Floor type workbench and lathe bed structure
By designing the floor-standing worktable and bed independently, cutting waste is collected and high-temperature damage is prevented, solving the problems of welding errors and debris deformation in laser cutting equipment, and achieving high-precision and stable cutting results.
Patent Information
- Application Number
- CN202423290774.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Welding errors and high-temperature debris in existing laser cutting equipment cause a decrease in cutting accuracy, while table deformation affects bed stability and reduces cutting quality.
It adopts a floor-standing workbench structure, with the workbench directly supported on the ground and independent of the bed. It is equipped with a material feeding component and guide to collect cutting waste, fireproof parts to prevent high temperature damage, and saw teeth and pressure strips that are easy to replace. The bed and workbench are designed to be separate.
It improves the precision and quality of laser cutting, and the independent worktable is easy to replace, avoiding damage to the machine bed from high-temperature debris, and ensuring processing accuracy and stability.
Smart Images

Figure CN223876324U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to laser cutting equipment technical field, concretely relates to a floor type workstation and bed body structure. BACKGROUND
[0002] The laser cutting machine is the commonly used equipment of sheet metal part cutting processing, has the advantages such as high cutting precision, fast speed, smooth incision, low processing cost, satisfies cutting complex figure etc. Current laser cutting equipment mostly adopts square tube and other sectional material and is formed, and bed body stability is good. But the processing error produced in the bed body welding process will influence laser cutting precision, and when the high temperature debris produced in the cutting process falls on the bed body or workstation, it will lead to the thermal deformation of bed body and workstation, further increases the laser cutting error, reduces the cutting quality. SUMMARY
[0003] The utility model discloses a floor type workstation and bed body structure, the workstation is supported on the ground, and the deformation of the workstation does not affect the precision of the bed body, so that the laser cutting quality is guaranteed.
[0004] The utility model discloses a floor type workstation, including one or more workstation module, the workstation module includes the hollow support seat, sets up on the support seat work surface, the support seat bottom is provided with a plurality of direct connection ground support leg, a plurality of workstation module is arranged, and the adjacent two workstation module is provided with blanking assembly, and the blanking assembly includes the blanking support that sets up respectively on two support seats, and the blanking support sets up below the work surface.
[0005] The utility model discloses a floor type workstation, including one or more workstation module, the workstation module includes the hollow support seat, sets up on the support seat work surface, the support seat bottom is provided with a plurality of direct connection ground support leg, a plurality of workstation module is arranged, and the adjacent two workstation module is provided with blanking assembly, and the blanking assembly includes the blanking support that sets up respectively on two support seats, and the blanking support sets up below the work surface.
[0006] The utility model discloses a floor type workstation, including one or more workstation module, the workstation module includes the hollow support seat, sets up on the support seat work surface, the support seat bottom is provided with a plurality of direct connection ground support leg, a plurality of workstation module is arranged, and the adjacent two workstation module is provided with blanking assembly, and the blanking assembly includes the blanking support that sets up respectively on two support seats, and the blanking support sets up below the work surface.
[0007] The utility model discloses a floor type workstation, including one or more workstation module, the workstation module includes the hollow support seat, sets up on the support seat work surface, the support seat bottom is provided with a plurality of direct connection ground support leg, a plurality of workstation module is arranged, and the adjacent two workstation module is provided with blanking assembly, and the blanking assembly includes the blanking support that sets up respectively on two support seats, and the blanking support sets up below the work surface.
[0008] The utility model provides a bed body structure, including floor type workstation, two opposite setting side beam, and the end beam of setting in the side beam both ends, a plurality of intermediate beams are arranged at the interval between two end beams, the working area for accommodating floor type workstation is arranged between two adjacent intermediate beams.
[0009] The utility model more preferably technical scheme: the intermediate beam top is provided with the guide piece, the guide piece is inverted V type, the guide piece is provided with the fire prevention spare, the guide piece both sides are provided with the positioning plate for placing the fire prevention spare slide.
