A high-rise building construction apparatus transfer device

By designing a hidden traction rope for equipment transfer during high-rise building construction, the problems of operators tripping and equipment damage were solved, achieving safe and efficient equipment transfer.

CN117383172BActive Publication Date: 2026-01-23ANHUI HONGTAI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202311338278.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-16
Publication Date
2026-01-23
Estimated Expiration
2043-10-16

AI Technical Summary

Technical Problem

In high-rise building construction, operators are prone to tripping and falling when hoisting construction equipment due to the thin and concealed tow ropes. In addition, the equipment is easily damaged by impact during transportation.

Method used

Design an instrument transfer device that includes a mounting plate, a carrier, and a guide rail. The traction rope is hidden inside the guide rail. The carrier is driven to slide by a reel and a motor. Combined with a shock absorption device and a limiting plate, the device reduces the risk of tripping and slows down the movement speed of the instrument.

Benefits of technology

It effectively reduces the risk of operators tripping, reduces equipment damage, and improves construction safety and equipment stability.

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Abstract

The application discloses a high-rise building construction equipment transfer device, and relates to the technical field of equipment transfer devices. The device comprises a mounting plate, a carrier and a plurality of sections of guide rails connected in sequence. The mounting plate is mounted on the last section of the guide rails. The carrier is slidingly arranged on the guide rails. A traction rope is arranged in the guide rails. One end of the traction rope is tied to the carrier. A traction device is mounted on the mounting plate. The traction device drives the carrier to slide by winding the traction rope. A damping device is arranged on the mounting plate. The damping device is used for damping the carrier. The application has the effect of reducing the possibility of operators tripping over the traction rope.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of equipment transfer device, in particular to an equipment transfer device for high-rise building construction. BACKGROUND

[0002] For high-rise building construction, it is necessary to gradually construct from low to high, and the equipment required in the construction process includes vibration pump, cutting machine, air pump and air compressor, etc. These equipment also needs to be gradually transferred to high floors as the floor rises, in order to realize the recycling use of construction equipment, and also facilitate the related construction of high floors by means of the transferred equipment.

[0003] At present, the way to transfer equipment to high floors is usually to reserve a lifting hole (which can be a hole designed by the building, or a hole reserved by man, which can be reinforced and repaired later) at the bottom plate of the high floor. The operator can transfer the equipment of the low floor to the high floor along the lifting hole by using a hand-operated hoist.

[0004] For the equipment of the low floor, the operator usually needs to use a portable carrier and a traction rope for towing the carrier. By gradually winding the traction rope, the carrier carrying the equipment is towed to the position of the lifting hole, so as to facilitate the lifting operation. However, since the traction rope is thin, it is difficult to attract the attention of the operator. During the process of walking back and forth, the operator on site has the possibility of tripping over the traction rope. SUMMARY

[0005] In order to reduce the possibility of tripping over the traction rope by the operator, the present application provides an equipment transfer device for high-rise building construction.

[0006] The equipment transfer device for high-rise building construction provided by the present application adopts the following technical scheme:

[0007] An equipment transfer device for high-rise building construction, comprising a mounting plate, a carrier and a plurality of sections of guide rails connected in sequence, the mounting plate is installed on the last section of the guide rail, the carrier is slidingly arranged on the guide rail, a traction rope is arranged in the guide rail, one end of the traction rope is tied to the carrier, a traction device is installed on the mounting plate, the traction device drives the carrier to slide by winding the traction rope, a damping device is arranged on the mounting plate, and the damping device is used for damping treatment of the carrier.

[0008] Through the technical scheme, before the operator transfers the construction instrument to the high floor, the mounting plate is placed directly below the hoisting hole, then the traction rope is tied to the carrier, the carrier is placed on the guide rail adjacent to the mounting plate, according to the actual needs (i.e. the length of the transfer path), the guide rails of the corresponding number are connected end to end, finally the instrument to be transferred is placed on the carrier, and the traction rope is wound by the traction device, the traction rope drives the carrier to move along the guide rail to the position directly below the hoisting hole, so that the operator hoists the instrument upward along the hoisting hole from the high floor.

