Customized automatic detection device for inner and outer diagonal lines of wooden window

By designing an automatic detection device, using roller table assembly and three-stage ruler to cooperate with the motor to drive the gear rack, automatic measurement of the inside and outside of the wooden window is achieved, solving the problem of inefficient traditional manual measurement and improving production efficiency and measurement accuracy.

CN120403387AActive Publication Date: 2025-08-01NORTHEAST FORESTRY UNIV
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Patent Information

Application Number
CN202510403427.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2025-08-01
Estimated Expiration
2045-04-01

AI Technical Summary

Technical Problem

The diagonal measurement of traditional wooden windows inside and outside depends on manual operation, resulting in low production efficiency and inaccurate measurements. The existing devices cannot adapt to diagonal measurements of wooden windows of different sizes.

Method used

A customized automatic detection device for diagonal inside and outside of wooden windows is designed, using roller table assembly, three-section ruler, lifting mechanism and positioning assembly, and automatic diagonal detection is achieved through the cooperation of motor-driven gear racks and racks, saving manual operation.

Benefits of technology

Automatic detection of diagonal lines inside and outside wooden windows is realized, production efficiency is improved, workers' physical consumption is reduced, and measurement accuracy is ensured.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a customized wooden window inside and outside diagonal automatic detection device, and belongs to the technical field of wood machining. The device can realize automatic measurement of inner and outer diagonal lines of wooden windows with different sizes, and is high in automation. The connecting rod A and the connecting rod C are hinged to the roller table assembly, scales are arranged on the connecting rod A and the connecting rod B, one of the three positioning assemblies is arranged on the connecting rod A, the other positioning assemblies are arranged on the connecting rod B, the connecting rod A and the connecting rod B are hinged through the positioning assemblies, and the connecting rod B and the connecting rod C are hinged through the moving assembly. According to the invention, automatic detection of the size of the diagonal line of the wooden window outer frame can be completed, manpower is saved, detection can be carried out on the material conveying roller table, manual material taking measurement is not needed, and labor consumed by workers is saved. According to the invention, the positioning assembly can move along the three-section ruler and is close to the opposite angles of the detected wooden window without manual alignment, so that the detection of the diagonal lines is convenient and rapid.
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Description

Technical Field

[0001] The present invention belongs to the technical field of wood machining, and particularly relates to a customized automatic detection device for the inner and outer diagonals of wooden windows. Background Art

[0002] Generally, after milling, the inner and outer diagonals of wooden windows need to be measured to determine whether the machining accuracy is qualified. When traditionally measuring the inner and outer diagonals, workers need to remove the wooden window from the transportation equipment and manually measure it with a tape measure. This measurement method highly depends on manual operation, requiring workers to frequently remove the wooden window for measurement and then put it back in place. This not only reduces production efficiency but also increases the physical burden on workers, with inaccurate measurement and reduced processing efficiency.

[0003] Currently, the invention patent with the application number CN202411097568.X proposes a device for measuring the length of plates used in cabinet production, which realizes the measurement of the frame length without removing the wooden window. However, this device cannot complete the measurement of the diagonal dimensions of wooden windows with different sizes and angles. Summary of the Invention

[0004] In order to solve the problems existing in the above background art, the present invention provides a customized automatic detection device for the inner and outer diagonals of wooden windows with simple operation, strong adaptability and high efficiency. This device can realize the automatic measurement of the inner and outer diagonals of wooden windows with different sizes, has high automation, and is of significant importance for actual production.

[0005] The technical solution adopted by the present invention is as follows:

[0006] A customized automatic detection device for the inner and outer diagonals of wooden windows, including a roller table assembly and a three-section ruler; the three-section ruler is installed above the roller table assembly.

[0007] The three-section ruler includes link A, link B, link C, a positioning component and a moving component; link A and link C are respectively hinged to the roller table assembly, scales are provided on both link A and link B, there are three positioning components in total, one is arranged on link A, and the remaining positioning components are arranged on link B, and link A and link B are hinged through the positioning components, and link B and link C are hinged through the moving component.

