Magnetic eyelash manufacturing method and system, medium and device

By obtaining eyelash sparseness images and adjusting the spacing of false eyelashes, the problem of uneven distribution of magnetic eyelashes is solved, and the uniform distribution of eyelashes and false eyelashes is achieved, which improves the aesthetic effect.

WO2025166489A1PCT designated stage Publication Date: 2025-08-14SHENZHEN QIANHAI MAGWOW TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/076030
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-02-05
Publication Date
2025-08-14

AI Technical Summary

Technical Problem

Existing magnetic eyelashes cannot adjust the spacing of false eyelashes according to the user's upper eyelash sparseness, resulting in uneven distribution of false eyelashes and true eyelashes.

Method used

The image of the eyelash root is obtained through the image collector, the eyelash sparseness is identified, the flexible magnetic stripe is cropped and false eyelashes are set on its surface, and the false eyelash spacing is adjusted according to the sparseness curve to form a pair of flexible magnetic stripes to adapt to the eyelash distribution of different users.

Benefits of technology

The overall distribution of false eyelashes and real eyelashes is achieved, and the aesthetic effect is enhanced.

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Abstract

A magnetic eyelash (21, 22) manufacturing method and system, a medium, and a device. The method comprises: obtaining an eyelash root image of upper eyelashes (21); obtaining a distribution area length (L) of the upper eyelashes (21) on the basis of the eyelash root image; cutting a flexible magnetic sheet (41) on the basis of the distribution area length (L) to obtain a pair of flexible magnetic strips, wherein the pair of flexible magnetic strips comprises a first flexible magnetic strip (42) and a second flexible magnetic strip (43), and the length of the first flexible magnetic strip (42) and the length of the second flexible magnetic strip (43) are the distribution area length (L); on the basis of the eyelash root image, arranging a plurality of false eyelashes (421a, 421b, 421c) spaced apart on the surface of the first flexible magnetic strip (42) facing away from the second flexible magnetic strip (43); and on the basis of the eyelash root image, arranging a plurality of false eyelashes (421a, 421b, 421c) spaced apart on the surface of the second flexible magnetic strip (43) facing away from the first flexible magnetic strip (42). Different distribution spacings (K2-K1, K3-K2) of false eyelashes can be set, and the distribution spacings (K2-K1, K3-K2) of the false eyelashes can be reduced in areas where a user's upper eyelashes are sparse, thereby ensuring a visually uniform distribution of natural and false eyelashes when the user wears the magnetic eyelashes.
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Description

Magnetic eyelash manufacturing method, system, medium and equipment Technical Field

[0001] The present invention relates to a technology in the field of fire protection, in particular to a method, system, medium and equipment for manufacturing magnetic eyelashes. Background Art

[0002] False eyelashes are artificial eyelashes used to beautify the eyes, typically by lengthening and thickening them to create a larger, brighter, fuller, and more expressive look. Among existing false eyelashes, some are magnetic, adhering to each other through magnetic force. For example, the magnetic eyelashes disclosed in US Patent Application No. 14801198, entitled "Non-Adhesive False Eyelash System and Method," utilize a magnetic element to provide magnetic force. This magnetic element is attached to a substrate strip, meaning the magnetic element is connected via the substrate strip.

[0003] However, the distance and sparseness between the users' upper eyelashes (real eyelashes) are inconsistent. The spacing between the false eyelashes of the magnetic eyelashes is fixed, and it is impossible to adapt to the different sparseness of the upper eyelashes of different users. That is, the spacing between the false eyelashes cannot be adjusted to adapt to the different distribution of the real eyelashes of different users. Summary of the Invention

[0004] In response to the above-mentioned shortcomings of the prior art, the present invention proposes a method, system, medium and equipment for manufacturing magnetic eyelashes. Based on the eyelash root image, the sparseness of the user's upper eyelashes can be obtained, and different distribution spacings of false eyelashes can be set. The spacing of false eyelashes is reduced in areas where the user's upper eyelashes are relatively sparse, so that from an external visual perspective, the eyelashes and false eyelashes are evenly distributed after the user wears the magnetic eyelashes.

