Intelligent final inspection equipment for seat heating controller
By designing intelligent final inspection equipment and using turntables and infrared detectors for automated inspection, the problem of low detection efficiency of seat heating controller is solved, and efficient and unified detection effect is achieved, suitable for mass production.
Patent Information
- Application Number
- CN202510642157.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-19
- Publication Date
- 2025-08-19
AI Technical Summary
The detection efficiency of existing car seat heating controllers is low, it takes a long time to rely on manual operation and is difficult to match the needs of large-scale production. There are subjective errors in manual operation and it is impossible to ensure the uniformity of the detection standards.
Design an intelligent final inspection device for seat heating controller, including a fixed frame, a turntable, a detection mechanism and a feeding mechanism, and automatically detects the rotary conveying heating controller through the turntable rotary conveying heating controller, combines feedback seats to simulate the actual heating control performance, and uses infrared detectors to perform appearance and temperature detection to achieve automated detection.
It greatly improves the detection efficiency of the heating controller, reduces the degree of manual participation and cost, reduces detection errors, ensures the consistency of the detection standards and appearance quality, and is suitable for batch processing and production.
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Figure CN120508084A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of detection equipment, and in particular to an intelligent final detection device for a seat heating controller. Background Art
[0002] As a core component of intelligent cabin temperature control systems, automotive seat heating controllers' performance and stability directly impact the user experience. As the global intelligent cabin market expands, seat heating features have become more widespread, moving from high-end vehicles to mid- and low-end segments. Currently, luxury models feature multi-zone temperature control for all seats, and mid-range models now come standard with front seat heating. This market expansion places higher demands on controller production, necessitating the use of automated testing equipment to ensure product yield.
[0003] At present, the inspection of automobile seat heating controllers mainly relies on manual insertion and removal of probes for random inspections. However, manual operation is time-consuming, difficult to match the needs of large-scale production, and there are subjective errors in manual operation, and it is impossible to ensure the uniformity of inspection standards. Therefore, this application provides an intelligent final inspection equipment for seat heating controllers to meet the needs. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide an intelligent final inspection device for a seat heating controller to solve the problem of low inspection efficiency of existing automobile seat heating controllers.
[0005] In order to solve the above technical problems, the present invention provides the following technical solutions:
[0006] An intelligent final inspection device for a seat heating controller comprises: a fixed frame having a first workbench and a second workbench, wherein a feedback seat having a heating function is provided on the first workbench; a turntable rotatably mounted on the second workbench, wherein a detection mechanism and a feeding mechanism are provided on the second workbench; the feeding mechanism delivers the heating controller to the turntable, and the heating controller is conveyed to the detection mechanism via the rotation of the turntable, and the detection mechanism detects the heating controller and simulates the actual heating control performance of the heating controller through the feedback seat.
[0007] Optionally, a plurality of detection stations are provided on the upper surface of the turntable, and the plurality of detection stations are distributed in a ring shape. A driving mechanism for driving the turntable to rotate is provided on the second workbench. The detection stations are in a frame structure and can accommodate the embedding of a heating controller.
[0008] Optionally, the driving mechanism includes a driven gear and a driving gear rotatably mounted on the lower surface of the second workbench, the driven gear is coaxially connected to the real turntable, the driven gear is meshed with the driving gear, a first stepper motor is fixedly mounted on the bottom of the second workbench, the dual output shafts of the first stepper motor are coaxially connected to the driving gear, and the radius of the driving gear is smaller than the radius of the driven gear.
[0009] Optionally, the second workbench is arranged higher than the first workbench, a mounting frame is provided at the bottom of the feedback seat, the mounting frame is bolted to the first workbench, support legs are vertically fixed at the four corners of the bottom of the first workbench and the second workbench, and strips are horizontally fixed between the bottom ends of multiple support legs.
[0010] Optionally, the detection mechanism includes a fixed frame fixed on the second workbench, the top of the fixed frame is horizontally bent toward the turntable and a first electric push rod is vertically arranged, the telescopic end of the first electric push rod is vertically downward and a horizontal plate is fixed horizontally, a detection head is arranged at the bottom of the horizontal plate, and a detection pin is arranged at the bottom of the detection head. The turntable carries the heating controller and rotates to the bottom of the detection head. The first electric push rod pushes the detection head downward so that the detection pin contacts the heating controller and the circuit is turned on.
[0011] Optionally, the detection mechanism further includes a detection host disposed at the bottom of the second workbench, the detection host being control-connected to the detection pin, and the detection host being in contact with the heating controller through the detection pin and causing the circuit to be turned on for control detection.
