Auxiliary mold box identification mechanism
By setting coding components and identification sensors on the mold box and mold frame to assist the mold box identification mechanism, the assembly problem caused by human identification errors is solved, and automatic matching of the mold box and mold frame is realized, thereby improving production efficiency and accuracy.
Patent Information
- Application Number
- CN202422919384.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-27
AI Technical Summary
In the existing technology, there are problems such as human error in identifying the plastic encapsulation mold box when installing it into the mold frame, which can lead to assembly errors, damage to the mold box or mold, and low production efficiency.
An auxiliary mold box recognition mechanism is adopted. By setting coding components and recognition sensors on the mold box and mold frame, the matching between the mold box and the mold frame can be automatically recognized. This includes setting multiple coding components with different arrangements on the side wall of the mold box and installing corresponding recognition sensors on the side wall of the mold frame to automatically determine the matching between the mold box and the mold frame.
This effectively avoids the mismatch between the mold box and the mold base, improves production efficiency and accuracy, and prevents rework and damage to parts.
Smart Images

Figure CN223518031U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of molding die making, and more specifically, to an auxiliary mold box identification mechanism. Background Technology
[0002] A molding die is a tool for packaging chips. When using a molding die, you need to first select a suitable molding die and install it in the corresponding mold frame, and then apply pressure and heat to encapsulate it.
[0003] When installing the plastic sealant into the corresponding mold frame, it is necessary to manually identify the plastic sealant and the mold frame based on the dimensional data on the plastic sealant and the mold frame. There is a problem that human error may lead to incorrect assembly of the plastic sealant, which in turn may result in damage to the plastic sealant or the mold, as well as low production efficiency. Utility Model Content
[0004] The purpose of this application is to provide an auxiliary mold box recognition mechanism to alleviate the technical problems of low efficiency and accuracy of manual identification of plastic-sealed mold boxes in the prior art.
[0005] To solve the above-mentioned technical problems, the technical solution provided by this utility model is as follows:
[0006] The auxiliary mold box recognition mechanism provided by this utility model includes multiple upper mold boxes, multiple lower mold boxes, multiple upper mold frames, multiple lower mold frames, an encoding component, and a recognition component;
[0007] The encoding component includes multiple encoding elements, and at least two of the multiple encoding elements are different;
[0008] The identification component includes an equal number of identification sensors as the number of the encoded components;
[0009] Each upper mold box and each lower mold box have multiple coding elements on their side walls, and the arrangement of the multiple coding elements in each upper mold box is different, and the arrangement of the multiple coding elements in each lower mold box is also different.
[0010] Multiple identification sensors are installed on the side walls of multiple upper mold frames. The upper mold box is installed inside the corresponding upper mold frame, and the installation positions of multiple coding components in the upper mold box correspond to the installation positions of multiple identification sensors in the corresponding upper mold frame. Multiple identification sensors are installed on the side walls of multiple lower mold frames. The lower mold box is installed inside the corresponding lower mold frame, and the installation positions of multiple coding components in the lower mold box correspond to the installation positions of multiple identification sensors in the corresponding lower mold frame.
[0011] Further, the coding member is arranged as a positioning hole, shapes of at least two of the positioning holes are different.
[0012] Further, the coding member is arranged as a positioning hole, sizes of at least two of the positioning holes are different.
[0013] Further, the coding member is arranged as a sticker printed with a two-dimensional code, two-dimensional code information of at least two of the stickers is different.
[0014] Further, the coding member is arranged as a color card, colors of at least two of the color cards are different.
[0015] Further, the side wall of the upper mold frame and the side wall of the lower mold frame are provided with mounting holes, the identification sensor is mounted in the mounting holes, and the identification sensor is perpendicular to the side wall provided with the mounting hole.
[0016] Further, the upper mold frame comprises an upper edge baffle, and the upper edge baffle is provided with the mounting hole.
[0017] The lower mold frame comprises a lower edge baffle, and the lower edge baffle is provided with the mounting hole.
