A customized automatic detection device for diagonal lines of wood windows
Patent Information
- Application Number
- CN202510403427.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2045-04-01
AI Technical Summary
Traditional methods of measuring the diagonals of wooden windows, both inside and out, rely on manual operation, resulting in low production efficiency and inaccuracy. Existing equipment is not suitable for measuring the diagonals of wooden windows of different sizes.
Design a quantitative automatic detection device for the inner and outer diagonals of wooden windows, including a roller table assembly, a three-section ruler, a lifting mechanism, and a positioning component. The positioning component is driven by a motor to move along the three-section ruler to achieve automatic diagonal measurement. Combined with the lifting device, the lifting mechanism, roller table, guide rail slider, and three positioning components work together to achieve automatic detection of the diagonals of the wooden window frame.
It enables automatic measurement of the inner and outer diagonals of wooden windows, reducing manual operation, saving physical labor, and improving production efficiency and measurement accuracy.
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Figure CN120403387B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of wood mechanical processing, and particularly relates to a customized wood window inner-outer diagonal line automatic detection device. BACKGROUND
[0002] Generally, the wood window after milling needs to be measured for inner-outer diagonal lines to determine whether the processing precision is qualified. When measuring the inner-outer diagonal lines in the traditional way, workers need to take the wood window off the conveying equipment and manually measure it by using a tape measure. This measurement method highly depends on manual operation and requires workers to frequently take the wood window off for measurement and then put it back in place. This method not only reduces production efficiency but also increases the physical burden of workers, and the measurement is inaccurate and the processing efficiency is reduced.
[0003] At present, the invention patent with the application number CN202411097568.X proposes a plate length measuring device for cabinet production, which realizes the measurement of the frame length without taking the wood window off. However, the device cannot complete the diagonal line size measurement of wood windows with different sizes and angles. SUMMARY
[0004] In order to solve the problems in the background art, the application provides a customized wood window inner-outer diagonal line automatic detection device which is simple to operate, highly adaptable and efficient. The device can automatically measure the inner-outer diagonal lines of wood windows with different sizes, is highly automated and has significant importance for actual production.
[0005] The technical scheme adopted by the application is as follows:
[0006] A customized wood window inner-outer diagonal line automatic detection device, comprising a roller table assembly and a three-section ruler,
[0007] The three-section ruler comprises a connecting rod A, a connecting rod B, a connecting rod C, a positioning assembly and a moving assembly. The connecting rod A and the connecting rod C are respectively hinged to the roller table assembly. The connecting rod A and the connecting rod B are both provided with scales. The positioning assembly is provided with three, one of which is arranged on the connecting rod A and the remaining positioning assemblies are arranged on the connecting rod B. The connecting rod A and the connecting rod B are hinged through the positioning assembly, and the connecting rod B and the connecting rod C are hinged through the moving assembly.
[0008] Compared with the prior art, the application has the following beneficial effects:
[0009] The application can complete the automatic detection of the diagonal line size of the outer frame of the wood window by setting the lifting mechanism, the roller table, the guide rail slider and the three positioning assemblies, which are used in cooperation. This saves labor and can detect on the material conveying roller table without manual material taking and measuring, which saves the physical consumption of workers and improves work efficiency.
[0010] The application can make the positioning assembly move along the three-section ruler and be close to the detected wood window diagonal through the cooperation of the motor and gear rack in the positioning assembly, and the torque provided by the motor, so that manual alignment is not needed, and the detection of the diagonal line is convenient and fast, and the work efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0011] Figure 1 is the axis measurement drawing of the application;
[0012] Figure 2 is the axis measurement drawing of the roller table assembly of the application;
[0013] Figure 3 is the axis measurement drawing of the lifting support frame A of the application;
[0014] Figure 4 is the axis measurement drawing of the lifting support frame B of the application;
[0015] Figure 5 is the axis measurement drawing of the three-section ruler of the application;
[0016] Figure 6 is the axis measurement drawing of the positioning assembly of the application;
[0017] Figure 7 is the axis measurement drawing of the moving assembly of the application;
[0018] Wherein: 1, roller table assembly; 11, lifting support frame A; 111, air 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, connecting rod A; 22, connecting rod B; 23, connecting rod C; 24, positioning assembly; 241, sliding block A; 242, leaning plate assembly; 2421, connecting shaft; 243, gear; 244, rotating motor; 245, moving plate; 25, moving assembly; 251, sliding block B; 252, connecting plate C; 253, moving shaft; 3, wood window. DETAILED DESCRIPTION
[0019] In order to better understand the purpose, structure and function of the application, the application will be further described in detail below in combination with the drawings.
[0020] As Figure 1 shown, the application provides a customized automatic detection device for the inner and outer diagonals of a wood window, which comprises a roller table assembly 1 and a three-section ruler 2.
[0021] As Figure 2 shown, the roller table 13 of the roller table assembly 1 is provided with lifting support frame A 11 and lifting support frame B 12 at two opposite corners, which are used to connect the three-section ruler 2.