[0009] In the process of transferring the instrument by the carrier, since the traction rope is always hidden in the guide rail, and the guide rail placed on the ground is more conspicuous than the traction rope, it is easier to attract the attention of the operator, thereby reducing the possibility of the operator tripping over the traction rope, and reducing the possibility of the operator falling and getting hurt.

[0010] In a preferred example, the traction device comprises a winding wheel, the winding wheel is rotatably installed on the mounting plate, the traction rope is wound on the winding wheel, a driving source is arranged on the mounting plate, and the driving source is used to drive the winding wheel to rotate.

[0011] Through the technical scheme, after the operator places the instrument to be transferred on the carrier, the driving source is started, the driving source drives the winding wheel to rotate, the winding wheel drives the traction rope to move and gradually winds the traction rope on the winding wheel, the traction rope drives the carrier to gradually move along the guide rail to the direction close to the mounting plate, until the carrier moves to the position directly below the hoisting hole, so as to hoist the instrument to the high floor.

[0012] In a preferred example, the driving source comprises a motor, the motor is installed on the mounting plate, and the winding wheel is coaxially connected to the output shaft of the motor.

[0013] Through the technical scheme, after the operator places the instrument to be transferred on the carrier, the motor is started, the output shaft of the motor can drive the winding wheel to rotate, the winding wheel drives the carrier to move along the guide rail by winding the traction rope, and the transfer of the instrument is completed.

[0014] In a preferred example, the bottom of the carrier is provided with a connecting rod, one end of the connecting rod away from the carrier is provided with a sliding block, the guide rail is provided with a sliding part and a supporting part, the sliding part is located above the supporting part, a sliding groove one for sliding the sliding block is formed in the sliding part, a sliding groove two for sliding the connecting rod is formed in the bottom surface of the sliding part, and the sliding groove one and the sliding groove two are communicated with each other.

[0015] According to the technical scheme, the sliding groove two for the connecting rod to slide is arranged on the bottom wall of the sliding part, so that the possibility of the foreign matters such as gravel and sand falling into the sliding groove one is reduced, and the possibility of the sliding block being stuck by the foreign matters is reduced, thereby the stability of the carrier sliding can be maintained.

[0016] In a preferred example, the bottom wall of the sliding groove one is rollingly installed with a plurality of rolling balls, and the rolling balls can roll along the bottom wall of the sliding block.

[0017] According to the technical scheme, the sliding block on the carrier can slide along the rolling balls, and the rolling friction between the sliding block and the rolling balls is used to replace the sliding friction between the sliding block and the bottom wall of the sliding groove one, so that the frictional force suffered by the sliding block during the sliding is reduced, and the traction force required by the operator to pull the carrier to move is reduced, thereby the traction energy (manpower or electric power) can be saved.

[0018] In a preferred example, the damping device includes a damper and a spring, the damper is installed on the side wall of the mounting plate close to the guide rail, the spring is sleeved on the damper, a buffer plate is installed on the piston rod of the damper, one end of the spring is fixedly connected to the buffer plate, and the other end of the spring is fixedly connected to the mounting plate.

[0019] According to the technical scheme, after the carrier and the buffer plate are in contact, the moving speed of the carrier is effectively slowed down under the buffering effect of the damper and the spring, the possibility of the carrier and the mounting plate colliding is reduced, and the possibility of the instruments carried on the carrier being damaged due to the impact is reduced.

[0020] In a preferred example, a limiting plate is installed on the mounting plate close to the side wall of the guide rail, a plurality of elastic sheets for limiting the buffer plate are fixedly connected to the side wall of the damper close to the limiting plate, one end of the elastic sheet away from the limiting plate is inclined to the direction close to the mounting plate, and the buffer plate and the elastic sheet are matched with each other.