[0018] Further, the upper mold frame comprises an upper edge baffle and an upper vacuum surrounding plate, the upper vacuum surrounding plate forms an upper containing area for containing an upper mold box, a side wall of the upper vacuum surrounding plate is provided with the mounting hole, and the upper edge baffle is provided with a detection hole at a position corresponding to the mounting hole, and a cross-sectional size of the detection hole is greater than that of the mounting hole.
[0019] The lower mold frame comprises a lower edge baffle and a lower vacuum surrounding plate, the lower vacuum surrounding plate forms a lower containing area for containing a lower mold box, a side wall of the lower vacuum surrounding plate is provided with the mounting hole, and the lower edge baffle is provided with a detection hole at a position corresponding to the mounting hole, and a cross-sectional size of the detection hole is greater than that of the mounting hole.
[0020] Further, the upper mold box and the lower mold box each comprise a insert seat, and the plurality of coding members are arranged on a same side wall of the insert seat.
[0021] Further, the auxiliary mold box identification mechanism further comprises an alarm member, and the alarm member is signal-connected with the plurality of identification sensors.
[0022] Based on the above technical solutions, the technical effects achieved by the utility model are analyzed as follows.
[0023] The auxiliary mold box recognition mechanism provided by the utility model comprises a plurality of upper mold boxes, a plurality of lower mold boxes, a plurality of upper mold frames, a plurality of lower mold frames, a coding assembly and a recognition assembly.
[0024] The coding assembly comprises a plurality of coding pieces, different coding assemblies are arranged on each upper mold box and each lower mold box, the coding assembly is used for coding each upper mold box and each lower mold box, the information of each upper mold box and each lower mold box is fixed, and thus the coding assembly can be used for recognizing each upper mold box and each lower mold box.
[0025] The recognition assembly comprises a plurality of recognition sensors which are equal in number to the coding pieces, the recognition sensor is arranged on each upper mold frame, the recognition sensor can recognize the coding assembly when the upper mold box is installed into the upper mold frame, the upper mold box is matched with the upper mold frame, the problem that the upper mold box is not matched with the upper mold frame is avoided, the recognition sensor is arranged on each lower mold frame, the recognition sensor can recognize the coding assembly when the lower mold box is installed into the lower mold frame, the lower mold box is matched with the lower mold frame, and the problem that the lower mold box is not matched with the lower mold frame is avoided.
[0026] The coding assembly and the recognition assembly are used for automatic recognition, and the production efficiency and the production accuracy are improved. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiments of the present application. It should be understood that the following drawings only show some embodiments of the present application, and thus should not be regarded as a limitation to the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of the drawings.
[0028] Figure 1 The structure schematic diagram of the lower mold box in the auxiliary mold box recognition mechanism provided by the embodiments of the present application;
[0029] Figure 2An assembly view of the lower mold box and the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application;
[0030] Figure 3 An assembly view of the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application;
[0031] Figure 4 An assembly view of the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application;
[0032] Figure 5 An assembly view of the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application;
[0033] Figure 6 An assembly view of the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application;
[0034] Figure 7 An assembly view of the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application;
[0035] Figure 8 An assembly view of the lower mold base in the auxiliary mold box recognition mechanism provided by the embodiment of the present application.
[0036] Icon:
[0037] 110 - upper mold box; 120 - lower mold box; 130 - insert seat;
[0038] 210 - upper mold base; 220 - lower mold base; 230 - mounting hole; 211 - upper vacuum baffle; 221 - lower vacuum baffle; 212 - upper edge baffle; 222 - lower edge baffle; 240 - detection hole;
[0039] 300 - coding assembly; 310 - coding piece;
[0040] 410 - recognition sensor; DETAILED DESCRIPTION
[0041] In order to make the purpose, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, not all embodiments of the present application. The components of the embodiments of the present application described and shown in the drawings herein can be arranged and designed in various different configurations.
[0042] In the description of the present application, it should be noted that the positions or location relationships indicated by the terms "in", "out" and the like are based on the positions or location relationships shown in the drawings, or the positions or location relationships in which the products of the present application are usually placed, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second" and the like are only used to distinguish the description and cannot be understood as indicating or implying relative importance.
