Damage-prevention transferring equipment for sound-insulation and heat-insulation closely-spliced aluminum veneers

By employing various traction methods and shock-absorbing designs, combined with automated conveying modules, the problems of labor-intensive and insufficient shock absorption in the transfer equipment for closely spaced aluminum panels have been solved, achieving safe and efficient transportation of aluminum panels.

CN223559776UActive Publication Date: 2025-11-18ZHEJIANG FENGYUAN NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202520174560.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-26
Publication Date
2025-11-18
Estimated Expiration
2035-01-26

AI Technical Summary

Technical Problem

Existing aluminum panel transfer equipment relies on manual pulling, which is laborious and has poor shock absorption, making the aluminum panels easily damaged during transportation, affecting their appearance and performance.

Method used

A sound-insulating and heat-insulating close-fitting aluminum single panel anti-damage transfer device was designed. It adopts a trailer connection module to realize multiple traction methods, and combines shock-absorbing springs and air shock absorption. The aluminum single panels are separated and fixed by the aluminum single panel placement module and the conveying module, and the hydraulic motor is used for automated conveying.

Benefits of technology

It reduces fatigue from manual transportation, improves safety during transportation, reduces collision and friction damage between aluminum panels, and enhances transportation efficiency and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of damage-prevention transfer of closely-spliced aluminum veneers, and discloses sound-insulation and heat-insulation damage-prevention transfer equipment for closely-spliced aluminum veneers, which comprises a trailer plate body, a movement module, a box body, an aluminum veneer placing module and a conveying module, the movement module is arranged at the bottom of the trailer plate body, the box body is fixedly connected to the top of the trailer plate body, and the aluminum veneer placing module is fixedly connected to the box body. And an aluminum veneer placing module is arranged on the inner wall of the box body. The device is reasonable in structure, the device can be towed by a rope and can also be directly towed and transported by a tractor with a trailer head through the trailer connecting module, and manual traction transportation is not needed due to the fact that traction is achieved through vehicles, so that the labor intensity of workers is reduced, and the labor intensity of workers is reduced. And meanwhile, the trailer connecting module can be pulled through a rope and can also be pulled through a tractor with a trailer head, so that the device has multiple traction modes and is higher in practicability.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of damage prevention transfer of close -coupled aluminium veneer, and particularly relates to a sound insulation and heat insulation close -coupled aluminium veneer damage prevention transfer equipment. BACKGROUND

[0002] The close -coupled aluminium veneer damage prevention transfer equipment is a kind of equipment specially used to protect close -coupled aluminium veneer from being damaged in the transportation process. Close -coupled aluminium veneer is a kind of building decoration material, which has the characteristics of light weight, good rigidity and strong weather resistance, and is widely used in indoor and outdoor decoration engineering. However, due to various reasons such as collision and extrusion, close -coupled aluminium veneer may be damaged during transportation, thereby affecting its use effect and appearance. However, by using the close -coupled aluminium veneer damage prevention transfer equipment, the safety of aluminium veneer during transportation can be greatly improved, the damage rate can be reduced, and the aluminium veneer can still maintain good condition when it reaches the destination.

[0003] The transfer and delivery equipment for baking porcelain aluminium veneer processing disclosed in Chinese Utility Model Patent Application Publication No. CN216467935U includes a placing plate, the top surface of which is fixedly connected with two abutting rods Although the above-mentioned device moves the connecting plate and the transfer table to the appropriate height by the cylinder, then the board is conveyed to the transfer table by the conveying equipment, the connecting plate and the transfer table are lowered by the cylinder, the transfer table is deflected by the abutting of the transfer table and the abutting rod, and then the board slides off the transfer table onto the placing plate, thereby preventing the board from colliding with the placing plate during transfer and causing damage to the board. The connecting plate and the first toothed plate are moved upward by the cylinder, the gear is rotated by the first toothed plate, and the second toothed plate drives the speed reducer ring to move downward, the wheel is fixed by the abutting of the speed reducer ring and the wheel, and then the position of the device is prevented from shifting during the transfer of the board by the operator. However, the above-mentioned device still has certain deficiencies: first, the pulling method of the above-mentioned device relies on manual pulling, which is very laborious when transporting a large number of aluminium veneers, and can easily cause the workers to feel tired. Secondly, the above-mentioned device can only be transported by manual pulling method, and the pulling method is too single. Thirdly, the above-mentioned device directly stacks the aluminium veneers when loading the aluminium veneers, which causes the aluminium veneers to be squeezed and rubbed or collided with each other during transportation, causing damage to the aluminium veneers and making them unable to be used, which causes certain economic losses to the company. UTILITY MODEL CONTENTS

[0004] (I) Technical problems solved

[0005] In view of the shortcomings of the prior art, the utility model provides a kind of sound insulation heat insulation tight splicing aluminium veneer damage prevention transfer equipment, solve the device only by single mode of artificial pulling to transport aluminium veneer too waste person laborious, and practicality is poorer, device transport aluminium veneer it can be because of bad road condition, its device poor damping causes between aluminium veneer collision and damage and the aluminium veneer loaded on device is stacked, easy in the transport process each other rub and cause damage, bring certain economic loss to company Problem.