[0021] According to the technical scheme, the elastic sheet is made of spring steel, after the carrier and the buffer plate are in contact, the carrier pushes the buffer plate to move to the direction close to the mounting plate, after the buffer plate and the elastic sheet are in contact, the buffer plate extrudes the elastic sheet, the elastic sheet is elastically deformed, so that the buffer plate continues to move to the direction close to the mounting plate until the carrier stops moving. Under the hindering effect of the deformed elastic sheet, the possibility of the buffer plate moving to the direction away from the mounting plate due to the rebound force of the spring and the damper is reduced, and the carrier and the instruments on the carrier are maintained at the current position.

[0022] In addition, in the process of moving the buffer plate by the carrier, the elastic sheet needs to be overcome to do work, thus consuming part of the kinetic energy of the carrier, and the buffering effect on the carrier is enhanced.

[0023] In a preferred example, the installation plate is provided with an unlocking plate on the side close to the damper, the unlocking plate is used to release the elastic sheet from limiting the buffer plate, a lead screw is rotatably arranged in the installation plate, and the lead screw is used to drive the unlocking plate to slide.

[0024] Through the above technical solution, after the equipment on the carrier is lifted away from the carrier, the operator needs to pull the carrier to transport the next batch of equipment. After the carrier and the buffer plate are separated, the operator rotates the lead screw to drive the unlocking plate to move towards the installation plate, so that the unlocking plate pushes the elastic sheet away from the buffer plate to release the elastic sheet from limiting the buffer plate, so that the damper and the spring return to the original state.

[0025] Conversely, by reversely rotating the lead screw, the lead screw drives the unlocking plate to move away from the installation plate, so that the unlocking plate and the elastic sheet are separated, preparing for subsequent buffering of the carrier.

[0026] In a preferred example, the installation plate is provided with an unlocking plate on the side close to the damper, the unlocking plate is used to release the elastic sheet from limiting the buffer plate, a lead screw is rotatably arranged in the installation plate, and the lead screw is used to drive the unlocking plate to slide.

[0027] Through the above technical solution, in the process of moving the buffer plate by the carrier, the elastic sheet needs to be overcome to do work, thus consuming part of the kinetic energy of the carrier, and the buffering effect on the carrier is enhanced.

[0028] Conversely, in the process of moving the buffer plate by the carrier, the elastic sheet needs to be overcome to do work, thus consuming part of the kinetic energy of the carrier, and the buffering effect on the carrier is enhanced.

[0029] In a preferred embodiment, this application may be further configured such that: a plurality of stiffening ribs are fixedly connected to the buffer plate, and each of the stiffening ribs is fixedly connected to the piston rod of the damper.

[0030] With the above technical solution, since the stiffening rib is fixedly connected to the piston rod of the buffer plate and the damper, the possibility of breakage at the connection between the buffer plate and the piston rod is reduced under the support of the stiffening rib.

[0031] In summary, this application includes the following beneficial technical effects:

[0032] 1. During the process of operators transferring construction equipment using this equipment, the traction rope for moving the traction vehicle is always hidden inside the guide rail, which reduces the possibility of operators tripping over the traction rope and thus reduces the possibility of operators falling and getting injured.

[0033] 2. After the vehicle and the buffer plate come into contact, the buffering effect of the spring and damper slows down the vehicle's movement speed, reducing the possibility of a collision between the vehicle and the mounting plate, thereby reducing the possibility of damage to the equipment carried on the vehicle due to impact. Furthermore, the elastic plate's resistance to the buffer plate reduces the possibility of vehicle displacement due to the rebound of the spring and damper. Attached Figure Description

[0034] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application, mainly illustrating the construction of the carrier and the reel.

[0035] Figure 2 yes Figure 1 The partial cross-sectional structural diagram mainly illustrates the structure of the guide rail, connecting rod, and sliding block.

[0036] Figure 3 yes Figure 1 The partial cross-sectional structural diagram mainly illustrates the structure of the mounting plate and the traction rope.

[0037] Figure 4 yes Figure 1 A schematic diagram of a partial cross-sectional structure. Figure 4 and Figure 3 The sectional depths are different.

