Injection molding processing system
By introducing support rods, suction cups, and metal sensors into the injection molding system, the problem of missing metal inserts in injection molding machines has been solved, achieving automated detection and improved production efficiency.
Patent Information
- Application Number
- CN202520346243.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing injection molding machines are prone to missing metal inserts when processing products. Manual inspection is inefficient and inaccurate, and cannot meet the needs of large-scale production.
Design an injection molding system comprising a frame, an injection unit, a moving device, and a fixture. The fixture is equipped with a support rod, a suction cup, and a metal sensor. The moving device moves the fixture to the injection station for injection molding. The metal sensor detects the presence of metal inserts in the finished product, achieving automated detection.
It has enabled the automated generation and inspection of finished products, improved inspection and production efficiency, and ensured the accuracy of metal inserts and the stability of production.
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Figure CN223948368U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of injection molding processing, in particular to an injection molding processing system. BACKGROUND
[0002] At present, the product processed by the injection molding machine usually needs to be pre-placed with a metal insert, and the operator is easy to miss the metal insert. The traditional method is to check the missing metal insert product by manual inspection, but the efficiency of manual inspection is low, the accuracy is poor, and it cannot meet the demand of large-scale production. CONTENT OF THE UTILITY MODEL
[0003] The following is a summary of the subject matter described in detail in this document, which is not intended to limit the scope of protection of the claims.
[0004] The present application provides an injection molding processing system, which can improve the detection efficiency of the processed product and improve the production efficiency.
[0005] The present application provides an injection molding processing system, which comprises a rack, an injection molding device arranged on the rack, the injection molding device being provided with an injection molding inlet and a finished product outlet, a moving device arranged on the rack, a jig mounted on the moving device, one side of the jig being provided with a supporting rod, the other side of the jig being provided with a suction cup and a metal sensor, and the supporting rod being used for placing a metal insert; wherein the moving device is used to drive the jig with the metal insert placed therein to move to an injection molding station in sequence, so that the metal insert enters the injection molding inlet, the injection molding device is used to injection mold a processed product wrapped with the metal insert by plastic and deliver the processed product to the finished product outlet; the moving device is further used to drive the jig to move to a material taking station, so that the suction cup adsorbs the processed product located in the finished product outlet, and when the suction cup adsorbs the processed product located in the finished product outlet, the distance between the detection end of the metal sensor and the metal insert in the processed product is less than or equal to a preset detection distance.
[0006] In some embodiments, the other side of the jig is provided with a first base, the suction cup is mounted on the first base, and the first base is provided with a mounting table, and the metal sensor is mounted on the mounting table.
[0007] In some embodiments, the number of the suction cups is multiple, the multiple suction cups are distributed side by side on the first base, the number of the metal sensors is multiple, the number of the metal inserts in the processed product is the same as the number of the metal sensors, and the multiple metal sensors are respectively used to detect the corresponding metal inserts.
[0008] In some embodiments, the mounting table is provided with a mounting hole for mounting the metal sensor, and a distance between the mounting hole and the first base is greater than a distance between the end of the suction disc and the first base.
[0009] In some embodiments, the mounting table is fixedly connected with the first base through screws which are distributed side by side on the mounting table.
[0010] In some embodiments, one side of the jig is provided with a second base, and the support rod is installed at the center of the second base.
[0011] In some embodiments, one side of the jig is provided with a driving module, a driving end of the driving module is connected with the second base, and the driving module is used to drive the second base to move.
[0012] In some embodiments, the second base is provided with a plurality of positioning rods which are distributed around the support rod.
[0013] In some embodiments, the length of the positioning rod is greater than the length of the support rod.
[0014] In some embodiments, the injection inlet and the finished product outlet are respectively located on two sides of the jig, a plane on which one side of the jig is located is perpendicular to a plane on which the other side of the jig is located, the moving device comprises a three-axis moving platform and a rotating module, the rotating module is fixed at an output end of the three-axis moving platform, and a rotating end of the rotating module is connected with the jig.