[0006] (II) Technical solution

[0007] To achieve the above object, the utility model is realized by the following technical scheme: a kind of sound insulation heat insulation tight splicing aluminium veneer damage prevention transfer equipment, including trailer plate body, the bottom of the trailer plate body is equipped with movement module, the top of the trailer plate body is fixedly connected with box, the inner wall of the box is equipped with aluminium veneer placing module, the front of the box is equipped with conveying module, one side of the trailer plate body is equipped with trailer connecting module;

[0008] The trailer connecting module includes a threaded connector and a C-shaped plate, the inner wall of the threaded connector is threadedly connected with a threaded head, one end of the threaded head is fixedly connected with a thick circular column, one end of the thick circular column is fixedly connected with a thin circular column, a circular column threaded hole is formed in the surface of the thin circular column, the inner wall of the circular column threaded hole is threadedly connected with a long bolt, the thin circular column is threadedly connected with a U-shaped steel through the long bolt, the surface of the long bolt is threadedly connected with a threaded fastening ring, one side of the C-shaped plate is fixedly connected with a flat trailer connecting plate, a trailer head connecting threaded hole is formed in the top of the flat trailer connecting plate.

[0009] Optionally, the movement module includes a wheel, a wheel shaft hole is formed in the inner wall of the wheel, a wheel shaft is mounted in the inner wall of the wheel shaft hole, a rotating rod is inserted into the inner wall of the wheel shaft, a damping base and a main connecting sleeve are sequentially mounted on the surface of the rotating rod from left to right, damping base shaft holes are formed at both ends of the damping base, a damping base shaft is mounted in the inner wall of the damping base shaft hole, the damping base shaft and the rotating rod are mutually adapted, a connecting block is fixedly connected to the upper surface of the damping base, and a damping spring is provided on the top of the connecting block.

[0010] Optionally, one end of the damping spring is provided with a connecting plate, an air damping device is provided on the top of the connecting plate, a threaded hole connecting plate is provided at one end of the air damping device, the trailer plate body is threadedly connected to the threaded hole connecting plate through a connecting plate bolt, main connecting sleeve shaft holes are formed at both ends of the main connecting sleeve, a main connecting sleeve shaft is mounted in the inner wall of the main connecting sleeve shaft hole, the main connecting sleeve shaft and the rotating rod are mutually adapted, and a connecting rod is fixedly connected to the surface of the main connecting sleeve.

[0011] Optionally, the aluminum veneer placing module comprises an aluminum veneer placing framework, a groove is formed in the top of the aluminum veneer placing framework, a sliding groove is formed in the inner wall of the groove, and an aluminum veneer placing table is slidably connected to the inner wall of the sliding groove.

[0012] Optionally, the placing framework hydraulic motor is threadedly connected with the aluminum veneer placing framework through placing framework hydraulic motor bolts, a placing framework hydraulic rod is arranged on one side of the placing framework hydraulic motor, a placing framework hard plate is arranged at one end of the placing framework hydraulic rod, a placing framework soft cotton is arranged on one side of the placing framework hard plate, and a signal receiving rod device is arranged on the front of the placing framework hydraulic motor.

[0013] Optionally, the conveying module comprises a right side support plate, a screw rod hole is formed in the top of the right side support plate, a screw rod motor is arranged on the top of the right side support plate, the screw rod motor is threadedly connected with the right side support plate through screw rod motor bolts, a screw rod is arranged at the bottom of the screw rod motor, a long strip plate is arranged on the screw rod, a screw rod rotating shaft hole is formed in the top of the long strip plate, a screw rod rotating shaft is mounted on the inner wall of the screw rod rotating shaft hole, the screw rod rotating shaft and the screw rod are matched with each other, a screw rod adapter is threadedly connected with the surface of the screw rod, an aluminum veneer conveying table is threadedly connected with the screw rod through the screw rod adapter, a hollow circular rod adapter is arranged on the top of the aluminum veneer conveying table, and a circular rod is arranged on the inner wall of the hollow circular rod adapter.

[0014] Optionally, the top of the long strip plate is fixedly connected with a hollow circular rod sleeve, the circular rod is mounted on the inner wall of the hollow circular rod sleeve, a circular rod threaded connection plate is fixedly connected to one end of the circular rod, a left side support plate is threadedly connected with the circular rod threaded connection plate through circular rod threaded connection plate bolts, a circular rod hole is formed in the top of the left side support plate, the circular rod hole and the circular rod are matched with each other, a conveying table groove is formed in the top of the aluminum veneer conveying table, a conveying table sliding groove is formed in the inner wall of the conveying table groove, a conveying table transverse hydraulic motor is arranged on the top of the aluminum veneer conveying table, the conveying table transverse hydraulic motor is threadedly connected with the aluminum veneer conveying table through conveying table transverse hydraulic motor bolts, and a conveying table transverse hydraulic rod is arranged on one side of the conveying table transverse hydraulic motor.

[0015] Optionally, one end of the conveying table transverse hydraulic rod is provided with a conveying table transverse hard plate, one side of the conveying table transverse hard plate is provided with a conveying table transverse soft cotton, the front of the conveying table transverse hydraulic motor is provided with a conveying table transverse hydraulic motor signal indicator, the front of the aluminum veneer conveying table is provided with a hydraulic rod hole, the front of the aluminum veneer conveying table is provided with a longitudinal hydraulic motor, the longitudinal hydraulic motor is threadedly connected with the aluminum veneer conveying table through longitudinal hydraulic motor bolts, the back of the longitudinal hydraulic motor is provided with a longitudinal hydraulic rod, one end of the longitudinal hydraulic rod is threadedly connected with a hydraulic rod threaded sleeve, one end of the hydraulic rod threaded sleeve is provided with a power strong magnet, one side of the longitudinal hydraulic motor is provided with a longitudinal hydraulic motor signal indicator.

