Numerical control machining plate transferring lifting appliance

By using automated control of hydraulic rods and pressure sensors, the problem of lifting lugs falling off due to uneven sheet material quality during the lifting process of CNC machining sheet material transfer lifting equipment has been solved, achieving fully automated lifting and reducing labor costs.

CN224105445UActive Publication Date: 2026-04-10QIANDAO LAKE SECONDARY VOCATIONAL SCHOOL (CHUNAN COUNTY TECH SCHOOL)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
QIANDAO LAKE SECONDARY VOCATIONAL SCHOOL (CHUNAN COUNTY TECH SCHOOL)
Filing Date
2025-05-28
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing CNC sheet metal transfer lifting equipment is prone to the lifting lugs falling off during the lifting process due to uneven sheet metal quality. Furthermore, the lifting lugs need to be installed manually, which poses safety hazards and high labor costs.

Method used

The system employs hydraulic rods and pressure sensors in conjunction with signal processing devices to achieve fully automatic lifting and transfer. Through the separation and sliding connection of the hydraulic rods, it automatically adapts to the surface shape of the sheet material, ensuring stable lifting and transfer.

Benefits of technology

This technology prevents the lifting lugs from falling off during hoisting due to uneven sheet material quality, reducing labor costs and improving safety and automation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224105445U_ABST
Patent Text Reader

Abstract

The utility model relates to a numerical control machining plate transferring lifting appliance which comprises a device body, the device body comprises an external supporting structure, an internal working structure and a transferring module, and the device body is moved to the position above a plate needing to be transferred; the outer hydraulic rod and the inner hydraulic rod are separated from each other so as to drive the first contact module to get close to the plate, the signal receiving device transmits a signal to the signal processing device in the connecting rod through the signal line, and when the first contact module slides to the edge of the plate and falls off, the signal receiving device sends a signal to the signal processing device again. At the moment, the edge of the plate is in contact with a lock catch, a second spring contracts and applies pressure to a second pressure sensor, an external supporting structure is manually pushed, so that a rotating module and a fixed module rotate, a rolling wheel turns to the thrust direction, and the device body completes transferring work.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of lifting appliance, specifically a kind of numerical control processing sheet transfer lifting appliance. BACKGROUND

[0002] Lifting appliance refers to the device of hoisting heavy objects in hoisting machinery. The most commonly used lifting appliance for lifting finished goods is lifting hook, lifting belt, and other lifting rings, hoisting suction cups, tongs and forks. It is widely used in hoisting industry. Chinese patent discloses a kind of numerical control processing sheet transfer lifting appliance.(Grant announcement No.CN 222475896U), the patent technology can effectively buffer axial force before and after hoisting, so as to not easily cause the shock damage of hoisting sheet in hoisting, loading and unloading process, but, the device adopts steel cable, has certain elasticity, may cause some lifting lugs to fall off due to uneven sheet quality, and manual installation is required on the sheet. Therefore, the technical personnel in the art provide a kind of numerical control processing sheet transfer lifting appliance to solve the problems raised in the above background technology. SUMMARY

[0003] The utility model aims at providing a kind of numerical control processing sheet transfer lifting appliance to solve the problems raised in the above background technology.

[0004] To achieve the above object, the utility model provides the following technical scheme:

[0005] A kind of numerical control processing sheet transfer lifting appliance, including device body, the device body includes external support structure, internal working structure and transfer module, the external support structure includes structure top plate, the structure top plate is fixedly connected with structure link plate, the structure link plate is fixedly connected with structure vertical plate and structure transverse plate, the structure top plate is fixedly connected with connecting rod, the connecting rod is equipped with signal processing device inside, the connecting rod is fixedly connected with buffer plate and is equipped with gasket at connecting place, the buffer plate and gasket are fixedly connected with structure main plate, the structure main plate is fixedly connected with structure transverse plate, external support structure plays the role of fixed device body, avoid ineffective lock buckle due to uneven stress;

