Compatibility checking platform for adjustable board positions
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2026-08-14
AI Technical Summary
[0003]现有的材料传输轨道有一些缺点,轨道两侧的高度不能够调节,无法适配一端高一端低的异性材料,其灵活度不高,导致轨道的使用范围较窄,若是采用特定治具进行装夹,则会增加大量生产成本
[0022]本实用新型的调整部件带动升降板与升降架相对运动来调整移动轨道与固定轨道的相对高度,使得压料组件对固定轨道上的产品一侧进行压料定位,压紧组件对移动轨道上的产品另一侧进行压料定位,使其可以承载两边存在高度差的产品,提供传输轨道两边高度差兼容性,其高度调节方便快捷,无需更需传输轨道零件,降低使用成本;调节组件调节所述固定轨道与移动轨道之间的相对位置,避免人工调节不准确的问题,实现对传输轨道宽度的精确调节。
Smart Images

Figure CN224632530U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of product transmission technology, and to a compatibility inspection platform with an adjustable board position. Background Technology
[0002] In machining processes, it is necessary to process or inspect irregularly shaped sheet materials. During the conveying of these irregular materials, they need to be loaded onto specific fixtures for product transfer, in order to process materials of different specifications.
[0003] Existing material transport tracks have some drawbacks. The height of the two sides of the track cannot be adjusted, making it unsuitable for materials with different shapes that are higher at one end and lower at the other. This limited flexibility restricts the track's application range. Furthermore, using specific fixtures for clamping would significantly increase production costs. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a compatibility inspection platform with an adjustable board position that can support products with height differences on both sides, has convenient and quick height adjustment, and allows for precise adjustment of the width of the transmission track.
[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:
[0006] A compatibility checking platform with adjustable board position, comprising:
[0007] The transport track includes a fixed track and a moving track, wherein the fixed track and the moving track are arranged opposite each other for transporting products;
[0008] A pressing assembly is disposed on the fixed track, and the pressing assembly is used to press and position one side of the product on the fixed track.
[0009] A lifting assembly is disposed on the moving track. The lifting assembly includes a lifting frame, a lifting plate is slidably mounted on the lifting frame, the moving track is disposed on the lifting plate, and an adjustment component is disposed between the lifting frame and the lifting plate. The adjustment component is used to drive the lifting plate and the lifting frame to move relative to each other to adjust the relative height between the moving track and the fixed track.
[0010] A clamping assembly is disposed on the moving track, and the clamping assembly is used to clamp and position the product on the other side of the moving track.
[0011] An adjustment component, connected to the transmission track, is used to adjust the relative position between the fixed track and the moving track.
[0012] In one embodiment of this utility model, a guide rail is provided on the fixed rail, a fixed frame is slidably mounted on the guide rail, the pressing assembly is mounted on the fixed frame, and rotating wheels are provided on both sides of the fixed rail. The two rotating wheels are connected by a synchronous belt, and the synchronous belt is connected to the fixed frame by a fixing member. A drive motor is provided on the fixed rail, and the drive motor is driven to rotate the rotating wheels to drive the pressing assembly on the fixed frame to reciprocate along the guide rail.
[0013] In one embodiment of this utility model, the pressing assembly includes a pressing frame, a lifting bracket slidably mounted on the pressing frame, an upper clamping plate mounted on the lifting bracket, a lifting cylinder mounted on the pressing frame, the lifting cylinder being drivenly connected to the lifting bracket, a lower clamping plate mounted on the pressing frame, the upper clamping plate and the lower clamping plate being disposed opposite to each other, and the lifting cylinder driving the upper clamping plate and the lower clamping plate to move relative to each other to clamp the product.
[0014] In one embodiment of this utility model, a slide rail is provided on the fixed frame, a slider is provided on the pressing frame, the slider slides on the slide rail, the movement direction of the pressing frame is perpendicular to the movement direction of the lifting bracket, and a buffer component is provided between the fixed frame and the pressing frame.