[0016] In conclusion, the technical effects and advantages of the present utility model are:

[0017] 1. The device has reasonable structure, and can be towed by a rope or a towing vehicle with a towing head, so that the device can be transported without manual pulling, which reduces the fatigue of workers to a certain extent, and the device has multiple towing modes and is more practical.

[0018] 2. The device is provided with a motion module, and the shock absorption of the motion module is realized by shock absorption springs and air shock absorption, so as to reduce the transmission of the jolting force to the device as much as possible, thereby reducing the damage caused by the collision between aluminum veneers due to road jolting to a certain extent.

[0019] 3. The device is provided with an aluminum veneer placing module and a conveying module, so that the device can separate and fix the aluminum veneers, and the workers do not need to place the aluminum veneers one by one, which reduces the fatigue of workers to a certain extent, and the separation and fixation of the aluminum veneers reduce the possibility of damage caused by the friction between the aluminum veneers, thereby reducing the economic loss of the company caused by the friction between the aluminum veneers to a certain extent. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of the present utility model;

[0021] Figure 2 It is a motion module schematic diagram of the present utility model;

[0022] Figure 3 It is a motion module local enlarged schematic diagram of the present utility model;

[0023] Figure 4 It is the aluminum veneer placing module schematic view of the utility model;

[0024] Figure 5 It is the aluminum veneer placing module partial enlarged schematic view of the utility model;

[0025] Figure 6 It is the conveying module schematic view of the utility model;

[0026] Figure 7 It is the conveying module partial enlarged schematic view of the utility model;

[0027] Figure 8 It is the trailer connecting module schematic view of the utility model.

[0028] In the drawing: 1, trailer plate body; 2, movement module; 201, wheel; 202, rotating rod; 203, shock absorber base; 204, main connecting sleeve; 205, connecting block; 206, shock absorber spring; 207, shock absorber spring; 208, air shock absorber; 209, threaded hole connecting plate; 210, connecting rod; 3, box; 4, aluminum veneer placing module; 401, aluminum veneer placing framework; 402, aluminum veneer placing table; 403, iron sheet; 404, placing framework hydraulic motor; 405, placing framework hydraulic rod; 406, placing framework hard plate; 407, placing framework soft cotton; 408, signal receiving rod device; 5, conveying module; 501, right side support plate; 502, screw rod motor; 503, screw rod; 504, long strip plate; 505, screw rod adapter; 506, aluminum veneer conveying table; 507, hollow round rod adapter; 508, round rod; 509, hollow round rod sleeve; 510, round rod threaded connecting plate; 511, left side support plate; 512, conveying table transverse hydraulic motor; 513, conveying table transverse hydraulic rod; 514, conveying table transverse hard plate; 515, conveying table transverse soft cotton; 516, conveying table transverse hydraulic motor signal device; 517, longitudinal hydraulic motor; 518, longitudinal hydraulic rod; 519, hydraulic rod threaded sleeve; 520, power strong magnet; 521, longitudinal hydraulic motor signal device; 6, trailer connecting module; 601, threaded connecting head; 602, C-shaped plate; 603, threaded head; 604, thick round column; 605, thin round column; 606, long strip bolt; 607, U-shaped steel; 608, threaded fastening ring; 609, flat trailer connecting plate. DETAILED DESCRIPTION

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0030] Example: Reference Figures 1-3 The device shown is a soundproof and heat-insulating close-fitting aluminum single panel anti-damage transfer device, including a trailer body 1, a motion module 2 at the bottom of the trailer body 1, a box 3 fixedly connected to the top of the trailer body 1, an aluminum single panel placement module 4 on the inner wall of the box 3, a conveying module 5 on the front of the box 3, and a trailer connection module 6 on one side of the trailer body 1.

[0031] The motion module 2 is installed at the bottom of the trailer body 1, while the box body 3 is welded to the top of the trailer body 1. The aluminum single-panel placement module 4 is welded to the inside of the box body 3. The conveying module 5 is installed on the front of the box body 3, and the trailer connection module 6 is welded to one side of the trailer body 1, thus completing the assembly.

[0032] In use, the entire device is connected to the towing vehicle using the trailer connection module 6. The towing vehicle then pulls the entire device to the desired position. The conveyor module 5 is then lowered to its lowest point, and the worker places the aluminum panels to be transported onto it. The conveyor module 5 is then manipulated to lift the placed aluminum panels to the corresponding storage layer of the aluminum panel placement module 4. The conveyor module 5 is then manipulated to drag the aluminum panels into the aluminum panel placement module 4. After storage, the towing vehicle moves the entire device to its destination. The conveyor module 5 is then manipulated to remove the aluminum panels from the aluminum panel placement module 4 and move them to their lowest point, where the worker can then remove them. This process is repeated to complete the operation.

[0033] The motion module 2 includes a wheel 201, with a wheel axle hole on the inner wall of the wheel 201. A wheel axle is installed on the inner wall of the wheel axle hole, and a rotating rod 202 is inserted into the inner wall of the wheel axle. A shock-absorbing base 203 and a main connecting sleeve 204 are installed on the surface of the rotating rod 202 from left to right. Both ends of the shock-absorbing base 203 have shock-absorbing base axle holes, and a shock-absorbing base axle is installed on the inner wall of the shock-absorbing base axle holes. The shock-absorbing base axle and the rotating rod 202 are mutually compatible. A connecting block 205 is fixedly connected to the upper surface of the shock-absorbing base 203, and a shock-absorbing spring 206 is provided on the top of the connecting block 205.

