JP2007162370A - Cover plate for side-ditch with water collecting part, and its mounting and laying structure - Google Patents

Cover plate for side-ditch with water collecting part, and its mounting and laying structure Download PDF

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JP2007162370A
JP2007162370A JP2005361401A JP2005361401A JP2007162370A JP 2007162370 A JP2007162370 A JP 2007162370A JP 2005361401 A JP2005361401 A JP 2005361401A JP 2005361401 A JP2005361401 A JP 2005361401A JP 2007162370 A JP2007162370 A JP 2007162370A
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cover plate
side groove
water collecting
width direction
longitudinal direction
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JP4947686B2 (en
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Kamihide Matsubayashi
神秀 松林
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GOTO CONCRETE KOGYO KK
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GOTO CONCRETE KOGYO KK
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a cover plate for a side-ditch and a mounting and laying structure of the cover plate having high water collecting efficiency while maintaining the strength of the cover plate itself. <P>SOLUTION: The cover plate formed in approximately square thick plate shape comprises an upper surface formed in an approximately V-shape forming a slow inclined surface toward the center in the width direction, and a water collecting part formed as a recessed groove in a longitudinal direction at the width direction center of the upper surface. Linear slits penetrating the upper and lower faces in the longitudinal direction are formed on both longitudinal end sides of the water collecting part in the opened state of the longitudinal end faces. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は、例えばコンクリート製側溝の側溝用蓋板及びその取り付け敷構造に関するものである。
The present invention relates to a cover plate for a side groove of a side groove made of concrete, for example, and a mounting floor structure thereof.

従来、コンクリート製側溝の蓋板には、着脱するための手掛け用溝部が蓋板端部に設けられている。そしてこの手掛け用溝部は降雨時の路面流水を蓋板下部に設置された側溝内に落とし込むという機能も有していた。しかしこの手掛け用溝部は蓋板上面の路面流水方向と平行に形成されていて、幅も狭いことから、充分な機能を発揮しているとはいえなかった。
そこで近年では公開特許公報、特開2002−235365号のように、蓋板の上面を周囲からの雨水が集中しやすい形状に形成し、集めた雨水を迅速に側溝内に排水するためのスリット孔を長手方向あるいは幅方向に形成した側溝蓋板が提案されている。
例えば、側溝蓋板の上面形状を皿形状等にし、蓋板の中央部に長手方向または幅方向に1〜数個のスリット孔を設け、あるいは連通してなる浅い集水溝を形成する。もって、降雨時の大量の雨水等が蓋板上面を経由して該スリット孔等から側溝へ排水されるもの等である。
しかしながら、このような従来の側溝蓋板は、幅方向中央部に上下面を貫通するスリット孔が穿設されることから、形成するスリット孔の大きさや数は、必要とする蓋板の強度によって制限されるものとなる。
例えば長手方向にスリット孔が穿設されている場合には、該スリット孔を中央にして蓋板幅方向が2分されることから、蓋板上面に占めるスリット孔の面積は、蓋板強度に影響を与えることになる。そうすると蓋板強度との関係で充分なスリット孔が穿設できず所要の集水効率が得られない場合が起こり得る。
一方、所要の集水効率を得られたとしても、蓋板強度を高めるために蓋板全体を厚肉に構成せざるを得ない場合が生じる。そうすると、蓋板製造コストの上昇や敷設作業の困難性を招致してしまうという課題が指摘されていた。
特開2002−235365号
2. Description of the Related Art Conventionally, a cover groove for a concrete side groove is provided with a handle groove for attaching and detaching at the end of the cover plate. And this groove part for handling also had the function of dropping the road surface water at the time of raining into the side groove installed in the lower part of the cover plate. However, since this handle groove portion is formed in parallel with the road surface running water direction on the upper surface of the lid plate and has a narrow width, it cannot be said that the sufficient function is exhibited.
Therefore, in recent years, as disclosed in Japanese Patent Application Laid-Open No. 2002-235365, the upper surface of the cover plate is formed in a shape in which rainwater from the surroundings tends to concentrate, and a slit hole for quickly draining the collected rainwater into the side groove A side-groove cover plate in which is formed in the longitudinal direction or the width direction has been proposed.
For example, the upper surface shape of the side groove cover plate is made into a dish shape or the like, and one to several slit holes are provided in the central portion of the cover plate in the longitudinal direction or the width direction, or a shallow water collecting groove is formed. Therefore, a large amount of rainwater or the like during rain is drained from the slit hole or the like to the side groove via the upper surface of the lid plate.
However, since such a conventional side groove cover plate has a slit hole penetrating the upper and lower surfaces in the center in the width direction, the size and number of the slit holes to be formed depend on the strength of the required cover plate. Be limited.
For example, when a slit hole is formed in the longitudinal direction, the lid plate width direction is divided into two with the slit hole as the center. Will have an impact. As a result, there may be a case where sufficient slit holes cannot be formed due to the strength of the lid plate and the required water collection efficiency cannot be obtained.
On the other hand, even if the required water collection efficiency can be obtained, there are cases where the entire cover plate must be made thick in order to increase the cover plate strength. Then, the subject that the rise of a cover plate manufacturing cost and the difficulty of laying work was invited was pointed out.
JP 2002-235365 A

