Laser cutting platform and laser cutting equipment

By designing a detachable support tooth plate and limiting component structure, the difficulties in disassembling, transporting, and maintaining the laser cutting platform were solved, enabling convenient disassembly and transportation of the platform, reducing costs, and improving maintenance efficiency.

CN223889181UActive Publication Date: 2026-02-10HANS LASER SMART EQUIP GRP CO LTD
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Patent Information

Application Number
CN202520187634.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-02-10
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

The cutting platform of existing laser cutting machines presents many difficulties in disassembly, transportation and maintenance, especially large-format, high-power platforms, which are particularly inconvenient to disassemble and maintain.

Method used

A laser cutting platform was designed, which adopts a detachable support toothed plate structure. The support frame can be matched and accommodated in the receiving slot formed by the limiting component. The support toothed plate is detachably set on the support frame. Through the combination of the limiting component and the support mechanism, the platform can be easily disassembled and maintained.

Benefits of technology

This enables convenient disassembly and transportation of the laser cutting platform, reducing transportation costs, improving maintenance convenience and costs, and enhancing the platform's flexibility and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a laser cutting platform and laser cutting equipment, and the laser cutting platform comprises a platform rack which is provided with a vertically-through blanking area and a bearing end face arranged around the blanking area; the limiting assembly comprises a plurality of limiting parts, all the limiting parts are arranged on the bearing end face at intervals around the blanking area, all the limiting parts surround the bearing end face to form a containing groove position, and the blanking area is located in the containing groove position; the supporting mechanism comprises a supporting frame and a plurality of supporting toothed plates, the supporting frame can be contained in the containing groove position in a matched mode, the supporting toothed plates are detachably arranged on the supporting frame, and the supporting toothed plates are arranged on the supporting frame in parallel at intervals. The laser cutting platform is convenient to disassemble, transport and maintain.
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Description

Technical Field

[0001] This application belongs to the field of laser processing technology, and more specifically, relates to a laser cutting platform and laser cutting equipment. Background Technology

[0002] Currently, some laser cutting machines are also equipped with cutting platforms integrated with the machine bed, exchange cutting platforms, and chain plate cutting platforms. These are all cutting platforms with a small cutting area. As the cutting area becomes larger and the power becomes higher, these worktables have generally exposed many problems such as disassembly, transportation, and maintenance. Utility Model Content

[0003] This application provides a laser cutting platform that is easy to disassemble, transport, and maintain.

[0004] The technical solution adopted in this application embodiment is: to provide a laser cutting platform, including:

[0005] The platform frame has a vertically connected unloading area and a bearing end face surrounding the unloading area;

[0006] A limiting assembly includes multiple limiting members, each of which is spaced apart and arranged around the material discharge area on the bearing end face. Each limiting member forms a receiving groove around the bearing end face, and the material discharge area is located within the receiving groove.

[0007] The support mechanism includes a support frame and a plurality of support toothed plates. The support frame is accommodatingly received in the receiving slot, and the support toothed plates are detachably disposed on the support frame. The support toothed plates are arranged in parallel at intervals on the support frame.

[0008] Furthermore, the platform rack includes:

[0009] The main frame is rectangular, the material dropping area is located inside the main frame, the upper end face of the main frame is the bearing end face, and the limiting member is fixed to the outer edge of the main frame;

[0010] Multiple columns, one end of which is connected to the main frame, and the other end extends downward beyond the bottom surface of the main frame and is supported on the floor, with each column spaced apart from the others.

[0011] Furthermore, the platform rack also includes:

[0012] The material discharge plate assembly includes two material discharge ramps, which are respectively located on both sides of the material discharge area. The upper ends of the material discharge ramps are connected to the main frame, and the distance between the two material discharge ramps gradually decreases from top to bottom.

[0013] The guide plate assembly includes two guide plates, which are located at the bottom of the main frame. The guide plates are perpendicular to the horizontal plane and extend to both ends of the main frame. The two guide plates are located on both sides of the material dropping area. The lower end of the material dropping inclined plate is mounted on the guide plates.

