Detection device for electronic product injection molding part production based on intelligent sensor

Through the intelligent sensor combined with the detection device of the conveyor table and the camera module, the problem of pressure and appearance detection of injection molded parts is solved, the structural evaluation and appearance detection of injection molded parts are automated, and the production efficiency and detection accuracy are improved.

CN120446146AInactive Publication Date: 2025-08-08NANTONG HAOZHIYUAN ELECTRONIC ACCESSORIES CO LTD
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Patent Information

Application Number
CN202510624846.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2025-08-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing injection molded parts detection devices are difficult to simultaneously conduct pressure detection and surface defect detection, especially appearance defect detection, and lack automation and intelligence.

Method used

The detection device based on intelligent sensors is adopted, combined with components such as conveyor table, support frame, cylinder, pressure plate, chute plate, camera module, etc., to realize pressure detection and visual detection of injection molded parts, and to improve the automation and clarity of detection through partition mechanisms and cleaning mechanisms.

Benefits of technology

The structural strength and durability evaluation of injection molded parts is achieved, displacement and shaking are avoided during the inspection process, and a clear image foundation is provided, which improves production efficiency and reduces labor costs.

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Abstract

The invention relates to the technical field of detection devices, and discloses an electronic product injection molding part production detection device based on an intelligent sensor, which comprises a conveying table, the top of the conveying table is fixedly connected with a support frame, the top of the support frame is fixedly connected with an air cylinder, and the output end of the air cylinder is fixedly connected with a pressure plate. According to the invention, whether the injection molding part can bear a certain pressure and does not deform, crack and the like can be detected, so that the structural strength and durability of the injection molding part are evaluated, and the injection molding part can bear a corresponding external force and does not have a quality problem in the assembling and using processes of an electronic product; during detection, the camera module performs visual detection on the injection molding part, so that air holes in the surface of the injection molding part and the deformation condition of the injection molding part during detection can be observed, and meanwhile, the injection molding part is fixed, so that the injection molding part keeps a fixed position and posture in the detection process, and displacement or shaking caused by the pressure effect is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of detection devices, and in particular to a detection device for producing injection molded parts of electronic products based on intelligent sensors. Background Art

[0002] With the advancement of technology, electronic products are constantly developing towards miniaturization, high precision, and high performance. This requires their injection molded parts to have high-precision dimensions, good appearance quality, and stable performance. For example, the camera lens base involves reliable lens assembly, screw position connection, and housing assembly, which requires extremely high precision injection molded parts.

[0003] The patent with publication number CN220534858U relates to an online detection device for injection molded parts, including a mobile base and a detection mechanism; the detection mechanism includes a detection seat detachably mounted on the upper end of the mobile base, two sets of support seats respectively arranged on both sides of the detection seat and a detection plate movably arranged on the inner side of the support seat, the upper end of the detection seat is provided with a detection groove for placing the injection molded parts, the lower end surface of the detection plate is detachably mounted with a detection block for detecting the injection molded parts, and the lower end surface of the detection block is provided with a pressure sensor. The online detection device for injection molded parts of the device, the detection seat, the support seat and the detection plate are used in conjunction with each other to be able to The hydraulic cylinder controls the detection block to perform pressure detection on the injection molded parts inside the detection tank to prevent the injection molded parts from detaching from the detection tank, thereby effectively protecting the injection molded parts. The pressure sensor can display the data of the injection molded parts pressure detection. The support tube and detection light are set to assist the staff in performing online detection of the injection molded parts. However, during the process of surface detection of the injection molded parts, the device can only perform pressure detection on them, and it is difficult to effectively detect defects on their surface appearance. Therefore, a detection device for the production of electronic product injection molded parts based on intelligent sensors is proposed to solve the above-mentioned problems. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a detection device for the production of injection molded parts of electronic products based on intelligent sensors in view of the deficiencies in the above-mentioned prior art.

