A reversible laser cutting platform module

By designing a flip-up laser cutting platform module, using a lifting cylinder to drive the loading platform to flip and tilt, combined with structures such as suction holes and buffers, the problem of time-consuming and labor-intensive manual unloading after ceramic sheet cutting is solved, achieving rapid unloading and efficient operation.

CN224373133UActive Publication Date: 2026-06-19DONGGUAN MINA PRECISION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-18
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

The current manual unloading process after ceramic sheet cutting is time-consuming, labor-intensive, inefficient, and prone to damaging the ceramic sheets.

Method used

Design a flip-up laser cutting platform module. The material platform is flipped and tilted by a lifting cylinder to enable the material to slide down quickly. Suction holes and vacuum connectors are used to hold the material, and buffers and hollow grooves reduce weight and improve stability.

Benefits of technology

This technology enables rapid feeding of ceramic sheets, improves feeding efficiency, reduces labor costs, avoids material damage, and enhances operational safety and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of feeding platform technology, and more particularly to a flip-up laser cutting platform module, including a base, a lifting cylinder tilted on the base, a lifting frame connected to the lifting cylinder, and a loading platform disposed on the lifting frame. One end of the lifting frame is provided with a first hinge seat, and the output end of the lifting cylinder is provided with a connector. A first hinge shaft connects the first hinge seat and the connector. The other end of the lifting frame is provided with a second hinge seat, and the base is provided with a connecting seat. A second hinge shaft connects the second hinge seat and the connecting seat. This utility model utilizes the lifting cylinder to drive the loading platform to flip and tilt via the lifting frame, enabling rapid material feeding. The operation is simple and convenient, improving feeding efficiency.
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Description

Technical Field

[0001] This utility model relates to the field of feeding platform technology, and in particular to a flip-up laser cutting platform module. Background Technology

[0002] Due to their excellent thermal, mechanical, chemical, and dielectric properties, ceramic sheets have a wide range of applications. To facilitate assembly and use, ceramic sheets often require processing such as chamfering, cutting, trimming, and drilling to aid in subsequent shaping. Currently, after cutting, ceramic sheets are typically unloaded manually. However, because ceramic sheets are small and produced in large quantities, manually removing them from the conveyor belt is not only time-consuming and labor-intensive, resulting in low unloading efficiency, but also carries the risk of damage to the sheet's structure due to improper force applied by the operator, thus affecting processing quality. Utility Model Content

[0003] The purpose of this utility model is to address the shortcomings of existing technologies by providing a flip-up laser cutting platform module. The lifting cylinder drives the material platform to flip and tilt through the lifting frame, enabling materials to slide down and be unloaded quickly. The operation is simple and convenient, and the unloading efficiency is improved.

[0004] To achieve the above objectives, this utility model provides a flip-up laser cutting platform module, comprising a base, a lifting cylinder inclinedly disposed on the base, a lifting frame connected to the lifting cylinder, and a material loading platform disposed on the lifting frame. One end of the lifting frame is provided with a first hinge seat, the output end of the lifting cylinder is provided with a connector, a first hinge shaft is connected between the first hinge seat and the connector, the other end of the lifting frame is provided with a second hinge seat, the base is provided with a connector, and a second hinge shaft is connected between the second hinge seat and the connector.

[0005] Preferably, a buffer is provided at one end of the base near the lifting frame. Multiple buffers are provided, spaced apart, and the multiple buffers prevent contact with the bottom surface of the lifting frame.

[0006] Preferably, the top of the loading platform is provided with suction holes for suctioning the material it carries, and there are multiple suction holes arranged in a rectangular array. The bottom of the loading platform is provided with vacuum connectors, and there are multiple vacuum connectors connected to the multiple suction holes.

[0007] Preferably, the lifting frame is provided with a first hollow groove, and multiple first hollow grooves are provided, which are recessed from the bottom surface of the lifting frame.

[0008] Preferably, the lifting frame is provided with a material blocking assembly, which includes a sliding seat, a material blocking plate disposed on the sliding seat, and a drive cylinder drivenly connected to the sliding seat. The sliding seat is driven by the drive cylinder to move along the width direction of the loading platform so that the outer side of the material blocking plate stops and abuts against the outer side of the material placed on the loading platform.

[0009] Preferably, the sliding seat is provided with a slider, the lifting frame is provided with a guide rail that is slidably connected to the slider, the lifting frame is provided with a mounting base, and the lifting frame is connected to the drive cylinder through the mounting base.

