Retrieval method, device and equipment based on steel mesh and storage medium
By extracting the key fields in the steel mesh search method and matching and searching with preset mapping relationships, the problems of low search efficiency and poor accuracy of existing steel mesh are solved, and more efficient and accurate steel mesh search results are achieved.
Patent Information
- Application Number
- CN202510262952.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-06-13
AI Technical Summary
The existing steel mesh search methods are inefficient and the matching results are inaccurate, which makes it difficult for maintenance personnel to quickly find a suitable steel mesh hole group during chip repair.
By obtaining the information to be queried, extracting the key fields, and matching them based on the preset mapping relationship, the target steel mesh hole group data is obtained, and then searching, obtaining the search data and visually presenting it.
It improves the efficiency of steel net search and the accuracy of matching results, and can quickly retrieve target data from massive data, reducing the occurrence of human errors.
Smart Images

Figure CN120144619A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of data retrieval, and in particular to a steel mesh retrieval method, device, equipment, and storage medium. Background Art
[0002] Currently, when repairing chips of mobile terminals such as mobile phones, tablets, and laptop computers, a solder paste stencil is usually used. The stencil is provided with a group of stencil holes corresponding to the pads of the chip. Placing solder balls or applying solder paste through the group of stencil holes can achieve precise positioning, thereby ensuring the welding quality. Generally speaking, in order to facilitate fixing the stencil and improve the coverage rate of the stencil for different chips, stencil manufacturers usually design multiple different groups of stencil holes on a single stencil, and each group of stencil holes corresponds to a different model of chip.
[0003] However, the applicant found that the groups of stencil holes designed on different stencils produced by different manufacturers or even the same manufacturer are different. That is to say, the same group of stencil holes may appear on multiple stencils, and different models of mobile terminals may also use different models of chips. This results in a one-to-many relationship between the terminal and the chip, the chip and the stencil, and the stencil and the group of stencil holes, without a clear one-to-one correspondence. When performing chip repair, maintenance personnel can only check exhaustively among multiple stencils based on the position of the pads on the chip to determine the group of stencil holes that can be used, so as to find a suitable stencil. This method of stencil retrieval not only has low efficiency but also is prone to errors due to the large number of stencil holes on the stencil.
[0004] Therefore, providing a steel mesh retrieval method to improve the efficiency of steel mesh retrieval and the accuracy of matching results has become an urgent technical problem to be solved. Summary of the Invention
[0005] Based on the above situation, the main object of the present invention is to provide a steel mesh retrieval method, device, equipment, and storage medium to improve the efficiency of steel mesh retrieval and the accuracy of matching results.
[0006] To achieve the above object, the technical solution adopted by the present invention is as follows:
[0007] In the first aspect, an embodiment of the present invention discloses a steel mesh retrieval method, the method including:
[0008] Step S100, obtaining information to be queried, where the information to be queried includes any one of terminal data, chip data, and stencil data;
[0009] Step S200, extracting a keyword field for retrieval from the information to be queried;
[0010] Step S300: Match based on the keyword fields and a preset mapping relationship to obtain target stencil hole group data corresponding to the keyword fields. The preset mapping relationship includes the mapping relationship between the stencil hole groups and the stencil established with the stencil hole groups set on the stencil as the mapping center, the mapping relationship between the stencil hole groups and the chips, and the mapping relationship between the chips and the terminals.
[0011] Step S400: Retrieve according to the target stencil hole group data and the preset mapping relationship to obtain retrieval data corresponding to the target stencil hole group data. The retrieval data includes target terminal data, target chip data, and target stencil data corresponding to the target stencil hole group data.
[0012] Step S500: Visualize and present the retrieval data on the display interface.
[0013] Optionally, step S100 includes:
[0014] Step S110: Obtain initial information.
[0015] Step S120: Perform semantic analysis on the initial information to generate information to be queried. The information to be queried includes any one of terminal data, chip data, and stencil data.
[0016] Optionally, step S500 includes:
[0017] Step S511: Group the retrieval data according to the data type to obtain multiple groups of data to be presented. The data types include terminal data type, chip data type, and stencil data type.
[0018] Step S512: Obtain the corresponding relationship between each group of data to be presented and each display area, and display the multiple groups of data to be presented in each display area based on the corresponding relationship.
[0019] Optionally, step S500 includes:
[0020] Step S521: Obtain the position information of the target stencil hole group corresponding to the target stencil hole group data on the target stencil data.
[0021] Step S522: Highlight the target stencil hole group based on the position information.