[0005] According to one aspect of the present invention, there is provided a method for manufacturing magnetic eyelashes, comprising the following steps:

[0006] Obtaining an eyelash root image of the upper eyelashes;

[0007] Obtaining the distribution area length of the upper eyelashes according to the eyelash root image;

[0008] A pair of flexible magnetic strips is obtained by cutting a flexible magnetic sheet according to the length of the distribution area, wherein the pair of flexible magnetic strips includes a first flexible magnetic strip and a second flexible magnetic strip, and the length of the first flexible magnetic strip and the second flexible magnetic strip is the length of the distribution area;

[0009] Disposing a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image;

[0010] A plurality of false eyelashes are arranged at intervals on a surface of the second flexible magnetic strip that is away from the first flexible magnetic strip according to the eyelash root image.

[0011] Preferably, the method of disposing a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image comprises:

[0012] Performing feature recognition based on the eyelash root image to obtain an eyelash sparseness curve of the upper eyelashes, wherein the eyelash sparseness is the number of the upper eyelashes per unit length;

[0013] Obtaining a spacing between each of the false eyelashes disposed on the first flexible magnetic strip according to the eyelash sparseness curve and a first preset average value of the eyelash sparseness;

[0014] The false eyelashes are arranged at intervals on a surface of the first flexible magnetic strip that is away from the second flexible magnetic strip according to the intervals between the false eyelashes.

[0015] Preferably, the method of arranging a plurality of false eyelashes at intervals on a surface of the second flexible magnetic strip facing away from the first flexible magnetic strip according to the eyelash root image comprises:

[0016] Performing feature recognition based on the eyelash root image to obtain an eyelash sparseness curve of the upper eyelashes, wherein the eyelash sparseness is the number of the upper eyelashes per unit length;

[0017] Obtaining a spacing between each of the false eyelashes disposed on the second flexible magnetic strip according to the eyelash sparseness curve and a second preset average value of the eyelash sparseness;

[0018] The false eyelashes are arranged at intervals on a surface of the second flexible magnetic strip that is away from the first flexible magnetic strip according to the intervals between the false eyelashes.

[0019] Preferably, the image of the root of the eyelashes is collected by an image collector, and the image collector has a collection plane in contact with the root of the upper eyelashes, and the collection plane is provided with a plurality of image sensors.

[0020] Preferably, the image sensor is a charge coupled device image sensor.

[0021] Preferably, the spacing between each of the false eyelashes arranged on the first flexible magnetic strip is obtained according to the eyelash rarefaction curve and a first visual rarefaction curve.

[0022] Preferably, the spacing between each of the false eyelashes arranged on the second flexible magnetic strip is obtained according to the eyelash rarefaction curve and a second visual rarefaction curve.

[0023] According to one aspect of the present invention, there is provided a magnetic eyelash manufacturing system, characterized in that it comprises:

[0024] An image acquisition module, for obtaining an image of the root of the upper eyelashes;

[0025] a length recognition module for obtaining the length of the distribution area of ​​the upper eyelashes according to the eyelash root image;

[0026] a cutting module for cutting a flexible magnetic stripe pair from a flexible magnetic sheet according to the length of the distribution area, wherein the flexible magnetic stripe pair includes a first flexible magnetic stripe and a second flexible magnetic stripe, and the length of the first flexible magnetic stripe and the second flexible magnetic stripe is the length of the distribution area;

[0027] a first false eyelash setting module, which sets a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image;

[0028] The second false eyelash setting module sets a plurality of false eyelashes at intervals on a surface of the second flexible magnetic strip facing away from the first flexible magnetic strip according to the eyelash root image.

[0029] According to one aspect of the present invention, there is provided a magnetic eyelash manufacturing device, comprising:

[0030] processor;

[0031] a memory storing executable instructions for the processor;

[0032] The processor is configured to execute the steps of the method for manufacturing magnetic eyelashes according to claim 1 by executing the executable instructions.

