Anti-dislocation jig for processing microphone hole of smart wearable device
Patent Information
- Application Number
- CN202522368192.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-07
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-07
AI Technical Summary
然而,现有的加工治具在对智能穿戴设备进行定位时,存在诸多问题
[0011]本实用新型与现有技术相比具有明显的优点和有益效果,具体而言,由上述技术方案可知,通过采用横向调节组件、纵向调节组件和防错位组件实现对智能穿戴设备的精准定位和防错位功能;横向调节组件和纵向调节组件的设置,使得治具能够适应不同尺寸和形状的智能穿戴设备加工过程中的位置要求;防错位组件中的导向装置和容置槽、定位槽的设计,有效提高了定位的准确性和稳定性。抵接板的可拆卸设计方便了维护和更换,适用不同的智能穿戴设备,整个治具结构紧凑、操作简单、定位精准,能够满足智能穿戴设备麦克风孔加工的需求。
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Figure CN224795531U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of jigs for processing smart wearable devices, and in particular to an anti-misalignment jig for processing microphone holes in smart wearable devices. Background Technology
[0002] In the manufacturing process of smart wearable devices, the machining accuracy of the microphone hole is crucial, directly affecting the sound collection performance. However, existing machining fixtures have several problems in positioning smart wearable devices. The positioning accuracy of existing fixtures is insufficient, making it difficult to guarantee the accurate positioning of the smart wearable device during processing. This can easily lead to deviations in the microphone hole's machining position, affecting product quality. Furthermore, existing fixtures lack effective anti-misalignment measures, which may cause positional shifts during device installation and adjustment, resulting in misalignment during processing and increasing the defect rate. Therefore, there is an urgent need to develop an anti-misalignment fixture for machining microphone holes in smart wearable devices to meet practical application requirements. Utility Model Content
[0003] In view of this, the present invention addresses the deficiencies of the existing technology and its main objective is to provide an anti-misalignment fixture for processing microphone holes in smart wearable devices. By employing a horizontal adjustment component, a vertical adjustment component, and an anti-misalignment component, it achieves precise positioning of the smart wearable device, effectively preventing misalignment during processing and improving the processing accuracy of the microphone hole.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a misalignment prevention fixture for processing microphone holes in smart wearable devices, comprising a base plate, a horizontal adjustment component, a vertical adjustment component, and a misalignment prevention component. The horizontal adjustment component is mounted on the base plate, the vertical adjustment component is mounted on the output end of the horizontal adjustment component, and the misalignment prevention component is mounted on the output end of the vertical adjustment component. The misalignment prevention component includes an abutment, an misalignment prevention drive device, and a positioning push block for positioning the smart wearable device. The abutment is mounted on the output end of the vertical adjustment component; the misalignment prevention drive device is mounted on the output end of the vertical adjustment component; and the positioning push block is mounted on the output end of the misalignment prevention drive device. The positioning push block movably positions the smart wearable device between the abutment and the positioning push block.
[0005] As a preferred embodiment: a guide device is provided between the abutment seat and the positioning push block. The guide device includes a guide post and a guide sleeve. The guide post is laterally connected between the abutment seat and the positioning push block. The positioning push block is fastened to the outside of the guide sleeve. The positioning push block is slidably located on the guide post through the guide sleeve.
[0006] As a preferred embodiment: the guiding device consists of two sets, which are vertically distributed between the abutment seat and the positioning push block; the abutment seat corresponds to the positioning push block.
[0007] As a preferred embodiment: the abutment includes a mounting plate and an abutment plate, the mounting plate being securely mounted to the output end of the longitudinal adjustment assembly, and the abutment plate being detachably mounted to the mounting plate by bolts.
[0008] As a preferred embodiment: the abutment plate is provided with a receiving groove for accommodating the edge position of the smart wearable device, and the positioning push block is provided with a positioning groove corresponding to the edge position of the smart wearable device, and the edge position of the smart wearable device is positioned between the abutment plate and the positioning push block.
