Modeling tool for assisting foot scanning

By designing an auxiliary foot scanning and molding tool, and using a supporting base plate and a clamping vertical plate to fix the foot, the problems of low scanning efficiency of mobile phones and the impact of leg movement on accuracy are solved, thus achieving stable and efficient foot scanning.

CN223463728UActive Publication Date: 2025-10-24GUANGDONG FOOTPRINT SHOES CO LTD
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Patent Information

Application Number
CN202423079156.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-10-24
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing foot scanners suffer from low scanning efficiency when the computer malfunctions, and the accuracy of the 3D model is easily reduced due to the movement of the human leg.

Method used

Design an auxiliary foot scanning and molding tool, including a support base plate and a clamping vertical plate. The clamping plate is used to fix key parts of the foot, and the structure can be adjusted to adapt to different users' leg and foot sizes to ensure the stability of the foot during the scanning process.

Benefits of technology

It improves the stability of foot scanning, reduces the decrease in 3D model accuracy caused by leg movements, adapts to individual differences among different users, and ensures scanning accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of foot scanning and mold taking equipment, in particular to an auxiliary foot scanning and mold taking tool which comprises a supporting bottom plate and an abutting vertical plate, the abutting vertical plate is arranged on the supporting bottom plate, the abutting vertical plate is perpendicular to the supporting bottom plate, and a supporting plate is arranged on the supporting bottom plate; the abutting vertical plate is provided with a first abutting baffle, a second abutting baffle and a third abutting baffle. According to the device, a worker can place the shank on the supporting plate to be fixed, then the foot is placed on the abutting vertical plate, the first abutting baffle on the abutting vertical plate abuts against the first metatarsus of the forefoot of the foot, the second abutting baffle on the abutting vertical plate abuts against the fifth metatarsus of the forefoot of the foot, and the third abutting baffle on the heel of the foot; and then when a worker scans the feet, the feet are pressed against and fixed, so that the feet are placed more stably in the scanning process, and the situation that the precision of the scanned three-dimensional model is reduced due to leg movement is reduced.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of foot scanning and molding devices, in particular to an auxiliary foot scanning and molding tool. BACKGROUND

[0002] With the change of people's lifestyle, people's way of choosing and buying shoes is also becoming more and more diversified, such as buying in physical stores, buying online, customizing, etc. However, no matter which way is adopted, accurate measurement of foot size is required (especially for custom-made shoes, and users with high accuracy requirements for shoe size). In the past, people usually measured the data of multiple parts of the foot by a tape measure. This method has limited and inaccurate foot shape data. With the development of science and technology, foot scanners are currently used to measure foot data. A foot scanner is a device that scans foot data and generates a three-dimensional model of the foot. It is widely used in shoe last development and design, medical orthopedic treatment, human engineering foot type statistics, foot research, etc.

[0003] At present, most foot scanners use computers to generate three-dimensional models. However, when the computer malfunctions, other devices must be used to scan the foot, such as a mobile phone with scanning software, which is combined with a mobile phone camera to scan the foot. Compared with the rapid scanning of a computer, the scanning efficiency of a mobile phone is low, and a long time is required to complete the full foot scanning. During this long scanning process, the accuracy of the three-dimensional model may be reduced due to sudden movement of the human leg. Therefore, further improvement is needed. CONTENT OF THE INVENTION

[0004] In order to reduce the occurrence of foot movement during scanning that reduces scanning accuracy, the application provides an auxiliary foot scanning and molding tool.

[0005] The auxiliary foot scanning and molding tool provided by the application adopts the following technical solution: an auxiliary foot scanning and molding tool, comprising a support bottom plate and a tight vertical plate, the tight vertical plate is arranged on the support bottom plate, and the tight vertical plate and the support bottom plate are arranged perpendicular to each other, a support plate for supporting the calf is arranged on the support bottom plate, a first tight baffle, a second tight baffle and a third tight baffle are arranged on the tight vertical plate, the first tight baffle and the second tight baffle are arranged on the two sides of the tight vertical plate in the height direction, and the third tight baffle is arranged below the first tight baffle and the second tight baffle.