[0034] One end of the damping spring 206 is provided with a connecting plate 207, the top of the connecting plate 207 is provided with an air damping 208, one end of the air damping 208 is provided with a threaded hole connecting plate 209, the threaded hole connecting plate 209 is threadedly connected with the trailer plate body 1 through the connecting plate bolt, the both ends of the main connecting sleeve 204 are provided with main connecting sleeve shaft holes, the inner wall of the main connecting sleeve shaft hole is installed with a main connecting sleeve shaft, the main connecting sleeve shaft and the rotating rod 202 are mutually adapted, and the surface of the main connecting sleeve 204 is fixedly connected with a connecting rod 210.

[0035] The wheel shaft hole and the wheel 201 are integrally formed, the wheel shaft is installed into the wheel shaft hole, the damping base shaft hole and the damping base 203 are integrally formed, the damping base shaft is installed into the damping base shaft hole, the main connecting sleeve 204 and the main connecting sleeve shaft hole are integrally formed, the main connecting sleeve shaft is installed into the main connecting sleeve shaft hole, then the rotating rod 202 passes through the main connecting sleeve shaft of the main connecting sleeve 204 and continues to pass through the damping base shaft of the damping base 203 until it is inserted into the wheel shaft of the wheel 201, the connecting rod 210 is welded on the surface of the main connecting sleeve 204 by welding, the connecting block 205 is welded on the upper surface of the damping base 203, the damping spring 206 is welded between the connecting block 205 and the connecting plate 207, the air damping 208 is welded between the connecting plate 207 and the threaded hole connecting plate 209, finally the threaded hole connecting plate 209 is installed at the bottom of the trailer plate body 1 through the connecting plate bolt, and the assembly is completed.

[0036] In use, the device is pulled by the tractor, so that the wheel 201 starts to rotate, thereby driving the whole device to move, when the wheel contacts the bumpy or potholed road, the force of the bumpy or potholed road will be transmitted upward, the damping spring 206 will be compressed when the force is transmitted upward, after the damping spring 206 is compressed to weaken the force transmitted upward, the remaining force will continue to be transmitted upward, and the air damping 208 will also buffer the remaining force transmitted upward through the compression release action, so as to protect the safety of the aluminum single board on the trailer plate body 1, and the operation is completed.

[0037] The device is installed with the motion module 2, and the damping of the motion module 2 is achieved by the damping spring 206 and the air damping 208, so as to reduce the transmission of the bumping force to the device as much as possible, thereby reducing the damage caused by the collision between the aluminum single boards due to the bumping of the road to a certain extent.

[0038] As a preferred embodiment in this embodiment, as Figure 4 andFigure 5 As shown, the aluminum sheet placing module 4 comprises an aluminum sheet placing framework 401, the top of the aluminum sheet placing framework 401 is provided with a recess, the inner wall of the recess is provided with a sliding groove, the inner wall of the sliding groove is slidably connected with an aluminum sheet placing table 402, the front surface of the aluminum sheet placing table 402 is provided with an iron sheet 403, and the top of the aluminum sheet placing framework 401 is provided with a placing framework hydraulic motor 404.

[0039] The placing framework hydraulic motor 404 is threadedly connected with the aluminum sheet placing framework 401 through placing framework hydraulic motor bolts, one side of the placing framework hydraulic motor 404 is provided with a placing framework hydraulic rod 405, one end of the placing framework hydraulic rod 405 is provided with a placing framework hard plate 406, one side of the placing framework hard plate 406 is provided with a placing framework soft cotton 407, and the front surface of the placing framework hydraulic motor 404 is provided with a signal receiving rod device 408.

[0040] The recess and the aluminum sheet placing framework 401 are integrally formed, the sliding groove and the aluminum sheet placing framework 401 are integrally formed, the aluminum sheet placing table 402 is slid into the sliding groove of the aluminum sheet placing framework 401, the iron sheet 403 and the aluminum sheet placing table 402 are integrally connected, the placing framework hydraulic rod 405 and the placing framework hydraulic motor 404 are integrally connected, the placing framework hard plate 406 is welded on the placing framework hydraulic rod 405, the placing framework soft cotton 407 is pasted on the placing framework hard plate 406 through adhesive, the signal receiving rod device 408 and the placing framework hydraulic motor 404 are integrally connected, the assembled placing framework hydraulic motor 404 is placed on the aluminum sheet placing framework 401, and then the placing framework hydraulic motor 404 is assembled on the aluminum sheet placing framework 401 through the placing framework hydraulic motor bolts, and the aluminum sheet placing framework 401 is welded into the box body 3 through welding.

[0041] In use, the aluminum sheet is adsorbed on the iron sheet 403 of the aluminum sheet placing table 402 through the energized strong magnet 520 when the aluminum sheet passes through the conveying module 5, the conveying module 5 pulls out the aluminum sheet placing table 402 from the sliding groove of the aluminum sheet placing framework 401 through the energized strong magnet 520 and places the aluminum sheet placing table 402 on the conveying module 5, then the conveying module 5 is lowered to a specified height, the worker places the aluminum sheet on the conveying module 5, and continues to operate the conveying module 5 to lift until the aluminum sheet reaches the aluminum sheet placing framework 401, then the aluminum sheet on the aluminum sheet placing table 402 is pushed into the sliding groove of the aluminum sheet placing framework 401 through the conveying module 5, and then the placing framework hydraulic motor 404 is operated to push the placing framework hydraulic rod 405 forward until the placing framework soft cotton 407 abuts against the aluminum sheet, and the assembly is completed.

[0042] The device is provided with an aluminum veneer placing module 4, so that the device can separate and fix the aluminum veneers from each other, which reduces the damage caused by friction between the aluminum veneers to a certain extent, thereby reducing the economic loss of the company caused by the friction between the aluminum veneers to a certain extent.