[0010] The utility model more preferably technical scheme: along the workstation module arrangement direction, the support base both ends are provided with the baffle, the baffle is close to the intermediate beam, the baffle upper end is provided with the upper guide plate inclined to the guide piece, the baffle lower end is provided with the lower guide plate inclined to the support base middle part.
[0011] The utility model more preferably technical scheme: the upper guide plate is connected the guide piece.
[0012] The utility model more preferably technical scheme: the side beam top is provided with the slide rail and slide platform that can set up the movement of laser equipment.
[0013] The utility model discloses a floor type workstation and bed body structure have following beneficial effects:
[0014] 1, the workstation is directly supported on the ground, and the workstation and the bed body are independent of each other, and the deformation of the workstation under stress or heat does not affect the bed body structure, so that the influence of the deformation of the workstation on the precision of the bed body can be reduced, and the laser processing precision is guaranteed, and simultaneously, the workstation is independently arranged, so that the workstation is convenient to replace.
[0015] 2, the support base of the workstation is a hollow structure, the blanking trolley is arranged in the support base, the blanking assembly is arranged between the workstation modules, the guide piece is arranged between the workstations, the waste generated in the laser cutting process is collected in the blanking trolley through the blanking assembly and the guide piece, and the fire prevention spare is arranged on the blanking assembly and the guide piece, so that the workstation is prevented from being damaged by high temperature in the cutting process. DRAWINGS
[0016] The accompanying drawings incorporated in and forming a part of the specification, illustrate embodiments of the application and, together with the description, serve to explain the principles of the application. In the drawings, like reference numerals are used to indicate like elements throughout. The accompanying drawings are of some embodiments of the application and are not all the embodiments. Other drawings can be derived from these drawings by a person of ordinary skill in the art without paying creative effort.
[0017] Figure 1The embodiment of the utility model is a cooperation schematic view of floor type workbench and bed body mechanism.
[0018] Figure 2 The embodiment of the utility model is a structure schematic view of floor type workbench and workbench module.
[0019] Figure 3 The embodiment of the utility model is a side view of floor type workbench and workbench module.
[0020] Figure 4 The embodiment of the utility model is a structure schematic view of floor type workbench and workbench module from another perspective.
[0021] Figure 5 The embodiment of the utility model is a cooperation schematic view of two floor type workbenches and middle beam.
[0022] In the drawing: 10, bed body structure; 11, side beam; 12, end beam; 13, middle beam; 14, guide piece; 141, positioning plate; 20, floor type workbench; 21, workbench module; 22, support seat; 23, work surface; 231, sawtooth strip; 232, support strip; 233, pressing strip; 234, mounting beam; 24, support foot; 25, blanking assembly; 251, blanking support; 252, limiting plate; 26, partition plate; 261, upper guide plate; 262, lower guide plate; 27, fireproof piece. DETAILED DESCRIPTION
[0023] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model more clear, the technical scheme in the embodiment of the utility model will be described clearly and completely below in combination with the drawings in the embodiment of the utility model. Obviously, the described embodiment is a part of the embodiment of the utility model, not all the embodiments. Based on the embodiment in the utility model, all other embodiments obtained by the person skilled in the art without making creative labor belong to the protection scope of the utility model. It should be noted that, in the case of no conflict, the embodiment in the application and the features in the embodiment can be combined with each other at will.
[0024] Please refer to Figures 2 to 4 A floor type workbench 20 comprises a workbench module 21 (such as Figure 2 Left structure, Figure 3 Left structure, Figure 4 Left structure shows) or multiple (such as Figure 2 Right structure, Figure 3 Right structure, Figure 4The right structure shows a workbench module 21, which includes a support base 22 and a work surface 23 arranged on the support base 22 to support the material to be cut. The bottom of the support base 22 is provided with support feet 24, and the workbench module 21 is directly arranged on the ground through the support feet 24 to provide stable support for the floor type workbench 20.
[0025] The plurality of workbench modules 21 are aligned and arranged, and a material falling assembly 25 is arranged between the two adjacent workbench modules 21. The material falling assembly 25 includes a material falling support 251 and a fireproof piece 27. The material falling support 251 is used to support the fireproof piece 27. The falling material generated after processing on the workbench module 21 falls through the fireproof piece 27 and is collected to avoid damage to the bed body or the ground caused by high-temperature falling material.