[0033] According to one aspect of the present invention, a computer-readable storage medium is provided for storing a program, wherein the program, when executed, implements the steps of the above-mentioned method for manufacturing magnetic eyelashes.

[0034] The beneficial effects of the above technical solution are:

[0035] The magnetic eyelash manufacturing method, system, medium, and device of the present invention can obtain the sparseness of the user's upper eyelashes based on the eyelash root image, and then set different distribution spacings of false eyelashes. The spacing of false eyelashes is reduced in the area where the user's upper eyelashes are relatively sparse, so that the eyelashes and false eyelashes are evenly distributed overall after the user wears the magnetic eyelashes from an external visual perspective.

[0036] Other features and advantages of the present invention, as well as the structure and operation of various embodiments of the present invention, will be described in detail below with reference to the accompanying drawings. It should be noted that the present invention is not limited to the specific embodiments described herein. These embodiments are provided herein for illustrative purposes only. BRIEF DESCRIPTION OF THE DRAWINGS

[0037] Other features, objects and advantages of the present invention will become more apparent from the following detailed description of non-limiting embodiments with reference to the accompanying drawings.

[0038] FIG1 is a schematic flow chart of a method for manufacturing magnetic eyelashes according to the present invention;

[0039] FIG2 is a schematic diagram of an eyelash root image acquisition scenario according to the present invention;

[0040] FIG3 is a schematic diagram of an image of the root of eyelashes according to the present invention;

[0041] FIG4 is a schematic diagram of cutting a flexible magnetic strip according to the present invention;

[0042] FIG5 is a flow chart of a first method for setting flexible magnetic false eyelashes according to the present invention;

[0043] FIG6 is a schematic diagram of an eyelash sparseness curve according to the present invention;

[0044] FIG7 is a schematic diagram of installing false eyelashes according to the present invention;

[0045] FIG8 is a flow chart of a first method for setting flexible magnetic strip false eyelashes according to the present invention;

[0046] FIG9 is a schematic diagram of an eyelash sparseness curve according to the present invention;

[0047] FIG10 is a schematic diagram of the installation of false eyelashes with a second flexible magnetic strip according to the present invention;

[0048] FIG11 is a schematic diagram of a first visual sparsity curve of the present invention;

[0049] FIG12 is a schematic diagram of a second visual sparsity curve of the present invention;

[0050] FIG13 is a schematic diagram of the assembly of the first flexible magnetic strip and the second flexible magnetic strip of the present invention;

[0051] FIG14 is a structural block diagram of a magnetic eyelash manufacturing system according to the present invention;

[0052] FIG15 is a block diagram of the magnetic eyelash manufacturing device of the present invention;

[0053] FIG16 is a schematic diagram of the structure of a computer-readable storage medium of the present invention.

[0054] The features and advantages of the present invention will become more apparent from the following detailed description taken in conjunction with the accompanying drawings. Throughout the accompanying drawings, the same figures identify corresponding elements. In the accompanying drawings, the same reference numerals generally indicate the same, functionally similar and / or structurally similar elements. DETAILED DESCRIPTION

[0055] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without creative work are within the scope of protection of the present invention.

[0056] The terms "first", "second" and similar words used in this application do not indicate any order, quantity or importance, but are only used to distinguish different components. Words such as "include" or "comprise" mean that the elements or objects preceding the word include the elements or objects listed after the word and their equivalents, without excluding other elements or objects. Words such as "connect" or "connected" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. "Up", "down", "left", "right" and the like are only used to indicate relative position relationships. When the absolute position of the object being described changes, the relative position relationship may also change accordingly.

[0057] It should be noted that, in the absence of conflict, the embodiments of the present invention and the features in the embodiments may be combined with each other.

[0058] The present invention will be further described below with reference to the accompanying drawings and specific embodiments, but they are not intended to limit the present invention.

[0059] According to one aspect of the present invention, a method for manufacturing magnetic eyelashes is provided.

