CN212751716U - Cable erection supporting structure for electromechanical installation - Google Patents

Cable erection supporting structure for electromechanical installation Download PDF

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Publication number
CN212751716U
CN212751716U CN202021686341.6U CN202021686341U CN212751716U CN 212751716 U CN212751716 U CN 212751716U CN 202021686341 U CN202021686341 U CN 202021686341U CN 212751716 U CN212751716 U CN 212751716U
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China
Prior art keywords
anchor clamps
clamp
cable
electromechanical installation
cable erection
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CN202021686341.6U
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Chinese (zh)
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张富
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Zhonglian Chuangke Tianjin Technology Development Co ltd
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Zhonglian Chuangke Tianjin Technology Development Co ltd
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Abstract

The utility model discloses a cable erection bearing structure of electromechanical installation usefulness, including mounting bracket and anchor clamps, the top of supporting the horizontal pole is provided with the activity round pin, and the outside of activity round pin is provided with the bellying, the connecting seat is installed to the upper end of activity round pin, and the inside of connecting seat is provided with the recess, the top of connecting seat is connected with fastening spring, anchor clamps are installed in fastening spring's top, the hinge is installed to the right-hand member of anchor clamps, the left end of anchor clamps is fixed with splint, and the inside arrangement of splint has the bolt, the terminal arrangement of bolt has fixation nut, the interior terminal surface of anchor clamps is installed elastic cushion. This cable erection bearing structure of electromechanical installation usefulness is provided with anchor clamps, and anchor clamps are provided with threely, can reach the effect of installing a plurality of cables on a strutting arrangement simultaneously, have solved above the support can only fix a cable, waste time and energy, reduce the problem of laying efficiency.