[0006] The first tight baffle is used to tightly hold the first metatarsal bone of the forefoot of the foot so that it remains horizontal with the foot.

[0007] The second tight baffle is used to tightly hold the fifth metatarsal bone of the forefoot of the foot so that it remains horizontal with the foot.

[0008] The third abutting baffle is used for abutting the heel, and the heel and the foot are kept horizontal.

[0009] By adopting the technical scheme, when the foot needs to be scanned, the staff can place the lower leg of the person to be scanned on the support plate for fixation, then place the foot towards the abutting vertical plate, and place the foot on the abutting vertical plate, abut the first metatarsal bone of the foot palm by the first abutting baffle on the abutting vertical plate, the fifth metatarsal bone of the foot palm by the second abutting baffle, and the heel by the third abutting baffle, so that these parts are kept fixed and horizontal with the foot bottom, then the staff scans the foot, and the foot is placed more stably during scanning due to the abutting fixation, so that the decrease in the accuracy of the three-dimensional model caused by the leg movement during scanning is reduced.

[0010] Optionally, the support bottom plate is provided with an adjusting rod along the length direction thereof, the adjusting rod is perpendicular to the abutting vertical plate, the first moving piece is arranged on the adjusting rod, the first moving piece is movable along the length direction of the adjusting rod, the support supporting rod is arranged on the first moving piece, and the support plate is arranged on the top of the support supporting rod.

[0011] By adopting the technical scheme, the first moving piece is moved on the adjusting rod, so that the support plate is moved, the position of the support plate can be adjusted, different lengths of the lower legs of users are adapted, the flexibility and adaptability of the support plate are increased, and each user can be fixed and supported properly.

[0012] Optionally, the first moving piece comprises an adjusting ring, the adjusting ring is sleeved on the adjusting rod, the support supporting rod is arranged on the top of the adjusting ring, and the adjusting screw is threadedly connected to the side wall of the adjusting ring.

[0013] By adopting the technical scheme, when the position of the support plate needs to be adjusted, the staff loosens the adjusting screw, the one end of the adjusting screw is away from the side wall of the adjusting rod, the adjusting ring is freely movable along the length direction of the adjusting rod to a proper position, the staff tightens the adjusting screw, the one end of the adjusting screw is close to the side wall of the adjusting rod, the abutting fixation of the adjusting ring is realized, and the position of the support plate on the adjusting ring is realized.

[0014] Optionally, the upper surface of the support plate is provided with a rubber elastic pad.

[0015] By adopting the technical scheme, the rubber elastic pad is used to increase the comfort of the user's lower leg placed on the support plate.

[0016] Optionally, the abutting vertical plate is provided with first adjusting sliding grooves on both sides of the height direction of the side away from the supporting bottom plate, the first abutting baffle, the second abutting baffle and the third abutting baffle are all provided with adjusting blocks, the first abutting baffle, the second abutting baffle and the third abutting baffle are respectively arranged between the corresponding adjusting block and the first adjusting sliding groove, the adjusting block is provided with a locking bolt on the side close to the supporting bottom plate, the locking bolt and the adjusting block can rotate synchronously, one end of the locking bolt is arranged in the first adjusting sliding groove, the locking bolt is provided with a second moving piece in a threaded manner, the second moving piece can move in the height direction of the first adjusting sliding groove, and the first abutting baffle, the second abutting baffle and the third abutting baffle can be adjusted in position by being matched on the second moving piece in the height direction of the first adjusting sliding groove through the adjusting block and the locking bolt.

[0017] By adopting the above technical scheme, the second moving piece moves on the first adjusting sliding groove, thereby driving the first abutting baffle, the second abutting baffle and the third abutting baffle to move, so that the positions of the first abutting baffle, the second abutting baffle and the third abutting baffle can be adjusted to adapt to the lengths of feet of different users, increase the flexibility and adaptability of the first abutting baffle, the second abutting baffle and the third abutting baffle, and ensure that each user can be fixed and supported properly.

