Automatic wire inlet and outlet mechanism for dynamic water detection trial of dish-washing machine

By adopting a circular detection assembly line and synchronous inlet and outlet line design in the dishwasher water test, the problem of low efficiency of linear test lines is solved, efficient automation of product inlet and outlet, and testing efficiency and continuity are improved.

CN223267818UActive Publication Date: 2025-08-26NINGBO YINCHI ELECTRIC CO LTD
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Patent Information

Application Number
CN202422718897.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-08-26
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

The import and export ends of the existing dishwasher water test line are set at the beginning and end of the straight test line, resulting in the products on the entire test line before they can appear after all the tests are completed, and the test efficiency is low.

Method used

The circular detection assembly line design is adopted. The product inlet and outlet table are located on the same side and are arranged in parallel. The inlet and outlet drums and outlet drums are distributed accordingly. The synchronous entry and exit of the product to be tested and the product tested is achieved through components such as motors, transmission shafts, sprockets and cylinders, reducing the waiting time.

Benefits of technology

The simultaneous entry and exit of the products to be tested and the finished product is achieved, the testing efficiency is improved, the degree of automation and work continuity is enhanced, and the entry and exit efficiency is improved.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses an automatic wire inlet and outlet mechanism for dynamic water detection trial of a dish-washing machine. The device comprises an annular detection assembly line, the side face of the annular detection assembly line is provided with a product wire inlet table and a product wire outlet table, the product wire inlet table and the product wire outlet table are both located on the same side of the annular detection assembly line and are parallel to each other, and a plurality of wire inlet rollers are distributed on the product wire inlet table at intervals; a plurality of wire outlet rollers are distributed on the product wire outlet table at intervals, the wire inlet rollers and the wire outlet rollers are parallel to each other, the distribution interval of the wire inlet rollers is equal to that of the wire outlet rollers, and the number of the wire inlet rollers is equal to that of the wire outlet rollers. The beneficial effects of the utility model are that a product to be tested and a tested product are synchronously carried out in and out, and other waiting time is not needed, so that the testing efficiency is greatly improved; working is reliable, efficiency is high, transmission power is large, and overload capacity is high; the automation degree is high, the working continuity is good, and the wire inlet and outlet efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field related to dishwasher performance detection, in particular to an automatic inlet and outlet line mechanism for dynamic water detection of a dishwasher. Background Art

[0002] A dishwasher is a device that automatically washes bowls, chopsticks, plates, dishes, knives, forks and other tableware.

[0003] Each dishwasher is typically made up of multiple parts. During the manufacturing process, each part is individually manufactured and then assembled by the operator. Before a dishwasher is packaged and sold, it undergoes a water test.

[0004] At present, dishwasher industry manufacturers use multiple linear static testing lines for water testing. The product inlet and outlet ends of the linear testing line are set at the head and tail ends of the linear testing line. The product can only appear after all the products on the entire testing line have been tested and judged. The testing efficiency is relatively low.

[0005] In summary, there is a need for an automatic inlet and outlet line mechanism for a dynamic water detection trial of a dishwasher that can improve the test efficiency. Utility Model Content

[0006] The utility model aims to overcome the shortcomings of the prior art in which the product inlet and outlet ends of a linear test line are arranged at the head and tail ends of the linear test line, and the product can only appear after all products on the entire test line have been tested and determined, resulting in low test efficiency. An automatic inlet and outlet line mechanism for dynamic water detection trial of a dishwasher is provided, which can improve the test efficiency.

[0007] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0008] An automatic inlet and outlet mechanism for dynamic water detection trial of a dishwasher includes an annular detection assembly line. A product inlet platform and a product outlet platform are provided on the side of the annular detection assembly line. The product inlet platform and the product outlet platform are both located on the same side of the annular detection assembly line and are parallel to each other. A plurality of inlet rollers are arranged at intervals on the product inlet platform, and a plurality of outlet rollers are arranged at intervals on the product outlet platform. The inlet rollers and the outlet rollers are parallel to each other, and the distribution intervals of the inlet rollers and the distribution intervals of the outlet rollers are equal, and the number of the two is the same.