Description

Cable erection supporting structure for electromechanical installation
Technical Field
The utility model relates to a cable erection technical field specifically is a cable erection bearing structure of electromechanical installation usefulness.
Background
The cable is an electric energy or signal transmission device, usually comprises several or several groups of wires, with the continuous development of economy, the progress of China's urban telephone is continuously promoted, the urban population is more and more, and the overground high-rise buildings are more and more, so the power supply cable in the city is mainly laid from the underground.
The cable support frame that has now can only fix a cable above being a support, and the installation work volume that causes the cable support is big very much, wastes time and energy, has reduced and has laid efficiency, and the cable generally is fixed through iron wire and a supporting beam ligature, and long-term the back of using, the easy pine of iron wire takes off and causes the cable to drop, has the potential safety hazard, can not be fine satisfies people's user demand, to above-mentioned condition, carries out technical innovation on the cable erection supporting structure basis of current electromechanical installation usefulness.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a cable erection bearing structure of electromechanical installation usefulness to it can only fix a cable to put forward current cable support frame above for a support to solve above-mentioned background, causes cable support's installation work load big very much, wastes time and energy, has reduced laying efficiency, and the cable is generally fixed through iron wire and a supporting beam ligature, long-term the use back, the iron wire easily takes off and causes the cable to drop, has the potential safety hazard, the not fine user demand problem that satisfies people.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a cable erection bearing structure of electromechanical installation usefulness, includes mounting bracket and anchor clamps, the telescopic link is all installed to the below left and right sides of mounting bracket, and the lower extreme of telescopic link is connected with and drives actuating cylinder, the inboard of mounting bracket is installed and is supported the horizontal pole, and supports the inside of horizontal pole and seted up the draw-in groove, the top of supporting the horizontal pole is provided with the removable pin, and the outside of removable pin is provided with the bellying, the connecting seat is installed to the upper end of removable pin, and the inside of connecting seat is provided with the recess, the top of connecting seat is connected with fastening spring, anchor clamps are installed in fastening spring's top, the hinge is installed to the right-hand member of anchor clamps, the left end of anchor clamps is fixed with splint, and the inside arrangement of splint has the.
Preferably, drive actuating cylinder and pass through to constitute extending structure between telescopic link and the mounting bracket, and drive actuating cylinder and be the symmetric distribution about the vertical central line of mounting bracket.
Preferably, the structure of the clamp is a circular ring-shaped structure, and the number of the clamps is three.
Preferably, the clamping plates are symmetrically distributed about a horizontal center line of the clamp, and the bolts penetrate through the interior of the clamp.
Preferably, the clamp forms an elastic structure with the support cross rod through a fastening spring, and the movable pin is of an inverted T-shaped structure.
Preferably, the structure of bellying and recess is cylindric structure, and constitutes the block structure between bellying and the recess, constitute rotating-structure between activity round pin and the connecting seat.
Preferably, the structure of draw-in groove is the cruciform structure, the material of elasticity cushion is the rubber material, and closely laminates between elasticity cushion and the anchor clamps.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model discloses being provided with and driving actuating cylinder can drive the mounting bracket through the telescopic link and go up and down, can adjusting the device height, so can send the cable to the top, the structure of anchor clamps is the ring form structure, unanimous with the cable shape, can play the effect of centre gripping to the cable, anchor clamps are provided with threely, can reach the effect of installing a plurality of cables on a strutting arrangement simultaneously, solved can only fix a cable above a support, cause the installation work load of cable support very big, waste time and energy, reduced the problem of laying efficiency;
2. the utility model discloses being provided with the bolt and can passing splint and fixing anchor clamps, can increasing the steadiness of anchor clamps through fastening spring, the movable pin can be convenient for fastening spring and the connection of supporting beam, has avoided the cable to pass through iron wire and supporting beam ligature fixed, and after long-term use, the iron wire easily takes off and causes the cable to drop, has the problem of potential safety hazard;
3. the utility model discloses the structure that is provided with bellying and recess is cylindric structure, so can block mutually, reaches the activity round pin and can be at the inside pivoted effect of connecting seat, and the structure of draw-in groove is cruciform structure, can make the activity round pin stretch into inside the draw-in groove, and the material of elasticity cushion is the rubber material, can avoid the direct and anchor clamps contact of cable surface, and the cable surface suffers the condition of wearing and tearing, greatly increased this kind of cable erection bearing structure's of electromechanical installation usefulness practicality.
Drawings
FIG. 1 is a schematic view of the structure of the present invention;
FIG. 2 is a schematic structural view of the clamp of the present invention;
FIG. 3 is a schematic sectional view of the connecting seat of the present invention;
fig. 4 is a schematic top view of the cross bar of the present invention.