[0022] AsFigure 3 As shown in the figure, the lifting support frame A11 comprises a cylinder 111 and a connecting plate A112; the output end of the cylinder 111 is fixedly connected with the connecting plate A112, and the connecting plate A112 is hingedly connected with the connecting rod A21 of the three-section ruler 2 through a hinge shaft.
[0023] As shown in the figure, the lifting support frame B12 comprises a fixed plate B121, a connecting plate B122, a guide rail C and a sliding block C; the fixed plate B121 is fixedly connected with a vertical guide rail C, one end of the connecting plate B122 is slidingly connected with the guide rail C through a sliding block C, and the other end of the connecting plate B122 is hingedly connected with the connecting rod C23 of the three-section ruler 2 through a hinge shaft. Figure 4 As shown in the figure, the three-section ruler 2 comprises 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 hingedly connected with the roller table assembly 1, scales are arranged on the connecting rod A21 and the connecting rod B22, three positioning assemblies 24 are arranged, one of which is arranged on the connecting rod A21, and the other two are arranged on the connecting rod B22, the connecting rod A21 and the connecting rod B22 are hingedly connected through the positioning assembly 24, and the connecting rod B22 and the connecting rod C23 are hingedly connected through the moving assembly 25.
[0024] Figure 5 As shown in the figure, each of the positioning assemblies 24 comprises a sliding block A241, a back 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 sliding block A241 is fixedly connected with the vertical end of the moving plate 245 on the right side of the sliding block A241, the side edges of the connecting rod A21 and the connecting rod B22 are provided with guide rails A and corresponding sliding blocks A241 to form movable cooperation, the horizontal end of the moving plate 245 is fixedly connected with the rotating motor 244 below, the rotating shaft of the rotating motor 244 is fixedly connected with the gear 243, the gear 243 is meshingly connected with a gear rack channel formed in the middle of the connecting rod A21 or the connecting rod B22, a connecting shaft 2421 is fixedly connected below the gear 243, the back plate assembly 242 is provided with a bearing mounting portion, and the connecting shaft 2421 is rotatably penetrated in the bearing mounting portion through a bearing assembly, so that the connecting shaft 2421 can rotate relative to the back plate assembly 242.
[0025] As shown in the figure, each of the positioning assemblies 24 comprises a sliding block A241, a back 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 sliding block A241 is fixedly connected with the vertical end of the moving plate 245 on the right side of the sliding block A241, the side edges of the connecting rod A21 and the connecting rod B22 are provided with guide rails A and corresponding sliding blocks A241 to form movable cooperation, the horizontal end of the moving plate 245 is fixedly connected with the rotating motor 244 below, the rotating shaft of the rotating motor 244 is fixedly connected with the gear 243, the gear 243 is meshingly connected with a gear rack channel formed in the middle of the connecting rod A21 or the connecting rod B22, a connecting shaft 2421 is fixedly connected below the gear 243, the back plate assembly 242 is provided with a bearing mounting portion, and the connecting shaft 2421 is rotatably penetrated in the bearing mounting portion through a bearing assembly, so that the connecting shaft 2421 can rotate relative to the back plate assembly 242. Figure 6 The connecting rod B22 is hingedly connected with the connecting shaft 2421 of the positioning assembly 24 arranged on the connecting rod A21.
[0026] As shown in the figure, the back plate assembly 242 comprises a triangular back plate and a connecting gasket plate; the triangular back plate is used for abutting against the corner of the wooden window 3, the triangular back plate is fixedly connected with the connecting gasket plate, and the connecting gasket plate is internally provided with a bearing mounting portion.
[0027] Figure 6 As shown in the figure, the back plate assembly 242 comprises a triangular back plate and a connecting gasket plate; the triangular back plate is used for abutting against the corner of the wooden window 3, the triangular back plate is fixedly connected with the connecting gasket plate, and the connecting gasket plate is internally provided with a bearing mounting portion.
[0028] The triangular backrest is composed of 90° folding plate with upper cover plate.
[0029] The middle part of the connecting rod A21 and the connecting rod B22 is provided with a long slot through which the connecting shaft 2421 passes, so that the backrest assembly 242 is arranged below the connecting rod A21 and the connecting rod B22, and a rack is arranged on the upper surface of the long slot to form a rack channel.
[0030] As shown in the figure, Figure 7 The moving assembly 25 includes a sliding block 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 sliding block B251, the other end of the connecting plate C252 is fixedly connected to the moving shaft 253, the moving shaft 253 is hingedly connected to one end of the connecting rod B22, and the side edge of the connecting rod C23 is provided with a guide rail B and is movably connected with the sliding block 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] The wooden window 3 is placed on the roller table assembly 1 and is transported to the measuring area by the roller table, the lifting support frame A11 and the lifting support frame B12 are lowered to the working position and drive the three-section ruler 2 to be parallel to the wooden window 3, the gear 243 in the positioning assembly A rotates and moves the connecting rod A21 to the lifting support frame A11, and is moved to one corner of the wooden window 3 by the traction force provided by the gear 243, then the positioning assembly B moves away from the lifting support frame A11 and is moved to the opposite corner of the wooden window 3, at this time, the scale in the connecting rod B22 is the length of the inner diagonal line of the wooden window 3.