[0015] The embodiments of the present application at least have the following beneficial effects: one side of the jig is provided with a support rod, the other side of the jig is provided with a suction disc and a metal sensor, and the support rod is used to place a metal insert, then the jig is installed on the moving device, the jig with the metal insert placed therein is driven by the moving device to move to an injection station in sequence, so that the metal insert enters the injection inlet, then a processing finished product in which the metal insert is wrapped by plastic is obtained through the injection device, and the processing finished product is transported to the finished product outlet, then the jig is driven by the moving device to move to a material taking station, so that the suction disc adsorbs the processing finished product located in the finished product outlet, when the suction disc adsorbs the processing finished product located in the finished product outlet, a distance between a detection end of the metal sensor and the metal insert in the processing finished product is less than or equal to a preset detection distance, therefore, the detection of the processing finished product is completed through the metal sensor, so as to determine the existence of the metal insert in the processing finished product, the automatic generation and detection of the processing finished product can be realized, the detection efficiency of the processing finished product is improved, and the production efficiency is improved.
[0016] Other features and advantages of the present application will be set forth in the description that follows, and in part will be apparent from the description, or can be learned by practice of the application. The purposes and other advantages of the present application will be realized and attained by the structure particularly pointed out in the description and claims hereof as well as the appended drawings. BRIEF DESCRIPTION OF DRAWINGS
[0017] The accompanying drawings are included to provide a further understanding of the application and are incorporated in and constitute a part of this specification, illustrate embodiments of the application and are used to explain the technical solutions of the application, and do not constitute a limitation on the technical solutions of the application.
[0018] Figure 1 A front view of the injection molding processing system provided for the embodiment of the present application;
[0019] Figure 2 A bottom view of the injection molding processing system provided for the embodiment of the present application;
[0020] Figure 3 A front view of the partial structure of the jig and the processed product provided for the embodiment of the present application;
[0021] Figure 4 A structural schematic diagram of the partial structure of the jig and the processed product provided for the embodiment of the present application. DETAILED DESCRIPTION
[0022] The embodiments of the present application are described in detail below, and examples of the embodiments are shown in the drawings, in which the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary, and are only used to explain the present application, and cannot be understood as a limitation on the present application.
[0023] In the description of the present application, it should be understood that the orientation description, such as the orientation or position relationship indicated by up, down, front, back, left, right, etc. is based on the orientation or position relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element indicated must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0024] In the description of the present application, the meaning of several is one or more, and the meaning of multiple is two or more. Greater than, less than, more than, etc. are understood as not including the number, and above, below, etc. are understood as including the number. If it is described as first, second, etc., it is only for the purpose of distinguishing technical features, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features or the sequence of indicated technical features.
[0025] In the description of the present application, unless otherwise explicitly defined, the words such as setting, installing, connecting and the like should be understood in a broad sense, and the specific meaning of the above words in the present application can be reasonably determined by the person skilled in the art in combination with the specific content of the technical solution.
[0026] At present, the products processed by the injection molding machine usually need to be placed in metal inserts in advance, and the operator is easy to miss the metal inserts. The traditional method is to check the products missing metal inserts by manual inspection, but the efficiency of manual inspection is low, the accuracy is poor, and it cannot meet the demand of large-scale production.
[0027] In view of the problems of low efficiency and poor accuracy of manual inspection, the present application provides an injection molding processing system, which comprises: a rack; an injection molding device arranged on the rack, the injection molding device being provided with an injection molding inlet and a finished product outlet; a moving device arranged on the rack; a jig installed on the moving device, one side of the jig being provided with a supporting rod, the other side of the jig being provided with a suction cup and a metal sensor, the supporting rod being used for placing a metal insert; wherein the moving device is used to drive the jig with the metal insert placed therein to move to the injection molding station in sequence, so that the metal insert enters the injection molding inlet, the injection molding device is used to injection mold a processed product wrapped by the plastic around the metal insert and deliver the processed product to the finished product outlet; the moving device is further used to drive the jig to move to a material taking station, so that the suction cup adsorbs the processed product located in the finished product outlet, and when the suction cup adsorbs the processed product located in the finished product outlet, the distance between the detection end of the metal sensor and the metal insert in the processed product is less than or equal to a preset detection distance. According to the scheme provided by the embodiment of the present application, one side of the jig is provided with the supporting rod, the other side of the jig is provided with the suction cup and the metal sensor, and the supporting rod is used for placing the metal insert, then the jig is installed on the moving device, the jig with the metal insert placed therein is driven by the moving device to move to the injection molding station in sequence, so that the metal insert enters the injection molding inlet, then the processed product wrapped by the plastic around the metal insert is obtained by the injection molding device, and the processed product is delivered to the finished product outlet, then the jig is driven by the moving device to move to the material taking station, so that the suction cup adsorbs the processed product located in the finished product outlet, and when the suction cup adsorbs the processed product located in the finished product outlet, the distance between the detection end of the metal sensor and the metal insert in the processed product is less than or equal to a preset detection distance. Therefore, the detection of the processed product is completed by the metal sensor, so as to determine the existence of the metal insert in the processed product, and the automatic generation and detection of the processed product can be realized, the detection efficiency of the processed product is improved, and the production efficiency is improved.