[0006] Preferably: the structure main plate is in sliding connection with the outer hydraulic plate of the internal working structure, the outer hydraulic plate is in sliding connection with the inner hydraulic plate, the inner hydraulic plate is provided with a fixed plate at the end away from the structure main plate, the fixed plate is in fixed connection with the outer rod of the hydraulic rod, the outer rod of the hydraulic rod is in sliding connection with the inner rod of the hydraulic rod, the inner rod of the hydraulic rod is in fixed connection with the longitudinal compensation rod, the longitudinal compensation rod is internally provided with a signal receiving device, the signal receiving device is connected with the signal processing device inside the connecting rod through a signal line, the lower end of the longitudinal compensation rod is provided with a pressure sensor one, the pressure sensor one is connected with the signal receiving device through a signal line, the pressure sensor one is in fixed connection with the spring one, the other end of the spring one is in fixed connection with the contact module one, the side edge of the longitudinal compensation rod is provided with a pressure sensor two, the pressure sensor two is connected with the signal receiving device through a signal line, the pressure sensor two is in fixed connection with the spring two, the other end of the spring two is in fixed connection with the contact module two, the contact module two is in fixed connection with the horizontal compensation rod, the horizontal compensation rod is in fixed connection with the lock catch, the device body is moved to the upper side of the required transfer plate material, the outer rod of the hydraulic rod and the inner rod of the hydraulic rod are separated from each other to drive the contact module one to approach the plate material, when the contact module one contacts the plate material and makes the spring one shrink to a certain extent, the spring one releases the pressure on the pressure sensor one, the pressure sensor one sends signals to the signal receiving device through the signal line after receiving the signals, the signal receiving device sends signals to the signal processing device inside the connecting rod through the signal line, the signal processing device controls the inner rod of the hydraulic rod and the outer rod of the hydraulic rod to stop separating and starts the mutual separation of the structure main plate and the outer hydraulic plate and the outer hydraulic plate and the inner hydraulic plate, at this time the contact module one slides on the surface of the plate material, when the contact module one slides to the edge of the plate material and falls off, the spring one recovers and loses the pressure on the pressure sensor one, the signal receiving device sends signals to the signal processing device again, the signal processing device stops the mutual separation of the structure main plate and the outer hydraulic plate and the outer hydraulic plate and the inner hydraulic plate and starts the mutual separation of the outer rod of the hydraulic rod and the inner rod of the hydraulic rod again, at this time the edge of the plate material contacts the lock catch, the lower surface of the lock catch is inclined and accumulates the pressure from the edge of the plate material and transmits the pressure to the contact module two through the horizontal compensation rod, the spring two shrinks and applies pressure to the pressure sensor two, the pressure sensor two sends signals to the signal receiving device through the signal line, the signal receiving device sends signals to the signal processing device, until the edge of the plate material is separated from the upper end of the lock catch, at this time the spring two recovers and pushes the horizontal compensation rod and the lock catch to approach the bottom side of the plate material and the pressure sensor two loses the pressure source, and sends signals to the signal processing device through the signal receiving device, the signal processing device changes the mutual separation of the outer rod of the hydraulic rod and the inner rod of the hydraulic rod to shrink to a certain height and stop, thus completing the lifting work of the plate material;

[0007] Preferably, the structure longitudinal plate bottom is fixedly connected with a fixed module of the transfer module, the fixed module is in clearance fit with a rotating module, the rotating module is in clearance fit with a rotating shaft, the rotating shaft is provided with a roller, the external supporting structure is manually pushed to make the rotating module and the fixed module rotate, the roller is turned to the thrust direction, and the device body completes the transfer work.

[0008] Compared with the prior art, the utility model has the advantages that:

[0009] 1、The utility model discloses adopt rigid material such as hydraulic rod, avoid because the plate material quality uneven leads to can not effectively realize the work demand.

[0010] 2、The utility model discloses realize full -automatic in the process of lifting the plate material, reduced the manual cost, has improved the security greatly in the low -cost operation. ACCURACY OF DRAWINGS

[0011] Fig. 1 It is a kind of whole structure schematic diagram of numerical control processing plate transfer lifting appliance.

[0012] Fig. 2 It is a kind of whole front view structure schematic diagram in numerical control processing plate transfer lifting appliance.

[0013] Fig. 3 It is a kind of whole plan view structure schematic diagram in numerical control processing plate transfer lifting appliance.

[0014] Fig. 4 It is a kind of whole structure schematic diagram of internal working structure in numerical control processing plate transfer lifting appliance.

[0015] Fig. 5 It is a kind of front view structure schematic diagram of internal working structure in numerical control processing plate transfer lifting appliance.

[0016] Fig. 6 It is a kind of structure schematic diagram of lifting lug in numerical control processing plate transfer lifting appliance.

[0017] Fig. 7 It is a kind of structure schematic diagram of transfer module in numerical control processing plate transfer lifting appliance.