[0022] Optionally, after step S500, the method further includes:
[0023] Step S600: Receive a trigger operation of the user on the retrieval data on the display interface. The trigger operation includes at least one of feedback, adding to cart, and complaint.
[0024] Step S700: Generate an interface call request corresponding to the trigger operation in response to the trigger operation, and call the corresponding data interface based on the interface call request for data invocation.
[0025] Optionally, before step S100, the method includes:
[0026] Obtain the basic data of the stencil, and the basic data of the stencil includes the stencil identifier;
[0027] Identify the coordinate information of the stencil hole groups on the stencil;
[0028] Establish a mapping relationship between the stencil and the stencil hole groups according to the identification information and coordinate information of the stencil hole groups.
[0029] Optionally, step S100 includes:
[0030] Step S110: Obtain the initial information;
[0031] Step S120: Perform semantic analysis on the initial information to generate the information to be queried, and the information to be queried includes any one of terminal data, chip data, and stencil data.
[0032] Optionally, before step S100, the method further includes:
[0033] Step S110: Obtain the drawing information corresponding to the drawing based on the click operation triggered by the user on the drawing, and the drawing is a drawing including chip information;
[0034] Step S120: Determine the information to be queried corresponding to the drawing information according to the chip information.
[0035] In a second aspect, an embodiment of the present invention discloses a stencil retrieval device, and the device includes:
[0036] An information acquisition module, configured to acquire the information to be queried, and the information to be queried includes any one of terminal data, chip data, and stencil data;
[0037] A field extraction module, configured to extract the keyword fields for retrieval from the information to be queried;
[0038] A field matching module, configured to perform matching based on the keyword fields and a preset mapping relationship to obtain the target stencil hole group data corresponding to the keyword fields, and the preset mapping relationship includes a mapping relationship between the stencil hole groups and the stencil established with the stencil hole groups set on the stencil as the mapping center, a mapping relationship between the stencil hole groups and the chips, and a mapping relationship between the chips and the terminals;
[0039] A data retrieval module, configured to retrieve according to target steel mesh hole group data and a preset mapping relationship to obtain retrieval data corresponding to the target steel mesh hole group data, where the retrieval data includes target terminal data, target chip data, and target steel mesh data corresponding to the target steel mesh hole group data;
[0040] A data display module, configured to visually present the retrieval data on a display interface.
[0041] In a third aspect, an embodiment of the present invention discloses a computer device, which is characterized by including: adopting the steel mesh retrieval method described in any item of the first aspect; or, including the device described in the second aspect.
[0042] In a fourth aspect, an embodiment of the present invention discloses a computer-readable storage medium, on which a computer program is stored, and is characterized in that the computer program stored in the storage medium is used to be executed by a processor to implement the steel mesh retrieval method described in any item of the first aspect.
[0043] Advantageous effects:
[0044] According to the steel mesh retrieval method disclosed in the embodiments of the present invention, by obtaining the information to be queried, the information to be queried includes any one of terminal data, chip data, and steel mesh data, then extracting the keyword fields for retrieval from the information to be queried, and then matching based on the keyword fields and the preset mapping relationship to obtain the target steel mesh hole group data corresponding to the keyword fields, and then retrieving according to the target steel mesh hole group data and the preset mapping relationship to obtain the retrieval data, and finally visually presenting the retrieval data on the display interface. The pre-constructed mapping relationship includes the mapping relationship between the steel mesh hole group and the steel mesh established with the steel mesh hole group set on the steel mesh as the mapping center, the mapping relationship between the steel mesh hole group and the chip, and the mapping relationship between the chip and the terminal. By pre-constructing the mapping relationship and then using the mapping relationship to find the target steel mesh hole group data corresponding to the information to be queried, and finally using the target steel mesh hole group data and the mapping relationship for retrieval to obtain the retrieval data, it is possible to quickly retrieve the target data from the massive data and the one-to-many relationship, greatly improving the retrieval efficiency and also improving the accuracy of the retrieval result.