[0005] In order to solve the above technical problems, the technical solution adopted by the present invention is: a detection device for the production of injection molded parts of electronic products based on intelligent sensors, including a conveying table, the top of the conveying table is fixedly connected to a support frame, the top of the support frame is fixedly connected to a cylinder, the output end of the cylinder is fixedly connected to a pressure plate, the inner wall of the support frame is fixedly connected to an inclined groove plate, the inner wall of the support frame is installed with a camera module, the top of the pressure plate is fixedly connected to a fixed plate 1, the inner wall of the fixed plate 1 is fixedly connected to a telescopic rod, the circumferential surface of the telescopic end of the telescopic rod is fixedly connected to a sliding plate, the rear part of the sliding plate is fixedly connected to a clamping plate, the top of the conveying table is provided with a partition mechanism for ensuring that the detection is not affected, and the top of the pressure plate is provided with a Cleaning mechanism, the inner wall of the inclined slot plate is in contact with the surface of the sliding plate, and the sliding plate moves along the slide groove inside the inclined slot plate during the movement, and the splint fixes the detection part during the movement, and can detect whether it can withstand a certain pressure without deformation, cracking and other damage, so as to evaluate the structural strength and durability of the injection molded part, and ensure that it can withstand the corresponding external force without quality problems during the assembly and use of electronic products. During the inspection, the camera module will perform visual inspection on the injection molded part, so that the pores on the surface of the injection molded part and the deformation of the injection molded part during the inspection can be observed. At the same time, the injection molded part can be fixed to keep a fixed position and posture during the inspection process to avoid displacement or shaking due to pressure.

[0006] The top of the movable plate is fixedly connected to the bottom of the L-shaped plate, and the bottom of the movable plate is in contact with the bottom of the L-shaped plate. The L-shaped plate will push the movable plate to move during operation, and the guide plate will be used to adjust the position of the detection part. The circumferential surface of the transmission wheel is in contact with the surface of the conveying platform, and the inner wall of the sleeve is movably connected to the circumferential surface of the reciprocating screw. The right side of the reciprocating screw is in contact with the left side of the pushing plate, which can push the injection molded parts at the edge of the detection area away, and prevent the injection molded parts in the detection process from being disturbed by other injection molded parts, and push the injection molded parts parallel to the movable plate backward through the inclined surface of the baffle, and at the same time, the injection molded parts that are offset on the conveying platform can be quickly corrected, so that the injection molded parts can enter the detection area in an orderly manner, avoiding interruption or delay of the detection process due to the confusion of the injection molded parts position, which is conducive to realizing the automation and intelligence of the entire production process, improving production efficiency and reducing labor costs.

[0007] Preferably, the cleaning mechanism includes a U-shaped plate, the right side of the L-shaped plate is fixedly connected to the U-shaped plate, the inner wall of the U-shaped plate is slidably connected to a connecting rod, the circumferential surface of the connecting rod is sleeved with a return spring, the right side of the connecting rod is fixedly connected to a wiping plate, the left side of the camera module is fixedly connected to a triangular plate, the front of the wiping plate is fixedly connected to a connecting block, the inner wall of the connecting block is rotatably connected to a brush roller, the central axis of the brush roller is rotatably connected to a roller, the right side of the wiping plate is in contact with the left side of the camera module, and the wiping plate improves the use effect of the camera module during operation, the circumferential surface of the roller is in contact with the left side of the triangular plate, and dust accumulated on the surface of the camera module can be cleaned, so that clear and accurate images of the injection molded parts can be taken, providing a high-quality image basis for subsequent defect detection and analysis, and the rotation of the roller drives the brush roller to rotate, thereby further improving the observation effect of the camera module, so that omissions can be reduced.

[0008] The present invention adopts the above technical solution, which can bring the following beneficial effects: 1. The intelligent sensor-based inspection device for the production of injection-molded parts for electronic products can detect whether they can withstand a certain pressure without deformation, cracking or other damage through the coordinated operation of a conveyor table, a support frame, a cylinder, a pressure plate, a chute plate, a camera module, a fixed plate, a telescopic rod, a sliding plate and a splint. This can evaluate the structural strength and durability of the injection-molded parts and ensure that they can withstand the corresponding external forces without quality problems during the assembly and use of electronic products. During the inspection, the camera module will perform visual inspection of the injection-molded parts, so that the pores on the surface of the injection-molded parts and the deformation of the injection-molded parts during inspection can be observed. At the same time, the injection-molded parts can be fixed to maintain a fixed position and posture during the inspection process to avoid displacement or shaking due to pressure.

[0009] 2. This intelligent sensor-based inspection device for the production of injection-molded parts for electronic products can push away the injection-molded parts at the edge of the inspection area through the coordinated operation of the U-shaped frame, guide plate, sliding rod 1, movable plate, L-shaped plate, and baffle plate, and prevent the injection-molded parts during the inspection from being interfered with by other injection-molded parts. The injection-molded parts parallel to the movable plate can be pushed backwards through the inclined surface of the baffle plate.