[0009] The product inlet station is used to feed products into the circular inspection line, while the product outlet station is used to feed products out of the circular inspection line. By placing the product inlet station and the product outlet station at the same parallel position on the circular inspection line, and by aligning the inlet rollers on the product inlet station with the outlet rollers on the product outlet station, the inlet and outlet of the tested products can be synchronized, eliminating the need for waiting and greatly improving testing efficiency.

[0010] Preferably, the product feed-in platform is equipped with a feed-in motor and a feed-in transmission shaft, the motor shaft of the feed-in motor is provided with a feed-in motor sprocket, the feed-in transmission shaft is provided with a feed-in transmission shaft sprocket 1, the feed-in motor sprocket and the feed-in transmission shaft sprocket 1 are connected by a feed-in chain 1, the feed-in transmission shaft is further provided with a feed-in transmission shaft sprocket 2, the feed-in roller at one end of the product feed-in platform away from the annular detection assembly line is provided with a feed-in roller sprocket, the feed-in roller sprocket 2 and the feed-in roller sprocket are connected by a feed-in chain 2. When the feed-in motor is working, the motor shaft drives the feed-in transmission shaft to rotate through the feed-in transmission shaft sprocket 1, and the feed-in transmission shaft drives the feed roller to rotate synchronously through the feed-in transmission shaft sprocket 2, so that the operation is reliable, efficient, the transmission power is large, and the overload capacity is strong. When the product flows to the product inlet station, the rotating inlet roller can assist in conveying the product to the circular inspection production line, which has a high degree of automation, good working continuity, and improved inlet efficiency.

[0011] Preferably, the product inlet platform is provided with an inlet pallet, which is placed on the inlet roller and movably connected thereto, and a guide rail is fixed on the product inlet platform, which is placed on the side of the inlet roller and is perpendicular to each other, and a push cylinder is installed on the guide rail, which is movably connected to the guide rail, and the inlet pallet is fixed on the push cylinder. The inlet pallet is used to carry products. When the product flows to the inlet pallet of the product inlet platform, the push cylinder on the guide rail automatically works, and combined with the rotating inlet roller, it can automatically push the product onto the circular inspection assembly line, with a high degree of automation and good working continuity, thereby improving the inlet efficiency.

[0012] Preferably, the product inlet platform is equipped with an inlet infrared probe, which is located at the end of the platform away from the annular inspection line. The push cylinder and the inlet motor are both electrically connected to the inlet infrared probe. When the product flows to the inlet tray of the product inlet platform, it is identified by the inlet infrared probe, and the push cylinder and the inlet motor are automatically started. The push cylinder on the guide rail automatically works, and together with the rotating inlet roller, the product can be automatically pushed onto the annular inspection line. This has a high degree of automation, good working continuity, and improved inlet efficiency.

[0013] Preferably, the product outlet platform is equipped with an outlet motor and an outlet transmission shaft, the motor shaft of the outlet motor is provided with an outlet motor sprocket, the outlet transmission shaft is provided with an outlet transmission shaft sprocket 1, the outlet motor sprocket and the outlet transmission shaft sprocket 1 are connected by an outlet chain 1, the outlet transmission shaft is also provided with an outlet transmission shaft sprocket 2, the product outlet platform is provided with an outlet roller at one end away from the annular detection assembly line, and the outlet transmission shaft sprocket 2 is connected to the outlet roller sprocket by an outlet chain 2. When the outlet motor is working, the motor shaft drives the outlet transmission shaft to rotate through the outlet transmission shaft sprocket 1, and the outlet transmission shaft drives the outlet roller to rotate synchronously through the outlet transmission shaft sprocket 2, which has reliable operation, high efficiency, large power transmission, and strong overload capacity. When the product testing on the circular inspection line is completed and flows to the product outlet platform, the rotating outlet roller can assist in transporting the product out of the circular inspection line. It has a high degree of automation, good work continuity, and improves the outlet efficiency.

[0014] Preferably, the product outlet platform is provided with an outlet support plate, which is placed on the outlet roller and movably connected thereto. A push-out cylinder platform is also provided on the side of the annular detection assembly line. The push-out cylinder platform and the product outlet platform are symmetrically arranged on both sides of the annular detection assembly line. A push-out cylinder is installed on the push-out cylinder platform, and a product push-out plate is fixed on the piston rod of the push-out cylinder. The product push-out plate and the product outlet platform are arranged relative to each other. The outlet support plate is used to carry products. When the product test on the annular detection assembly line is completed and transferred to the product outlet platform, the push-out cylinder on the push-out cylinder platform automatically works to push the product onto the outlet support plate of the product outlet platform, and then cooperates with the rotating outlet roller to automatically push the product out of the annular detection assembly line. The degree of automation is high, the working continuity is good, and the outlet efficiency is improved.