[0014] Furthermore, the laser cutting platform also includes a heat insulation layer, the lower end of the material dropping sloping plate is bent into a C shape, the heat insulation layer is laid on the material dropping sloping plate, and the lower end of the heat insulation layer is held by the lower end of the bent material dropping sloping plate.

[0015] Furthermore, the heat insulation layer is made of refractory brick.

[0016] Furthermore, the platform frame also includes multiple support pads, each of which is spaced apart on the bearing end face, and the support frame presses against the support pads.

[0017] Furthermore, the support mechanism also includes multiple clamping plates and pressure plates. The support frame is rectangular in shape. The clamping plates are disposed inside the support frame and perpendicular to the support toothed plate. Each clamping plate is arranged at intervals along the length direction of the support toothed plate. The clamping plate is provided with a slot for the support toothed plate to be inserted.

[0018] The support frame has an insertion hole at one end perpendicular to the length direction of the support toothed plate, and the support toothed plate has an insertion end at one end that can be inserted into the insertion hole. The pressure plate is detachably provided at the other end of the support frame and presses the end of the support toothed plate away from the insertion end against the clamping plate.

[0019] Furthermore, the platform frame has two material dropping areas, which are arranged sequentially along the length of the support toothed plate. The limiting component and the support mechanism are provided in two sets, each corresponding to one of the material dropping areas.

[0020] Furthermore, it also includes a cover, the cross-section of which is inverted V-shaped, the length of which is perpendicular to the length of which is the support tooth plate, the cover being located between the two material dropping areas, the lower ends of which respectively cover one end of which is the support tooth plate on both sides, and the lower edges of which are provided with multiple slots for which each of the support tooth plates can be inserted.

[0021] This application also provides a laser cutting device, including a laser cutting apparatus and a laser cutting platform as described above, wherein the laser cutting apparatus is used to cut a workpiece located on the laser cutting platform.

[0022] The beneficial effects of the laser cutting platform provided in this application embodiment are as follows: The laser cutting platform of this application embodiment has a detachable support toothed plate structure within the support frame. When the laser cutting platform needs to be disassembled and transported, the support toothed plate can be removed separately, reducing the overall volume and weight, and facilitating operation. Simultaneously, since the support toothed plate is an independent component, it can be packaged and stored more flexibly during transportation, reducing the space occupied during transport and lowering transportation costs. The limiting components in the limiting assembly are spaced around the material dropping area to form receiving slots, and the support frame can be matched and accommodated in these receiving slots, making it relatively easy to remove or install the entire support mechanism from the platform frame during maintenance. When maintenance or replacement of the support mechanism is required, simply remove the support frame from the receiving slots to perform the corresponding operations, avoiding the problem of difficult component separation in traditional platforms. For the support toothed plate, since it is detachable, when individual support toothed plates are damaged or require repair, there is no need for large-scale disassembly of the entire platform; only the damaged support toothed plate needs to be replaced or repaired, reducing maintenance and time costs. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0024] Figure 1 A three-dimensional structural diagram of the laser cutting platform provided in the embodiments of this application;

[0025] Figure 2 This is a split schematic diagram of the laser cutting platform provided in an embodiment of this application;

[0026] Figure 3 Platform rack provided for embodiments of this application

[0027] Figure 4 A three-dimensional structural diagram of the support mechanism provided in the embodiments of this application;

[0028] Figure 5 An exploded view of the support mechanism provided in the embodiments of this application;

[0029] Figure 6 This is a three-dimensional structural diagram of the cover provided in an embodiment of this application.

