CN209736957U - auxiliary device for installing pressure steel pipe track - Google Patents

auxiliary device for installing pressure steel pipe track Download PDF

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Publication number
CN209736957U
CN209736957U CN201920500921.2U CN201920500921U CN209736957U CN 209736957 U CN209736957 U CN 209736957U CN 201920500921 U CN201920500921 U CN 201920500921U CN 209736957 U CN209736957 U CN 209736957U
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CN
China
Prior art keywords
laser
adjusting rod
adjusting
clamping frame
track
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Active
Application number
CN201920500921.2U
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Chinese (zh)
Inventor
杨建军
屈刚
杨联东
谢恒�
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Sinohydro Bureau 3 Co Ltd
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Sinohydro Bureau 3 Co Ltd
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Priority to CN201920500921.2U priority Critical patent/CN209736957U/en
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Abstract

The utility model discloses an auxiliary device for installing a pressure steel pipe track, which comprises an adjusting rod, adjusting mechanisms and guiding lasers, wherein the adjusting mechanisms are arranged at two ends of the adjusting rod relatively, and the guiding lasers are arranged on the adjusting mechanisms; the adjusting mechanism comprises a dial arranged at the end part of the adjusting rod, a laser mounting part arranged on the outer side of the dial and a clamping frame connecting part arranged on the outer side of the laser mounting part, and a fastening nut is arranged on the outer side of the clamping frame connecting part. The utility model can meet the requirements of different track laying angles by adjusting the position of the laser mounting part on the dial, and can meet the requirements of different track laying intervals by adjusting the length of the adjusting rod; the device can be fixed at the starting point of a laying track by utilizing the adjusting mechanism, and the track direction to be laid is set by the guide laser installed on the adjusting mechanism, so that the follow-up laying of the track is facilitated.

