW (trough laying location SO). It is laid continuously along.
By adjusting the inclined position of the trough support 7, the cable trough Y can be laid along the inclination of the side of the inclined railway line RW (trough laying point SO).
The plurality of cable troughs Y laid continuously along the railroad track RW have the trough lid 112 removed from the trough main body 111, and the electric wires and optical fiber cables KB are housed in the trough main body 111.

本考案では、ケーブルトラフYは、図1乃至17で説明した構成に限定されない。
本考案では、ケーブルトラフYを敷設する箇所(場所)は、鉄道線路RWの側方に限定されない。
In the present invention, the cable trough Y is not limited to the configuration described with reference to FIGS. 1 to 17.
In the present invention, the place (place) where the cable trough Y is laid is not limited to the side of the railroad track RW.

本考案は、ケーブルトラフを敷設するのに最適である。 The present invention is optimal for laying cable troughs.

X トラフ支持器具
1 枠体
2 回動支持軸体
3 杭嵌込み筒体
6 筒体固定具
7 トラフ支持体
8 支持体固定具
9 トラフ固定具
15 水平枠材
16 垂直枠材(左側)
17 垂直枠材(右側)
41 杭嵌込み穴
101 ネジ脚
102 固定ナット(上側)
103 固定ナット(下側)
105 調整ネジ軸
106 座板
X Trough support 1 Frame 2 Rotating support shaft 3 Pile fitting cylinder 6 Trough fixture 7 Trough support 8 Support fixture 9 Trough fixture 15 Horizontal frame 16 Vertical frame (left side)
17 Vertical frame material (right side)
41 Pile fitting hole 101 Screw leg 102 Fixing nut (upper side)
103 Fixing nut (lower side)
105 Adjusting screw shaft 106 Seat plate

Claims (2)

水平枠材、前記水平枠材に直交する左側の垂直枠材、左側の前記垂直枠材に間隔を隔てて平行し、及び前記水平枠材に直交する右側の垂直枠材を有する枠体と、
前記水平枠材に間隔を隔てて配置され、軸中心線を前記水平枠材に平行に配置して、各軸端を前記各垂直枠材に固定する回動支持軸体と、
杭嵌込み穴を有し、穴中心線を前記水平枠材と直交方向に向けて一方の前記垂直枠材に固定され、トラフ敷設箇所に打込まれた支持杭に外嵌され、前記支持杭の杭中心線の方向に移動自在に、当該支持杭を前記杭嵌込み穴に挿通する杭嵌込み筒体と、
前記杭嵌込み筒体を前記支持杭に固定する筒体固定具と、
前記回動支持軸体の軸中心線を中心に回動自在として前記回動支持軸体に配置され、ケーブルトラフを載置するトラフ支持体と、
前記トラフ支持体を前記回動支持軸体に固定する支持体固定具と、
前記トラフ支持体に配置され、前記ケーブルトラフを前記トラフ支持体に固定するトラフ固定具と、
調整ネジ軸、及び前記調整ネジ軸の軸中心線に直交して、前記調整ネジ軸の一方の軸端に固定される座板を有し、他方の前記垂直枠材側の前記水平枠材に配置されるネジ脚と、
上側の固定ナットと、
下側の固定ナットと、を備え、
前記調整ネジ軸は、
軸中心線を前記水平枠材と直交方向に向けて配置され、
前記水平枠材と直交方向に移動自在に、前記水平枠材を貫通し、及び他方の軸端を前記水平枠材及び前記回動支持軸体の間に突出して配置され、
上側の前記固定ナットは、
前記調整ネジ軸の他方の軸端、及び前記水平枠材の間の前記調整ネジ軸に螺着され、及び前記水平枠材に当接自在にされ、
下側の前記固定ナットは、
前記座板、及び前記水平枠材の間の前記調整ネジ軸に螺着され、及び前記水平枠材に当接自在にされる
ことを特徴とするトラフ支持器具。
A horizontal frame, a vertical frame on the left side orthogonal to the horizontal frame, a frame having a vertical frame on the right side parallel to the vertical frame on the left side at intervals and orthogonal to the horizontal frame.
A rotating support shaft body that is arranged at intervals on the horizontal frame material, has a shaft center line arranged parallel to the horizontal frame material, and fixes each shaft end to each vertical frame material.
The support pile has a pile fitting hole, is fixed to the vertical frame material on one side with the hole center line directed in the direction orthogonal to the horizontal frame material, and is externally fitted to the support pile driven into the trough laying location. A pile fitting cylinder that inserts the support pile into the pile fitting hole so as to be movable in the direction of the pile center line.
A cylinder fixing tool for fixing the pile fitting cylinder to the support pile,
A trough support that is arranged on the rotation support shaft so as to be rotatable around the axis center line of the rotation support shaft and on which a cable trough is placed,
A support fixture that fixes the trough support to the rotating support shaft, and
A trough fixture that is placed on the trough support and fixes the cable trough to the trough support.
The adjusting screw shaft and the horizontal frame material having a seat plate fixed to one shaft end of the adjusting screw shaft at right angles to the axis center line of the adjusting screw shaft and on the other vertical frame material side. With the screw legs to be placed,
With the upper fixing nut,
With a lower fixing nut,
The adjusting screw shaft
The axis center line is arranged so as to be orthogonal to the horizontal frame member.
It is arranged so as to be movable in a direction orthogonal to the horizontal frame material, penetrate the horizontal frame material, and project the other shaft end between the horizontal frame material and the rotation support shaft body.
The fixing nut on the upper side
It is screwed to the other shaft end of the adjusting screw shaft and the adjusting screw shaft between the horizontal frame members, and is made abuttable to the horizontal frame material.
The lower fixing nut
A trough support device characterized in that it is screwed onto the adjusting screw shaft between the seat plate and the horizontal frame member and is brought into contact with the horizontal frame member so as to be abuttable.
前記トラフ支持体は、
前記各垂直枠材に間隔を隔てて、前記各垂直枠材の間に配置され、
前記回動支持軸体の軸中心線を中心に回動自在、及び前記回動支持軸体の軸中心線の方向に移動自在として、前記回動支持軸体に配置される
ことを特徴とする請求項1に記載のトラフ支持器具。
The trough support
The vertical frame members are spaced apart from each other and are arranged between the vertical frame members.
It is characterized in that it is arranged on the rotation support shaft body so as to be rotatable about the axis center line of the rotation support shaft body and movable in the direction of the axis center line of the rotation support shaft body. The trough support device according to claim 1.
JP2020004526U 2020-10-20 2020-10-20 Trough support Active JP3230061U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2020004526U JP3230061U (en) 2020-10-20 2020-10-20 Trough support

