Locking piece full-inspection machine table

By designing a full inspection machine for locking components, integrating a turntable and multiple inspection mechanisms, the problem of low inspection efficiency in existing technologies has been solved, and efficient automatic inspection of locking components has been achieved.

CN223649849UActive Publication Date: 2025-12-09FUZHOU YUEHUA PLASTIC MOLD CO LTD
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Patent Information

Application Number
CN202423314775.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-09
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

Existing methods for inspecting locking components require multiple manual handling steps, resulting in low inspection efficiency and difficulty in meeting the needs of large-scale production.

Method used

A full inspection machine for locking parts was designed, comprising a horizontally rotatable turntable and a feeding port, a thickness detection mechanism, an internal thread detection mechanism, and an internal diameter detection mechanism arranged sequentially along the turntable direction, to realize the automatic detection of the thickness, internal thread, and internal diameter of the locking parts.

Benefits of technology

This technology enables multiple tests on locking components to be completed on the same equipment at once, improving testing efficiency, reducing manual operation, and making it suitable for large-scale production.

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Abstract

The utility model relates to the technical field of full-inspection machine tables, in particular to a locking piece full-inspection machine table, which comprises a machine table, the machine table is provided with a turntable capable of rotating horizontally, and a feed opening, a thickness detection mechanism, an inner tooth detection mechanism and an inner diameter detection mechanism which are sequentially arranged at intervals along the rotating direction of the turntable, and the inner diameter detection mechanism is connected with a discharge end. The edge of the rotating disc is provided with a containing groove used for containing a locking piece, the discharging opening, the thickness detection mechanism, the inner tooth detection mechanism and the inner diameter detection mechanism are all located on one side of the edge of the rotating disc, the thickness detection mechanism is used for detecting the thickness of the locking piece, the inner tooth detection mechanism is used for detecting an inner thread of the locking piece, and the inner diameter detection mechanism is used for detecting the inner diameter of the locking piece. Through the above structural combination, the thickness, the internal teeth and the internal diameter of the locking piece can be detected at a time, manual detection is replaced, and the detection efficiency is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of full inspection machine technology, specifically a full inspection machine for locking components. Background Technology

[0002] Existing locking component inspection methods require multiple sequential steps, with manual handling between each step, which significantly reduces inspection efficiency and hinders large-scale production, especially for small locking components where the daily inspection volume is enormous. Therefore, the existing methods are insufficient for large-scale production. Utility Model Content

[0003] In view of this, the purpose of this utility model is to provide a full inspection machine for locking components.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0005] A full inspection machine for locking components includes a machine base. The machine base is provided with a horizontally rotatable turntable and a feeding port, a thickness detection mechanism, an internal thread detection mechanism, and an inner diameter detection mechanism arranged sequentially and at intervals along the rotation direction of the turntable. The inner diameter detection mechanism is connected to the discharge end. The edge of the turntable is provided with a receiving groove for accommodating the locking components. The feeding port, thickness detection mechanism, internal thread detection mechanism, and inner diameter detection mechanism are all located on one side of the edge of the turntable. The thickness detection mechanism is used to detect the thickness of the locking components, the internal thread detection mechanism is used to detect the internal thread of the locking components, and the inner diameter detection mechanism is used to detect the inner diameter of the locking components.

[0006] Preferably, the thickness detection mechanism includes a downward pressure rod that can move in a vertical direction, and the area of ​​the lower end face of the downward pressure rod is between the area corresponding to the inner diameter of the locking member and the area corresponding to the outer diameter of the locking member.

[0007] Preferably, the lower end face of the pressure rod is planar.

[0008] Preferably, the internal tooth detection mechanism includes a first detection rod that can move vertically and rotate simultaneously, and the side wall of the first detection rod has an external thread that is adapted to the internal thread of the locking member.