[0030] The following are the labeling elements in the figure:

[0031] 10. Platform frame; 11. Main frame; 111. Material dropping area; 112. Bearing end face; 12. Column; 13. Material dropping plate assembly; 131. Material dropping inclined plate; 14. Guide plate assembly; 141. Guide plate;

[0032] 20. Limiting assembly; 21. Limiting component;

[0033] 30. Support mechanism; 31. Support frame; 311. Insertion hole; 32. Support toothed plate; 332. Insertion end; 33. Clamping plate; 331. Slot; 34. Pressure plate;

[0034] 40. Insulation layer;

[0035] 50. Support plate;

[0036] 60. Covering; 61. Seam. Detailed Implementation

[0037] To make the technical problems, technical solutions, and beneficial effects to be solved by this application clearer, the following detailed description is provided in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and are not intended to limit the scope of this application.

[0038] It should be noted that when a component is referred to as being "fixed to" or "set on" another component, it can be directly on or indirectly on that other component. When a component is referred to as being "connected to" another component, it can be directly connected to or indirectly connected to that other component.

[0039] It should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0040] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, "multiple" means two or more, unless otherwise explicitly specified.

[0041] Please see Figure 1The laser cutting platform provided in the embodiments of this application will now be described. The laser cutting platform provided in the embodiments of this application includes a platform frame 10, a limiting component 20, and a support mechanism 30.

[0042] Reference Figure 1 The platform frame 10 has a vertically continuous unloading area 111 and a bearing end face 112 surrounding the unloading area 111. The platform frame is the basic structure of the entire laser cutting platform, providing a stable support and bearing foundation for the entire cutting operation.

[0043] Reference Figure 2 and Figure 3 The material discharge area 111 is a section running vertically through the platform frame 10. Its function is to allow waste materials generated during the cutting process or cut workpieces to fall smoothly. Small pieces of metal scrap or the final cut parts will fall through this material discharge area 111, preventing them from accumulating on the cutting platform surface and affecting subsequent cutting operations. The material discharge area 111 can be a rectangular, square, or other shaped opening, and its size will be determined according to the overall dimensions and design of the cutting platform.

[0044] The bearing end face 112 is part of the platform frame 10 and is a plane whose main purpose is to provide a support foundation for the support mechanism 30. In actual use, the material of the bearing end face 112 may be one side of an I-beam. Multiple I-beams are connected to form a rectangular frame, and the empty area in the middle is the material drop area 111. The support mechanism 30 can be placed on this rectangular frame, and in this case, one side of the I-beam (i.e., the bearing end face 112) is used.

[0045] Reference Figure 2 and Figure 3 The limiting component 20 includes a plurality of limiting members 21, each of the limiting members 21 being spaced apart around the material dropping area 111 on the bearing end face 112, and each of the limiting members 21 forming a receiving groove around the bearing end face 112, the material dropping area 111 being located within the receiving groove.

[0046] These limiting components 21 can be metal parts of various shapes. Their main function is to ensure that the support mechanism 30 on the platform is in the correct position and to prevent displacement or misalignment. The limiting components 21 can be metal blocks or metal strips. Multiple limiting components 21 cooperate to form a closed receiving groove around the material dropping area 111 on the bearing end face 112. In practical applications, the limiting components 21 can be fixed to the bearing end face 112 by welding, bolting, or other methods. The receiving groove formed by the cooperation of multiple limiting components 21 can precisely define the position of the support mechanism 30, ensuring the accuracy and stability of the entire platform. For example, the limiting component 21 can be an L-shaped metal block, fixed to the bearing end face 112 by bolts, forming a rectangular receiving groove through reasonable layout, providing a precise installation position for the subsequent support mechanism 30.

[0047] Reference Figure 1 , Figure 2 and Figure 4 The support mechanism 30 includes a support frame 31 and a plurality of support toothed plates 32. The support frame 31 can be matched and accommodated in the accommodating slot. The support toothed plates 32 are detachably disposed on the support frame 31. The support toothed plates 32 are arranged in parallel at intervals on the support frame 31.

[0048] The support mechanism 30 is mainly used to support the material to be cut, providing a stable plane for the cutting operation. The support frame 31 is a generally rectangular frame structure that can be fitted into the receiving slot formed by the limiting component 20. The shape and size of the support frame 31 must be adapted to the receiving slot to ensure accurate placement and tight fit with the limiting component 21 to prevent horizontal movement. The material of the support frame 31 needs to have sufficient strength and rigidity, such as aluminum alloy or high-strength steel (e.g., angle steel), to withstand the pressure and vibration generated during the cutting process.

