Foot arch recognition protection structure
By setting side panel components on both sides of the base assembly of the arch detection equipment, providing handrail structures and transparent guard plates, the problem of unstable standing of the person to be tested in the existing equipment is solved, the inspection quality and safety are improved, and the inspection needs of many years are met.
Patent Information
- Application Number
- CN202421083468.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-17
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-05-17
AI Technical Summary
Existing foot arch detection equipment is difficult to keep children, adolescents, and the elderly standing still, resulting in unstable detection and risk of falling, which cannot meet the actual testing needs.
An arch identification protective structure is designed, including a side plate assembly, an imaging assembly and a base assembly. The side plate assembly is arranged on both sides of the base assembly, providing a handrail structure to help the person to be tested stand more stable, and the structural strength and protective effect are improved through transparent guard plates and side plate decorative plates.
Through the design of the side panel assembly, the standing stability of the person to be tested is improved, the inspection quality and efficiency are enhanced, and the protection function is provided to avoid the risk of falling and meet the actual inspection needs.
Smart Images

Figure CN222955428U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of arch recognition, and particularly relates to an arch recognition protection structure. Background Art
[0002] The arched structure has elasticity. During walking, the arch can absorb and buffer the shock during walking. If the development is not properly guided, it may lead to the phenomenon of poor arch development, that is, flat foot symptoms. When the bones of a child's foot gradually develop into shape and the bone gaps decrease, the flat foot symptoms will be permanently formed, which will greatly reduce the body's motor ability.
[0003] The arch detectors are usually children and adolescents, as well as young and old people. Existing arch testing devices require the person to be tested to stand on the base panel for a period of time to facilitate image collection. For example, the Chinese invention patent with the publication number CN115474742B provides an arch measurement method and an insole customization method mainly based on the arch coefficient, and collects the sole images of the left and right feet through two high-definition image collection cameras arranged inside the image collection device.
[0004] For existing arch detection devices, it is relatively difficult for children, adolescents and the elderly to stand still. At the same time, due to the unstable standing situation of children or the elderly during the standing process, it is easy to fall from the standing base and cause physical injuries. Therefore, it cannot meet the actual detection needs. Summary of the Utility Model
[0005] The purpose of the utility model is to provide an arch recognition protection structure to solve the problem that the current arch recognition device cannot protect the tester.
[0006] To achieve the above purpose, the utility model provides the following technical solutions:
[0007] An arch recognition protection structure includes a side plate assembly, an imaging assembly and a base assembly;
[0008] The imaging assembly is arranged inside the base assembly, the side plate assemblies are arranged on the opposite sides of the base assembly, and the side plate assemblies are located outside the imaging assembly.
[0009] Further defined, the side plate assembly includes an outer side plate, a side plate reinforcement plate and a side plate inner cover connected in sequence;
[0010] The outer side plate, the side plate reinforcement plate and the side plate inner cover are all connected to the base assembly.
[0011] Further defined, the side plate assembly further includes a transparent protection plate and a side plate decorative plate;
[0012] The outer end face of the transparent protective plate extends through the side plate reinforcement plate to the outside of the outer side plate, and the inner end face of the transparent protective plate communicates with the outside of the inner side plate cover through the side plate decorative plate.
[0013] Further defined, the side plate assembly further includes a handrail disposed outside the inner side plate cover. The handrail is vertically arranged, located outside the standing panel. The bottom end of the handrail is connected to the middle position of the corresponding side end of the base assembly, and the top end of the handrail is bent to the periphery of the inner side plate cover and is respectively connected to the inner side plate cover and the side plate decorative plate.
[0014] Further defined, the base assembly includes an upper base and a base plate disposed at the bottom of the upper base. Both the outer side plate and the side plate reinforcement plate are located outside the upper base and are connected to the side of the upper base. The inner side plate cover is located on the top of the upper base and is connected to the top of the upper base. The bottom end of the handrail is connected to the top of the upper base;
[0015] The standing panel is disposed on the top of the upper base, and the imaging assembly is disposed between the standing panel and the base plate.
[0016] Further defined, the base assembly further includes anti-slip foot pads;
[0017] The upper base has a convex structure. The upper surface of the upper base includes a connected second stepped surface and a first stepped surface lower than the second stepped surface. The first stepped surface is located on the opposite sides of the second stepped surface. The standing panel is disposed on the upper end surface of the second stepped surface. The bottom end of the handrail and the bottom end of the inner side plate cover are both connected to the upper end surface of the second stepped surface;
[0018] The anti-slip foot pads are disposed on the upper end surface of the first stepped surface, and the anti-slip strips are disposed at the bottom of the base plate.
