Infrared detector
The infrared detection device stabilizes shoes during inspection by using adjustable supports and a spring system to ensure accurate measurements of shoe dimensions and alignment, enhancing the efficiency and precision of shoe fitting inspections.
Patent Information
- Application Number
- CN202422019178.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-08-20
AI Technical Summary
During the infrared detection process of shoes, the shoes are displaced on the base of the detector, affecting the stability and efficiency of the detection.
An infrared detector is designed, including a detector base, a detection bracket, an L-shaped adjustment support block, a slider and an infrared detector. By adjusting the slider and clamping mechanism, the stability of the shoes during the detection process is ensured.
Improves the stability and efficiency of shoe detection, ensuring accurate detection of toe size, inner and outer waist position and heel skew.
Smart Images

Figure CN223094920U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of infrared detection, and more specifically, the utility model relates to an infrared detector. Background Art
[0002] The size comparison of shoes involves the standards of different countries or regions. When comparing the sizes of shoes, it is crucial to understand these different standards and their conversion relationships. The size charts for men's and women's shoes show the foot length ranges corresponding to different sizes, which helps consumers choose the appropriate size according to their foot length. At the same time, after the shoes are produced, it is necessary to check the toe size, the positions of the inner and outer waists of the shoes, and the skewness of the heels, so as to facilitate the shoe matching work. When performing the shoe matching detection, it is necessary to identify the shoes through an infrared detection device, so as to facilitate the staff to visually check the shoes.
[0003] However, when performing infrared inspection on shoes, the staff directly places the shoes on the upper end of the detection base. During the detection, the shoes will displace on the upper end of the detector base, which is likely to affect the stability of the shoe detection and the inspection effect of the staff. Summary of the Utility Model
[0004] In order to overcome the above-mentioned defects of the prior art, the utility model provides an infrared detector. The technical problem to be solved by the utility model is: how to improve the stability and efficiency of shoe inspection and matching.
[0005] To achieve the above purpose, the utility model provides the following technical solution: an infrared detector, including a detector base, on one side of the upper end of which there is a detection bracket. On the side of the upper end of the detector base close to the detection bracket, there is an L-shaped adjustment support block. On one side of the lower end of the detection bracket, there is a support slider. At the lower end of the support slider, there is an L-shaped slider. At the lower end of the L-shaped slider, there is a third infrared detector. At the upper end of the L-shaped slider, there is a concave-shaped adaptation sliding groove. In the middle of the detector base, there is a concave-shaped adjustment groove.
[0006] On one side of the upper end of the detector base, there is a strip-shaped adaptation groove. On one side of the inner end of the concave-shaped adjustment groove, there is a support sliding rod. On the outer end face of the support sliding rod, there is an adjustment slider. On the side of the adjustment slider on the outer end face of the support sliding rod, there is a movable support member. In the middle of the movable support member, there is a support pull rod. On one side of the outer end face of the support sliding rod, there is a return spring.
[0007] In a preferred embodiment, on one side of the inner end of the detection bracket, there is a support plate. On the lower side of the outer end face of the support plate, there is a partition support plate. In the middle of the upper end of the L-shaped adjustment support block, there is a rotation adjustment member.
[0008] The lower end of the rotation adjustment member passes through the end face of the L-shaped adjustment support block and extends to its lower end. An active mounting plate is provided at the lower end of the rotation adjustment member on the L-shaped adjustment support block.
[0009] In a preferred embodiment, a first infrared detector is provided at the lower end of the active mounting plate, a second infrared detector is provided in the middle of the lower end of the detection bracket, and an active scale mark is provided on one side of the upper end of the detection bracket.
[0010] An observation groove is formed on one side of the upper end of the L-shaped slider, and a connecting support rod is provided at the upper end of the adjustment slider. The connecting support rod passes through the inside of the strip-shaped adaptation groove.