[0049] The support toothed plate 32 is the part of the support mechanism 30 that directly contacts the material to be cut. Multiple support toothed plates 32 are arranged parallel to each other on the support frame 31, with the arrangement direction perpendicular to the length of the support toothed plate 32. This arrangement provides uniform support force. The support toothed plate 32 can be a long strip of metal plate with one edge configured as a toothed structure. The toothed structure on the support toothed plate 32 consists of a series of protruding tooth tips, which are typically distributed on the surface of the support toothed plate 32 at a certain spacing and arrangement. In terms of shape, they can be triangular, trapezoidal, or other shapes, the purpose of which is to contact the material to be cut through the tooth tips.

[0050] Reference Figure 4 and Figure 5The support toothed plate 32 can be a steel plate with a serrated structure, which is detachably installed on the support frame 31 by bolts or slots. When a support toothed plate 32 is worn or damaged, it can be easily removed and replaced without replacing the entire support mechanism 30, thus improving maintenance convenience and the service life of the platform. Moreover, the number and arrangement of the support toothed plates 32 can be flexibly adjusted according to different cutting needs. For example, when cutting larger materials, the number of support toothed plates 32 can be increased or the spacing between them can be adjusted to accommodate a larger bearing area and different bearing requirements.

[0051] With the above structure, the platform frame 10, limiting component 20, support frame, and support toothed plate 32 can be transported separately, making handling and transfer easier. During assembly, the platform frame 10 is fixed to the floor, the limiting component 21 of the positioning component is fixed to the platform frame 10, and the support mechanism 30, after pre-assembly, is hoisted and placed in the receiving slot formed by the limiting component 21 on the platform frame 10, where the limiting component 21 limits the horizontal direction of the support mechanism 30. During cutting, the workpiece to be cut is placed on the support structure composed of the tips of multiple support toothed plates 32.

[0052] Reference Figure 2 and Figure 3 The platform frame 10 includes a main frame 11 and multiple columns 12.

[0053] The main frame 11 is rectangular, the material dropping area 111 is located inside the main frame 11, the upper end face of the main frame 11 is the bearing end face 112, and the limiting member 21 is fixed to the outer edge of the main frame 11.

[0054] The main frame 11 is rectangular, providing the basic outline and spatial range for the entire platform. The material drop area 111 is located within the main frame 11, meaning it is contained within the space defined by the main frame 11. The upper surface of the main frame 11 is defined as the load-bearing end face 112, which is an important load-bearing plane that supports the entire support mechanism 30.

[0055] Reference Figure 2 and Figure 3Multiple limiting members 21 are distributed along the outer edge of the main frame 11 and connected to the main frame 11 by welding, bolting, or other fixing methods. The function of these limiting members 21 is to form receiving slots around the blanking area 111 to receive and position the support frame 31 in the support mechanism 30. For example, these sheet-like limiting members 21 can be metal sheets with a thickness of 10 mm. They are arranged along the four sides of the main frame 11 to form a relatively closed receiving slot, so that the support frame 31 can be tightly embedded therein, preventing the support frame 31 from moving in the horizontal direction.

[0056] Reference Figure 2 and Figure 3 One end of the column 12 is connected to the main frame 11, and the other end extends downward beyond the bottom surface of the main frame 11 and is supported on the floor. The columns 12 are spaced apart from each other.

[0057] The main function of the column 12 is to lift the main frame 11 off the ground to a suitable working height, facilitating operation by personnel and transportation of materials. The connection between the column 12 and the main frame 11 can be a rigid connection, such as by welding or high-strength bolts, to ensure the strength of the connection.

[0058] The column 12 extends downwards and beyond the bottom surface of the main frame 11. This design gives the platform sufficient height above the ground, making it easy to install auxiliary equipment such as waste collection vehicles and transmission mechanisms below the platform.

