Intelligent machining platform for steel-wood table

By integrating cutting and polishing units into the steel-wood table processing platform, simultaneous cutting and polishing of steel-wood tabletop panels is achieved, solving the problem of the lack of polishing process in existing technologies and improving processing efficiency and forming quality.

CN224129320UActive Publication Date: 2026-04-17ZHANG ZHOU DONGRONG IND & TRADING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHANG ZHOU DONGRONG IND & TRADING CO LTD
Filing Date
2025-04-29
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

The existing steel and wood table processing equipment lacks a polishing process, which affects the quality of the tabletop forming.

Method used

Design an intelligent processing platform for steel and wooden tables, integrating a cutting unit and a grinding unit. The cutting tabletop material is transported to the grinding frame for simultaneous cutting and grinding via a feeding unit.

Benefits of technology

It improves the processing efficiency and forming quality of steel-wood tabletop panels.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN224129320U_ABST
    Figure CN224129320U_ABST
Patent Text Reader

Abstract

The utility model discloses a steel wood table intelligent processing platform which comprises a machine table, the machine table is provided with a cutting unit, the discharging end of the cutting unit is fixedly provided with a polishing frame, the machine table is provided with a feeding unit between the cutting unit and the polishing frame, the polishing frame is further provided with an upper polishing frame, and the upper polishing frame is provided with a lower polishing frame. Matched adjusting rods are arranged at the four top corners of the grinding frame and the four top corners of the upper grinding frame, and the adjusting rods are in threaded connection with the upper grinding frame. The grinding frame and the upper grinding frame are provided with matched grinding areas, a plurality of main grinding rollers are evenly arranged on the grinding frame in the discharging direction, a plurality of auxiliary grinding rollers are evenly arranged on the upper grinding frame in the discharging direction, and the grinding frame is further provided with a driving device for driving the main grinding rollers to rotate. By arranging the cutting unit and the polishing unit, the table top plate of the steel-wood table can be integrally cut and polished in the scheme of the invention, and the machining efficiency and the forming quality of the table top plate can be effectively improved.
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Description

Technical Field

[0001] This utility model relates to the field of steel table technology, and in particular to an intelligent processing platform for steel tables. Background Technology

[0002] Steel-wood tables are a type of steel-wood furniture, made by using wood as the substrate for the tabletop and steel as the frame. Patent application CN202110040146.9 discloses a highly CNC-controlled forming equipment for steel-wood furniture, which integrates tabletop cutting, conveying, welding, and processing, effectively improving processing efficiency. However, this solution lacks a sanding process, which significantly affects the final shape of the tabletop. Therefore, a processing platform integrating tabletop cutting and sanding is needed. Utility Model Content

[0003] In order to overcome the shortcomings of the existing technology, the technical problem to be solved by this utility model is to propose an intelligent processing platform for steel and wooden tables, which can simultaneously cut and polish the tabletop to be processed in order to ensure the final forming quality.

[0004] To achieve this objective, the present invention adopts the following technical solution:

[0005] This utility model provides an intelligent processing platform for steel and wood tables, including a machine base. The machine base is equipped with a cutting unit, and a grinding frame is fixedly mounted on the discharge end of the cutting unit. A feeding unit is arranged between the cutting unit and the grinding frame on the machine base. A controller is also provided on the machine base. During processing, the feeding unit conveys the cut tabletop material to the grinding frame. An upper grinding frame is also provided on the grinding frame. The four apex corners of the grinding frame and the upper grinding frame are equipped with matching adjusting rods. The axis of the adjusting rod is perpendicular to the grinding frame, and the bottom end of the adjusting rod is connected to the upper grinding frame. The grinding frame is rotatably connected, and the adjusting rod is threadedly connected to the upper grinding frame. The grinding frame and the upper grinding frame are provided with matching grinding areas. The grinding frame is evenly provided with several main grinding rollers along the discharge direction, and the upper grinding frame is evenly provided with several auxiliary grinding rollers along the discharge direction. The grinding frame is also provided with a drive device to drive the main grinding rollers to rotate. The discharge end of the grinding frame is also provided with a telescopic rod for blocking the material. During grinding, the telescopic rod rises to block the discharge of the tabletop material. The drive device is one of a drive motor, a belt drive mechanism, or a toothed belt transmission mechanism.