[0012] Optionally, a limiter is provided on the horizontal plate for elastically pressing the heating controller, and the limiter includes a sleeve vertically fixed at both ends of the horizontal plate, a pressure rod is vertically movably provided at the bottom end of the sleeve, a rubber head is provided at the bottom end of the pressure rod, a baffle is connected to the top end of the pressure rod, and a spring is provided between the baffle and the top wall inside the sleeve.
[0013] Optionally, the feeding mechanism includes a column vertically rotatably mounted on the upper surface of the second workbench, a cantilever is horizontally fixed to the top of the column, a second electric push rod is vertically mounted on the end of the cantilever, the telescopic end of the second electric push rod is vertically downward and is provided with a pneumatic suction cup, a second stepper motor is installed at the bottom of the second workbench, and the drive shaft of the second stepper motor is coaxially connected to the column.
[0014] Optionally, a second infrared detector is provided on a side of the fixing frame facing the turntable, and the detection host is control-connected to the second infrared detector.
[0015] Optionally, a first infrared detector and a handle are provided on the side wall between the first workbench and the second workbench, and the detection host is control-connected to the first infrared detector.
[0016] Compared with the prior art, the present invention has at least the following beneficial effects:
[0017] In the above scheme, through the setting of the turntable, detection mechanism, feeding mechanism and detection host, the feeding mechanism can pick up the heating controller on the conveyor table and deliver it to the turntable, the turntable can carry the heating controller for rotation and transportation, and the detection host contacts the heating controller through the detection pin and makes the circuit conductive for control detection. The overall structure is compact and reasonable. By picking up and delivering the heating controller, the conveyor table can be cooperated to realize the automatic detection operation of the heating controller, which reduces the degree of manual participation, reduces manual labor, reduces labor costs and manual detection errors, greatly improves the detection efficiency of the heating controller, and is suitable for batch processing and production operations of heating controllers.
[0018] Through the setting of this feedback seat, when the detection pin contacts the heating controller and the circuit is turned on for control detection, the heating controller controls the feedback seat to perform the heating function through this detection. Quality inspectors can actually experience the heating control performance of the heating controller by sitting on the feedback seat. The detection method that combines actual feeling with automated equipment enhances the detection effect of the heating controller.
[0019] By setting up a second infrared detector alongside the first, during the heating controller inspection process, the second infrared detector can detect the position of the pneumatic suction cup and the heating controller on the turntable, providing an auxiliary reference for loading and unloading, as well as rotary conveying control of the heating controller. Furthermore, the second infrared detector emits an infrared light source toward the heating controller being inspected, illuminating the surface of the heating controller while the second infrared detector captures the reflected light signal, enabling simultaneous inspection of the heating controller's appearance to ensure its appearance quality. The first infrared detector uses infrared thermal imaging technology to capture a two-dimensional temperature distribution image of the feedback seat surface, enabling inspection of the feedback seat's heating function under the control of the heating controller, avoiding subjective errors in manual operation and the inability to ensure uniform inspection standards. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The accompanying drawings, which are incorporated herein and constitute a part of the specification, illustrate embodiments of the invention and, together with the description, further serve to explain the principles of the invention and to enable one skilled in the art to make and use the invention.
[0021] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0022] Figure 2 This is a schematic structural diagram of the feedback seat of the present invention;
[0023] Figure 3 It is a structural schematic diagram of the turntable of the present invention;
[0024] Figure 4 Schematic diagram of the structure of the driving mechanism of the present invention;
[0025] Figure 5 Schematic diagram of the detection mechanism structure of the present invention;
[0026] Figure 6 It is a structural schematic diagram of the horizontal plate of the present invention;
[0027] Figure 7 Schematic diagram of the structure of the limiter of the present invention;
[0028] Figure 8 It is a structural schematic diagram of the feeding mechanism of the present invention.
[0029] Reference numerals:
[0030] 1. Fixed frame; 2. First workbench; 3. Second workbench; 4. Feedback seat; 5. Turntable; 6. Detection mechanism; 7. Feeding mechanism; 8. Detection host; 9. Support legs; 10. Strips; 11. Handles; 12. First infrared detector; 13. Mounting frame; 14. Detection station; 15. Driving mechanism; 16. Driven gear; 17. Driving gear; 18. First stepper motor; 19. Fixed frame; 20. First electric push rod; 21. Cross plate; 22. Detection head; 23. Limiting piece; 24. Second infrared detector; 25. Detection pin; 26. Sleeve; 27. Baffle; 28. Spring; 29. Pressure rod; 30. Rubber head; 31. Column; 32. Cantilever; 33. Second electric push rod; 34. Pneumatic suction cup; 35. Second stepper motor.