[0045] Other advantageous effects of the present invention will be described in the specific implementation manner through the introduction of specific technical features and technical solutions. Those skilled in the art should be able to understand the beneficial technical effects brought by the technical features and technical solutions through these introductions. BRIEF DESCRIPTION OF THE DRAWINGS
[0046] The following will describe the preferred embodiments of the steel mesh retrieval method, device, equipment, and storage medium of the present invention with reference to the drawings. In the drawings:
[0047] Figure 1 The corresponding relationship among the terminal, chip, stencil, and stencil hole group in the prior art;
[0048] Figure 2 The flowchart of a stencil retrieval method disclosed in this embodiment;
[0049] Figure 3 The schematic diagram of the display interface when the stencil retrieval method provided in this embodiment is applied;
[0050] Figure 4 Another schematic diagram of the display interface when the stencil retrieval method provided in this embodiment is applied;
[0051] Figure 5 The flowchart of generating information to be queried in the stencil retrieval method provided in this embodiment;
[0052] Figure 6 The schematic diagram of the trigger interface for the user to trigger a click operation in the stencil retrieval method provided in this embodiment;
[0053] Figure 7 The structural schematic diagram of the stencil retrieval device provided in this embodiment. Detailed implementation manners
[0054] The following describes the present invention based on embodiments, but the present invention is not limited to these embodiments. In the following detailed description of the present invention, some specific details are described in detail. To avoid obscuring the essence of the present invention, well-known methods, processes, procedures, and components are not described in detail.
[0055] In addition, those of ordinary skill in the art should understand that the drawings provided herein are for illustrative purposes only, and the drawings are not necessarily drawn to scale.
[0056] Unless the context clearly requires otherwise, the words such as "including", "comprising", and the like in the whole specification and claims should be construed in an inclusive sense rather than an exclusive or exhaustive sense; that is, the meaning of "including but not limited to".
[0057] In the description of the present invention, it should be understood that the terms "first", "second", etc. are only used for descriptive purposes and cannot be construed as indicating or implying relative importance. In addition, in the description of the present invention, unless otherwise specified, the meaning of "a plurality" is two or more.
[0058] Currently, when designing stencils, stencil manufacturers usually design multiple different stencil hole groups on a single stencil by considering the size of the stencil, the size of the stencil hole groups corresponding to the chips, and the aesthetics of the arrangement of multiple stencil hole groups. This approach can not only improve the coverage rate of the stencil for different chips, enabling a single stencil to correspond to multiple different terminal chips, but also facilitate the storage and retrieval of stencils and stencil hole groups.
[0059] However, please refer to Figure 1 , Figure 1 for the existing correspondence relationships among terminals, chips, stencils, and stencil hole groups. Since there are no standardized requirements for stencil production, that is, the stencil hole groups designed on stencils produced by different manufacturers may vary, and even the stencil hole groups designed on different stencils produced by the same manufacturer may also vary. This can result in a situation where a single stencil corresponds to multiple stencil hole groups, and the same stencil hole group may appear on multiple stencils. Thus, there is a one-to-many relationship between the stencil and the stencil hole groups, as well as a one-to-many relationship between the stencil hole groups and the chips corresponding to the stencil hole groups and the stencil. Moreover, the same model of mobile terminal may use different models of chips, and the same model of chip may be applied to different models of terminals, which further leads to a one-to-many relationship between the mobile terminal and the chip. Therefore, ultimately, as Figure 1 shows, it will result in a one-to-many relationship among the terminal, the chip, the chip and the stencil, and the stencil and the stencil hole groups.
[0060] This one-to-many relationship makes it necessary for maintenance personnel to rely on an exhaustive method to search for the stencil hole group corresponding to the chip among multiple stencils when performing chip maintenance, in order to find the appropriate stencil. However, maintenance personnel often have multiple different stencils, and each stencil has multiple stencil hole groups. This search method depends on the memory and observation ability of the maintenance personnel, is prone to errors, and has low search efficiency.
[0061] Therefore, in order to improve the efficiency of stencil retrieval and the accuracy of matching results, this embodiment discloses a stencil retrieval method. Please refer to Figure 2 , Figure 2 which is a flowchart of the stencil retrieval method disclosed in this embodiment. This stencil retrieval method can be applied to client terminals, web pages, etc. As Figure 2 shows, this stencil retrieval method includes:
[0062] Step S100: Obtain the information to be queried, which can be any one of terminal data, chip data, and stencil data. In this embodiment, the information to be queried can be information input by the user or information selected by the user. In the specific implementation process, the user can input the information to be queried in the input box on the display interface of the display device, or input keywords in the input box and then select the information to be queried from the drop-down list. Among them, the terminal can be a mobile phone, a tablet computer, a notebook computer, etc. For example, the terminal data can be the mobile phone brand, mobile phone model, etc., the chip data can be the chip name, chip model, etc., and the stencil data can be the stencil number or stencil manufacturer.