[0060] Figure 1 is a schematic flow chart of a method for manufacturing magnetic eyelashes according to the present invention. Figure 2 is a schematic diagram of a scenario for capturing an image of the root of eyelashes according to the present invention. Referring to Figure 1, the method for manufacturing magnetic eyelashes according to the present invention includes steps S102, S104, S106, S108, and S110. In step S102, a strip-shaped image of the root of the upper eyelashes is obtained. Referring to Figure 2, an image of the upper eyelashes 21 at the user's eyelid 22 is captured by the image collector 23 shown in Figure 2. The image collector 23 is a flat surface having a capture plane 231 separated from the root of the upper eyelashes. Its outer contour is arc-shaped and corresponds to the user's eye contour. The image collector 23 is evenly distributed with multiple image sensors 232 on the capture plane 231. These image sensors 232 can be charge-coupled device (CCD) image sensors. This ensures that the image of the root of the eyelashes captured by the image collector 23, which is attached to the eyelid 22, does not deform.

[0061] Figure 3 is a schematic diagram of an eyelash root image according to the present invention. The eyelash root image shown in Figure 3 is captured by the image collector 23 shown in Figure 2. The eyelash root image is initially arc-shaped, but is transformed into a rectangle as shown in Figure 3. In step S104, the length of the upper eyelash distribution area is obtained based on the eyelash root image. Specifically, a distribution area 31 of the upper eyelashes 21 is identified in the eyelash root image, and the length of this distribution area 31, i.e., the distribution area length L, is also obtained through measurement. All eyelash roots 32 within this distribution area length L are located within this distribution area 31.

[0062] FIG4 is a schematic diagram of a flexible magnetic strip cutting method according to the present invention. In step S106, a flexible magnetic strip pair is obtained by cutting a flexible magnetic sheet according to the distribution area length. The flexible magnetic strip pair includes a first flexible magnetic strip and a second flexible magnetic strip, and the length of the first flexible magnetic strip and the second flexible magnetic strip is the distribution area length. Referring to FIG4 , after obtaining the distribution area length L, cutting is performed on the flexible magnetic sheet 41 to obtain the required first flexible magnetic strip 42 and second flexible magnetic strip 43. The first flexible magnetic strip 42 and the second flexible magnetic strip 43 are both arc-shaped. The arc length of the first flexible magnetic strip 42 is the distribution area length L, and the arc length of the second flexible magnetic strip 43 is the distribution area length L. The first flexible magnetic strip 42 and the second flexible magnetic strip 43 are mutually attracted by magnetic force to form a flexible magnetic strip pair.

[0063] Figure 5 is a flow chart of a method for setting false eyelashes using a first flexible magnetic strip according to the present invention. Figure 6 is a schematic diagram of an eyelash sparseness curve according to the present invention. Figure 7 is a schematic diagram of false eyelash installation according to the present invention. In step S108, multiple false eyelashes are spaced apart and set on the surface of the first flexible magnetic strip facing away from the second flexible magnetic strip based on the eyelash root image. Step S108 can be specifically implemented through steps S202, S204, and S206. In step S202, feature recognition is performed based on the eyelash root image to obtain an eyelash sparseness curve for the eyelash sparseness of the upper eyelashes. Eyelash sparseness is the number of upper eyelashes per unit length. The unit of eyelash sparseness is roots / mm. For example, if there is one upper eyelash per 1mm of length, the eyelash sparseness is 1 root / mm. After feature recognition is performed on the entire eyelash root image, the user's upper eyelashes and their positions are identified, and the eyelash sparseness curve shown in Figure 6 is obtained. In step S204, the spacing between each false eyelash installed on the first flexible magnetic strip is determined based on the eyelash sparseness curve and a first preset mean value of the eyelash sparseness. Referring to Figure 6 , the first preset mean value is U1, so the area between U1 and the eyelash sparseness curve can be calculated. If the area of ​​block S1 and the area of ​​block S2 are equal to 1, then the spacing between the false eyelashes located at locations K1, K2, and K3 is (K2-K1) and (K3-K2). In step S206, the false eyelashes are spaced apart and installed on the side of the first flexible magnetic strip facing away from the second flexible magnetic strip based on their spacing. Referring to Figure 7 , after obtaining the two spacings (K2-K1) and (K3-K2), the distance between false eyelashes 421b and 421a of the first flexible magnetic strip 42 in Figure 7 is (K2-K1), and the distance between false eyelashes 421c and 421b is (K3-K2). Through steps 202, S204, and S206, after the first flexible magnetic strip 42 is worn, the visual sparseness of the false eyelashes and the user's upper eyelashes (the number of false eyelashes and upper eyelashes per unit length) is kept constant due to the different spacing between the false eyelashes set on the first flexible magnetic strip.