[0015] Preferably, the product outlet station is equipped with an outlet infrared probe, which is arranged at one end of the product outlet station close to the annular detection assembly line. The push-out cylinder and the outlet motor are both electrically connected to the outlet infrared probe. When the product on the annular detection assembly line is tested and transferred to the product outlet station, it is identified by the outlet infrared probe and the push-out cylinder and the outlet motor are automatically started. The push-out cylinder on the push-out cylinder station automatically works to push the product onto the outlet support plate of the product outlet station. Combined with the rotating outlet roller, the product can be automatically pushed out of the annular detection assembly line. This has a high degree of automation, good working continuity, and improved outlet efficiency.

[0016] The beneficial effects of the utility model are as follows: the product to be tested and the product after the test are put in and taken out synchronously, without any other waiting time being wasted, which greatly improves the test efficiency; the operation is reliable, efficient, the power transmission is large, and the overload capacity is strong; the degree of automation is high, the operation continuity is good, and the efficiency of the line in and out is improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 It is a structural diagram of the utility model;

[0018] Figure 2 It is a structural diagram of the product incoming line platform;

[0019] Figure 3 It is a structural diagram of the product outlet platform;

[0020] Figure 4 It is a structural diagram of the push-out cylinder table.

[0021] Figure: 1. Annular inspection line, 2. Product inlet platform, 3. Product outlet platform, 4. Inlet roller, 5. Outlet roller, 6. Inlet motor, 7. Inlet drive shaft, 8. Inlet motor sprocket, 9. Inlet drive shaft sprocket (1), 10. Inlet chain (1), 11. Inlet drive shaft sprocket (2), 12. Inlet roller sprocket, 13. Inlet chain (2), 14. Inlet support plate, 15. Guide rail, 16. Push cylinder, 17. Outlet motor, 18. Outlet drive shaft, 19. Outlet motor sprocket, 20. Outlet drive shaft sprocket (1), 21. Outlet chain (1), 22. Outlet drive shaft sprocket (2), 23. Outlet roller sprocket, 24. Outlet chain (2), 25. Push cylinder platform, 26. Push cylinder, 27. Product ejection plate, 28. Wire outlet support plate. DETAILED DESCRIPTION

[0022] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0023] like Figure 1 、 Figure 2 、 Figure 3 and Figure 4 In the described embodiment, an automatic inlet and outlet mechanism for dynamic water detection trial of a dishwasher includes an annular detection assembly line 1, and a product inlet platform 2 and a product outlet platform 3 are provided on the side of the annular detection assembly line 1. The product inlet platform 2 and the product outlet platform 3 are both located on the same side of the annular detection assembly line 1 and are parallel to each other. A plurality of inlet rollers 4 are arranged at intervals on the product inlet platform 2, and a plurality of outlet rollers 5 are arranged at intervals on the product outlet platform 3. The inlet rollers 4 and the outlet rollers 5 are parallel to each other, and the distribution interval of the inlet rollers 4 is equal to the distribution interval of the outlet rollers 5, and the number of the two is the same.

[0024] The product inlet platform 2 is equipped with an inlet motor 6 and an inlet transmission shaft 7. The motor shaft of the inlet motor 6 is provided with an inlet motor sprocket 8. The inlet transmission shaft 7 is provided with an inlet transmission shaft sprocket 1 9. The inlet motor sprocket 8 and the inlet transmission shaft sprocket 1 9 are connected by an inlet chain 10. The inlet transmission shaft 7 is also provided with an inlet transmission shaft sprocket 2 11. The product inlet platform 2 is provided with an inlet roller sprocket 12 on the inlet roller 4 away from the end of the annular detection assembly line 1. The inlet transmission shaft sprocket 2 11 and the inlet roller sprocket 12 are connected by an inlet chain 2 13.