[0063] In the specific implementation process, multiple input boxes can be set on the display interface of the display device, and each input box corresponds to a data type. Please refer to Figure 3 , Figure 3 for the schematic diagram of the display interface when the stencil retrieval method provided in this embodiment is applied. As Figure 3 shown, multiple input boxes can be set on the display interface of the display device, and different input boxes correspond to different data types.
[0064] In an alternative embodiment, before step S100, the method includes:
[0065] Obtain the stencil basic data corresponding to the stencil, where the stencil basic data includes the stencil identifier; identify the coordinate information of the stencil hole groups on the stencil; establish a mapping relationship between the stencil and the stencil hole groups according to the identification information and coordinate information of the stencil hole groups. In this embodiment, before performing stencil retrieval, a mapping relationship between the stencil and the stencil hole groups can be established in advance. First, the stencil basic data of a stencil can be obtained, and the stencil basic data includes the stencil identifier, and the stencil identifier can be the unique number corresponding to the stencil. Since multiple stencil hole groups are set on a stencil, it is necessary to identify the coordinate information of each stencil hole group on the stencil, that is, to determine the position of the stencil hole group on the stencil. In the specific implementation process, the coordinate information of the stencil hole group refers to the position where the stencil hole group is located or the area of the position where the stencil hole group is located and its surrounding preset range. When identifying, the coordinate information of each stencil hole group on the stencil can be determined by means of box selection. Each stencil hole group has its unique code, that is, the identification information of the stencil hole group. According to the identification information and coordinate information of the stencil hole group, the stencil hole group is corresponded to the stencil, and a mapping relationship between the stencil and the stencil hole groups is established. This mapping relationship can include not only the stencil corresponding to the stencil hole group, but also the position of the stencil hole group on the stencil.
[0066] It can be understood that after establishing the mapping relationship between the stencil and the stencil hole group, a chip corresponding to the stencil hole group can be set based on the stencil hole group, so as to establish the mapping relationship between the stencil hole group and the chip; at the same time, a terminal corresponding to the stencil hole group can also be set based on the stencil hole group, so as to establish the mapping relationship between the stencil hole group and the terminal; the mapping relationship between the chip and the terminal can also be established based on this.
[0067] In an alternative embodiment, please refer to Figure 5 , Figure 5 which is a schematic flow diagram of generating information to be queried in the stencil retrieval method provided in this embodiment. As shown in Figure 5 , step S100 includes:
[0068] Step S110, obtaining initial information. In this embodiment, the initial information may be fuzzy information input by the user. When the user cannot accurately input the information to be queried, a fuzzy information can be input as the initial information to facilitate data search based on the fuzzy initial information. In the specific implementation process, please refer to Figure 4 , Figure 4 which is another schematic diagram of the display interface when the stencil retrieval method provided in this embodiment is applied. The initial information can be input in the input box shown in Figure 3 , or can be input in the search box shown in Figure 4 . As shown in Figure 4 , on the display interface of the display device, a search box for fuzzy search can be separately set. When the user cannot accurately input the information to be queried, fuzzy search can be performed in this search box. For example, the user can input "foldable screen" as the initial information to facilitate querying data related to "foldable screen" based on this initial information.
[0069] Step S120, performing semantic analysis on the initial information to generate the information to be queried, where the information to be queried includes any one of terminal data, chip data, and stencil data. In this embodiment, semantic analysis is performed on the initial information to obtain the information to be queried that is consistent with the meaning of the initial information. The obtained information to be queried can be terminal data, chip data, or stencil data. In the specific implementation process, for example, when the initial information input by the user is "foldable screen", the information to be queried generated after semantic analysis can be the brand of foldable screen mobile phones (such as OPPO, Huawei, vivo, etc.), or the model of foldable screen mobile phones (such as OPPO Find N3, vivo X Fold3, Honor Magic V3, etc.).
[0070] In an alternative embodiment, step S120 includes:
[0071] Step S121, perform semantic analysis on the initial information to generate at least one candidate query information; Step S122, determine the information to be queried from the candidate query information based on the user's selection. In this embodiment, semantic analysis is performed on the initial information to obtain candidate query information that is consistent with the meaning of the initial information. Among them, there can be multiple candidate query information, and the user can select from the generated multiple candidate query information, and then determine the information to be queried from the candidate query information based on the user's selection. In the specific implementation process, at least one candidate query information generated after semantic analysis can be used to generate a drop-down list, and the user can select the information to be queried from the drop-down list as the information to be queried.