[0019] Further defined, the base assembly further includes anti-slip strips, and the anti-slip strips are disposed at the bottom of the base plate.
[0020] Further defined, the handrail includes a vertical section, an inclined section, and a bent section connected in sequence. The bottom of the vertical section is connected to the upper base, and the bent section is respectively connected to the inner side plate cover and the side plate decorative plate.
[0021] Further defined, the ratio of the vertical height of the vertical section to the vertical height of the inclined section is 1:0.3 - 0.32, and the angle between the inclined section and the horizontal direction is 60° - 65°.
[0022] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0023] The utility model improves the detection quality and efficiency by setting side plate components on both sides of the base component and arranging the side plate components on both sides of the imaging component. When the person to be detected stands on the imaging component, they can hold the side plate components, making their standing more stable. At the same time, by setting the side plate components, the person to be detected can be protected and supported, preventing them from falling when they stand unsteadily, thereby improving the detection safety of the person to be detected and meeting the actual detection requirements. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 FIG. is a schematic diagram of the overall structure of the arch development detection device of the utility model disassembled;
[0025] Figure 2 FIG. is a schematic diagram of the structure of the side plate component of the utility model;
[0026] Figure 3 FIG. is a schematic diagram of the structure of the inner cover of the side plate of the utility model;
[0027] Figure 4 FIG. is a schematic diagram of the armrest size of the utility model;
[0028] Figure 5 FIG. is a schematic diagram of the connection between the base component and the side plate component of the utility model;
[0029] Figure 6 FIG. is a schematic diagram of the structure of the base component of the utility model;
[0030] Figure 7 FIG. is a schematic diagram of the overall structure of the base steel frame of the utility model;
[0031] Figure 8 FIG. is a schematic diagram of the connection between the side plate component and the base steel frame of the utility model;
[0032] Figure 9 FIG. is a schematic diagram of the connection between the base steel frame and the base component of the utility model;
[0033] In the figure: 100 - side plate component; 110 - outer side plate; 120 - side plate reinforcement plate; 130 - transparent protection plate; 140 - side plate decorative plate; 150 - inner cover of the side plate; 151 - armrest mounting hole; 160 - armrest; 161 - vertical section; 162 - inclined section; 163 - bent section; 200 - imaging component; 300 - base component; 301 - standing panel; 310 - upper base; 311 - first stepped surface; 312 - second stepped surface; 320 - base plate; 330 - anti-slip foot pad; 340 - anti-slip strip; 400 - base steel frame; 410 - bottom support; 420 - frame support; 430 - support column. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0034] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0035] Embodiment 1
[0036] Reference Figure 1 , this embodiment provides an arch recognition and protection structure, including a side plate assembly 100, an imaging assembly 200 and a base assembly 300. The imaging assembly 200 is arranged in the base assembly 300. A unidirectionally transparent standing panel 301 for standing is arranged on the base assembly 300. The standing panel 301 is located above the imaging assembly 200. The imaging assembly 200 collects the arch images on the standing panel 301 and identifies them through conventional methods. The side plate assembly 100 is connected and arranged on the opposite sides of the base assembly 300, that is, the number of the side plate assemblies 100 is two. When the person to be detected stands on the standing panel 301 during actual use, the side plate assembly 100 is used for support, ensuring the stable progress of arch detection. At the same time, it can also prevent the person to be detected from falling due to unstable standing, improving the safety and reliability of arch detection.
[0037] Further explanation is made by taking the example that two side plate assemblies 100 are correspondingly installed on both sides of the long side of the base assembly 300. At this time, it is considered that the side plate assemblies 100 are installed on the left and right end faces of the base assembly 300, and the left and right ends of the base assembly 300 are open.
[0038] Specifically, the side plate assembly 100 includes an outer side plate 110, a side plate reinforcement plate 120 and a side plate inner cover 150 connected in sequence. To ensure reliable connection, a plurality of screws are arranged to pass through the side plate reinforcement plate 120 from the outer side plate 110 and connect with the side plate inner cover 150.
[0039] The outer side plate 110 is arranged on the outermost side. A runway circular convex platform is arranged on the outer surface of the outer side plate 110. The cross section of the runway circular convex platform is in a V-shaped bend, making the overall strength of the outer side plate 110 higher. Similarly, the surface of the outer side plate 110 is smoother, reducing edges and corners to avoid bumping the person to be detected.