かくして、本発明は、前記従来の課題を解消するために創案されたものであって、いわゆる側溝用蓋板自体の強度を保持しつつ高い集水効率を有する側溝用蓋板及び当該蓋板の取り付け敷設構造を提供することを目的とするものである。
Thus, the present invention was devised in order to solve the above-described conventional problems, and the side groove cover plate having high water collection efficiency while maintaining the strength of the so-called side groove cover plate itself and the cover plate. The object is to provide a mounting laying structure.

本発明による集水部付き側溝用蓋板及び蓋板の取り付け構造は、
略方形厚板状の形状からなり、幅方向中央部に向かって緩やかな傾斜面をなす略V型に形成された上部表面と、該上部表面幅方向中央部に長手方向に向かい凹条溝として形成された集水部とを備え、該集水部の長手方向両端側には長手方向に向かい上下面を貫通する直線状のスリットが長手方向端面を開口した形で各々形成された、
ことを特徴とし、
または、
側溝用蓋板の略U字状側溝開口部への取り付け敷設構造であって、前記直線状スリットの開口部が突き合わされて接続され、2倍長のスリット孔が当該接続部に亘って形成して敷設した、
ことを特徴とし、
または、
底面幅方向両端側に長手方向にわたりゴム材、合成樹脂材からなる緩衝部材が接着された、
ことを特徴とし、
または、
長手方向側面のいずれか一方側で幅方向両端に間隔をあけて欠け防止突起が形成された、
ことを特徴とするものである。
The side groove cover plate with a water collecting portion according to the present invention and the mounting structure of the cover plate are
An upper surface formed in a substantially square plate shape and formed in a substantially V shape that forms a gentle inclined surface toward the center in the width direction, and a groove groove in the longitudinal direction in the center in the width direction of the upper surface. A linear slit penetrating the upper and lower surfaces in the longitudinal direction is formed on each end in the longitudinal direction of the water collection portion, with the longitudinal end surfaces being opened, respectively.
It is characterized by
Or
An installation laying structure of the side groove cover plate to the substantially U-shaped side groove opening, wherein the opening of the linear slit is abutted and connected, and a double slit hole is formed across the connection. Laid,
It is characterized by
Or
A cushioning member made of a rubber material and a synthetic resin material is bonded to both ends of the bottom width direction over the longitudinal direction.
It is characterized by
Or
A chipping prevention protrusion was formed on either side of the longitudinal side with a gap at both ends in the width direction.
It is characterized by this.