[0072] In an alternative embodiment, before step S100, the method includes:
[0073] Step S110, obtain drawing information corresponding to the drawing based on the click operation triggered by the user on the drawing. The drawing is a drawing including chip information. In this embodiment, when repairing the terminal, it is often necessary to use the point diagram, PCB diagram or circuit diagram of the terminal circuit board, and these drawings will include chip information, such as the position, model or code of the chip. When the user uses these drawings, the user can directly trigger a click operation on the drawing. Please refer to Figure 6 , Figure 6 which is a schematic diagram of the trigger interface for the user to trigger a click operation in the steel mesh retrieval method provided in this embodiment. As shown in Figure 6 , the user can view the drawing corresponding to the terminal on another software for viewing drawings, and then select the position where the chip is located on the drawing (such as the area framed by the red box in Figure 6 ), and then trigger a drop-down operation list through the click operation, and find the corresponding click entry from the operation list (such as Figure 6 "Search Steel Mesh") and click to select, so as to obtain the drawing information corresponding to the drawing. The drawing information includes chip information, and can directly jump from the software for viewing drawings to the steel mesh retrieval system, so as to facilitate steel mesh retrieval using the drawing information.
[0074] Step S120, determine the information to be queried corresponding to the drawing information according to the chip information. In this embodiment, the information to be queried corresponding to the drawing is determined according to the chip information included in the drawing information. For example, the chip model used on the drawing can be determined based on the chip information, and then the determined chip model can be directly used as the information to be queried and brought into the stencil retrieval system for stencil retrieval. The stencil retrieval method is linked with the software for viewing the drawing, so that when the user views the drawing, the chip data can be directly and quickly brought into the stencil retrieval system through the preset connection interface, and the stencil retrieval method is used for retrieval. There is no need for the user to operate the two systems by himself, which can greatly improve the convenience of user operation. And when retrieving the stencil, there is no need for the user to input data by himself, which can avoid errors caused by manual input and improve the accuracy of the retrieval result.
[0075] Step S200, extract the keyword fields for retrieval from the information to be queried. In this embodiment, the keyword fields for retrieval can be extracted from the information to be queried by using keyword matching, field matching or semantic analysis. The extracted keyword fields are fields with unique pointing. In the specific implementation process, the keyword fields can be extracted from the information to be queried by extracting keywords or key phrases. For example, the keyword fields corresponding to the terminal can be the mobile phone model iphone 15 or iphone 15 Pro, the keyword fields corresponding to the chip can be the chip model A15 or Kirin 9000S, and the keyword field corresponding to the stencil can be the stencil number.
[0076] Step S300, perform matching based on the keyword fields and the preset mapping relationship to obtain the target stencil hole group data corresponding to the keyword fields. The preset mapping relationship includes the mapping relationship between the stencil hole group and the stencil established with the stencil hole group set on the stencil as the mapping center, the mapping relationship between the stencil hole group and the chip, and the mapping relationship between the chip and the terminal. In this embodiment, the preset mapping relationship can be established in advance. Among them, the preset mapping relationship includes multiple groups, and these groups of mapping relationships are established with the stencil hole group set on the stencil as the mapping center. In the specific implementation process, each stencil hole group has a corresponding unique code. When constructing the mapping relationship, based on the stencil hole group set on the stencil, the mapping relationship between the stencil hole group set on the stencil and the stencil where it is located, the mapping relationship between the stencil hole group and the chip, and the mapping relationship between the stencil hole group and the terminal can be constructed respectively, and then the mapping relationship between the stencil hole group and the stencil, the mapping relationship between the stencil hole group and the chip, and the mapping relationship between the chip and the terminal can be obtained.
[0077] In this embodiment, the keyword field is matched with a preset mapping relationship, so as to obtain the target stencil hole group data corresponding to the keyword field. For example, when the keyword field is the chip model, the stencil hole group matching the chip model can be obtained according to the mapping relationship between the stencil hole group and the chip, and then the data of the target stencil hole group can be obtained. The data of the target stencil hole group includes the unique code corresponding to the target stencil hole group. In the specific implementation process, each stencil hole group has a corresponding unique code. When constructing the mapping relationship, the mapping relationships between the stencil hole groups set on the stencil and the stencil where they are located, between the stencil hole groups and the chips, and between the chips and the terminals can be constructed respectively based on the stencil hole groups set on the stencil.