[0031] As shown in the figure, in order to clearly implement the structure of the embodiment of the present invention, specific structures and devices are marked in the figure, but this is only for illustrative purposes and is not intended to limit the present invention to the specific structure, device and environment. According to specific needs, ordinary technicians in this field can adjust or modify these devices and environments. DETAILED DESCRIPTION
[0032] The following describes in detail, with reference to the accompanying drawings and specific embodiments, a seat heating controller intelligent final inspection device provided by the present invention. It is also noted that, for the sake of completeness, the following embodiments are best and preferred embodiments, and those skilled in the art may employ alternative implementations for known technologies. Furthermore, the accompanying drawings are intended only to provide a more detailed description of the embodiments and are not intended to limit the present invention.
[0033] It should be noted that references in the specification to "one embodiment," "an embodiment," "an exemplary embodiment," "some embodiments," etc. indicate that the described embodiments may include specific features, structures, or characteristics, but not every embodiment necessarily includes such specific features, structures, or characteristics. In addition, when specific features, structures, or characteristics are described in conjunction with an embodiment, it is within the knowledge of persons skilled in the relevant art to implement such features, structures, or characteristics in conjunction with other embodiments (whether or not explicitly described).
[0034] In general, terms can be understood, at least in part, from their use in context. For example, depending at least in part on the context, the term "one or more" as used herein can be used to describe any feature, structure, or characteristic in the singular sense, or can be used to describe a combination of features, structures, or characteristics in the plural sense. Additionally, the term "based on" can be understood as not necessarily intended to convey an exclusive set of factors, but can instead, depending at least in part on the context, allow for the presence of other factors that are not necessarily explicitly described.
[0035] It will be understood that the meanings of “on,” “over,” and “above” in the present invention should be interpreted in the broadest manner, so that “on” means not only “directly on” something but also includes the meaning of being “on” something with intervening features or layers, and “on” or “above” means not only “on” or “above” something but also includes the meaning of being “on” or “above” something with no intervening features or layers.
[0036] Additionally, spatially relative terms such as "below," "beneath," "lower," "above," and "upper" may be used herein for descriptive convenience to describe the relationship of one element or feature to another element or features, as illustrated in the accompanying drawings. Spatially relative terms are intended to encompass different orientations of the device in use or operation in addition to the orientation depicted in the accompanying drawings. The device may be oriented in other ways, and the spatially relative descriptors used herein should be similarly interpreted accordingly.
[0037] like Figure 1 and Figure 3As shown, an embodiment of the present invention provides an intelligent final inspection device for a seat heating controller, including a fixed frame 1 and a turntable 5, wherein the fixed frame 1 has a first workbench 2 and a second workbench 3, and a feedback seat 4 is provided on the first workbench 2, and the feedback seat 4 has a heating function; the turntable 5 is rotatably installed on the second workbench 3, and the second workbench 3 is equipped with a detection mechanism 6 and a feeding mechanism 7; the feeding mechanism 7 sends the heating controller to the turntable 5, and the heating controller is rotated and transported to the detection mechanism 6 via the turntable 5, and the detection mechanism 6 detects the heating controller and simulates the actual heating control performance of the heating controller through the feedback seat 4. During the heating controller detection process, the detected heating controller controls the feedback seat 4 to perform the heating function, and the quality inspector can actually experience the heating control performance of the heating controller by sitting on the feedback seat 4. The detection method that combines actual feeling with automated equipment enhances the detection effect of the heating controller.