本発明による集水部付き側溝用蓋板及び蓋板の取り付け構造であれば、充分な強度と高い集水効率を有する側溝用蓋板を厚肉構成にすることなく作成でき、更に連続する側溝用蓋板の敷設により高い集水効率が達成できるとの優れた効果を奏する。
The side groove cover plate with a water collecting part and the attachment structure of the cover plate according to the present invention can be prepared without making the side groove cover plate having sufficient strength and high water collection efficiency without having a thick structure, and further continuous side grooves. An excellent effect is achieved in that high water collection efficiency can be achieved by laying the cover plate.

以下本発明を図に示す実施例に基づいて説明する。 Hereinafter, the present invention will be described based on embodiments shown in the drawings.

図1は、本発明による側溝用蓋板1を示す。まず、略方形厚板状の基本的形状をなし、上部表面2は幅方向中央部に向かって緩やかな傾斜面をなす略V型に形成されている。また上面幅方向中央部分には、集水部3が浅い凹条溝として形成されている。つまり雨水等がこの上部表面2の緩やかな傾斜面に沿ってスムーズに集水部3へ導入されるよう構成されている。また集水部3の断面形状は略凹状をなすものでも構わないし、略U字状をなすものでも構わない。
そして、該集水部3の長手方向の両端部にはさらに長手方向に向かい、上下面を貫通する直線状のスリット孔4、4が前記側溝用蓋板1の長手方向端面を開口した形で各々形成されている。
FIG. 1 shows a gutter lid plate 1 according to the invention. First, the basic shape of a substantially rectangular thick plate is formed, and the upper surface 2 is formed in a substantially V shape that forms a gentle inclined surface toward the center in the width direction. Moreover, the water collection part 3 is formed in the center part of an upper surface width direction as a shallow groove. That is, rainwater or the like is smoothly introduced into the water collecting portion 3 along the gentle inclined surface of the upper surface 2. Moreover, the cross-sectional shape of the water collection part 3 may make a substantially concave shape, and may make a substantially U shape.
And in the both ends of the longitudinal direction of this water collection part 3, it goes to the longitudinal direction further, and the linear slit hole 4 and 4 which penetrates an up-and-down surface opens the longitudinal direction end surface of the said cover plate 1 for side grooves. Each is formed.

図2は、断面U字状をなす側溝本体7の蓋板載置部11に本発明による側溝用蓋板1を載置した状態を示す図である。
図2から理解されるように、スリット孔4は、上部表面2の上側スリット開口より下側スリット開口に向かってそのスリット開口幅が拡開された形で形成されており、雨水と一緒に流入した土砂による詰まりを防止するものとしてある。
このような構成の下で、例えば降雨時での雨水は、側溝用蓋板1外縁から上部表面2の緩やかな傾斜面を伝わって幅方向中央の集水部3に集水される。ここで、集水部3は上述のように、浅い凹条溝として形成されており、比較的多くの雨水を集水することができる。
その後この集水部3から前記スリット孔4、4を経由して側溝内部の水路に流入することになる。
FIG. 2 is a view showing a state in which the side groove lid plate 1 according to the present invention is placed on the lid plate placement portion 11 of the side groove body 7 having a U-shaped cross section.
As understood from FIG. 2, the slit hole 4 is formed in such a manner that the slit opening width is expanded from the upper slit opening of the upper surface 2 toward the lower slit opening, and flows along with the rainwater. It is intended to prevent clogging caused by soil.
Under such a configuration, for example, rainwater at the time of raining is collected in the central water collecting portion 3 along the gently inclined surface of the upper surface 2 from the outer edge of the side groove cover plate 1. Here, the water collecting part 3 is formed as a shallow groove as described above, and can collect a relatively large amount of rain water.
Thereafter, the water collecting portion 3 flows into the water channel inside the side groove through the slit holes 4 and 4.