[0028] The embodiments of the present application will be further described below with reference to the drawings.
[0029] Reference Figures 1 to 2 , Figure 1 is a front view of the injection molding processing system provided by the embodiment of the present application,Figure 2 A bottom view of the injection molding processing system provided by the embodiment of the present application, the embodiment of the present application provides an injection molding processing system, comprising:
[0030] a rack 100;
[0031] an injection molding device 200 arranged on the rack 100, the injection molding device 200 is provided with an injection molding inlet 210 and a finished product outlet 220;
[0032] a moving device 300 arranged on the rack 100;
[0033] a jig 400 mounted on the moving device 300, one side of the jig 400 is mounted with a support rod 411, the other side of the jig 400 is mounted with a suction cup 421 and a metal sensor 423, the support rod 411 is used for placing a metal insert 600;
[0034] wherein the moving device 300 is used to drive the jig 400 with the metal insert 600 to move to the injection molding station in sequence, so that the metal insert 600 enters the injection molding inlet 210, and the injection molding device 200 is used to injection mold to obtain a processing finished product 700 wrapped by the plastic and metal insert 600 and to deliver the processing finished product 700 to the finished product outlet 220;
[0035] the moving device 300 is also used to drive the jig 400 to move to the material taking station, so that the suction cup 421 adsorbs the processing finished product 700 located in the finished product outlet 220, when the suction cup 421 adsorbs the processing finished product 700 located in the finished product outlet 220, the distance between the detection end of the metal sensor 423 and the metal insert 600 in the processing finished product 700 is less than or equal to the preset detection distance.
[0036] It should be noted that when the injection molding device 200 obtains the metal insert 600, the finished product outlet 220 is close to the injection molding inlet 210, finally the injection molding inlet 210 and the finished product outlet 220 are attached, and the injection molding device 200 starts the injection molding process; when the injection molding process ends, the finished product outlet 220 with the processing finished product 700 moves away from the injection molding inlet 210, and the moving device 300 drives the jig 400 to move between the injection molding inlet 210 and the finished product outlet 220.
[0037] It should be noted that the suction cup 421 can adsorb the processing finished product 700 to fix the processing finished product 700, and the suction cup 421 can also release the processing finished product 700.
[0038] It should be noted that the metal insert 600 can be located on the surface or inside of the processed product 700. When the metal insert 600 is located on the surface of the processed product 700, the detection end of the metal sensor 423 can be in contact with the metal insert 600, thereby accurately determining the presence of the metal insert 600 in the processed product 700. When the metal insert 600 is located inside the processed product 700, the metal sensor 423 does not need to be in contact with the metal insert 600 to detect the metal insert 600. For example, the detection end of the metal sensor 423 can be magnetic. When the detection end of the metal sensor 423 is close to the metal insert 600, the metal sensor 423 can detect the corresponding mechanical or current change, thereby detecting the metal insert 600.
[0039] It should be noted that when the metal sensor 423 detects that the processed product 700 is missing the metal insert 600, a feedback signal is generated, so that the moving module moves the jig 400 above the defective product collection area, and then the suction cup 421 releases the processed product 700 to the defective product collection area. Similarly, when the metal sensor 423 detects that the processed product 700 is not missing the metal insert 600, the processed product 700 is transferred to the good product collection area, and the process is the same as when the processed product 700 is missing the metal insert 600. The embodiments of the present disclosure will not be repeated here.
[0040] Wherein, referring to Figure 3 , Figure 3 The partial structure of the jig provided by the embodiments of the present application and the front view of the processed product are shown in FIG. 8. The side of the processed product 700 is provided with a pipe 710. Since the pipe 710 will not be in contact with the jig when the suction cup 421 is adsorbed to the processed product 700, the pipe 710 does not affect the adsorption effect of the suction cup 421 on the processed product 700.