In the figure: 1. a mounting frame; 2. a support rail; 3. a clamp; 4. a splint; 5. a bolt; 6. fixing a nut; 7. an elastic cushion; 8. a fastening spring; 9. a connecting seat; 10. a movable pin; 11. a driving cylinder; 12. a telescopic rod; 13. a hinge; 14. a boss portion; 15. a groove; 16. a clamping groove.
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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the present invention provides a technical solution: a cable erection supporting structure for electromechanical installation comprises an installation frame 1 and a clamp 3, telescopic rods 12 are installed on the left side and the right side below the installation frame 1, the lower ends of the telescopic rods 12 are connected with driving cylinders 11, the driving cylinders 11 form a telescopic structure through the telescopic rods 12 and the installation frame 1, the driving cylinders 11 are symmetrically distributed about the vertical central line of the installation frame 1, the driving cylinders 11 can drive the installation frame 1 to lift through the telescopic rods 12, the height of the device can be adjusted, and therefore cables can be conveyed to the upper portion;
the inner side of the mounting frame 1 is provided with a supporting cross rod 2, a clamping groove 16 is formed in the supporting cross rod 2, a movable pin 10 is arranged above the supporting cross rod 2, a protruding portion 14 is arranged on the outer side of the movable pin 10, the upper end of the movable pin 10 is provided with a connecting seat 9, a groove 15 is formed in the connecting seat 9, the protruding portion 14 and the groove 15 are both cylindrical structures, a clamping structure is formed between the protruding portion 14 and the groove 15, a rotating structure is formed between the movable pin 10 and the connecting seat 9, the protruding portion 14 and the groove 15 are both cylindrical structures, and therefore the protruding portion 14 and the groove 15 can be mutually clamped, and the effect that the movable pin 10 can rotate in the connecting seat 9 is;
the fixture is characterized in that a fastening spring 8 is connected above the connecting seat 9, the fixture 3 is installed above the fastening spring 8, the structure of the fixture 3 is an annular structure, three fixtures 3 are arranged, the fixture 3 forms an elastic structure between the fastening spring 8 and the supporting cross rod 2, the structure of the movable pin 10 is an inverted T-shaped structure, the structure of the fixture 3 is an annular structure, the shape of the fixture is consistent with that of a cable, the fixture 3 can play a clamping effect on the cable, three fixtures are arranged, the effect of simultaneously installing a plurality of cables on one supporting device can be achieved, the problem that only one cable can be fixed on one support, the installation workload of the cable support is large, time and labor are wasted, the laying efficiency is reduced is solved, the stability of the fixture 3 can be improved through the fastening spring 8, and the movable pin 10 can facilitate the connection of the fastening spring 8 and the;
the right end of the clamp 3 is provided with a hinge 13, the left end of the clamp 3 is fixed with a clamping plate 4, a bolt 5 is arranged inside the clamping plate 4, the clamping plate 4 is symmetrically distributed about the horizontal center line of the clamp 3, the bolt 5 penetrates through the clamp 3, the bolt 5 can penetrate through the clamping plate 4 to fix the clamp 3, and the stability of the clamp 3 can be improved through a fastening spring 8;
the end of bolt 5 is settled there is fixation nut 6, the interior terminal surface of anchor clamps 3 is installed elastic cushion 7, draw-in groove 16's structure is the cruciform structure, elastic cushion 7's material is the rubber material, and closely laminate between elastic cushion 7 and anchor clamps 3, draw-in groove 16's structure is the cruciform structure, can make activity round pin 10 stretch into inside draw-in groove 16, elastic cushion 7's material is the rubber material, can avoid the direct and 3 contacts of anchor clamps of cable, the condition of wearing and tearing is suffered on the cable surface, greatly increased this cable erection bearing structure's of electromechanical installation usefulness practicality.
The working principle is as follows: when the cable erection supporting structure for electromechanical installation is used, firstly, the driving cylinder 11 is started, the driving cylinder 11 drives the mounting frame 1 to ascend through the telescopic rod 12, so that a cable can be conveyed to a required height, the cable is placed in the middle of the clamp 3, the clamp 3 is of an annular structure and is consistent with the shape of the cable, the cable can be better clamped, the elastic cushion 7 is made of rubber, the cable can be prevented from being directly contacted with the clamp 3, the surface of the cable is abraded, the two clamp plates 4 are combined together through the hinge 13, the clamp 3 is fixed by screwing the fixing nut 6 through the clamp plate 4 by the bolt 5, the fastening spring 8 is stretched downwards, the fastening spring 8 drives the connecting seat 9 and the movable pin 10 downwards, the movable pin 10 is inserted into the clamping groove 16, the structures of the protruding part 14 and the groove 15 are cylindrical structures, and can be mutually clamped in such a way, rotate certain angle with removable pin 10, the removable pin 10 and the draw-in groove 16 block of each other of T word column structure this moment, prevent removable pin 10 from the interior roll-off of draw-in groove 16, so can be connected anchor clamps 3 and support horizontal pole 2, the steadiness of support has been increased, it is fixed with cable and a supporting beam ligature to avoid with the iron wire, long-term the back of using, the easy pine of iron wire takes off and causes the cable to drop, there is the potential safety hazard, anchor clamps 3 are provided with threely, can reach the effect of installing a plurality of cables on one strutting arrangement simultaneously, can only fix a cable above avoiding a support, the installation work volume that causes cable support is big very much, waste time and energy, this is exactly the cable erection bearing structure's that this electromechanical installation used theory of.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (7)