[0064] Figure 8 is a flow chart of a method for setting false eyelashes using a first flexible magnetic strip according to the present invention. Figure 9 is a schematic diagram of an eyelash sparseness curve according to the present invention. Figure 10 is a schematic diagram of a false eyelash installation method using a second flexible magnetic strip according to the present invention. In step S110, multiple false eyelashes are spaced apart and set on the surface of the second flexible magnetic strip facing away from the first flexible magnetic strip based on the eyelash root image. Step S110 can be specifically implemented through steps S302, S304, and S306. In step S302, feature recognition is performed based on the eyelash root image to obtain an eyelash sparseness curve for the eyelash sparseness of the upper eyelashes. Eyelash sparseness is the number of upper eyelashes per unit length. The unit of eyelash sparseness is roots / mm. For example, if there is one upper eyelash per 1mm of length, the eyelash sparseness is 1 root / mm. After feature recognition is performed on the entire eyelash root image, the user's upper eyelashes and their positions are identified, resulting in the eyelash sparseness curve shown in Figure 9. In step S304, the spacing between each false eyelash installed on the second flexible magnetic strip is determined based on the eyelash sparseness curve and a second preset mean value of the eyelash sparseness. Referring to Figure 9 , the second preset mean value is U2, so the area between U2 and the eyelash sparseness curve can be calculated. If the area of ​​block S3 and the area of ​​block S4 are equal to 1, then the spacing between the false eyelashes located at K4, K5, and K6 is (K5 - K4) and (K6 - K5). In step S306, the false eyelashes are spaced apart on the side of the second flexible magnetic strip facing away from the first flexible magnetic strip based on their spacing. For example, in step S304, the two spacings (K5 - K4) and (K6 - K5) are determined. Therefore, the distance between false eyelashes 431b and 431a in the second flexible magnetic strip 43 in Figure 10 is (K5 - K4), and the distance between false eyelashes 431c and 431b is (K6 - K5). Through steps 302, S304 and S306, after the second flexible magnetic strip 43 is worn, the visual sparseness of the false eyelashes and the user's upper eyelashes (the number of false eyelashes and upper eyelashes per unit length) is kept constant due to the different spacing between the false eyelashes set on the second flexible magnetic strip.

[0065] Figure 11 is a schematic diagram of a first visual sparsity curve according to the present invention. Figure 12 is a schematic diagram of a second visual sparsity curve according to the present invention. In some embodiments, referring to Figure 11, the spacing between each false eyelash installed on the first flexible magnetic strip is obtained based on the eyelash sparsity curve and a first visual sparsity curve. By converting the first preset mean value U1 into a first visual sparsity curve T1, areas S1 and S2 can be similarly calculated, thereby obtaining values ​​K1, K2, and K3. In this way, the spacing between false eyelashes on the first flexible magnetic strip can be obtained using the first visual sparsity curve T1 and the eyelash sparsity curve. In some embodiments, the spacing between each false eyelash installed on the second flexible magnetic strip can be obtained based on the eyelash sparsity curve and a second visual sparsity curve. Referring to Figure 12, by converting the second preset mean value U1 into the first visual sparsity curve T1, areas S3 and S4 can be similarly calculated, thereby obtaining values ​​K4, K5, and K6. In this way, the spacing between false eyelashes on the second flexible magnetic strip can be obtained using the second visual sparsity curve T2 and the eyelash sparsity curve. Through the visual sparseness curve, after the user wears the magnetic eyelashes, the sparseness of the hair presented by the user's upper eyelashes and false eyelashes can be adjusted as a whole.