[0040] The side plate reinforcement plate 120 is used to improve the structural strength of the side plate assembly 100. Preferably, the outer side plate 110 and the side plate reinforcement plate 120 are disposed on the left and right end faces of the base assembly 300 and are detachably connected to the corresponding end faces of the base assembly 300, while the side plate inner cover 150 is disposed on the top of the base assembly 300 and is connected to the top of the base assembly 300, that is, the bottom ends of the outer side plate 110 and the side plate reinforcement plate 120 extend to the bottom of the base assembly 300, thereby improving the integrity of the structure.
[0041] In the present utility model, a side plate reinforcement plate 120 is disposed between the outer side plate 110 and the side plate inner cover 150, and at the same time, both are connected to the base assembly 300, aiming to increase the overall structural strength of the side plate assembly 100 and also facilitate disassembly, maintenance and transportation.
[0042] Reference Figure 2 , for further illustration, the side plate assembly 100 further includes a transparent protection plate 130 and a side plate decorative plate 140. The transparent protection plate 130 can be selected as a runway circle structure made of acrylic material. At the same time, a flanging is provided on the peripheral side of the transparent protection plate 130, and the flanging of the transparent protection plate 130 is clamped between the side plate reinforcement plate 120 and the side plate decorative plate 140. At this time, a hole matching the transparent protection plate 130 is opened on the outer side plate 110 and the side plate reinforcement plate 120, so that the outer end face of the transparent protection plate 130 passes through the side plate reinforcement plate 120 and extends to the outside of the outer side plate 110; correspondingly, holes matching the transparent protection plate 130 are also opened on the side plate decorative plate 140 and the side plate inner cover 150, so that the inner end face of the transparent protection plate 130 is communicated with the outside. The inner walls of the transparent protection plates 130 in the two side plate assemblies 100 are disposed opposite to each other. The arch detection enables the person to be detected to be located between the two transparent protection plates 130. The transparent protection plate 130 increases its structural strength by providing a flanging. At the same time, the transparent protection plate 130 is a groove structure, so that after the person to be detected falls, the person to be detected can be buffered and direct collision with the flat plate can be avoided. By providing the transparent protection plate 130, on the one hand, the imaging quality is prevented from being affected by a shadow on the imaging component 200, and on the other hand, the concave transparent protection plate 130 can effectively protect the person to be detected.
[0043] The lower end of the transparent protection plate 130 is located outside the base assembly 300 and extends to the bottom of the base assembly 300, but the transparent protection plate 130 is higher than the connection position between the outer side plate 110 and the bottom of the base assembly 300. The connection method is simple, convenient for disassembly and installation, and convenient for transportation and maintenance.
[0044] Reference Figure 3, Further explanation, in order to further improve the protection and safety during arch detection, the side plate assembly 100 further includes an armrest 160. The armrest 160 is arranged inside the inner side cover 150 of the side plate. The number of armrests 160 is also set to two, and the two armrests 160 are also arranged on the left and right sides of the base assembly 300, facilitating the stable standing of the person to be detected, which can not only ensure the imaging quality but also improve the acquisition efficiency of the arch image.
[0045] Specifically, referring to Figure 3 , an armrest mounting hole 151 is provided on the circumferential side of the inner side cover 150 of the side plate. The top end of the armrest 160 passes through the armrest mounting hole 151 and is connected to the side plate decorative plate 140 to improve the connection stability. The bottom end of the armrest 160 is bent to the middle position of the side plate of the base assembly 300 and connected to the top of the base assembly 300 to ensure the connection reliability of the armrest 160, enabling it to provide more reliable support for the person to be detected during use.
[0046] Among them, the armrest 160 includes a vertical section 161, an inclined section 162, and a bent section 163 that are connected in sequence. The vertical section 161 is vertically arranged, and its bottom is connected to the top of the base assembly 300. The included angle between the inclined section 162 and the horizontal direction is 60° - 65°. Preferably, the inclined section 162 extends upward at an angle of 62° to the side of the inner side cover 150 of the side plate. The bent section 163 is horizontally arranged and passes through the armrest mounting hole 151 to be connected to the side plate decorative plate 140. In the present utility model, by providing the armrest 160, the support for the person to be detected is further improved, and by providing the armrest 160 with a bent structure, it is convenient for persons to be detected with different heights to support, meeting the detection needs of children of different ages and heights.