[0006] During cutting, the cutting unit includes a cutting mechanism and a reciprocating mechanism that drives the cutting mechanism to cut the desktop board. The reciprocating mechanism includes a reciprocating seat, a reciprocating belt, and a reciprocating motor. The cutting mechanism includes a cutting frame, which is slidably connected to the reciprocating seat. The reciprocating belt is fixedly connected to the cutting frame. When the reciprocating motor drives the reciprocating belt to rotate, the cutting frame reciprocates along both ends of the reciprocating seat. A cutting saw is also installed on the top of the cutting frame, and a cutting motor that drives the cutting saw to move up and down is also provided inside the cutting frame.

[0007] When the material to be cut is fed to the grinding frame, the feeding unit includes a main feeding roller and an auxiliary feeding roller. The two ends of the auxiliary feeding roller are rotatably connected to the machine base. The two ends of the main feeding roller are equipped with main feeding motors. The bottom of the main feeding motor is also equipped with an auxiliary feeding motor. The lifting direction of the auxiliary feeding motor is perpendicular to the surface of the machine base. The main feeding motor drives the main feeding roller to rotate. Limit blocks are set on the machine base near the two main feeding motors to assist feeding.

[0008] The beneficial effects of this utility model are as follows:

[0009] This invention, by setting up a cutting unit and a grinding unit, enables the tabletop material of a steel-wood table to be cut and ground in an integrated manner according to the solution of this application, which can effectively improve the processing efficiency and forming quality of the tabletop material. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of a steel-wood table intelligent processing platform structure provided in the specific implementation of corrosion prevention of this utility model;

[0011] Figure 2 This is a schematic diagram of another perspective of the intelligent processing platform for steel and wooden tables provided in the specific implementation of corrosion prevention of this utility model;

[0012] Figure 3 This is a schematic diagram of the internal structure of the machine tool provided in the specific implementation of the corrosion prevention method of this utility model;

[0013] In the picture:

[0014] 1. Machine base; 11. Limit block; 13. Controller;

[0015] 2. Cutting unit; 21. Cutting mechanism; 22. Reciprocating mechanism; 221. Reciprocating seat; 222. Reciprocating belt; 223. Reciprocating motor; 211. Cutting frame; 212. Cutting saw; 213. Cutting motor;

[0016] 3. Grinding frame; 31. Upper grinding frame; 32. Adjusting rod; 33. Grinding area; 34. Main grinding roller; 35. Auxiliary grinding roller; 36. Telescopic rod;

[0017] 4. Feeding unit; 41. Main feeding roller; 42. Auxiliary feeding roller; 43. Main feeding motor; 44. Auxiliary feeding motor. Detailed Implementation

[0018] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0019] To achieve integrated cutting and polishing of steel-wood tabletop panels, this utility model provides an intelligent processing platform for steel-wood tables, including a machine base 1. The machine base 1 is equipped with a cutting unit 2, and a polishing frame 3 is fixedly installed at the discharge end of the cutting unit 2. A feeding unit 4 is arranged between the cutting unit 2 and the polishing frame 3 on the machine base 1. During processing, the feeding unit 4 conveys the cut tabletop panel to the polishing frame 3. At the same time, a controller 13 is also provided on the machine base 1. Thus, under the control of the controller 13, the panel passes through the cutting unit 2, the feeding unit 4, and the polishing frame 3 in sequence to complete the cutting and polishing process. Accordingly, the direction from cutting to polishing is described in this application for the cutting of the tabletop panel.