[0043] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "set", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be directly connected, or indirectly connected through an intermediate medium, or it can be connected inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0044] When the plastic sealing mold box is installed into the corresponding mold frame, manual identification of the plastic sealing mold box and the mold frame is required according to the size data on the plastic sealing mold box and the size data on the mold frame, and there is a problem of manual judgment error leading to incorrect assembly of the plastic sealing mold box, which further leads to damage of the plastic sealing mold box or the mold, and low production efficiency.
[0045] Therefore, according to the above problems, the utility model provides an auxiliary mold box identification mechanism. Figures 1 to 8 The auxiliary mold box identification mechanism provided by the utility model embodiment comprises a plurality of upper mold boxes 110, a plurality of lower mold boxes 120, a plurality of upper mold frames 210, a plurality of lower mold frames 220, a coding assembly 300 and an identification assembly. The coding assembly 300 comprises a plurality of coding pieces 310, and at least two coding pieces 310 in the plurality of coding pieces 310 are different. The identification assembly comprises identification sensors 410 equal in number to the coding pieces 310. The side wall of each upper mold box 110 and the side wall of each lower mold box 120 are each provided with a plurality of coding pieces 310, and the arrangement modes of the plurality of coding pieces 310 of each upper mold box 110 are different, and the arrangement modes of the plurality of coding pieces 310 of each lower mold box 120 are different. The side walls of the plurality of upper mold frames 210 are each provided with a plurality of identification sensors 410, the upper mold box 110 is installed in the corresponding upper mold frame 210, and the installation positions of the plurality of coding pieces 310 of the upper mold box 110 correspond to the installation positions of the plurality of identification sensors 410 of the corresponding upper mold frame 210. The side walls of the plurality of lower mold frames 220 are each provided with a plurality of identification sensors 410, the lower mold box 120 is installed in the corresponding lower mold frame 220, and the installation positions of the plurality of coding pieces 310 of the lower mold box 120 correspond to the installation positions of the plurality of identification sensors 410 of the corresponding lower mold frame 220.
[0046] Specifically, the number of the upper die boxes 110 is more than the number of the upper die racks 210, and the same upper die rack 210 can be adapted to different upper die boxes 110 under certain conditions; the installation positions of the plurality of coding members 310 of the plurality of upper die boxes 110 adapted to the same upper die rack 210 are the same. Similarly, the number of the lower die boxes 120 is more than the number of the lower die racks 220, and the same lower die rack 220 can be adapted to different lower die boxes 120 under certain conditions; the installation positions of the plurality of coding members 310 of the plurality of lower die boxes 120 adapted to the same lower die rack 220 are the same. Further, the arrangement of the coding members 310 is different, which means that the arrangement order of the plurality of coding members 310 is different.
[0047] The coding assembly 300 includes a plurality of coding members 310. By setting different coding assemblies 300 on each upper die box 110 and each lower die box 120, the coding of each upper die box 110 and each lower die box 120 is realized, and the information of each upper die box 110 and each lower die box 120 is fixed, so that each upper die box 110 and each lower die box 120 can be identified by the coding assembly 300. The identification assembly includes an identification sensor 410 equal in number to the coding members 310. By setting the identification sensor 410 on each upper die rack 210, it is realized that the identification sensor 410 can identify the coding assembly 300 when the upper die box 110 is installed into the upper die rack 210, so as to judge whether the upper die box 110 matches the upper die rack 210, effectively avoiding the problem that the upper die box 110 does not match the upper die rack 210. By setting the identification sensor 410 on each lower die rack 220, it is realized that the identification sensor 410 can identify the coding assembly 300 when the lower die box 120 is installed into the lower die rack 220, so as to judge whether the lower die box 120 matches the lower die rack 220, effectively avoiding the problem that the lower die box 120 does not match the lower die rack 220. Automatic identification is realized by the coding assembly 300 and the identification assembly, and the production efficiency and production accuracy are improved.
[0048] The structure of the auxiliary die box identification mechanism is described in detail as follows:
[0049] As a first embodiment, the coding member 310 is set as a positioning hole, and the shapes of at least two positioning holes in the plurality of positioning holes are different.