[0009] As a preferred embodiment: the lateral adjustment assembly includes a lateral adjustment rod and a lateral sliding plate, the lateral adjustment rod is mounted on the base plate, the lateral sliding plate is rotatably engaged with the lateral adjustment rod, and the longitudinal adjustment assembly is mounted on the lateral sliding plate.
[0010] As a preferred embodiment: the longitudinal adjustment assembly includes a longitudinal adjustment rod and a longitudinal sliding plate. The longitudinal adjustment rod is mounted on the transverse sliding plate, and the longitudinal sliding plate is rotatably engaged with the longitudinal adjustment rod. The anti-misalignment assembly is mounted on the longitudinal sliding plate. Both the transverse and longitudinal sliding plates are provided with connecting holes for connection.
[0011] Compared with existing technologies, this utility model has significant advantages and beneficial effects. Specifically, as can be seen from the above technical solution, the precise positioning and anti-misalignment functions of the smart wearable device are achieved by employing a horizontal adjustment component, a vertical adjustment component, and an anti-misalignment component. The horizontal and vertical adjustment components allow the fixture to adapt to the positional requirements of smart wearable devices of different sizes and shapes during processing. The guide device, receiving groove, and positioning groove design in the anti-misalignment component effectively improve the accuracy and stability of positioning. The detachable design of the abutment plate facilitates maintenance and replacement, is suitable for different smart wearable devices, and the entire fixture has a compact structure, is simple to operate, and provides precise positioning, meeting the requirements for processing microphone holes in smart wearable devices.
[0012] To more clearly illustrate the structural features and effects of this utility model, the following detailed description is provided in conjunction with the accompanying drawings and specific embodiments. Attached Figure Description
[0013] Figure 1 is a first-view perspective three-dimensional structural diagram of an anti-misalignment fixture for processing microphone holes in a smart wearable device according to the present invention. Figure 2 is a second-view perspective three-dimensional structural diagram of an anti-misalignment fixture for processing microphone holes in a smart wearable device according to the present invention. Figure 3 is a three-dimensional structural diagram of the main body (excluding the base plate) of an anti-misalignment fixture for processing microphone holes in a smart wearable device according to this utility model. Figure 4 is an enlarged view of point M in Figure 2 of this utility model.
[0014] Explanation of reference numerals in the attached diagram: In the diagram: 10. Base plate; 20. Lateral adjustment assembly; 21. Lateral adjustment rod; 22. Lateral sliding plate; 30. Longitudinal adjustment assembly; 31. Longitudinal adjustment rod; 32. Longitudinal sliding plate; 321. Connecting hole; 40. Anti-misalignment assembly; 41. Abutment seat; 411. Mounting plate; 412. Abutment plate; 4121. Receiving groove; 42. Anti-misalignment drive device; 43. Positioning push block; 431. Positioning groove; 50. Guide device; 51. Guide post; 52. Guide sleeve. Detailed Implementation
[0015] As shown in Figures 1 to 4, this utility model discloses an anti-misalignment fixture for processing microphone holes in smart wearable devices, comprising a base plate 10, a horizontal adjustment component 20, a vertical adjustment component 30, and an anti-misalignment component 40, wherein: The lateral adjustment component 20 is mounted on the base plate 10, the longitudinal adjustment component 30 is mounted on the output end of the lateral adjustment component 20, and the anti-misalignment component 40 is mounted on the output end of the longitudinal adjustment component 30. The anti-misalignment component 40 includes an abutment seat 41, an anti-misalignment drive device 42, and a positioning push block 43 for positioning the smart wearable device. The abutment seat 41 is mounted on the output end of the longitudinal adjustment component 30. The anti-misalignment drive device 42 is mounted on the output end of the longitudinal adjustment component 30. The positioning push block 43 is mounted on the output end of the anti-misalignment drive device 42. The positioning push block 43 can movably position the smart wearable device between the abutment seat 41 and the positioning push block 43. The anti-misalignment drive device 42 is an anti-misalignment drive cylinder.