[0018] Optionally, the second moving piece comprises a moving sliding block, the moving sliding block is slidably arranged in the first adjusting sliding groove, moving sliding wheels are rotatably arranged on the two side walls of the moving sliding block in the length direction of the moving sliding block, the moving sliding wheels are slidably arranged on the inner wall of the first adjusting sliding groove, and the locking bolt can be arranged through the moving sliding block and the inner wall of the first adjusting sliding groove to be locked.

[0019] By adopting the above technical scheme, when the positions of the first abutting baffle, the second abutting baffle and the third abutting baffle connected with the corresponding adjusting block need to be adjusted, the staff loosens the locking bolt by rotating the adjusting block, one end of the locking bolt is away from the inner wall of the first adjusting sliding groove, so that the moving sliding block can be freely moved to a proper position in the height direction of the first adjusting sliding groove through the moving sliding wheel, the staff tightens the locking bolt by rotating the adjusting block, one end of the locking bolt is close to the inner wall of the first adjusting sliding groove, thereby realizing the locking and fixing of the moving sliding block, and further realizing the positions of the first abutting baffle, the second abutting baffle and the third abutting baffle connected with the corresponding adjusting.

[0020] Optionally, the length of the second abutting baffle is greater than the length of the first abutting baffle.

[0021] By adopting the above technical scheme, since the position of the first metatarsal bone of the foot is closer to the outside of the foot than the position of the fifth metatarsal bone, the first abutting baffle does not need to be too long to abut against the first metatarsal bone.

[0022] Optionally, a reinforcing rib plate is arranged between the support bottom plate and the abutting vertical plate.

[0023] By adopting the above technical scheme, since the foot needs to be in abutting contact with the abutting vertical plate for a long time during scanning, which may cause the abutting vertical plate to deform, the reinforcing rib plate is arranged to increase the structural strength between the support bottom plate and the abutting vertical plate, thereby reducing the structural deformation of the abutting vertical plate.

[0024] To sum up, the present application has at least one of the following beneficial technical effects:

[0025] 1. When the foot needs to be scanned, the staff can place the lower leg of the person to be scanned on the support plate for fixation, then place the foot towards the abutting vertical plate, and place the foot on the abutting vertical plate, and use the first abutting baffle on the abutting vertical plate to abut the first metatarsal bone of the forefoot, the second abutting baffle to abut the fifth metatarsal bone of the forefoot, and the third abutting baffle to abut the heel, so that these parts remain fixed and are on the same horizontal line as the sole, then the staff scans the foot, since the foot is fixed by abutting, the foot is placed more stably during scanning, thereby reducing the decrease in the accuracy of the three-dimensional model caused by leg movement during scanning;

[0026] 2. The first moving part moves on the adjusting rod, thereby driving the support plate to move, so that the position of the support plate can be adjusted to adapt to the length of the lower leg of different users, increasing the flexibility and adaptability of the support plate, and ensuring that each user can be fixed and supported properly;

[0027] 3. The second moving part moves on the first adjusting slot, thereby driving the first abutting baffle, the second abutting baffle, and the third abutting baffle to move, so that the positions of the first abutting baffle, the second abutting baffle, and the third abutting baffle can be adjusted to adapt to the length of the foot of different users, increasing the flexibility and adaptability of the first abutting baffle, the second abutting baffle, and the third abutting baffle, and ensuring that each user can be fixed and supported properly. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 is a front view of the overall structure in the embodiment of the present application.

[0029] Figure 2 is a front view of the overall structure in the embodiment of the present application.

[0030] Figure 3 is a bottom view of the overall structure in the embodiment of the present application.

[0031] Figure 4 is a fourth support rod part sectional view in the embodiment of the present application.

