Assembling type wood cutting table for decoration engineering
By introducing a measuring component and a lead screw transmission system into the assembled wood cutting device, the problems of cumbersome manual measurement and drawing of the grooving position and insufficient accuracy in the existing technology are solved, and high efficiency and accuracy of wood cutting are achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-27
- Publication Date
- 2026-03-24
AI Technical Summary
Existing modular wood cutting devices require manual measurement and drawing of the cutting groove position, which is cumbersome and makes it difficult to guarantee cutting accuracy.
By employing a measuring component and a lead screw drive system, the cutting point is determined through the measuring component, and the lead screw drive replaces manual pushing of the wood to achieve precise cutting.
It improves the precision of cutting assembled timber, simplifies the operation process, reduces the steps of manual measurement and drawing, and ensures the accuracy of the cutting position.
Smart Images

Figure CN224027874U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of assembled wood cutting technology, specifically an assembled wood cutting table for decorative engineering. Background Technology
[0002] Decoration engineering is a general term for the work of decorating and embellishing the interior and exterior of buildings using building materials and their products, or decorative artworks such as sculptures and paintings. Assembled timber is one of the commonly used materials in decoration engineering. During use, to ensure that the timber pieces are neatly assembled, a cutting device is needed to cut the timber, such as by making grooves. Part of the cutting device includes: a base, the upper surface of which has four corners connected to the bottom of a workbench via support columns; a top plate above the workbench, the lower surface of which has four corners connected to the top of the workbench via connecting columns; an ion fan installed at the center of the lower surface of the top plate; and a buffer mechanism installed at each of the four corners of the lower surface of the base. The buffer mechanism includes side plates, springs, buffer plates, limiting columns, limiting plates, and damping rubber pads. The device, consisting of a support base, threaded holes, a first through hole, and a second through hole, uses a buffer mechanism between its bottom and the ground to prevent relative sliding between the device and the ground due to excessive contact force during wood cutting, thus enhancing stability. However, when cutting assembled wood, the operator first needs to mark the cutting groove position on the assembled wood with a pen and ruler. Then, the operator places the assembled wood on the workbench surface and manually pushes it along the workbench surface towards the cutting area. The operator manually measures and marks the cutting groove, which is quite cumbersome. Furthermore, manually pushing the assembled wood along the workbench surface cannot guarantee that the wood will not shift during the cutting process. Therefore, we propose an assembled wood cutting table for decorative engineering. Utility Model Content
[0003] The technical problem to be solved by this utility model is to overcome the existing defects and provide a modular wood cutting table for decorative engineering. This device determines the position of the cutting point of the modular wood through measuring elements, so that the workers do not need to predict and draw the cutting groove of the modular wood. At the same time, when the modular wood is moved in the cutting position, the device replaces the manual pushing of the modular wood by the workers through the operation of the screw drive, thereby effectively improving the cutting accuracy of the modular wood and effectively solving the problems in the background technology.
[0004] To achieve the above objectives, this utility model provides the following technical solution: an assembled wood cutting table for decorative engineering, including a cutting bed, a cutting machine provided at the lower right middle part of the cutting bed, and a cutting conveying mechanism;
[0005] The cutting and conveying mechanism includes a dovetail groove, a transverse frame, a stud, a longitudinal frame, a bidirectional lead screw, a clamping seat, a limiting seat, and a measuring component. The dovetail grooves are respectively opened on the front and rear sides of the cutting bed. A transverse frame is slidably connected between the two dovetail grooves. The interior of the transverse frame is rotatably connected to a stud via a bearing. The outer side of the stud is threadedly connected to the longitudinal frame. The interior of the longitudinal frame is rotatably connected to a bidirectional lead screw via a bearing. Both ends of the bidirectional lead screw are threadedly connected to clamping seats. A limiting seat is provided on the left side of each clamping seat. A measuring component is provided between the cutting bed, the transverse frame, and the longitudinal frame. The lower sides of the longitudinal frame and the clamping seats are in slidable contact with the upper side of the cutting bed. This device determines the position of the cutting point of the assembled wood through the measuring element, so that the operator does not need to predict and draw the cutting groove of the assembled wood. At the same time, when the assembled wood moves in the cutting position, the device replaces the operator's manual pushing of the assembled wood through lead screw transmission, thereby effectively improving the cutting accuracy of the assembled wood.