[0016] A guide device 50 is provided between the abutment seat 41 and the positioning push block 43. The guide device 50 includes a guide post 51 and a guide sleeve 52. The guide post 51 is laterally connected between the abutment seat 41 and the positioning push block 43. The positioning push block 43 is fastened to the outside of the guide sleeve 52. The positioning push block 43 is slidably located on the guide post 51 through the guide sleeve 52.
[0017] The guide device 50 consists of two sets, which are vertically distributed between the abutment seat 41 and the positioning push block 43; the abutment seat 41 corresponds to the positioning push block 43.
[0018] The abutment 41 includes a mounting plate 411 and an abutment plate 412. The mounting plate 411 is fastened to the output end of the longitudinal adjustment assembly 30, and the abutment plate 412 is detachably mounted on the mounting plate 411 by bolts.
[0019] The abutment plate 412 is provided with a receiving groove 4121 for accommodating the edge position of the smart wearable device, and the positioning push block 43 is provided with a positioning groove 431 corresponding to the edge position of the smart wearable device. The edge position of the smart wearable device is positioned between the abutment plate 412 and the positioning push block 43.
[0020] The lateral adjustment assembly 20 includes a lateral adjustment rod 21 and a lateral slide plate 22. The lateral adjustment rod 21 is mounted on the base plate 10, and the lateral slide plate 22 is rotatably engaged with the lateral adjustment rod 21. The longitudinal adjustment assembly 30 is mounted on the lateral slide plate 22.
[0021] The longitudinal adjustment assembly 30 includes a longitudinal adjustment rod 31 and a longitudinal sliding plate 32. The longitudinal adjustment rod 31 is mounted on the transverse sliding plate 22, and the longitudinal sliding plate 32 is rotatably engaged with the longitudinal adjustment rod 31. The anti-misalignment assembly 40 is mounted on the longitudinal sliding plate 32. Both the transverse sliding plate 22 and the longitudinal sliding plate 32 are provided with connecting holes 321 for connecting purposes.
[0022] Through the cooperation of the abutment seat 41 and the positioning push block 43, and the positioning of the edge position of the smart wearable device by the receiving groove 4121 and the positioning groove 431, the smart wearable device can be accurately positioned, ensuring the processing accuracy of the microphone hole.
[0023] Guide device 50: Guide post 51 is laterally connected between abutment seat 41 and positioning push block 43. Positioning push block 43 is slidably located on guide post 51 through guide sleeve 52, which can ensure that positioning push block 43 moves along a predetermined lateral path during movement, avoiding deviation, so that positioning push block 43 can accurately cooperate with abutment seat 41 to position smart wearable devices, thereby improving positioning accuracy.
[0024] Two sets of guide devices 50 are vertically distributed between the abutment seat 41 and the positioning push block 43, constraining the movement of the positioning push block 43 from two different positions, further enhancing the stability of the positioning push block 43 during movement, preventing it from shaking or tilting during movement, and ensuring the reliability of the fixture during operation.
[0025] The mounting plate 411 of the abutment seat 41 is securely mounted to the output end of the longitudinal adjustment assembly 30, providing a stable mounting base for the entire abutment seat 41. The abutment plate 412 is detachably mounted on the mounting plate 411 by bolts. When the abutment plate 412 wears or is damaged due to long-term use, it can be easily disassembled and replaced, reducing maintenance costs and difficulty and increasing the service life of the fixture. The receiving groove 4121 provided on the abutment plate 412 can be adapted to the edge position of the smart wearable device. During the positioning process, the receiving groove 4121 can play a preliminary positioning and limiting role for the smart wearable device, enabling the smart wearable device to be accurately placed on the abutment seat 41, providing a foundation for subsequent precise positioning.
[0026] The positioning groove 431 on the positioning push block 43 corresponds to the edge position of the smart wearable device. When the positioning push block 43 moves towards the abutment seat 41 and comes into contact with the smart wearable device, the positioning groove 431 can fit tightly with the edge of the smart wearable device, which further improves the positioning accuracy of the smart wearable device and ensures that it will not be displaced during the processing.