[0038] like Figure 1 、 Figure 3 、 Figure 5 、 Figure 6 and Figure 8As shown, the upper surface of the turntable 5 is provided with multiple detection stations 14, which are arranged in a ring. A drive mechanism 15 for driving the turntable 5 to rotate is provided on the second workbench 3. The detection stations 14 are frame-shaped and can accommodate the heating controller. The detection mechanism 6 includes a fixed frame 19 fixed to the second workbench 3. The top of the fixed frame 19 is horizontally bent toward the turntable 5 and vertically provided with a first electric push rod 20. The telescopic end of the first electric push rod 20 is vertically downward and horizontally fixed with a cross plate 21. The bottom of the cross plate 21 is provided with a detection head 22, and the bottom of the detection head 22 is provided with a detection pin 25. When the turntable 5 carries the heating controller and rotates below the detection head 22, the first electric push rod 20 pushes the detection head 22 downward, causing the detection pin 25 to contact the heating controller and complete the circuit. The detection mechanism 6 also includes a detection host 8 disposed at the bottom of the second workbench 3. The detection host 8 is control-connected to the detection pin 25. The detection host 8 contacts the heating controller through the detection pin 25, completing the circuit and performing control detection. The feeding mechanism 7 includes a column 31 vertically rotatably mounted on the upper surface of the second workbench 3. A cantilever 32 is horizontally fixed to the top of the column 31. A second electric push rod 33 is vertically mounted at the end of the cantilever 32. The telescopic end of the second electric push rod 33 is vertically downward and is provided with a pneumatic suction cup 34. A second stepper motor 35 is mounted at the bottom of the second workbench 3. The drive shaft of the second stepper motor 35 is coaxially connected to the column 31. Through the arrangement of the turntable 5, the detection mechanism 6, the feeding mechanism 7, and the detection host 8, the feeding mechanism 7 can pick up the heating controller from the conveyor and deliver it to the turntable 5. The turntable 5 can carry the heating controller for rotational transportation. The detection host 8 contacts the heating controller through the detection pin 25 and conducts the circuit for control and detection. The overall structure is compact and reasonable. By picking up and delivering the heating controller, it can cooperate with the conveyor to realize the automated detection operation of the heating controller, reducing the degree of human involvement, labor, labor costs and manual detection errors, and significantly improving the detection efficiency of the heating controller. It is suitable for batch processing and production of heating controllers.
[0039] like Figure 1 、 Figure 3 and Figure 4 As shown, the driving mechanism 15 includes a driven gear 16 and a driving gear 17 rotatably mounted on the lower surface of the second workbench 3. The driven gear 16 is coaxially connected to the real turntable 5 and meshes with the driving gear 17. A first stepper motor 18 is fixedly mounted on the bottom of the second workbench 3. The dual output shafts of the first stepper motor 18 are coaxially connected to the driving gear 17. The radius of the driving gear 17 is smaller than the radius of the driven gear 16. When the first stepper motor 18 is started, the driving gear 17 is driven to rotate. The meshing of the driving gear 17 and the driven gear 16 drives the turntable 5 to rotate and carries the heating controller to the detection mechanism 6 for detection.
[0040] like Figure 1 、 Figure 3 and Figure 4 As shown, the horizontal plate 21 is provided with a limit member 23 for elastically pressing the heating controller, and the limit member 23 includes a sleeve 26 vertically fixed at both ends of the horizontal plate 21, and a pressure rod 29 is vertically movably penetrated at the bottom end of the sleeve 26, and a rubber head 30 is provided at the bottom end of the pressure rod 29. The top of the pressure rod 29 is connected with a baffle 27, and a spring 28 is provided between the baffle 27 and the inner top wall of the sleeve 26. During the detection process, when the horizontal plate 21 moves downward, the rubber head 30 at the bottom end of the pressure rod 29 first contacts the heating controller, and under the elastic force of the spring 28, the horizontal plate 21 continues to move downward to make the detection pin 25 contact the heating controller and make the circuit conductive. In this process, the elastic force of the spring 28 can push the pressure rod 29 downward to elastically suppress the heating controller, thereby improving the stability of the heating controller during the detection process.
[0041] like Figure 1 and Figure 2 As shown, the second workbench 3 is set higher than the first workbench 2, and a mounting frame 13 is set at the bottom of the feedback seat 4. The mounting frame 13 is bolted to the first workbench 2, and support legs 9 are vertically fixed at the four corners of the bottom of the first workbench 2 and the second workbench 3, and strips 10 are horizontally fixed between the bottom ends of multiple support legs 9.
[0042] like Figure 1 and Figure 5 As shown, a second infrared detector 24 is provided on the side of the fixing frame 19 facing the turntable 5, and the detection host 8 is controlled and connected to the second infrared detector 24. During the detection process of the heating controller, the second infrared detector 24 can detect the position information of the pneumatic suction cup 34 and the heating controller on the turntable 5, providing an auxiliary reference for the loading and unloading and rotation conveying control of the heating controller. In addition, the second infrared detector 24 emits an infrared light source toward the heating controller under detection, and the infrared light source is irradiated on the surface of the heating controller. At the same time, the second infrared detector 24 captures the reflected light signal. Since the local infrared radiation characteristics of the object surface may change due to the material, structure or defects (such as cracks, scratches), the defective area may present a different grayscale value from the normal area in the infrared image due to different reflectivity, emissivity or slight deformation. Based on this principle, the appearance of the heating controller can be synchronously detected to ensure the appearance quality of the heating controller.