[0038] Figure 5 This is a partial structural diagram of an embodiment of this application, mainly illustrating the structure of the limiting plate and the elastic sheet.

[0039] Figure 6 yes Figure 4 The enlarged schematic diagram of section A mainly illustrates the structure of the lead screw, drive shaft, and unlocking plate.

[0040] Explanation of reference numerals in the attached figures:

[0041] 1, mounting plate; 11, traction device; 111, winding wheel; 12, driving source; 121, motor; 13, spur gear; 14, transmission shaft; 141, bevel gear one; 15, guide wheel; 2, carrier; 21, connecting rod; 211, sliding block; 212, connecting ring; 22, rack; 3, guide rail; 31, sliding part; 311, sliding groove one; 312, sliding groove two; 313, ball; 32, support part; 33, bolt; 34, nut; 301, traction rope; 4, damping device; 41, damper; 411, buffer plate; 412, stiffener; 42, spring; 5, limiting plate; 51, elastic sheet; 6, unlocking plate; 61, connecting plate; 62, sliding rod; 621, guide rod; 7, lead screw; 71, bevel gear two. DETAILED DESCRIPTION

[0042] The following will be described in detail with reference to the accompanying drawings. Figure 1 - the accompanying drawings Figure 6 The application will be further described in detail.

[0043] The application discloses a high-rise building construction equipment transfer device.

[0044] Refer to the accompanying drawings Figure 1 and the accompanying drawings Figure 2 As shown in the accompanying drawings, a high-rise building construction equipment transfer device comprises a mounting plate 1, a carrier 2 and two sets of guide rails 3, the two sets of guide rails 3 are arranged in parallel with each other, each set of guide rails 3 comprises a plurality of guide rails 3 connected in sequence, two adjacent guide rails 3 are connected through bolts 33 and nuts 34, and the bolts 33 and the nuts 34 are located on the opposite outer sides of the two sets of guide rails 3. The mounting plate 1 is installed at the end of the last guide rail 3, and the carrier 2 is slidingly arranged on the guide rail 3.

[0045] Refer to the accompanying drawings Figure 2 and the accompanying drawings Figure 3 As shown in the accompanying drawings, the bottom of the carrier 2 is fixedly connected with four connecting rods 21, each set of guide rails 3 and two same-side connecting rods 21 corresponding to the set of guide rails 3 are provided, and the end, away from the carrier 2, of each connecting rod 21 is provided with a sliding block 211, and the sliding block 211 and the connecting rod 21 are integrally formed. The guide rail 3 is provided with a sliding part 31 and a support part 32, the sliding part 31 is located above the support part 32, and the support part 32 is used for providing support for the guide rail 3. The bottom surface of the sliding part 31 is provided with a sliding groove two 312, the connecting rod 21 is slidingly arranged in the sliding groove two 312, a sliding groove one 311 is provided in the sliding part 31 along a horizontal line and penetrates through the sliding part 31, the sliding block 211 is slidingly arranged in the sliding groove one 311, and the sliding groove one 311 is communicated with the sliding groove two 312. The bottom wall of the sliding groove one 311 is rollingly installed with a plurality of balls 313, and the balls 313 can roll along the bottom wall of the sliding block 211.

[0046] The carrier 2 is slidably arranged on the guide rail 3 through the sliding block 211. Since the sliding groove two 312 for the sliding of the connecting rod 21 is arranged on the bottom of the sliding part 31, the possibility of foreign matter falling into the sliding groove one 311 and the sliding groove two 312 is reduced, so that the stability of the movement of the carrier 2 can be maintained.