Description

Auxiliary device for installing pressure steel pipe track
Technical Field
the utility model belongs to the technical field of the penstock rail mounting, especially, relate to an auxiliary device for penstock rail mounting.
Background
The pressure steel pipe is a component of a water delivery building in the hydraulic and hydroelectric engineering, is widely applied to the construction of a pumped storage power station as the component of the water delivery building in the hydraulic and hydroelectric engineering, and needs to be paved with a track for transportation no matter whether the pressure steel pipe is a flat section steel pipe or an inclined shaft steel pipe because the transportation condition of the pressure steel pipe in the pumped storage power station is limited. The conventional method comprises the following steps: the measurement personnel are required to place according to each section of the length of the track material, the installation work of the track is completed at last, and the installation and construction of the penstock are carried out, and the penstock track installation in the hydropower industry has the following characteristics: 1. the track engineering quantity is large; 2. the requirement for installing the track is high; 3. the labor intensity is high. Therefore, it is necessary to design a device that can simultaneously improve the above disadvantages, and effectively reduce the cost and greatly improve the production efficiency.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the present invention is to provide an auxiliary device for installing a pressure steel pipe track, which can conveniently realize the laying of the track by the dial arranged at the end of the adjusting rod, the laser installation member arranged outside the dial and the clamping frame connecting member arranged outside the laser installation member, adjust the position of the laser installation member on the dial, and can meet the requirements of different track laying angles, and adjust the length of the adjusting rod to meet the requirements of different track laying intervals; the device can be fixed at the starting point of a laying track by utilizing the adjusting mechanism, and the track direction to be laid is set by the guide laser installed on the adjusting mechanism, so that the follow-up laying of the track is facilitated.
In order to solve the technical problem, the utility model discloses a technical scheme is: the utility model provides an auxiliary device is used in pressure steel pipe track installation which characterized in that: the laser guide device comprises an adjusting rod, adjusting mechanisms and guide lasers, wherein the adjusting mechanisms are oppositely arranged at two ends of the adjusting rod;
the adjusting mechanism comprises a dial arranged at the end part of the adjusting rod, a laser mounting part arranged on the outer side of the dial and a clamping frame connecting part arranged on the outer side of the laser mounting part, a fastening nut is arranged on the outer side of the clamping frame connecting part, the dial, the laser mounting part, the clamping frame connecting part and the fastening nut are all sleeved on the adjusting rod, the laser mounting part is vertical to the clamping frame connecting part, guiding laser is arranged at one end, far away from the adjusting rod, of the laser mounting part, and the guiding laser is vertical to the adjusting rod; and one end of the clamping frame connecting piece, which is far away from the adjusting rod, is provided with a clamping frame, and the clamping frame is perpendicular to the adjusting rod.
Foretell auxiliary device is used in pressure steel pipe track installation, its characterized in that: the clamping frame is arranged by the transverse frame and the vertical frames at two ends of the transverse frame symmetrically, the transverse frame and the two vertical frames jointly enclose a frame body with a door-shaped cross section, a threaded hole for the clamping frame connecting piece to penetrate is formed in the transverse frame, and an adjusting screw is arranged in the middle of each vertical frame.
Foretell auxiliary device is used in pressure steel pipe track installation, its characterized in that: the adjusting rod is made of round steel with adjustable length.
Compared with the prior art, the utility model has the following advantage:
1. The utility model discloses a set up the calibrated scale at the regulating rod tip, install the laser installed part in the calibrated scale outside and install the tight frame connecting piece of clamp in the laser installed part outside, can conveniently realize laying orbital, adjust the position of laser installed part on the calibrated scale, can satisfy the requirement that different tracks laid the angle, adjust the length of regulating rod, can satisfy the requirement that different tracks laid the interval, simple structure, convenient to use.
2. The utility model discloses utilize adjustment mechanism can fix this device in laying orbital starting point department, through installing the direction laser on adjustment mechanism, set up the track direction that needs were laid, be convenient for follow-up laying orbital, reasonable in design realizes with low costs, has improved production efficiency.
To sum up, the utility model can conveniently realize the laying of the track by the dial arranged at the end part of the adjusting rod, the laser installation part arranged outside the dial and the clamping frame connecting piece arranged outside the laser installation part, can meet the requirements of different track laying angles by adjusting the position of the laser installation part on the dial, and can meet the requirements of different track laying intervals by adjusting the length of the adjusting rod; the device can be fixed at the starting point of a laying track by utilizing the adjusting mechanism, and the track direction to be laid is set by the guide laser installed on the adjusting mechanism, so that the follow-up laying of the track is facilitated.
the technical solution of the present invention is further described in detail by the accompanying drawings and examples.
drawings
Fig. 1 is a front view of the present invention.
fig. 2 is a top view of the present invention.
Fig. 3 is a left side view of the present invention.
Description of reference numerals:
1, guiding laser; 2-an adjusting mechanism; 2-1-laser mount;
2-clamping frame; 2-2-1-horizontal frame; 2-2-2-mullion;
2-3-dial scale; 2-4-fastening a nut; 2-5-clamping frame connecting piece;
3, adjusting a rod; 4, adjusting screws.
Detailed Description
As shown in fig. 1, 2 and 3, the present invention comprises an adjusting rod 3, adjusting mechanisms 2 oppositely disposed at two ends of the adjusting rod 3, and a guiding laser 1 installed on the adjusting mechanisms 2;
the adjusting mechanism 2 comprises a dial 2-3 arranged at the end part of the adjusting rod 3, a laser mounting part 2-1 arranged on the outer side of the dial 2-3 and a clamping frame connecting part 2-5 arranged on the outer side of the laser mounting part 2-1, a fastening nut 2-4 is arranged on the outer side of the clamping frame connecting part 2-5, the dial 2-3, the laser mounting part 2-1, the clamping frame connecting part 2-5 and the fastening nut 2-4 are all sleeved on the adjusting rod 3, the laser mounting part 2-1 is vertical to the clamping frame connecting part 2-5, a guiding laser 1 is arranged at one end, far away from the adjusting rod 3, of the laser mounting part 2-1, and the guiding laser 1 is vertical to the adjusting rod 3; one end of the clamping frame connecting piece 2-5, which is far away from the adjusting rod 3, is provided with a clamping frame 2-2, and the clamping frame 2-2 is vertical to the adjusting rod 3.
