Shoe manufacturing method and system

By acquiring three-dimensional data of the user's feet, determining the shoe last and foot mold, and providing personalized shoe component options, the problem of ill-fitting shoes is solved, achieving personalized customization and improved comfort.

CN122066480APending Publication Date: 2026-05-19YANCHENG FULI EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
YANCHENG FULI EQUIPMENT CO LTD
Filing Date
2024-11-19
Publication Date
2026-05-19

AI Technical Summary

Technical Problem

The fixed sizes and models of existing shoe lasts cannot adapt to individual foot shape differences, resulting in shoes that do not fit properly and cannot meet personalized needs.

Method used

By acquiring the target user's three-dimensional foot size data, the target shoe last and foot mold are determined, providing personalized shoe component selection, and generating customized shoe orders by combining human-computer interaction interface and data processing technology.

Benefits of technology

It achieves a precise match between the shoes and the user's foot shape, provides personalized customization services, and improves wearing comfort and satisfaction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a shoe manufacturing method and system, and the method comprises the steps: obtaining the foot three-dimensional size data of a target user, the foot three-dimensional size data of the target user comprises the foot length of the target user, the foot width of the target user, and the foot height of the target user; determining a target shoe tree corresponding to the foot three-dimensional size data based on the foot three-dimensional size data and a target shoe type selected by the target user; based on the foot three-dimensional size data and the three-dimensional size data of the target shoe tree, determining a target foot mold shoe tree corresponding to the foot three-dimensional size data; determining shoe parts related to the target foot mold last; in response to the target shoe component selected by the target user, generating an order for making the target shoe; and splitting the order to obtain a plurality of sub-orders, and distributing the plurality of sub-orders to manufacturers corresponding to the target shoe parts. According to the scheme, foot-fitting and personalized services can be provided for the target user, and more foot-fitting shoes can be provided for the target user.
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Description

Technical Field

[0001] This invention relates to the field of shoe manufacturing technology, and in particular to a shoe manufacturing method and system. Background Technology

[0002] Shoe comfort is paramount. Most foot injuries and diseases are caused by ill-fitting shoes. Currently, the sizes of mass-produced shoes in the industrial industry depend on the size of the shoe last.

[0003] However, shoe lasts have fixed models and sizes, while everyone's foot shape is different, and even the left and right feet of the same person may have different shapes. Therefore, there is usually a difference between the shape of a person's foot and the shoe last, resulting in shoes that do not fit properly. Summary of the Invention

[0004] The purpose of this invention is at least to provide a method and system for manufacturing shoes, which can provide users with well-fitting and personalized shoes.

[0005] In a first aspect, the present invention also provides a method for manufacturing shoes, comprising: acquiring three-dimensional foot size data of a target user, the three-dimensional foot size data of the target user including: the foot length of the target user, the foot width of the target user, and the foot height of the target user; determining a target shoe last corresponding to the three-dimensional foot size data based on the three-dimensional foot size data and a target shoe type selected by the target user; determining a target foot mold corresponding to the three-dimensional foot size data based on the three-dimensional foot size data and the three-dimensional size data of the target shoe last; determining a shoe component related to the target foot mold, the size of the shoe component being associated with the three-dimensional size data of the target foot mold; generating an order for manufacturing the target shoe in response to a target shoe component selected by the target user; splitting the order into multiple sub-orders, and distributing the multiple sub-orders to manufacturers corresponding to the target shoe components.

[0006] Based on the target user's 3D foot dimensions and the selected shoe type, a target shoe last corresponding to the foot's 3D dimensions is determined. Based on the foot's 3D dimensions and the target shoe last's 3D dimensions, a target foot mold is further determined, and the associated shoe components and their dimensions are provided. Therefore, in the shoe manufacturing process, obtaining a target foot mold that matches the foot's 3D dimensions first allows for the creation of shoes that fit the target user's feet more closely. Providing the target user with different shoe component options enables personalized customization services.