[0047] Referring to the accompanying drawings Figure 1 and the accompanying drawings Figure 3 As shown in the accompanying drawings, the two connecting rods 21 close to the mounting plate 1 are fixedly connected with the connecting rings 212. The guide rail 3 is provided with the traction rope 301, one end of the traction rope 301 is tied to the connecting ring 212, and the mounting plate 1 is provided with the traction device 11 for winding the traction rope 301. The traction device 11 comprises a winding wheel 111, which is rotatably arranged on the top surface of the mounting plate 1. A guide wheel 15 is rotatably arranged in the mounting plate 1, and the end of the traction rope 301 away from the connecting rod 21 is wound on the winding wheel 111 through the guide wheel 15. The mounting plate 1 is provided with a driving source 12 for driving the winding wheel 111 to rotate, and the driving source 12 is a motor 121 mounted on the top of the mounting plate 1. The winding wheel 111 is coaxially fixedly connected to the output shaft of the motor 121.

[0048] After the operator places the equipment to be transported on the carrier 2, the operator starts the motor 121, the output shaft of the motor 121 drives the winding wheel 111 to rotate, so that the winding wheel 111 drives the carrier 2 to slide along the guide rail 3 by winding the traction rope 301, so that the carrier 2 moves towards the mounting plate 1 until the carrier 2 moves to the directly below the hoisting hole, so that the operator can hoist the equipment upwards along the hoisting hole from the high floor.

[0049] Since the traction rope 301 is always hidden in the guide rail 3, the possibility of the operator tripping over the traction rope 301 is reduced, thereby reducing the possibility of the operator falling and being injured.

[0050] Referring to the accompanying drawings Figure 4 and the accompanying drawings Figure 5 As shown in the accompanying drawings, the mounting plate 1 is provided with a damping device 4 for damping the carrier 2. The damping device 4 comprises a spring 42 and a damper 41, and the damper 41 is mounted on the side wall of the mounting plate 1 close to the guide rail 3. The piston rod of the damper 41 is fixedly connected with a buffer plate 411, the spring 42 is sleeved on the damper 41, one end of the spring 42 is fixedly connected with the buffer plate 411, and the other end of the spring 42 is fixedly connected with the mounting plate 1. The side of the carrier 2 close to the mounting plate 1 is provided with a protruding part, and the protruding part is integrally formed with the carrier 2. The carrier 2 contacts the buffer plate 411 through the protruding part, and the protruding part is regarded as the carrier 2 in the following description.

[0051] Under the buffering effect of the damper 41 and the spring 42, after the carrier 2 and the buffer plate 411 contact, the moving speed of the carrier 2 is effectively slowed down, the possibility of the carrier 2 and the mounting plate 1 colliding is reduced, and the possibility of the instrument carried on the carrier 2 being damaged due to the impact is reduced.

[0052] Referring to Figs. 1 and 2, Figure 5 and Figs. 3 and 4, Figure 6 As shown in Figs. 1 and 2, the mounting plate 1 is fixedly connected with two limiting plates 5 close to the side wall of the guide rail 3, the two limiting plates 5 are respectively located on the two sides of the damper 41, each limiting block is fixedly connected with an elastic sheet 51 close to the side wall of the damper 41, the elastic sheet 51 is made of spring 42 steel, the elastic sheet 51 is used for limiting the buffer plate 411, and the end, away from the limiting plate 5, of the elastic sheet 51 is inclined towards the mounting plate 1, and the buffer plate 411 and the elastic sheet 51 are matched with each other.

[0053] Referring to Figs. 1 and 2, Figure 6 and Figs. 3 and 4, As shown in Figs. 3 and 4, the buffer plate 411 is fixedly connected with four stiffening ribs 412 close to the side wall of the mounting plate 1, each stiffening rib 412 is fixedly connected to the piston rod of the damper 41, and the four stiffening ribs 412 are uniformly distributed along the circumference of the buffer plate 411. Under the support of the stiffening ribs 412, the possibility of the buffer plate 411 and the piston rod being disconnected at the connecting position is reduced.

