CN212101668U - Novel switch board installation auxiliary frame - Google Patents

Novel switch board installation auxiliary frame Download PDF

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Publication number
CN212101668U
CN212101668U CN202020085132.XU CN202020085132U CN212101668U CN 212101668 U CN212101668 U CN 212101668U CN 202020085132 U CN202020085132 U CN 202020085132U CN 212101668 U CN212101668 U CN 212101668U
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China
Prior art keywords
rod
pull rod
auxiliary frame
power distribution
installation auxiliary
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Application number
CN202020085132.XU
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Chinese (zh)
Inventor
高鹏
李新良
储继瑞
刘伟峰
刘小庆
周宁宁
赵旭东
杨晓明
江乐特
张帅
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China Railway Beijing Engineering Group Co Ltd
China Railway Beijing Engineering Group Beijing Co Ltd
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China Railway Beijing Engineering Group Co Ltd
China Railway Beijing Engineering Group Beijing Co Ltd
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Priority to CN202020085132.XU priority Critical patent/CN212101668U/en
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Abstract

The utility model provides a novel switch board installation auxiliary frame, including support (1) and truckle (2), truckle (2) set up in support (1) bottom, support (1) is including framework (11), crossbeam (12) and pull rod group (13), framework (11) are used for supporting overall structure, crossbeam (12) set up in framework (11) upper end is used for realizing the electricity and joins in marriage the cabinet and lift up the function, pull rod group (13) set up in framework (11) periphery is used for stabilizing framework (11). Through above-mentioned structure, the characteristics of easily installing can avoid in the narrow and small space the cabinet body and the cabinet body, cabinet body and the ground produce collide with, have higher installation effectiveness simultaneously.