[0007] Optionally, determining the target foot mold corresponding to the foot's three-dimensional dimensions based on the foot's three-dimensional dimensions and the target shoe last's three-dimensional dimensions includes: correcting the target shoe last's three-dimensional dimensions based on the difference between the foot's three-dimensional dimensions and the target shoe last's three-dimensional dimensions; and using the corrected target shoe last's three-dimensional dimensions as the target foot mold's three-dimensional dimensions.

[0008] Optionally, the step of correcting the three-dimensional dimensions of the target shoe last based on the difference between the three-dimensional dimensions of the foot and the three-dimensional dimensions of the target shoe last includes: obtaining the degree of difference between the three-dimensional dimensions of the foot and the three-dimensional dimensions of the target shoe last; if the degree of difference between the three-dimensional dimensions of the foot and the three-dimensional dimensions of the target shoe last is greater than a preset threshold, scaling the three-dimensional dimensions of the target shoe last proportionally.

[0009] By correcting the three-dimensional size data of the target shoe last, a target foot mold that is more compatible with the target user's foot can be obtained, thereby enabling the production of shoes that fit better.

[0010] Optionally, before correcting the three-dimensional dimensions of the target shoe last based on the three-dimensional dimensions of the foot and the three-dimensional dimensions of the target shoe last, the method further includes: determining that there is no candidate foot last in the preset foot last database that corresponds to the three-dimensional dimensions of the foot.

[0011] Optionally, after obtaining the target foot last, the method further includes: adding the target foot last to the foot last database.

[0012] If no candidate foot last exists in the foot last database, the target foot last is added to the database after it is obtained. By enriching the foot last database, the probability of finding a matching candidate foot last can be increased when obtaining 3D foot size data of other target users in the future.

[0013] Optionally, the shoe manufacturing method further includes: if it is determined that the candidate foot last exists in the foot last database, then the candidate foot last is used as the target foot last.

[0014] Optionally, the shoe manufacturing method further includes: acquiring comfort feedback data of the target user; and adjusting the three-dimensional dimension data of the candidate foot last based on the comfort feedback data.

[0015] Optionally, before generating an order for the target shoe, the method further includes: displaying a three-dimensional rendering of the target shoe in response to the target shoe components and accessories selected by the target user.

[0016] Once the target user selects the desired shoe components and accessories, a 3D rendering of the target shoe can be displayed. This allows the target user to intuitively understand the shoe's shape, style, and other information.

[0017] Optionally, providing shoe components and accessories related to the target shoe type selected by the target user includes: selecting shoe components and accessories related to the target shoe type from a shoe component database based on the target shoe type selected by the target user; the shoe component database is provided by the manufacturer of the shoe components.

[0018] Optionally, obtaining the target user's three-dimensional foot size data includes: obtaining the three-dimensional foot size data input by the target user; the three-dimensional foot size data being obtained by the target user through a measuring instrument, or the three-dimensional foot size data being measured through a grid-like foot measuring paper; or, querying the target user's three-dimensional foot size data based on the target user's identity information; or, in response to the target user's authorized operation, obtaining the target user's three-dimensional foot size data stored in other storage spaces.

[0019] Optionally, the method for manufacturing the customized shoes further includes: obtaining a status query request input by the target user and outputting the current production progress of the target shoes.

[0020] Secondly, the present invention also provides a custom shoe manufacturing system, comprising: an input unit for acquiring three-dimensional foot size data of a target user, the three-dimensional foot size data of the target user including: the target user's foot length, the target user's foot width, and the target user's foot height; a shoe last determination unit for determining a target shoe last corresponding to the three-dimensional foot size data based on the three-dimensional foot size data and the target shoe type selected by the target user; a foot mold determination unit for determining a target foot mold corresponding to the three-dimensional foot size data based on the three-dimensional foot size data and the three-dimensional size data of the target shoe last; a shoe component providing unit for determining shoe components related to the target foot mold, the size of the shoe component being associated with the three-dimensional size data of the target foot mold; an order generation unit for generating an order for manufacturing the target shoe in response to the target shoe component selected by the target user; and an order output unit for splitting the order into multiple sub-orders and distributing the multiple sub-orders to the manufacturers corresponding to the target shoe components. Attached Figure Description