[0015] In one embodiment of this utility model, the buffer component includes two buffer springs, the pressure frame has openings on both sides, the fixing frame has buffer plates on both sides, the buffer springs are disposed between the buffer plates and the openings, and the buffer plates are provided with test sensors for detecting the relative position of the pressure frame and the buffer plates.
[0016] In one embodiment of the present invention, the adjusting component includes an adjusting plate and an adjusting frame. The adjusting plate is disposed on a lifting plate and has an inclined guide groove. The adjusting frame is disposed on the lifting frame and has an adjusting shaft passing through the inclined guide groove. The adjusting shaft is driven and connected to a driver. The adjusting shaft moves along the inclined guide groove to drive the lifting plate connected to the adjusting plate to move up and down.
[0017] In one embodiment of this utility model, a guide rail is provided on the lifting frame, a connecting frame is slidably mounted on the guide rail, an adjusting shaft is mounted on the connecting frame, a fixing block is provided on the lifting frame, a screw is rotatably mounted on the fixing block, one end of the screw passes through a screw hole on the connecting frame, and the other end is provided with a knob. Rotating the knob drives the screw to rotate, so that the connecting frame reciprocates on the guide rail, thereby driving the adjusting shaft to move along the inclined guide groove.
[0018] In one embodiment of this utility model, the adjusting assembly includes an adjusting frame, with adjusting screws rotatably mounted on both sides of the adjusting frame. The free ends of the adjusting screws are connected to bearing seats on a fixed track. Nuts are mounted on the moving track and connected to the adjusting screws. A sliding frame is mounted at the bottom of the moving track and slides on the sliding track. The adjusting screws are driven by an adjusting motor. The sliding direction of the sliding frame on the sliding track is parallel to that of the adjusting screws. The adjusting motor synchronously drives the two adjusting screws to rotate, thereby adjusting the distance between the moving track and the fixed track.
[0019] In one embodiment of this utility model, the moving track includes a moving plate, a moving guide groove is formed on the moving plate, a moving guide plate is provided on the moving guide groove, the moving guide plate and the moving guide groove form a moving channel for transporting products, and a detection sensor for detecting the position of the products on the moving channel is provided on the moving guide plate.
[0020] In one embodiment of this utility model, the pressing assembly includes a pressing frame, which is slidably mounted on the lifting plate. A pressing plate is provided on the pressing frame, and the pressing plate is arranged opposite to the moving track. A pressing cylinder is provided on the lifting plate, and the pressing cylinder is drivenly connected to the pressing frame. The pressing cylinder drives the pressing plate to press and position the product on the moving track.
[0021] The beneficial effects of this utility model are:
[0022] The adjusting component of this invention drives the lifting plate and the lifting frame to move relative to each other, thereby adjusting the relative height between the moving track and the fixed track. This allows the pressing component to press and position the product on one side of the fixed track, and the clamping component to press and position the product on the other side of the moving track. This enables the system to support products with height differences on both sides, providing compatibility for height differences on both sides of the transmission track. The height adjustment is convenient and quick, eliminating the need for additional transmission track parts and reducing operating costs. The adjusting component adjusts the relative position between the fixed track and the moving track, avoiding the problem of inaccurate manual adjustment and achieving precise adjustment of the width of the transmission track. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of a compatibility inspection platform with an adjustable board position according to this utility model.
[0024] Figure 2 This is a schematic diagram of the fixed track of this utility model.
[0025] Figure 3 This is a schematic diagram of the pressing component of this utility model.
[0026] Figure 4 This is a schematic diagram of the buffer component of this utility model.
[0027] Figure 5 This is a schematic diagram of the moving track of this utility model.
[0028] Figure 6 This is a schematic diagram of the clamping component of this utility model.