[0018] In the figure: 1, device body; 2, external support structure; 211, structure top plate; 212, structure connection plate; 213, structure longitudinal plate; 214, connecting rod; 215, buffer plate; 216, gasket; 217, structure main plate; 218, structure transverse plate; 3, internal working structure; 311, outer hydraulic plate; 312, inner hydraulic plate; 313, fixed plate; 314, hydraulic rod outer rod; 315, hydraulic rod inner rod; 316, longitudinal compensation rod; 317, signal receiving device; 318, pressure sensor one; 319, spring one; 320, contact module one; 321, pressure sensor two; 322, spring two; 323, contact module two; 324, horizontal compensation rod; 325, lock catch; 4, transfer module; 411, fixed module; 412, rotating module; 413, rotating shaft; 414, roller. DETAILED DESCRIPTION

[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0020] Please refer to Figs. 1-7 In the embodiments of the present application, a numerical control machining plate transfer lifting appliance includes a device body 1, the device body 1 includes an external support structure 2, an internal working structure 3 and a transfer module 4, the external support structure 2 includes a structure top plate 211, the structure top plate 211 is fixedly connected with a structure connection plate 212, the structure connection plate 212 is fixedly connected with a structure longitudinal plate 213 and a structure transverse plate 218, the structure top plate 211 is fixedly connected with a connecting rod 214, the connecting rod 214 is internally provided with a signal processing device, the connecting rod 214 is fixedly connected with a buffer plate 215 and is provided with a gasket 216 at the connection, the buffer plate 215 and the gasket 216 are fixedly connected with a structure main plate 217, the structure main plate 217 is fixedly connected with the structure transverse plate 218;

[0021] The structure main plate 217 is in sliding connection with the outer hydraulic plate 311 of the internal working structure 3, the outer hydraulic plate 311 is in sliding connection with the inner hydraulic plate 312, the inner hydraulic plate 312 is provided with a fixed plate 313 at one end away from the structure main plate 217, the fixed plate 313 is in fixed connection with the outer hydraulic rod 314, the outer hydraulic rod 314 is in sliding connection with the inner hydraulic rod 315, the inner hydraulic rod 315 is in fixed connection with the longitudinal compensation rod 316, the longitudinal compensation rod 316 is internally provided with a signal receiving device 317, the signal receiving device 317 is connected with the signal processing device in the connecting rod 214 through a signal line, the lower end of the longitudinal compensation rod 316 is provided with a pressure sensor 318, the pressure sensor 318 is connected with the signal receiving device 317 through a signal line, the pressure sensor 318 is in fixed connection with a spring 319, the other end of the spring 319 is in fixed connection with a contact module 320, the side of the longitudinal compensation rod 316 is provided with a pressure sensor 321, the pressure sensor 321 is connected with the signal receiving device 317 through a signal line, the pressure sensor 321 is in fixed connection with a spring 322, the other end of the spring 322 is in fixed connection with a contact module 323, the contact module 323 is in fixed connection with a horizontal compensation rod 324, the horizontal compensation rod 324 is in fixed connection with a lock 325;

[0022] The bottom of the structure longitudinal plate 213 is in fixed connection with the fixed module 411 of the transfer module 4, the fixed module 411 is in clearance fit with the rotating module 412, the rotating module 412 is in clearance fit with the rotating shaft 413, the rotating shaft 413 is provided with a roller 414;

[0023] The working principle of the utility model is: moving the device body 1 to the upper side of the plate material to be transferred, the outer rod 314 of the hydraulic rod and the inner rod 315 of the hydraulic rod are separated from each other to drive the contact module one 320 to approach the plate material, when the contact module one 320 contacts the plate material and makes the spring one 319 contract to a certain degree, the spring one 319 will release the pressure of the pressure sensor one 318, the pressure sensor one 318 receives the signal and sends the signal to the signal receiving device 317 through the signal line, the signal receiving device 317 sends the signal to the signal processing device inside the connecting rod 214 through the signal line, the signal processing device controls the inner rod 315 of the hydraulic rod and the outer rod 314 of the hydraulic rod to stop separating and starts the mutual separation of the structure main plate 217 and the outer layer hydraulic plate 311 and the outer layer hydraulic plate 311 and the inner layer hydraulic plate 312, at this time the contact module one 320 will slide on the surface of the plate material, when the contact module one 320 slides to the edge of the plate material and falls off, the spring one 319 restores and loses the pressure of the pressure sensor one 318, the signal receiving device 317 sends the signal to the signal processing device again, the signal processing device stops the mutual separation of the structure main plate 217 and the outer layer hydraulic plate 311 and the outer layer hydraulic plate 311 and the inner layer hydraulic plate 312 and starts the mutual separation of the outer rod 314 of the hydraulic rod and the inner rod 315 of the hydraulic rod again, at this time the edge of the plate material will contact the lock catch 325, the lower surface of the lock catch 325 is inclined and will accumulate the pressure from the edge of the plate material and transmit the pressure to the contact module two 323 through the horizontal compensation rod 324, the spring two 322 contracts and applies the pressure to the pressure sensor two 321, the pressure sensor two 321 sends the signal to the signal receiving device 317 through the signal line, the signal receiving device 317 sends the signal to the signal processing device again, until the edge of the plate material is separated from the upper end bending part of the lock catch 325, at this time the spring two 322 restores, pushes the horizontal compensation rod 324 and the lock catch 325 to approach the bottom side of the plate material and the pressure sensor two 321 will lose the pressure source, and sends the signal to the signal processing device through the signal receiving device 317, the signal processing device makes the outer rod 314 of the hydraulic rod and the inner rod 315 of the hydraulic rod separate from each other to contract and stop at a certain height, thus the lifting work of the plate material is completed, and the device body 1 is completed the transfer work by manually pushing the external supporting structure 2, making the rotating module 412 and the fixed module 411 rotate, making the roller 414 rotate to the thrust direction.

