Part detection equipment for automatic production
By introducing positioning components and multi-head supports into the parts inspection equipment, multi-angle and multi-height image acquisition of parts can be achieved, solving the problem of low inspection accuracy of existing equipment and improving the comprehensiveness and accuracy of inspection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-10
- Publication Date
- 2026-04-10
AI Technical Summary
Existing automatic component inspection equipment can only acquire a single image of a component, resulting in low inspection accuracy and an inability to meet the inspection requirements of different types of components.
A detection device was designed, comprising an equipment box, a positioning component, a multi-head support, and an image acquisition device. The positioning component allows for flexible adjustment of the angles of the components, and the image acquisition device on the multi-head support enables multi-angle image acquisition. The multi-head support is then driven to rise and fall by a drive cylinder to adapt to detection needs at different heights.
It improves the comprehensiveness and accuracy of testing, enhances the applicability of the equipment, and enables precise judgment of parts.
Smart Images

Figure CN224108773U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of parts testing equipment, specifically a parts testing equipment for automated production. Background Technology
[0002] In automated production processes, the quality inspection of components is a crucial step in ensuring product quality.
[0003] Chinese Patent CN214747771U discloses an automatic parts inspection device, belonging to the field of parts inspection technology. It includes an image acquisition device, a light source, a platform, a controller, a display, and a lifting mechanism. The image acquisition device and the light source are positioned opposite the platform's surface and are detachably and fixedly mounted on the lifting mechanism, which drives them to move up and down in a direction perpendicular to the platform. The image acquisition device, the lifting mechanism, and the computer are connected via communication cables, as are the computer and the display.
[0004] Regarding the aforementioned technologies, it has been found that the automatic component inspection equipment can only acquire a single image of the component for inspection, resulting in low inspection accuracy and poor inspection effect, and cannot well adapt to the inspection requirements of different types of components. Utility Model Content
[0005] The purpose of this invention is to provide a component inspection device for automated production, which aims to improve the problem of single image acquisition in existing inspection devices.
[0006] This utility model is implemented as follows: A component inspection device for automated production includes an equipment box, which includes a chassis and a display. The display is fixedly installed on the upper surface of the chassis, and an inspection shell is also inclinedly arranged on the chassis. The inspection shell is fixedly connected to the chassis. Several sets of positioning components are evenly installed on the upper surface of the inspection shell, and a multi-head bracket is installed on the side of the inspection shell. The multi-head bracket is slidably connected to the inspection shell, and a drive cylinder for driving the multi-head bracket to rise and fall is fixedly installed on the outer side of the inspection shell. An image acquisition device corresponding to the positioning components is installed on the multi-head bracket, and the image acquisition device is fixedly connected to the multi-head bracket.
[0007] Preferably, the detection shell includes a base plate assembly, an inner baffle, and an outer baffle, wherein the inner baffle and the outer baffle are installed on both sides of the base plate assembly, and the base plate assembly, the inner baffle, and the outer baffle are integrally formed.
[0008] Preferably, the base plate assembly includes a main plate portion and a bottom shell, the bottom shell being installed in the middle of the lower end face of the main plate portion, and the bottom shell being integrally formed with the main plate portion.
[0009] Preferably, the positioning assembly comprises an angle motor and an angle plate shell, the angle motor is fixedly installed in the bottom shell, the angle plate shell is arranged at the upper end surface of the main plate part, and the center of the angle plate shell is connected with the output shaft of the angle motor.
[0010] Preferably, a shaft sleeve connected with the output shaft of the angle motor is fixedly installed at the center of the angle plate shell, and a V-shaped workpiece groove is formed in the outer side surface of the angle plate shell.
[0011] Preferably, the multi-head support comprises a main connecting rod and a cross rod support for installing the image collector, the cross rod supports are uniformly installed on the side surface of the main connecting rod, and the cross rod supports are fixedly connected with the main connecting rod.
[0012] Preferably, the cross rod support comprises a sliding seat and a seat rod, the seat rod is integrally formed on one side of the sliding seat, and a guide sliding groove for installing the sliding seat is formed in the outer baffle.
[0013] Compared with the prior art, the application has the beneficial effects that: through reasonable structure design, automatic detection of parts is realized. In actual detection, the positioning assembly can flexibly adjust the angle of the parts, cooperate with the image collector on the multi-head support to perform multi-angle image collection, and improve the comprehensiveness and accuracy of detection. Meanwhile, the driving cylinder drives the multi-head support to ascend and descend, adapts to the detection requirements of parts of different heights, and enhances the applicability of the equipment. When the parts are placed on the detection shell and can be slid to the uppermost angle plate shell for positioning, image collection can be performed, after the collection is completed, the parts are automatically turned over and discharged to the next angle plate shell for image collection again, the purpose of collecting images of multiple groups of parts is realized, and the parts are more conveniently and accurately judged, so that the accuracy of detection is improved. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 is the overall structure schematic view of the application;
[0015] Figure 2 is Figure 1 the front view of the device shown in the figure;
[0016] Figure 3 is Figure 1 the front view of the device shown in the figure;
[0017] Figure 4 is the perspective view of the detection shell, the positioning assembly and the multi-head support cooperating in the embodiment of the application;
[0018] Figure 5 is Figure 4 the front view of the device shown in the figure.