[0029] The following are the labels in the diagram: 1. Transmission track; 2. Fixed track; 21. Guide track; 22. Fixed frame; 23. Rotary wheel; 24. Synchronous belt; 25. Drive motor; 3. Moving track; 31. Lifting frame; 32. Lifting plate; 33. Moving plate; 34. Moving guide plate; 35. Moving channel; 36. Detection sensor; 4. Adjustment assembly; 41. Adjustment frame; 42. Adjustment screw; 43. Adjustment motor; 44. Nut; 45. Sliding track; 5. Clamping assembly; 51. Clamping plate; 52. Clamping cylinder; 53. Clamping frame; 6. Pressing assembly; 61. Pressing frame; 62. Lifting bracket; 63. Upper clamping plate; 64. Lifting cylinder; 65. Lower clamping plate; 66. Slide rail; 67. Buffer plate; 68. Buffer spring; 69. Test sensor; 7. Adjusting plate; 71. Guide rail; 72. Connecting frame; 73. Fixing block; 74. Screw; 75. Knob; 76. Inclined guide groove; 77. Adjusting shaft. Detailed Implementation
[0030] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, so that those skilled in the art can better understand and implement the present invention. However, the embodiments are not intended to limit the present invention.
[0031] Reference Figure 1-6 As shown, a compatibility checking platform with an adjustable board position includes:
[0032] The transmission track 1 includes a fixed track 2 and a moving track 3, wherein the fixed track 2 and the moving track 3 are arranged opposite to each other for transporting products;
[0033] The pressing component 6 is disposed on the fixed track 2, and the pressing component 6 is used to press and position one side of the product on the fixed track 2.
[0034] A lifting assembly is provided on the moving track 3. The lifting assembly includes a lifting frame 31, a lifting plate is slidably mounted on the lifting frame 31, the moving track 3 is mounted on the lifting plate, and an adjustment component is provided between the lifting frame 31 and the lifting plate. The adjustment component is used to drive the lifting plate and the lifting frame 31 to move relative to each other to adjust the relative height between the moving track 3 and the fixed track 2.
[0035] A pressing component 5 is disposed on the moving track 3. The pressing component 5 is used to press and position the product on the other side of the moving track 3.
[0036] Adjustment component 4 is connected to the transmission track 1, and the adjustment component 4 is used to adjust the relative position between the fixed track 2 and the moving track 3.
[0037] The adjustment component of this utility model drives the lifting plate and the lifting frame 31 to move relative to each other to adjust the relative height of the moving track 3 and the fixed track 2. This allows the pressing component 6 to press and position the product on one side of the fixed track 2, and the pressing component 5 to press and position the product on the other side of the moving track 3. This enables the track 1 to support products with height differences on both sides, providing compatibility for height differences on both sides. The height adjustment is convenient and quick, eliminating the need for additional parts of the moving track 1 and reducing operating costs. The adjustment component 4 adjusts the relative position between the fixed track 2 and the moving track 3, avoiding the problem of inaccurate manual adjustment and achieving precise adjustment of the width of the moving track 1.
[0038] In one embodiment of this utility model, a guide rail 21 is provided on the fixed rail 2, and a fixed frame 22 is slidably mounted on the guide rail 21. The pressing component 6 is mounted on the fixed frame 22. Rollers 23 are provided on both sides of the fixed rail 2, and the two rollers 23 are connected by a synchronous belt 24. The synchronous belt 24 is connected to the fixed frame 22 by a fastener. A drive motor 25 is provided on the fixed rail 2, and the drive motor 25 is driven to rotate the rollers 23, thereby driving the pressing component 6 on the fixed frame 22 to reciprocate along the guide rail 21.
[0039] Specifically, the drive motor 25 drives the rotating wheel 23 to rotate, which in turn drives the synchronous belt 24 to rotate. This causes the fixed frame 22 connected to the synchronous belt 24 to move along the guide rail 21, so that the pressing component 6 on it moves along the guide rail 21 to the product loading position. The pressing component 6 presses and positions the product on one side. The drive motor 25 drives the rotating wheel 23 to rotate, which in turn drives the fixed frame 22 connected to the synchronous belt 24 to move along the guide rail 21, thus conveying the product on the transmission rail 1. This achieves rapid product transfer. The pressing component 6 presses and positions the product, eliminating the need for secondary positioning of the product.