[0021] Figure 1 This is a flowchart of a method for manufacturing custom shoes according to an embodiment of the present invention;

[0022] Figure 2This is a schematic diagram of a grid-shaped measuring paper according to an embodiment of the present invention;

[0023] Figure 3 This is a schematic diagram of the structure of a shoe manufacturing system according to an embodiment of the present invention. Detailed Implementation

[0024] In existing technology, shoe lasts are the foundation of shoemaking, typically made of materials such as wood and high-density polyethylene. Shoe lasts usually have fixed sizes and models. However, individual foot shapes vary, and even the left and right feet of the same person can differ. Therefore, shoes produced using shoe lasts of fixed sizes and models often do not fit perfectly, leading to discomfort when wearing them.

[0025] In addition, mass-produced shoes in the industrial sector have fewer styles and color options, and cannot meet users' personalized needs.

[0026] In this embodiment of the invention, a target shoe last corresponding to the target user's three-dimensional foot dimensions and the target shoe type selected by the target user is determined. Based on the three-dimensional foot dimensions and the target shoe last's three-dimensional dimensions, a target foot mold is further determined, and shoe components associated with the target foot mold and their dimensions are provided. Therefore, by first obtaining a target foot mold matching the three-dimensional foot dimensions during shoe manufacturing, shoes that fit the target user's feet more closely can be produced. Providing the target user with different shoe component options allows for personalized customization services.

[0027] To make the above-mentioned objectives, features and beneficial effects of the present invention more apparent and understandable, specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0028] This invention provides a method for manufacturing shoes, referring to... Figure 1 The following will provide a detailed explanation through specific steps.

[0029] In practice, the following shoe manufacturing method can be executed by a shoe manufacturing system. The shoe manufacturing system may include a human-computer interaction interface (HCI), through which the target user can interact with the customized shoe manufacturing system. Specifically, the target user can input data through the HCI, and the shoe manufacturing system can provide displayed content to the target user through the HCI.

[0030] In the following embodiments, unless otherwise stated, the human-computer interaction interface refers to the human-computer interaction interface of the shoe manufacturing system.

[0031] Step 101: Obtain the three-dimensional foot dimensions of the target user.

[0032] In this embodiment of the invention, the three-dimensional foot size data of the target user may include the foot length, foot width, and foot height of the target user.

[0033] In practice, the aforementioned foot length can be the maximum foot length; the aforementioned foot width can be the maximum foot width; and the aforementioned foot height can be the maximum foot height.

[0034] In practice, target users can obtain their own three-dimensional foot size data in advance through measuring instruments, and then input the measured three-dimensional foot size data into the shoe manufacturing system through a human-computer interaction interface.

[0035] For example, the human-computer interaction interface can include a "foot data input" option. After the target user has measured their own three-dimensional foot dimensions, they can click the "foot data input" option. In the pop-up dialog box, there are input boxes for "foot length," "foot width," and "foot height." The target user can then input the measured foot length, foot width, and foot height in sequence.

[0036] In other embodiments, the target user can also obtain three-dimensional foot size data through a grid-like foot measuring paper and input the measured three-dimensional foot size data into the shoe manufacturing system through a human-computer interaction interface.

[0037] The aforementioned grid-shaped measuring paper can be A3, A4, or A5 size, or other sizes. Target users can download the grid-shaped measuring paper online or request it from offline shoe stores.

[0038] Reference Figure 2 A schematic diagram of a grid-shaped measuring paper is given in an embodiment of the present invention. Figure 2 In the middle, the grid-shaped measuring paper is 30 cm long and 20 cm wide; each space is 1 mm long and 1 mm wide.

[0039] It is understandable that the above Figure 2 The grid-shaped measuring paper provided is for illustrative purposes only, and the specific size and shape of the grid-shaped measuring paper are not limited in this invention.