[0047] Referring to Figure 4 , the armrest 160 can be selected to be integrally formed by sheet metal, and an ABS sheet is wrapped outside the formed sheet metal to enhance the structural strength; the armrest 160 can be selected to have a structure that is narrower at the bottom and wider at the top. The outer surface circumference of the armrest 160 is 20 mm to 110 mm from bottom to top respectively; the ratio of the height of the vertical section 161 in the vertical direction to the height of the inclined section 162 in the vertical direction is 1:0.3 - 0.32. For example, if the overall height of the armrest 160 is 1050 mm, the height of the vertical section 161 can be selected to be 800 mm, and the height of the inclined section 162 in the vertical direction is 250 mm. The distance between the two armrests 160 is preferably 620 mm, meeting the arm span of 930 mm for 3-year-old children, facilitating the grasping needs during the arch detection of children aged 3 and above; smaller children grasp the vertical section 161 part. The vertical section 161 of the armrest is closer to the human body midline, and the grasping distance is closer, which is suitable for people with shorter arm lengths and conforms to the arm length dimensions of smaller children; larger people grasp the inclined section 162 part. This part is farther from the body midline, so the grasping distance is longer, which is suitable for the arm length dimensions of larger children.
[0048] For further description, refer to Figure 5 and Figure 6 , the base assembly 300 includes an upper base 310 and a base plate 320 disposed at the bottom of the upper base 310. The upper base 310 has a convex shape. The protruding end face of the upper base 310 is the second stepped surface 312, and the upper end face below the second stepped surface 312 is the first stepped surface 311. The height between the first stepped surface 311 and the ground can be selected from 100 mm to 130 mm, and the height difference between the first stepped surface 311 and the second stepped surface 312 can be selected from 100 mm to 130 mm to ensure the imaging effect of the imaging assembly 200.
[0049] The number of the first stepped surfaces 311 is two, and the two first stepped surfaces 311 are located on the front and rear sides of the second stepped surface 312. At this time, the standing panel 301 is disposed on the second stepped surface 312, and the imaging assembly 200 is located below the second stepped surface 312 inside the upper base 310. The stepped structure is provided to facilitate a child to step onto the standing panel 301 at a high position for arch detection.
[0050] For further description, to improve the safety of the base assembly 300, preferably, the base assembly 300 further includes anti-slip foot pads 330 and anti-slip strips 340; the anti-slip strips 340 are disposed at the bottom of the base plate 320 and can be processed from rubber material, with a size that can be selected as 502 mm in length, 202 mm in width, and 4 mm in thickness; the anti-slip foot pads 330 are disposed on the first stepped surface 311, and the thickness of the anti-slip foot pads 330 can be selected as 3 mm to prevent a child from slipping when barefoot.
[0051] Specifically, the outer side plates 110 and the side plate reinforcement plates 120 are both located on the left and right sides of the upper second stepped surface 312 and are both connected to the corresponding side edges of the upper base 310. The side plate inner cover 150 is located on the upper end surface of the second stepped surface 312 and is connected thereto. Similarly, the armrest 160 is also located on the upper end surface of the second stepped surface 312 and is connected thereto. The standing panel 301 is located between the two armrests 160.
[0052] For further description, refer to Figure 7 , to improve the structural strength of the upper base 310, preferably, the base assembly 300 further includes a base steel frame 400. The base steel frame 400 includes a bottom support 410, a frame support 420, and a support column 430. Among them, the bottom support 410 includes a cross beam and a longitudinal beam that are lapped on a horizontal plane, and the frame support 420 is disposed on the cross beam.
[0053] Refer to Figure 8 and Figure 9, the frame support 420 is used to support the second stepped surface 312 to improve the support reliability of the structure when standing, and the imaging component 200 is arranged inside the frame support 420; the support column 430 is arranged on the longitudinal beam, and the support column 430 extends from below the second stepped surface 312 to above the second stepped surface 312 and is connected to the side plate assembly 100, that is, the top end of the support column 430 extends into the side plate inner cover 150 and is connected to the side plate inner cover 150, further improving the structural strength and stability of the side plate assembly 100.
[0054] Preferably, the number of the support columns 430 is four, with two support columns 430 on each of the left and right sides of the second stepped surface 312. The support columns 430 on the same side are connected to the side plate inner cover 150 on the same side, and the part of the support column 430 extending into the side plate inner cover 150 can be selected as 20 cm.