[0011] In a preferred embodiment, a clamping plate is provided at the upper end of the connecting support rod in the strip-shaped adaptation groove. The support pull rod passes through the end face of the detector base and extends to its outside. An adjustment handle is provided on the outer end face of the support pull rod outside the detector base.
[0012] The first infrared detector, the second infrared detector, and the third infrared detector are all electrically connected to an external control device. The infrared light sources of the second infrared detector and the third infrared detector are vertically arranged in the top view direction.
[0013] In a preferred embodiment, the number of the L-shaped adjustment support blocks, the rotation adjustment members, and the active mounting plates is two, and they are arranged in a mirror image state on both sides of the vertical central axis in the top view direction of the detector base.
[0014] The number of the support slide rods, the return springs, and the adjustment sliders is two, and they are arranged in a mirror image state outside the vertical center point in the top view direction of the detector base.
[0015] In a preferred embodiment, the support slide rod penetrates through the end faces of the adjustment slider and the active support member. The outer end face of the support slider is adapted to the inner end face of the concave adaptation chute, and the outer end face of the adjustment slider is adapted to the inner end face of the concave adjustment groove.
[0016] The technical effects and advantages of the present utility model:
[0017] In actual use of the present utility model, when the L-shaped slider, the concave-shaped fitting chute and the supporting slider are correspondingly arranged, the position of the L-shaped slider can be conveniently adjusted according to the size of the shoe, thereby increasing the convenience for workers to detect and compare shoes. At the same time, when the adjusting handle, the supporting pull rod, the movable supporting member, the adjusting slider, the supporting slide rod, the return spring, the clamping plate and the connecting support rod are correspondingly arranged, the positions of the adjusting slider and the clamping plate can be conveniently adjusted. The return spring will push against the adjusting slider to facilitate clamping the root of the shoe, thereby effectively increasing the convenience for workers to visually inspect the size of the shoe tip, the positions of the inner and outer waists of the shoe and the inclination of the heel, and thus increasing the accuracy of shoe matching. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic diagram of the overall structure of the present utility model.
[0019] Figure 2 is a schematic front view of the overall structure of the present utility model.
[0020] Figure 3 is a schematic diagram of the sectional connection structure of the adjusting slider of the present utility model.
[0021] Figure 4 is a schematic diagram of the sectional connection structure of the L-shaped slider of the present utility model.
[0022] The reference numerals are: 1 detector base, 2 partition support plate, 3 L-shaped adjusting support block, 4 first infrared detector, 5 movable mounting plate, 6 rotary adjusting member, 7 detection bracket, 8 second infrared detector, 9 L-shaped slider, 10 support plate, 11 adjusting handle, 12 third infrared detector, 13 concave-shaped fitting chute, 14 supporting slider, 15 strip-shaped fitting groove, 16 concave-shaped adjusting groove, 17 supporting pull rod, 18 movable supporting member, 19 adjusting slider, 20 supporting slide rod, 21 return spring, 22 clamping plate, 23 connecting support rod. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] The present utility model provides an infrared detector, as Figure 1 and 2 shown, comprising a detector base 1, on one side of the upper end of which there is a detection bracket 7. On one side of the upper end of the detector base 1 close to the detection bracket 7, there is an L-shaped adjusting support block 3. On one side of the inner end of the detection bracket 7, there is a support plate 10. On the lower side of the outer end face of the support plate 10, there is a partition support plate 2;
[0024] In the middle of the upper end of the L-shaped adjusting support block 3, a rotary adjusting member 6 is provided. The lower end of the rotary adjusting member 6 passes through the end face of the L-shaped adjusting support block 3 and extends to its lower end. An active mounting plate 5 is provided at the lower end of the rotary adjusting member 6 in the L-shaped adjusting support block 3. A first infrared detector 4 is provided at the lower end of the active mounting plate 5. The height of the first infrared detector 4 can be adjusted through the rotary adjusting member 6, so as to facilitate the marking and comparison of the side height of the shoes.