[0040] In other embodiments, target users can reserve their three-dimensional foot size data at offline shoe stores, and the staff of the offline shoe stores can input the target user's three-dimensional foot size data into the shoe manufacturing system.

[0041] In other embodiments, the target user can directly authorize the shoe manufacturing system to obtain foot 3D size data from other storage spaces.

[0042] For example, the target user's 3D foot dimensions are stored in a shared cloud space. The target user can authorize the shoe manufacturing system to access the cloud storage space to obtain the target user's 3D foot dimensions data.

[0043] If a target user has previously customized a shoe in the shoe manufacturing system, the system can store that user's historical 3D foot measurement data. Therefore, the shoe manufacturing system can retrieve the target user's 3D foot measurement data from the stored historical data based on the user's identity information.

[0044] It is understood that the shoe manufacturing system may acquire the three-dimensional foot size data of the target user in ways not limited to the above-mentioned methods, and all methods that can acquire the three-dimensional foot size data of the target user are within the protection scope of this invention.

[0045] Step 102: Based on the foot three-dimensional size data and the target shoe type selected by the target user, determine the target shoe last corresponding to the foot three-dimensional size data.

[0046] In this embodiment of the invention, after obtaining the three-dimensional foot size data of the target user, the corresponding target shoe last can be determined based on the three-dimensional foot size data and the target shoe type selected by the target user.

[0047] In practice, the human-computer interaction interface can display a "Shoe Type" option. When the target user clicks the "Shoe Type" option through the human-computer interaction interface, different shoe types can be displayed to the target user. Different shoe types can include high heels, running shoes, sneakers, soccer shoes, basketball shoes, hiking shoes, canvas shoes, rubber shoes, etc. Different shoe types can also distinguish between men's and women's shoes.

[0048] For the same three-dimensional foot dimensions, different shoe types require different lasts, and the corresponding three-dimensional dimensions of the lasts will also be different.

[0049] In practice, a shoe last database can be pre-acquired. Then, after obtaining the target user's three-dimensional foot size data, the shoe last corresponding to the foot's three-dimensional size data can be retrieved from the pre-established database and used as the target shoe last. The shoe last data in the aforementioned database can be provided by the shoe manufacturer.

[0050] For example, if user A selects "high heels" on the human-computer interaction interface, then based on user A's 3D foot dimensions A, target shoe last B1 is selected from the shoe last database. Target shoe last B1 is the shoe last corresponding to high heels. If user A selects "running shoes" on the human-computer interaction interface, then based on user A's 3D foot dimensions A, target shoe last B2 is selected from the shoe last database. Target shoe last B2 is the shoe last corresponding to running shoes. The 3D dimensions of target shoe last B1 are different from those of target shoe last B2.

[0051] Step 103: Based on the three-dimensional foot size data and the three-dimensional size data of the target shoe last, determine the target foot mold corresponding to the three-dimensional foot size data.

[0052] In practice, a foot last database can be pre-established. This database can contain 3D foot size data for several different users, as well as the corresponding foot lasts for each foot size. In other words, the foot last database can include several mapping relationships between 3D foot size data and foot lasts.

[0053] Before proceeding to step 103, it can be determined whether a foot last that matches the target user's three-dimensional foot size data exists in the foot last database. Specifically, this can be done by looking up a table to determine if a foot last matching the target user's three-dimensional foot size data exists in the foot last database.

[0054] In this embodiment of the invention, if there is a foot last (hereinafter referred to as a candidate foot last) in the preset foot last database that matches the three-dimensional foot size data of the target user, then the candidate foot last can be used as the target foot last.

[0055] In specific implementation, the aforementioned candidate foot lasts can refer to foot lasts in a preset foot last database whose 3D size data differs from the target user's 3D foot size data within a preset threshold range.

[0056] For example, in the target user's three-dimensional foot size data A, the maximum foot length is L1, the maximum foot width is W1, and the maximum foot height is H1. In the foot last database, there exists a foot last C with a maximum foot length of L2, a maximum foot width of W1, and a maximum foot height of H2.

