Shielding case detection equipment

By integrating shielding and hood detection equipment in the incoming material area, punching and cutting area, the existing equipment has solved the problem of single functions or complex processes, and the continuous processing and efficient detection of shielding and hood are realized.

CN223213254UActive Publication Date: 2025-08-12SUZHOU HUIWEI AUTOMATION TECH CO LTD
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Patent Information

Application Number
CN202422582785.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-25
Publication Date
2025-08-12
Estimated Expiration
2034-10-25

AI Technical Summary

Technical Problem

The existing shield cover detection equipment has a single function or a complex detection process, which leads to inefficient efficiency and makes it difficult to achieve continuous processing of shield cover.

Method used

A shielding cover detection device was designed, integrating incoming material area, punching and cutting area, steel belt collection box, synchronous handling mechanism, inspection area, flip mechanism, variable distance platform, transport mechanism, lower camera detection mechanism and packaging mechanism, realizing continuous processing of shielding cover and simplifying the process flow.

Benefits of technology

The production of shield covers, waste recycling and continuous processing of packaging has been realized, which has reduced manpower and material investment, improved detection efficiency, and simplified the threshold for equipment manufacturing.

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Abstract

The utility model discloses shielding case detection equipment, and belongs to the technical field of shielding case detection. The shielding case detection equipment comprises a material incoming area, a punching area, a steel belt collection box, a synchronous carrying mechanism, a height detection area, a contour detection area, an appearance detection area, a turnover mechanism, a variable pitch platform, a carrying mechanism, a standby product placement platform, a lower camera detection mechanism, a packaging mechanism, an empty material belt, a connecting piece I, a material receiving roll, a connecting piece II, a keyboard and mouse area, a signal lamp and a box body I, a box body II and a working bottom plate. The incoming material area, the punching area and the steel belt collecting box are longitudinally arranged; and the synchronous carrying mechanism, the height detection area, the contour detection area, the appearance detection area, the turnover mechanism, the variable-pitch platform, the carrying mechanism, the standby product placement platform and the lower camera detection mechanism are transversely arranged. Continuous processing of shielding cover manufacturing, waste recycling, shielding cover detecting and packaging is achieved, a simpler technical scheme is provided, and input of manpower and material resources is effectively reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of shielding cover detection, and particularly relates to a shielding cover detection device. Background Art

[0002] A shielding cover is a shielding body used to shield electronic signals, mainly to prevent electromagnetic interference. Therefore, the quality of the shielding cover will directly affect the overall performance of the equipment using the shielding cover. The shielding cover testing equipment is a device used to detect whether the various data of the produced shielding cover meet the index requirements.

[0003] Among the current existing technologies, Chinese patent CN220126930U (publication date: December 5, 2023) discloses the structure of automotive shield cover inspection equipment, including a loading mechanism, a conveying mechanism, an inspection mechanism, an unloading mechanism, and a defective product collection container. The inspection mechanism includes a transfer station, a rotation and alignment station, and an inspection station. The content disclosed in this patent only involves the inspection function of the shield cover, and the technical problem it solves is only the inspection of the shield cover. Overall, the equipment function is relatively simple.

[0004] Chinese patent CN217074914U (publication date: April 22, 2022) discloses a shield cover inspection and packaging machine, which includes a main workbench located at the rear end of a punch press, a material conveying mechanism, a swinging material suction mechanism, an optical coupler detection mechanism, a liquid crystal display, and a carrier tape packaging mechanism. The shield cover inspection and packaging machine disclosed in this patent has a relatively complex process flow and low efficiency improvement.