[0010] 3. This intelligent sensor-based inspection device for the production of injection-molded parts for electronic products can quickly correct the offset injection-molded parts on the conveyor table through the coordinated operation of the second fixed plate, the second sliding rod, the push plate, the sleeve, the transmission wheel, the limit block, and the reciprocating screw, so that the injection-molded parts can enter the inspection area in an orderly manner, avoiding the interruption or delay of the inspection process caused by the confusion of the injection-molded parts' positions, which is conducive to realizing the automation and intelligence of the entire production process, improving production efficiency, and reducing labor costs.

[0011] 4. This intelligent sensor-based inspection device for the production of injection molded parts for electronic products can clean dust accumulated on the surface of the camera module through the coordinated operation of the U-shaped plate, return spring, connecting rod, and wiping plate, allowing clear and accurate images of the injection molded parts to be captured, providing a high-quality image foundation for subsequent defect detection and analysis.

[0012] 5. This intelligent sensor-based detection device for the production of injection molded parts for electronic products works in coordination with the triangle plate, connecting block, brush roller, and roller. The rotation of the roller drives the brush roller to rotate. During the movement of the roller, it will contact the triangle plate and rotate through friction, thereby further improving the observation effect of the camera module and reducing omissions. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 A half-section view of the chute plate structure of the present invention; Figure 3 For the present invention Figure 2 A magnified view of the structure at center A; Figure 4 Schematic diagram of the partition machine of the present invention; Figure 5 For the present invention Figure 4 A magnified view of the structure at point B in the middle; Figure 6 A half-section diagram of the cleaning mechanism of the present invention; Figure 7 For the present invention Figure 6 Enlarged view of the structure at point C in the middle.

[0014] In the figure: 1. conveying platform; 2. supporting frame; 3. cylinder; 4. pressure plate; 5. inclined groove plate; 6. camera module; 7. fixed plate 1; 8. telescopic rod; 9. sliding plate; 10. clamping plate; 11. partition mechanism; 111. U-shaped frame; 112. guide plate; 113. sliding rod 1; 114. moving plate; 115. L-shaped plate; 116. baffle; 117. fixed plate 2; 118. sliding rod 2; 119. pushing plate; 1110. sleeve; 1111. transmission wheel; 1112. limit block; 1113. reciprocating screw; 12. cleaning mechanism; 121. U-shaped plate; 122. reset spring; 123. connecting rod; 124. wiping plate; 125. triangle plate; 126. connecting block; 127. brush roller; 128. roller. DETAILED DESCRIPTION

[0015] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0016] See also Figure 1-Figure 7 One embodiment of the present invention is: a detection device for the production of injection molded parts of electronic products based on intelligent sensors, comprising a conveying table 1, the top of the conveying table 1 is fixedly connected to a support frame 2, the top of the support frame 2 is fixedly connected to a cylinder 3, the output end of the cylinder 3 is fixedly connected to a pressure plate 4, the inner wall of the support frame 2 is fixedly connected to a chute plate 5, the inner wall of the support frame 2 is installed with a camera module 6, the top of the pressure plate 4 is fixedly connected to a fixed plate 7, the inner wall of the fixed plate 7 is fixedly connected to a telescopic rod 8, the top of the conveying table 1 is provided with a partition mechanism 11 for ensuring that the detection is not affected, the top of the pressure plate 4 is provided with a cleaning mechanism 12 for improving the detection clarity, the circumferential surface of the telescopic end of the telescopic rod 8 is fixedly connected to a sliding plate 9, and the rear part of the sliding plate 9 is fixedly connected to a clamping plate 10.

[0017] When the inspection begins, the conveyor platform 1 starts and transports the injection molded parts to the inspection area. When the inspection area is reached, the conveyor platform 1 stops operating and the cylinder 3 starts. The cylinder 3 starts and drives the pressure plate 4 to move downward. The downward movement of the pressure plate 4 will apply pressure to the injection molded parts, which can simulate the external forces that the injection molded parts may withstand in actual use, and detect whether they can withstand a certain pressure without deformation, cracking or other damage. In this way, the structural strength and durability of the injection molded parts are evaluated to ensure that they can withstand the corresponding external forces during the assembly and use of electronic products without quality problems. During the inspection, the camera module 6 will perform visual inspection on the injection molded parts, so that the pores on the surface of the injection molded parts and the deformation of the injection molded parts during inspection can be observed.