[0040] In one embodiment of this utility model, the pressing assembly 6 includes a pressing frame 61, a lifting bracket 62 slidably mounted on the pressing frame 61, an upper clamping plate 63 mounted on the lifting bracket 62, a lifting cylinder 64 mounted on the pressing frame 61, the lifting cylinder 64 being drivenly connected to the lifting bracket 62, a lower clamping plate 65 mounted on the pressing frame 61, the upper clamping plate 63 and the lower clamping plate 65 being disposed opposite to each other, and the lifting cylinder 64 driving the upper clamping plate 63 and the lower clamping plate 65 to move relative to each other to clamp the product.
[0041] Specifically, the product is located between the upper clamping plate 63 and the lower clamping plate 65. The lifting cylinder 64 drives the upper clamping plate 63 and the lower clamping plate 65 to move relative to each other to clamp the product. It works in conjunction with the clamping assembly 5 to complete the positioning and clamping of the product on both sides, which can quickly perform product processing or surface inspection and avoid the product from shaking during product processing or surface inspection. At the same time, the lifting cylinder 64 drives the upper clamping plate 63 and the lower clamping plate 65 to clamp the product. The drive motor 25 drives the rotating wheel 23 to rotate, which drives the fixed frame 22 connected to the synchronous belt 24 to move along the guide rail 21. This allows the product to be transferred separately without the need for secondary positioning of the product. It also avoids collisions between products on the rail, reduces the material blocking structure and secondary positioning structure in the prior art, and reduces the cost of use.
[0042] In one embodiment of this utility model, a slide rail 66 is provided on the fixed frame 22, a slider is provided on the pressing frame 61, the slider slides on the slide rail 66, the movement direction of the pressing frame 61 is perpendicular to the movement direction of the lifting bracket 62, and a buffer component is provided between the fixed frame 22 and the pressing frame 61.
[0043] Specifically, the movement direction of the pressing frame 61 is perpendicular to the movement direction of the lifting bracket 62. The pressing frame 61 is slidably mounted on the slide rail 66, so that the pressing frame 61 slides relative to the fixed frame 22. Since a buffer component is provided between the fixed frame 22 and the pressing frame 61, problems such as jamming of the product during the transmission process can be effectively avoided.
[0044] In one embodiment of the present invention, the buffer component includes two buffer springs 68, the pressure frame 61 has openings on both sides, the fixing frame 22 has buffer plates 67 on both sides, the buffer springs 68 are disposed between the buffer plates 67 and the openings, and the buffer plates 67 are provided with test sensors 69 for detecting the relative position of the pressure frame 61 and the buffer plates 67.
[0045] Specifically, a buffer spring 68 is provided between the buffer plate 67 of the fixed frame 22 and the pressure frame 61, which can effectively prevent the product from jamming during the transmission process. A test sensor 69 is provided on the buffer plate 67 to detect the relative position of the pressure frame 61 and the buffer plate 67. The test sensor 69 can detect the relative position of the pressure frame 61 and the buffer plate 67 in real time. When the pressure frame 61 is too close to the buffer plate 67 on one side, it can give some feedback to the existing detection system to avoid damage to the equipment and products due to jamming.
[0046] In one embodiment of the present invention, the adjusting component includes an adjusting plate 7 and an adjusting frame. The adjusting plate 7 is disposed on the lifting plate, and an inclined guide groove 76 is provided on the adjusting plate 7. The adjusting frame is disposed on the lifting frame 31, and an adjusting shaft 77 passes through the inclined guide groove 76. The adjusting shaft 77 is driven and connected to a driver. The adjusting shaft 77 moves along the inclined guide groove 76 to drive the lifting plate connected to the adjusting plate 7 to move up and down.