[0020] First, before cutting, the tabletop material to be cut needs to be segmented according to the designed length. This requires pre-feeding one segment of the material to the grinding frame 3, and then cutting it by the cutting unit 2. Preferably, the feeding unit 4 includes a main feeding roller 41 and an auxiliary feeding roller 42. The two ends of the auxiliary feeding roller 42 are rotatably connected to the machine base 1. The two ends of the main feeding roller 41 are equipped with a main feeding motor 43. The bottom of the main feeding motor 43 is also equipped with an auxiliary feeding motor 44. The lifting direction of the auxiliary feeding motor 44 is perpendicular to the surface of the machine base 1. The main feeding motor 43 drives the main feeding roller 41 to rotate. In this way, the auxiliary feeding motor 44 can drive the main feeding roller 41 to rise and fall, so as to cooperate with the tabletop material to be cut of different thicknesses. After the main feeding roller 41 and the auxiliary feeding roller 42 are clamped, the main feeding motor 43 drives the main feeding roller 41 to rotate, thereby sending the tabletop material to be cut to the grinding frame 3.

[0021] After the tabletop material to be cut is sent to the grinding frame 3, it needs to be cut to the designed length. Specifically, the cutting unit 2 includes a cutting mechanism 21 and a reciprocating mechanism 22 that drives the cutting mechanism 21 to cut the tabletop material. The reciprocating mechanism 22 includes a reciprocating seat 221, a reciprocating belt 222, and a reciprocating motor 223. The cutting mechanism 21 includes a cutting frame 211, which is slidably connected to the reciprocating seat 221. The reciprocating belt 222 is fixedly connected to the cutting frame 211. When the reciprocating motor 223 drives the reciprocating belt 222 to rotate... The cutting frame 211 reciprocates along both ends of the reciprocating seat 221; at the same time, a cutting saw 212 is also installed on the top of the cutting frame 211, and a cutting motor 213 is also installed inside the cutting frame 211 to drive the cutting saw 212 to move up and down; in this way, after the tabletop material to be cut is placed in place, the reciprocating motor 223 rotates and drives the reciprocating belt 222 to move back and forth, and the reciprocating belt 222 drives the cutting frame 211 to move back and forth along both ends of the reciprocating seat 221, so that the cutting saw 212 on the cutting frame 211 can be used to cut the tabletop material to be cut.

[0022] After cutting, the cut tabletop material needs to be sanded. Specifically, the sanding frame 3 is equipped with an upper sanding frame 31. Adjusting rods 32 are fitted at the four corners of the sanding frame 3 and the upper sanding frame 31. The axis of the adjusting rods 32 is perpendicular to the sanding frame 3, and the bottom end of the adjusting rods 32 is rotatably connected to the sanding frame 3. The adjusting rods 32 are threadedly connected to the upper sanding frame 31. This allows for adjustment of the gap between the sanding frame 3 and the upper sanding frame 31 according to the different thicknesses of the tabletop material to be cut. Furthermore, the sanding frame 3 and the upper sanding frame 31 are equipped with mating sanding areas 33. The sanding frame 3 has several main sanding rollers 34 evenly arranged along the discharge direction, and the upper sanding frame 31 has a sanding area 33 along the discharge direction. Several auxiliary grinding rollers 35 are evenly arranged in the material direction. The grinding frame 3 and the upper grinding frame 31 are also equipped with drive devices (not shown) that drive the main grinding roller 34 and auxiliary grinding roller 35 to rotate. The drive device is one of a drive motor, a belt drive mechanism or a toothed belt transmission mechanism. The drive motor can be set separately for each main grinding roller 34 or auxiliary grinding roller 35 and controlled by the controller 13. The discharge end of the grinding frame 3 is also equipped with a telescopic rod 36 for blocking the material. During grinding, the telescopic rod 36 rises to block the tabletop board from being discharged. After grinding is completed, the telescopic rod 36, the main grinding roller 34 and the auxiliary grinding roller 35 continue to rotate to send out the ground tabletop board.

[0023] In summary, during use, the tabletop material to be cut is first placed at the feed end of the cutting unit 2. Preferably, a limit block 11 is provided on the machine base 1 near the two main feeding motors 43. At this time, the limit block 11 can be used to help push the tabletop material to be cut toward the cutting unit 2. Then, the feeding unit 4 clamps the tabletop material to be cut and continues to feed it toward the grinding frame 3. When the feeding unit 4 delivers the tabletop material to the designed length, the cutting unit 2 starts to cut the tabletop material. Finally, the tabletop material is ground by the main grinding roller 34 and the auxiliary grinding roller 35 and then sent out to complete the grinding.