[0057] If the difference between L2 and L1 is within the preset threshold range, and the difference between H2 and H1 is within the preset threshold range, then foot last C is determined as a candidate foot last.

[0058] If the difference between L2 and L1 is within the preset threshold range, and the difference between H2 and H1 exceeds the preset threshold range, then foot last C cannot be determined as a candidate foot last.

[0059] In practice, based on the target user's three-dimensional foot dimensions, two or more candidate foot lasts can be selected from the foot last database. In this scenario, the candidate foot last with the smallest sum of differences from the target user's three-dimensional foot dimensions can be used as the target foot last. Alternatively, the candidate foot last with the smallest difference from the target user's maximum foot length and / or maximum foot width and / or maximum foot height can be used as the target foot last.

[0060] For example, in the target user's three-dimensional foot size data A, the maximum foot length is L1, the maximum foot width is W1, and the maximum foot height is H1. In the foot last database, there exists a foot last C1 with a maximum foot length of L2, a maximum foot width of W1, and a maximum foot height of H2; and a foot last C2 with a maximum foot length of L3, a maximum foot width of W2, and a maximum foot height of H1.

[0061] The differences between L2 and L1 (△1), L3 and L1 (△2), W2 and W1 (△3), and H2 and H1 (△4) are all within the preset threshold range. The sum of △1 and △2 is greater than the sum of △2 and △3. Therefore, foot last C2 is selected as the target foot last.

[0062] In this embodiment of the invention, if there is no foot last in the preset foot last database that matches the three-dimensional foot size data of the target user, the three-dimensional size data of the target shoe last can be corrected based on the difference between the three-dimensional foot size data of the target user and the three-dimensional size data of the target shoe last, and the corrected three-dimensional size data of the target shoe last can be used as the three-dimensional size data of the target foot last.

[0063] In practice, based on human experience (such as the experience of shoemakers), the three-dimensional dimensions of the target shoe last can be corrected according to the three-dimensional dimensions of the target user's foot to obtain a target foot mold that fits the target user.

[0064] Alternatively, the 3D dimensions of the target shoe last can be corrected based on the target user's foot 3D size data through machine calculation. Specifically, if the difference between the foot 3D size data and the target shoe last 3D size data exceeds a preset threshold range, the target shoe last 3D size data is scaled proportionally.

[0065] For example, if the maximum foot length in the three-dimensional foot size data is A1, and the maximum foot length corresponding to the target shoe last is A2, and the difference between the two, A1-A2, is greater than a preset threshold △1, then the maximum foot length corresponding to the target shoe last will be enlarged to A1.

[0066] For example, if the maximum foot width in the three-dimensional foot size data is B1, and the maximum foot width corresponding to the target shoe last is B2, and the difference between the two, B2-B1, is greater than a preset threshold △2, then the maximum foot width corresponding to the target shoe last will be reduced to B1.

[0067] Alternatively, the target foot last can be obtained directly from the target user's three-dimensional foot size data through artificial intelligence graphics calculation.

[0068] Alternatively, a certain amount of historical foot 3D size data and corresponding shoe last 3D size data can be pre-acquired. The historical foot 3D size data can be used as input to a neural network model, and the corresponding shoe last 3D size data as output. This allows for training of the neural network model, resulting in a foot last neural network model. Then, the target user's foot 3D size data can be input into the foot last neural network model. Through big data processing, the corresponding target foot last can be obtained.

[0069] In this embodiment of the invention, the target user can also input comfort feedback data through a human-computer interaction interface. Based on the comfort feedback data input by the target user, the corresponding foot lasts in the foot last database can also be corrected.

[0070] Specifically, if the comfort feedback data input by a target user indicates that the shoe size is too small (or the shoe length is too short), the three-dimensional size data of the foot last corresponding to that target user in the foot last database can be corrected to increase the foot length of the foot last.

