CN216477120U - Electromechanical device for building installation's engineering ladder - Google Patents
Electromechanical device for building installation's engineering ladder Download PDFInfo
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- CN216477120U CN216477120U CN202122285857.0U CN202122285857U CN216477120U CN 216477120 U CN216477120 U CN 216477120U CN 202122285857 U CN202122285857 U CN 202122285857U CN 216477120 U CN216477120 U CN 216477120U
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Abstract
The utility model discloses an engineering ladder for mounting electromechanical equipment for a building, which comprises a telescopic bottom plate, wherein two support columns are connected to one side of the telescopic bottom plate, a support plate is connected to the upper parts of the two support columns, a stair is connected to the telescopic end of the telescopic bottom plate, the upper end of the stair is connected to the lower side surface of the support plate in a sliding mode, a first sliding block is connected to the vertical side surface of each support column in a sliding mode, a bearing plate is hinged to the two first sliding blocks, a fixing piece is connected between the bearing plate and the first sliding block, and a driving device for driving the bearing plate to move up and down is connected to the telescopic bottom plate. The utility model has the advantages that: the engineering ladder can drive the bearing plate to move up and down through the double-shaft motor, can also be folded to avoid occupying space, and can be conveniently stored when not in use through the telescopic bottom plate to shrink the whole body.
Description
Technical Field
The utility model relates to the technical field of building electromechanical equipment, in particular to an engineering ladder for mounting building electromechanical equipment.
Background
With the continuous improvement of the living standard of people, people have more and more demands on electromechanical equipment in daily life, and the electromechanical equipment from vehicles to various household appliances, computers, printers and the like becomes indispensable electromechanical products in the life of people, advanced electromechanical equipment not only can greatly improve the labor productivity, reduce the labor intensity, improve the production environment and complete the work which cannot be completed by manpower, but also has direct and important influence on the development of the whole national economy, the improvement of science and technology and national defense strength as one of the national industrial bases, and is an important mark for measuring the national science and technology level and the comprehensive national strength.
Through the retrieval, chinese patent CN213330862U discloses an engineering ladder of electromechanical device installation for building, including flexible bottom plate, flexible bottom plate's lower extreme is equipped with a plurality of gyro wheels, two hang plates of flexible bottom plate's two upper end fixedly connected with, two be equipped with the polylith footboard, polylith between the hang plate the both ends of footboard respectively with two hang plate fixed connection, two upstands of flexible bottom plate's upper end fixedly connected with, flexible bottom plate's upper end is equipped with the roof, two the upper end of hang plate respectively with the lower terminal surface fixed connection of roof, two the upper end of upstand respectively with the lower terminal surface fixed connection of roof, be connected with slewing mechanism on the flexible bottom plate, be connected with the loading board on slewing mechanism's the lateral wall. The utility model can help the staff to move the electromechanical equipment to a high place, thereby facilitating the movement of the electromechanical equipment by the staff, further facilitating the work of the staff and indirectly improving the work efficiency of the staff.
Although realized removing the purpose of eminence with equipment through the loading board, the loading board can't be packed up when not using, causes the engineering ladder to occupy a large amount of spaces when depositing, is not convenient for deposit.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the defects in the prior art and provides an engineering ladder for mounting electromechanical equipment for a building.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides an engineering ladder of electromechanical device installation for building, includes flexible bottom plate, connects two support columns on one side of flexible bottom plate, at the top joint support board of two support columns, connects stair at the flexible end of flexible bottom plate, and the upper end of stair is in the downside sliding connection of backup pad, the first sliding block of equal sliding connection on the vertical side of every support column, articulated on two first sliding blocks accept the board, accept the board with be connected with the mounting between the first sliding block, connect on flexible bottom plate and be used for the drive accept the drive arrangement that the board reciprocated.
Preferably, drive arrangement includes the biax motor, and the biax motor is connected on the flexible bottom plate, all connects the wire reel on two main shafts of biax motor, all around the wiring on every wire reel connects the rope, and the free end of every rope all passes through the fixed pulley, and the free end of every rope all connects on the board is accepted the guardrail is connected all around the top of backup pad, connects on the guardrail the fixed pulley.
Preferably, the two side surfaces of the bearing plate are respectively provided with a guide groove, the two guide grooves are arranged oppositely, each guide block is connected with the guide groove in a sliding mode, each guide block is connected with a ring, each ring is connected with the free end of the corresponding rope, each guide block is further provided with a first threaded through hole, each first threaded through hole is internally connected with a first bolt in a threaded mode, and each first bolt is used for locking the corresponding guide block.
Preferably, the four corners below the telescopic bottom plate are connected with wheels, the telescopic bottom plate comprises a flat plate, one side surface of the flat plate is provided with a first sliding groove, the first sliding groove is connected with a sliding plate in a sliding mode, the upper portion of the sliding plate is connected with the stair, the other side surface of the flat plate is provided with a second threaded through hole, the second threaded through hole is communicated with the first sliding groove, the second threaded through hole is in threaded connection with a second bolt, and the second bolt is used for locking the sliding plate.