[0027] The lateral adjustment rod 21 of the lateral adjustment assembly 20 is mounted on the base plate 10. The lateral slide plate 22 is rotatably engaged with the lateral adjustment rod 21. By rotating the lateral adjustment rod 21, the lateral slide plate 22 can move laterally on the base plate 10. This design allows the fixture to flexibly adjust the position of the anti-misalignment assembly 40 in the lateral direction according to smart wearable devices of different sizes and shapes, improving the fixture's versatility and adaptability. The longitudinal adjustment rod 31 of the longitudinal adjustment assembly 30 is mounted on the lateral slide plate 22. The longitudinal slide plate 32 is rotatably engaged with the longitudinal adjustment rod 31. By rotating the longitudinal adjustment rod 31, the longitudinal slide plate 32 can move longitudinally on the lateral slide plate 22. Combined with the lateral adjustment assembly 20, the position of the anti-misalignment assembly 40 can be precisely adjusted in both the lateral and longitudinal directions to meet the processing requirements of different smart wearable devices. Both the lateral slide plate 22 and the longitudinal slide plate 32 are provided with connecting holes 321, which can be used to fix the adjusted lateral slide plate 22 and longitudinal slide plate 32 in their positions.
[0028] Anti-misalignment function: The guide device 50 allows the positioning push block 43 to slide along the guide post 51 during movement, effectively preventing misalignment during positioning and improving the accuracy and stability of processing.
[0029] Flexible adjustment: The design of the horizontal adjustment component 20 and the vertical adjustment component 30 allows for horizontal and vertical position adjustment according to smart wearable devices of different sizes and shapes, improving the versatility and adaptability of the fixture.
[0030] Easy to maintain: The abutment plate 412 is detachably mounted on the mounting plate 411 by bolts, which facilitates the replacement and maintenance of the abutment plate 412. It also makes it easy to select different abutment plates 412 according to different models of smart wearable devices, which has a wide range of applications and reduces the cost of use.
[0031] Based on the size and shape of the smart wearable device, rotate the horizontal adjustment rod 21 and the vertical adjustment rod 31 to adjust the positions of the horizontal sliding plate 22 and the vertical sliding plate 32 respectively, so that the anti-misalignment component 40 reaches the appropriate processing position; place the smart wearable device in the receiving groove 4121 of the abutment plate 412, so that its edge position is adapted to the receiving groove 4121. Activate the anti-misalignment drive device 42 to drive the positioning push block 43 to move along the guide post 51 towards the abutment seat 41. The positioning groove 431 of the positioning push block 43 fits against the edge position of the smart wearable device, positioning the smart wearable device between the abutment seat 41 and the positioning push block 43. After the smart wearable device is positioned, perform the microphone hole processing operation. After processing is completed, control the anti-misalignment drive device 42 to drive the positioning push block 43 away from the abutment seat 41, release the positioning of the smart wearable device, and remove the processed smart wearable device.
[0032] The usage method and principle of this anti-misalignment fixture for processing microphone holes in smart wearable devices are as follows: Based on the size and processing requirements of the smart wearable device to be processed, operate the horizontal adjustment component and the vertical adjustment component. The horizontal adjustment component will drive the vertical adjustment component installed at its output end to move horizontally, and the vertical adjustment component will drive the anti-misalignment component installed at its output end to move vertically, further precisely adjusting the position of the anti-misalignment component in the vertical direction to ensure that the anti-misalignment component can accurately meet the positional requirements during microphone hole processing. Place the smart wearable device to be processed between the abutment seat and the positioning push block to initially determine its position. Activate the anti-misalignment drive device, which starts working and drives the positioning push block to move. The positioning push block gradually approaches the abutment seat until the edge of the smart wearable device is tightly positioned between the abutment seat and the positioning push block, ensuring that the smart wearable device will not shift during processing. After the smart wearable device is accurately and stably positioned, perform the microphone hole processing operation on the smart wearable device.