ここで、前記スリット孔4、4は、該側溝用蓋板1の両端部に形成した。このような構成とすることにより側溝用蓋板1の長手方向中央部大部分において、浅い凹条溝に形成された集水部3を介して一体に接続されるものとなる。
つまり該側溝用蓋板1の中央部分大部分が、上下面を貫通するスリット孔4として形成されないことから、該中央の大部分は、側溝用蓋板1の略方形厚板状をなすという基本形状で形成されることになる。したがって該側溝用蓋板1は従来の蓋板に比して高い強度性能を有するといいうる。
Here, the slit holes 4 and 4 were formed at both ends of the side groove cover plate 1. By setting it as such a structure, in the center part of the longitudinal direction center part of the cover plate 1 for side grooves, it connects integrally via the water collection part 3 formed in the shallow groove groove.
That is, most of the central portion of the side groove cover plate 1 is not formed as the slit hole 4 penetrating the upper and lower surfaces, and therefore, most of the center is basically a square plate shape of the side groove cover plate 1. It will be formed in shape. Therefore, it can be said that the side groove cover plate 1 has higher strength performance than the conventional cover plate.

すなわち、本発明による集水部3の長さがたとえ同じ長さであったとしても、中央部に1つの集水部3を形成した場合と、長手方向両端側に2分の1ずつの長さの集水部3を分けて形成した場合を考えると一目瞭然である。中央部に1つの集水部3で接続した場合は圧倒的に強度が高いことがわかる。 That is, even if the length of the water collecting part 3 according to the present invention is the same length, the case where one water collecting part 3 is formed in the central part and the length of each half on both ends in the longitudinal direction. Considering the case where the water collecting part 3 is formed separately, it is obvious. It can be seen that the strength is overwhelmingly high when one water collecting section 3 is connected to the center.

図3は、側溝本体7に側溝用蓋板1を連続敷設した状態を示す。
側溝用蓋板1の取り付け敷設の際には、対向するスリット孔4、4が連通するように接続して側溝本体7に取り付け敷設することになる。よって、蓋板接続面にわたっては端部に設けられているスリット孔4に比較して2倍長の1個のスリット孔10が形成されることになる。このような取り付け敷設構造から生じる該スリット孔10により当該側溝用蓋板1、1が敷設された側溝排水設備は大量の雨水排水能力を発揮するものとなる。したがって該側溝用蓋板1は特に厚肉構成せずとも高い強度が保持でき、高い雨水など排水能力を有する側溝排水設備の実現が可能とされた。
FIG. 3 shows a state in which the side groove cover plate 1 is continuously laid on the side groove main body 7.
When installing and laying the side groove cover plate 1, the opposing slit holes 4 and 4 are connected so as to communicate with each other and attached to the side groove body 7. Therefore, one slit hole 10 that is twice as long as the slit hole 4 provided at the end is formed over the cover plate connection surface. The gutter drainage facility in which the gutter cover plates 1 and 1 are laid by the slit holes 10 resulting from such an installation laying structure exhibits a large amount of rainwater drainage capacity. Therefore, the side groove cover plate 1 can maintain a high strength without being particularly thick and can realize a side groove drainage facility having a drainage capacity such as high rainwater.

図4は、勾配のある地盤8表面に設置された側溝本体7に側溝用蓋板1が連続敷設された状態を示す。前述したとおり蓋板接続面にわたってはスリット孔10が形成される。また側溝本体7が傾斜設置されることから集水部3の凹状溝は傾斜を有することになる。すると集水部3の凹状溝は、雨水を該凹状溝端部の低地側スリット孔10へスムーズに導入する通水路の役割をも果たすことになる。したがってこのような勾配のある地盤における該側溝用蓋板1の連続敷設は、さらに優れた雨水排水性能が発揮され得る。 FIG. 4 shows a state in which the side groove cover plate 1 is continuously laid on the side groove main body 7 installed on the surface of the ground 8 having a gradient. As described above, the slit hole 10 is formed over the cover plate connection surface. Further, since the side groove main body 7 is installed at an inclination, the concave groove of the water collecting portion 3 has an inclination. Then, the concave groove of the water collecting portion 3 also serves as a water passage for smoothly introducing rainwater into the low-side slit hole 10 at the end of the concave groove. Therefore, the continuous laying of the gutter cover plate 1 on the ground having such a gradient can exhibit further excellent rainwater drainage performance.