[0043] like Figure 1As shown, a first infrared detector 12 and a handle 11 are installed on the side wall between the first workbench 2 and the second workbench 3. The detection host 8 is control-connected to the first infrared detector 12. During the heating controller detection process, the first infrared detector 12 uses infrared thermal imaging technology to obtain a two-dimensional temperature distribution image of the surface of the feedback seat 4. This can detect the heating function of the feedback seat 4 under the control of the heating controller, avoiding the subjective errors caused by manual operation and the lack of uniformity in detection standards.
[0044] The technical solution provided by the present invention has the following workflow:
[0045] When in use, the second stepper motor 35 drives the column 31 to rotate, and the column 31 drives the cantilever 32 to move the second electric push rod 33 horizontally to the heating controller conveying platform, and the second electric push rod 33 pushes the pneumatic suction cup 34 to move downward, and the pneumatic suction cup 34 vacuum-absorbs the heating controller, and then the second stepper motor 35 drives the column 31 to flip, so that the pneumatic suction cup 34 moves above the turntable 5, and controls the second electric push rod 33 to push the pneumatic suction cup 34 downward, and the heating controller is placed in the detection station 14 on the turntable 5, and then the first stepper motor 18 is started to drive the driving gear 17 to rotate, and the driving gear 17 is engaged with the driven gear 16 to drive the turntable 5 to rotate and carry the heating controller to the detection mechanism 6, and then the first electric push rod 20 pushes the detection head 22 to move downward so that the detection pin 25 contacts the heating controller and the circuit is turned on. The detection host 8 contacts the heating controller through the detection pin 25 and the circuit is turned on for control detection. During the detection process, when the horizontal plate 21 moves downward, the rubber head at the bottom of the pressure rod 29 30 contacts the heating controller first, and under the elastic force of the spring 28, the cross plate 21 continues to move downward so that the detection pin 25 contacts the heating controller and the circuit is turned on. In this process, the elastic force of the spring 28 can push the pressure rod 29 downward to suppress the elastic force of the heating controller, thereby improving the stability of the heating controller detection process. After the detection is completed, the turntable 5 carries the actual heating controller and rotates and transports it to the feeding mechanism 7. The detected heating controller is transferred to the conveying table through the cooperation of the second stepping motor 35, the column 31, the cantilever 32, the second electric push rod 33 and the pneumatic suction cup 34, and then the next heating controller is sucked onto the turntable 5 for detection. The overall structure is compact and reasonable. By picking up and putting the heating controller, the conveying table can be cooperated to realize the automatic detection operation of the heating controller, reducing the degree of manual participation, reducing manual labor, reducing labor costs and manual detection errors, greatly improving the detection efficiency of the heating controller, and being suitable for batch processing and production operations of heating controllers.
[0046] Furthermore, during the control detection process when the detection pin 25 contacts the heating controller and the circuit is turned on, the heating controller controls the feedback seat 4 through the detection to perform the heating function. The quality inspector can actually experience the heating control performance of the heating controller by sitting on the feedback seat 4. The detection method that combines actual feeling with automated equipment enhances the detection effect of the heating controller.
[0047] Furthermore, during the inspection process of the heating controller, the second infrared detector 24 can detect the position information of the pneumatic suction cup 34 and the heating controller on the turntable 5, providing an auxiliary reference for the loading and unloading and rotation conveying control of the heating controller. In addition, the second infrared detector 24 emits an infrared light source toward the heating controller under inspection, and the infrared light source is irradiated on the surface of the heating controller. At the same time, the second infrared detector 24 captures the reflected light signal. Since the local infrared radiation characteristics of the object surface may change due to material, structure or defects (such as cracks and scratches), the defective area may present a different grayscale value from the normal area in the infrared image due to different reflectivity, emissivity or slight deformation. Based on this principle, the appearance of the heating controller can be synchronously inspected to ensure the appearance quality of the heating controller.
[0048] Furthermore, during the detection process of the heating controller, the first infrared detector 12 uses infrared thermal imaging technology to obtain a two-dimensional temperature distribution image of the surface of the feedback seat 4, which can detect the heating function of the feedback seat 4 under the control of the heating controller, avoiding subjective errors in manual operation and the problem of being unable to ensure the uniformity of detection standards.