[0054] Figure 5 Referring to Figs. 1 and 2, Figure 6 and Figs. 3 and 4, As shown in Figs. 1 and 2, the mounting plate 1 is slidably provided with two unlocking plates 6 close to the damper 41. The two unlocking plates 6 are located on the opposite inner sides of the two limiting plates 5, the two unlocking plates 6 and the two limiting plates 5 are one-to-one correspondingly arranged, and the unlocking plate 6 is used for releasing the limiting of the elastic sheet 51 on the corresponding limiting plate 5 to the buffer plate 411. The bottom of the unlocking plate 6 is provided with a connecting plate 61, and the two unlocking plates 6 are fixedly connected to the top surface of the connecting plate 61. The bottom surface of the connecting plate 61 is fixedly connected with a sliding rod 62, the mounting plate 1 is rotatably provided with a lead screw 7 for driving the unlocking plate 6 to move, the lead screw 7 is threadedly connected to the sliding rod 62, the mounting plate 1 is fixedly connected with a guide rod 621 close to the side wall of the guide rail 3, the guide rod 621 and the lead screw 7 are arranged in parallel with each other, and the sliding rod 62 is slidably arranged on the guide rod 621.

[0055] Figure 5 Referring to Figs. 1 and 2, Figure 6 and Figs. 3 and 4,As shown, the side wall of the carrier 2 close to the mounting plate 1 is fixedly connected with a rack 22, and the side wall of the mounting plate 1 close to the carrier 2 is provided with a hole for inserting the rack 22. The mounting plate 1 is rotatably provided with a transmission shaft 14, the transmission shaft 14 is vertically arranged, the top end of the transmission shaft 14 is coaxially fixedly connected with a spur gear 13, and the spur gear 13 and the rack 22 can be engaged with each other. The bottom end of the transmission shaft 14 is coaxially fixedly connected with a bevel gear one 141, and the bevel gear two 71 is coaxially fixedly connected on the lead screw 7, and the bevel gear one 141 is engaged with the bevel gear two 71.

[0056] In the process that the carrier 2 drives the buffer plate 411 to move in the direction close to the mounting plate 1, on the one hand, the rack 22 is inserted into the mounting plate 1, and the unlocking plate 6 is driven to move in the direction away from the mounting plate 1 through the spur gear 13, the transmission shaft 14, the bevel gear one 141, the bevel gear two 71 and the lead screw 7, so that the unlocking plate 6 and the elastic sheet 51 are separated, so as to facilitate the elastic sheet 51 to buffer the carrier 2 and facilitate the elastic sheet 51 to limit the buffer plate 411.

[0057] Conversely, after the equipment is hoisted, in the process that the operator pulls the carrier 2 to move in the direction away from the mounting plate 1, the rack 22 drives the spur gear 13 to rotate reversely, so as to indirectly drive the lead screw 7 to rotate reversely, so that the lead screw 7 drives the unlocking plate 6 to move in the direction close to the mounting plate 1, so that the unlocking plate 6 drives the elastic sheet 51 to separate from the buffer plate 411, so as to release the limitation of the elastic sheet 51 to the buffer plate 411, so that the buffer plate 411 moves in the direction away from the mounting plate 1 under the rebounding action of the spring 42 and the damper 41, so as to prepare for the subsequent buffering of the carrier 2.

[0058] The implementation principle of the embodiment is that before the operator transfers the equipment, first, the mounting plate 1 is placed directly below the hoisting hole, and the guide rail 3 with a corresponding length is spliced according to actual needs.

[0059] Then, the equipment to be transferred is placed on the carrier 2.

[0060] Then, the motor 121 is started, the motor 121 drives the winding wheel 111 to rotate, so that the traction rope 301 drives the carrier 2 to move in the direction close to the mounting plate 1, until the carrier 2 moves to the direct below of the hoisting hole, so as to facilitate the operator to hoist the equipment upward along the hoisting hole from the high floor.

[0061] Since the traction rope 301 is always hidden in the guide rail 3, the possibility of the operator tripping over the traction rope 301 is reduced, thereby reducing the possibility of the operator falling and being injured.

[0062] The embodiments of the specific embodiment are the preferred embodiments of the application, and do not limit the protection scope of the application in sequence, so that: any equivalent changes made according to the structure, shape, principle of the application should be covered within the protection scope of the application.