Description

Novel switch board installation auxiliary frame
Technical Field
The utility model relates to a power supply auxiliary assembly field especially relates to a switch board installation is with portable hoist and mount frame.
Background
Two common modes are installed to present indoor complete set switch board: 1. the trailer transports the cabinet body to the vicinity of the indoor foundation of the equipment, a chain block is arranged on the structural slab above each cabinet body to hoist the cabinet body to the profile steel foundation, and the disc surface deviation and the horizontal deviation of the cabinet body are adjusted. The method has the main defects that the upper part of each cabinet body needs to be re-perforated and provided with anchor bolts to fix the chain block, so that the construction period and the number of constructors are increased, and the installation efficiency is low; 2. the trailer transports the cabinet body to the position near the indoor foundation of the equipment, and the cabinet body is manually lifted to the foundation and the adjustment of the disc surface deviation and the horizontal deviation is carried out. The construction method needs more manpower in the process of carrying the complete set of power distribution cabinet, has low working efficiency in the process of adjusting the disc surface deviation and the horizontal deviation of the power distribution cabinet, and has the advantages that the box body is heavy in weight, the cabinet body and the ground are easy to collide to cause paint falling of the cabinet body and even deformation of the box body during installation, and the ground is easy to scratch under the condition of finishing floor tile paving of a power distribution room.
The power distribution cabinet installation auxiliary frame is needed at present, the cabinet body can be prevented from colliding with the cabinet body and the ground, and meanwhile, the power distribution cabinet installation auxiliary frame has high installation efficiency.
Disclosure of Invention
The utility model aims to solve the problems that in the prior art, the cabinet body is easy to collide with the ground, the cabinet body is easy to drop paint, even the box body is deformed, and the ground is easy to scratch when the floor tile paving of a power distribution room is finished; need punch the fixed chain block of installation crab-bolt again, increase construction cycle and constructor quantity, the problem that the installation effectiveness is low provides a novel switch board installation auxiliary frame, through portable support body structure, has solved above-mentioned problem.
The utility model provides a novel switch board installation auxiliary frame includes support and truckle, and the truckle sets up in the support bottom, and the support includes framework, crossbeam and pull rod group, and the framework is used for supporting overall structure, and the crossbeam sets up and is used for realizing that the electricity joins in marriage the cabinet and lifts by crane the function in the framework upper end, and pull rod group sets up and is used for stabilizing the framework in the framework periphery.
The beam is used as a main stress part of the mounting frame body.
A novel switch board installation auxiliary frame, the framework includes four pole settings and six horizontal poles, the pole setting is parallel to each other and is the rectangle and arranges, four horizontal poles are parallel to each other and connect gradually pole setting homonymy tip, two pole settings middle parts are do not connected to two other horizontal poles are parallel to each other and horizontal pole end part, the pole setting free end sets up the truckle.
The horizontal pole is used for guaranteeing the support body is whole stable.
A novel switch board installation auxiliary frame, as an optimal mode, the crossbeam both ends set up respectively between two relative horizontal poles and two horizontal poles of perpendicular to.
A novel switch board installation auxiliary frame, as an preferred mode, the pull rod group includes first movable pull rod and second movable pull rod, first movable pull rod in the horizontal pole of crossbeam one end and the horizontal pole of the in-plane parallel beam one end that two adjacent pole settings are constituteed, second movable pull rod in the horizontal pole of the crossbeam other end and the horizontal pole of the in-plane parallel beam other end that two adjacent pole settings are constituteed, two adjacent pole settings are connected respectively at first movable pull rod and second movable pull rod both ends.
A novel switch board installation auxiliary frame, as an optimal mode, the tie point of second movable pull rod and pole setting is located the same length position of the horizontal pole at pole setting middle part, the tie point of first movable pull rod and pole setting is located second movable pull rod and sets up between the tip horizontal pole.
As a preferred mode, the first movable pull rod and the second movable pull rod are both U-shaped pull rods, the first movable pull rod comprises a first connecting rod and a first supporting rod, the first connecting rods are arranged at two ends of the first supporting rod and perpendicular to the first supporting rod, the first connecting rods are connected with the vertical rod, and the axis of each first connecting rod is parallel to the axis of the vertical rod; the second movable pull rod comprises a second connecting rod and a second supporting rod, the second connecting rod is arranged at two ends of the second supporting rod and perpendicular to the second supporting rod, the second connecting rod is connected with the vertical rod, and the axis of the second connecting rod is parallel to the axis of the vertical rod.
The pull rod is arranged as a fixing piece for ensuring the stability of the horizontal direction of the installation frame body.
A novel switch board installation auxiliary frame, as an optimal mode, the truckle is the universal wheel.
The steering support for 360 degrees is matched with a single wheel, and can freely drive in any direction.
And placing an infrared ray instrument at any tail end of the manufactured complete set of power distribution cabinet installation foundation, adjusting the infrared ray instrument to become a base line of a panel, and assembling the complete set of power distribution cabinet installation auxiliary frame according to a drawing.
The use method of the power distribution cabinet installation auxiliary frame comprises the following steps:
and S1, pushing the assembled complete set of power distribution cabinet installation auxiliary frame to enable the low-voltage power distribution cabinet to be positioned below the hanger beam 12. The chain block fixing hook is connected with a hanger beam stress component, the hoisting hook is connected with a low-voltage cabinet with a lifting lug, and the low-voltage power distribution cabinet is lifted 150mm away from the ground.
S2, the complete set of power distribution cabinet installation auxiliary frame which is pushed to bear transports the low-voltage cabinet to a corresponding installation position along the equipment foundation, and the levelness and the verticality of the low-voltage cabinet are well adjusted in the process of dropping the low-voltage cabinet onto the equipment foundation according to the infrared baseline.
And S3, repeating the steps S1-S3, and placing all the low-voltage power distribution cabinets in place above the equipment foundation.
And S4, checking the horizontal deviation and the vertical deviation of adjacent low-voltage power distribution cabinets and the whole row of low-voltage power distribution cabinets according to the standard and design requirements by using the adjusted infrared ray as a base line, and if a cabinet body with the deviation not meeting the requirements exists, detaching a horizontal reinforcing pull rod at the 1500mm position of the installation auxiliary frame of the low-voltage power distribution cabinet, pushing the installation auxiliary frame of the low-voltage power distribution cabinet to move to the position of the low-voltage power distribution cabinet to be adjusted along the row of cabinet body, and lifting the power distribution cabinet to adjust the vertical deviation and the horizontal deviation so as to enable the power distribution cabinet to.
