Sole data sampling box

By designing the sole data sampling box, using the pedal block and pressure printing layer to collect the sole data at home, and sending it to the customizer for scanning, the problem of on-site collection in the existing technology is solved, and an efficient and low-cost data collection and customization process is achieved.

CN222954960UActive Publication Date: 2025-06-10FUJIAN XIAOAI TECH CO LTD
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Patent Information

Application Number
CN202420607409.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-03-27
Publication Date
2025-06-10
Estimated Expiration
2034-03-27

AI Technical Summary

Technical Problem

In the prior art, the acquisition of sole foot data requires the acquisition personnel to arrive at the equipment site, which limits the practicality of the equipment and increases the acquisition cost.

Method used

A sole data sampling box is designed that contains pedal blocks and pressure rubbing layers, allowing sole data to be collected in any convenient place (such as at home) and then sent to the custom-made party for scanning.

Benefits of technology

It realizes that accurate foot data can be obtained without on-site collection, reduces travel expenses and loss of work, increases the utilization rate of customized equipment, and distributes the purchase cost equally.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of foot data acquisition, in particular to a foot sole data sampling box. The foot sole data sampling box comprises a box body with a containing cavity and an opening, a box cover capable of being opened in an overturning mode is arranged on the opening of the box body, a treading block is arranged in the box body, a collected person can tread on the treading block with barefoot, and concave footprints matched with the foot sole in shape can be formed on the treading block. A pressure rubbing layer is arranged on the inner side face of the box cover, a collected person can tread on the pressure rubbing layer with barefoot, and rubbing footprints capable of reflecting the pressure condition of the foot soles on the flat ground can be formed on the pressure rubbing layer. According to the foot sole data acquisition method, acquisition personnel can complete foot sole data acquisition work without going to the site, the acquired data are closer to deformation conditions generated when feet step on a shoe sole or an insole, travel expenses, labor cost and the like generated by on-site acquisition can be saved, the utilization rate of scanning equipment of a customizing party is increased, and the user experience is improved. And the equipment acquisition cost can be shared.
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Description

Technical Field

[0001] The utility model relates to the technical field of foot data collection, and particularly relates to a sole data sampling box. Background Art

[0002] With the improvement of living standards, many people begin to pay attention to the overall improvement of the quality of life. Nowadays, many products on the market provide one-to-one customization services, such as customized clothes, jewelry, furniture, and so on. People with foot problems need one-to-one customization services more, such as customized shoes, insoles, and various orthotic pads, etc., to relieve and even solve foot problems.

[0003] In the customization process of shoes, insoles, or various orthotic pads, the collection of sole data in the early stage is very important. Only by accurately collecting the sole data of the person to be customized can the production staff make corresponding shoes, insoles, or various orthotic pads based on the collected sole data. Therefore, the accuracy of the collected sole data will affect the use comfort of the finally customized shoes, insoles, or various orthotic pads.

[0004] At present, for the collection of sole data, most of them adopt the method of machine collection. For example, a sole scanner is used. This device collects data on the sole shape stepping on the upper side of a flat transparent glass plate through a photographing or scanning device located below the flat transparent glass plate. The sole data collected in this way is the data when stepping on flat ground. In fact, in order to ensure comfort, the soles or insoles are made of relatively soft materials. Therefore, the deformation generated when the foot directly steps on flat ground is different from the deformation generated when the foot steps on the sole or insole. That is to say, the sole data collected by the existing machines is inaccurate.

[0005] To solve this problem, a Chinese patent with the publication number of CN 107048598 B discloses a foot data collection system, which includes a housing and a foot scanning device arranged in the housing. The housing includes a base and two partition blocks arranged on the upper side of the base. The two partition blocks are arranged at intervals. A scanning slot is opened at the position of the base relative to the scanning space. A rotatable stepping block is arranged at the position of the slot opening of the scanning slot. On the side of the stepping block facing away from the bottom of the scanning slot, there is a shaping sponge, or oil clay, or well-mixed gypsum, or silica gel for people to step on and shape. Through the setting of the rotatable stepping block, this foot data collection system can collect the specific shape of the foot stepping on the shoe during the foot data collection process, effectively increasing the accuracy of foot data collection. However, this foot data collection system requires the person to be collected to be around the device so as to have the opportunity to stretch the foot over to step on the rotatable stepping block. That is to say, it needs the person to be collected to reach the working site of the collection device to collect, which greatly limits the practicality of the device and increases the cost of sole data collection. Summary of the Utility Model

[0006] Based on the deficiencies of the above-mentioned prior art, the present utility model provides a sole data sampling box. This sole data sampling box can achieve the sampling of sole data at any convenient place, even at home. Then, through the method of express mailing, the sampling box is sent to the customization party. After the customization party scans the footprints in the sole data sampling box with a scanning device, the corresponding sole data can be obtained. It can not only enable the person to be collected to complete the sole data collection work without being present at the scene, but also the collected data is closer to the deformation situation generated when the foot steps on the sole or insole. It is also beneficial to save travel expenses, work delay expenses, etc. generated by on-site collection, improve the utilization rate of the scanning device of the customization party, evenly distribute the equipment purchase cost, and quickly recover the funds.