[0018] The inner wall of the chute plate 5 and the surface of the sliding plate 9 are in contact with each other, and the sliding plate 9 moves along the sliding groove inside the chute plate 5 during the movement, and the clamping plate 10 fixes the detection part during the movement.

[0019] When the pressure plate 4 moves downward, the pressure plate 4 drives the fixed plate 7 to move downward, and the fixed plate 7 moves downward to drive the telescopic rod 8 to move downward, and the telescopic rod 8 moves downward to drive the sliding plate 9 to move downward. During the movement of the sliding plate 9, the sliding plate 9 will contact the groove on the inner wall of the inclined groove plate 5, so that the sliding plate 9 can move inward along the groove on the inner wall of the inclined groove plate 5, and will compress the telescopic rod 8. The movement of the sliding plate 9 drives the splint 10 to move, so that the injection molded part can be fixed, so that the injection molded part can maintain a fixed position and posture during the detection process, avoiding displacement or shaking due to pressure.

[0020] The overall working principle: When arriving at the detection area, the conveying platform 1 stops operating, and the cylinder 3 is started. The cylinder 3 starts and drives the pressure plate 4 to move downward. The downward movement of the pressure plate 4 will apply pressure to the injection molded part, which can simulate the external force that the injection molded part may withstand in actual use, and detect whether it can withstand a certain pressure without deformation, cracking or other damage. In the process of the pressure plate 4 moving downward, the telescopic rod 8 moves downward and drives the sliding plate 9 to move downward. The sliding plate 9 can move inward along the groove of the inner wall of the inclined groove plate 5, and will cause the telescopic rod 8 to be compressed. The movement of the sliding plate 9 drives the splint 10 to move, so that the injection molded part can be fixed to avoid displacement or shaking due to pressure.

[0021] The partition mechanism 11 includes a U-shaped frame 111, which is fixedly connected to the top of the conveying platform 1, and a guide plate 112 is fixedly connected to the top of the conveying platform 1. The inner wall of the conveying platform 1 is slidably connected to a sliding rod 113 through a spring, and the circumferential surface of the sliding rod 113 is fixedly connected to a moving plate 114. The top of the pressure plate 4 is fixedly connected to an L-shaped plate 115, and the circumferential surface of the sliding rod 113 is fixedly connected to a baffle 116. The top of the conveying platform 1 is fixed. It is connected to a fixed plate 117, the inner wall of the fixed plate 117 is slidably connected to a sliding rod 118 through a spring, the right side of the sliding rod 118 is fixedly connected to a push plate 119, the inner wall of the fixed plate 117 is rotatably connected to a sleeve 1110, the circumferential surface of the sleeve 1110 is fixedly connected to a transmission wheel 1111, the left side of the fixed plate 117 is fixedly connected to a limiting block 1112, and the inner wall of the limiting block 1112 is slidably connected to a reciprocating screw rod 1113.

[0022] During the inspection, the pressure plate 4 moves downward, driving the L-shaped plate 115 to move downward. The movement of the L-shaped plate 115 will contact the movable plate 114 and push the movable plate 114 to move downward. The downward movement of the movable plate 114 drives the baffle 116 to move downward, so that the injection molded parts at the edge of the inspection area can be pushed away, and the injection molded parts in the inspection process will not be interfered with by other injection molded parts, and the injection molded parts parallel to the movable plate 114 will be pushed backward through the inclined surface of the baffle 116.

[0023] The top of the movable plate 114 is in contact with the bottom of the L-shaped plate 115, and the L-shaped plate 115 will push the movable plate 114 to move during operation. The guide plate 112 will be used to adjust the position of the detection part. The circumferential surface of the transmission wheel 1111 is in contact with the surface of the conveying platform 1. The inner wall of the sleeve 1110 is movably connected to the circumferential surface of the reciprocating screw rod 1113, and the right side of the reciprocating screw rod 1113 is in contact with the left side of the push plate 119.