[0025] In the middle of the lower end of the detection bracket 7, a second infrared detector 8 is provided. An active scale mark is provided on one side of the upper end of the detection bracket 7. An observation groove is formed on one side of the upper end of the L-shaped slider 9. It is convenient for the staff to adjust and control the position of the L-shaped slider 9 according to the size of the shoes through the active scale mark and the observation groove. The number of the L-shaped adjusting support blocks 3, the rotary adjusting members 6 and the active mounting plates 5 is two, and they are arranged in a mirror image state on both sides of the vertical central axis in the top view direction of the detector base 1.
[0026] As Figure 3 and 4 As shown, a support slider 14 is provided on one side of the lower end of the detection bracket 7. An L-shaped slider 9 is provided at the lower end of the support slider 14. A third infrared detector 12 is provided at the lower end of the L-shaped slider 9. A concave-shaped fitting chute 13 is formed at the upper end of the L-shaped slider 9. A concave-shaped adjusting groove 16 is formed in the middle of the detector base 1. A strip-shaped fitting groove 15 is formed on one side of the upper end of the detector base 1. A support slide bar 20 is provided on one side of the inner end of the concave-shaped adjusting groove 16.
[0027] An adjusting slider 19 is provided on the outer end face of the support slide bar 20. An active support member 18 is provided on one side of the outer end face of the support slide bar 20 in the adjusting slider 19. A support pull rod 17 is provided in the middle of the active support member 18. A return spring 21 is provided on one side of the outer end face of the support slide bar 20. A connecting support rod 23 is provided at the upper end of the adjusting slider 19. The connecting support rod 23 passes through the inside of the strip-shaped fitting groove 15. A clamping plate 22 is provided at the upper end of the connecting support rod 23 in the strip-shaped fitting groove 15.
[0028] The support pull rod 17 passes through the end face of the detector base 1 and extends to its outside. An adjusting handle 11 is provided on the outer end face of the support pull rod 17 outside the detector base 1. By pulling the adjusting handle 11, the support pull rod 17 and the movable support member 18 can be driven to adjust. When the movable support member 18 is adjusted, the movable support member 18 will push against the adjusting slider 19 to displace, thereby driving the clamping plate 22 to move to one side, so as to facilitate the placement of the shoe. The return spring 21 will push against the adjusting slider 19 to move in the opposite direction, thereby clamping the shoe to ensure the stability during shoe detection. The first infrared detector 4, the second infrared detector 8, and the third infrared detector 12 are all electrically connected to an external control device. The infrared light sources of the second infrared detector 8 and the third infrared detector 12 are arranged vertically in the top view direction;
[0029] The number of the support slide rods 20, the return springs 21, and the adjusting sliders 19 are all two, and they are arranged in a mirror image state outside the vertical center point in the top view direction of the detector base 1. The support slide rods 20 penetrate through the end faces of the adjusting sliders 19 and the movable support members 18. The outer end face of the support slider 14 is adapted to the inner end face of the concave-shaped matching chute 13. The outer end face of the adjusting slider 19 is adapted to the inner end face of the concave-shaped adjusting groove 16.
[0030] The working principle of the present utility model:
[0031] When the present utility model is in use, the staff holds the adjusting handle 11 and then pulls it outward. The adjusting handle 11 will drive the support pull rod 17 and the movable support member 18 to move. Then the movable support member 18 will push against the adjusting slider 19 to move to one side. The staff can place the shoe on the upper end of the detector base 1 and fit the shoe against the end faces of the partition support plate 2 and the support plate 10. Then the staff can release the adjusting handle 11. The return spring 21 will push against the adjusting slider 19 and push it in the reverse direction, so that the clamping plate 22 clamps one end of the shoe. Then the first infrared detector 4, the second infrared detector 8, and the third infrared detector 12 can be driven to work through an external control device, and the L-shaped slider 9 and the support slider 14 can be adjusted to appropriate positions to mark the shoe, so as to facilitate the staff to carry out the detection work of the shoe.