[0005] Through the above comparative cases, we can see that in the current technical solutions for shielding cover detection equipment, some equipment can realize the detection of shielding covers but the process is relatively simple, while the other part includes detection and packaging processes but has the problem of complex detection procedures. Therefore, how to further improve the efficiency of shielding cover detection and integrate other related processes has become a problem that needs to be solved. Utility Model Content

[0006] To solve the above technical problems, the present application provides a shielding cover detection device, which realizes the continuous processing of shielding cover punching, waste recycling, shielding cover detection and packaging. The technical solution adopted by the present application is simpler, and the technical solution is as follows:

[0007] A shielding cover detection device, the device includes an incoming material area, a punching area, a steel strip collection box, an empty material strip, a connector I, a material reel, a connector II, a keyboard and mouse area, a signal light, a box I, a box II, and a working base plate; the incoming material area, connector I, and connector II pass through box II; the incoming material area, packaging mechanism, connector I, and connector II are fixed on the working base plate; the box I is located at the lower part of box II; the working base plate is fixed on box I; the box II covers the working base plate; the steel strip collection box, keyboard and mouse area, and signal light are fixed on box II; the incoming material area, punching area, and steel strip collection box are arranged longitudinally in sequence on the working base plate.

[0008] Furthermore, the working base plate is fixed with a punching area, a synchronous transport mechanism, a height detection area, a contour detection area, an appearance detection area, a flipping mechanism, a variable distance platform, a transport mechanism, a spare product placement platform, a lower camera detection mechanism (209), and a packaging mechanism;

[0009] The synchronous transport mechanism is connected to the punching area; the synchronous transport mechanism, height detection area, contour detection area, appearance detection area, flip mechanism, variable distance platform, transport mechanism, spare product placement platform, and lower camera detection mechanism are arranged horizontally;

[0010] One side of the transport mechanism is a packaging mechanism, and the other side is a connecting piece I; the lower camera detection mechanism is connected to the spare product placement platform; the packaging mechanism is connected to the connecting piece II.

[0011] Furthermore, the synchronous transport mechanism is in a vertical relationship with the punching area; the transport mechanism is in a vertical relationship with the packaging mechanism and the connecting member I; and the packaging mechanism is in a parallel relationship with the connecting member II.

[0012] Furthermore, the synchronous transport mechanism includes an X-axis slide rail, a drag chain I, a drag chain fixing bracket I, a connector I, an X-axis support leg, a drag chain fixing bracket II, a drag chain II, a fixing plate I, a Y-axis slide rail, a connector II, a fixing plate II, a horizontal axis, and a transport suction cup;

[0013] The X-axis slide rail is installed on the X-axis support leg; the drag chain fixing bracket I is fixed on the outside of the X-axis slide rail; the drag chain fixing bracket I holds the drag chain I; one end of the drag chain I is connected to the connector I; the connector I is snapped into the X-axis slide rail;

[0014] The connector I is connected to the drag chain fixing bracket II; the drag chain fixing bracket II is connected to the fixing plate I; the horizontal axis is connected to the fixing plate II; the fixing plates I and II are fixed on both sides of the Y-axis slide rail;

[0015] One end of the drag chain II is fixed on the drag chain fixing bracket II, and the other end is connected to the connector II; the connector II and the fixing plate II are both connected to the horizontal axis.

[0016] Furthermore, a height detection area, a contour detection area, an appearance detection area, and a flipping mechanism are installed in sequence on one side of the synchronous transport mechanism; the flipping mechanism is connected to the variable distance platform; and the variable distance platform is connected to the lower camera detection mechanism.

[0017] Furthermore, the horizontal axis is T-shaped; there are at least three transport suction cups, which are fixed on the horizontal axis at equal distances.

[0018] Furthermore, the connector I is in a "J" shape; the connector II is in an "L" shape.

[0019] Furthermore, the packaging mechanism includes heat sealing and cold sealing.

[0020] Furthermore, the packaging mechanism is connected in parallel to the connector II; the connector I and the connector II are both frame structures.

[0021] Furthermore, one end of the connector I is connected to the working base plate, and the other end is connected to the empty material strip; one end of the connector II is connected to the working base plate, and the other end is connected to the material reel.

[0022] Compared with the prior art, the technical solution of the present invention has the following beneficial effects:

[0023] 1. The utility model provides a shielding cover detection device, which realizes the continuous processing of shielding cover production, waste recycling, shielding cover detection and packaging. The equipment provided by this application effectively reduces the investment of manpower and material resources, and this application provides a simpler technical solution to solve technical problems and lowers the detection threshold.