Preferably, a second sliding groove is formed in the lower side face of the supporting plate, a second sliding block is connected in the second sliding groove in a sliding mode, and the stair is connected below the second sliding block.
Preferably, the mounting includes the riser, and the riser is connected the below of accepting the board is close to one side of first sliding block is equipped with the through-hole on the riser, is equipped with the screw thread blind hole on corresponding first sliding block, the screw thread blind hole with through-hole on the riser corresponds the setting, passes corresponding through-hole at screw thread through-hole internal thread connection the locking bolt.
The utility model has the advantages that: the engineering ladder installed by electromechanical equipment for the building, provided by the utility model, not only can drive the bearing plate to move up and down through the double-shaft motor, but also can be used for retracting the bearing plate to avoid occupying space, and can be conveniently stored when not used through the telescopic bottom plate to shrink the whole body.
Drawings
Fig. 1 is a schematic structural diagram of an engineering ladder installed by electromechanical equipment for building provided by the utility model;
FIG. 2 is an enlarged schematic view of section A of FIG. 1;
fig. 3 is an enlarged schematic view of a portion B of fig. 1.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is described in further detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the utility model and are not intended to limit the utility model.
As shown in fig. 1, the engineering ladder for mounting electromechanical equipment for a building provided by the utility model comprises a telescopic bottom plate 1, wherein the telescopic bottom plate 1 comprises a flat plate 1.2, a first sliding groove is arranged on one side surface of the flat plate 1.2, a sliding plate 1.3 is connected in the first sliding groove in a sliding manner, a second threaded through hole is arranged on the other side surface of the flat plate 1.2, the second threaded through hole is communicated with the first sliding groove, a second bolt 1.4 is connected in the second threaded through hole in a threaded manner, and the second bolt 1.4 is used for locking the sliding plate 1.3.
The wheels 1.1 are connected to four corners below the telescopic bottom plate 1, namely two wheels 1.1 are fixed below the flat plate 1.2 through bolts, and two wheels 1.1 are fixed below the sliding plate 1.3 through bolts, so that the sliding plate 1.3 can be conveniently contracted by the first sliding groove.
Two support columns 2 of one side welding on flexible bottom plate 1, at the top welding backup pad 3 of two support columns 2, through bolt fixed connection stair 4 on sliding plate 1.3, stair 4 slope sets up, the staff of being convenient for scrambles, and the upper end of stair 4 is in the downside sliding connection of backup pad 3 is equipped with the second sliding tray at the downside of backup pad 3 promptly, sliding connection second sliding block 3.1 in the second sliding tray, passes through the upper end of bolt fixed stair 4 in the below of second sliding block 3.1.
Equal sliding connection first sliding block 5 on the vertical side of every support column 2, in this embodiment, be equipped with vertical third sliding tray on the side of every support column 2 promptly, corresponding first sliding block 5 of sliding connection in every third sliding tray, articulated accept the board 6 on two first sliding blocks 5, accept the board 6 with be connected with mounting 7 between the first sliding block 5, as shown in fig. 2, mounting 7 includes riser 7.1, and riser 7.1 welds the below of accepting board 6 is close to one side of first sliding block 5 is equipped with the through-hole on riser 7.1, is equipped with the screw thread blind hole on corresponding first sliding block 5, the screw thread blind hole with through-hole on the riser 7.1 corresponds the setting, passes corresponding through-hole at screw thread through-hole internal threaded connection locking bolt 7.2.
Connect on flexible bottom plate 1 and be used for the drive accept drive arrangement 8 that board 6 reciprocated, drive arrangement 8 includes double-shaft motor 8.1, and double-shaft motor 8.1 passes through the bolt fastening and is in on dull and stereotyped 1.2, all connect wire reel 8.2 on two main shafts of double-shaft motor 8.1, all around connecing rope 8.3 on every wire reel 8.2, and every rope 8.3's free end all passes through fixed pulley 8.4, and every rope 8.3's free end all connects on accepting board 6 guardrail 9 is connected all around the top of backup pad 3, passes through the bolt fastening on guardrail 9 fixed pulley 8.4.
As shown in fig. 3, two side surfaces of the bearing plate 6 are provided with guide grooves 6.1, the two guide grooves 6.1 are arranged oppositely, each guide block 6.2 is connected with the guide groove 6.1 in a sliding manner, each guide block 6.2 is welded with a ring 6.3, each ring 6.3 is connected with a free end of the corresponding rope 8.3, each guide block 6.2 is further provided with a first threaded through hole, each first threaded through hole is connected with a first bolt 6.4 in a threaded manner, and each first bolt 6.4 is used for locking the corresponding guide block 6.2.