[0066] Figure 13 is a schematic diagram of the assembly of the first flexible magnetic strip and the second flexible magnetic strip of the present invention. The first flexible magnetic strip 42 and the second flexible magnetic strip 43 are obtained by the above method, and after the false eyelashes are installed respectively, the finished magnetic eyelashes are formed, which the user can assemble and use. The first flexible magnetic strip 42 and the second flexible magnetic strip 43 clamp the user's upper eyelashes 21 between the flexible magnetic strips, while the false eyelashes 421 and 431 are not clamped between the flexible magnetic strips. The connecting part of the false eyelashes 421 is located on the upper surface of the first flexible magnetic strip 42, and the connecting part of the false eyelashes 431 is located on the lower surface of the second flexible magnetic strip 43. After the false eyelashes 421 and 431 are set, the first flexible magnetic strip 42 and the second flexible magnetic strip 43 form magnetic eyelashes, and the assembled state of the magnetic eyelashes is shown in Figure 13.

[0067] According to one aspect of the present invention, a magnetic eyelash manufacturing system is provided.

[0068] FIG14 is a block diagram of a magnetic eyelash manufacturing system according to the present invention. The system 700 includes:

[0069] The image acquisition module 701 obtains an image of the root of the upper eyelashes;

[0070] The length recognition module 702 obtains the length of the distribution area of ​​the upper eyelashes based on the eyelash root image;

[0071] A cutting module 703 cuts a flexible magnetic stripe pair from a flexible magnetic sheet according to the length of the distribution area, wherein the flexible magnetic stripe pair includes a first flexible magnetic stripe and a second flexible magnetic stripe, and the length of the first flexible magnetic stripe and the second flexible magnetic stripe is the length of the distribution area;

[0072] A first false eyelash setting module 704 sets a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image;

[0073] The second false eyelash setting module 705 sets a plurality of false eyelashes at intervals on the surface of the second flexible magnetic strip facing away from the first flexible magnetic strip according to the eyelash root image.

[0074] According to one aspect of the present invention, there is provided a magnetic eyelash manufacturing device, comprising: a processor; and a memory storing executable instructions of the processor; wherein when the executable instructions are executed, the processor performs steps of a magnetic eyelash manufacturing method.

[0075] FIG15 is a block diagram of the structure of the magnetic eyelash manufacturing device of the present invention. The electronic device 500 according to this embodiment of the present invention will be described below with reference to FIG15. The electronic device 500 shown in FIG15 is merely an example and should not limit the functionality and scope of use of the embodiment of the present invention.

[0076] As shown in Figure 15, electronic device 500 is implemented as a general-purpose computing device. Components of electronic device 500 may include, but are not limited to, at least one processing unit 510, at least one storage unit 520, a bus 530 connecting various platform components (including storage unit 520 and processing unit 510), and a display unit 540.

[0077] The storage unit stores program codes, which can be executed by the processing unit 510 so that the processing unit 510 performs the above steps of this specification. For example, the processing unit 510 can perform the steps shown in FIG1 .

[0078] The storage unit 520 may include a readable medium in the form of a volatile storage unit, such as a random access memory unit (RAM) 5201 and / or a cache memory unit 5202 , and may further include a read-only memory unit (ROM) 5203 .

[0079] The storage unit 520 may also include a program / utility 5204 having a set (at least one) of program modules 5205, such program modules 5205 including but not limited to: an operating system, one or more application programs, other program modules, and program data, each of which or some combination may include an implementation of a network environment.