[0032] Explanation of reference signs:

[0033] 1, support base plate; 11, first support rod; 12, second support rod; 13, third support rod; 14, adjusting rod; 2, abutting vertical plate; 21, fourth support rod; 22, fifth support rod; 23, first adjusting sliding groove; 24, adjusting block; 3, support bracket; 31, connecting plate; 32, support bracket rod; 33, rubber elastic pad; 4, first abutting baffle; 5, second abutting baffle; 6, third abutting baffle; 7, reinforcing rib plate; 8, first moving piece; 81, adjusting ring; 82, adjusting bolt; 9, second moving piece; 91, moving sliding block; 92, locking bolt; 93, sliding groove; 94, moving pulley; 95, limiting strip; DETAILED DESCRIPTION

[0034] The following will be described in detail in combination with the accompanying Figures 1-4 The present application is further described in detail.

[0035] The embodiment of the present application discloses a kind of auxiliary foot scanning mould taking tool.

[0036] Refer to Figure 1 、 2 A kind of auxiliary foot scanning mould taking tool includes support base plate 1 and abutting vertical plate 2, abutting vertical plate 2 is set to the top of support base plate 1 one end, and abutting vertical plate 2 and support base plate 1 are vertically arranged between each other;

[0037] Support base plate 1 top is provided with the support bracket 3 of arc shape, support bracket 3 is concave from top to bottom to form arc shape, abutting vertical plate 2 is provided with first abutting baffle 4, second abutting baffle 5 and third abutting baffle 6 on the side away from support base plate 1, wherein, first abutting baffle 4 and second abutting baffle 5 are respectively arranged on the two sides of the height direction of abutting vertical plate 2, third abutting baffle 6 is arranged in horizontal state, and third abutting baffle 6 is arranged below first abutting baffle 4 and second abutting baffle 5;

[0038] In addition, since the position of the first metatarsal bone of foot is closer to the outside of foot than the position of fifth metatarsal bone, first abutting baffle 4 does not need to be too long to abut the first metatarsal bone, therefore, the length of second abutting baffle 5 is greater than the length of first abutting baffle 4.

[0039] When the foot is actually scanned, the staff can place the lower leg of the person to be scanned on the support plate 3 for fixation, then place the foot towards the direction of the abutting vertical plate 2, and place the foot on the abutting vertical plate 2, use the first abutting baffle 4 on the abutting vertical plate 2 to abut the first metatarsal bone of the forefoot, the second abutting baffle 5 to abut the fifth metatarsal bone of the forefoot, and the third abutting baffle 6 to abut the heel, so that these parts remain fixed and are at the same horizontal line with the sole, then the staff scans the foot, because the foot is fixed by abutting, the foot is placed more stably during scanning, thereby reducing the situation that the accuracy of the three-dimensional model is reduced due to leg movement.

[0040] With reference to Figures 1-3 Specifically, in the present embodiment, the support bottom plate 1 includes two first support rods 11 arranged in parallel and spaced apart from each other, two second support rods 12 and a third support rod 13 arranged vertically between the two first support rods 11, the two second support rods 12 are arranged in parallel and spaced apart from each other at the middle position of the two first support rods 11, and the third support rod 13 is arranged between the two first support rods 11 away from the abutting vertical plate 2 at one end;

[0041] The abutting vertical plate 2 includes two fourth support rods 21 arranged in parallel and spaced apart from each other, the two fourth support rods 21 are respectively arranged vertically at the top of the two first support rods 11 away from the third support rod 13 at one end, and the first support rod 11 and the fourth support rod 21 on the same side are arranged vertically to each other, and the top end between the two fourth support rods 21 is provided with a fifth support rod 22, in the present embodiment, the first support rod 11, the second support rod 12, the third support rod 13, the fourth support rod 21 and the fifth support rod 22 are all rectangular stainless steel pipes;

[0042] In addition, in order to increase the structural stability between the first support rod 11 and the second support rod 12, the first support rod 11 and the second support rod 12 on the same side are both provided with a reinforcing rib plate 7, so as to increase the structural strength between the support bottom plate 1 and the abutting vertical plate 2, and reduce the situation that the abutting vertical plate 2 is deformed.