図5は欠け防止突起6が形成された蓋板を示す。
例えば車道の両脇などに敷設形成された側溝本体7に側溝用蓋板1を連続敷設する場合、側溝用蓋板1の接続箇所の端部では車の往来による重みによって側溝用蓋板1の隅部に欠けが生じ易い。その理由としては、側溝用蓋板1を側溝本体7の蓋板載置部11に据え置く構造のため側溝本体7の載置部と側溝用蓋板1の底面との間に隙間が存在してしまうこと、及び車両の走行による振動や重量が側溝用蓋板1に長期間にわたってかかることなどが挙げられる。
そこで、接続端面である長手方向側面のいずれか片面に欠け防止突起6、6を設けることにより、接続端面特に隅部での接触欠けが阻止できるのである。
FIG. 5 shows a cover plate on which chipping prevention projections 6 are formed.
For example, when the side groove cover plate 1 is continuously laid on the side groove main body 7 laid and formed on both sides of the roadway, the side groove cover plate 1 has a weight at the end of the connecting portion of the side groove cover plate 1 due to the weight of the vehicle. Chipping is likely to occur at the corners. The reason is that there is a gap between the placement portion of the side groove body 7 and the bottom surface of the side groove lid plate 1 because the side groove lid plate 1 is placed on the lid plate placement portion 11 of the side groove body 7. And vibration and weight due to running of the vehicle are applied to the side groove cover plate 1 over a long period of time.
Therefore, chipping prevention protrusions 6 and 6 are provided on either one of the side surfaces in the longitudinal direction, which is the connection end surface, to prevent contact chipping at the connection end surface, particularly at the corner.

ここで、本発明においては、長手方向側面のいずれか片面の幅方向両端上部に例えば円柱状をなし高さが1乃至2mmの欠け防止突起を設けている。但し該突起の断面形状は円形に限らず、所定の間隔が保持できれば方形や特殊な形状であっても構わないものである。
図6は、底面に緩衝部材5、5が接着された側溝用蓋板1を示す。また図7は側溝本体7の蓋板載置部11に前記緩衝部材5、5を接着した側溝用蓋板1を載置した状態を示した説明図である。
前述したとおり側溝用蓋板1と側溝本体7の敷設に際しては、構造上側溝本体7と側溝用蓋板1との間に隙間が存在してしまう。そのため、この隙間からガタが生じ、蓋板底面端部の角欠けやガタ騒音が発生することがある。
そこで、側溝用蓋板1底面幅方向両端部に長手方向全長にわたりゴム、合成樹脂等からなる緩衝部材5、5を接着させることにより、このガタの発生を防ぐものである。該緩衝部材5は、側溝本体7の蓋板載置部11と側溝用蓋板1底面の接触部に設置されるものであり、1乃至2mmの厚さが設置後に確保されることが望ましい。しかして、側溝用蓋板1敷設の際には、該緩衝材5、5が押圧されて構造上生じた隙間部を圧密することになり、ガタや振動の発生が防止できるものとなる。
Here, in the present invention, chipping prevention protrusions having a columnar shape, for example, having a height of 1 to 2 mm are provided on the upper portions of both ends in the width direction of one side surface in the longitudinal direction. However, the cross-sectional shape of the protrusion is not limited to a circle, and may be a square or a special shape as long as a predetermined interval can be maintained.
FIG. 6 shows the side groove cover plate 1 having the buffer members 5 and 5 bonded to the bottom surface. FIG. 7 is an explanatory view showing a state in which the side groove lid plate 1 having the buffer members 5 and 5 bonded thereto is placed on the lid plate placement portion 11 of the side groove body 7.
As described above, when the side groove cover plate 1 and the side groove body 7 are laid, there is a gap between the structure upper groove body 7 and the side groove cover plate 1. For this reason, play is generated from the gap, and corner chipping and backlash noise at the bottom end of the cover plate may occur.
Therefore, the backlash is prevented by adhering buffer members 5 and 5 made of rubber, synthetic resin or the like over the entire length in the longitudinal direction at both ends in the width direction of the bottom surface of the side groove lid plate 1. The buffer member 5 is installed at a contact portion between the lid plate mounting portion 11 of the side groove body 7 and the bottom surface of the side groove lid plate 1, and it is desirable that a thickness of 1 to 2 mm is secured after the installation. Thus, when the side groove cover plate 1 is laid, the cushioning members 5 and 5 are pressed to consolidate the gaps generated in the structure, and play and vibrations can be prevented.