[0024] The above is only the preferred specific implementation of the utility model, but the protection scope of the utility model is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the utility model concept of the utility model within the technical range disclosed by the utility model, which should be covered in the protection scope of the utility model.

Claims

1. A numerical control machining sheet metal transfer spreader comprising a device body (1), characterized in that, The device body (1) includes an external support structure (2), an internal working structure (3) and a transfer module (4), the external support structure (2) includes a structure top plate (211), the structure top plate (211) is fixedly connected with a structure connection plate (212), the structure connection plate (212) is fixedly connected with a structure longitudinal plate (213) and a structure transverse plate (218), the structure top plate (211) is fixedly connected with a connecting rod (214), and the connecting rod (214) is internally provided with a signal processing device.

2. A numerically controlled plate transfer spreader according to claim 1, characterized in that, The bottom of the structure longitudinal plate (213) is fixedly connected with a fixed module (411) of the transfer module (4), the fixed module (411) is gap-connected with a rotating module (412), the rotating module (412) is gap-connected with a rotating shaft (413), and the rotating shaft (413) is provided with a roller (414).

3. The numerically controlled machining sheet transfer spreader according to claim 1, characterized in that, The connecting rod (214) is fixedly connected with a buffer plate (215) and is provided with a gasket (216) at the connection, the buffer plate (215) and the gasket (216) are fixedly connected with a structure main plate (217), and the structure main plate (217) is fixedly connected with the structure transverse plate (218).

4. A numerically controlled plate transfer spreader according to claim 3, characterized in that, The structure main plate (217) is slidingly connected with an outer layer hydraulic plate (311) of the internal working structure (3), the outer layer hydraulic plate (311) is slidingly connected with an inner layer hydraulic plate (312), one end of the inner layer hydraulic plate (312) away from the structure main plate (217) is provided with a fixed plate (313), the fixed plate (313) is fixedly connected with a hydraulic rod outer rod (314), and the hydraulic rod outer rod (314) is slidingly connected with a hydraulic rod inner rod (315).

5. A numerically controlled plate transfer spreader according to claim 4, characterized in that, The hydraulic rod inner rod (315) is fixedly connected with a longitudinal compensation rod (316), the longitudinal compensation rod (316) is internally provided with a signal receiving device (317), and the signal receiving device (317) is connected with the signal processing device in the connecting rod (214) through a signal line.

6. A numerically controlled sheet transfer spreader according to claim 5, wherein, A pressure sensor one (318) is arranged at the lower end of the longitudinal compensation rod (316), the pressure sensor one (318) is connected with the signal receiving device (317) through a signal line, the pressure sensor one (318) is fixedly connected with a spring one (319), and the other end of the spring one (319) is fixedly connected with a contact module one (320).

7. A numerically controlled sheet material transfer hoist according to claim 6, wherein, A pressure sensor two (321) is arranged at the side edge of the longitudinal compensation rod (316), the pressure sensor two (321) is connected with the signal receiving device (317) through a signal line, the pressure sensor two (321) is fixedly connected with a spring two (322), the other end of the spring two (322) is fixedly connected with a contact module two (323), the contact module two (323) is fixedly connected with a horizontal compensation rod (324), and the horizontal compensation rod (324) is fixedly connected with a lock buckle (325).

Citation Information

Patent Citations

  • Numerical control machining plate transferring lifting appliance

    CN222475896U