[0047] Specifically, the height of the moving track 3 is adjusted according to the different heights on both sides of the product. Rotating the knob 75 drives the screw 74 on the fixed block 73 to rotate. Since one end of the screw 74 passes through the screw hole of the connecting frame 72, it drives the connecting frame 72 to move along the guide rail 71 towards or away from the fixed block 73. Since the adjusting shaft 77 passes through the inclined guide groove 76, the adjusting shaft 77 moves along the inclined guide groove 76 to drive the lifting plate connected to the adjusting plate 7 to move up and down. The inclined guide groove 76 and the adjusting shaft 77 cooperate to form a cam-like structure, which can convert the left and right movement of the adjusting shaft 77 into the up and down movement of the adjusting plate 7. Since the lifting plate slides on the lifting frame 31, the height of the moving track 3 on it is adjusted so that the height of the moving channel 35 on the moving track 3 is higher than, lower than or equal to the height of the fixed guide groove of the fixed track 2, so as to adapt to the product specifications. The moving track 3 can be actively adjusted in height to meet the needs of track transmission, so that the position of the conveyed product is relatively stable. It can be used for the transmission of various specifications of products and has a wide range of applications.
[0048] In one embodiment of this utility model, a guide rail 71 is provided on the lifting frame 31, a connecting frame 72 is slidably mounted on the guide rail 71, an adjusting shaft 77 is mounted on the connecting frame 72, a fixing block 73 is provided on the lifting frame 31, and a screw 74 is rotatably mounted on the fixing block 73. One end of the screw 74 passes through a screw hole on the connecting frame 72, and the other end is provided with a knob 75. Rotating the knob 75 drives the screw 74 to rotate, so that the connecting frame 72 reciprocates on the guide rail 71, thereby driving the adjusting shaft 77 to move along the inclined guide groove 76.
[0049] Specifically, one end of the screw 74 passes through the screw hole of the connecting frame 72. The inclined guide groove 76 cooperates with the adjusting shaft 77 to form a cam-like structure, which can convert the left and right movement of the adjusting shaft 77 into the up and down movement of the adjusting plate 7. The height of the bearing surface of the moving track 3 is finely adjusted by the screw 74 and the inclined guide groove 76 in cooperation with the adjusting shaft 77, so that the height adjustment of the moving track 3 is more precise. Rotating the knob 75 drives the screw 74 on the fixed block 73 to rotate. Since one end of the screw 74 passes through the screw hole of the connecting frame 72, it drives the connecting frame 72 to move along the guide rail 71 towards or away from the fixed block 73. The height adjustment by rotating the screw 74 can achieve self-locking to ensure the adjustment stability of the moving track 3. Its height adjustment is convenient and quick, without the need for transmission of track 1 parts, reducing the cost of use.
[0050] In one embodiment of this utility model, the adjusting component 4 includes an adjusting frame 41, with adjusting screws 42 rotatably mounted on both sides of the adjusting frame 41. The free ends of the adjusting screws 42 are connected to bearing seats on the fixed track 2. Nuts 44 are provided on the moving track 3 and are connected to the adjusting screws 42. A sliding frame is provided at the bottom of the moving track 3 and slides on the sliding track 45. The adjusting screws 42 are driven and connected to an adjusting motor 43. The sliding direction of the sliding frame on the sliding track 45 is parallel to that of the adjusting screws 42. The adjusting motor 43 synchronously drives the two adjusting screws 42 to rotate to adjust the distance between the moving track 3 and the fixed track 2.
[0051] Specifically, the distance between the fixed track 2 and the moving track 3 is adjusted according to the width of the product. The two adjusting screws 42 between the adjusting frame 41 and the fixed track 2 are synchronously driven by the adjusting motor 43. The rotation of the adjusting screws 42 drives the moving track 3 to move along the sliding frame, thereby adjusting the relative position between the fixed track 2 and the moving track 3. This ensures that the two sides of the product are placed in the fixed guide groove of the fixed track 2 and the moving channel 35 on the moving track 3, respectively. This avoids the problem of inaccurate manual adjustment. The adjusting motor 43, adjusting screws 42 and sliding frame work together with a high synchronization rate to achieve precise adjustment of the width of the transmission track 1, ensuring accurate and faster track width adjustment.