[0006] Furthermore, it also includes a control switch, which is located outside the cutting bed. The input terminal of the control switch is electrically connected to an external power source, and the output terminal of the control switch is electrically connected to the input terminal of the cutting machine, making it convenient to control electrical components.
[0007] Furthermore, the measuring component includes a scale and a pointer. The scale is located on the right wall of the transverse frame, and the pointer is located at the upper middle part of the outer side of the longitudinal frame. The pointer and the scale are installed together to measure the longitudinal distance of the assembled timber in the cutting table for decorative engineering.
[0008] Furthermore, the measuring component also includes a scale ruler and a pointer. The scale ruler is located at the upper front end of the cutting bed, and the pointer is located at the left front end of the transverse frame. The pointer and scale ruler are installed together to measure the transverse distance of the assembled timber in the cutting table for decorative engineering.
[0009] Furthermore, the cutting and conveying mechanism also includes a drive assembly, which includes a handwheel one, a handwheel two, a stud two, and a handwheel three. The handwheel one is located at the front end of the stud one, and the handwheel two is located at the front end of the bidirectional lead screw. The stud two is rotatably connected to the dovetail groove on the front side through a bearing three. The stud two is threadedly connected to the transverse frame, and the handwheel three is located at the left end of the stud two. The handwheel three drives the rotation of each lead screw transmission component in the modular wood cutting table for decorative engineering.
[0010] Furthermore, the cutting bed is equipped with arc-shaped baffles at both the front and rear edges of its upper side to prevent wood chips generated during cutting from entering the dovetail groove.
[0011] Furthermore, corrugated pipes are provided between the front and rear walls of the longitudinal moving frame and the adjacent clamping seats, between the opposite inner sides of the two clamping seats, and between the front and rear walls of the transverse moving frame and the upper middle part of the adjacent longitudinal moving frame. The stud and the double-acting screw are located inside the adjacent corrugated pipes, which cover and shield the exposed parts of the stud and the double-acting screw in the assembled wood cutting table for decorative engineering, so as to prevent wood chips generated during cutting from entering.
[0012] Compared with the prior art, the beneficial effects of this utility model are as follows: This modular wood cutting table for decorative engineering has the following advantages:
[0013] When using a modular wood cutting table for decorative engineering, the cutting point of the modular wood is determined by a measuring component, eliminating the need for workers to predict and draw the cutting grooves. Furthermore, when moving the modular wood to the cutting position, screw drives are used via stud one, a two-way lead screw, and stud two, replacing manual pushing of the modular wood. This allows the modular wood to move smoothly and accurately on the cutting table, improving the device's cutting precision. Attached Figure Description
[0014] Fig. 1 This is a schematic diagram of the structure of this utility model;
[0015] Fig. 2 This is a schematic diagram of the internal structure of this utility model;
[0016] Fig. 3 This is an enlarged structural diagram of point A in this utility model.
[0017] In the diagram: 1. Cutting bed; 2. Control switch; 3. Cutting conveyor mechanism; 31. Dovetail groove; 32. Horizontal movement frame; 33. Stud I; 34. Longitudinal movement frame; 35. Bidirectional lead screw; 36. Clamping seat; 37. Limiting seat; 38. Measuring component; 381. Scale I; 382. Pointer I; 383. Scale II; 384. Pointer II; 39. Drive component; 391. Handwheel I; 392. Handwheel II; 393. Stud II; 394. Handwheel III; 4. Arc baffle; 5. Corrugated pipe; 6. Cutting machine. Detailed Implementation
[0018] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0019] Please see Figs. 1-3 This embodiment provides a technical solution: a modular wood cutting table for decorative engineering, including a cutting bed 1, a cutting machine 6 located at the lower right end of the cutting bed 1, and a control switch 2 located outside the cutting bed 1. The input end of the control switch 2 is electrically connected to an external power source, and the output end of the control switch 2 is electrically connected to the input end of the cutting machine 6. The operator starts the cutting machine 6 by controlling the control switch 2. The table also includes a cutting conveying mechanism 3.