[0024] 2. The utility model provides a synchronous transport mechanism for shielding cover detection equipment, which adopts a simpler technical solution to achieve the transportation of shielding cover products and lower the manufacturing threshold of the synchronous transport mechanism for shielding cover detection equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings required for the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present application. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings without inventive work. In all drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn according to the actual scale.

[0026] Figure 1 A schematic diagram of the exterior facade 1 of a shielding cover detection device;

[0027] Figure 2A schematic diagram of the exterior facade 2 of a shielding cover detection device;

[0028] Figure 3 It is a schematic top view of a shield cover detection device;

[0029] Figure 4 Schematic diagram of a synchronous transport mechanism for shield cover inspection equipment Figure 1 ;

[0030] Figure 5 Schematic diagram of a synchronous transport mechanism for shield cover inspection equipment Figure 2 .

[0031] Among them: 101-incoming material area; 102-punching area; 104-steel strip collection box; 201-synchronous transport mechanism; 201a-X-axis slide rail; 201b-drag chain I; 201c-drag chain fixing bracket I; 201d-connector I; 201e-X-axis support leg; 201f-drag chain fixing bracket II; 201g-drag chain II; 201h-fixed plate I; 201i-Y-axis slide rail; 201j-connector II; 201k-fixed plate II; 201l-horizontal axis; 201m-transport Suction cup; 202-height detection area; 203-contour detection area; 204-appearance detection area; 205-flipping mechanism; 206-variable distance platform; 207-handling mechanism; 208-spare product placement platform; 209-lower camera detection mechanism; 210-packaging mechanism; 301-connector I; 302-empty material strip; 303-connector II; 304-receiving reel; 401-working base plate; 402-box I; 403-box II; 404-signal light; 405-keyboard and mouse area. Specific embodiments

[0032] 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 clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all of the embodiments. In the following description, specific details such as specific configurations and components are provided only to help fully understand the embodiments of the present application. Therefore, it should be clear to those skilled in the art that various changes and modifications can be made to the embodiments described herein without departing from the scope and spirit of the present application. In addition, for clarity and brevity, the description of known functions and structures has been omitted in the embodiments.

[0033] It should be understood that references throughout this specification to "one embodiment" or "this embodiment" mean that a particular feature, structure, or characteristic associated with the embodiment is included in at least one embodiment of the present application. Therefore, the appearance of "one embodiment" or "this embodiment" throughout this specification does not necessarily refer to the same embodiment. Furthermore, these particular features, structures, or characteristics may be combined in any suitable manner in one or more embodiments.

[0034] In addition, the present application may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplicity and clarity and does not in itself indicate the relationship between the various embodiments and / or settings discussed.

[0035] The term "and / or" in this article is only a description of the association relationship of associated objects, indicating that three relationships can exist. For example, A and / or B can mean: A exists alone, B exists alone, and A and B exist at the same time. The term " / and" in this article describes another type of association object relationship, indicating that two relationships can exist. For example, A / and B can mean: A exists alone, and A and B exist alone. In addition, the character " / " in this article generally indicates that the previous and subsequent associated objects are in an "or" relationship.

[0036] The term "at least one" in this article is merely a description of the association relationship between associated objects, indicating that three relationships may exist. For example, at least one of A and B can mean: A exists alone, A and B exist at the same time, and B exists alone.

[0037] It should also be noted that, in this document, relational terms such as first and second are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "include," "comprises," or any other variations thereof are intended to cover non-exclusive inclusion.