[0033] The positioning assembly A and the positioning assembly B move forward away from the wooden window 3, and the positioning assembly C moves to the outer corner of the wooden window 3, after contacting the wooden window 3, the gear and the rack still work, driving 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 passively pulled to the farthest place from the connecting rod A21, at this time, the total scale length of the connecting rod A21 plus the length displayed by the connecting rod B22 is the length of the outer diagonal line.
[0034] It can be understood that the present application is described by some embodiments, and those skilled in the art know that various changes or equivalent replacements can be made to the features and embodiments without departing from the spirit and scope of the present application. In addition, under the guidance of the present application, the features and embodiments can be modified to adapt to specific conditions and materials without departing from the spirit and scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application are within the scope of the present application.
Claims
1. A customized automatic detection device for the inner and outer diagonals of wooden windows, characterized in that: It includes roller table assembly (1) and three-section ruler (2), three-section ruler (2) is installed above roller table assembly (1), Three-section ruler (2) includes connecting rod A (21), connecting rod B (22), connecting rod C (23), positioning assembly (24) and moving assembly (25), connecting rod A (21) and connecting rod C (23) are hinged with roller table assembly (1) respectively, connecting rod A (21) and connecting rod B (22) are all provided with scales, positioning assembly (24) is provided with three, one is arranged on connecting rod A (21), the rest positioning assembly (24) is arranged on connecting rod B (22), and connecting rod A (21) and connecting rod B (22) are hinged through positioning assembly (24), connecting rod B (22) and connecting rod C (23) are hinged through moving assembly (25), Each positioning assembly (24) includes slider A (241), back plate assembly (242), gear (243), rotating motor (244) and moving plate (245), moving plate (245) is L-shaped plate, the base end of slider A (241) is fixedly connected with the vertical end of moving plate (245) on the right side, the side edge of connecting rod A (21) and connecting rod B (22) is provided with guide rail A and corresponding slider A (241) to form movable cooperation, the horizontal end of moving plate (245) is fixedly connected with rotating motor (244) below, the rotating shaft of rotating motor (244) is fixedly connected with gear (243), gear (243) is meshed and connected with the rack channel formed in the middle part of connecting rod A (21) or connecting rod B (22), gear (243) is fixedly connected with connecting shaft (2421) below, back plate assembly (242) is provided with bearing mounting part, connecting shaft (2421) is rotatably connected with back plate assembly (242) through the bearing mounting part, Back plate assembly (242) includes triangular back plate and connecting pad plate, triangular back plate is used for abutting against the window corner of wooden window (3), triangular back plate is fixedly connected with connecting pad plate, and the bearing mounting part is arranged in the connecting pad plate. The middle part of connecting rod A (21) and connecting rod B (22) is provided with a long slot, so that connecting shaft (2421) can pass through, and a rack is arranged on the upper surface of the long slot to form a rack channel.
2. The automatic detection device for inside and outside diagonal lines of customized wooden windows according to claim 1, characterized in that: Moving assembly (25) includes slider B (251), connecting plate C (252) and moving shaft (253), one end of connecting plate C (252) is fixedly connected with the side surface of slider B (251), the other end of connecting plate C (252) is fixedly connected with moving shaft (253), moving shaft (253) is hinged with one end of connecting rod B (22), and the side edge of connecting rod C (23) is provided with guide rail B and is movably connected with slider B (251).
3. The automatic detection device for inside and outside diagonal lines of customized wooden windows according to claim 1, characterized in that: Roller table (13) of roller table assembly (1) is provided with lifting support frame A (11) and lifting support frame B (12) at two opposite corners respectively, which are used for connecting three-section ruler (2).
4. The automatic detection device for inside and outside diagonal lines of customized wooden windows according to claim 1, characterized in that: Lifting support frame A (11) includes air cylinder (111) and connecting plate A (112), the output end of air cylinder (111) is fixedly connected with connecting plate A (112), and the connecting plate A (112) is hinged with connecting rod A (21) of three-section ruler (2) through a hinge shaft.
5. The automatic detection device for inside and outside diagonal lines of customized wooden windows according to claim 4, characterized in that: 6. The automatic detection device for inside and outside diagonal lines of customized wooden windows according to claim 5, characterized in that: The lifting support frame B (12) comprises a fixed plate B (121), a connecting plate B (122), a guide rail C and a sliding block C; the fixed plate B (121) is fixedly connected with a vertical guide rail C; one end of the connecting plate B (122) is slidably connected with the guide rail C through the sliding block C; and the other end of the connecting plate B (122) is hingedly connected with the connecting rod C (23) of the three-section ruler (2) through a hinge shaft.
Citation Information
Patent Citations
Plate length measuring device for metal cabinet production
CN118960578A
Board diagonal detection system and method suitable for gypsum boards of multiple specifications
CN117490635A
Portable folding quadrat measuring device
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