[0020] Cutting conveying mechanism 3: It includes dovetail grooves 31, a transverse frame 32, a stud 33, a longitudinal frame 34, a bidirectional lead screw 35, a clamping seat 36, a limiting seat 37, and a measuring component 38. The dovetail grooves 31 are respectively located on the front and rear sides of the cutting bed 1. A transverse frame 32 is slidably connected between the two dovetail grooves 31. The interior of the transverse frame 32 is rotatably connected to the stud 33 via a bearing. The outer side of the stud 33 is threadedly connected to the longitudinal frame 34. The interior of the longitudinal frame 34 is rotatably connected to the bidirectional lead screw 35 via a bearing. Both ends of the bidirectional lead screw 35 are threadedly connected to the clamping seat 36. A limiting seat 37 is provided on the left side of each clamping seat 36. A measuring component 38 is provided between the cutting bed 1, the transverse frame 32, and the longitudinal frame 34. The longitudinal frame 34 and the clamping seat 36... The lower sides of the measuring assembly 38 are in sliding contact with the upper side of the cutting bed 1. The measuring assembly 38 includes a scale 381 and a pointer 382. The scale 381 is located on the right wall of the transverse frame 32, and the pointer 382 is located at the upper middle part of the outer side of the longitudinal frame 34. The pointer 382 is installed in conjunction with the scale 381. The measuring assembly 38 also includes a scale 383 and a pointer 384. The scale 383 is located at the upper front end of the cutting bed 1, and the pointer 384 is located at the left front end of the transverse frame 32. The pointer 384 is installed in conjunction with the scale 383. The cutting conveying mechanism 3 also includes a drive assembly 39, which includes a handwheel 391, a handwheel 392, a stud 393, and a handwheel 394. The handwheel 391 is located on the upper front end of the transverse frame 32. At the front end of the cutting bed 1, a handwheel 392 is provided at the front end of the double-acting screw 35. A stud 393 is rotatably connected to the dovetail groove 31 on the front side through a bearing 3. The stud 393 is threadedly connected to the transverse frame 32. A handwheel 394 is provided at the left end of the stud 393. Arc-shaped baffles 4 are provided at the front and rear edges of the upper side of the cutting bed 1. Corrugated tubes 5 are provided between the front and rear walls of the longitudinal frame 34 and the adjacent clamping seats 36, between the opposite inner sides of the two clamping seats 36, and between the front and rear walls of the transverse frame 32 and the upper middle part of the adjacent longitudinal frame 34. The stud 33 and the double-acting screw 35 are located inside the adjacent corrugated tubes 5. When using the device to cut the assembled timber for decorative engineering, the assembled timber is first placed horizontally from right to left on the cutting bed 1. On the upper side, the left side of the assembled timber contacts the right side of the limiting seat 37. Then, the handwheel 392 is turned to drive the double-acting screw 35 to rotate. During the rotation of the double-acting screw 35, the clamping seats 36 at both ends move along the upper side of the cutting bed 1 towards the longitudinal center of the device through the threaded connection, thereby centering and clamping the assembled timber. Then, according to the cutting requirements of the assembled timber, the operator turns the handwheel 391 to drive the stud 33 to rotate. The stud 33 moves the longitudinal movement frame 34 along the upper side of the cutting bed 1 through the threaded connection, indirectly driving the fixed assembled timber to move along the upper side of the cutting bed 1. During the longitudinal movement of the longitudinal movement frame 34, the pointer 382 moves adaptively along the scale 381.By coordinating these two components, the longitudinal movement distance of the longitudinal shift frame 34 can be precisely adjusted, thereby precisely adjusting the longitudinal cutting point of the assembled timber. Then, the operator rotates handwheel 394, causing stud 2 393 to rotate. During the rotation of stud 2 393, the threaded connection causes the transverse shift frame 32 to slide laterally along the dovetail groove 31. The transverse shift frame 32 indirectly moves the assembled timber laterally to the right along the upper