[0078] Step S400: Retrieve according to the target stencil hole group data and the preset mapping relationship to obtain the retrieval data corresponding to the target stencil hole group data. The retrieval data includes the target terminal data, target chip data, and target stencil data corresponding to the target stencil hole group data. In this embodiment, after obtaining the target stencil hole group data, retrieval can be performed based on the target stencil hole group data and the preset mapping relationship, so as to obtain the retrieval data corresponding to the target stencil hole group data. The obtained retrieval data includes the target terminal data, target chip data, and target stencil data corresponding to the target stencil hole group data. In the specific implementation process, traversing the preset mapping relationship with the target stencil hole group data can retrieve the retrieval data associated with the target stencil hole group data. By associating the terminal data, chip data, and stencil data with the stencil hole group as the core, the mapping relationships between the stencil hole groups set on the stencil and the stencil where they are located, between the stencil hole groups and the chips, and between the chips and the terminals are established, so that any one of the terminal data, chip data, and stencil data can be used to find the other associated data, greatly improving the retrieval efficiency and accuracy.
[0079] Step S500: Visualize and present the retrieval data on the display interface. In this embodiment, the retrieved retrieval data can be displayed on the display interface of a display device (such as a display screen). In the specific implementation process, since there are many data types in the retrieval data, when visualizing and presenting the retrieval data, it can be presented by classifying according to the categories of the retrieval data. For example, the terminal data can be presented as a group, the chip data can be presented as a group, and the stencil data can be presented as a group.
[0080] In an alternative embodiment, step S500 includes:
[0081] Step S511: Group the retrieved data according to the data type to obtain multiple groups of data to be presented. The data types include terminal data type, chip data type, and stencil data type. In this embodiment, after retrieving the data, the retrieved data can be grouped according to the data type, and the retrieved data can be divided into a terminal data group, a chip data group, and a stencil data group. These data groups are used as the data to be presented and presented in partitions to improve the display aesthetics and facilitate users to view relevant data.
[0082] Step S512: Obtain the correspondence between each group of data to be presented and each display area, and display the multiple groups of data to be presented in each display area based on the correspondence. In this embodiment, multiple display areas can be set on the display interface in advance, and each display area corresponds to displaying different types of data to be presented. For example Figure 3 or Figure 4 As shown in, the display interface can be divided into three display areas, and different types of data are displayed in each display area. For example, the retrieved target terminal data is displayed in the first area, the retrieved target chip data is displayed in the second area, and the retrieved target stencil data is displayed in the third area.
[0083] In an alternative embodiment, step S500 includes:
[0084] Step S521: Obtain the position information of the target stencil hole group corresponding to the target stencil hole group data on the target stencil data. In this embodiment, since multiple stencil hole groups are engraved on the stencil, after the stencil retrieval is completed, in order to facilitate the user to quickly locate the target stencil hole group, the position information of the target stencil hole group on the target stencil data can be obtained. This position information can be the coordinate information of the stencil hole group on the stencil determined when establishing the mapping relationship between the stencil hole group and the stencil.
[0085] Step S522: Highlight the target stencil hole group based on the position information. In this embodiment, after determining the position of the target stencil hole group on the target stencil, the target stencil hole group can be marked or displayed in a highlighted manner on the target stencil to facilitate the user to quickly locate the target stencil hole group. In the specific implementation process, the target stencil hole group can be framed in a box outside to highlight it, or a background can be added to the area where the target stencil hole group is located to highlight it.
[0086] In an alternative embodiment, after step S500, the method further includes:
[0087] Step S600: Receive the triggering operation of the user on the retrieved data on the display interface. The triggering operation includes at least one of feedback, adding to cart, and complaint. In this embodiment, operation buttons can be provided on the display interface for the user to operate on the retrieved data by clicking or other means. For example, the user can directly trigger the adding-to-cart operation on the display interface to directly purchase corresponding stencils or chips, etc. It can be understood that the triggering operation of the user can be operations such as purchasing, feedback (such as feedback of error information), or complaint.
[0088] Step S700: Generate an interface call request corresponding to the triggering operation in response to the triggering operation, so as to call the corresponding data interface based on the interface call request for data call. In this embodiment, an interface call request corresponding to the triggering operation of the user is generated. For example, if the triggering operation of the user is a purchase operation, the data interface of the shopping platform can be called to directly call data such as the price of the shopping platform based on the user's purchase operation to generate a corresponding order; if the triggering operation of the user is a feedback operation, the data interface of the customer service background can be called to provide the customer service function for the user or receive the opinions feedback by the user. Different data interfaces are called based on different operations triggered by the user, which can save the cumbersome steps of the user switching to other tools, improve the convenience and fluency of the user's use, and also avoid human errors caused by switching tools, thereby improving the user experience and ensuring the accuracy when purchasing relevant components.