[0071] Step 104: Based on the target shoe type selected by the target user, provide shoe parts and accessories related to the target shoe type.

[0072] In practice, once a target user selects a target shoe type, the human-computer interaction interface can display shoe components related to that type. The dimensions of these shoe components can be correlated with the three-dimensional dimensional data of the target foot last.

[0073] The target user can select their preferred shoe component on the human-computer interaction interface. In the following embodiments, the shoe component selected by the target user is the target shoe component.

[0074] In practical applications, shoe components can include the upper, midsole, lining, insole, shank, outsole, toe cap, tongue, and heel. Users can select the appropriate shoe components for their desired style through a user-friendly interface.

[0075] In some embodiments, shoe components may also have corresponding material options. Target users can also select shoe components of different materials through a human-computer interaction interface.

[0076] In practice, the human-computer interface of the shoe manufacturing system can also display a "Shoe Accessories" option. Shoe accessories can include small pendants, stickers, etc. Target users can click the "Shoe Accessories" option to select the corresponding shoe accessories to personalize their favorite shoes.

[0077] Step 105: In response to the target shoe component selected by the target user, generate an order to manufacture the target shoe.

[0078] In this embodiment of the invention, after obtaining the target shoe component selected by the target user, an order for customized target shoes can be generated accordingly.

[0079] Specifically, after selecting the target shoe component through the human-computer interaction interface, the target user can click the "Confirm" option to confirm the selected component. The shoe manufacturing system detects this confirmation and generates a corresponding order for the customized shoe.

[0080] In practice, if the target user also selects target shoe accessories, a custom target shoe order can be generated after obtaining the target shoe parts and accessories selected by the target user.

[0081] Specifically, after selecting the target shoe components and accessories through the human-computer interaction interface, the target user can click the "Confirm" option to confirm the selected components and accessories. The shoe manufacturing system detects this confirmation and generates a corresponding order for the customized shoes.

[0082] In this embodiment of the invention, a three-dimensional rendering of the target shoe can be displayed based on the target shoe component selected by the target user. Alternatively, a three-dimensional rendering of the target shoe can be displayed based on the target shoe component and accessories selected by the target user.

[0083] In practice, when a target user selects a target shoe component and / or target shoe accessory, the corresponding 3D rendering of the target shoe can be updated to show the target user the effect of the selected target shoe component and / or target shoe accessory in real time.

[0084] Alternatively, when a target user selects a target shoe component and / or target shoe accessory, a corresponding 3D rendering of the selected target shoe component and / or target shoe accessory can be generated and compared with the 3D rendering before the selection of the target shoe component and / or target shoe accessory, so as to more intuitively show the target user the effect of the selected target shoe component and / or target shoe accessory.

[0085] In practice, after generating an order, the shoe manufacturing system can provide the user with a QR code to uniquely identify the order for the target shoes.

[0086] Step 106: Split the order into multiple sub-orders and distribute the multiple sub-orders to the manufacturers corresponding to the target shoe parts.

[0087] In practice, the shoe manufacturing system can identify the manufacturers of the target shoe components and accessories (if the target user selected shoe accessories), and split the target shoe order into multiple sub-orders. These sub-orders are then distributed to their respective manufacturers, who produce the corresponding target shoe components and accessories.

[0088] For example, manufacturer A manufactures the upper, mid-top, and lining; manufacturer B manufactures the insole, shank, and outsole; manufacturer C manufactures the toe box, tongue, and heel; and manufacturer D manufactures the target shoe accessories. After receiving an order for the target shoe, the order can be split into Order 1, Order 2, Order 3, and Order 4. Order 1 corresponds to the upper, mid-top, and lining; Order 2 corresponds to the insole, shank, and outsole; Order 3 corresponds to the toe box, tongue, and heel; and Order 4 corresponds to the target shoe accessories. Order 1 is distributed to manufacturer A, Order 2 to manufacturer B, Order 3 to manufacturer C, and Order 4 to manufacturer D.