[0007] The technical solution of the present utility model lies in: a sole data sampling box, including a box body having an accommodation cavity and an opening. A box cover that can be flipped and opened is provided on the opening of the box body. A stepping block is arranged inside the box body for the person to be collected to step on barefoot, and a concave footprint adapted to the shape of the sole can be formed on the stepping block; a pressure imprinting layer is provided on the inner side surface of the box cover for the person to be collected to step on barefoot, and a imprinted footprint that can reflect the pressure situation of the sole on a flat ground can be formed on the pressure imprinting layer.

[0008] Preferably, the area of the stepping block is larger than the orthographic projection area of the sole when the person is barefoot. The area of the pressure imprinting layer is larger than the orthographic projection area of the sole when the person is barefoot.

[0009] Preferably, the box body is a rectangular box body, and there are two left and right cavities inside the box body. The two left and right cavities are respectively provided with stepping blocks for the person to be collected to step on and sample with the left and right feet barefoot.

[0010] Preferably, the box cover has two pieces, and the two pieces of box cover can be flipped and opened to the left and right sides of the box body respectively.

[0011] Preferably, the box cover includes a tongue part, a covering part and a side connecting part. The tongue part is connected to one edge of the covering part. The opposite edge of the covering part is connected to the upper edge of the side connecting part. The lower edge of the side connecting part is connected to the lower edge of the corresponding side of the box body; when the box cover is closed, the side connecting part can overlap with the side of the box body.

[0012] Preferably, the stepping block is a phenolic foam block, a shaped sponge block, a modeling clay block or a silicone rubber block.

[0013] Preferably, the pressure imprinting layer is a pressure-sensitive carbonless paper layer.

[0014] The beneficial effects of the present utility model are as follows: The sole data sampling box solves the problem that when collecting sole data, the person to be collected needs to arrive at the site of the collection device for collection, which greatly limits the practicability of the device and causes high collection costs due to travel expenses, work delay expenses, etc. The present utility model can realize the sampling of sole data at any convenient place, even at home, and then send the sampling box to the customization party by express mail. After the customization party scans the footprints in the sole data sampling box through the scanning device, the corresponding sole data can be obtained. It can not only realize that the person to be collected can complete the sole data collection work without going to the site, but also the collected data is closer to the deformation situation generated when the foot steps on the sole or insole, and is also conducive to saving travel expenses, work delay expenses, etc. generated by on-site collection, as well as improving the utilization rate of the scanning device of the customization party, which is conducive to spreading the equipment purchase cost and recovering funds as soon as possible.

[0015] On the one hand, the sole data sampling box of the present utility model can take a mold of the sole through the stepping block to obtain the three-dimensional shape data of the sole; on the other hand, it can obtain the sole stress surface and pressure value distribution, etc. through the pressure imprinting layer, and perfectly present the foot pressure distribution situation we need. The combination of the two not only reduces the cost, but also simplifies the process and is convenient for the person to be collected. Brief Description of the Drawings

[0016] Figure 1 It is a three-dimensional structural schematic diagram of the opening process of the sole data sampling box

[0017] Figure 2 It is a three-dimensional structural schematic diagram of the sole data sampling box after use.

[0018] In the figure: 1 - box body, 2 - box cover, 2.1 - tongue insertion part, 2.2 - covering part, 2.3 - side connection part, 3 - stepping block, 4 - pressure imprinting layer. Detailed Embodiment

[0019] In order to enable the technical content of the present utility model to be understood by those of ordinary skill in the technical field, the present utility model will be described in detail below with reference to the accompanying drawings.

[0020] As Figure 1 and Figure 2 shown, a sole data sampling box of this embodiment includes a box body 1 having an accommodation cavity and an opening, and a box cover 2 that can be turned over and opened is provided on the opening of the box body. The arc-shaped dotted line in the figure indicates the turning direction of the box cover 2.

[0021] A stepping block 3 is arranged inside the box body 1 for the person to be collected to step on it barefoot, and a concave footprint adapted to the shape of the sole can be formed on the stepping block 3, so as to collect the parameters of the foot through a 3D scanning device, including relevant data such as the width, length, and arch height of the sole. The area of the stepping block 3 is larger than the orthographic projection area of the sole when the person is barefoot. The stepping block 3 is one of a phenolic foam block, a shaped sponge block, a modeling clay block, or a silica gel block.

[0022] The box body 1 is a rectangular box body, and there are two cavities on the left and right inside the box body 1. The two cavities on the left and right are respectively provided with stepping blocks 3 for the person to be collected to step on and sample with their left and right feet barefoot.

[0023] A pressure imprinting layer 4 is arranged on the inner side surface of the box cover 2 for the person to be collected to step on it barefoot, and a printed footprint that can reflect the pressure condition of the sole on a flat ground can be formed on the pressure imprinting layer 4. By comparing the shape of the footprint shown with the normal footprint, the weight-bearing area of the sole in the standing state can be judged, the pressure at different positions of the sole can be understood, and the foot health condition can be judged. The area of the pressure imprinting layer 4 is larger than the orthographic projection area of the sole when the person is barefoot. In this embodiment, the pressure imprinting layer 4 is a pressure-sensitive carbonless paper layer.