図8は、蓋板幅方向の両側面を底面から上面に向かって円弧状形状となるよう形成した側溝用蓋板1を示す。また図9は側溝本体7の蓋板載置部11に本実施例の側溝用蓋板1を載置した状態の説明図である。
側溝用蓋板1幅方向の両側面をこのような形状に形成することにより、ほぼ同様の湾曲形状に形成された側溝本体7の蓋板載置部11と該側溝用蓋板1との接触すべき箇所が前記円弧状形状の幅方向に拡大されることになる。もって該側溝用蓋板1と側溝本体7の蓋板載置部11とは、円弧状に湾曲する接触面においていずれかの接触部分で線状に接触することとなり、その結果構造上必ず生ずるとされる隙間が発生せず、ガタの発生が確実に防止できるものとなる。
FIG. 8 shows the side groove cover plate 1 in which both side surfaces in the cover plate width direction are formed in an arc shape from the bottom surface to the top surface. FIG. 9 is an explanatory view showing a state in which the side groove lid plate 1 of this embodiment is placed on the lid plate placement portion 11 of the side groove body 7.
By forming both side surfaces in the width direction of the side groove cover plate 1 in such a shape, the contact between the cover plate mounting portion 11 of the side groove main body 7 formed in a substantially similar curved shape and the side groove cover plate 1 is made. The place to be enlarged is expanded in the width direction of the arc shape. Therefore, the side groove cover plate 1 and the cover plate mounting portion 11 of the side groove main body 7 come into linear contact at any contact portion on the contact surface that is curved in an arc shape, and as a result, it always occurs in the structure. Thus, no gap is generated and play can be reliably prevented.

本発明の側溝用蓋板を説明する構成説明図(その1)である。It is composition explanatory drawing (the 1) explaining the cover plate for side grooves of this invention. 側溝用蓋板の取り付け状態を説明する構成説明図(その1)である。It is composition explanatory drawing (the 1) explaining the attachment state of the cover plate for side grooves. 本発明の側溝用蓋板取り付け構造を説明する構成説明図(その1)である。It is composition explanatory drawing (the 1) explaining the cover board attachment structure for side grooves of this invention. 本発明の側溝用蓋板取り付け構造を説明する構成説明図(その2)である。It is composition explanatory drawing (the 2) explaining the cover plate attachment structure for side grooves of this invention. 本発明の側溝用蓋板を説明する構成説明図(その2)である。It is composition explanatory drawing (the 2) explaining the cover plate for side grooves of this invention. 本発明の側溝用蓋板を説明する構成説明図(その3)である。It is composition explanatory drawing (the 3) explaining the cover plate for side grooves of this invention. 側溝用蓋板の取り付け状態を説明する構成説明図(その2)である。It is composition explanatory drawing (the 2) explaining the attachment state of the cover plate for side grooves. 本発明の側溝用蓋板を説明する構成説明図(その4)である。It is composition explanatory drawing (the 4) explaining the cover plate for side grooves of this invention. 側溝用蓋板の取り付け状態を説明する構成説明図(その3)である。It is composition explanatory drawing (the 3) explaining the attachment state of the cover plate for side grooves.