[0043] With reference to Figure 2 , 3Specifically, in the embodiment, a rectangular adjusting rod 14 is vertically arranged between the two second supporting rods 12, the height of the adjusting rod 14 is less than the height of the second supporting rod 12, the top of the adjusting rod 14 is flush with the top of the second supporting rod 12, the adjusting rod 14 is arranged in parallel with the first supporting rod 11, and a first moving piece 8 is slidably arranged on the adjusting rod 14; the first moving piece 8 comprises an adjusting ring 81, the adjusting ring 81 is sleeved on the adjusting rod 14 and can slide along the length direction of the adjusting rod 14, a threaded hole is formed in one side wall of the adjusting rod 14, an adjusting bolt 82 is threadedly connected in the threaded hole, and one end of the adjusting bolt 82 can pass through the threaded hole to abut against and lock the side wall of the adjusting rod 14 by means of the adjusting ring 81.

[0044] The top of the adjusting ring 81 is vertically provided with a supporting bracket 32, the top of the supporting bracket 32 is provided with a connecting plate 31 which is arc-shaped and matched with the bottom of the supporting plate 3, the top of the connecting plate 31 is connected with the supporting plate 3 and is fixed by means of a bolt.

[0045] In addition, in order to increase the comfort of placing the lower leg of the user on the supporting plate 3, a rubber elastic pad 33 is arranged on the upper surface of the supporting plate 3.

[0046] When adjusting the position of the supporting plate 3, the worker twists the adjusting bolt 82, one end of the adjusting bolt 82 is away from the side wall of the adjusting rod 14, so that the adjusting ring 81 can be freely moved along the length direction of the adjusting rod 14 to the appropriate position, the worker twists the adjusting bolt 82, one end of the adjusting bolt 82 is close to the side wall of the adjusting rod 14, so as to realize the abutting and fixing of the adjusting ring 81, and then the position of the supporting plate 3 on the adjusting ring 81 is realized, so that the position of the supporting plate 3 can be adjusted to adapt to the length of the lower leg of different users, increase the flexibility and adaptability of the supporting plate 3, and ensure that each user can get appropriate fixing and support.

[0047] Referring to Figure 1 , 4 Specifically, in the embodiment, the first abutting baffle 4 is located on one side of the fourth supporting rod 21 away from the first supporting rod 11, the second abutting baffle is located on the other side of the fourth supporting rod 21 away from the first supporting rod 11, and the third abutting baffle 6 is located on the sides of the two fourth supporting rods 21 away from the first supporting rod 11.

[0048] Two fourth support rods 21 are provided with first adjusting sliding grooves 23 along the height direction of the fourth support rods 21 away from the first support rod 11. The first abutting baffle 4, the second abutting baffle 5 and the third abutting baffle 6 are respectively provided with corresponding adjusting blocks 24 away from the fourth support rods 21, that is, the first abutting baffle 4, the second abutting baffle 5 and the third abutting baffle 6 are respectively located between the corresponding adjusting blocks 24 and the fourth support rods 21. The first abutting baffle 4 is provided with one adjusting block 24 arranged on one fourth support rod 21. The second abutting baffle 5 is provided with one adjusting block 24 arranged on the other fourth support rod 21. The third abutting baffle 6 is provided with two adjusting blocks 24 arranged on the two fourth support rods 21 respectively.