[0080] Bus 530 may represent one or more of several types of bus structures, including a memory bus or memory controller, a peripheral bus, an accelerated graphics port, a processing unit, or a local bus using any of a variety of bus architectures.

[0081] The electronic device 500 can also communicate with one or more external devices 570 (e.g., a keyboard, pointing device, Bluetooth device, etc.), one or more devices that enable a user to interact with the electronic device 500, and / or any device that enables the electronic device 500 to communicate with one or more other computing devices (e.g., a router, modem, etc.). This communication can occur via an input / output (I / O) interface 550. Furthermore, the electronic device 500 can communicate with one or more networks (e.g., a local area network (LAN), a wide area network (WAN), and / or a public network such as the Internet) via a network adapter 560. The network adapter 560 can communicate with other modules of the electronic device 500 via a bus 530. It should be understood that, although not shown in the figures, other hardware and / or software modules can be used in conjunction with the electronic device 500, including but not limited to microcode, device drivers, redundant processing units, external disk drive arrays, RAID systems, tape drives, and data backup storage platforms.

[0082] According to one aspect of the present invention, a computer-readable storage medium is provided for storing a program, which implements the steps of the above method when executed.

[0083] Figure 16 is a schematic diagram of the structure of a computer-readable storage medium according to the present invention. Referring to Figure 16, a program product 600 for implementing the aforementioned method according to an embodiment of the present invention is described. This program product can be implemented in a portable compact disc read-only memory (CD-ROM) and include program code, and can be executed on a terminal device, such as a personal computer. However, the program product of the present invention is not limited thereto. In this document, a computer-readable storage medium may be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, apparatus, or device.

[0084] The program product may utilize any combination of one or more readable media. The readable medium may be a readable signal medium or a readable storage medium. The readable storage medium may be, for example, but not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device, or component, or any combination thereof. More specific examples (a non-exhaustive list) of readable storage media include: an electrical connection having one or more wires, a portable disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination thereof.

[0085] Computer-readable storage media may include a data signal propagated in baseband or as part of a carrier wave, which carries readable program code. Such propagated data signals may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. The readable storage medium may also be any readable medium other than a readable storage medium, which may send, propagate, or transmit a program for use by or in conjunction with an instruction execution system, apparatus, or device. The program code contained on the readable storage medium may be transmitted using any appropriate medium, including but not limited to wireless, wired, optical cable, RF, etc., or any suitable combination thereof.

[0086] Program code for performing the operations of the present invention can be written in any combination of one or more programming languages, including object-oriented programming languages ​​such as Java, C++, and conventional procedural programming languages ​​such as C or similar programming languages. The program code can be executed entirely on the user's computing device, partially on the user's device, as a stand-alone software package, partially on the user's computing device and partially on a remote computing device, or entirely on a remote computing device or server. In the case of a remote computing device, the remote computing device can be connected to the user's computing device via any type of network, including a local area network (LAN) or a wide area network (WAN), or can be connected to an external computing device (e.g., via the Internet using an Internet service provider).

[0087] In summary, the magnetic eyelash manufacturing method, system, medium, and device of the present invention can obtain the sparseness of the user's upper eyelashes based on the eyelash root image, and then set different distribution spacings of false eyelashes, reducing the spacing of false eyelashes in the sparser parts of the user's upper eyelashes, and thus making the overall distribution of eyelashes and false eyelashes uniform after the user wears the magnetic eyelashes from an external visual perspective.

[0088] The above is a further detailed description of the present invention in conjunction with specific preferred embodiments, and the specific implementation of the present invention should not be considered to be limited to these descriptions. For those skilled in the art of the present invention, without departing from the concept of the present invention, several simple deductions or substitutions can be made, which should be considered to fall within the scope of protection of the present invention.