[0050] Specifically, in the embodiment of the utility model, the coding assembly 300 is composed of multiple positioning holes with different shapes, and the id (identity document, English full name: Identity document) of the upper die box 110 or the lower die box 120 can be formed by sorting the positioning holes. When the upper die box 110 is installed on the upper die frame 210 or the lower die box 120 is installed on the lower die frame 220, the identification sensor 410 identifies the id and compares it with the preset id to identify the upper die box 110 and the lower die box 120. The shapes of the positioning holes include two types, N type and Y type, and the N type corresponds to 0 and the Y type corresponds to 1. Taking the installation of the upper die box 110 as an example: when the upper die frame 210 is assembled on the upper die box 110, the identification sensor 410 on the upper die frame 210 can identify the information on the upper die box 110 when the upper die box 110 is pushed into the upper die frame 210, and the id of the target die box is compared, and the accuracy of the type of the upper die box 110 is judged. When the upper die box 110 does not match, the assembly state is stopped, and the type of the upper die box 110 is reconfirmed.
[0051] The positioning holes with different shapes are sorted to encode the upper die box 110 or the lower die box 120, and the structure is simple. The identification sensor 410 identifies the id, and the type of the upper die box 110 or the lower die box 120 is automatically compared with the target die box id to avoid assembly errors, thereby preventing rework and part damage.
[0052] As a second embodiment, the coding piece 310 is set as a positioning hole, and the sizes of at least two positioning holes in the multiple positioning holes are different.
[0053] Specifically, in the embodiment of the utility model, the coding assembly 300 includes two types of positioning holes, and the diameters of the two types of positioning holes are different; the positioning hole with a large diameter corresponds to 0, and the positioning hole with a small diameter corresponds to 1.
[0054] The positioning holes with different diameters are sorted to encode the upper die box 110 or the lower die box 120, and the structure is simple. The identification sensor 410 identifies the id, and the type of the upper die box 110 or the lower die box 120 is automatically compared with the target die box id to avoid assembly errors, thereby preventing rework and part damage.
[0055] As a third embodiment, the coding piece 310 is set as a sticker with a printed two-dimensional code, and the two-dimensional code information of at least two stickers in the multiple stickers is different.
[0056] Specifically, in the embodiment of the utility model, the coding assembly 300 includes two types of two-dimensional codes, one corresponding to 0 and the other corresponding to 1.
[0057] The two-dimensional code containing different information is sorted to encode the upper die box 110 or the lower die box 120, and the structure is simple and does not damage the structure of the upper die box 110 or the lower die box 120. The id is identified by the identification sensor 410, and the type of the upper die box 110 or the lower die box 120 is compared with the target die box id to avoid assembly errors, thereby preventing rework and part damage.
[0058] As a fourth implementation, the coding member 310 is provided as a color card, and the colors of at least two color cards in the plurality of color cards are different.
[0059] Specifically, in the embodiment of the utility model, the coding assembly 300 includes two colors, one corresponding to 0 and the other corresponding to 1. In addition, the identification sensor 410 is provided as a visual sensor.
[0060] The two-dimensional code containing different information is sorted to encode the upper die box 110 or the lower die box 120, and the structure is simple and does not damage the structure of the upper die box 110 or the lower die box 120. The id is identified by the identification sensor 410, and the type of the upper die box 110 or the lower die box 120 is compared with the target die box id to avoid assembly errors, thereby preventing rework and part damage.
[0061] In the optional scheme of the embodiment of the utility model, the side wall of the upper die frame 210 and the side wall of the lower die frame 220 are each provided with a mounting hole 230, the identification sensor 410 is mounted in the mounting hole 230, and the identification sensor 410 is perpendicular to the side wall provided with the mounting hole 230.
[0062] Specifically, in the embodiment of the utility model, the coding assembly 300 includes four coding members 310, and the four coding members 310 are arranged at intervals along the width direction of the upper die box 110 or the lower die box 120. Correspondingly, the identification assembly also includes four identification sensors 410. Further, the side wall of the upper die frame 210 near the opening end of the upper die frame 210 is provided with a mounting hole 230. Similarly, the side wall of the lower die frame 220 near the opening end of the lower die frame 220 is provided with a mounting hole 230.