[0055] Further, the bottom of the vertical section 161 of the armrest 160 passes through the second stepped surface 312 and extends to the outside of the frame support 420 and is connected to the frame support 420 to improve the structural strength and stability of the armrest 160; at the same time, the outer side plate 110 is connected to the cross beam by screws passing through the side plate reinforcement plate 120 and the upper base 310, improving the overall reliability of the side plate assembly 100; when the support column 430 passes through the second stepped surface 312, the support column 430 is also connected to the side wall of the upper base 310 to provide the stability of the structure.
[0056] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A foot arch identification and protection structure, characterized in that: It comprises a side plate assembly (100), an imaging assembly (200) and a base assembly (300); The imaging assembly (200) is arranged inside the base assembly (300), the side panel assembly (100) is arranged on two opposite sides of the base assembly (300), and the side panel assembly (100) is located outside the imaging assembly (200).
2. The arch identification and protection structure according to claim 1, characterized in that: The side panel assembly (100) comprises an outer side panel (110), a side panel reinforcement plate (120), and a side panel inner cover (150) which are connected in sequence; The outer side plate (110), the side plate reinforcement plate (120) and the side plate inner cover (150) are all connected to the base assembly (300).
3. The arch identification and protection structure according to claim 2, characterized in that: The side panel assembly (100) further comprises a transparent protective plate (130) and a side panel decorative plate (140); The outer end surface of the transparent protective plate (130) passes through the side plate reinforcement plate (120) and extends to the outside of the outer side plate (110), and the inner end surface of the transparent protective plate (130) is connected to the outer side of the side plate inner cover (150) through the side plate decorative plate (140).
4. The arch identification and protection structure according to claim 3, characterized in that: The side panel assembly (100) further comprises an armrest (160) arranged on the outside of the side panel inner cover (150); the armrest (160) is arranged vertically, and the armrest (160) is located on the outside of the standing panel (301); the bottom end of the armrest (160) is connected to the middle position of the corresponding side end of the base assembly (300); the top end of the armrest (160) is bent to the peripheral side of the side panel inner cover (150) and is respectively connected to the side panel inner cover (150) and the side panel decorative panel (140).
5. The arch identification and protection structure according to claim 4, characterized in that: The base assembly (300) comprises an upper base (310) and a base plate (320) arranged at the bottom of the upper base (310); the outer side plate (110) and the side plate reinforcement plate (120) are both located on the outer side of the upper base (310) and are both connected to the side of the upper base (310); the side plate inner cover (150) is located at the top of the upper base (310) and is connected to the top of the upper base (310); and the bottom end of the handrail (160) is connected to the top of the upper base (310); The standing panel (301) is arranged on the top of the upper base (310), and the imaging assembly (200) is arranged between the standing panel (301) and the base plate (320).
6. The arch identification and protection structure according to claim 5, characterized in that: The base assembly (300) further includes an anti-slip foot pad (330); The upper base (310) is a convex structure, and the upper surface of the upper base (310) includes a second step surface (312) connected to each other and a first step surface (311) lower than the second step surface (312), the first step surface (311) is located on two opposite sides of the second step surface (312), the standing panel (301) is arranged on the upper end surface of the second step surface (312), and the bottom end of the handrail (160) and the bottom end of the side panel inner cover (150) are both connected to the upper end surface of the second step surface (312); The anti-slip foot pad (330) is arranged on the upper end surface of the first step surface (311).
7. The arch identification and protection structure according to claim 6, characterized in that: The base assembly (300) further comprises an anti-slip strip (340), wherein the anti-slip strip (340) is arranged at the bottom of the base plate (320).
8. The arch identification and protection structure according to claim 7, characterized in that: The armrest (160) comprises a vertical section (161), an inclined section (162) and a bent section (163) which are connected in sequence, the bottom of the vertical section (161) is connected to the upper base (310), and the bent section (163) is respectively connected to the side panel inner cover (150) and the side panel decorative panel (140).
9. The arch identification and protection structure according to claim 8, characterized in that: The ratio of the height of the vertical section (161) in the vertical direction to the height of the inclined section (162) in the vertical direction is 1:0.3-0.32, and the angle between the inclined section (162) and the horizontal direction is 60°-65°.
Citation Information
Patent Citations
A method for measuring arch of foot and a method for customizing insoles based on arch coefficient
CN115474742B