[0025] The product inlet platform 2 is provided with an inlet support plate 14, which is placed on the inlet roller 4 and movably connected thereto. A guide rail 15 is fixed on the product inlet platform 2, which is placed on the side of the inlet roller 4 and the two are perpendicular to each other. A pushing cylinder 16 is installed on the guide rail 15, which is movably connected to the guide rail 15, and the inlet support plate 14 is fixed on the pushing cylinder 16.

[0026] An incoming line infrared probe is installed on the product incoming line platform 2. The incoming line infrared probe is set at one end of the product incoming line platform 2 away from the circular detection assembly line 1. The pushing cylinder 16 and the incoming line motor 6 are both electrically connected to the incoming line infrared probe.

[0027] The product outlet platform 3 is equipped with an outlet motor 17 and an outlet transmission shaft 18, the motor shaft of the outlet motor 17 is provided with an outlet motor sprocket 19, the outlet transmission shaft 18 is provided with an outlet transmission shaft sprocket 1 20, the outlet motor sprocket 19 and the outlet transmission shaft sprocket 1 20 are connected by an outlet chain 1 21, and the outlet transmission shaft 18 is also provided with an outlet transmission shaft sprocket 2 22. The product outlet platform 3 is away from the outlet roller 5 at one end of the annular detection assembly line 1 and is provided with an outlet roller sprocket 23, and the outlet transmission shaft sprocket 2 22 and the outlet roller sprocket 23 are connected by an outlet chain 24.

[0028] The product outlet platform 3 is provided with an outlet support plate 28, which is placed on the outlet roller 5 and movably connected thereto. A push-out cylinder platform 25 is also provided on the side of the annular detection assembly line 1. The push-out cylinder platform 25 and the product outlet platform 3 are symmetrically arranged on both sides of the annular detection assembly line 1. A push-out cylinder 26 is installed on the push-out cylinder platform 25, and a product push-out plate 27 is fixed on the piston rod of the push-out cylinder 26. The product push-out plate 27 and the product outlet platform 3 are arranged opposite to each other.

[0029] An outgoing line infrared probe is installed on the product outgoing line platform 3, and the outgoing line infrared probe is set at one end of the product outgoing line platform 3 close to the annular detection assembly line 1. The pushing cylinder 26 and the outgoing line motor 17 are both electrically connected to the outgoing line infrared probe.

[0030] When the product flows to the inlet support plate 14 of the product inlet platform 2, it is identified by the inlet infrared probe and the push cylinder 16 and the inlet motor 6 are automatically started. The motor shaft on the inlet motor 6 drives the inlet drive shaft 7 to rotate through the inlet drive shaft sprocket 1 9, and the inlet drive shaft 7 drives the inlet roller 4 to rotate synchronously through the inlet drive shaft sprocket 2 11. At the same time, the pushing cylinder 16 on the guide rail 15 works automatically, and combined with the rotating inlet roller 4, it can automatically push the product onto the circular inspection assembly line 1.

[0031] When the product on the annular inspection line 1 is tested and transferred to the product outlet platform 3, it is identified by the outlet infrared probe and the push-out cylinder 26 and the outlet motor 17 are automatically started. The motor shaft on the outlet motor 17 drives the outlet drive shaft 18 to rotate through the outlet drive shaft sprocket 1 20, and the outlet drive shaft 18 drives the outlet roller 5 to rotate synchronously through the outlet drive shaft sprocket 2 22. At the same time, the push-out cylinder 26 on the cylinder platform 25 works automatically to push the product to the outlet support plate 28 of the product outlet platform 3, and then cooperates with the rotating outlet roller 5 to automatically push the product out of the annular inspection line 1.

[0032] By arranging the product inlet platform 2 and the product outlet platform 3 at the same parallel position of the circular inspection line 1, and by distributing the inlet roller 4 on the product inlet platform 2 and the outlet roller 5 on the product outlet platform 3 in correspondence with each other, the product to be tested and the tested product can be put in and out synchronously without wasting time waiting.