[0024] The rotation of the transmission platform 1 drives the transmission wheel 1111 to rotate through the friction force, and the rotation of the transmission wheel 1111 drives the sleeve 1110 to rotate. The sleeve 1110 rotates and contacts the thread groove on the surface of the reciprocating screw 1113 through the internal slider. The reciprocating screw 1113 is limited by the limit block 1112 and can only move left and right. Therefore, the rotation of the sleeve 1110 will cause the reciprocating screw 1113 to move left and right, and the movement of the reciprocating screw 1113 will push the push plate 119 to move. After pushing the push plate 119 to the maximum position, the reciprocating screw 1113 will move in the opposite direction. At this time, the push plate 119 will be reset by the spring, so that the offset injection molded parts on the transmission platform 1 can be quickly corrected, so that the injection molded parts can enter the inspection area in an orderly manner, avoiding the interruption or delay of the inspection process due to the confusion of the injection molded parts position, which is conducive to realizing the automation and intelligence of the entire production process, improving production efficiency and reducing labor costs.

[0025] The overall working principle: the pressure plate 4 moves downward, driving the L-shaped plate 115 to move downward. The movement of the L-shaped plate 115 will contact the movable plate 114 and push the movable plate 114 to move downward. The downward movement of the movable plate 114 drives the baffle 116 to move downward, so that the injection molded parts at the edge of the detection area can be pushed away, and the injection molded parts in the detection process will not be interfered with by other injection molded parts, and the injection molded parts parallel to the movable plate 114 are pushed backward through the inclined surface of the baffle 116. After pushing the push plate 119 to the maximum position, the reciprocating screw 1113 will move in the opposite direction. At this time, the push plate 119 will be reset by the spring, so that the offset injection molded parts on the conveying table 1 can be quickly corrected.

[0026] See also Figure 1-Figure 7 On the basis of the above embodiment, another embodiment of the present invention is characterized in that: the cleaning mechanism 12 includes a U-shaped plate 121, the right side of the L-shaped plate 115 is fixedly connected to the U-shaped plate 121, the inner wall of the U-shaped plate 121 is slidably connected to a connecting rod 123, the circumferential surface of the connecting rod 123 is sleeved with a return spring 122, the right side of the connecting rod 123 is fixedly connected to a wiping plate 124, the left side of the camera module 6 is fixedly connected to a triangular plate 125, the front part of the wiping plate 124 is fixedly connected to a connecting block 126, the inner wall of the connecting block 126 is rotatably connected to a brush roller 127, and the central axis of the brush roller 127 is rotatably connected to a roller 128.

[0027] During inspection, the L-shaped plate 115 moves to drive the U-shaped plate 121 to move, the U-shaped plate 121 moves to drive the connecting rod 123 to move, and the connecting rod 123 moves to drive the wiping plate 124 to move. During the movement of the wiping plate 124, the camera part of the camera module 6 will be wiped, so that the dust accumulated on the surface of the camera module 6 can be cleaned, so that clear and accurate images of the injection molded parts can be captured, providing a high-quality image basis for subsequent defect detection and analysis.

[0028] The right side of the wiping plate 124 contacts the left side of the camera module 6 , and the wiping plate 124 improves the use effect of the camera module 6 during operation. The circumferential surface of the roller 128 contacts the left side of the triangular plate 125 .

[0029] During the detection process, the wiping plate 124 moves, driving the connecting block 126 to move, the connecting block 126 moves, driving the brush roller 127 to move, and the brush roller 127 moves, driving the roller 128 to move. During the movement of the roller 128, it will contact the triangle plate 125 and rotate through friction, so that the roller 128 rotates and drives the brush roller 127 to rotate, thereby further improving the observation effect of the camera module 6 and reducing omissions.

[0030] The overall working principle: the movement of the L-shaped plate 115 drives the U-shaped plate 121 to move, the movement of the U-shaped plate 121 drives the connecting rod 123 to move, the movement of the connecting rod 123 drives the wiping plate 124 to move, and the wiping plate 124 will wipe the camera part of the camera module 6 during the movement, so that the dust accumulated on the surface of the camera module 6 can be cleaned, so that a clear and accurate image of the injection molded part can be taken. During the movement of the roller 128, it will contact the triangle plate 125 and rotate through friction, so that the roller 128 rotates and drives the brush roller 127 to rotate, thereby further improving the observation effect of the camera module 6 and reducing omissions.

[0031] The present invention provides an intelligent sensor-based inspection device for the production of injection-molded electronic parts. Numerous methods and approaches exist for implementing this technical solution. The foregoing merely represents a preferred embodiment of the present invention. It should be noted that those skilled in the art may make various improvements and modifications without departing from the principles of the present invention, and such improvements and modifications are considered within the scope of protection of the present invention. Components not specified in this embodiment may be implemented using existing technologies.