符号の説明Explanation of symbols

1 側溝用蓋板
2 上部表面
3 集水部
4 スリット孔
5 緩衝部材
6 欠け防止突起
7 側溝本体
8 地盤
9 雨水
10 スリット孔
11 蓋板載置部

DESCRIPTION OF SYMBOLS 1 Side groove cover plate 2 Upper surface 3 Water collecting part 4 Slit hole 5 Buffering member 6 Chip prevention protrusion 7 Side groove main body 8 Ground 9 Rain water 10 Slit hole 11 Cover plate mounting part

Claims (4)

略方形厚板状の形状からなり、幅方向中央部に向かって緩やかな傾斜面をなす略V型に形成された上部表面と、該上部表面幅方向中央部に長手方向に向かい凹条溝として形成された集水部とを備え、該集水部の長手方向両端側には長手方向に向かい上下面を貫通する直線状のスリットが長手方向端面を開口した形で各々形成された、
ことを特徴とする集水部付き側溝用蓋板
An upper surface formed in a substantially square plate shape and formed in a substantially V shape that forms a gentle inclined surface toward the center in the width direction, and a groove groove in the longitudinal direction in the center in the width direction of the upper surface. A linear slit penetrating the upper and lower surfaces in the longitudinal direction is formed on each end in the longitudinal direction of the water collection portion, with the longitudinal end surfaces being opened, respectively.
Gutter lid plate with water collecting part
前記側溝用蓋板の略U字状側溝開口部への取り付け敷設構造であって、前記直線状スリットの開口部が突き合わされて接続され、2倍長のスリット孔が当該接続部に亘って形成して敷設した、
ことを特徴とする側溝用蓋板の取り付け敷設構造
An installation laying structure of the side groove cover plate to a substantially U-shaped side groove opening, in which the opening of the linear slit is abutted and connected, and a double slit hole is formed across the connection And laid
Attaching and laying structure for gutter lid plate
請求項1又は請求項2記載の側溝用蓋板には、底面幅方向両端側に長手方向にわたりゴム材、合成樹脂材からなる緩衝部材が接着された、
ことを特徴とする集水部付き側溝用蓋板
A buffer member made of a rubber material or a synthetic resin material is bonded to the side groove lid plate according to claim 1 or 2 over the longitudinal direction on both ends of the bottom surface in the width direction.
Gutter lid plate with water collecting part
長手方向側面のいずれか一方側で幅方向両端に間隔をあけて欠け防止突起が形成された、
ことを特徴とする請求項1、請求項2又は請求項3記載の集水部付き側溝用蓋板

A chipping prevention protrusion was formed on either side of the longitudinal side with a gap at both ends in the width direction.
A lid plate for a side groove with a water collecting portion according to claim 1, 2, or 3.

JP2005361401A 2005-12-15 2005-12-15 Attaching and laying structure of gutter lid plate with water collecting part Active JP4947686B2 (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010281051A (en) * 2009-06-02 2010-12-16 Daikure Co Ltd Overflow inhibition guide for grating
JP2011179173A (en) * 2010-02-26 2011-09-15 Kfc Ltd Waterway structure of tunnel and tunnel structure

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0289080U (en) * 1988-12-26 1990-07-13
JPH0327487U (en) * 1989-07-28 1991-03-19
JPH03108587U (en) * 1990-02-23 1991-11-07
JP2000273940A (en) * 1999-03-19 2000-10-03 Samuzu:Kk Concrete side ditch
JP2002235365A (en) * 2001-02-09 2002-08-23 Hokuetsu:Kk Lid slab for side ditch with water collecting function added
JP2005133520A (en) * 2003-10-29 2005-05-26 Teruo Hatori Side ditch with slit

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0289080U (en) * 1988-12-26 1990-07-13
JPH0327487U (en) * 1989-07-28 1991-03-19
JPH03108587U (en) * 1990-02-23 1991-11-07
JP2000273940A (en) * 1999-03-19 2000-10-03 Samuzu:Kk Concrete side ditch
JP2002235365A (en) * 2001-02-09 2002-08-23 Hokuetsu:Kk Lid slab for side ditch with water collecting function added
JP2005133520A (en) * 2003-10-29 2005-05-26 Teruo Hatori Side ditch with slit

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010281051A (en) * 2009-06-02 2010-12-16 Daikure Co Ltd Overflow inhibition guide for grating
JP2011179173A (en) * 2010-02-26 2011-09-15 Kfc Ltd Waterway structure of tunnel and tunnel structure

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