[0043] As shown in Figure 6 and Figure 7 In this embodiment, the conveying module 5 includes a right side support plate 501, the top of which is provided with a lead screw hole, and the top of the right side support plate 501 is provided with a lead screw motor 502, which is threadedly connected with the right side support plate 501 through lead screw motor bolts, and the bottom of the lead screw motor 502 is provided with a lead screw 503, and the lead screw motor 502 is provided with a long strip plate 504 through the lead screw 503, the top of which is provided with a lead screw shaft hole, and the inner wall of the lead screw shaft hole is provided with a lead screw shaft, which is adapted to the lead screw 503, and the surface of the lead screw 503 is threadedly connected with a lead screw adapter 505, and the lead screw 503 is threadedly connected with an aluminum veneer conveying table 506 through the lead screw adapter 505, and the top of the aluminum veneer conveying table 506 is provided with a hollow round rod adapter 507, and the inner wall of the hollow round rod adapter 507 is provided with a round rod 508.

[0044] The top of the long strip plate 504 is fixedly connected with a hollow round rod sleeve 509, the inner wall of which is provided with a round rod 508, one end of which is fixedly connected with a round rod threaded connection plate 510, which is threadedly connected with a left side support plate 511 through a round rod threaded connection plate bolt, and the top of the left side support plate 511 is provided with a round rod hole, which is adapted to the round rod 508, and the top of the aluminum veneer conveying table 506 is provided with a conveying table groove, and the inner wall of the conveying table groove is provided with a conveying table sliding groove, and the top of the aluminum veneer conveying table 506 is provided with a conveying table transverse hydraulic motor 512, which is threadedly connected with the aluminum veneer conveying table 506 through a conveying table transverse hydraulic motor bolt, and one side of the conveying table transverse hydraulic motor 512 is provided with a conveying table transverse hydraulic rod 513.

[0045] One end of the conveying table transverse hydraulic rod 513 is provided with a conveying table transverse hard plate 514, one side of the conveying table transverse hard plate 514 is provided with a conveying table transverse soft cotton 515, the front of the conveying table transverse hydraulic motor 512 is provided with a conveying table transverse hydraulic motor signal 516, the front of the aluminum single plate conveying table 506 is provided with a hydraulic rod hole, the front of the aluminum single plate conveying table 506 is provided with a longitudinal hydraulic motor 517, the longitudinal hydraulic motor 517 is threadedly connected with the aluminum single plate conveying table 506 through longitudinal hydraulic motor bolts, the back of the longitudinal hydraulic motor 517 is provided with a longitudinal hydraulic rod 518, one end of the longitudinal hydraulic rod 518 is threadedly connected with a hydraulic rod threaded sleeve 519, one end of the hydraulic rod threaded sleeve 519 is provided with a power strong magnet 520, one side of the longitudinal hydraulic motor 517 is provided with a longitudinal hydraulic motor signal 521.

[0046] The right side support plate 501 and the left side support plate 511 are both welded on the box body 3 by welding, and the long strip plate 504 is also welded on the box body 3 by welding, the screw rod hole and the right side support plate 501 are integrally formed, the screw rod motor 502 is installed on the right side support plate 501 through screw rod motor bolts, the screw rod 503 passes through the screw rod hole and is assembled with the screw rod motor 502, the screw rod shaft hole and the long strip plate 504 are integrally formed, the screw rod shaft is installed into the screw rod shaft hole, the other end of the screw rod 503 is inserted into the screw rod shaft, the screw rod adapter 505, the hollow round rod adapter 507 and the aluminum single plate conveying table 506 are integrally formed, and the round rod 508 and the round rod threaded connection plate 510 are welded together, the round rod 508 passes through the round rod hole and is inserted into the hollow round rod sleeve 509, and then the round rod threaded connection plate 510 is connected with the left side support plate 511 through round rod threaded connection plate bolts, and the assembled aluminum single plate conveying table 506 is installed on the screw rod 503 and the round rod 508 through the screw rod adapter 505 and the hollow round rod adapter 507.

[0047] And the conveying table groove and conveying table sliding groove are integrally formed with the aluminum veneer conveying table 506, and the conveying table transverse hydraulic rod 513 and the conveying table transverse hydraulic motor 512 are integrally connected, the conveying table transverse hard plate 514 is welded on the conveying table transverse hydraulic rod 513, and the conveying table transverse soft cotton 515 is pasted on the conveying table transverse hard plate 514 through the back glue, and the conveying table transverse hydraulic motor signal 516 and the conveying table transverse hydraulic motor 512 are integrally connected, the assembled conveying table transverse hydraulic motor 512 is assembled on the aluminum veneer conveying table 506 through the conveying table transverse hydraulic motor bolt, and the longitudinal hydraulic rod 518 and the longitudinal hydraulic motor 517 are integrally connected, the hydraulic rod threaded sleeve 519 is screwed onto the longitudinal hydraulic rod 518, the strong magnet 520 and the hydraulic rod threaded sleeve 519 are integrally connected, the longitudinal hydraulic motor signal 521 and the longitudinal hydraulic motor 517 are integrally connected, and finally the assembled longitudinal hydraulic motor 517 is installed on the aluminum veneer conveying table 506 through the longitudinal hydraulic motor bolt, and the assembly is completed.