[0019] In the figure: 1, equipment box; 11, equipment machine box; 12, display; 2, detection shell; 21, bottom plate group; 211, main plate part; 212, bottom shell; 22, inner baffle; 23, outer baffle; 231, guide chute; 3, positioning assembly; 31, angle motor; 32, angle disc shell; 321, shaft sleeve; 322, V-shaped workpiece; 4, multi-head support; 41, main connecting rod; 42, cross bar support; 421, sliding seat; 422, seat rod; 5, driving electric cylinder; 6, image collector. DETAILED DESCRIPTION
[0020] In the utility model, unless another explicit provision and limitation, the terms "mount", "connect", "connect", "fix" and so on should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or be integrated; can be mechanical connection, also can be electrical connection; can be directly connected, also can be indirectly connected through intermediate medium, can be the communication of two elements or the interaction of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to specific circumstances.
[0021] The following further description is made in combination with the drawings and specific embodiments:
[0022] Referring to Figure 1 , Figure 2 And Figure 3 A kind of part detection equipment for automated production, including equipment box 1, equipment box 1 includes equipment machine box 11 and display 12, display 12 is fixedly installed on the upper end surface of equipment machine box 11, and equipment machine box 11 is also obliquely provided with detection shell 2, detection shell 2 is fixedly connected with equipment machine box 11, and a plurality of positioning assemblies 3 are evenly installed on the upper end surface of detection shell 2, and multi-head support 4 is installed on the side surface of detection shell 2, and multi-head support 4 is slidably connected with detection shell 2, and driving electric cylinder 5 for driving multi-head support 4 to lift is fixedly installed on the outer side surface of detection shell 2, image collector 6 corresponding to positioning assembly 3 is installed on multi-head support 4, and image collector 6 is fixedly connected with multi-head support 4.Equipment box 1 includes equipment machine box 11 and display 12, which facilitates operators to observe detection results.Detection shell 2 is obliquely arranged on equipment machine box 11, which is conducive to the stable placement of parts and continuous detection operation.Positioning assembly 3 is used for fixing the part to be detected, and image collector 6 installed on multi-head support 4 corresponds to positioning assembly 3, which can collect images of the part, and driving electric cylinder 5 can drive multi-head support 4 to lift, so as to adjust the height of image collector 6 to adapt to the detection requirements of parts of different heights, improve the flexibility and applicability of detection.
[0023] Referring to Figure 3 And Figure 4As shown in the drawings, the detection shell 2 comprises a bottom plate group 21, an inner baffle 22 and an outer baffle 23, the inner baffle 22 and the outer baffle 23 are installed on both sides of the bottom plate group 21, and the bottom plate group 21, the inner baffle 22 and the outer baffle 23 are integrally formed. The bottom plate group 21, the inner baffle 22 and the outer baffle 23 are integrally formed, which enhances the overall structural strength of the detection shell 2, ensures the stability of the detection process, and is also convenient for processing and installation. The bottom plate group 21 comprises a main plate part 211 and a bottom shell 212, the bottom shell 212 is installed at the middle of the lower end surface of the main plate part 211, and the bottom shell 212 is integrally formed with the main plate part 211. The main plate part 211 and the bottom shell 212 are integrally formed, which provides a stable installation basis for components such as the positioning assembly 3, and the arrangement of the bottom shell 212 also reasonably arranges internal electrical elements and the like, making the device structure more compact.
[0024] Referring to Figure 2 and Figure 5 As shown in the drawings, the positioning assembly 3 comprises an angle motor 31 and an angle disc shell 32, the angle motor 31 is fixedly installed in the bottom shell 212, the angle disc shell 32 is arranged at the upper end surface of the main plate part 211, and the center of the angle disc shell 32 is connected with the output shaft of the angle motor 31. The angle motor 31 is installed in the bottom shell 212, the angle disc shell 32 is connected with the output shaft of the angle motor 31, the angle motor 31 can drive the angle disc shell 32 to rotate, thereby adjusting the angle of the detected parts, realizing multi-angle detection, and also realizing automatic downward movement of the parts. The center of the angle disc shell 32 is fixedly installed with a shaft sleeve 321 connected with the output shaft of the angle motor 31, and a V-shaped workpiece 322 groove is formed on the outer side surface of the angle disc shell 32. The arrangement of the shaft sleeve 321 facilitates the connection of the angle disc shell 32 with the output shaft of the angle motor 31, and ensures the stability of the transmission. The arrangement of the V-shaped workpiece 322 groove can better position parts of different shapes, improve the accuracy and universality of positioning, and also facilitate the automatic downward sliding of the parts after the angle disc shell 32 is turned over.