[0089] In practice, different manufacturers can transport the target shoe parts and accessories they produce to a specific shoe factory via logistics, where the shoe factory will process and sew the target shoe parts and accessories to obtain the target shoe.

[0090] Understandably, other methods can also be used to process and sew together the target shoe components and accessories to obtain the target shoe. For example, the components and accessories can be transported to offline shoe stores via logistics, where they can be processed and sewn together to produce the target shoe.

[0091] After the target shoes are processed and sewn together, they can be transported to the delivery address reserved by the target user via logistics. The target user can pre-fill the delivery address in the shoe manufacturing system. Alternatively, the target user can reserve a delivery address at a physical shoe store, where service personnel will input the address into the manufacturing system. Alternatively, the target user can also pick up the target shoes at a physical shoe store.

[0092] In this embodiment of the invention, the shoe manufacturing system can also provide a status query function for the target user. The target user can click the "Status Query" option on the human-computer interaction interface to trigger a status query request. After receiving the status query request input by the target user, the system can display and output information such as the current production progress and logistics status of the target shoe. Thus, the target user can intuitively understand the current status of the target shoe.

[0093] In some embodiments, if the target shoe has not yet been completed, after receiving a status query request from the target user, the estimated completion time of the target shoe production can be provided to the target user and displayed, so that the target user can intuitively know the completion time of the target shoe production.

[0094] In practice, once the target shoes have been produced, the target users can be notified via SMS, email, or telephone to ensure they are promptly informed of the completion of production and enhance their service experience.

[0095] In summary, the shoe manufacturing method provided in this embodiment of the invention does not rely on a fixed-size shoe last, thus allowing the target shoe to fit the target user's foot more closely. Providing the target user with a choice of different shoe components and accessories allows for personalized footwear.

[0096] Reference Figure 3 This invention provides a shoe manufacturing system according to an embodiment of the invention, comprising: an input unit 301, a shoe last determination unit 302, a foot mold last determination unit 303, a shoe component providing unit 304, an order generation unit 305, and an order output unit 306, wherein:

[0097] Input unit 301 is used to acquire three-dimensional foot size data of the target user, the three-dimensional foot size data of the target user includes: the foot length of the target user, the foot width of the target user, and the foot height of the target user;

[0098] The shoe last determination unit 302 is used to determine the target shoe last corresponding to the three-dimensional foot size data based on the foot size data and the target shoe type selected by the target user;

[0099] Foot last determination unit 303 is used to determine a target foot last corresponding to the three-dimensional size data of the foot based on the three-dimensional size data of the foot and the three-dimensional size data of the target shoe last;

[0100] A shoe component providing unit 304 is used to determine a shoe component associated with the target foot last, the size of which is related to the target foot last;

[0101] The order generation unit 305 is used to generate an order for customizing the target shoe in response to the target shoe component selected by the target user.

[0102] The order output unit 306 is used to split the order into multiple sub-orders based on the target shoe component, and distribute the multiple sub-orders to the corresponding manufacturers.

[0103] In specific implementation, the specific execution process of the above-mentioned input unit 301, shoe last determination unit 302, foot mold last determination unit 303, shoe component provision unit 304, order generation unit 305 and order output unit 306 can be referred to steps 101 to 106, which will not be elaborated here.

[0104] Those skilled in the art will understand that all or part of the steps in the various methods of the above embodiments can be performed by a program instructing related hardware. The program can be stored in a computer-readable storage medium, which may include ROM, RAM, disk, or optical disk, etc.

[0105] While the present invention has been disclosed above, it is not limited thereto. Any person skilled in the art can make various modifications and alterations without departing from the spirit and scope of the invention; therefore, the scope of protection of the present invention should be determined by the scope defined in the claims.