[0038] Example 1:

[0039] This embodiment provides a workflow of a shielding cover detection device. Please refer to Figure 1-3 As shown; A shield cover detection device, the device includes a steel belt area 1, a conveying area 2, and a carrier area 3;

[0040] The two sides of the transport area 2 are respectively the steel belt area 1 and the carrier belt area 3;

[0041] The two sides of the transport area 2 are respectively the steel belt area 1 and the carrier belt area 3 fixed on the working base plate 401;

[0042] The working base plate 401 is provided with a box body II 403 ; the working base plate 401 is provided with a box body I 402 ;

[0043] The steel strip collection box 104 , the keyboard and mouse area 405 , and the signal light 404 are fixed on the box body II 403 .

[0044] Furthermore, the steel strip area 1 includes a material incoming area 101, a punching area 102, a product placement area 103, and a steel strip collection box 104;

[0045] The material receiving area 101, the punching area 102, the product placement area 103, and the steel strip collecting box 104 are sequentially connected on the working bottom plate 401 and arranged in a longitudinal direction;

[0046] The incoming material area 101 passes through the box II 403.

[0047] Furthermore, the transport area 2 includes a synchronous transport mechanism 201, a height detection area 202, a contour detection area 203, an appearance detection area 204, a flip mechanism 205, a variable distance platform 206, a transport mechanism 207, a spare product placement platform 208, a lower camera detection mechanism 209, and a packaging mechanism 210;

[0048] The synchronous transport mechanism 201, height detection area 202, contour detection area 203, appearance detection area 204, flip mechanism 205, variable distance platform 206, transport mechanism 207, spare product placement platform 208, and lower camera detection mechanism 209 are sequentially connected on the working base plate 401 and arranged in a horizontal manner;

[0049] A height detection area 202, a contour detection area 203, an appearance detection area 204, and a turning mechanism 205 are installed on one side of the synchronous transport mechanism 201 in order;

[0050] The flip mechanism 205 is connected to the variable distance platform 206; the variable distance platform 206 is connected to the lower camera detection mechanism 209; one side of the transport mechanism 207 is a packaging mechanism 210, and the other side is a connecting member I 301;

[0051] The lower camera detection mechanism 209 is connected to the spare product placement platform 208 .

[0052] Furthermore, the synchronous transport mechanism 201 is connected to the product placement area 103 in a vertical relationship.

[0053] Furthermore, the carrier tape area 3 includes a connector I 301, an empty tape 302, a connector II 303, and a receiving reel 304;

[0054] The connecting member I 301 is in a vertical relationship with the transport mechanism 207;

[0055] The connecting member II 303 is in parallel with the packaging mechanism 210;

[0056] The connector I 301 passes through the box II 403 and is connected to the empty material strip 302. The motor on the connector I 301 can drive the empty material strip 302 to rotate.

[0057] The connecting member II 303 passes through the box body II 403 and is connected to the receiving reel 304 ; the motor on the connecting member II 303 can drive the receiving reel 304 to rotate.

[0058] The inspection process of the equipment is divided into two types according to the tooth surface of the incoming material: when the tooth surface of the incoming material is upward, the steps are as follows: the steel belt feeds into the incoming material area 101, the material enters the punching area 102, the synchronous conveying mechanism 201 synchronously conveys the punched product to the height detection area 202 to detect the product height, the synchronous conveying mechanism 201 synchronously conveys it to the contour detection area 203, the contour detection area 203 detects the product contour, the synchronous conveying mechanism 201 synchronously conveys it to the appearance detection area 204, the appearance detection area 204 detects the product appearance, the pitch-changing platform 206 changes the pitch of the product, the conveying mechanism 207 flips the product, the lower camera detection mechanism 209 conveys and takes pictures, the packaging mechanism 210 carries the tape for packaging and rewinding;

[0059] When the tooth surface of the incoming material is facing downward, the steps are as follows: the steel belt brings the material into the incoming material area 101, the material enters the punching area 102, the synchronous conveying mechanism 201 synchronously conveys the punched product to the height detection area 202 to detect the product height, the synchronous conveying mechanism 201 synchronously conveys it to the contour detection area 203 to detect the product contour, the synchronous conveying mechanism 201 synchronously conveys it to the appearance detection area 204, the appearance detection area 204 detects the product appearance, the variable pitch platform 206 processes the product variable pitch, the conveying mechanism 207 conveys and takes pictures, and the packaging mechanism 210 carries the tape for packaging and rewinding.