[0063] The mounting hole 230 is used for mounting and fixing the identification sensor 410.
[0064] As an implementation, the upper die frame 210 includes an upper edge baffle 212, and the upper edge baffle 212 is provided with a mounting hole 230; the lower die frame 220 includes a lower edge baffle 222, and the lower edge baffle 222 is provided with a mounting hole 230.
[0065] The mounting hole 230 of the upper die frame 210 is arranged on the upper edge baffle 212, and the mounting hole 230 of the lower die frame 220 is arranged on the lower edge baffle 222, so that the side wall of the upper die frame 210 and the side wall of the lower die frame 220 are provided with the mounting hole 230.
[0066] As another implementation, see Figure 4 and Figure 8 The upper die holder 210 includes an upper baffle 212 and an upper vacuum enclosure 211, the upper vacuum enclosure 211 forms an upper accommodating area for accommodating the upper die box 110, and the side wall of the upper vacuum enclosure 211 is provided with a mounting hole 230; the upper baffle 212 is provided with a detection hole 240 at a position corresponding to the mounting hole 230, and the cross-sectional size of the detection hole 240 is greater than that of the mounting hole 230; the lower die holder 220 includes a lower baffle 222 and a lower vacuum enclosure 221, the lower vacuum enclosure 221 forms a lower accommodating area for accommodating the lower die box 120, and the side wall of the lower vacuum enclosure 221 is provided with a mounting hole 230; the lower baffle 222 is provided with a detection hole 240 at a position corresponding to the mounting hole 230, and the cross-sectional size of the detection hole 240 is greater than that of the mounting hole 230.
[0067] Specifically, in some die boxes that require a vacuum environment, the die holder will have a vacuum enclosure to create a vacuum environment, at this time the vacuum enclosure on the die holder also needs to be provided with a mounting hole 230 to install the identification sensor 410. The detection hole 240 is circular, and the mounting hole 230 is also circular, and the diameter of the detection hole 240 is greater than that of the mounting hole 230.
[0068] The mounting hole 230 of the upper die holder 210 is arranged on the upper vacuum enclosure 211, and the mounting hole 230 of the lower die holder 220 is arranged on the lower vacuum enclosure 221, so that the side wall of the upper die holder 210 and the lower die holder 220 is provided with the mounting hole 230. The diameter of the detection hole 240 is greater than that of the mounting hole 230 to avoid the upper baffle 212 or the lower baffle 222 affecting the identification of the identification sensor 410 information of the code assembly 300.
[0069] In an optional scheme of the embodiment of the utility model, the upper die box 110 and the lower die box 120 both include a insert seat 130, and the plurality of code pieces 310 are arranged on the same side wall of the insert seat 130.
[0070] The plurality of code pieces 310 are arranged on the insert seat 130, so that when the mold core of the upper die box 110 and the lower die box 120 is replaced, the code piece 310 does not need to be repeatedly arranged, and the cost is reduced.
[0071] In an optional scheme of the embodiment of the utility model, the auxiliary die box identification mechanism further includes an alarm piece, and the alarm piece is signal connected with the plurality of identification sensors 410.
[0072] Specifically, the alarm piece includes a sound alarm structure and a light alarm structure.
[0073] The alarm piece is signal connected with the plurality of identification sensors 410, and when an assembly error is encountered, the alarm piece alarms to timely notify the operator to perform the next operation.
[0074] It should be noted that the features of the embodiments in the present application can be combined with each other in the case of no conflict.