[0052] This utility model can set up multiple transmission tracks 1, and the width of each transmission track 1 can be adjusted by an adjustment component 4 to avoid interference between adjacent transmission tracks 1. It can enable multiple transmission tracks 1 to transmit products of one or more specifications, and has a wide range of applications.
[0053] In one embodiment of the present invention, the moving track 3 includes a moving plate 33, a moving guide groove is provided on the moving plate 33, a moving guide plate 34 is provided on the moving guide groove, the moving guide plate 34 and the moving guide groove form a moving channel 35 for transporting products, and a detection sensor 36 for detecting the position of the products on the moving channel 35 is provided on the moving guide plate 34.
[0054] Specifically, the product is placed on both sides of the fixed guide groove of the fixed track 2 and the moving channel 35 on the moving track 3, respectively. The moving guide plate 34 and the moving guide groove form the moving channel 35 for transferring the product. As the product moves along the fixed track 2 by the pressure assembly 6 driven by the drive motor 25, the product can be guided on this side during the movement, ensuring the directional accuracy of the product transfer and preventing the product from falling off the track. The detection sensor 36 on the moving guide plate 34 can detect the position of the product on the moving channel 35 and provide clamping feedback to the clamping assembly 5, which can quickly clamp the product on the moving track 3 and improve processing efficiency.
[0055] In one embodiment of this utility model, the pressing assembly 5 includes a pressing frame 53, which is slidably mounted on the lifting plate. A pressing plate 51 is provided on the pressing frame 53, and the pressing plate 51 is disposed opposite to the moving track 3. A pressing cylinder 52 is provided on the lifting plate, and the pressing cylinder 52 is drivenly connected to the pressing frame 53. The pressing cylinder 52 drives the pressing plate 51 to press and position the product on the moving track 3.
[0056] Specifically, the clamping cylinder 52 drives the clamping plate 51 to clamp and position one side of the product on the moving track 3. The pressing component 6 clamps and positions one side of the product on the fixed track 2. It works with the pressing component 6 to complete the positioning and clamping of both sides of the product, which can quickly perform product processing or surface inspection, effectively avoid the product from shaking during product processing or surface inspection, and improve processing accuracy.
[0057] Usage process
[0058] Adjust the distance between the fixed track 2 and the moving track 3 according to the width of the product. By adjusting the motor 43, drive the two adjusting screws 42 between the adjusting frame 41 and the fixed track 2 to rotate. The rotation of the adjusting screws 42 drives the moving track 3 to move along the sliding frame, thereby adjusting the relative position between the fixed track 2 and the moving track 3, so that the two sides of the product are placed in the fixed guide groove of the fixed track 2 and the moving channel 35 on the moving track 3, respectively.
[0059] The height of the moving track 3 is adjusted according to the different heights on both sides of the product. The knob 75 is turned to drive the screw 74 on the fixed block 73 to rotate. Since one end of the screw 74 passes through the screw hole of the connecting frame 72, it drives the connecting frame 72 to move along the guide rail 71 towards or away from the fixed block 73. Since the adjusting shaft 77 passes through the inclined guide groove 76, the adjusting shaft 77 moves along the inclined guide groove 76 to drive the lifting plate connected to the adjusting plate 7 to move up and down. The inclined guide groove 76 and the adjusting shaft 77 cooperate to form a cam-like structure, which can convert the left and right movement of the adjusting shaft 77 into the up and down movement of the adjusting plate 7. Since the lifting plate slides on the lifting frame 31, the height of the moving track 3 on it is adjusted so that the height of the moving channel 35 on the moving track 3 is higher than, lower than or equal to the height of the fixed guide groove of the fixed track 2, so as to adapt to the product specifications.