[0009] Preferably, the inner diameter detection mechanism includes a horizontally rotatable turntable, on which a second detection rod movable in a vertical direction is mounted. The lower end of the second detection rod is adapted to the inner diameter of the locking member, and the lower end of the second detection rod is a deformable structure that can be partially accommodated inward. The machine base has a first discharge end and a second discharge end. The first discharge end is located at the edge of the turntable, and a horizontally movable baffle is provided corresponding to the first discharge end. The baffle is used to allow the locking member to enter the first discharge end when the lower end of the second detection rod does not lift the locking member. A scraper is provided above the second discharge end. The scraper is used to separate the locking member located on the lower end of the second detection rod and allow it to enter the second discharge end.

[0010] The beneficial effects of this utility model are:

[0011] This utility model provides a full inspection machine for locking components, including a machine base. The machine base is equipped with a horizontally rotatable turntable and a feeding port, a thickness detection mechanism, an internal thread detection mechanism, and an inner diameter detection mechanism arranged sequentially and at intervals along the rotation direction of the turntable. The inner diameter detection mechanism is connected to the discharge end. The edge of the turntable is provided with a receiving groove for accommodating the locking components. The feeding port, thickness detection mechanism, internal thread detection mechanism, and inner diameter detection mechanism are all located on one side of the edge of the turntable. The thickness detection mechanism is used to detect the thickness of the locking component, the internal thread detection mechanism is used to detect the internal thread of the locking component, and the inner diameter detection mechanism is used to detect the inner diameter of the locking component. Through the above structural combination, the thickness, internal thread, and inner diameter of the locking component can be detected at one time, replacing manual inspection and greatly improving the inspection efficiency. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of a locking component full inspection machine according to the present invention;

[0013] Figure 2 This is a front view of a locking component full inspection machine according to this utility model;

[0014] Figure 3 This is a top view of a locking component full inspection machine according to the present invention;

[0015] Explanation of icon numbers:

[0016] 1. Machine base; 11. Turntable; 111. Receiving groove; 2. Discharge port; 3. Thickness detection mechanism; 31. Pressing rod; 4. Internal thread detection mechanism; 41. First detection rod; 5. Internal diameter detection mechanism; 51. Turntable; 52. Second detection rod; 6. First discharge end; 7. Second discharge end; 8. Scraper. Detailed Implementation

[0017] The present invention will be further described below with reference to the accompanying drawings and specific embodiments:

[0018] like Figures 1-3 As shown, the present invention provides a full inspection machine for locking parts, including a machine base 1. The machine base 1 is provided with a horizontally rotatable turntable 11 and a feeding port 2, a thickness detection mechanism 3, an internal thread detection mechanism 4 and an internal diameter detection mechanism 5 arranged sequentially and at intervals along the rotation direction of the turntable. The internal diameter detection mechanism 5 is connected to the discharge end. The edge of the turntable 11 is provided with a receiving groove 111 for accommodating locking parts. There are multiple receiving grooves 111. In this embodiment, there are four receiving grooves.

[0019] The feed port 2, thickness detection mechanism 3, internal thread detection mechanism 4, and inner diameter detection mechanism 5 are all located on one side of the turntable. The thickness detection mechanism 3 is used to detect the thickness of the locking component, the internal thread detection mechanism 4 is used to detect the internal thread of the locking component, and the inner diameter detection mechanism 5 is used to detect the inner diameter of the locking component.

[0020] Preferably, the thickness detection mechanism 3 includes a downward pressing rod 31 that can move vertically, and the area of ​​the lower end face of the downward pressing rod is between the area corresponding to the inner diameter of the locking member and the area corresponding to the outer diameter of the locking member. With this structure, when the downward pressing rod is pressed down, it abuts against the upper end face of the locking member, and the thickness of the locking member can be determined by its stroke, thereby determining whether its thickness meets the standard. Furthermore, the area of ​​the lower end face of the downward pressing rod is between the area corresponding to the inner diameter of the locking member and the area corresponding to the outer diameter of the locking member, and the central axis of the downward pressing rod is coaxial with the central axis of the locking member, thus ensuring that the downward pressing rod will not penetrate into the inner hole of the locking member while still being able to detect the thickness of the locking member.

[0021] Preferably, the lower end face of the pressure rod 31 is planar. This structure avoids damage to the locking components while ensuring detection accuracy.