[0048] In use, the screw rod motor 502 is operated to start the rotation of the screw rod 503, which drives the aluminum veneer conveying table 506 to move up and down through forward or reverse rotation of the screw rod 503, after the aluminum veneer conveying table 506 reaches the specified position, the longitudinal hydraulic motor 517 is operated to push the longitudinal hydraulic rod 518 forward, the strong magnet 520 is energized, the longitudinal hydraulic rod 518 with the strong magnet 520 is brought to the iron sheet 403 of the aluminum veneer placing table 402, and the longitudinal hydraulic motor 517 is operated again to retract the longitudinal hydraulic rod 518 so that the aluminum veneer placing table 402 enters the conveying table groove on the aluminum veneer conveying table 506, and the screw rod motor 502 is operated again to rotate the screw rod 503, so that the aluminum veneer conveying table 506 is lowered to the lowest point, then the worker places the aluminum veneer on the aluminum veneer placing table 402 on the aluminum veneer conveying table 506, then the conveying table transverse hydraulic motor 512 is operated to push the conveying table transverse hydraulic rod 513 forward, which in turn pushes the conveying table transverse soft cotton 515 against the aluminum veneer, then the screw rod motor 502 is operated again to rotate the screw rod 503 to drive the aluminum veneer conveying table 506 to move upward until it reaches the specified position, the longitudinal hydraulic motor 517 is operated to push the aluminum veneer placing table 402 to the sliding groove of the aluminum veneer placing frame 401, until the aluminum veneer placing table 402 fills the groove of the aluminum veneer placing frame 401, then the strong magnet 520 is de-energized, and then the longitudinal hydraulic motor 517 is operated to retract the longitudinal hydraulic rod 518, completing the operation.

[0049] The device is provided with a conveying module 5, so that the aluminum veneer can be conveyed by the machine when placed, and workers are not required to place the aluminum veneer one by one, which can reduce the fatigue of workers to a certain extent.

[0050] As Figure 8As shown in the embodiment, the trailer connecting module 6 includes a threaded connector 601 and a C-shaped plate 602, the inner wall of the threaded connector 601 is threadedly connected with a threaded head 603, one end of the threaded head 603 is fixedly connected with a thick circular column 604, one end of the thick circular column 604 is fixedly connected with a thin circular column 605, the surface of the thin circular column 605 is provided with a circular column threaded hole, the inner wall of the circular column threaded hole is threadedly connected with a long strip bolt 606, the thin circular column 605 is threadedly connected with a U-shaped steel 607 through the long strip bolt 606, the surface of the long strip bolt 606 is threadedly connected with a threaded fastening ring 608, one side of the C-shaped plate 602 is fixedly connected with a flat trailer connecting plate 609, and the top of the flat trailer connecting plate 609 is provided with a trailer head connecting threaded hole.

[0051] The threaded connector 601 and the C-shaped plate 602 are sequentially welded on one side of the trailer plate body 1 from top to bottom by welding, the threaded head 603 is welded on the thick circular column 604, the thin circular column 605 is also welded on the other end of the thick circular column 604, the circular column threaded hole and the thin circular column 605 are integrally formed, the long strip bolt 606 is passed through the U-shaped steel 607, then passed through the circular column threaded hole and the circular column threaded hole on the other side of the thin circular column 605, and then passed out from the other side of the U-shaped steel 607, then the threaded fastening ring 608 is screwed on the long strip bolt 606, the flat trailer connecting plate 609 is welded on the C-shaped plate 602, and the trailer head connecting threaded hole and the flat trailer connecting plate 609 are integrally formed, and the assembly is completed.

[0052] In use, if the towing vehicle does not have a towing head, only the one end of the towing rope needs to be buckled on the assembled U-shaped steel 607, and the other end of the towing rope needs to be buckled on the towing vehicle, so that the towing vehicle can be moved, if the towing vehicle has a special towing head, then the towing vehicle only needs to be moved to the vicinity of the device, and then the special towing head and the assembled flat trailer connecting plate 609 are assembled, so that the device can be moved, and the operation is completed.

[0053] The device is provided with the trailer connecting module 6, so that the device can be towed by a rope or directly towed by a towing vehicle with a trailer head, and because the towing is achieved by a vehicle, manual towing is not needed, which can reduce the fatigue of the workers to a certain extent, and because the trailer connecting module 6 can be towed by a rope or a towing vehicle with a trailer head, the device has multiple towing modes and is more practical.

[0054] The utility working principle is as follows:

[0055] In use, the device is connected to the towing vehicle through the trailer connection module 6, and then the device is towed to the desired location by the towing vehicle. Then the conveying module 5 is operated to lower to the lowest point, and the worker places the aluminum veneer to be transported onto the conveying module 5. Then the conveying module 5 is operated to lift the placed aluminum veneer to the corresponding storage layer of the aluminum veneer placing module 4. Then the conveying module 5 is operated to drag the aluminum veneer into the aluminum veneer placing module 4. After the storage is completed, the device is moved to the destination by the towing vehicle. Then the conveying module 5 is operated to take out the aluminum veneer from the aluminum veneer placing module 4 and move to the lowest point. Then the worker can take out the aluminum veneer. This process is repeated to complete the operation. In use, the device is towed by the towing vehicle, so that the wheels 201 start to rotate, thereby moving the device as a whole. When the wheels contact the bumpy or potholed road, the force of the bumpy or potholed road is transmitted upward. The shock-absorbing spring 206 is compressed when the force is transmitted upward through the bumpy or potholed road. After the shock-absorbing spring 206 is compressed to weaken the upward transmitted force, the remaining force continues to be transmitted upward. The air shock-absorbing 208 is compressed by the remaining upward transmitted force. Since the air can be restored after being compressed, the air shock-absorbing 208 also buffers the remaining upward transmitted force through the compression release action to protect the safety of the aluminum veneer on the trailer plate body 1. The operation is completed. In use, the aluminum veneer is attracted to the iron sheet 403 of the aluminum veneer placing table 402 by the electrified strong magnet 520 through the conveying module 5. The conveying module 5 extracts the aluminum veneer placing table 402 from the sliding groove of the aluminum veneer placing framework 401 and places it on the conveying module 5 through the electrified strong magnet 520. Then the conveying module 5 is operated to lower to the specified height. The worker places the aluminum veneer on the conveying module 5 and continues to operate the conveying module 5 to lift until it reaches the desired position of the aluminum veneer placing framework 401. Then the aluminum veneer on the aluminum veneer placing table 402 is pushed into the sliding groove of the aluminum veneer placing framework 401 through the conveying module 5. Then the placing framework hydraulic motor 404 is operated to make the placing framework hydraulic rod 405 push forward until the placing framework soft cotton 407 stops the aluminum veneer. The assembly is completed. In use, the lead screw motor 502 is operated to make the lead screw 503 start to rotate. The lead screw 503 is rotated forward or reverse to move the aluminum veneer conveying table 506 up and down. After the aluminum veneer conveying table 506 reaches the specified position, the longitudinal hydraulic motor 517 is operated to make the longitudinal hydraulic rod 518 push forward. The electrified strong magnet 520 is electrified. The longitudinal hydraulic rod 518 brings the electrified strong magnet 520 to the iron sheet 403 of the aluminum veneer placing table 402. The longitudinal hydraulic motor 517 is operated again to make the longitudinal hydraulic rod 518 retract, so that the aluminum veneer placing table 402 enters the conveying table groove on the aluminum veneer conveying table 506. The lead screw motor 502 is operated again to make the lead screw 503 rotate, so that the aluminum veneer conveying table 506 lowers to the lowest point.Then the worker will be put on the aluminum veneer aluminum veneer delivery table 506 on the aluminum veneer placement table 402, and then operate the delivery table transverse hydraulic motor 512 so that the delivery table transverse hydraulic rod 513 forward, in turn, push the delivery table transverse soft cotton 515 against the aluminum veneer, and then again operate the lead screw motor 502 driven lead screw 503 rotation so as to drive the aluminum veneer delivery table 506 to move up until to reach the designated position, operate the longitudinal hydraulic motor 517 so that the longitudinal hydraulic rod 518 push the aluminum veneer placement table 402 push to the aluminum veneer placement skeleton 401 sliding groove, until the aluminum veneer placement table 402 fill the recess of the aluminum veneer placement skeleton 401, and then energize the strong magnet 520, then continue to operate the longitudinal hydraulic motor 517 so that the longitudinal hydraulic rod 518 retract, complete operation, in use, observe the tractor has no traction head, if there is no traction head, only need to pull the rope one end of the bolt on the assembled U-shaped steel 607, the other end of the pull rope bolted to the tractor, can be traction mobile, if the tractor has a special traction head, then only need to move the tractor to the device near, and then connect the special traction head and the assembled flat trailer connecting plate 609, that is, can drive the device to move, complete operation.

[0056] Finally, it should be noted that: the above only for the preferred embodiments of the present application have, and not for limiting the present application, although the foregoing detailed description of the present application has been made with reference to the foregoing embodiments, for the person skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included in the scope of the present application.

Claims

1. A sound and heat insulation tightly spliced aluminum veneer damage prevention transfer equipment, comprising a trailer plate body (1), characterized in that: The bottom of the trailer plate body (1) is provided with a movement module (2), the top of the trailer plate body (1) is fixedly connected with a box body (3), the inner wall of the box body (3) is provided with an aluminum veneer placing module (4), the front of the box body (3) is provided with a conveying module (5), one side of the trailer plate body (1) is provided with a trailer connecting module (6). The trailer connecting module (6) comprises a threaded connector (601) and a C-shaped plate (602), the inner wall of the threaded connector (601) is threadedly connected with a threaded head (603), one end of the threaded head (603) is fixedly connected with a thick circular column (604), one end of the thick circular column (604) is fixedly connected with a thin circular column (605), a circular column threaded hole is formed in the surface of the thin circular column (605), the inner wall of the circular column threaded hole is threadedly connected with an elongated bolt (606), the thin circular column (605) is threadedly connected with a U-shaped steel (607) through the elongated bolt (606), the surface of the elongated bolt (606) is threadedly connected with a threaded fastening ring (608), one side of the C-shaped plate (602) is fixedly connected with a flat trailer connecting plate (609), a trailer head connecting threaded hole is formed in the top of the flat trailer connecting plate (609).

2. The soundproofing, heat-insulating, and tightly spliced aluminum veneer damage-preventing transfer equipment according to claim 1, characterized in that: The movement module (2) comprises a wheel (201), a wheel rotating shaft hole is formed in the inner wall of the wheel (201), a wheel rotating shaft is installed in the inner wall of the wheel rotating shaft hole, a rotating rod (202) is inserted into the inner wall of the wheel rotating shaft, a damping base (203) and a main connecting sleeve (204) are sequentially installed in the surface of the rotating rod (202) from left to right, damping base rotating shaft holes are formed in both ends of the damping base (203), damping base rotating shafts are installed in the inner walls of the damping base rotating shaft holes, the damping base rotating shafts and the rotating rod (202) are matched with each other, and a connecting block (205) is fixedly connected to the upper surface of the damping base (203).