[0059] The columns 12 are spaced apart from each other to evenly distribute the weight and load across the entire platform. The number and spacing of the columns 12 are typically designed based on the dimensions of the main frame 11 and the expected weight it will bear.

[0060] The main frame 11, limiting member 21, and column 12 in the platform frame 10 work together to form a stable basic structure. The main frame 11 provides the main space and bearing surface for load-bearing and cutting operations, the limiting member 21 ensures the accurate positioning of the support mechanism 30, and the column 12 provides stable support for the entire platform, raising it to a suitable height and distributing the load. This structural design enables the laser cutting platform to maintain good performance under different working conditions, ensuring the accuracy, stability, and reliability of the cutting operation. At the same time, the maintainability and adjustability of each component are also reflected in this structure. For example, when it is necessary to replace or repair the limiting member 21, it can be easily operated from the outer edge of the main frame 11; when it is necessary to move or rearrange the platform as a whole, the height and position of the platform can be adjusted by operating the column 12.

[0061] Reference Figure 2 and Figure 3The platform frame 10 also includes a material drop plate assembly 13 and a guide plate assembly 14.

[0062] The material dropping plate assembly 13 includes two material dropping inclined plates 131, which are respectively located on both sides of the material dropping area 111. The upper end of the material dropping inclined plates 131 is connected to the main frame 11, and the distance between the two material dropping inclined plates 131 gradually decreases from top to bottom.

[0063] The discharge area 111 is designed to facilitate the smooth discharge of waste generated during the cutting process, while the discharge ramp 131 is a structure that guides and optimizes the waste discharge path. The upper end of the discharge ramp 131 can be fixed to the main frame 11 by welding or bolting, ensuring structural stability. The connection point between the upper end of the discharge ramp 131 and the main frame 11 is typically at a corresponding height on the main frame 11, ensuring that they can receive the waste generated from cutting on the bearing end face 112 and guide it downwards. This connection method allows the discharge ramp 131 to function effectively, guiding the waste to the appropriate location.

[0064] The distance between the two discharge ramps 131 gradually decreases from top to bottom. When the cutting waste falls from the discharge area 111, it will slide down the discharge ramps 131 due to gravity. As the distance between the discharge ramps 131 gradually decreases, the waste will be concentrated and guided to avoid scattering.

[0065] Reference Figure 3 The guide plate assembly 14 includes two guide plates 141. The guide plates 141 are located at the bottom of the main frame 11. The guide plates 141 are perpendicular to the horizontal plane and extend to both ends of the main frame 11. The two guide plates 141 are located on both sides of the material dropping area 111. The lower end of the material dropping inclined plate 131 is mounted on the guide plates 141.

[0066] Two guide plates 141 are disposed at the bottom of the main frame 11 and are perpendicular to the horizontal plane, extending to both ends of the main frame 11. This design, perpendicular to the horizontal plane, allows the guide plates 141 to provide precise guidance for the movement of the waste collection vehicle. For example, the guide plates 141 can be metal plates of a certain thickness and strength, which are firmly connected to the bottom of the main frame 11 and are long enough to cover the length of the main frame 11, ensuring that the waste collection vehicle is properly guided throughout its movement.

[0067] Reference Figure 3 The two guide plates 141 are located on both sides of the material drop area 111, which makes them exactly below the waste drop path, and their positions match the lower end of the material drop ramp 131, providing a precise docking position for the waste collection vehicle.

[0068] When the waste collection vehicle drives into the bottom of the main frame 11 to collect waste, the guide plates 141 on both sides act like tracks, guiding the waste collection vehicle to the appropriate position accurately. This ensures that the waste collection vehicle can be precisely aligned with the bottom of the dropping area 111, allowing the waste to fall smoothly from the dropping ramp 131 into the waste collection vehicle.