[0089] According to the stencil retrieval method disclosed in the embodiment of the present invention, by obtaining the information to be queried, the information to be queried includes any one of terminal data, chip data, and stencil data, then extracting the keyword fields for retrieval from the information to be queried, and then matching based on the keyword fields and the preset mapping relationship to obtain the target stencil hole group data corresponding to the keyword fields, and then retrieving according to the target stencil hole group data and the preset mapping relationship to obtain the retrieved data, and finally visualizing the retrieved data on the display interface. The pre-constructed mapping relationship includes the mapping relationship between the stencil hole group and the stencil established with the stencil hole group set on the stencil as the mapping center, the mapping relationship between the stencil hole group and the chip, and the mapping relationship between the chip and the terminal. By pre-constructing the mapping relationship and then using the mapping relationship to find the target stencil hole group data corresponding to the information to be queried, and finally using the target stencil hole group data and the mapping relationship for retrieval to obtain the retrieved data, it is possible to quickly retrieve the target data from the massive data and the one-to-many relationship, greatly improving the retrieval efficiency and also improving the accuracy of the retrieval result.
[0090] Please refer to Figure 7 , Figure 7 which is the structural schematic diagram of the stencil retrieval device provided in this embodiment. As Figure 7As shown in [figure number], an embodiment of the present invention discloses a stencil retrieval device, which includes:
[0091] An information acquisition module 100, configured to acquire information to be queried, where the information to be queried includes any one of terminal data, chip data, and stencil data.
[0092] A field extraction module 200, configured to extract keyword fields for retrieval from the information to be queried.
[0093] A field matching module 300, configured to perform matching based on the keyword fields and a preset mapping relationship to obtain target stencil hole group data corresponding to the keyword fields. The preset mapping relationship includes a mapping relationship between the stencil hole group and the stencil established with the stencil hole group set on the stencil as the mapping center, a mapping relationship between the stencil hole group and the chip, and a mapping relationship between the chip and the terminal.
[0094] A data retrieval module 400, configured to perform retrieval according to the target stencil hole group data and the preset mapping relationship to obtain retrieval data corresponding to the target stencil hole group data. The retrieval data includes target terminal data, target chip data, and target stencil data corresponding to the target stencil hole group data.
[0095] A data display module 500, configured to visually present the retrieval data on a display interface.
[0096] The present invention also provides a computer device, including: adopting the stencil retrieval method described in any one of the above; or, including the device described above.
[0097] In addition, the present invention also provides a computer-readable storage medium, such as a chip, an optical disc, etc. An execution program is stored on the computer-readable storage medium, and when the execution program is executed, the method described in any one of the above is implemented.
[0098] It should be noted that the computer-readable storage medium described in the embodiments of the present disclosure is not limited to the above-given embodiments. For example, it can also be an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, apparatus, or device, or any combination of the above. More specific examples of computer-readable storage media may include, but are not limited to: an electrical connection with one or more wires, a portable computer 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 of the above. In the embodiments of the present disclosure, a computer-readable storage medium can be any tangible medium that contains or stores a program, and this program can be used by or in conjunction with an instruction execution system, apparatus, or device.
[0099] Those skilled in the art can understand that, on the premise of no conflict, the above preferred solutions can be freely combined and superimposed. Among them, the flowcharts and block diagrams in the drawings illustrate the possible architectures, functions, and operations of systems, methods, and computer program products according to various embodiments of the present disclosure. In this regard, each block in the flowchart or block diagram can represent a module, a program segment, or a part of code, and this module, program segment, or part of code contains one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions marked in the blocks may occur in a different order from that marked in the drawings. For example, two consecutive blocks shown may actually be executed substantially in parallel, and they may sometimes be executed in the reverse order, depending on the functions involved. It should also be noted that each block in the block diagram and / or flowchart, as well as the combination of blocks in the block diagram and / or flowchart, can be implemented by a dedicated hardware-based system for performing the specified functions or operations, or can be implemented by a combination of dedicated hardware and computer instructions. The numbering of each step in this article is only for convenience of description and reference, and is not used to limit the sequence before and after. The specific execution sequence is determined by the technology itself, and those skilled in the art can determine various allowed and reasonable sequences according to the technology itself.
[0100] Those skilled in the art can understand that, on the premise of no conflict, the above preferred solutions can be freely combined and superimposed.