[0010] Preferably, the base is provided with a second hollow groove, and multiple second hollow grooves are provided, which are recessed from the outer surface of the base.

[0011] The beneficial effects of this utility model are: the lifting cylinder drives the material platform to flip and tilt through the lifting frame, so as to realize the rapid sliding and unloading of materials, which is simple and convenient to operate and improves the unloading efficiency. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the structure of this utility model.

[0013] Figure 2 This is a schematic diagram of the rear structure of the lifting frame of this utility model.

[0014] Figure 3 for Figure 1 A magnified schematic diagram of part A in the diagram.

[0015] The reference numerals in the figures include:

[0016] 1—Base 11—Connector 12—Buffer

[0017] 13 - Second hollowed-out groove

[0018] 2—Lifting Cylinder 21—Connector

[0019] 3—Lifting frame; 31—First hinge seat; 32—Second hinge seat

[0020] 33 - First hollowed-out groove; 34 - Guide rail; 35 - Mounting base

[0021] 4—Packing platform; 41—Suction hole; 42—Vacuum connector

[0022] 5 — First hinge axis; 6 — Second hinge axis

[0023] 7—Blocking assembly; 71—Sliding seat; 72—Blocking plate

[0024] 73 - Drive cylinder; 74 - Slider. Detailed Implementation

[0025] The present invention will now be described in detail with reference to the accompanying drawings.

[0026] like Figures 1 to 3 As shown, a flip-up laser cutting platform module of this utility model includes a base 1, a lifting cylinder 2 inclinedly disposed on the base 1, a lifting frame 3 driven and connected to the lifting cylinder 2, and a material loading platform 4 disposed on the lifting frame 3. One end of the lifting frame 3 is provided with a first hinge seat 31, and the output end of the lifting cylinder 2 is provided with a connector 21. A first hinge shaft 5 is connected between the first hinge seat 31 and the connector 21. The other end of the lifting frame 3 is provided with a second hinge seat 32, and the base 1 is provided with a connector 11. A second hinge shaft 6 is connected between the second hinge seat 32 and the connector 11.

[0027] After the ceramic sheet is cut, the lifting cylinder 2, tilted on the base 1, drives the loading platform 4 to tilt and rise via the lifting frame 3. The angle between the central axis of the lifting cylinder 2 and the base 1 is 0°–30°, preferably 15°. The connecting head 21 of the lifting cylinder 2 is movably hinged to the first hinge seat 31 of the lifting frame 3 via the first hinge shaft 5. Simultaneously, the second hinge seat 32 of the lifting frame 3 is movably hinged to the connecting seat 11 of the base 1 via the second hinge shaft 6. This improves the flexibility of the loading platform 4 in tilting, allowing the ceramic sheet placed on the loading platform 4 to slide down tilted along the platform 4 under gravity, achieving rapid unloading. This operation is time-saving and labor-saving, requiring no manual intervention and reducing labor costs. The lifting cylinder 2 of this invention drives the loading platform 4 to tilt and rise via the lifting frame 3, enabling rapid material unloading. The operation is simple and convenient, improving unloading efficiency.

[0028] In this embodiment, a buffer 12 is provided at one end of the base 1 near the lifting frame 3. Multiple buffers 12 are provided, spaced apart, and prevent contact with the bottom surface of the lifting frame 3. Specifically, when the lifting cylinder 2 drives the loading platform 4 to descend via the lifting frame 3, the spaced-apart buffers 12 prevent contact with the bottom surface of the lifting frame 3, thus buffering and decelerating the vertically moving lifting frame 3. This also provides good protection and limiting for the lifting frame 3, improving operational safety and stability.

[0029] In this embodiment, the top of the loading platform 4 is provided with suction holes 41 for adhering to the material it carries. Multiple suction holes 41 are arranged in a rectangular array. Multiple vacuum connectors 42 are provided at the bottom of the loading platform 4, and these connectors are connected to the suction holes 41. Specifically, the multiple suction holes 41 are arranged in a rectangular array at the top of the loading platform 4, and the multiple vacuum connectors 42 are arranged in a rectangular array at the bottom. Since the multiple vacuum connectors 42 are connected to the multiple suction holes 41, they are connected to an external air pump through multiple connecting pipes (not shown). After the air pump is started, air is drawn from the multiple suction holes 41 through the multiple vacuum connectors 42, thereby allowing the multiple suction holes 41 of the loading platform 4 to stably hold multiple ceramic sheets.