[0069] Reference Figure 2 The laser cutting platform also includes a heat insulation layer 40. The lower end of the material dropping inclined plate 131 is bent into a C shape. The heat insulation layer 40 is laid on the material dropping inclined plate 131, and the lower end of the heat insulation layer 40 is held by the bent lower end of the material dropping inclined plate 131.

[0070] The heat insulation layer 40 is laid on the unloading ramp 131 to reduce the heat generated during laser cutting through the unloading ramp 131. Since laser cutting generates a large amount of heat, which may affect the structural components of the platform and the surrounding environment, the installation of the heat insulation layer 40 is very important.

[0071] The lower end of the material drop plate 131 is bent into a C shape, and the lower end of the insulation layer 40 is held by the bent lower end of the material drop plate 131. This installation method ensures the stability of the insulation layer 40 on the material drop plate 131, so that it will not easily slip or shift, and can effectively perform the function of heat insulation.

[0072] Reference Figure 2 The heat insulation layer 40 is made of refractory brick. Refractory brick is a material with excellent heat insulation properties. Made of special refractory materials, it can withstand high temperatures without damage and has low thermal conductivity, effectively preventing heat transfer. When the heat generated by laser cutting is transferred to the feed ramp 131, the heat insulation layer 40 made of refractory brick blocks most of the heat, preventing further downward conduction and thus protecting other components of the platform and the surrounding environment.

[0073] Reference Figure 3 The platform frame 10 also includes a plurality of support pads 50, each of which is spaced apart on the bearing end face 112, and the support frame 31 presses on the support pads 50.

[0074] The spaced support plates 50 are distributed on a plane, sharing the weight from above, but not so densely packed that they would affect the installation and use of other components.

[0075] When the support frame 31 is placed on the support pad 50, the support pad 50 provides support for the support frame 31. The support pad 50 can bear the weight of the support frame 31 and distribute the weight of the support frame 31 onto the bearing end face 112, ensuring the stability of the support frame 31. For example, imagine the support frame 31 as a large flat plate structure that needs to be stably placed on the bearing end face 112 to function, and the support pad 50 acts like multiple support points, enabling the support frame 31 to remain horizontal and stable.

[0076] The presence of the support plate 50 allows for adjustment of the position and height of the support frame 31, ensuring that the support frame 31 is in a suitable position for better cooperation with other components.

[0077] Reference Figure 4 and Figure 5 The support mechanism 30 also includes multiple clamping plates 33 and pressure plates 34. The support frame 31 is rectangular. The clamping plates 33 are disposed inside the support frame 31 and perpendicular to the support toothed plate 32. Each clamping plate 33 is arranged at intervals along the length direction of the support toothed plate 32. The clamping plate 33 is provided with a slot 331 on which the support toothed plate 32 can be inserted.

[0078] The clamping plates 33 in the support mechanism 30 are disposed within the support frame 31 and are perpendicular to the support toothed plates 32. The clamping plates 33 are arranged sequentially at intervals along the length of the support toothed plates 32, that is, the clamping plates 33 and the support toothed plates 32 are perpendicular to each other and arranged in a grid pattern. The multiple clamping plates 33 work together to support and position the multiple support toothed plates 32.

[0079] Reference Figure 4 and Figure 5 The clamping plate 33 has a slot 331 into which the support toothed plate 32 can be inserted. This slot 331 is an important structural detail. When the support toothed plate 32 is installed, it can be inserted into the slot 331, so that the support toothed plate 32 is precisely positioned in the direction perpendicular to its length. The size and shape of the slot 331 are designed according to the shape and size of the support toothed plate 32 to ensure a good fit between the two. It is neither too loose, which would cause the support toothed plate 32 to wobble, nor too tight, which would affect the installation and removal of the support toothed plate 32.

[0080] Reference Figure 4 and Figure 5 The support frame 31 has an insertion hole 311 at one end perpendicular to the length direction of the support tooth plate 32, and the support tooth plate 32 has an insertion end 332 at one end that can be inserted into the insertion hole 311. The pressure plate 34 is detachably provided at the other end of the support frame 31 and presses the end of the support tooth plate 32 away from the insertion end 332 against the clamping plate 33.