[0041] Based on this, one side of the jig 400 is provided with a supporting rod 411, the other side of the jig 400 is provided with a suction cup 421 and a metal sensor 423, and the supporting rod 411 is used to place the metal insert 600, and then the jig 400 is installed on the moving device 300, and the jig 400 placed with the metal insert 600 is driven by the moving device 300 to move to the injection molding station in sequence, so that the metal insert 600 enters the injection molding inlet 210, and then the processing product 700 wrapped by the plastic is obtained by the injection molding device 200, and the processing product 700 is transported to the product outlet 220, and then the jig 400 is driven by the moving device 300 to move to the material taking station, so that the suction cup 421 adsorbs the processing product 700 located in the product outlet 220, when the suction cup 421 adsorbs the processing product 700 located in the product outlet 220, the distance between the detection end of the metal sensor 423 and the metal insert 600 in the processing product 700 is less than or equal to the preset detection distance, therefore, the detection of the processing product 700 is completed by the metal sensor 423, so as to determine the existence of the metal insert 600 in the processing product 700, and the automatic generation and detection of the processing product 700 can be realized, the detection efficiency of the processing product 700 is improved, and the production efficiency is improved.
[0042] In addition, referring again to Figures 1 to 3 , and referring to Figure 4 , Figure 4 The structure of the jig provided by the embodiment of the application and the structure of the processing product are shown in the figure. In some embodiments of the application, the other side of the jig 400 is provided with a first base, the suction cup 421 is installed on the first base, and the first base is provided with a mounting table 422, and the metal sensor 423 is installed on the mounting table 422.
[0043] Among them, the first base can be a rectangular supporting plate, and the mounting table 422 can include two rectangular supporting plates, one side of one of the supporting plates is connected with the first base and perpendicular to each other, and the other side of the supporting plate is connected with the other supporting plate and perpendicular to each other.
[0044] Based on this, the other side of the jig 400 is provided with a first base, and the suction cup 421 is installed on the first base, so that the suction cup 421 can provide a stable fixing mode and improve the measurement accuracy, and then the first base is provided with a mounting table 422, and the metal sensor 423 is installed on the mounting table 422, so as to reduce the measurement error caused by inaccurate movement or positioning and improve the accuracy of the measurement data.
[0045] In addition, referring again to Figure 1 , Figure 2 and Figure 4In some embodiments of this application, there are multiple suction cups 421 arranged side by side on the first base, and multiple metal sensors 423. The number of metal inserts 600 in the finished product 700 is the same as the number of metal sensors 423. The multiple metal sensors 423 are used to detect the corresponding metal inserts 600.
[0046] The suction cup 421 may have two or more rows, with two or more suction cups 421 in each row. This embodiment of the present disclosure does not limit the number of suction cups 421.
[0047] Based on this, there are multiple suction cups 421, which are arranged side by side on the first base. This can evenly distribute the stress brought by the finished product 700, making the adsorption force more balanced and preventing the finished product 700 from being deformed or damaged due to excessive local stress. Then, there are multiple metal sensors 423. The number of metal inserts 600 in the finished product 700 is the same as the number of metal sensors 423. Multiple metal sensors 423 are used to detect the corresponding metal inserts 600, which can detect the metal inserts 600 in all positions at one time, thereby improving detection efficiency and production efficiency.
[0048] Additionally, refer to again Figure 4 In some embodiments of this application, the mounting platform 422 is provided with mounting holes for mounting metal sensors 423, and the distance between the mounting holes and the first base is greater than the distance between the end of the suction cup 421 and the first base.
[0049] The number of mounting platforms 422 can be two, respectively set on both sides of the first base.
[0050] The number of mounting holes can be two, and the mounting holes are arranged side by side on the mounting platform 422.
[0051] In this case, the distance between the detection end of the metal sensor 423 and the first base is greater than the distance between the mounting hole and the first base.
[0052] Based on this, the mounting table 422 is provided with mounting holes for mounting the metal sensor 423. The distance between the mounting holes and the first base is greater than the distance between the end of the suction cup 421 and the first base, so that the detection ends of the suction cup 421 and the metal sensor 423 are located on different planes. This can reduce mutual interference between the two, improve the working accuracy of the metal sensor 423, and make more flexible use of the equipment space to adapt to the shape of the finished product 700, so as to achieve the best operating effect.
[0053] Additionally, refer to again Figure 4In some embodiments of the present application, the mounting table 422 is fixedly connected with the first base through the screws 424, and the screws 424 are distributed side by side on the mounting table 422.