The working principle is as follows: make and accept board 6 and rotate parallel with the horizontal plane, will accept board 6 and first sliding block 5 through locking bolt 7.2 and fix, prevent to accept board 6 and rotate, then through removing guide block 6.2 thereby confirm the stress point, thereby board 6 is accepted in better pulling, twist and move first bolt 6.4 and fix guide block 6.2, drive wire reel 8.2 around connecing rope 8.3 through double-shaft motor 8.1, thereby board 6 upwards is accepted in the pulling, upwards carry equipment, when not using, unscrew locking bolt 7.2, make and accept board 6 and can rotate along the pin joint, and unscrew first bolt 6.4, rotate double-shaft motor 8.1 pulling and accept vertical setting of board 6, and hug closely support column 2, make sliding plate 1.3 indentation first sliding tray at last, thereby make and reduce holistic occupation space.
Claims (6)
1. The utility model provides an engineering ladder of electromechanical device installation for building which characterized in that: including flexible bottom plate (1), connect two support columns (2) on one side on flexible bottom plate (1), in top joint support board (3) of two support columns (2), at flexible end connection stair (4) of flexible bottom plate (1), the upper end of stair (4) is in the downside sliding connection of backup pad (3), equal sliding connection first sliding block (5) on the vertical side of every support column (2), articulated on two first sliding blocks (5) accept board (6), accept board (6) with be connected with mounting (7) between first sliding block (5), connect on flexible bottom plate (1) and be used for the drive accept drive arrangement (8) that board (6) reciprocated.
2. The mechanical and electrical equipment mounted engineering ladder for building of claim 1, characterized in that: drive arrangement (8) are including double-shaft motor (8.1), and double-shaft motor (8.1) are connected on flexible bottom plate (1), all connect wire reel (8.2) on two main shafts of double-shaft motor (8.1), all around-connection rope (8.3) on every wire reel (8.2), and the free end of every rope (8.3) all passes through fixed pulley (8.4), and the free end of every rope (8.3) all connects on accepting board (6) guardrail (9) is connected all around to the top of backup pad (3), connects on guardrail (9) fixed pulley (8.4).
3. The mechanical and electrical equipment mounted engineering ladder for building of claim 2, characterized in that: all be equipped with guide way (6.1) on the both sides face of accepting board (6), two guide way (6.1) set up relatively, equal sliding connection guide block (6.2) in every guide way (6.1), all connect ring (6.3) on every guide block (6.2), all connect correspondingly on every ring (6.3) the free end of rope (8.3), still be equipped with first screw through-hole on every guide block (6.2), equal threaded connection first bolt (6.4) in every first screw through-hole, first bolt (6.4) are used for locking corresponding guide block (6.2).
4. The mechanical and electrical equipment mounted engineering ladder for building of claim 1, characterized in that: the four corners of the lower portion of the telescopic bottom plate (1) are connected with wheels (1.1), the telescopic bottom plate (1) comprises a flat plate (1.2), a first sliding groove is formed in one side face of the flat plate (1.2), a sliding plate (1.3) is connected in the first sliding groove in a sliding mode, the stairs (4) are connected above the sliding plate (1.3), a second threaded through hole is formed in the other side face of the flat plate (1.2), the second threaded through hole is communicated with the first sliding groove, a second bolt (1.4) is connected in the second threaded through hole in a threaded mode and is connected with the second bolt (1.4), and the second bolt (1.4) is used for locking the sliding plate (1.3).
5. The mechanical and electrical equipment mounted engineering ladder for building of claim 1, characterized in that: the downside of backup pad (3) is equipped with the second sliding tray, sliding connection second sliding block (3.1) in the second sliding tray, connects below second sliding block (3.1) stair (4).
6. The mechanical and electrical equipment mounted engineering ladder for building of claim 1, characterized in that: mounting (7) are including riser (7.1), and riser (7.1) are connected the below of accepting board (6) is close to one side of first sliding block (5) is equipped with the through-hole on riser (7.1), is equipped with the screw thread blind hole on corresponding first sliding block (5), the screw thread blind hole with through-hole on riser (7.1) corresponds the setting, passes locking bolt (7.2) of corresponding through-hole at screw thread through-hole internal thread connection.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122285857.0U CN216477120U (en) | 2021-09-22 | 2021-09-22 | Electromechanical device for building installation's engineering ladder |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122285857.0U CN216477120U (en) | 2021-09-22 | 2021-09-22 | Electromechanical device for building installation's engineering ladder |
Publications (1)
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CN216477120U true CN216477120U (en) | 2022-05-10 |
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Family Applications (1)
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CN202122285857.0U Active CN216477120U (en) | 2021-09-22 | 2021-09-22 | Electromechanical device for building installation's engineering ladder |
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CN (1) | CN216477120U (en) |
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2021
- 2021-09-22 CN CN202122285857.0U patent/CN216477120U/en active Active
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