Claims

1. A machinery transfer device for high-rise building construction, characterized in that: The system includes a mounting plate (1), a carrier (2), and several guide rails (3) connected end to end in sequence. The mounting plate (1) is mounted on the last section of the guide rail (3). The carrier (2) is slidably mounted on the guide rail (3). A traction rope (301) is provided inside the guide rail (3). One end of the traction rope (301) is tied to the carrier (2). A traction device (11) is mounted on the mounting plate (1). The traction device (11) drives the carrier (2) to slide by winding the traction rope (301). A shock-absorbing device (4) is provided on the mounting plate (1). The shock-absorbing device (4) is used to dampen the vibration of the carrier (2). The shock absorption device (4) includes a damper (41) and a spring (42). The damper (41) is installed on the side wall of the mounting plate (1) near the guide rail (3). The spring (42) is sleeved on the damper (41). A buffer plate (411) is installed on the piston rod of the damper (41). One end of the spring (42) is fixedly connected to the buffer plate (411), and the other end of the spring (42) is fixedly connected to the mounting plate (1). A limiting plate (5) is installed on the side wall of the mounting plate (1) near the guide rail (3). The limiting plate (5) is fixedly connected to a plurality of elastic pieces (51) for limiting the buffer plate (411) on the side wall near the damper (41). The end of the elastic piece (51) away from the limiting plate (5) is inclined towards the mounting plate (1). The buffer plate (411) and the elastic piece (51) match each other.

2. The equipment transfer device for high-rise building construction according to claim 1, characterized in that: The traction device (11) includes a winding reel (111), which is rotatably mounted on the mounting plate (1). The traction rope (301) is wound on the winding reel (111). A drive source (12) is provided on the mounting plate (1), which is used to drive the winding reel (111) to rotate.

3. The equipment transfer device for high-rise building construction according to claim 2, characterized in that: The drive source (12) includes a motor (121), which is mounted on the mounting plate (1), and the winding reel (111) is coaxially connected to the output shaft of the motor (121).

4. The equipment transfer device for high-rise building construction according to claim 1, characterized in that: A connecting rod (21) is installed at the bottom of the carrier (2). A sliding block (211) is provided at the end of the connecting rod (2) away from the carrier (2). A sliding part (31) and a support part (32) are provided on the guide rail (3). The sliding part (31) is located above the support part (32). A sliding groove 1 (311) is provided in the sliding part (31) for the sliding block (211) to slide. A sliding groove 2 (312) is provided on the bottom surface of the sliding part (31) for the connecting rod (21) to slide. The sliding groove 1 (311) and the sliding groove 2 (312) are connected to each other.

5. The equipment transfer device for high-rise building construction according to claim 4, characterized in that: The bottom wall of the sliding groove (311) is equipped with a plurality of balls (313) that can roll along the bottom wall of the sliding block (211).

6. The equipment transfer device for high-rise building construction according to claim 1, characterized in that: An unlocking plate (6) is slidably disposed on the side of the mounting plate (1) near the damper (41). The unlocking plate (6) is used to release the elastic sheet (51) from limiting the buffer plate (411). A lead screw (7) is rotatably disposed inside the mounting plate (1). The lead screw (7) is used to drive the unlocking plate (6) to slide.

7. The equipment transfer device for high-rise building construction according to claim 6, characterized in that: A rack (22) is mounted on the carrier (2), and a spur gear (13) is rotatably mounted inside the mounting plate (1). The spur gear (13) and the rack (22) can mesh with each other. A drive shaft (14) is rotatably arranged inside the mounting plate (1). The drive shaft (14) is coaxially connected to the spur gear (13). A bevel gear one (141) is mounted on the drive shaft (14), and a bevel gear two (71) is mounted on the lead screw (7). The bevel gear two (71) and the bevel gear one (141) mesh with each other.

8. The equipment transfer device for high-rise building construction according to claim 1, characterized in that: A plurality of stiffening ribs (412) are fixedly connected to the buffer plate (411), and each stiffening rib (412) is fixedly connected to the piston rod of the damper (41).

Citation Information

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