[0054] It should be noted that the screws 424 also fix the two support plates of the mounting table 422 together, and the screws 424 pass through the support plates and the first base connected with the support plates in sequence, so as to fix the mounting table 422 on the first base.
[0055] Therefore, the mounting table 422 is fixedly connected with the first base through the screws 424, and the screws 424 are distributed side by side on the mounting table 422, which can provide stronger clamping force and make the connection between the mounting table 422 and the base more firm, thereby enhancing the structural stability.
[0056] In addition, referring back to Figures 1 to 4 In some embodiments of the present application, one side of the jig 400 is provided with the second base 410, and the support rods 411 are installed at the center of the second base 410.
[0057] Among them, the number of support rods 411 is multiple, and the second base 410 can be a rectangular support plate, for example, the number of support rods 411 can be four, and the four support rods 411 are uniformly distributed around the center point of the second base 410.
[0058] Therefore, one side of the jig 400 is provided with the second base 410, and the support rods 411 are installed at the center of the second base 410. Since the center position is usually the most stable point, when the support rods 411 put the metal insert 600 into the injection molding entrance 210, the influence of external vibration or other interference on the production process can be minimized, and the yield of the processed product 700 can be improved.
[0059] In addition, referring back to Figure 2 In some embodiments of the present application, one side of the jig 400 is provided with the driving module 500, the driving end of the driving module 500 is connected with the second base 410, and the driving module 500 is used to drive the second base 410 to move.
[0060] Among them, the driving module 500 can be a pneumatic cylinder, a motor or a lead screw, and the present application does not make any limitation here, for example, the driving module 500 is a pneumatic cylinder, one side of the second base 410 away from the support rods 411 is connected with the pneumatic cylinder, and the driving end of the pneumatic cylinder performs reciprocating motion, thereby driving the second base 410 and the support rods 411 to move.
[0061] Therefore, the driving module 500 is arranged on one side of the jig 400, the driving end of the driving module 500 is connected with the second base 410, the driving module 500 is used to drive the second base 410 to move, so as to provide accurate position control, ensure that the second base 410, the supporting rod 411 and the metal insert 600 thereon can accurately move to the predetermined position, thereby reducing the occurrence of production accidents and improving production efficiency.
[0062] In addition, referring again to Figure 1 and Figure 2 , in some embodiments of the present application, the second base 410 is provided with a plurality of positioning rods 412, and the plurality of positioning rods 412 are distributed around the supporting rod 411.
[0063] In this embodiment, the number of positioning rods 412 can be four, for example, each positioning rod 412 can be arranged at a top corner of the second base 410.
[0064] Therefore, the second base 410 is provided with a plurality of positioning rods 412, and the plurality of positioning rods 412 are distributed around the supporting rod 411, which can prevent the metal insert 600 from deviating from the predetermined position, ensure the stability of the entire processing process, and the positioning rods 412 can disperse the force applied on the supporting rod 411, reduce local stress concentration, thereby prolonging the service life of the supporting rod 411 and reducing the failure rate of the equipment.
[0065] In addition, referring again to Figure 2 , in some embodiments of the present application, the length of the positioning rod 412 is greater than the length of the supporting rod 411.
[0066] Therefore, since the length of the positioning rod 412 is greater than the length of the supporting rod 411, the positioning rod 412 can play a positioning role before the supporting rod 411 and the metal insert 600 thereon enter the processing area, so that the supporting rod 411 can more accurately reach the predetermined position, reducing the need for final adjustment and improving production efficiency.
[0067] In addition, referring again to Figure 1 and Figure 2 , in some embodiments of the present application, the injection inlet 210 and the finished product outlet 220 are respectively arranged on two sides of the jig 400, the plane where one side of the jig 400 is located is perpendicular to the plane where the other side of the jig 400 is located, the moving device 300 comprises a three-axis moving platform 310 and a rotating module 320, the rotating module 320 is fixed on the output end of the three-axis moving platform 310, and the rotating end of the rotating module 320 is connected with the jig 400.
[0068] In this embodiment, the three-axis moving platform 310 is used to drive the jig 400 to move in three-dimensional space, and the rotating module 320 is used to drive the jig 400 to adjust the posture to complete the placing of the metal insert 600 and the adsorption of the processed product 700.