3. The soundproofing and heat-insulating tightly spliced aluminum veneer anti-damage transfer equipment according to claim 2, characterized in that: One end of the damping spring (206) is provided with a connecting plate (207), the top of the connecting plate (207) is provided with an air damping (208), one end of the air damping (208) is provided with a threaded hole connecting plate (209), the threaded hole connecting plate (209) is threadedly connected with the trailer plate body (1) through a connecting plate bolt, main connecting sleeve rotating shaft holes are formed in both ends of the main connecting sleeve (204), main connecting sleeve rotating shafts are installed in the inner walls of the main connecting sleeve rotating shaft holes, the main connecting sleeve rotating shafts and the rotating rod (202) are matched with each other, and a connecting rod (210) is fixedly connected to the surface of the main connecting sleeve (204).

4. The soundproofing, heat-insulating, and tightly spliced aluminum veneer damage-preventing transfer equipment according to claim 1, characterized in that: The aluminum veneer placing module (4) comprises an aluminum veneer placing framework (401), the top of the aluminum veneer placing framework (401) is provided with a groove, the inner wall of the groove is provided with a sliding groove, the inner wall of the sliding groove is slidably connected with an aluminum veneer placing table (402), the front surface of the aluminum veneer placing table (402) is provided with an iron sheet (403), and the top of the aluminum veneer placing framework (401) is provided with a placing framework hydraulic motor (404).

5. The soundproofing, heat-insulating, and tightly spliced aluminum veneer damage-preventing transfer equipment according to claim 4, characterized in that: The placing framework hydraulic motor (404) is threadedly connected with the aluminum veneer placing framework (401) through placing framework hydraulic motor bolts, one side of the placing framework hydraulic motor (404) is provided with a placing framework hydraulic rod (405), one end of the placing framework hydraulic rod (405) is provided with a placing framework hard plate (406), one side of the placing framework hard plate (406) is provided with a placing framework soft cotton (407), and the front surface of the placing framework hydraulic motor (404) is provided with a signal receiving rod device (408).

6. The soundproofing, heat-insulating, and tightly spliced aluminum veneer damage-preventing transfer equipment according to claim 1, characterized in that: The conveying module (5) comprises a right side supporting plate (501), the top of the right side supporting plate (501) is provided with a lead screw hole, the top of the right side supporting plate (501) is provided with a lead screw motor (502), the lead screw motor (502) is threadedly connected with the right side supporting plate (501) through lead screw motor bolts, the bottom of the lead screw motor (502) is provided with a lead screw (503), the lead screw motor (502) is provided with a long strip plate (504) through the lead screw (503), the top of the long strip plate (504) is provided with a lead screw rotating shaft hole, the inner wall of the lead screw rotating shaft hole is mounted with a lead screw rotating shaft, the lead screw rotating shaft and the lead screw (503) are matched with each other, the surface of the lead screw (503) is threadedly connected with a lead screw adapter (505), the lead screw (503) is threadedly connected with an aluminum veneer conveying table (506) through the lead screw adapter (505), and the top of the aluminum veneer conveying table (506) is provided with a hollow circular rod adapter (507).

7. The soundproofing, heat-insulating, and tightly spliced aluminum veneer damage-preventing transfer equipment according to claim 6, characterized in that: The top of the long strip plate (504) is fixedly connected with a hollow circular rod sleeve (509), the inner wall of the hollow circular rod sleeve (509) is mounted with a circular rod (508), one end of the circular rod (508) is fixedly connected with a circular rod threaded connection plate (510), the circular rod threaded connection plate (510) is threadedly connected with a left side supporting plate (511) through a circular rod threaded connection plate bolt, the top of the left side supporting plate (511) is provided with a circular rod hole, the circular rod hole and the circular rod (508) are matched with each other, the top of the aluminum veneer conveying table (506) is provided with a conveying table groove, the inner wall of the conveying table groove is provided with a conveying table sliding groove, the top of the aluminum veneer conveying table (506) is provided with a conveying table transverse hydraulic motor (512), the conveying table transverse hydraulic motor (512) is threadedly connected with the aluminum veneer conveying table (506) through a conveying table transverse hydraulic motor bolt, and one side of the conveying table transverse hydraulic motor (512) is provided with a conveying table transverse hydraulic rod (513).

8. The soundproofing, heat-insulating, and tightly-spliced aluminum veneer damage-preventing transfer equipment according to claim 7, characterized in that: One end of the conveying table transverse hydraulic rod (513) is equipped with a conveying table transverse hard plate (514), one side of the conveying table transverse hard plate (514) is equipped with a conveying table transverse soft cotton (515), the front of the conveying table transverse hydraulic motor (512) is equipped with a conveying table transverse hydraulic motor signal indicator (516), the front of the aluminum veneer conveying table (506) is equipped with a hydraulic rod hole, the front of the aluminum veneer conveying table (506) is equipped with a longitudinal hydraulic motor (517), the longitudinal hydraulic motor (517) is screw connected with the aluminum veneer conveying table (506) through longitudinal hydraulic motor bolts, the back of the longitudinal hydraulic motor (517) is equipped with a longitudinal hydraulic rod (518), one end of the longitudinal hydraulic rod (518) is screw connected with a hydraulic rod threaded sleeve (519), one end of the hydraulic rod threaded sleeve (519) is equipped with a power strong magnet (520), one side of the longitudinal hydraulic motor (517) is equipped with a longitudinal hydraulic motor signal indicator (521).

Citation Information

Patent Citations

  • Transferring and transferring equipment for porcelain aluminum veneer processing

    CN216467935U