[0008] The present invention has the following beneficial effects compared with the prior art:

[0009] By setting up a lifting mechanism, a roller table, a guide rail slider and three positioning components in cooperation, the present invention can complete the automatic detection of the diagonal dimensions of the outer frame of the wooden window, save labor, and at the same time can perform the detection on the material conveying roller table without manual material taking and measurement, saving the physical strength consumed by workers and improving work efficiency.

[0010] Through the combined use of components such as motors, gears, and racks in the positioning component, the positioning component can be moved along the three-section ruler by the torque provided by the motor and pressed against the diagonal of the detected wooden window, so that manual alignment is not required, making the detection of the diagonal convenient and fast and improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] Figure 1 is an isometric view of the present invention;

[0012] Figure 2 is an isometric view of the roller table assembly of the present invention;

[0013] Figure 3 is an isometric view of the lifting support frame A of the present invention;

[0014] Figure 4 is an isometric view of the lifting support frame B of the present invention;

[0015] Figure 5 is an isometric view of the three-section ruler of the present invention;

[0016] Figure 6 is an isometric view of the positioning component of the present invention;

[0017] Figure 7 is an isometric view of the moving component of the present invention;

[0018] Wherein: 1. Roller table assembly; 11. Lifting support frame A; 111. Cylinder; 112. Connecting plate A; 12. Lifting support frame B; 121. Fixed plate B; 122. Connecting plate B; 13. Roller table; 2. Three-section ruler; 21. Link A; 22. Link B; 23. Link C; 24. Positioning component; 241. Slide block A; 242. Baffle component; 2421. Connecting shaft; 243. Gear; 244. Rotating motor; 245. Moving plate; 25. Moving component; 251. Slide block B; 252. Connecting plate C; 253. Moving shaft; 3. Wooden window. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0019] In order to better understand the purpose, structure and function of the present invention, the following will further describe the present invention in detail with reference to the drawings.

[0020] As Figure 1 shown, the present invention provides a customized automatic detection device for the inner and outer diagonals of wooden windows, including a roller table assembly 1 and a three-section ruler 2; the three-section ruler 2 is installed above the roller table assembly 1,

[0021] As Figure 2 shown, lifting support frames A 11 and B 12 are respectively arranged at two diagonals of the roller table 13 of the roller table assembly 1 for connecting the three-section ruler 2.

[0022] AsFigure 3 As shown, the lifting support frame A11 includes a cylinder 111 and a connecting plate A112; the output end of the cylinder 111 is fixedly connected to the connecting plate A112, and a hinge shaft is arranged on the connecting plate A112 and hinged to the connecting rod A21 of the three-section ruler 2.

[0023] As Figure 4 As shown, the lifting support frame B12 includes a fixing plate B121, a connecting plate B122, a guide rail C and a slider C; a vertical guide rail C is fixedly connected to the fixing plate B121, one end of the connecting plate B122 is slidably connected to the guide rail C through the slider C, and the other end of the connecting plate B122 is provided with a hinge shaft and hinged to the connecting rod C23 of the three-section ruler 2.

[0024] As Figure 5 As shown, the three-section ruler 2 includes a connecting rod A21, a connecting rod B22, a connecting rod C23, a positioning assembly 24 and a moving assembly 25; the connecting rod A21 and the connecting rod C23 are respectively hinged to the roller table assembly 1, scales are provided on both the connecting rod A21 and the connecting rod B22, there are three positioning assemblies 24 in total, one is arranged on the connecting rod A21, the remaining positioning assemblies 24 are arranged on the connecting rod B22, and the connecting rod A21 and the connecting rod B22 are hinged through the positioning assembly x24, and the connecting rod B22 and the connecting rod C23 are hinged through the moving assembly 25.