[0024] This utility model has been described through preferred embodiments. Those skilled in the art will understand that various changes or equivalent substitutions can be made to these features and embodiments without departing from the spirit and scope of this utility model. This utility model is not limited to the specific embodiments disclosed herein; other embodiments falling within the scope of the claims of this application are all within the protection scope of this utility model.

Claims

1. A smart processing platform for steel and wooden tables, characterized in that: The machine includes a machine base (1), which is equipped with a cutting unit (2). A grinding frame (3) is fixedly provided at the discharge end of the cutting unit (2). A feeding unit (4) is provided between the cutting unit (2) and the grinding frame (3) in the machine base (1). During processing, the feeding unit (4) transports the cut desktop board to the grinding frame (3). The grinding frame (3) is also provided with an upper grinding frame (31). The four top corners of the grinding frame (3) and the upper grinding frame (31) are provided with matching adjusting rods (32). The axis of the adjusting rod (32) is perpendicular to the grinding frame (3). The bottom end of the adjusting rod (32) is rotatably connected to the grinding frame (3). The adjusting rod (32) is threadedly connected to the upper grinding frame (31). The grinding frame (3) and the upper grinding frame (31) are provided with matching grinding areas (33). The grinding frame (3) is provided with a number of main grinding rollers evenly arranged along the discharge direction. The upper grinding frame (31) is provided with a number of auxiliary grinding rollers (35) evenly arranged along the discharge direction. The grinding frame (3) is also provided with a drive device to drive the main grinding rollers to rotate.

2. The intelligent processing platform for steel and wooden tables according to claim 1, characterized in that: The discharge end of the grinding frame (3) is also provided with a telescopic rod (36) for blocking the material. During grinding, the telescopic rod (36) rises to block the discharge of the tabletop board.

3. The intelligent processing platform for steel and wooden tables according to claim 1, characterized in that: The driving device is one of a drive motor, a belt drive mechanism, or a toothed belt transmission mechanism.

4. The intelligent processing platform for steel and wooden tables according to claim 1, characterized in that: The cutting unit (2) includes a cutting mechanism (21) and a reciprocating mechanism (22) that drives the cutting mechanism (21) to cut the desktop board. The reciprocating mechanism (22) includes a reciprocating seat (221), a reciprocating belt (222), and a reciprocating motor (223). The cutting mechanism (21) includes a cutting frame (211). The cutting frame (211) is slidably connected to the reciprocating seat (221). The reciprocating belt (222) is fixedly connected to the cutting frame (211). When the reciprocating motor (223) drives the reciprocating belt (222) to rotate, the cutting frame (211) reciprocates along both ends of the reciprocating seat (221). The top of the cutting frame (211) is also equipped with a cutting saw (212), and the cutting frame (211) is also equipped with a cutting motor (213) that drives the cutting saw (212) to rise and fall.

5. The intelligent processing platform for steel and wooden tables according to claim 1, characterized in that: The feeding unit (4) includes a main feeding roller (41) and an auxiliary feeding roller (42). The two ends of the auxiliary feeding roller (42) are rotatably connected to the machine base (1). The two ends of the main feeding roller (41) are provided with a main feeding motor (43). The bottom of the main feeding motor (43) is also provided with an auxiliary feeding motor (44). The lifting direction of the auxiliary feeding motor (44) is perpendicular to the surface of the machine base (1). The main feeding motor (43) drives the main feeding roller (41) to rotate.

6. The intelligent processing platform for steel and wood tables according to claim 5, characterized in that: Limiting blocks (11) are provided on the machine base (1) near the two main feeding motors (43).

7. A steel-wood table intelligent processing platform according to any one of claims 1 to 6, characterized in that: The machine tool (1) is also equipped with a controller (13).

Citation Information

Patent Citations

  • High-numerical-control forming equipment for steel and wood furniture and forming process

    CN112792512A