As shown in figures 1 and 2, the scale 2-3 arranged at the end part of the adjusting rod 3, the laser installation part 2-1 arranged at the outer side of the scale 2-3 and the clamping frame connecting part 2-5 arranged at the outer side of the laser installation part 2-1 can conveniently realize the laying of the track, the position of the laser installation part 2-1 on the scale 2-3 can be adjusted, the requirements of different track laying angles can be met, the length of the adjusting rod 3 can be adjusted, the requirements of different track laying intervals can be met, the structure is simple, and the use is convenient. Utilize adjustment mechanism 2 to fix this device in laying orbital starting point department, through installing direction laser 1 on adjustment mechanism 2, set up the track direction that needs laid, be convenient for follow-up laying to the track, reasonable in design realizes with low costs, has improved production efficiency.
During actual use, the length of the adjusting rod 3 is determined according to the track space to be laid, and threads are turned at two ends of the selected adjusting rod 3 to form an installation section for installing the dial 2-3, the laser installation part 2-1 and the clamping frame connecting piece 2-5; after the dial 2-3, the laser installation part 2-1 and the clamping frame connecting piece 2-5 are installed on the installation sections at the two ends in sequence, the installed dial 2-3, the laser installation part 2-1 and the clamping frame connecting piece 2-5 are fixed by using the fastening nuts 2-4; then, installing the guide laser 1 at the top end of the laser installation part 2-1, and enabling the emission direction of the guide laser 1 to be the laying direction of the track; and finally, the clamping frame 2-2 is arranged at the end part of the clamping frame connecting piece 2-5, and the integral installation of the utility model is completed.
It should be noted that the dials 2 to 3 function as: on the one hand, the angle of the laid track can be determined; on the other hand, the laser mounting pieces 2-1 arranged at the two ends of the adjusting rod 3 can be calibrated, so that the positions of the two laser mounting pieces 2-1 are kept consistent. As shown in fig. 3, the laser installation component 2-1 and the clamping frame connecting component 2-5 are kept perpendicular to each other during installation, so that the light emitted by the guide laser 1 installed on the laser installation component 2-1 can be along the laying direction of the rail, and the distance between the laser light and the rail surface can be conveniently measured subsequently. The clamping frame 2-2 is mainly used for clamping the starting point track, so that the clamping frame 2-2 needs to be perpendicular to the adjusting rod 3, the starting point track can be clamped, and the use of the guide laser 1 cannot be hindered.
Particularly, a dial 2-3 sleeved at the end part of the adjusting rod 3 is in threaded connection with the adjusting rod 3, and the diameter of a threaded hole formed in the middle of the dial 2-3 and used for the adjusting rod 3 to penetrate through is equal to that of an installation section at the end part of the adjusting rod 3; the laser mounting piece 2-1 sleeved on the adjusting rod 3 is in threaded connection with the adjusting rod 3, and the diameter of a threaded hole formed in the connection part of the laser mounting piece 2-1 and the adjusting rod 3 and used for the adjusting rod 3 to penetrate through is equal to the diameter of the mounting section at the end part of the adjusting rod 3; the clamping frame connecting piece 2-5 sleeved on the adjusting rod 3 is in threaded connection with the adjusting rod 3, and the diameter of a threaded hole formed at the joint of the clamping frame connecting piece 2-5 and the adjusting rod 3 and used for the adjusting rod 3 to penetrate through is equal to the diameter of the mounting section at the end part of the adjusting rod 3. The laser mounting piece 2-1 is connected with the guide laser 1 through threads; during actual use, an external thread is arranged at one end, far away from the adjusting rod 3, of the laser mounting part 2-1, and the guide laser 1 is connected with the laser mounting part 2-1 through the external thread on the laser mounting part 2-1.
When the laser guide device is actually used, the clamping frames 2-2 arranged at two ends of the adjusting rod 3 are clamped at the end part of the corresponding starting point rail, the laser installation pieces 2-1 at two ends are respectively adjusted according to the rail angle required to be installed, the laser installation pieces 2-1 at two ends are adjusted to be consistent in positions on the corresponding dial 2-3, then the dial 2-3, the laser installation pieces 2-1 and the clamping frame connecting pieces 2-5 which are adjusted in positions are screwed and fixed through the fastening nuts 2-4 to ensure that the direction of the guide laser 1 cannot be changed, the guide laser 1 is opened, the distance from the laser light to the rail surface is measured through a tape measure, and rail installation operation is carried out uniformly according to the laser direction and the measured distance.
In this embodiment, the clamping frame 2-2 is composed of a horizontal frame 2-2-1 and vertical frames 2-2-2 symmetrically arranged at two ends of the horizontal frame 2-2-1, the horizontal frame 2-2-1 and the two vertical frames 2-2-2 together enclose a frame body with a door-shaped cross section, a threaded hole for a clamping frame connecting piece 2-5 to pass through is formed in the horizontal frame 2-2-1, and an adjusting screw 4 is arranged in the middle of each vertical frame 2-2-2.
As shown in fig. 1 and fig. 2, the clamping frame 2-2 is a door-shaped frame, when the rail is laid, the two clamping frames 2-2 arranged symmetrically can be clamped on the two corresponding rails respectively, and the positioning is convenient. The end part of the clamping frame connecting piece 2-5 is in threaded connection with the clamping frame 2-2 through a threaded hole on the transverse frame 2-2-1.
In this embodiment, the adjusting rod 3 is a round steel with adjustable length. During actual use, the length of the adjusting rod 3 is determined according to the space between the laid tracks, and the installation of different track spaces can be met.
The utility model discloses during the use, will install and clamp tight frame 2-2 at 3 both ends of adjusting pole and clamp at the starting point track tip that corresponds, the track angle of installing as required, adjust the laser installed part 2-1 at both ends respectively, the laser installed part 2-1 of adjustment to both ends locates the position unanimously on corresponding calibrated scale 2-3, then with fastening nut 2-4 with calibrated scale 2-3, laser installed part 2-1 and the tight frame connecting piece 2-5 of clamp of adjusted position screw up fixedly, in order to ensure that the direction laser 1 direction can not change, open direction laser 1, use the tape measure laser light to the distance of track face, unified according to laser direction and measuring distance carry out orbital installation operation.
The above, only be the utility model discloses a preferred embodiment, it is not right the utility model discloses do any restriction, all according to the utility model discloses the technical entity all still belongs to any simple modification, change and the equivalent structure change of doing above embodiment the utility model discloses technical scheme's within the scope of protection.