[0025] As Figure 6 As shown, each positioning assembly 24 includes a slider A241, a backing plate assembly 242, a gear 243, a rotating motor 244 and a moving plate 245; the moving plate 245 is an L-shaped plate, the base end of the slider A241 is fixedly connected to the vertical end of the moving plate 245 on its right side, guide rails A are provided on the sides of the connecting rod A21 and the connecting rod B22 and form a movable fit with the corresponding sliders A241, a rotating motor 244 is fixedly connected below the horizontal end of the moving plate 245, a gear 243 is fixedly installed on the rotating shaft of the rotating motor 244, the gear 243 is meshed and connected to a rack channel opened in the middle of the connecting rod A21 or the connecting rod B22, a connecting shaft 2421 is fixedly installed below the gear 243, the backing plate assembly 242 is provided with a bearing installation part, and the connecting shaft 2421 is rotatably arranged in the bearing installation part through a bearing assembly, so that the connecting shaft 2421 can rotate relative to the backing plate assembly 242.

[0026] The connecting rod B22 is hinged to the connecting shaft 2421 of the positioning assembly 24 arranged on the connecting rod A21.

[0027] As Figure 6 As shown, the backing plate assembly 242 includes a triangular backing plate and a connecting cushion plate; the triangular backing plate is used for abutting against the window corner of the wooden window 3, the triangular backing plate is fixedly connected to the connecting cushion plate, and a bearing installation part is arranged inside the connecting cushion plate.

[0028] The triangular backrest is composed of a 90° folding plate with an upper cover plate.

[0029] Long strip notches are provided in the middle parts of the connecting rod A21 and the connecting rod B22 so that the connecting shaft 2421 can pass through, and then the backrest assembly 242 is arranged below the connecting rod A21 and the connecting rod B22. A rack is arranged on the upper surface of the long strip notch to form a rack channel.

[0030] As Figure 7 shown, the moving assembly 25 includes a slider B251, a connecting plate C252 and a moving shaft 253; one end of the connecting plate C252 is fixedly connected to the side surface of the slider B251, the other end of the connecting plate C252 is fixedly connected to the moving shaft 253, the moving shaft 253 is hinged to one end of the connecting rod B22, and a guide rail B is arranged on the side of the connecting rod C23 and forms a movable fit with the slider B251.

[0031] Working principle: The positioning assembly 24 on the connecting rod A21 is the positioning assembly A, the positioning assembly 24 on the connecting rod B22 close to the connecting rod A21 is the positioning assembly B, and the other positioning assembly 24 on the connecting rod B22 is the positioning assembly C.

[0032] Place the wooden window 3 on the roller table assembly 1 and transport it to the measuring area by the roller table. The lifting support frame A11 and the lifting support frame B12 descend to the working position, driving the three-section ruler 2 to descend to be parallel to the wooden window 3. The gear 243 in the positioning assembly A rotates and moves along the connecting rod A21 towards the lifting support frame A11, and moves to a corner of the wooden window 3 by the traction force provided by the gear 243. Subsequently, the positioning assembly B moves away from the lifting support frame A11, and moves to the opposite corner of the wooden window 3. At this time, the scale in the connecting rod B22 is the inner diagonal length of the wooden window 3.

[0033] The positioning assembly A and the positioning assembly B move forward away from the wooden window 3 respectively, and the positioning assembly C moves towards the wooden window 3 to the outer corner of the wooden window 3. After contacting the wooden window 3, since the gear and the rack are still operating, it drives the connecting rod B22 to move away from the lifting support frame A11 along the outer corner of the wooden window 3 until the connecting rod B22 is collinear with the connecting rod A21, and the moving assembly 25 is pulled passively to the place farthest from the connecting rod A21. At this time, the total scale length of the connecting rod A21 plus the length shown by the connecting rod B22 is the outer diagonal length.

[0034] It can be understood that the present invention is described through some embodiments. As is known to those skilled in the art, without departing from the spirit and scope of the present invention, various changes or equivalent replacements can be made to these features and embodiments. In addition, under the teaching of the present invention, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application belong to the scope protected by the present invention.