[0060] Technical effect of this embodiment: The utility model provides a shielding cover detection equipment, which realizes the continuous processing of shielding cover production, waste recycling, shielding cover detection and packaging. The equipment provided by this application integrates the core steps in the shielding cover production process, effectively reducing the investment of manpower and material resources.

[0061] Example 2:

[0062] This embodiment provides a shielding cover detection device, please refer to Figure 1-3 As shown, further introduction is given based on Example 1: a shield cover detection device, the device includes an incoming material area 101, a punching area 102, a steel strip collection box 104, a synchronous conveying mechanism 201, a height detection area 202, a contour detection area 203, an appearance detection area 204, a flipping mechanism 205, a variable distance platform 206, a conveying mechanism 207, a spare product placement platform 208, a lower camera detection mechanism 209, a packaging mechanism 210, a connector I 301, a connector II 303, a box I 402, a box II 403, and a working base plate 401;

[0063] The incoming material area 101, the punching area 102, and the steel strip collection box 104 are arranged vertically; the synchronous conveying mechanism 201, the height detection area 202, the contour detection area 203, the appearance detection area 204, the flipping mechanism 205, the variable distance platform 206, the conveying mechanism 207, the spare product placement platform 208, and the lower camera detection mechanism 209 are arranged horizontally.

[0064] The transport mechanism 207 has a packaging mechanism 210 on one side and a connector I 301 on the other side;

[0065] The lower camera detection mechanism 209 is connected to the spare product placement platform 208; the packaging mechanism 210 is connected to the connector II 303;

[0066] The working base plate 401 is fixed with a punching area 102, a synchronous transport mechanism 201, a height detection area 202, a contour detection area 203, an appearance detection area 204, a flipping mechanism 205, a variable distance platform 206, a transport mechanism 207, a spare product placement platform 208, a lower camera detection mechanism 209, and a packaging mechanism 210;

[0067] The working base plate 401 is fixed on the box body I 402 ; the box body II 403 covers the working base plate 401 .

[0068] Furthermore, in the shield cover detection equipment, a height detection area 202, a contour detection area 203, an appearance detection area 204, a flip mechanism 205, a variable distance platform 206, and a lower camera detection mechanism 209 are respectively installed on one side of the synchronous transport mechanism 201 in order;

[0069] The other side of the synchronous transport mechanism 201 is a transport mechanism 207 .

[0070] Furthermore, the transport mechanism 207, the packaging mechanism 210, and the connecting member I 301 are all in a vertical relationship.

[0071] Furthermore, the packaging mechanism 210 is connected to the connecting member II 303 in a parallel relationship; the connecting member I 301 and the connecting member II 303 are both frame structures.

[0072] Furthermore, one end of the connector I 301 is connected to the working base plate 401 , and the other end is connected to the empty material strip 302 ; one end of the connector II 303 is connected to the working base plate 401 , and the other end is connected to the material reel 304 .

[0073] Furthermore, the variable distance platform 206 is connected to the lower camera detection mechanism 209; the variable distance platform 206 is used to adjust the product spacing; and the camera detection mechanism 12 takes photos for detection.

[0074] Furthermore, the box I 402 is located at the lower part of the box II 403; the steel strip collection box 104, keyboard and mouse area 18, and signal light 19 are on the box II 403; the spare product placement platform 208, connector I 301, and connector II 303 pass through the box II 403.

[0075] The utility model provides a shielding cover detection equipment, wherein raw materials enter through the incoming material area, are cut in the punching area, waste materials enter the steel belt collection box, and the punched products are transported by the synchronous transport mechanism. The products are respectively inspected by the height inspection area, the contour inspection area, and the appearance inspection area and enter the variable distance platform. The distance is changed on the variable distance platform and inspected by the lower camera inspection mechanism. Unqualified products enter the spare product placement platform, and qualified products are sent by the transport mechanism to the packaging mechanism for packaging.