[0081] The support frame 31 has a socket 311 at one end perpendicular to the length of the support toothed plate 32, while the support toothed plate 32 has an insertion end 332 at one end that can be inserted into the socket 311. By inserting the insertion end 332 of the support toothed plate 32 into the socket 311 of the support frame 31, one end of the support toothed plate 32 is fixed on the support frame 31. This connection method provides a relatively firm starting fixing point for the support toothed plate 32, ensuring that the support toothed plate 32 will not move in one direction.

[0082] The pressure plate 34 is detachably mounted on the other end of the support frame 31. Its main function is to press the end of the support toothed plate 32 away from the insertion end 332 against the clamping plate 33. When one end of the support toothed plate 32 is inserted into the insertion hole 311 through the insertion end 332, the other end needs to be pressed by the pressure plate 34, thus achieving complete fixation of the support toothed plate 32. The pressure plate 34 presses the support toothed plate 32 tightly against the clamping plate 33 through its pressure, so that the support toothed plate 32 will not loosen or move in the length direction.

[0083] The pressure plate 34 can be detachably installed on the support frame 31 by bolts, clips or other connection methods. When it is necessary to adjust, replace or repair the support toothed plate 32, the pressure plate 34 can be easily removed and the support toothed plate 32 can be taken out of the support frame 31 or operated.

[0084] Reference Figure 2 and Figure 3 The platform frame 10 has two material dropping areas 111, which are arranged sequentially along the length of the support toothed plate 32. The limiting component 20 and the support mechanism 30 are provided in two sets and correspond one-to-one with the material dropping areas 111.

[0085] The platform frame 10 has two material dropping areas 111, and these two material dropping areas 111 are arranged sequentially along the length of the support toothed plate 32. This layout can adapt to the cutting needs of a wider area.

[0086] Since there are two material dropping areas 111, correspondingly, two sets of limiting components 20 and support mechanisms 30 are also provided, each corresponding to one of the material dropping areas 111. That is, each material dropping area 111 has its own matching limiting component 20 and support mechanism 30. The limiting component 20 is used to position and constrain the support mechanism 30, while the support mechanism 30 is used to support the material to be cut. This one-to-one correspondence ensures that each material dropping area 111 has the corresponding structure to ensure the normal operation of the cutting process.

[0087] Reference Figure 1 and Figure 6The laser cutting platform in this embodiment of the application also includes a cover 60. The cross-section of the cover 60 is inverted V-shaped. The length of the cover 60 is perpendicular to the length of the support tooth plate 32. The cover 60 is located between the two material dropping areas 111. The lower ends of the two sides of the cover cover one end of the support tooth plate 32 on both sides, and the lower edges of the two sides of the cover 60 are provided with a plurality of slots 61 for each support tooth plate 32 to be inserted.

[0088] The cover 60 has an inverted V-shaped cross-section, which gives it a certain slope and angle. The length of the cover 60 is perpendicular to the length of the support toothed plate 32 and to the arrangement direction of the support toothed plate 32. This arrangement is designed to cover the space between the two material drop zones 111, preventing waste from falling into this space and requiring additional cleaning.

[0089] The lower edges of both sides of the cover 60 are provided with multiple slots 61 for inserting the support toothed plates 32. When the support toothed plates 32 are inserted into the slots 61, on the one hand, the position of the support toothed plates 32 can be further fixed to prevent displacement or shaking at the ends, thus enhancing the stability of the support toothed plates 32; on the other hand, the slots 61 can make the connection between the cover 60 and the support toothed plates 32 tighter, forming an organic whole to jointly cope with various external forces and vibrations during the cutting process. For example, during the cutting process, the vibration generated by cutting may cause slight displacement of the support toothed plates 32, and the slots 61 can tightly bind the support toothed plates 32 to the cover 60, making them more stable and improving the structural stability of the entire platform.