[0024] On the one hand, the sole data sampling box of the present utility model can take a mold of the sole through the stepping block to obtain three-dimensional complete sole data; on the other hand, it can obtain the force-bearing surface and pressure value distribution of the sole through the pressure imprinting layer, and perfectly present the foot pressure distribution we need. The two are combined with each other, which not only reduces the cost but also simplifies the process and is convenient for the person to be collected.

[0025] An information coating for the person to be collected to fill in identity information, foot shape symptom reference and other relevant information is also sprayed on the box cover 2.

[0026] The box cover 2 has two left and right pieces, and the two pieces of the box cover can be respectively flipped and opened to the left and right sides of the box body.

[0027] The box cover 2 includes a tongue portion 2.1, a covering portion 2.2, and a side connection portion 2.3. The tongue portion 2.1 is connected to one edge of the covering portion 2.2, the opposite edge of the covering portion 2.2 is connected to the upper edge of the side connection portion 2.3, and the lower edge of the side connection portion 2.3 is connected to the lower edge of the corresponding side of the box body 1; when the box cover 2 is closed, the side connection portion 2.3 can overlap with the side of the box body 1.

[0028] During use, open the sole data sampling box, and flip the two box lids to the left and right sides of the box body towards the ground respectively. The person to be sampled steps on the stepping block 3 barefoot and leaves a concave footprint with appropriate depth on the stepping block 3, initially completing the sampling of the sole shape. Then, the person to be sampled steps on the pressure imprinting layer 4 barefoot and leaves an imprinted footprint on the pressure imprinting layer 4 to reflect the pressure exerted by the sole on a flat ground. By comparing the shape of the visible footprint with a normal footprint, the weight-bearing area of the sole in the standing state can be judged, the pressure at different positions of the sole can be understood, and the foot health condition can be judged.

[0029] The sole data sampling box of the present utility model can solve the problems that when collecting existing sole data, the person to be sampled needs to reach the site of the collection device for collection, which greatly limits the practicability of the device, and the collection cost is high due to travel expenses, work delay expenses, etc. The present utility model can realize the sampling of sole data at any convenient place, even at home. Then, the sampling box is sent to the customization party by express delivery. After the customization party scans the footprints in the sole data sampling box through a scanning device, the corresponding sole data can be obtained. It can not only realize that the person to be sampled can complete the sole data collection work without going to the site, but also the collected data is closer to the deformation situation generated when the foot steps on the sole or insole, and is also beneficial to saving travel expenses, work delay expenses, etc. generated by on-site collection, as well as improving the utilization rate of the scanning device of the customization party, being conducive to spreading the equipment purchase cost and quickly recovering the funds.

[0030] Of course, the sole data sampling box of the present utility model can also be used at the medical site of a doctor or at the site of a sole scanning device.

[0031] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, are all included in the patent protection scope of the present utility model.

Claims

1. A foot sole data sampling box, comprising a box body having a receiving cavity and an opening, wherein a box cover capable of being flipped open is provided on the opening of the box body, characterized in that: The box body is provided with a treading block for the person being collected to step on barefoot, and a concave footprint that is adapted to the shape of the sole of the foot can be formed on the treading block; the inner side of the box cover is provided with a pressure rubbing layer for the person being collected to step on barefoot, and a rubbing footprint that can reflect the pressure condition of the sole of the foot on the flat ground can be formed on the pressure rubbing layer.

2. The foot sole data sampling box according to claim 1, characterized in that: The box body has two left and right cavities, and the left and right cavities are respectively provided with stepping blocks for the left and right feet of the person being sampled to step on and take samples barefoot.

3. The foot sole data sampling box according to claim 1 or 2, characterized in that: The box body is a rectangular box body.

4. The foot sole data sampling box according to claim 1, characterized in that: The box cover has two pieces, and the two pieces of the box cover can be turned over to the left and right sides of the box body and opened respectively.

5. The foot sole data sampling box according to claim 1 or 4, characterized in that: The box cover comprises an insert tongue portion, a covering portion and a side connecting portion, wherein the insert tongue portion is connected to one edge of the covering portion, the other opposite edge of the covering portion is connected to the upper edge of the side connecting portion, and the lower edge of the side connecting portion is connected to the lower edge of the corresponding side of the box body; when the box cover is closed, the side connecting portion can overlap with the side of the box body.

6. The foot sole data sampling box according to claim 1, characterized in that: The treading block is a phenolic foam block, a shaping sponge block, an oil mud block or a silica gel block.

7. The foot sole data sampling box according to claim 1, characterized in that: The pressure rubbing layer is a pressure-sensitive carbon paper layer.

8. The foot sole data sampling box according to claim 1, characterized in that: The area of ​​the treading block is larger than the orthographic projection area of ​​the sole of the person being collected when he is barefoot.

9. The foot sole data sampling box according to claim 1, characterized in that: The area of ​​the pressure rubbing layer is larger than the orthographic projection area of ​​the sole of the barefoot person.

Citation Information

Patent Citations

  • A foot data acquisition system

    CN107048598B