[0060] The product is placed on both sides in the fixed guide groove of the fixed track 2 and the moving channel 35 on the moving track 3, respectively. The synchronous belt 24 is connected to the fixed frame 22 by a fastener. The fixed frame 22 slides on the fixed track 2. The drive motor 25 drives the rotating wheel 23 to rotate, which in turn drives the synchronous belt 24 to rotate. This causes the fixed frame 22 connected to the synchronous belt 24 to move along the guide track 21, so that the pressing assembly 6 on it moves along the guide track 21 to the product loading position. At this time, the product is located between the upper clamping plate 63 and the lower clamping plate 65. The lifting cylinder 64 drives the upper clamping plate 63 and the lower clamping plate 65 to move relative to each other to press the product. After clamping the product, the drive motor 25 drives the rotating wheel 23 to rotate, which in turn drives the fixed frame 22 connected to the synchronous belt 24 to move along the guide rail 21, thereby transferring the product to the clamping assembly 5 on the moving rail 3. The clamping cylinder 52 drives the clamping plate 51 to clamp and position one side of the product on the moving rail 3. At the same time, the lifting cylinder 64 drives the upper clamping plate 63 and the lower clamping plate 65 to move relative to each other to clamp the other side of the product. After the positioning and clamping of both sides of the product is completed, the product can be processed or inspected. After the inspection is completed, the clamping cylinder 52 drives the clamping plate 51 to release one side of the product, and the lifting cylinder 64 drives the upper clamping plate 63 and the lower clamping plate 65 to move relative to each other to clamp the other side of the product. The lower clamping plate 65 continues to clamp the other side of the product. The drive motor 25 drives the rotating wheel 23 to rotate, thereby driving the fixed frame 22 connected to the synchronous belt 24 to move along the guide rail 21, transferring the product to the unloading side of the transmission rail 1 for unloading. This application adjusts the relative height between the moving rail 3 and the fixed rail 2 by adjusting the lifting plate and the lifting frame 31 relative to each other, so that it can carry products with height differences on both sides, making the height difference between the two sides of the transmission rail 1 highly compatible. One end of the screw 74 passes through the screw hole of the connecting frame 72. The inclined guide groove 76 cooperates with the adjusting shaft 77 to form a cam-like structure, which can adjust the adjusting shaft. The left and right movement of the adjustment plate 77 is converted into the up and down movement of the adjustment plate 7. The height of the bearing surface of the moving track 3 is finely adjusted by the screw 74 and the inclined guide groove 76 in cooperation with the adjustment shaft 77, so that the height adjustment of the moving track 3 is more precise. Rotating the knob 75 drives the screw 74 on the fixed block 73 to rotate. Since one end of the screw 74 passes through the screw hole of the connecting frame 72, it drives the connecting frame 72 to move along the guide rail 71 towards or away from the fixed block 73. The height adjustment by rotating the screw 74 can achieve self-locking to ensure the adjustment stability of the moving track 3. Its height adjustment is convenient and quick, without the need to transfer track 1 parts, reducing the cost of use.
[0061] The above-described embodiments are merely preferred embodiments provided to fully illustrate the present invention, and the scope of protection of the present invention is not limited thereto. Equivalent substitutions or modifications made by those skilled in the art based on the present invention are all within the scope of protection of the present invention. The scope of protection of the present invention is defined by the claims.
Claims
1. A compatibility inspection platform with an adjustable board position, characterized in that, include: The transport track includes a fixed track and a moving track, wherein the fixed track and the moving track are arranged opposite each other for transporting products; A pressing assembly is disposed on the fixed track, and the pressing assembly is used to press and position one side of the product on the fixed track. A lifting assembly is disposed on the moving track. The lifting assembly includes a lifting frame, a lifting plate is slidably mounted on the lifting frame, the moving track is disposed on the lifting plate, and an adjustment component is disposed between the lifting frame and the lifting plate. The adjustment component is used to drive the lifting plate and the lifting frame to move relative to each other to adjust the relative height between the moving track and the fixed track. A clamping assembly is disposed on the moving track, and the clamping assembly is used to clamp and position the product on the other side of the moving track. An adjustment component, connected to the transmission track, is used to adjust the relative position between the fixed track and the moving track.