The utility model discloses beneficial effect as follows:
(1) the problems of paint falling deformation and floor tile scratching of the power distribution cabinet caused by collision between the cabinet bodies and the ground are solved through the frame body structure;
(2) this device is easily dismantled, has solved traditional mounting means in narrow and small space, is difficult to carry out cabinet body quotation deviation, the extremely low problem of horizontal deviation adjustment efficiency.
Drawings
FIG. 1 is a schematic view of a novel power distribution cabinet installation auxiliary frame;
FIG. 2 is a schematic view of a novel power distribution cabinet mounting auxiliary frame bracket;
FIG. 3 is a schematic diagram of a novel power distribution cabinet installation auxiliary frame;
FIG. 4 is a schematic view of a novel power distribution cabinet installation auxiliary frame pull rod set;
FIG. 5 is a schematic view of a first movable pull rod of a novel power distribution cabinet installation auxiliary frame;
fig. 6 is a schematic view of a second movable pull rod of a novel power distribution cabinet installation auxiliary frame.
Reference numerals:
1. a support; 11. a frame body; 111. erecting a rod; 112. a cross bar; 12. a cross beam; 13. a pull rod set; 131. a first movable pull rod; 1311. a first connecting rod; 1312. a first support bar; 132. a second movable pull rod; 1321. a second connecting rod; 1322. a second support bar; 2. and a caster.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
Example 1
As shown in figure 1, a novel power distribution cabinet installation auxiliary frame comprises a support 1 and trundles 2, wherein the trundles 2 are arranged at the bottom of the support 1.
As shown in fig. 2, the support 1 includes a frame 11, a beam 12, and a pull rod group 13, where the frame 11 is used to support the whole structure, the beam 12 is disposed at the upper end of the frame 11 to realize the hoisting function of the electrical distribution cabinet, and the pull rod group 13 is disposed at the periphery of the frame 11 to stabilize the frame 11. The beam 12 is made of DN40, DN50 steel pipe and phi 10 steel bar.
As shown in fig. 3, the frame 11 includes four vertical rods 111 and six cross rods 112, the vertical rods 111 are parallel to each other and arranged in a rectangular shape, the four cross rods 112 are parallel to each other and sequentially connect the end portions of the vertical rods 111 on the same side, and the other two cross rods 112 are parallel to each other and the end portions of the cross rods 112 are respectively connected to the middle portions of the two vertical rods 111. The two ends of the cross beam 12 are respectively disposed between the two opposite cross bars 112 and perpendicular to the two end cross bars 112. The cross bar 112 is made of a steel pipe of N40.
As shown in fig. 4, the tie bar set 13 includes a first movable tie bar 131 and a second movable tie bar 132, the first movable tie bar 131 is parallel to the cross bar 112 at one end of the cross beam 12 in a plane formed by the cross bar 112 at one end of the cross beam 12 and two adjacent vertical rods 111, the second movable tie bar 132 is parallel to the cross bar 112 at the other end of the cross beam 12 in a plane formed by the cross bar 112 at the other end of the cross beam 12 and two adjacent vertical rods 111, and two ends of the first movable tie bar 131 and the second movable tie bar 132 are respectively connected to two adjacent vertical rods 111. The connecting point of the second movable pull rod 132 and the upright 111 is located at the same length position of the cross rod 112 in the middle of the upright 111, and the connecting point of the pull rod 131 and the upright 111 is located between the second movable pull rod 132 and the end cross rod 112.
The door-shaped member made of DN40 and DN50 steel pipes is a vertical bearing member of the auxiliary mounting rack. The tie rods 131 and 132 are DN40 steel tubes and 1350mm long, and the uprights 111 are DN50 steel tubes and 3000mm long (taking into account the ground mat height and so as to be suitable for standard sized cabinet installations).
As shown in fig. 5, the first movable pull rod 131 and the second movable pull rod 132 are both U-shaped pull rods, the first movable pull rod includes a first connection rod 1311 and a first support rod 1312, the first connection rod 1311 is disposed at two ends of the first support rod 1312 and perpendicular to the first support rod 1312, the first connection rod 1311 is connected to the upright 111, and the axis of the first connection rod 1311 is parallel to the axis of the upright 111. The U-shaped pull rod 131 and the pull rod 132 made of DN40 and DN50 steel tubes, the horizontal cross rod is DN50 steel tube with length of 1350mm, the vertical rod is DN40 steel tube with length of 400mm, and the U-shaped pull rod and the pull rod are arranged at connecting rods with 1500mm and 2300mm lateral vertical rods.
As shown in fig. 6, the second movable pull rod 132 includes a second connecting rod 1321 and a second supporting rod 1322, the second connecting rod 1321 is disposed at two ends of the second supporting rod 1322 and perpendicular to the second supporting rod 1322, the second connecting rod 1321 is connected to the upright 111, and the axis of the second connecting rod 1321 is parallel to the axis of the upright 111
In the embodiment, the pull rod 132 and the pull rod 131 with the heights of 1500mm and 2300mm are U-shaped pull rods and are movably connected with the upright rod 111.
The use method of the power distribution cabinet installation auxiliary frame comprises the following steps:
and S1, pushing the assembled complete set of power distribution cabinet installation auxiliary frame to enable the low-voltage power distribution cabinet to be positioned below the hanger beam 12. The chain block fixing hook is connected with a hanger beam stress component, the hoisting hook is connected with a low-voltage cabinet with a lifting lug, and the low-voltage power distribution cabinet is lifted 150mm away from the ground.
S2, the complete set of power distribution cabinet installation auxiliary frame which is pushed to bear transports the low-voltage cabinet to a corresponding installation position along the equipment foundation, and the levelness and the verticality of the low-voltage cabinet are well adjusted in the process of dropping the low-voltage cabinet onto the equipment foundation according to the infrared baseline.
And S3, repeating the steps S1-S3, and placing all the low-voltage power distribution cabinets in place above the equipment foundation.
And S4, checking the horizontal deviation and the vertical deviation of adjacent low-voltage power distribution cabinets and the whole row of low-voltage power distribution cabinets according to the standard and design requirements by taking the adjusted infrared ray as a base line, and if a cabinet body with the deviation not meeting the requirements exists, disassembling the horizontal reinforcing pull rod 132 at the 1500mm position of the installation auxiliary frame of the low-voltage power distribution cabinet, pushing the installation auxiliary frame of the low-voltage power distribution cabinet to move to the position of the low-voltage power distribution cabinet to be adjusted along the row of cabinet body, and lifting the power distribution cabinet to adjust the vertical deviation and the horizontal deviation so as to enable the power distribution cabinet to reach the.
The above, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (7)