[0076] Technical effect of this embodiment: The utility model provides a shielding cover detection equipment, which realizes the continuous processing of shielding cover production, waste recycling, shielding cover detection and packaging. The equipment provided by this application effectively reduces the investment of manpower and material resources, further improves the efficiency of shielding cover detection and integrates punching and packaging processes. At the same time, this application provides a simpler technical solution to solve technical problems and lowers the detection threshold.

[0077] Example 3:

[0078] This embodiment provides a synchronous transport mechanism for a shielding cover detection device. Figure 4 As shown, further introduction is given based on Example 1 and Example 2; the synchronous transport mechanism 201 includes an X-axis slide rail 201a, a drag chain I 201b, a drag chain fixing bracket I 201c, a connector I 201d, an X-axis support leg 201e, a drag chain fixing bracket II 201f, a drag chain II 201g, a fixing plate I 201h, a Y-axis slide rail 201i, a connector II 201j, a fixing plate II 201k, a horizontal axis 201l, and a transport suction cup 201m;

[0079] The X-axis slide rail 201a is installed on the X-axis support leg 201e; the drag chain fixing bracket I 201c is fixed to the outside of the X-axis slide rail 201a; the drag chain fixing bracket I 201c lifts the drag chain I 201b; one end of the drag chain I 201b is connected to the connector I 201d; the connector I 201d is snapped into the track of the X-axis slide rail 201a;

[0080] The connector I 201d is connected to the drag chain fixing bracket II 201f; the drag chain fixing bracket II 201f is connected to the fixing plate I 201h; the horizontal axis 201l is connected to the fixing plate II 201k; the fixing plates I 201h and II 201k are fixed on both sides of the Y-axis slide rail 201i;

[0081] One end of the drag chain II 201g is fixed to the drag chain fixing bracket II 201f, and the other end is connected to the connector II 201j; the connector II 201j and the fixing plate II 201k are both connected to the horizontal axis 201l.

[0082] Furthermore, the horizontal axis 2011 is T-shaped; there are at least three transport suction cups 201m, and the transport suction cups 201m are fixed on the horizontal axis 2011 at equal distances.

[0083] Furthermore, the connector I 201d is in a "J" shape; the connector II 201j is in an "L" shape.

[0084] The utility model provides a synchronous transport mechanism for shielding cover detection equipment, which adopts a simpler technical solution to achieve the transport of shielding cover products and lowers the manufacturing threshold of the synchronous transport mechanism for shielding cover detection equipment.

[0085] The specific implementation methods described above further illustrate the purpose, technical solutions and beneficial effects of the utility model in detail. It should be understood that the above description is only a specific implementation method of the utility model and is not intended to limit the utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the utility model should be included in the scope of protection of the utility model.

Claims

1. A shielding cover detection device, characterized in that: The equipment comprises a steel belt area (1), a transport area (2), and a carrier belt area (3); The two sides of the transport area (2) are respectively a steel belt area (1) and a carrier belt area (3); The two sides of the transport area (2) are respectively a steel belt area (1) and a carrier belt area (3) fixed on the working bottom plate (401); The working bottom plate (401) is provided with a box body II (403); the working bottom plate (401) is provided with a box body I (402); The box body II (403) is fixed with a steel strip collection box (104), a keyboard and mouse area (405), and a signal light (404).

2. The shielding cover detection device according to claim 1, characterized in that: The steel strip area (1) includes a material incoming area (101), a punching area (102), a product placement area (103), and a steel strip collection box (104); The material incoming area (101), the punching area (102), the product placement area (103), and the steel strip collecting box (104) are sequentially connected on the working bottom plate (401) and arranged in a longitudinal direction; The incoming material area (101) passes through the box body II (403).