Claims

1. An automatic inlet and outlet mechanism for dynamic water detection trial of a dishwasher, characterized by: The invention comprises an annular detection assembly line (1), wherein a product inlet platform (2) and a product outlet platform (3) are provided on the side of the annular detection assembly line (1), the product inlet platform (2) and the product outlet platform (3) are both located on the same side of the annular detection assembly line (1) and are parallel to each other, a plurality of inlet rollers (4) are arranged at intervals on the product inlet platform (2), and a plurality of outlet rollers (5) are arranged at intervals on the product outlet platform (3), the inlet rollers (4) and the outlet rollers (5) are parallel to each other, the distribution intervals of the inlet rollers (4) and the distribution intervals of the outlet rollers (5) are equal, and the number of the two is the same.

2. The automatic inlet and outlet mechanism for dynamic water detection of a dishwasher according to claim 1, characterized in that: The product feed-in platform (2) is provided with a feed-in motor (6) and a feed-in transmission shaft (7); a feed-in motor sprocket (8) is provided on the motor shaft of the feed-in motor (6); a feed-in transmission shaft sprocket 1 (9) is provided on the feed-in transmission shaft (7); the feed-in motor sprocket (8) and the feed-in transmission shaft sprocket 1 (9) are connected via a feed-in chain 1 (10); a feed-in transmission shaft sprocket 2 (11) is also provided on the feed-in transmission shaft (7); a feed-in roller sprocket (12) is provided on the feed-in roller (4) at one end of the product feed-in platform (2) away from the annular detection assembly line (1); the feed-in transmission shaft sprocket 2 (11) and the feed-in roller sprocket (12) are connected via a feed-in chain 2 (13).

3. The automatic inlet and outlet mechanism for dynamic water detection of a dishwasher according to claim 2, characterized in that: The product inlet platform (2) is provided with an inlet support plate (14), the inlet support plate (14) is placed on the inlet roller (4) and is movably connected thereto, a guide rail (15) is fixed on the product inlet platform (2), the guide rail (15) is placed on the side of the inlet roller (4) and the two are perpendicular to each other, a push cylinder (16) is installed on the guide rail (15), the push cylinder (16) and the guide rail (15) are movably connected, and the inlet support plate (14) is fixed on the push cylinder (16).

4. The automatic inlet and outlet mechanism for dynamic water detection of a dishwasher according to claim 3, characterized in that: The product line inlet platform (2) is equipped with an inlet infrared probe, which is arranged at one end of the product line inlet platform (2) away from the annular detection assembly line (1), and the push cylinder (16) and the inlet motor (6) are both electrically connected to the inlet infrared probe.

5. The automatic inlet and outlet mechanism for dynamic water detection of a dishwasher according to any one of claims 1 to 4, characterized in that: The product outlet platform (3) is provided with an outlet motor (17) and an outlet transmission shaft (18); the motor shaft of the outlet motor (17) is provided with an outlet motor sprocket (19); the outlet transmission shaft (18) is provided with an outlet transmission shaft sprocket 1 (20); the outlet motor sprocket (19) and the outlet transmission shaft sprocket 1 (20) are connected via an outlet chain 1 (21); the outlet transmission shaft (18) is further provided with an outlet transmission shaft sprocket 2 (22); the product outlet platform (3) is provided with an outlet roller (5) at one end away from the annular detection assembly line (1); the outlet transmission shaft sprocket 2 (22) and the outlet roller sprocket (23) are connected via an outlet chain 2 (24).

6. The automatic inlet and outlet mechanism for dynamic water testing of a dishwasher according to claim 5, characterized in that: The product outlet platform (3) is provided with an outlet support plate (28), and the outlet support plate (28) is placed on the outlet roller (5) and is movably connected thereto. A push-out cylinder platform (25) is also provided on the side of the annular detection assembly line (1). The push-out cylinder platform (25) and the product outlet platform (3) are symmetrically arranged on both sides of the annular detection assembly line (1). A push-out cylinder (26) is installed on the push-out cylinder platform (25), and a product push-out plate (27) is fixed on the piston rod of the push-out cylinder (26). The product push-out plate (27) and the product outlet platform (3) are arranged relative to each other.

7. The automatic inlet and outlet mechanism for dynamic water testing of a dishwasher according to claim 6, characterized in that: The product outlet platform (3) is equipped with an outlet infrared probe, which is arranged at one end of the product outlet platform (3) close to the annular detection assembly line (1), and the ejection cylinder (26) and the outlet motor (17) are both electrically connected to the outlet infrared probe.