[0033] The key design feature of this invention lies in achieving precise positioning and anti-misalignment functions for smart wearable devices through the use of lateral adjustment components, longitudinal adjustment components, and anti-misalignment components. The lateral and longitudinal adjustment components allow the fixture to adapt to the positional requirements of smart wearable devices of different sizes and shapes during processing. The guide device, receiving groove, and positioning groove design in the anti-misalignment component effectively improve the accuracy and stability of positioning. The detachable design of the abutment plate facilitates maintenance and replacement, making it suitable for different smart wearable devices. The entire fixture has a compact structure, is simple to operate, and provides precise positioning, meeting the requirements for processing microphone holes in smart wearable devices.
[0034] The above description is merely a preferred embodiment of the present utility model and does not constitute any limitation on the technical scope of the present utility model. Therefore, any minor modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present utility model shall still fall within the scope of the technical solution of the present utility model.
Claims
1. A misalignment prevention fixture for processing microphone holes in smart wearable devices, characterized in that: The device includes a base plate, a lateral adjustment component, a longitudinal adjustment component, and an anti-misalignment component. The lateral adjustment component is mounted on the base plate, the longitudinal adjustment component is mounted on the output end of the lateral adjustment component, and the anti-misalignment component is mounted on the output end of the longitudinal adjustment component. The anti-misalignment component includes an abutment seat, an anti-misalignment drive device, and a positioning push block for positioning the smart wearable device. The abutment seat is mounted on the output end of the longitudinal adjustment component. The anti-misalignment drive device is installed at the output end of the longitudinal adjustment component; the positioning push block is installed at the output end of the anti-misalignment drive device; the positioning push block can move and position the smart wearable device between the abutment seat and the positioning push block.
2. The anti-misalignment fixture for processing microphone holes in smart wearable devices according to claim 1, characterized in that: A guide device is provided between the abutment seat and the positioning push block. The guide device includes a guide post and a guide sleeve. The guide post is laterally connected between the abutment seat and the positioning push block. The positioning push block is fastened to the outside of the guide sleeve. The positioning push block is slidably located on the guide post through the guide sleeve.
3. The anti-misalignment fixture for processing microphone holes in smart wearable devices according to claim 2, characterized in that: The guiding device consists of two sets, which are vertically distributed between the abutment seat and the positioning push block; the abutment seat corresponds to the positioning push block.
4. The anti-misalignment fixture for processing microphone holes in smart wearable devices according to claim 1, characterized in that: The abutment includes a mounting plate and an abutment plate. The mounting plate is fastened to the output end of the longitudinal adjustment assembly, and the abutment plate is detachably mounted on the mounting plate by bolts.
5. The anti-misalignment fixture for processing microphone holes in smart wearable devices according to claim 4, characterized in that: The abutment plate is provided with a receiving groove for accommodating the edge position of the smart wearable device, and the positioning push block is provided with a positioning groove corresponding to the edge position of the smart wearable device. The edge position of the smart wearable device is positioned between the abutment plate and the positioning push block.
6. The anti-misalignment fixture for processing microphone holes in smart wearable devices according to claim 1, characterized in that: The lateral adjustment assembly includes a lateral adjustment rod and a lateral sliding plate. The lateral adjustment rod is mounted on the base plate, and the lateral sliding plate is rotatably engaged with the lateral adjustment rod. The longitudinal adjustment assembly is mounted on the lateral sliding plate.
7. The anti-misalignment fixture for processing microphone holes in smart wearable devices according to claim 1, characterized in that: The longitudinal adjustment assembly includes a longitudinal adjustment rod and a longitudinal sliding plate. The longitudinal adjustment rod is mounted on the transverse sliding plate, and the longitudinal sliding plate is rotatably engaged with the longitudinal adjustment rod. The anti-misalignment assembly is mounted on the longitudinal sliding plate. Both the transverse and longitudinal sliding plates have connecting holes for connection.