2. The board position adjustable compatibility check platform of claim 1, wherein, A guide rail is provided on the fixed track, and a fixed frame is slidably mounted on the guide rail. The pressing assembly is mounted on the fixed frame. Rollers are provided on both sides of the fixed track, and the two rollers are connected by a synchronous belt. The synchronous belt is connected to the fixed frame by a fastener. A drive motor is provided on the fixed track, and the drive motor is driven to rotate the rollers, thereby driving the pressing assembly on the fixed frame to reciprocate along the guide rail.
3. The board position adjustable compatibility check platform of claim 2, wherein, The pressing assembly includes a pressing frame, a lifting bracket slidably mounted on the pressing frame, an upper clamping plate mounted on the lifting bracket, a lifting cylinder mounted on the pressing frame, the lifting cylinder being drivenly connected to the lifting bracket, a lower clamping plate mounted on the pressing frame, the upper clamping plate and the lower clamping plate being arranged opposite to each other, and the lifting cylinder driving the upper clamping plate and the lower clamping plate to move relative to each other to clamp the product.
4. The board position adjustable compatibility check platform of claim 3, wherein, The fixed frame is provided with a slide rail, and the pressure frame is provided with a slider. The slider slides on the slide rail. The movement direction of the pressure frame is perpendicular to the movement direction of the lifting bracket. A buffer component is provided between the fixed frame and the pressure frame.
5. The board position adjustable compatibility check platform of claim 4, wherein, The buffer component includes two buffer springs, the pressure frame has openings on both sides, the fixed frame has buffer plates on both sides, the buffer springs are disposed between the buffer plates and the openings, and the buffer plates are provided with test sensors for detecting the relative position of the pressure frame and the buffer plates.
6. The board position adjustable compatibility check platform of claim 1, wherein, The adjustment component includes an adjustment plate and an adjustment frame. The adjustment plate is mounted on the lifting plate and has an inclined guide groove. The adjustment frame is mounted on the lifting frame and has an adjustment shaft passing through the inclined guide groove. The adjustment shaft is driven and connected to a driver. The adjustment shaft moves along the inclined guide groove to drive the lifting plate connected to the adjustment plate to move up and down.
7. The board position adjustable compatibility check platform of claim 6, wherein, The lifting frame is equipped with a guide rail, and a connecting frame slides on the guide rail. The adjusting shaft is mounted on the connecting frame. The lifting frame is equipped with a fixing block, and a screw is rotated on the fixing block. One end of the screw passes through a screw hole on the connecting frame, and the other end is equipped with a knob. Rotating the knob drives the screw to rotate, so that the connecting frame reciprocates on the guide rail, thereby driving the adjusting shaft to move along the inclined guide groove.
8. The compatibility checking platform for adjustable board position as described in claim 1, characterized in that, The adjustment assembly includes an adjustment frame with adjustment screws rotating on both sides. The free ends of the adjustment screws are connected to bearing seats on a fixed track. Nuts are provided on the moving track and connected to the adjustment screws. A sliding frame is provided at the bottom of the moving track and slides on the sliding track. The adjustment screws are driven by an adjustment motor. The sliding direction of the sliding frame on the sliding track is parallel to that of the adjustment screws. The adjustment motor synchronously drives the two adjustment screws to rotate to adjust the distance between the moving track and the fixed track.
9. The board position adjustable compatibility check platform of claim 1, wherein, The moving track includes a moving plate with a moving guide groove. A moving guide plate is provided on the moving guide groove. The moving guide plate and the moving guide groove form a moving channel for transporting products. A detection sensor is provided on the moving guide plate for detecting the position of the products on the moving channel.
10. The board position adjustable compatibility check platform of claim 1, wherein, The pressing assembly includes a pressing frame that slides on the lifting plate. A pressing plate is provided on the pressing frame and is positioned opposite to the moving track. A pressing cylinder is provided on the lifting plate and is drivenly connected to the pressing frame. The pressing cylinder drives the pressing plate to press and position the product on the moving track.