surface of the cutting bed 1. The cutting wheel of the cutting machine 6 then cuts the assembled timber. During the rightward movement of the transverse shift frame 32, pointer 2 384 moves to the right along the scale 2 383. Through the coordination of these two components, the rightward movement distance of the assembled timber can be precisely controlled, thereby precisely adjusting the transverse cutting depth of the assembled timber. This method is convenient to use and is applicable to the use of the assembled timber cutting table in decorative engineering. In this device, an arc-shaped baffle 4 shields the upper part of adjacent dovetail grooves 31, preventing wood chips from entering the corresponding dovetail grooves 31 during the cutting of assembled timber. The corrugated tube 5 is a tubular elastic sensitive element made of foldable corrugated sheets connected along the folding and stretching direction. The corrugated tube 5 wraps and shields the exposed areas of the stud 33 and the double-acting screw 35, preventing wood chips from interfering with the threaded transmission of the stud 33 and the double-acting screw 35. The device determines the cutting point of the assembled timber using measuring elements, eliminating the need for workers to predict and draw the cutting grooves. Furthermore, when the assembled timber is moved during cutting, the device uses screw transmission to replace manual pushing, effectively improving the cutting accuracy of the assembled timber.
[0021] The working principle of the modular wood cutting table for decorative engineering provided by this utility model is as follows: When using the device to cut modular wood for decorative engineering, firstly, the modular wood is placed horizontally from right to left on the upper side of the cutting bed 1, so that the left side of the modular wood contacts the right side of the limiting seat 37. Then, the handwheel 392 is turned to drive the double-acting screw 35 to rotate. During the rotation of the double-acting screw 35, the clamping seats 36 at both ends move along the upper side of the cutting bed 1 towards the longitudinal center of the device through the threaded connection, thereby centering and clamping the modular wood. Then, according to the cutting requirements of the assembled timber, the staff turns handwheel 391, which drives stud 33 to rotate. Stud 33, through a threaded connection, drives the longitudinal movement frame 34 to move longitudinally along the upper side of the cutting bed 1, indirectly causing the fixed assembled timber to move longitudinally along the upper side of the cutting bed 1. During the longitudinal movement of the longitudinal movement frame 34, pointer 382 adaptively moves longitudinally along scale 381. Through the cooperation of both, the longitudinal movement distance of the longitudinal movement frame 34 is precisely adjusted, thereby precisely adjusting the longitudinal cutting point of the assembled timber. The staff then controls the switch... 2. Start the cutting machine 6. Then, the operator turns the handwheel 394 to rotate the stud 393. During the rotation of the stud 393, the transverse frame 32 slides laterally along the dovetail groove 31 through the threaded connection. The transverse frame 32 indirectly moves the assembled timber laterally to the right along the upper surface of the cutting bed 1. The cutting wheel of the cutting machine 6 cuts the assembled timber. During the rightward movement of the transverse frame 32, the pointer 384 moves to the right along the scale 383. Through the cooperation of the two, the rightward movement distance of the assembled timber is precisely controlled, thereby cutting the assembled timber. The transverse cutting depth of the material is precisely adjusted, making it easy to use. During the use of the modular wood cutting table for decorative engineering, the upper part of the adjacent dovetail groove 31 is blocked by the arc baffle 4, thereby preventing wood chips generated from the modular wood cutting from entering the corresponding dovetail groove 31. The corrugated tube 5 refers to a tubular elastic sensitive element made of foldable corrugated sheets connected along the folding and stretching direction. The corrugated tube 5 wraps and blocks the exposed areas of the stud 33 and the double-acting screw 35, preventing wood chips from interfering with the thread transmission of the stud 33 and the double-acting screw 35.