Claims

1. A method for manufacturing magnetic eyelashes, characterized in that: The following steps are involved: Obtaining an eyelash root image of the upper eyelashes; Obtaining the distribution area length of the upper eyelashes according to the eyelash root image; A pair of flexible magnetic strips is obtained by cutting a flexible magnetic sheet according to the length of the distribution area, wherein the pair of flexible magnetic strips includes a first flexible magnetic strip and a second flexible magnetic strip, and the length of the first flexible magnetic strip and the second flexible magnetic strip is the length of the distribution area; Disposing a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image; A plurality of false eyelashes are arranged at intervals on a surface of the second flexible magnetic strip that is away from the first flexible magnetic strip according to the eyelash root image.

2. The method for manufacturing magnetic eyelashes according to claim 1, characterized in that: The method of disposing a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image comprises: Performing feature recognition based on the eyelash root image to obtain an eyelash sparseness curve of the upper eyelashes, wherein the eyelash sparseness is the number of the upper eyelashes per unit length; Obtaining a spacing between each of the false eyelashes disposed on the first flexible magnetic strip according to the eyelash sparseness curve and a first preset average value of the eyelash sparseness; The false eyelashes are arranged at intervals on a surface of the first flexible magnetic strip that is away from the second flexible magnetic strip according to the intervals between the false eyelashes.

3. The method for manufacturing magnetic eyelashes according to claim 1, characterized in that: The method of disposing a plurality of false eyelashes at intervals on a surface of the second flexible magnetic strip facing away from the first flexible magnetic strip according to the eyelash root image comprises: Performing feature recognition based on the eyelash root image to obtain an eyelash sparseness curve of the upper eyelashes, wherein the eyelash sparseness is the number of the upper eyelashes per unit length; Obtaining a spacing between each of the false eyelashes disposed on the second flexible magnetic strip according to the eyelash sparseness curve and a second preset average value of the eyelash sparseness; The false eyelashes are arranged at intervals on a surface of the second flexible magnetic strip that is away from the first flexible magnetic strip according to the intervals between the false eyelashes.

4. The method for manufacturing magnetic eyelashes according to claim 1, wherein: The image of the root of the eyelashes is collected by an image collector, which has a collection plane in contact with the root of the upper eyelashes, and the collection plane is provided with a plurality of image sensors.

5. The method for manufacturing magnetic eyelashes according to claim 4, characterized in that: The image sensor is a charge coupled device image sensor.

6. The method for manufacturing magnetic eyelashes according to claim 2, characterized in that: include: The spacing between each of the false eyelashes disposed on the first flexible magnetic strip is obtained according to the eyelash sparseness curve and a first visual sparseness curve.

7. The method for manufacturing magnetic eyelashes according to claim 3, characterized in that: include: The distance between each of the false eyelashes disposed on the second flexible magnetic strip is obtained according to the eyelash sparseness curve and a second visual sparseness curve.

8. A magnetic eyelash manufacturing system, characterized in that, include: An image acquisition module, for obtaining an image of the root of the upper eyelashes; a length recognition module for obtaining the length of the distribution area of the upper eyelashes according to the eyelash root image; a cutting module for cutting a flexible magnetic stripe pair from a flexible magnetic sheet according to the length of the distribution area, wherein the flexible magnetic stripe pair includes a first flexible magnetic stripe and a second flexible magnetic stripe, and the length of the first flexible magnetic stripe and the second flexible magnetic stripe is the length of the distribution area; a first false eyelash setting module, which sets a plurality of false eyelashes at intervals on a surface of the first flexible magnetic strip facing away from the second flexible magnetic strip according to the eyelash root image; The second false eyelash setting module sets a plurality of false eyelashes at intervals on a surface of the second flexible magnetic strip facing away from the first flexible magnetic strip according to the eyelash root image.

9. A magnetic eyelash manufacturing device, characterized in that, include: processor; a memory storing executable instructions for the processor; The processor is configured to execute the steps of the method for manufacturing magnetic eyelashes according to any one of claims 1 to 7 by executing the executable instructions.

10. A computer-readable storage medium for storing a program, characterized in that: When the program is executed, the steps of the method for manufacturing magnetic eyelashes according to any one of claims 1 to 7 are realized.

Citation Information

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