[0049] In order to increase the adaptability of the first abutting baffle 4, the second abutting baffle 5 and the third abutting baffle 6, the adjusting block 24 on the first abutting baffle 4 is provided with a locking bolt 92 close to the support bottom plate 1. The adjusting block 24 and the locking bolt 92 can rotate synchronously. One end of the locking bolt 92 penetrates the first abutting baffle 4 and enters the first adjusting sliding groove 23. The first adjusting sliding groove 23 is provided with a second moving piece 9 screwed therein. The second moving piece 9 includes a moving sliding block 91 which is slidably arranged in the first adjusting sliding groove 23. The moving sliding block 91 is provided with a sliding groove 93 on the two side walls along the length direction of the moving sliding block 91. A rotating shaft is arranged in the sliding groove 93 and is perpendicular to the moving sliding block 91 along the horizontal direction. A moving pulley 94 is rotatably arranged on the rotating shaft. One side of the moving pulley 94 is slidably arranged on the inner wall of the first adjusting sliding groove 23. The locking bolt 92 can penetrate the moving sliding block 91 and the inner wall of the first adjusting sliding groove 23 to lock.

[0050] In order to increase the moving stability of the moving pulley 94 in the first adjusting sliding groove 23, two groups of limiting strips 95 are respectively arranged on the opposite inner walls of the first adjusting sliding groove 23 along the height direction of the first adjusting sliding groove 23. The corresponding moving pulleys 94 are located between the two groups of limiting strips 95 to slide.

[0051] In addition, in order to increase the adaptability of the first abutting baffle 4 and the second abutting baffle 5 to different foot widths, the first abutting baffle 4 and the second abutting baffle 5 are provided with abutting sliding grooves along the length direction thereof. The locking bolt 92 at one end of the adjusting block 24 penetrates the abutting sliding groove and is connected with the first adjusting sliding groove 23. The position relationship between the locking bolt 92 and the abutting sliding groove can be adjusted to change the length position of the first abutting baffle 4 and the second abutting baffle 5.

[0052] When actually adjusting the positions of the first, second and third abutment baffles 4, 5 and 6 connected to the corresponding adjusting blocks 24, the staff loosens the locking bolt 92 by turning the adjusting block 24, and one end of the locking bolt 92 moves away from the inner wall of the first adjusting slot 23, so that the movable slider 91 can move freely along the height direction of the first adjusting slot 23 to the appropriate position through the movable pulley 94. The staff turns the adjusting block 24 to tighten the locking bolt 92, and one end of the locking bolt 92 is close to the inner wall of the first adjusting slot 23, thereby achieving the abutment and fixation of the movable slider 91, and then achieving the positions of the first, second and third abutment baffles 4, 5 and 6 connected to the corresponding adjustment, so as to adapt to the length of the feet of different users, increase the flexibility and adaptability of the first, second and third abutment baffles 4, 5 and 6, and ensure that each user can get appropriate fixation and support.

[0053] The implementation principle of an auxiliary foot scanning and molding tool in an embodiment of the present application is as follows: the staff can place the calf of the person whose foot is to be scanned on the support plate 3 for fixing, and then place the foot toward the direction of the pressing vertical plate 2, and place the foot on the pressing vertical plate 2, and use the first pressing baffle 4 on the pressing vertical plate 2 to press the first metatarsal bone of the forefoot, the second pressing baffle 5 to press the fifth metatarsal bone of the forefoot, and the third pressing baffle 6 to press the heel, so that these parts remain fixed and are on the same horizontal line as the sole of the foot. Then, when the staff scans the foot, since the foot is pressed and fixed, the foot is placed more stably during the scanning process, thereby reducing the occurrence of a situation where the accuracy of the scanned three-dimensional model is reduced due to leg movement.

[0054] The examples of this specific embodiment are all preferred embodiments of this application and are not intended to limit the scope of protection of this application. Identical components are represented by the same reference numerals. Therefore, any equivalent changes made based on the structure, shape, and principle of this application should be included in the scope of protection of this application.