Claims (3)

1. The utility model provides an auxiliary device is used in pressure steel pipe track installation which characterized in that: the laser guide device comprises an adjusting rod (3), adjusting mechanisms (2) oppositely arranged at two ends of the adjusting rod (3) and guide lasers (1) arranged on the adjusting mechanisms (2);
The adjusting mechanism (2) comprises a dial (2-3) arranged at the end part of the adjusting rod (3), a laser mounting part (2-1) arranged at the outer side of the dial (2-3) and a clamping frame connecting part (2-5) arranged at the outer side of the laser mounting part (2-1), wherein a fastening nut (2-4) is arranged at the outer side of the clamping frame connecting part (2-5), the dial (2-3), the laser mounting part (2-1), the clamping frame connecting part (2-5) and the fastening nut (2-4) are all sleeved on the adjusting rod (3), the laser mounting part (2-1) is vertical to the clamping frame connecting part (2-5), and guiding laser (1) is arranged at one end, far away from the adjusting rod (3), of the laser mounting part (2-1), the guide laser (1) is vertical to the adjusting rod (3); one end, far away from the adjusting rod (3), of the clamping frame connecting piece (2-5) is provided with a clamping frame (2-2), and the clamping frame (2-2) is perpendicular to the adjusting rod (3).
2. The auxiliary device for the track-mounting of the penstock as claimed in claim 1, wherein: the clamping frame (2-2) is composed of a transverse frame (2-2-1) and vertical frames (2-2-2) symmetrically arranged at two ends of the transverse frame (2-2-1), the transverse frame (2-2-1) and the two vertical frames (2-2-2) jointly enclose a frame body with a door-shaped cross section, a threaded hole for the clamping frame connecting piece (2-5) to penetrate through is formed in the transverse frame (2-2-1), and an adjusting screw (4) is arranged in the middle of each vertical frame (2-2-2).
3. The auxiliary device for the track-mounting of the penstock as claimed in claim 1, wherein: the adjusting rod (3) is round steel with adjustable length.
CN201920500921.2U 2019-04-15 2019-04-15 auxiliary device for installing pressure steel pipe track Active CN209736957U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920500921.2U CN209736957U (en) 2019-04-15 2019-04-15 auxiliary device for installing pressure steel pipe track

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920500921.2U CN209736957U (en) 2019-04-15 2019-04-15 auxiliary device for installing pressure steel pipe track

Publications (1)

Publication Number Publication Date
CN209736957U true CN209736957U (en) 2019-12-06

Family

ID=68720818

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920500921.2U Active CN209736957U (en) 2019-04-15 2019-04-15 auxiliary device for installing pressure steel pipe track

Country Status (1)

Country Link
CN (1) CN209736957U (en)

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