[0026] In this application, the support base 22 is a hollow mechanism including a plurality of pipe fittings connected by tailor welding. The work surface 23 is arranged on the top of the support base 22, and a material falling vehicle (not shown in the figure) for collecting falling material is arranged below the work surface 23. The material falling vehicle is located inside the support base 22 to improve the space utilization.
[0027] The work surface 23 includes a plurality of regularly arranged sawtooth strips 231 and support strips 232 arranged on the support base 22. The support strips 232 are positioned by clamping with the sawtooth strips 231. The support strips 232 are perpendicular to the sawtooth strips 231 and are located below the sawtooth strips 231 to provide support for the sawtooth strips 231. The top of the support base 22 is provided with mounting beams 234 on both sides. The ends of the sawtooth strips 231 are provided with pressing strips 233 arranged above the sawtooth strips 231. The pressing strips 233 are detachably connected with the mounting beams 234 to facilitate the replacement of damaged sawtooth strips 231 during processing.
[0028] When the floor type workbench 20 includes a plurality of workbench modules 21, the plurality of workbench modules 21 are aligned and arranged, and a material falling assembly 25 is arranged between the two adjacent workbench modules 21. The material falling assembly 25 includes a material falling support 251 and a fireproof piece 27. The material falling assembly 25 is arranged below the work surface 23. The material falling support 251 is in the shape of a long plate and is fixedly arranged on the support base 22. The material falling support 251 is arranged obliquely, with its upper end facing the outside of the support base 22 and its lower end facing the inside of the support base. The two material falling supports 251 are symmetrically arranged on the two support bases 22, so that the two material falling supports 251 are in the shape of an inverted V and are located between the two workbench modules 21.
[0029] The material falling vehicle is arranged one-to-one with the workbench module 21. When a plurality of workbench modules 21 are arranged, there is a gap between the two adjacent workbench modules 21, and no material falling vehicle is arranged below. The material falling assembly 25 can guide the falling material between the workbench modules 21 into the material falling vehicles below the two workbench modules 21 through the two material falling supports 251, thereby avoiding damage to the support base 22 or the ground caused by the direct falling of high-temperature falling material.
[0030] Preferably, to avoid damage to the blanking support 251, a fireproof piece 27 is arranged on the blanking support 251, and a limiting plate 252 is arranged at the lower end of the blanking support 251, which is perpendicular to the blanking support 251 to support the fireproof piece 27 and prevent the fireproof piece 27 from sliding down along the inclined blanking support 251. In this application, the fireproof piece 27 is a fireproof brick.
[0031] Please refer to Figure 1 and Figure 5 A bed structure 10 includes two oppositely arranged side beams 11, end beams 12 arranged at the two ends of the side beams 11, and a plurality of intermediate beams 13 arranged at intervals between the two end beams. The area between two adjacent intermediate beams 13 is a working area, and a floor type workbench 20 is arranged in the working area. The number of workbench modules 21 included in the floor type workbench 20 is determined according to the size of the working area. Slides and slide tables are arranged on the two side beams 11, and a laser device is arranged on the slide table. The slide table moves along the slide, and the laser device performs laser cutting on the material to be processed on the floor type workbench 20.
[0032] A guide 14 is arranged above the intermediate beam 13. The guide 14 is arranged in an inverted V shape below the working surface 23, with its top end located between the two floor type workbenches 20 and its two sides respectively facing the middle of the two floor type workbenches 20, so as to guide the processed blanking material into the blanking car. A fireproof piece 27 is arranged on the guide 14 to prevent high-temperature blanking material from damaging the guide 14. Positioning plates 141 are arranged at the lower ends of the two sides of the guide 14 to prevent the fireproof piece 27 from sliding down the guide 14.