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2020004526U JP3230061U (en) 2020-10-20 2020-10-20 Trough support

Publications (1)

Publication Number Publication Date
JP3230061U true JP3230061U (en) 2021-01-07

Family

ID=73992711

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2020004526U Active JP3230061U (en) 2020-10-20 2020-10-20 Trough support

Country Status (1)

Country Link
JP (1) JP3230061U (en)

Similar Documents

Publication Publication Date Title
JP3051260B2 (en) One-line arrangement and fixing device for rail
KR200463402Y1 (en) Adjustable support apparatus for structure
JP3230061U (en) Trough support
EP1498227A1 (en) Apparatus for mounting a drill on a pipe
KR101019734B1 (en) Apparatus for adjusting post position and direction of iron tower
JP3207293U (en) Support stand for rising cable rack
JP5120935B2 (en) Tatami floor cutting device
JP4884117B2 (en) Column and steel pipe pile positioning device and positioning method
JP2014025281A (en) Connecting member
CN211867016U (en) Welding platform capable of adjusting pipe welding angle
JP3229820U (en) Trough support
JP2018061391A (en) Connection structure
JP3230633U (en) Trough support
JP3664495B2 (en) Bar with module for tufting tools
JP3210871U (en) Base plate installation jig
JP2023027953A (en) Brace upper part installing metal fitting
KR102206890B1 (en) Earth anchor bracket with angle adjustment function
JP6966126B1 (en) Guard rail
JP2016067097A (en) Supporting device, solar panel setting device and conveying device
JP2020070604A (en) Method and apparatus for manufacturing steel member
JP3759459B2 (en) Train line support device
JP2014197610A (en) Frame for solar panel
JP3184745U (en) Coupling adjustment fitting between foundation beam and steel pipe pile
JP4156471B2 (en) Adjustment base for vending machines
JP2011125076A (en) Supporting stand device for ground electric facility apparatus on slope

Legal Events

Date Code Title Description
R150 Certificate of patent or registration of utility model

Ref document number: 3230061

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250