[0049] The present invention encompasses any alternatives, modifications, equivalents, and solutions that fall within the spirit and scope of the present invention. To provide a thorough understanding of the present invention, specific details are described in detail below in connection with the preferred embodiments of the present invention, but those skilled in the art will be able to fully understand the present invention without these detailed descriptions. Furthermore, to avoid unnecessary confusion regarding the essence of the present invention, well-known methods, processes, procedures, components, and circuits have not been described in detail.
[0050] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. An intelligent final inspection device for a seat heating controller, characterized in that: include: A fixed frame having a first workbench and a second workbench, wherein a feedback seat is provided on the first workbench and has a heating function; A turntable, the turntable being rotatably mounted on the second workbench, the second workbench being equipped with a detection mechanism and a feeding mechanism; Its characteristics are as follows: the feeding mechanism sends the heating controller to the turntable, the heating controller is transported to the detection mechanism through the rotation of the turntable, the detection mechanism detects the heating controller, and at the same time simulates the actual heating control performance of the heating controller through the feedback seat.
2. The intelligent final inspection device for seat heating controller according to claim 1, characterized in that: The upper surface of the turntable is provided with a plurality of detection stations, which are distributed in a ring shape. The second workbench is provided with a driving mechanism for driving the turntable to rotate. The detection stations are in a frame structure and can accommodate the embedding of a heating controller.
3. The intelligent final inspection device for seat heating controller according to claim 2, characterized in that: The driving mechanism includes a driven gear and a driving gear rotatably mounted on the lower surface of the second workbench. The driven gear is coaxially connected to the real turntable. The driven gear is meshed with the driving gear. A first stepper motor is fixedly mounted on the bottom of the second workbench. The dual output shafts of the first stepper motor are coaxially connected to the driving gear. The radius of the driving gear is smaller than the radius of the driven gear.
4. The intelligent final inspection device for seat heating controller according to claim 1, characterized in that: The second workbench is set higher than the first workbench. A mounting bracket is set at the bottom of the feedback seat, and the mounting bracket is bolted to the first workbench. Support legs are vertically fixed at the four corners of the bottom of the first and second workbench, and strips are horizontally fixed between the bottom ends of multiple support legs.
5. The intelligent final inspection device for seat heating controller according to claim 1, characterized in that: The detection mechanism includes a fixed frame fixed on the second workbench, the top of the fixed frame is horizontally bent toward the turntable and a first electric push rod is vertically arranged, the telescopic end of the first electric push rod is vertically downward and a horizontal plate is horizontally fixed, a detection head is arranged at the bottom of the horizontal plate, and a detection pin is arranged at the bottom of the detection head. The turntable carries the heating controller and rotates to the bottom of the detection head. The first electric push rod pushes the detection head downward so that the detection pin contacts the heating controller and the circuit is turned on.
6. The intelligent final inspection device for seat heating controller according to claim 5, characterized in that: The detection mechanism also includes a detection host arranged at the bottom of the second workbench. The detection host is control-connected to the detection pin, and the detection host contacts the heating controller through the detection pin to connect the circuit for control detection.
7. The intelligent final inspection device for seat heating controller according to claim 5, characterized in that: The horizontal plate is provided with a limiter for elastically pressing the heating controller, and the limiter includes a sleeve vertically fixed at both ends of the horizontal plate, a pressure rod is vertically movably passed through the bottom end of the sleeve, a rubber head is provided at the bottom end of the pressure rod, a baffle is connected to the top end of the pressure rod, and a spring is provided between the baffle and the top wall inside the sleeve.
8. The intelligent final inspection device for seat heating controller according to claim 1, characterized in that: The feeding mechanism includes a column vertically rotatably mounted on the upper surface of the second workbench, a cantilever is horizontally fixed to the top of the column, a second electric push rod is vertically mounted on the end of the cantilever, the telescopic end of the second electric push rod is vertically downward and is provided with a pneumatic suction cup, a second stepper motor is installed at the bottom of the second workbench, and the drive shaft of the second stepper motor is coaxially connected to the column.
9. The intelligent final inspection device for seat heating controller according to claim 6, characterized in that: A second infrared detector is provided on one side of the fixing frame facing the turntable, and the detection host is control-connected to the second infrared detector.
10. The intelligent final inspection device for seat heating controller according to claim 6, characterized in that: A first infrared detector and a handle are provided on the side wall between the first workbench and the second workbench, and the detection host is control-connected to the first infrared detector.
Citation Information
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