[0033] Preferably, along the arrangement direction of the workbench modules 21, the support seat 22 is provided with a partition plate 26 at both ends. The partition plate 26 is arranged vertically, with an upper guide plate 261 inclined towards the guide 14 arranged at its upper end and a lower guide plate 262 inclined towards the interior of the support seat 22 arranged at its lower end. The upper guide plate 261 is located below the guide 14, and the lower guide plate 262 is located above the blanking car. During processing, the processed blanking material between the two floor type workbenches 20 is guided into the blanking cars on both sides through the guide 14. The upper guide plate 261 is arranged below the guide 14 to prevent leakage when the blanking material is transferred from the guide 14, and the lower guide plate 262 is arranged in the middle of the blanking car to ensure that the blanking material completely enters the blanking car, avoiding damage to the ground by high-temperature blanking material.
[0034] Preferably, the upper guide plate 261 and the guide 14 are positioned by bolt connection to prevent relative displacement between the floor type workbench 20 and the bed structure 10 caused by processing vibration, resulting in leakage of blanking material.
[0035] In the application, the floor type workbench 20 and the bed body structure 10 are independent of each other, and there is no direct force relationship between the workbench and the bed body. When the floor type workbench 20 is deformed due to high temperature or machining stress, the bed body structure 10 is not affected by the floor type workbench 20, ensuring the machining precision; and when the floor type workbench 20 is damaged, the floor type workbench 20 or the sawtooth strip 231 can be replaced as a whole, without affecting the bed body structure 10, and the operation is simple and fast.
[0036] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the present application, and not to limit them. Although the present application has been described in detail with reference to the foregoing examples, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing examples, or make equivalent replacement for part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A floor stand, characterized in that Including one or more workbench modules (21), the workbench module (21) includes a hollow support seat (22), a work surface (23) provided on the support seat (22), the bottom of the support seat (22) is provided with a plurality of support feet (24) directly connected to the ground; A plurality of workbench modules (21) are arranged, and a blanking assembly (25) is arranged between two adjacent workbench modules (21), the blanking assembly (25) includes blanking supports (251) arranged on two support seats (22) respectively, and the blanking supports (251) are arranged below the work surface (23).
2. A floor stand as claimed in claim 1, characterized in that Two blanking supports (251) are symmetrically arranged on two support seats (22) respectively, the lower end of the blanking support (251) is inclined towards the middle part of the support seat (22), and a blanking trolley is arranged below the work surface (23), and the blanking trolley is located in the support seat (22).
3. A floor stand as claimed in claim 2, characterized in that A fireproof piece (27) is arranged on the blanking support (251), and a limiting plate (252) is arranged at the lower end of the blanking support (251) to place the fireproof piece (27) from sliding.
4. A floor stand worktable according to claim 1, wherein The top of the two sides of the support seat (22) is provided with a mounting beam (234), the work surface (23) includes a plurality of aligned sawtooth strips (231) and pressing strips (233), the pressing strips (233) are arranged at both ends of the sawtooth strips (231), and the pressing strips (233) are detachably connected with the mounting beam (234).
5. A bed structure, characterized by The floor type workbench (20) includes two oppositely arranged side beams (11), and end beams (12) arranged at both ends of the side beams (11), a plurality of intermediate beams (13) are arranged at intervals between two end beams (12), and a working area for accommodating the floor type workbench (20) is arranged between two adjacent intermediate beams (13).
6. The bed structure of claim 5 wherein, A guide piece (14) is arranged above the intermediate beam (13), the guide piece (14) is inverted V-shaped, a fireproof piece (27) is arranged on the guide piece (14), and positioning plates (141) for placing the fireproof piece (27) from sliding are arranged on both sides of the guide piece (14).
7. The bed structure of claim 6 wherein, Along the arrangement direction of the workbench module (21), the support seat (22) is provided with a partition plate (26) at both ends, the partition plate (26) is close to the intermediate beam (13), an upper guide plate (261) inclined towards the guide piece (14) is arranged at the upper end of the partition plate (26), and a lower guide plate (262) inclined towards the middle part of the support seat (22) is arranged at the lower end of the partition plate (26).
8. The bed structure of claim 7 wherein, The upper guide plate (261) is connected with the guide piece (14).
9. The bed structure of claim 5 wherein, The top of the side beam (11) is provided with a sliding rail and a sliding table for arranging and moving a laser device.