Claims

1. An automatic detection device for the inner and outer diagonals of customized wooden windows, characterized in that: It includes a roller table assembly (1) and a three-section ruler (2); the three-section ruler (2) is installed above the roller table assembly (1). The three-section ruler (2) includes a connecting rod A (21), a connecting rod B (22), a connecting rod C (23), a positioning assembly (24), and a moving assembly (25). The connecting rod A (21) and the connecting rod C (23) are respectively hinged to the roller table assembly (1). Scales are provided on both the connecting rod A (21) and the connecting rod B (22). There are three positioning assemblies (24) in total. One is arranged on the connecting rod A (21), and the remaining positioning assemblies (24) are arranged on the connecting rod B (22). The connecting rod A (21) and the connecting rod B (22) are hinged through the positioning assembly (24), and the connecting rod B (22) and the connecting rod C (23) are hinged through the moving assembly (25).

2. The automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 1, characterized in that: Each positioning assembly (24) includes a slider A (241), a backing plate assembly (242), a gear (243), a rotating motor (244), and a moving plate (245). The moving plate (245) is an L-shaped plate. The base end of the slider A (241) is fixedly connected to the vertical end of the moving plate (245) on its right side. Guide rails A are provided on the sides of the connecting rod A (21) and the connecting rod B (22) to form a movable fit with the corresponding sliders A (241). The rotating motor (244) is fixedly connected below the horizontal end of the moving plate (245). The rotating shaft of the rotating motor (244) is fixedly installed with the gear (243). The gear (243) is meshed and connected with a rack channel opened in the middle of the connecting rod A (21) or the connecting rod B (22). A connecting shaft (2421) is fixedly installed below the gear (243). The backing plate assembly (242) is provided with a bearing installation part, and the connecting shaft (2421) is rotatably connected to the backing plate assembly (242) through the bearing installation part.

3. The automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 2, characterized in that: The backing plate assembly (242) includes a triangular backing plate and a connecting backing plate. The triangular backing plate is used to abut against the window corner of the wooden window (3). The triangular backing plate is fixedly connected to the connecting backing plate, and a bearing installation part is arranged inside the connecting backing plate.

4. The automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 2, characterized in that: Long strip slots are opened in the middle of the connecting rod A (21) and the connecting rod B (22) so that the connecting shaft (2421) can pass through. A rack is arranged on the upper surface of the long strip slot to form a rack channel.

5. The automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 3, characterized in that: The moving assembly (25) includes a slider B (251), a connecting plate C (252), and a moving shaft (253). One end of the connecting plate C (252) is fixedly connected to the side of the slider B (251), and the other end of the connecting plate C (252) is fixedly connected to the moving shaft (253). The moving shaft (253) is hinged to one end of the connecting rod B (22). Guide rail B is provided on the side of the connecting rod C (23) to form a movable fit with the slider B (251).

6. The automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 1, characterized in that: Lifting support frames A (1) and B (12) are respectively arranged at two diagonal corners of the roller table (13) of the roller table assembly (1) for connecting the three-section ruler (2).

7. The automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 6, characterized in that: The lifting support frame A (11) includes a cylinder (111) and a connecting plate A (112). The output end of the cylinder (111) is fixedly connected to the connecting plate A (112). A hinge shaft is arranged on the connecting plate A (112) and is hinged to the connecting rod A (21) of the three-section ruler (2).

8. An automatic detection device for the inner and outer diagonals of a customized wooden window according to claim 7, characterized in that: The lifting support frame B (12) includes a fixing plate B (121), a connecting plate B (122), a guide rail C, and a slider C; a vertical guide rail C is fixedly connected to the fixing plate B (121), one end of the connecting plate B (122) is slidably connected to the guide rail C through the slider C, and the other end of the connecting plate B (122) is provided with a hinge shaft and is hinged to the connecting rod C (23) of the three-section ruler (2).

Citation Information

Patent Citations

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