[0022] It is worth noting that the cutting machine 6 disclosed in the above embodiments can be a GKS190 woodworking electric circular saw, and the control switch 2 is equipped with a control button corresponding to the cutting machine 6 for controlling its switch.
[0023] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A modular wood cutting table for decorative engineering, comprising a cutting bed (1), wherein a cutting machine (6) is provided at the lower right end of the cutting bed (1), characterized in that: It also includes a cutting and conveying mechanism (3); Cutting conveying mechanism (3): It includes dovetail grooves (31), transverse frame (32), stud (33), longitudinal frame (34), bidirectional lead screw (35), clamping seat (36), limiting seat (37), and measuring component (38). The dovetail grooves (31) are respectively opened on the front and rear sides of the cutting bed (1). A transverse frame (32) is slidably connected between the two dovetail grooves (31). The interior of the transverse frame (32) is rotatably connected to the stud (33) through a bearing. The outer thread of (33) is connected to the longitudinal frame (34). The interior of the longitudinal frame (34) is rotatably connected to the double screw (35) through the bearing. Both ends of the double screw (35) are threaded to the clamping seat (36). The left side of the clamping seat (36) is provided with the limit seat (37). The measuring component (38) is provided between the cutting bed (1), the transverse frame (32) and the longitudinal frame (34). The lower side of the longitudinal frame (34) and the clamping seat (36) are in sliding contact with the upper side of the cutting bed (1).
2. The modular wood cutting table for decorative engineering according to claim 1, characterized in that: It also includes a control switch (2), which is located outside the cutting bed (1). The input end of the control switch (2) is electrically connected to an external power supply, and the output end of the control switch (2) is electrically connected to the input end of the cutting machine (6).
3. The modular wood cutting table for decorative engineering according to claim 1, characterized in that: The measuring component (38) includes a scale (381) and a pointer (382). The scale (381) is located on the right wall of the transverse frame (32), and the pointer (382) is located at the upper middle part of the outer side of the longitudinal frame (34). The pointer (382) is installed in conjunction with the scale (381).
4. The modular wood cutting table for decorative engineering according to claim 1, characterized in that: The measuring component (38) also includes a scale two (383) and a pointer two (384). The scale two (383) is located at the upper front end of the cutting bed (1), and the pointer two (384) is located at the left front end of the transverse frame (32). The pointer two (384) is installed in conjunction with the scale two (383).
5. The modular wood cutting table for decorative engineering according to claim 1, characterized in that: The cutting and conveying mechanism (3) further includes a drive assembly (39), which includes a handwheel one (391), a handwheel two (392), a stud two (393) and a handwheel three (394). The handwheel one (391) is located at the front end of the stud one (33), and the front end of the bidirectional screw (35) is provided with the handwheel two (392). The stud two (393) is rotatably connected to the dovetail groove (31) on the front side through the bearing three. The stud two (393) is threadedly connected to the transverse frame (32), and the left end of the stud two (393) is provided with the handwheel three (394).
6. The modular wood cutting table for decorative engineering according to claim 1, characterized in that: The cutting bed (1) is provided with arc-shaped baffles (4) at both the front and rear edges of the upper side.
7. The modular wood cutting table for decorative engineering according to claim 1, characterized in that: Corrugated pipes (5) are provided between the front and rear walls of the longitudinal frame (34) and the adjacent clamping seat (36), between the relative inner sides of the two clamping seats (36), and between the front and rear walls of the transverse frame (32) and the upper middle part of the adjacent longitudinal frame (34). The stud (33) and the double-acting screw (35) are located inside the adjacent corrugated pipes (5).