[0075] The above only describes the preferred embodiments of the present application and is not intended to limit the present application. The present application can have various modifications and changes for those skilled in the art. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. An auxiliary mold box recognition mechanism characterized by comprising: 1) a mold box recognition sensor for recognizing a mold box, The application relates to a mold box system, comprising: a plurality of upper mold boxes (110), a plurality of lower mold boxes (120), a plurality of upper mold frames (210), a plurality of lower mold frames (220), an encoding assembly (300) and an identification assembly; the encoding assembly (300) comprises a plurality of encoding pieces (310), at least two of the plurality of encoding pieces (310) being different; the identification assembly comprises identification sensors (410) equal in number to the encoding pieces (310); the side walls of each of the upper mold boxes (110) and the side walls of each of the lower mold boxes (120) are provided with a plurality of the encoding pieces (310), and the arrangement of the plurality of encoding pieces (310) of each of the upper mold boxes (110) is different, and the arrangement of the plurality of encoding pieces (310) of each of the lower mold boxes (120) is different; the side walls of the plurality of upper mold frames (210) are each provided with a plurality of the identification sensors (410), the upper mold boxes (110) are installed in the corresponding upper mold frames (210), and the installation positions of the plurality of encoding pieces (310) of the upper mold boxes (110) correspond to the installation positions of the plurality of identification sensors (410) of the corresponding upper mold frames (210); the side walls of the plurality of lower mold frames (220) are each provided with a plurality of the identification sensors (410), the lower mold boxes (120) are installed in the corresponding lower mold frames (220), and the installation positions of the plurality of encoding pieces (310) of the lower mold boxes (120) correspond to the installation positions of the plurality of identification sensors (410) of the corresponding lower mold frames (220).
2. The auxiliary mold identification mechanism according to claim 1, wherein The encoding pieces (310) are provided as positioning holes, and at least two of the plurality of positioning holes are different in shape.
3. The auxiliary mold identification mechanism according to claim 1, wherein The encoding pieces (310) are provided as positioning holes, and at least two of the plurality of positioning holes are different in size.
4. The auxiliary mold identification mechanism according to claim 1, wherein The encoding pieces (310) are provided as stickers printed with two-dimensional codes, and at least two of the plurality of stickers are different in two-dimensional code information.
5. The auxiliary mold identification mechanism according to claim 1, wherein The encoding pieces (310) are provided as color cards, and at least two of the plurality of color cards are different in color.
6. The auxiliary mold identification mechanism according to any one of claims 1 to 5, characterized in that, The side walls of the upper mold frames (210) and the side walls of the lower mold frames (220) are each provided with mounting holes (230), the identification sensors (410) are installed in the mounting holes (230), and the identification sensors (410) are perpendicular to the side walls provided with the mounting holes (230).
7. The auxiliary mold identification mechanism according to claim 6, wherein The upper mold frames (210) comprise upper edge baffles (212), and the upper edge baffles (212) are provided with the mounting holes (230); The lower mold frames (220) comprise lower edge baffles (222), and the lower edge baffles (222) are provided with the mounting holes (230).
8. The auxiliary mold identification mechanism according to claim 6, wherein The upper die frame (210) comprises an upper side baffle (212) and an upper vacuum baffle (211), the upper vacuum baffle (211) forms an upper containing area for containing an upper die box (110), the side wall of the upper vacuum baffle (211) is provided with the mounting hole (230); the upper side baffle (212) is provided with a detection hole (240) at a position corresponding to the mounting hole (230), the cross-sectional size of the detection hole (240) is greater than the cross-sectional size of the mounting hole (230); The lower die frame (220) comprises a lower side baffle (222) and a lower vacuum baffle (221), the lower vacuum baffle (221) forms a lower containing area for containing a lower die box (120), the side wall of the lower vacuum baffle (221) is provided with the mounting hole (230); the lower side baffle (222) is provided with a detection hole (240) at a position corresponding to the mounting hole (230), the cross-sectional size of the detection hole (240) is greater than the cross-sectional size of the mounting hole (230).
9. The auxiliary mold identification mechanism according to claim 1, wherein The upper die box (110) and the lower die box (120) each comprise a insert seat (130), and a plurality of the coding pieces (310) are arranged on the same side wall of the insert seat (130).
10. The auxiliary mold identification mechanism according to claim 1, wherein The auxiliary die box identification mechanism further comprises an alarm piece, and the alarm piece is signal connected with the plurality of identification sensors (410).