[0032] Finally, the following points should be noted: In the drawings of the disclosed embodiments of the present utility model, only the structures related to the disclosed embodiments are involved. Other structures can refer to the normal design. Without conflict, the same embodiment and different embodiments of the present utility model can be combined with each other;
[0033] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.
Claims
1. An infrared detector, characterized in that, Comprising: A detector base (1), on one side of the upper end of which there is a detection bracket (7). On one side of the upper end of the detector base (1) near the detection bracket (7), there is an L-shaped adjusting support block (3). On one side of the lower end of the detection bracket (7), there is a support slider (14). At the lower end of the support slider (14), there is an L-shaped slider (9). At the lower end of the L-shaped slider (9), there is a third infrared detector (12). On the upper end of the L-shaped slider (9), there is a concave-shaped fitting sliding groove (13). In the middle of the detector base (1), there is a concave-shaped adjusting groove (16); On one side of the upper end of the detector base (1), there is a strip-shaped fitting groove (15). On one side of the inner end of the concave-shaped adjusting groove (16), there is a support slide rod (20). On the outer end face of the support slide rod (20), there is an adjusting slider (19). On one side of the adjusting slider (19) on the outer end face of the support slide rod (20), there is a movable support member (18). In the middle of the movable support member (18), there is a support pull rod (17). On one side of the outer end face of the support slide rod (20), there is a return spring (21).
2. The infrared detector according to claim 1, characterized in that: On one side of the inner end of the detection bracket (7), there is a support plate (10). On the lower side of the outer end face of the support plate (10), there is a partition support plate (2). In the middle of the upper end of the L-shaped adjusting support block (3), there is a rotary adjusting member (6); The lower end of the rotary adjusting member (6) passes through the end face of the L-shaped adjusting support block (3) and extends to its lower end. At the lower end of the rotary adjusting member (6) in the L-shaped adjusting support block (3), there is a movable mounting plate (5).
3. An infrared detector according to claim 2, characterized in that: At the lower end of the movable mounting plate (5), there is a first infrared detector (4). In the middle of the lower end of the detection bracket (7), there is a second infrared detector (8). On one side of the upper end of the detection bracket (7), there is a movable scale mark; On one side of the upper end of the L-shaped slider (9), there is an observation groove. At the upper end of the adjusting slider (19), there is a connecting support rod (23). The connecting support rod (23) passes through the inside of the strip-shaped fitting groove (15).
4. An infrared detector according to claim 3, characterized in that: At the upper end of the strip-shaped fitting groove (15) of the connecting support rod (23), there is a clamping plate (22). The support pull rod (17) passes through the end face of the detector base (1) and extends to its outside. On the outer end face of the support pull rod (17) outside the detector base (1), there is an adjusting handle (11); The first infrared detector (4), the second infrared detector (8) and the third infrared detector (12) are all in an electrically connected state with an external control device. The infrared light sources of the second infrared detector (8) and the third infrared detector (12) are arranged vertically in the top view direction.
5. The infrared detector according to claim 2, characterized in that: The number of the L-shaped adjusting support blocks (3), the rotary adjusting members (6) and the movable mounting plates (5) is two, and they are arranged in a mirror image state on both sides of the vertical central axis in the top view direction of the detector base (1); The number of the support slide rods (20), the return springs (21) and the adjusting sliders (19) is two, and they are arranged in a mirror image state outside the vertical center point in the top view direction of the detector base (1).
6. The infrared detector according to claim 1, characterized in that: The supporting sliding rod (20) is arranged through the end faces of the adjusting slider (19) and the movable supporting member (18). The outer end face of the supporting slider (14) is adapted to the inner end face of the concave-shaped adapted sliding groove (13), and the outer end face of the adjusting slider (19) is adapted to the inner end face of the concave-shaped adjusting groove (16).