[0101] It should be understood that the above embodiments are merely exemplary and not restrictive. Without departing from the basic principles of the present invention, various obvious or equivalent modifications or substitutions made by those skilled in the art to the above details will all be included within the scope of the claims of the present invention.
Claims
1. A steel mesh retrieval method, characterized in that: The method comprises: Step S100, obtaining information to be queried, wherein the information to be queried includes any one of terminal data, chip data and steel mesh data; Step S200, extracting key fields for retrieval from the information to be queried; Step S300, matching is performed based on the key field and a preset mapping relationship to obtain target steel mesh hole group data corresponding to the key field, wherein the preset mapping relationship includes a mapping relationship between a steel mesh hole group and a steel mesh, a mapping relationship between a steel mesh hole group and a chip, and a mapping relationship between a chip and a terminal, which is established with the steel mesh hole group set on the steel mesh as a mapping center; Step S400, searching according to the target steel mesh hole group data and the preset mapping relationship to obtain search data corresponding to the target steel mesh hole group data, wherein the search data includes target terminal data, target chip data and target steel mesh data corresponding to the target steel mesh hole group data; Step S500: Visually present the search data on a display interface.
2. The steel mesh retrieval method according to claim 1, characterized in that: Step S500 includes: Step S511, grouping the retrieved data according to data types to obtain multiple groups of data to be presented, wherein the data types include terminal data types, chip data types, and steel mesh data types; Step S512: acquiring a correspondence between each group of the data to be presented and each display area, and displaying multiple groups of the data to be presented in each display area based on the correspondence.
3. The steel mesh retrieval method according to claim 1, characterized in that: Step S500 includes: Step S521, obtaining the position information of the target steel mesh hole group corresponding to the target steel mesh hole group data on the target steel mesh data; Step S522: highlighting the target steel mesh hole group based on the position information.
4. The steel mesh retrieval method according to claim 1, characterized in that: After step S500, the method further includes: Step S600, receiving a trigger operation of the user on the display interface for the retrieved data, wherein the trigger operation includes at least one of feedback, adding to purchase, and complaint; Step S700: In response to the trigger operation, an interface call request corresponding to the trigger operation is generated, so as to call a corresponding data interface for data call based on the interface call request.
5. The steel mesh retrieval method according to claim 1, characterized in that: Before step S100, the method includes: Acquire basic steel mesh data corresponding to the steel mesh, wherein the basic steel mesh data includes a steel mesh identification; Identify coordinate information of a steel mesh hole group on the steel mesh; A mapping relationship between the steel mesh and the steel mesh hole group is established according to the identification information of the steel mesh hole group and the coordinate information.
6. The steel mesh retrieval method according to any one of claims 1 to 5, characterized in that: Step S100 includes: Step S110, obtaining initial information; Step S120, performing semantic analysis on the initial information to generate information to be queried, wherein the information to be queried includes any one of terminal data, chip data and steel mesh data.
7. The steel mesh retrieval method according to any one of claims 1 to 5, characterized in that: Before step S100, the method further includes: Step S110, acquiring drawing information corresponding to the drawing based on a click operation triggered by a user on the drawing, wherein the drawing is a drawing including chip information; Step S120: determining the information to be queried corresponding to the drawing information according to the chip information.
8. A steel mesh retrieval device, characterized in that: The device comprises: An information acquisition module (100) is used to acquire information to be queried, wherein the information to be queried includes any one of terminal data, chip data and steel mesh data; A field extraction module (200), used to extract key fields for retrieval from the information to be queried; A field matching module (300) is used to match the key field with a preset mapping relationship to obtain target steel mesh hole group data corresponding to the key field, wherein the preset mapping relationship includes a mapping relationship between a steel mesh hole group and a steel mesh, a mapping relationship between a steel mesh hole group and a chip, and a mapping relationship between a chip and a terminal, which is established with the steel mesh hole group set on the steel mesh as a mapping center; A data retrieval module (400) is used to perform retrieval according to the target steel mesh hole group data and the preset mapping relationship to obtain retrieval data corresponding to the target steel mesh hole group data, wherein the retrieval data includes target terminal data, target chip data and target steel mesh data corresponding to the target steel mesh hole group data; The data display module (500) is used to visualize the search data on a display interface.
9. A computer device, characterized in that: include: Adopt the steel mesh retrieval method as described in any one of claims 1-7; or include the device as described in claim 8.
10. A computer-readable storage medium having a computer program stored thereon, characterized in that: The computer program stored in the storage medium is used to be executed by a processor to implement the method according to any one of claims 1 to 7.