Claims

1. A method for manufacturing a shoe, characterized in that, include: Obtain the user's three-dimensional foot dimensions data, which include: the user's foot length, the user's foot width, and the user's foot height; Based on the foot's three-dimensional dimensions and the target shoe type selected by the user, determine the target shoe last corresponding to the foot's three-dimensional dimensions; Based on the three-dimensional foot size data and the three-dimensional size data of the target shoe last, a target foot mold corresponding to the three-dimensional foot size data is determined; Identify shoe components associated with the target foot last, the dimensions of which are related to the three-dimensional dimensional data of the target foot last; In response to the user's selection of a target shoe component, an order for the production of the target shoe is generated; The order is split into multiple sub-orders, and the multiple sub-orders are distributed to the manufacturers corresponding to the target shoe components.

2. The method for manufacturing shoes as described in claim 1, characterized in that, The step of determining the target foot last corresponding to the three-dimensional foot dimensions based on the foot's three-dimensional dimensions and the target shoe last's three-dimensional dimensions includes: Based on the difference between the foot's three-dimensional dimensions and the target shoe last's three-dimensional dimensions, the target shoe last's three-dimensional dimensions are corrected. The corrected three-dimensional dimensions of the target shoe last are used as the three-dimensional dimensions of the target foot mold.

3. The method for manufacturing shoes as described in claim 2, characterized in that, The step of correcting the three-dimensional dimensions of the target shoe last based on the difference between the three-dimensional dimensions of the foot and the three-dimensional dimensions of the target shoe last includes: The degree of difference between the three-dimensional foot size data and the three-dimensional size data of the target shoe last is obtained; If the difference between the foot's three-dimensional dimensions and the target shoe last's three-dimensional dimensions exceeds a preset threshold, the target shoe last's three-dimensional dimensions are scaled proportionally.

4. The method for manufacturing shoes as described in claim 2, characterized in that, Before correcting the three-dimensional dimensions of the target shoe last based on the foot's three-dimensional dimensions and the target shoe last's three-dimensional dimensions, the method further includes: It was determined that there was no candidate foot last in the preset foot last database that corresponded to the three-dimensional foot size data.

5. The method for manufacturing shoes as described in claim 4, characterized in that, After obtaining the target foot last, the process also includes: Add the target foot last to the foot last database.

6. The method for manufacturing shoes as described in claim 4, characterized in that, Also includes: If it is determined that the candidate foot last exists in the foot last database, then the candidate foot last is used as the target foot last.

7. The method for manufacturing shoes as described in claim 6, characterized in that, Also includes: Obtain comfort feedback data from target users; Based on the comfort feedback data, the three-dimensional dimensional data of the candidate foot last are adjusted.

8. The method for manufacturing shoes as described in claim 1, characterized in that, Before generating an order for the target shoes, the following steps are also included: In response to the target shoe component and accessory selected by the target user, a 3D rendering of the target shoe is displayed.

9. The method for manufacturing shoes as described in claim 1, characterized in that, The acquisition of the target user's three-dimensional foot size data includes: The three-dimensional foot size data input by the target user is obtained; the three-dimensional foot size data is obtained by the target user through a measuring instrument, or the three-dimensional foot size data is obtained by measuring through a grid-like foot measuring paper; Alternatively, based on the target user's identity information, query the target user's three-dimensional foot size data; Alternatively, in response to the target user's authorized action, the target user's three-dimensional foot size data stored in other storage spaces can be obtained.

10. A shoe manufacturing system, characterized in that, include: The input unit is used to acquire the three-dimensional foot size data of the target user, which includes: the foot length, the foot width, and the foot height of the target user; The shoe last determination unit is used to determine the target shoe last corresponding to the three-dimensional foot size data based on the foot size data and the target shoe type selected by the target user; The foot last determination unit is used to determine the target foot last corresponding to the three-dimensional size data of the foot based on the three-dimensional size data of the foot and the three-dimensional size data of the target shoe last; A shoe component providing unit is configured to determine a shoe component associated with the target foot last, the size of which is related to the target foot last; An order generation unit is used to generate an order for the production of the target shoe in response to the target shoe component selected by the target user. The order output unit is used to split the order into multiple sub-orders and distribute the multiple sub-orders to the manufacturers corresponding to the target shoe components.