3. The shielding cover detection device according to claim 1, characterized in that: The transport area (2) includes a synchronous transport mechanism (201), a height detection area (202), a contour detection area (203), an appearance detection area (204), a turning mechanism (205), a variable distance platform (206), a transport mechanism (207), a spare product placement platform (208), a lower camera detection mechanism (209), and a packaging mechanism (210); The synchronous transport mechanism (201), the height detection area (202), the contour detection area (203), the appearance detection area (204), the flip mechanism (205), the variable distance platform (206), the transport mechanism (207), the spare product placement platform (208), and the lower camera detection mechanism (209) are sequentially connected on the working base plate (401) and arranged in a horizontal manner; A height detection area (202), a contour detection area (203), an appearance detection area (204), and a turning mechanism (205) are respectively installed on one side of the synchronous transport mechanism (201) in sequence; The turning mechanism (205) is connected to the variable distance platform (206); the variable distance platform (206) is connected to the lower camera detection mechanism (209); one side of the transport mechanism (207) is a packaging mechanism (210), and the other side is a connecting member I (301); The lower camera detection mechanism (209) is connected to the spare product placement platform (208).

4. The shielding cover detection device according to claim 3, characterized in that: The synchronous transport mechanism (201) is connected to the product placement area (103) in a vertical relationship.

5. The shielding cover detection device according to claim 3, characterized in that: The carrier tape area (3) includes a connector I (301), an empty tape (302), a connector II (303), and a receiving roll (304); The connecting member I (301) is in a vertical relationship with the transport mechanism (207); The connecting member II (303) is in parallel with the packaging mechanism (210); The connecting member I (301) passes through the box body II (403) and is connected to the empty material belt (302), and the motor on the connecting member I (301) can drive the empty material belt (302) to rotate; The connecting member II (303) passes through the box body II (403) and is connected to the receiving roll (304); the motor on the connecting member II (303) can drive the receiving roll (304) to rotate.

6. The shielding cover detection device according to claim 3, characterized in that: The synchronous transport mechanism (201) includes an X-axis slide rail (201a), a drag chain I (201b), a drag chain fixing bracket I (201c), a connector I (201d), an X-axis support leg (201e), a drag chain fixing bracket II (201f), a drag chain II (201g), a fixing plate I (201h), a Y-axis slide rail (201i), a connector II (201j), a fixing plate II (201k), a transverse axis (201l), and a transport suction cup (201m); An X-axis slide rail (201a) is installed on the X-axis support leg (201e); a drag chain fixing bracket I (201c) is fixed on the outside of the X-axis slide rail (201a); the drag chain fixing bracket I (201c) lifts the drag chain I (201b); one end of the drag chain I (201b) is connected to the connector I (201d); the connector I (201d) is snapped into the track of the X-axis slide rail (201a); The connector I (201d) is connected to the drag chain fixing bracket II (201f); the drag chain fixing bracket II (201f) is connected to the fixing plate I (201h); the transverse axis (201l) is connected to the fixing plate II (201k); the fixing plate I (201h) and the fixing plate II (201k) are fixed on both sides of the Y-axis slide rail (201i); One end of the drag chain II (201g) is fixed on the drag chain fixing bracket II (201f), and the other end is connected to the connector II (201j); the connector II (201j) and the fixing plate II (201k) are both connected to the horizontal axis (201l).

7. The shielding cover detection device according to claim 4, characterized in that: The packaging mechanism (210) includes heat sealing and cold sealing.

8. The shielding cover detection device according to claim 6, characterized in that: The transverse axis (2011) is T-shaped; there are at least three transport suction cups (201m), and the transport suction cups (201m) are fixed on the transverse axis (2011) at equal distances.

9. The shielding cover detection device according to claim 6, characterized in that: The connector I (201d) is in the shape of a "J"; the connector II (201j) is in the shape of an "L".

10. The shielding cover detection device according to claim 7, characterized in that: The packaging mechanism (210) is connected in parallel with the connecting member II (303); the connecting member I (301) and the connecting member II (303) are both frame structures.

Citation Information

Patent Citations

  • Shielding cover detecting and packaging machine

    CN217074914U

  • Structure of vehicle shielding case detection equipment

    CN220126930U