[0030] In this embodiment, the lifting frame 3 is provided with a first hollowed-out groove 33, and multiple first hollowed-out grooves 33 are provided, which are recessed from the bottom surface of the lifting frame 3. Specifically, the multiple first hollowed-out grooves 33 are recessed from the bottom surface of the lifting frame 3. By providing the first hollowed-out grooves 33, the weight of the lifting frame 3 is effectively reduced, while the shock absorption capacity of the lifting frame 3 is improved, ensuring the stability of the loading platform 4 during operation.

[0031] In this embodiment, the lifting frame 3 is equipped with a material blocking assembly 7. The material blocking assembly 7 includes a sliding seat 71, a material blocking plate 72 disposed on the sliding seat 71, and a drive cylinder 73 drivenly connected to the sliding seat 71. The sliding seat 71 is driven by the drive cylinder 73 to move along the width direction of the loading platform 4, so that the outer side of the material blocking plate 72 stops and abuts against the outer side of the material placed on the loading platform 4. Specifically, the sliding seat 71 is driven by the drive cylinder 73 to move along the width direction of the loading platform 4. Since the ceramic sheets have different specifications and sizes, by arbitrarily adjusting the position of the material blocking plate 72 on the loading platform 4 in advance, the outer side of the material blocking plate 72 accurately stops and abuts against the outer side of the ceramic sheet on the loading platform 4. This provides high operational compatibility and effectively avoids the ceramic sheets from shifting position during transportation, or even the ceramic sheets from accidentally falling.

[0032] In this embodiment, the sliding base 71 is equipped with a slider 74, and the lifting frame 3 is equipped with a guide rail 34 that is slidably connected to the slider 74. The lifting frame 3 is also equipped with a mounting base 35, and the lifting frame 3 is connected to the drive cylinder 73 through the mounting base 35. Specifically, the lifting frame 3 is fixedly connected to the drive cylinder 73 through the mounting base 35, and the sliding base 71 is slidably connected to the guide rail 34 through the slider 74. When used in conjunction with the drive cylinder 73, it can achieve efficient linear motion, ensuring the smoothness and accuracy of the motion.

[0033] In this embodiment, the base 1 is provided with a second hollowed-out groove 13, and multiple second hollowed-out grooves 13 are provided, which are recessed from the outer surface of the base 1. Specifically, the multiple second hollowed-out grooves 13 are recessed from the outer surface of the base 1. By providing the second hollowed-out grooves 13, the weight of the base 1 is effectively reduced, while the shock absorption capacity of the base 1 is improved, ensuring the working stability of the base 1.

[0034] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A reversible laser cutting platform module, characterized by: The device includes a base, a lifting cylinder inclinedly disposed on the base, a lifting frame connected to the lifting cylinder, and a loading platform disposed on the lifting frame. One end of the lifting frame is provided with a first hinge seat, the output end of the lifting cylinder is provided with a connector, a first hinge shaft is connected between the first hinge seat and the connector, the other end of the lifting frame is provided with a second hinge seat, the base is provided with a connector, and a second hinge shaft is connected between the second hinge seat and the connector.

2. The reversible laser cutting platform module of claim 1, wherein: A buffer is provided at one end of the base near the lifting frame. Multiple buffers are provided, spaced apart, and the multiple buffers prevent contact with the bottom surface of the lifting frame.

3. The reversible laser cutting table module of claim 1, wherein: The top of the loading platform is provided with suction holes for suctioning the material it carries. There are multiple suction holes arranged in a rectangular array. The bottom of the loading platform is provided with vacuum connectors. There are multiple vacuum connectors connected to the multiple suction holes.

4. The flip-up laser cutting platform module according to claim 3, characterized in that: The lifting frame is provided with a first hollow groove, and there are multiple first hollow grooves, which are recessed from the bottom surface of the lifting frame.

5. A flip-up laser cutting platform module according to claim 1, characterized in that: The lifting frame is equipped with a material blocking assembly, which includes a sliding seat, a material blocking plate disposed on the sliding seat, and a drive cylinder driven by the sliding seat. The sliding seat is driven by the drive cylinder to move along the width direction of the loading platform so that the outer side of the material blocking plate stops and abuts against the outer side of the material placed on the loading platform.

6. A flip-up laser cutting platform module according to claim 5, characterized in that: The sliding seat is equipped with a slider, the lifting frame is equipped with a guide rail that is slidably connected to the slider, the lifting frame is equipped with a mounting base, and the lifting frame is connected to the drive cylinder through the mounting base.

7. A flip-up laser cutting platform module according to claim 1, characterized in that: The base is provided with a second hollow groove, and there are multiple second hollow grooves, which are recessed from the outer surface of the base.