[0090] This application also provides a laser cutting device, including a laser cutting apparatus and a laser cutting platform as described above, wherein the laser cutting apparatus is used to cut a workpiece located on the laser cutting platform.

[0091] The laser cutting equipment of this application embodiment includes the laser cutting platform in any of the above embodiments, and therefore has the beneficial effects brought by the laser cutting platform in any of the above embodiments, which will not be repeated here.

[0092] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A laser cutting platform, characterized in that, include: The platform frame has a vertically connected unloading area and a bearing end face surrounding the unloading area; A limiting assembly includes multiple limiting members, each of which is spaced apart and arranged around the material discharge area on the bearing end face. Each limiting member forms a receiving groove around the bearing end face, and the material discharge area is located within the receiving groove. The support mechanism includes a support frame and a plurality of support toothed plates. The support frame is accommodatingly received in the receiving slot, and the support toothed plates are detachably disposed on the support frame. The support toothed plates are arranged in parallel at intervals on the support frame.

2. The laser cutting platform according to claim 1, characterized in that, The platform rack includes: The main frame is rectangular, the material dropping area is located inside the main frame, the upper end face of the main frame is the bearing end face, and the limiting member is fixed to the outer edge of the main frame; Multiple columns, one end of which is connected to the main frame, and the other end extends downward beyond the bottom surface of the main frame and is supported on the floor, with each column spaced apart from the others.

3. The laser cutting platform according to claim 2, characterized in that, The platform rack also includes: The material discharge plate assembly includes two material discharge ramps, which are respectively located on both sides of the material discharge area. The upper ends of the material discharge ramps are connected to the main frame, and the distance between the two material discharge ramps gradually decreases from top to bottom. The guide plate assembly includes two guide plates, which are located at the bottom of the main frame. The guide plates are perpendicular to the horizontal plane and extend to both ends of the main frame. The two guide plates are located on both sides of the material dropping area. The lower end of the material dropping inclined plate is mounted on the guide plates.

4. The laser cutting platform according to claim 3, characterized in that, The laser cutting platform also includes a heat insulation layer. The lower end of the material dropping sloping plate is bent into a C-shape. The heat insulation layer is laid on the material dropping sloping plate, and the lower end of the heat insulation layer is held by the lower end of the bent material dropping sloping plate.

5. The laser cutting platform according to claim 4, characterized in that, The insulation layer is made of refractory bricks.

6. The laser cutting platform according to claim 2, characterized in that, The platform frame also includes multiple support pads, each of which is spaced apart on the bearing end face, and the support frame presses against the support pads.

7. The laser cutting platform according to claim 1, characterized in that, The support mechanism also includes multiple clamping plates and pressure plates. The support frame is rectangular. The clamping plates are disposed inside the support frame and perpendicular to the support toothed plate. Each clamping plate is arranged at intervals along the length direction of the support toothed plate. The clamping plate is provided with a slot for the support toothed plate to be inserted. The support frame has an insertion hole at one end perpendicular to the length direction of the support toothed plate, and the support toothed plate has an insertion end at one end that can be inserted into the insertion hole. The pressure plate is detachably provided at the other end of the support frame and presses the end of the support toothed plate away from the insertion end against the clamping plate.

8. The laser cutting platform according to claim 1, characterized in that, The platform frame has two material dropping areas, which are arranged sequentially along the length of the support toothed plate. The limiting component and the support mechanism are provided in two sets and correspond one-to-one with the material dropping areas.

9. The laser cutting platform according to claim 8, characterized in that, It also includes a cover, the cross-section of which is inverted V-shaped, the length of which is perpendicular to the length of which is the support tooth plate, the cover is located between the two material dropping areas, the lower ends of the two sides of the cover cover one end of the support tooth plate on each side respectively, and the lower edges of the two sides of the cover are provided with a plurality of slots for each of the support tooth plates to be inserted.

10. A laser cutting device, characterized in that, It includes a laser cutting device and a laser cutting platform as described in any one of claims 1 to 9, wherein the laser cutting device is used to cut a workpiece located on the laser cutting platform.