[0022] Preferably, the internal thread detection mechanism 4 includes a first detection rod 41 that can move vertically and rotate simultaneously. The side wall of the first detection rod has an external thread that matches the internal thread of the locking member. With this structure, the internal thread of the locking member can be detected. If the first detection rod can successfully spiral into and out of the locking member, it indicates that the internal thread meets the requirements.

[0023] Preferably, the inner diameter detection mechanism 5 includes a horizontally rotatable turntable 51, on which a second detection rod 52 movable in a vertical direction is mounted. The lower end of the second detection rod is adapted to the inner diameter of the locking member, and the lower end of the second detection rod is a deformable structure that can be partially accommodated inward. The machine base has a first discharge end 6 and a second discharge end 7. The first discharge end is located at the edge of the turntable, and a horizontally movable baffle is provided corresponding to the first discharge end. The baffle is used to allow the locking member to enter the first discharge end when the lower end of the second detection rod does not lift the locking member. A scraper 8 is provided above the second discharge end. The scraper is horizontally arranged, and its front end has a U-shaped groove. The width of the groove corresponding to the U-shape is greater than the diameter of the second detection rod and smaller than the outer diameter of the locking member. The scraper 8 is used to separate the locking member located on the lower end of the second detection rod and allow it to enter the second discharge end. With the above structure, when the second detection rod moves downward and its deformable structure is embedded in the locking member, the baffle is in the open state. That is, when the locking member cannot be fixed to the deformable structure, it will enter from the first discharge end, indicating that it is a defective product. When the locking member is fixed to the deformable structure, it will move to the scraper. Under the action of the scraper, the locking member located at the lower end of the second detection rod separates and enters the second discharge end, indicating that it is a qualified product. At this time, the baffle will become closed and receive the next locking member.

[0024] This utility model has been described with reference to the above-described embodiments and accompanying drawings. However, the above embodiments are merely examples for implementing this utility model. It must be noted that the disclosed embodiments do not limit the scope of this utility model. On the contrary, modifications and equivalent provisions included in the spirit and scope of the claims are all included within the scope of this utility model.

Claims

1. A full inspection machine for locking components, comprising a machine base, characterized in that: The machine base is equipped with a horizontally rotatable turntable and a feeding port, a thickness detection mechanism, an internal thread detection mechanism, and an inner diameter detection mechanism arranged sequentially and at intervals along the rotation direction of the turntable. The inner diameter detection mechanism is connected to the discharge end. The edge of the turntable is provided with a receiving groove for accommodating the locking component. The feeding port, thickness detection mechanism, internal thread detection mechanism, and inner diameter detection mechanism are all located on one side of the edge of the turntable. The thickness detection mechanism is used to detect the thickness of the locking component, the internal thread detection mechanism is used to detect the internal thread of the locking component, and the inner diameter detection mechanism is used to detect the inner diameter of the locking component.

2. The locking component full inspection machine according to claim 1, characterized in that: The thickness detection mechanism includes a downward pressure rod that can move vertically, and the area of ​​the lower end face of the downward pressure rod is between the area corresponding to the inner diameter of the locking member and the area corresponding to the outer diameter of the locking member.

3. The locking component full inspection machine according to claim 2, characterized in that: The lower end face of the pressure rod is flat.

4. The locking component full inspection machine according to claim 1, characterized in that: The internal tooth detection mechanism includes a first detection rod that can move vertically and rotate simultaneously, and the side wall of the first detection rod has an external thread that is adapted to the internal thread of the locking member.

5. The locking component full inspection machine according to claim 1, characterized in that: The inner diameter detection mechanism includes a horizontally rotatable turntable, on which a second detection rod that can move vertically is mounted. The lower end of the second detection rod is adapted to the inner diameter of the locking member, and the lower end of the second detection rod is a deformable structure that can be partially accommodated inward. The machine base has a first discharge end and a second discharge end. The first discharge end is located at the edge of the turntable, and a horizontally movable baffle is provided corresponding to the first discharge end. The baffle is used to allow the locking member to enter the first discharge end when the lower end of the second detection rod does not lift the locking member. A scraper is provided above the second discharge end. The scraper is used to separate the locking member located at the lower end of the second detection rod and allow it to enter the second discharge end.