[0025] Referring to Figure 3 and Figure 4As shown, the multi-head support 4 comprises a main connecting rod 41 and a crossbar support 42 for mounting the image collector 6, the crossbar support 42 is uniformly mounted on the side of the main connecting rod 41, and the crossbar support 42 is fixedly connected with the main connecting rod 41. The combination structure of the main connecting rod 41 and the crossbar support 42 facilitates the mounting and layout of the image collector 6, the crossbar support 42 is uniformly mounted on the side of the main connecting rod 41, which can ensure that the multiple image collectors 6 simultaneously collect images of the parts at different positions. The crossbar support 42 comprises a sliding seat 421 and a seat rod 422, the seat rod 422 is integrally formed on one side of the sliding seat 421, and the outer baffle 23 is provided with a guide sliding groove 231 for mounting the sliding seat 421. The sliding seat 421 and the seat rod 422 are integrally formed, the sliding seat 421 is mounted in the guide sliding groove 231, so that the multi-head support 4 can stably slide along the guide sliding groove 231, ensuring the stability of the image collector 6 during lifting and further improving the detection accuracy.
[0026] Working principle: when it is actually needed to detect the parts, the parts to be detected are placed in the V-shaped workpiece groove 322 of the angle disc shell 32, so as to realize rapid positioning of the parts. According to the height of the parts, the multi-head support 4 is driven to lift by the driving electric cylinder 5, the height of the image collector 6 is adjusted, so as to align the parts to be detected. After the collection is completed, the angle motor 31 is started to drive the angle disc shell 32 to rotate, so as to automatically discharge the parts downward, so that the parts enter into the next angle disc shell 32, and then the multiple image collectors 6 are convenient for collecting images of the parts. The collected image data is transmitted to the control system in the equipment case 11 for analysis and processing, and the analysis result is displayed on the display 12, so that the operator can judge whether the parts are qualified according to the display result.
[0027] The above is only a preferred embodiment of the present application, and is not used to limit the present application. For those skilled in the art, the present application can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A parts inspection apparatus for use in automated production, comprising an apparatus housing (1), characterized in that The device box (1) includes a device cabinet (11) and a display (12), the display (12) is fixedly installed on the upper end surface of the device cabinet (11), and the device cabinet (11) is also provided with a detection shell (2) inclinedly, the detection shell (2) is fixedly connected with the device cabinet (11), a plurality of positioning assemblies (3) are uniformly arranged on the upper end surface of the detection shell (2), and a multi-head support (4) is arranged on the side surface of the detection shell (2), the multi-head support (4) is slidably connected with the detection shell (2), and a driving electric cylinder (5) for driving the multi-head support (4) to ascend and descend is fixedly installed on the outer side surface of the detection shell (2), an image collector (6) corresponding to the positioning assembly (3) is arranged on the multi-head support (4), and the image collector (6) is fixedly connected with the multi-head support (4).
2. A parts inspection apparatus for use in automated production according to claim 1, characterized by, The detection shell (2) includes a bottom plate group (21), an inner baffle (22) and an outer baffle (23), the inner baffle (22) and the outer baffle (23) are arranged on the two sides of the bottom plate group (21), and the bottom plate group (21), the inner baffle (22) and the outer baffle (23) are integrally formed.
3. A parts inspection apparatus for use in automated production according to claim 2, wherein The bottom plate group (21) includes a main plate part (211) and a bottom shell (212), the bottom shell (212) is arranged on the middle part of the lower end surface of the main plate part (211), and the bottom shell (212) is integrally formed with the main plate part (211).
4. A parts inspection apparatus for use in automated production according to claim 3, wherein The positioning assembly (3) includes an angle motor (31) and an angle disc shell (32), the angle motor (31) is fixedly installed in the bottom shell (212), the angle disc shell (32) is arranged on the upper end surface of the main plate part (211), and the center of the angle disc shell (32) is connected with the output shaft of the angle motor (31).
5. A parts inspection apparatus for use in automated production according to claim 4, wherein The center of the angle disc shell (32) is fixedly provided with a shaft sleeve (321) connected with the output shaft of the angle motor (31), and a V-shaped workpiece groove (322) is formed in the outer side surface of the angle disc shell (32).
6. A parts inspection apparatus for use in automated production according to claim 5, wherein The multi-head support (4) includes a main connecting rod (41) and a cross rod frame (42) for mounting the image collector (6), the cross rod frame (42) is uniformly arranged on the side surface of the main connecting rod (41), and the cross rod frame (42) is fixedly connected with the main connecting rod (41).
7. A parts inspection apparatus for use in automated production according to claim 6, wherein The cross rod frame (42) includes a sliding seat (421) and a seat rod (422), the seat rod (422) is integrally arranged on one side of the sliding seat (421), and the outer baffle (23) is provided with a guide sliding groove (231) for mounting the sliding seat (421).
Citation Information
Patent Citations
Automatic part detection equipment
CN214747771U