1. The utility model provides a novel switch board installation auxiliary frame which characterized in that: including support (1) and truckle (2), truckle (2) set up in support (1) bottom, support (1) includes framework (11), crossbeam (12) and pull rod group (13), framework (11) are used for supporting overall structure, crossbeam (12) set up in framework (11) upper end is used for realizing that the electrical distribution cabinet hangs the function, pull rod group (13) set up in framework (11) periphery is used for stabilizing framework (11).
2. The novel power distribution cabinet installation auxiliary frame according to claim 1, characterized in that: frame (11) include four pole setting (111) and six horizontal pole (112), pole setting (111) are parallel to each other and are the rectangle and arrange, four horizontal pole (112) are parallel to each other and connect gradually pole setting (111) homonymy tip, two in addition horizontal pole (112) are parallel to each other just horizontal pole (112) tip connects two respectively pole setting (111) middle part, pole setting (111) free end sets up truckle (2).
3. The novel power distribution cabinet installation auxiliary frame according to claim 2, characterized in that: the two ends of the cross beam (12) are respectively arranged between the two opposite cross rods (112) and are perpendicular to the two cross rods (112).
4. The novel power distribution cabinet installation auxiliary frame according to claim 2, characterized in that: pull rod group (13) are including first activity pull rod (131) and second activity pull rod (132), first activity pull rod (131) in horizontal pole (112) and the two adjacent of crossbeam (12) one end the in-plane parallel that pole setting (111) are constituteed horizontal pole (112) of crossbeam (12) one end, second activity pull rod (132) in horizontal pole (112) and the two adjacent of crossbeam (12) the in-plane parallel that pole setting (111) are constituteed horizontal pole (112) of crossbeam (12) the other end, two adjacent are connected respectively at first activity pull rod (131) and second activity pull rod (132) both ends pole setting (111).
5. The novel power distribution cabinet installation auxiliary frame according to claim 4, characterized in that: the connecting point of the second movable pull rod (132) and the upright rod (111) is positioned at the same length position of the cross rod (112) in the middle of the upright rod (111), and the connecting point of the first movable pull rod (131) and the upright rod (111) is positioned between the second movable pull rod (132) and the cross rod (112) arranged at the end part.
6. The novel power distribution cabinet installation auxiliary frame according to claim 4, characterized in that: the first movable pull rod (131) and the second movable pull rod (132) are both U-shaped pull rods, the first movable pull rod comprises first connecting rods (1311) and first supporting rods (1312), the first connecting rods (1311) are arranged at two ends of the first supporting rods (1312) and are perpendicular to the first supporting rods (1312), the first connecting rods (1311) are connected with the vertical rod (111), and the axis of the first connecting rods (1311) is parallel to the axis of the vertical rod (111); the second movable pull rod (132) comprises a second connecting rod (1321) and a second supporting rod (1322), the second connecting rod (1321) is arranged at two ends of the second supporting rod (1322) and is perpendicular to the second supporting rod (1322), the second connecting rod (1321) is connected with the upright rod (111), and the axis of the second connecting rod (1321) is parallel to the axis of the upright rod (111).
7. The novel power distribution cabinet installation auxiliary frame according to claim 1, characterized in that: the caster wheels (2) are universal wheels.
CN202020085132.XU 2020-01-15 2020-01-15 Novel switch board installation auxiliary frame Active CN212101668U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020085132.XU CN212101668U (en) 2020-01-15 2020-01-15 Novel switch board installation auxiliary frame

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020085132.XU CN212101668U (en) 2020-01-15 2020-01-15 Novel switch board installation auxiliary frame

Publications (1)

Publication Number Publication Date
CN212101668U true CN212101668U (en) 2020-12-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020085132.XU Active CN212101668U (en) 2020-01-15 2020-01-15 Novel switch board installation auxiliary frame

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CN (1) CN212101668U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113973465A (en) * 2021-09-17 2022-01-25 上海宝冶集团有限公司 Automatic positioning device for mounting electrical panel cabinet and using method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113973465A (en) * 2021-09-17 2022-01-25 上海宝冶集团有限公司 Automatic positioning device for mounting electrical panel cabinet and using method

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