1. The utility model provides a cable erection bearing structure of electromechanical installation usefulness, includes mounting bracket (1) and anchor clamps (3), its characterized in that: the left side and the right side of the lower portion of the mounting rack (1) are both provided with telescopic rods (12), the lower ends of the telescopic rods (12) are connected with driving cylinders (11), the inner side of the mounting rack (1) is provided with a supporting cross rod (2), a clamping groove (16) is formed in the supporting cross rod (2), a movable pin (10) is arranged above the supporting cross rod (2), a protruding portion (14) is arranged on the outer side of the movable pin (10), the upper end of the movable pin (10) is provided with a connecting seat (9), a groove (15) is formed in the connecting seat (9), a fastening spring (8) is connected above the connecting seat (9), the clamp (3) is arranged above the fastening spring (8), the right end of the clamp (3) is provided with a hinge (13), the left end of the clamp (3) is fixed with a clamping plate (4), and a bolt (5) is arranged in the, the tail end of the bolt (5) is provided with a fixing nut (6), and an elastic cushion (7) is arranged on the inner end face of the clamp (3).
2. A cable erection support structure for electromechanical installation as claimed in claim 1, wherein: drive actuating cylinder (11) and pass through to constitute extending structure between telescopic link (12) and mounting bracket (1), and drive actuating cylinder (11) and be the symmetric distribution about the vertical central line of mounting bracket (1).
3. A cable erection support structure for electromechanical installation as claimed in claim 1, wherein: the structure of anchor clamps (3) is the ring form structure, and anchor clamps (3) are provided with three.
4. A cable erection support structure for electromechanical installation as claimed in claim 1, wherein: the clamping plates (4) are symmetrically distributed about the horizontal center line of the clamp (3), and the bolts (5) penetrate through the clamp (3).
5. A cable erection support structure for electromechanical installation as claimed in claim 1, wherein: the clamp (3) forms an elastic structure with the support cross rod (2) through a fastening spring (8), and the movable pin (10) is of an inverted T-shaped structure.
6. A cable erection support structure for electromechanical installation as claimed in claim 1, wherein: the structure of bellying (14) and recess (15) is cylindric structure, and constitutes the block structure between bellying (14) and recess (15), constitute rotating-structure between activity round pin (10) and connecting seat (9).
7. A cable erection support structure for electromechanical installation as claimed in claim 1, wherein: the structure of draw-in groove (16) is the cross structure, the material of elasticity cushion (7) is the rubber material, and closely laminates between elasticity cushion (7) and anchor clamps (3).
CN202021686341.6U 2020-08-13 2020-08-13 Cable erection supporting structure for electromechanical installation Active CN212751716U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021686341.6U CN212751716U (en) 2020-08-13 2020-08-13 Cable erection supporting structure for electromechanical installation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021686341.6U CN212751716U (en) 2020-08-13 2020-08-13 Cable erection supporting structure for electromechanical installation

Publications (1)

Publication Number Publication Date
CN212751716U true CN212751716U (en) 2021-03-19

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ID=74988281

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Application Number Title Priority Date Filing Date
CN202021686341.6U Active CN212751716U (en) 2020-08-13 2020-08-13 Cable erection supporting structure for electromechanical installation

Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115333014A (en) * 2022-10-13 2022-11-11 南通金芸流体设备有限公司 Cable support frame for ship block building construction

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115333014A (en) * 2022-10-13 2022-11-11 南通金芸流体设备有限公司 Cable support frame for ship block building construction
CN115333014B (en) * 2022-10-13 2022-12-16 南通金芸流体设备有限公司 Cable support frame for ship block construction

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