Claims

1. An aid for foot scanning, characterised in that: The utility model provides a kind of leg support device, including support base plate (1) and abutting vertical plate (2), the abutting vertical plate (2) is arranged on support base plate (1), and the abutting vertical plate (2) is perpendicular to each other with support base plate (1) arrangement, support base plate (1) is provided with the support support plate (3) for supporting shank, the first abutting baffle (4), the second abutting baffle (5) and the third abutting baffle (6) are provided on the abutting vertical plate (2), the first abutting baffle (4) and the second abutting baffle (5) are respectively arranged on the two sides of abutting vertical plate (2) height direction, the third abutting baffle (6) is arranged below the first abutting baffle (4) and the second abutting baffle (5); The first abutting baffle (4) is used for abutting the first metatarsal of foot palm and keeping it horizontal with foot; The second abutting baffle (5) is used for abutting the fifth metatarsal of foot palm and keeping it horizontal with foot; The third abutting baffle (6) is used for abutting heel and keeping it horizontal with foot.

2. An auxiliary foot scan template tool according to claim 1, wherein: Support base plate (1) is provided with adjusting rod (14) along its length direction, adjusting rod (14) is perpendicular to each other with abutting vertical plate (2), first moving part (8) is provided on adjusting rod (14), first moving part (8) can move along the length direction of adjusting rod (14), support support rod (32) is provided on first moving part (8), support support plate (3) is arranged on the top of support support rod (32), support support plate (3) can be adjusted position relationship by moving on first moving part (8) along the length direction of adjusting rod (14) through support support rod (32).

3. An auxiliary foot scan template tool according to claim 2, wherein: First moving part (8) includes adjusting ring (81), adjusting ring (81) is sleeved on adjusting rod (14), support support rod (32) is arranged on the top of adjusting ring (81), adjusting screw bolt (82) is threadedly connected on the side wall of adjusting ring (81), one end of adjusting screw bolt (82) can be arranged adjusting ring (81) and abutting vertical plate (2) and adjusting rod (14) are locked.

4. An auxiliary foot scan template tool according to claim 1, wherein: Rubber elastic pad (33) is provided on the upper surface of support support plate (3).

5. An auxiliary foot scan template tool according to claim 1, wherein: The first adjusting sliding groove (23) is arranged on the two sides of the height direction of the abutting vertical plate (2) away from the supporting bottom plate (1), the adjusting block (24) is arranged on the first abutting baffle (4), the second abutting baffle (5) and the third abutting baffle (6), the first abutting baffle (4), the second abutting baffle (5) and the third abutting baffle (6) are arranged between the corresponding adjusting block (24) and the first adjusting sliding groove (23), the locking bolt (92) is arranged on the side of the adjusting block (24) close to the supporting bottom plate (1), the locking bolt (92) and the adjusting block (24) can rotate synchronously, one end of the locking bolt (92) is arranged in the first adjusting sliding groove (23), the second moving part (9) is threadedly arranged on the locking bolt (92), the second moving part (9) can move along the height direction of the first adjusting sliding groove (23), the first abutting baffle (4), the second abutting baffle (5) and the third abutting baffle (6) can be adjusted in position by moving along the height direction of the first adjusting sliding groove (23) on the second moving part (9) through the cooperation of the adjusting block (24) and the locking bolt (92).

6. An auxiliary foot scan template tool according to claim 5, wherein: The second moving part (9) comprises a moving sliding block (91), the moving sliding block (91) is slidably arranged in the first adjusting sliding groove (23), the moving sliding block (91) is rotatably arranged with the moving pulley (94) on the two side walls in the length direction, the moving pulley (94) is slidably arranged on the inner wall of the first adjusting sliding groove (23), and the locking bolt (92) can be arranged through the moving sliding block (91) and the inner wall of the first adjusting sliding groove (23) to be locked.

7. An auxiliary foot scan template tool according to claim 5, wherein: The length of the second abutting baffle (5) is greater than that of the first abutting baffle (4).

8. An auxiliary foot scan template tool according to claim 1, wherein: The reinforcing rib plate (7) is arranged between the supporting bottom plate (1) and the abutting vertical plate (2). The length of the second abutting baffle (5) is greater than that of the first abutting baffle (4).