[0069] It should be noted that when the metal insert 600 is sleeved into the support rod 411, the length direction of the support rod 411 is horizontal; before the jig 400 adsorbs the finished product 700, since the plane used for being adsorbed by the finished product 700 is perpendicular to the horizontal plane, the rotating module 320 drives the jig 400 to rotate, so that the length direction of the support rod 411 is vertical, and the suction cup 421 can adsorb the finished product 700; after the jig 400 is adsorbed to the finished product 700, the rotating module 320 drives the jig 400 to rotate again, so that the length direction of the support rod 411 is horizontal again, and then the three-axis moving platform 310 drives the jig 400 to move above the substandard product collection area or the good product collection area, and the suction cup 421 releases the finished product 700.
[0070] Therefore, the injection inlet 210 and the finished product outlet 220 are respectively located on two sides of the jig 400, the plane where one side of the jig 400 is located is perpendicular to the plane where the other side of the jig 400 is located, then the moving device 300 includes the three-axis moving platform 310 and the rotating module 320, the rotating module 320 is fixed on the output end of the three-axis moving platform 310, the rotating end of the rotating module 320 is connected with the jig 400, through the rotating module 320, the suction cup 421 can more easily adsorb, carry and unload the finished product 700, which is convenient for transferring from the processing position to the next processing step, and improves the convenience of processing the finished product 700.
[0071] The above describes the embodiments of the application in detail in combination with the drawings, but the application is not limited to the above embodiments, and various changes can be made within the knowledge range of ordinary skilled in the art without departing from the purpose of the application.
Claims
1. An injection molding processing system characterized by, The utility model relates to a metal embedded injection molding device, including: A rack; Injection molding device is arranged on the rack, and the injection molding device is provided with injection molding entrance and finished product outlet; Mobile device is arranged on the rack; Jig is installed on the mobile device, one side of the jig is installed with support rod, the other side of the jig is installed with sucking disc and metal sensor, and the support rod is used for placing metal embedded part; Wherein, the mobile device is used to drive the jig with the metal embedded part to move to injection molding station in sequence, so that the metal embedded part enters the injection molding entrance, and the injection molding device is used for injection molding to obtain processing finished product with the metal embedded part wrapped by plastic and conveying the processing finished product to the finished product outlet; The mobile device is also used to drive the jig to move to the material taking station, so that the sucking disc adsorbs the processing finished product in the finished product outlet, when the sucking disc adsorbs the processing finished product in the finished product outlet, the distance between the detection end of the metal sensor and the metal embedded part in the processing finished product is less than or equal to the preset detection distance.
2. An injection molding system as defined in claim 1, wherein The other side of the jig is provided with a first base, the sucking disc is installed on the first base, and the first base is provided with a mounting table, and the metal sensor is installed on the mounting table.
3. An injection molding system as defined in claim 2, wherein The number of the sucking disc is multiple, multiple sucking discs are distributed side by side on the first base, the number of the metal sensor is multiple, the number of the metal embedded part in the processing finished product is same with the number of the metal sensor, and multiple metal sensors are used for detecting corresponding metal embedded part respectively.
4. The injection molding processing system of claim 2, wherein The mounting table is provided with a mounting hole, the mounting hole is used for mounting the metal sensor, and the distance between the mounting hole and the first base is greater than the distance between the end of the sucking disc and the first base.
5. The injection molding processing system of claim 2, wherein The mounting table is fixedly connected with the first base through screws, and the screws are distributed side by side on the mounting table.
6. The injection molding processing system of claim 1, wherein One side of the jig is provided with a second base, and the support rod is installed in the center of the second base.
7. An injection molding system as defined in claim 6, wherein One side of the jig is provided with a driving module, a driving end of the driving module is connected with the second base, and the driving module is used for driving the second base to move.
8. The injection molding processing system of claim 6, wherein The second base is provided with a plurality of positioning rods, and the plurality of positioning rods are distributed around the support rod.
9. A system for injection molding according to claim 8, wherein The length of the positioning rod is greater than the length of the support rod.
10. The injection molding processing system of claim 1, wherein The injection molding entrance and the finished product outlet are located on the two sides of the jig respectively, the plane where one side of the jig is located is perpendicular to the plane where the other side of the jig is located, the mobile device includes a three-axis moving platform and a rotating module, the rotating module is fixed on the output end of the three-axis moving platform, and the rotating end of the rotating module is connected with the jig.