Claims

1. A detection device for the production of injection molded parts of electronic products based on intelligent sensors, comprising a conveyor table (1), characterized in that: The top of the conveying platform (1) is fixedly connected to a support frame (2), the top of the support frame (2) is fixedly connected to a cylinder (3), the output end of the cylinder (3) is fixedly connected to a pressure plate (4), the inner wall of the support frame (2) is fixedly connected to a chute plate (5), the inner wall of the support frame (2) is installed with a camera module (6), the top of the pressure plate (4) is fixedly connected to a fixed plate 1 (7), the inner wall of the fixed plate 1 (7) is fixedly connected to a telescopic rod (8), the top of the conveying platform (1) is provided with a partition mechanism (11) for ensuring that the detection is not affected, the top of the pressure plate (4) is provided with a cleaning mechanism (12) for improving the detection clarity, the circumferential surface of the telescopic end of the telescopic rod (8) is fixedly connected to a sliding plate (9), and the rear of the sliding plate (9) is fixedly connected to a clamping plate (10).

2. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 1, characterized in that: The inner wall of the inclined slot plate (5) and the surface of the sliding plate (9) are in contact with each other, and the sliding plate (9) moves along the sliding slot inside the inclined slot plate (5) during the movement, and the clamping plate (10) fixes the detection part during the movement.

3. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 2, characterized in that: The partition mechanism (11) includes a U-shaped frame (111), the U-shaped frame (111) is fixedly connected to the top of the conveying platform (1), the top of the conveying platform (1) is fixedly connected to a guide plate (112), and the inner wall of the conveying platform (1) is slidably connected to a sliding rod (113) via a spring.

4. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 3, characterized in that: The circumferential surface of the sliding rod 1 (113) is fixedly connected to a movable plate (114), the top of the pressure plate (4) is fixedly connected to an L-shaped plate (115), the circumferential surface of the sliding rod 1 (113) is fixedly connected to a baffle (116), and the top of the conveying platform (1) is fixedly connected to a fixed plate 2 (117).

5. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 4, characterized in that: The inner wall of the second fixed plate (117) is slidably connected to the second sliding rod (118) through a spring, the right side of the second sliding rod (118) is fixedly connected to the push plate (119), the inner wall of the second fixed plate (117) is rotatably connected to the sleeve (1110), the circumferential surface of the sleeve (1110) is fixedly connected to the transmission wheel (1111), the left side of the second fixed plate (117) is fixedly connected to the limiting block (1112), and the inner wall of the limiting block (1112) is slidably connected to the reciprocating screw rod (1113).

6. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 5, characterized in that: The top of the movable plate (114) contacts the bottom of the L-shaped plate (115), and the L-shaped plate (115) will push the movable plate (114) to move during operation. The guide plate (112) will be used to adjust the position of the detection part. The circumferential surface of the transmission wheel (1111) contacts the surface of the conveying platform (1). The inner wall of the sleeve (1110) is movably connected to the circumferential surface of the reciprocating screw (1113). The right side of the reciprocating screw (1113) contacts the left side of the push plate (119).

7. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 6, characterized in that: The cleaning mechanism (12) comprises a U-shaped plate (121), the right side of the L-shaped plate (115) is fixedly connected to the U-shaped plate (121), the inner wall of the U-shaped plate (121) is slidably connected to a connecting rod (123), and the circumferential surface of the connecting rod (123) is sleeved with a return spring (122).

8. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 7, characterized in that: The right side of the connecting rod (123) is fixedly connected to a wiping plate (124), the left side of the camera module (6) is fixedly connected to a triangular plate (125), the front portion of the wiping plate (124) is fixedly connected to a connecting block (126), the inner wall of the connecting block (126) is rotatably connected to a brush roller (127), and the central axis of the brush roller (127) is rotatably connected to a roller (128).

9. The intelligent sensor-based detection device for producing electronic product injection molded parts according to claim 8, characterized in that: The right side of the wiping plate (124) contacts the left side of the camera module (6), and the wiping plate (124) improves the use effect of the camera module (6) during operation. The circumferential surface of the roller (128) contacts the left side of the triangular plate (125).

Citation Information

Patent Citations

  • Online detection device for injection molded part

    CN220534858U