Capsule removing mechanism

By designing a novel capsule rejection mechanism, the problems of capsule rebound and channel blockage in capsule testing machines were solved, achieving efficient capsule rejection and reduced energy consumption.

CN223629066UActive Publication Date: 2025-12-05WUXI YUNXING INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202422330836.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-12-05
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

Existing capsule inspection machines are prone to capsule rebound and channel blockage during continuous rejection, and they also have high energy consumption.

Method used

A capsule rejection mechanism was designed, comprising a transport roller, a compressed air nozzle, and a rejection channel. The rejection channel consists of inner and outer shells. The inner shell has an observation window, and the outer shell has a hook and a small air passage hole. The hook is installed on the hook post of the inner shell, and the compressed air nozzle is positioned above the transport roller to achieve effective capsule rejection.

Benefits of technology

It effectively prevents capsule rebound and channel blockage, thus reducing energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a capsule removing mechanism which comprises a conveying roller, a compressed air nozzle and a waste removing channel piece, the compressed air nozzle and the waste removing channel piece are arranged on the two sides of the conveying roller, the waste removing channel piece comprises a channel inner side shell and a channel outer side shell, and the upper portion of the channel inner side shell is arranged above the conveying roller. An observation window is arranged on the upper portion of the channel inner side shell, the channel outer side shell is arranged on the channel inner side shell in a buckled mode, a channel used for transporting waste gas capsules is formed between the channel outer side shell and the channel inner side shell, and hook columns are arranged on the two sides of the channel inner side shell. Hooks used for being hung on the hook columns are arranged on the two sides of the channel outer side shell, and a plurality of small air passing holes are formed in the upper portion of the channel outer side shell. According to the capsule removing mechanism, unqualified capsules are not prone to rebounding, the removing channel piece is not prone to being blocked, and energy consumption is greatly reduced.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to capsule production technical field, concretely relates to a capsule rejecting mechanism. BACKGROUND

[0002] At present, defective defective products will inevitably appear in the production process of capsules, the detection of defective products can be realized through the capsule detection machine, and after the defective products are rejected, the finished product capsules will sequentially pass through the finished product channel and enter the packaging bag. In the prior art, the defective products detected by the capsule detection machine are rejected by the rejecting mechanism on the equipment, and the existing rejecting mechanism will produce problems such as capsule rebound and blocking of the capsule channel during continuous rejection. Moreover, some existing rejecting mechanisms are in a state of blowing compressed air all the time during work, and the energy consumption is high. SUMMARY

[0003] The utility model aims at solving one of the technical problems in the prior art at least to some extent.

[0004] Therefore, the utility model adopts the technical scheme, which is a capsule rejecting mechanism, which comprises a conveying roller and compressed air nozzles and a rejecting channel piece arranged on both sides of the conveying roller, the rejecting channel piece comprises an inner channel housing and an outer channel housing, the upper part of the inner channel housing is arranged at the flush position of the upper edge of the conveying roller, and the upper part of the inner channel housing is provided with an observation window, the outer channel housing is buckled on the inner channel housing, and a channel for conveying waste gas capsules is formed between the outer channel housing and the inner channel housing, hooks are arranged on both sides of the outer channel housing and used for being hung on the hook columns, and a plurality of air passing small holes are arranged on the upper part of the outer channel housing.

[0005] The hook column is provided with a clamping groove, and the hook can be hung in the corresponding clamping groove.

[0006] The conveying roller is horizontally arranged.

[0007] The compressed air nozzle is horizontally arranged and arranged above the conveying roller.

[0008] Compared with the prior art, the utility model has the following beneficial effects: the capsule rejecting mechanism of the utility model realizes that the unqualified capsules are not easy to rebound and block the rejecting channel piece, and the energy consumption is greatly reduced. BRIEF DESCRIPTION OF DRAWINGS

[0009] Fig. 1 is a structural schematic view of the utility model;

[0010] Fig. 2 is a structural schematic view of the outer channel housing after being taken off from the inner channel housing. DETAILED DESCRIPTION

[0011] In order to make the purpose, technical scheme and advantages of the present application clearer, the present application will be further described in details below in combination with the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and not used to limit the present application.

[0012] On the contrary, the present application covers any substitution, modification, equivalent method and scheme defined by the claims on the essence and scope of the present application. Further, in order to make the public have a better understanding of the present application, some specific details are described in the following detailed description of the present application. The present application can also be completely understood without the description of these details by those skilled in the art.

[0013] Reference Figs. 1-2 A capsule rejection mechanism, comprising a conveying roller 1 and a compressed air nozzle 2 and a rejection channel piece 3 arranged on both sides of the conveying roller 1, the rejection channel piece 3 comprising an inner channel housing 301 and an outer channel housing 302, the upper part of the inner channel housing 301 is arranged at the flush position of the upper edge of the conveying roller 1, and the upper part of the inner channel housing 301 is provided with an observation window 303, the outer channel housing 302 is buckled on the inner channel housing 301 and a channel is formed between the outer channel housing 302 and the inner channel housing 301 for conveying waste gas capsules, hooks 304 are arranged on both sides of the inner channel housing 301, hooks 305 for hanging on the hooks 304 are arranged on both sides of the outer channel housing 302, and a plurality of air holes 306 are arranged on the upper part of the outer channel housing 302.

[0014] The hooks 304 are provided with clamping grooves, and the hooks 305 can be hung in the corresponding clamping grooves.

[0015] The conveying roller 1 is horizontally arranged.

[0016] The compressed air nozzle 2 is horizontally arranged, and the compressed air nozzle 2 is arranged above the conveying roller 1.

[0017] When the conveying roller moves from the detection station to the compressed air nozzle, the compressed air nozzle sprays compressed air to reject the defective capsule from above the conveying roller into the rejection channel piece, and then the defective capsule is collected from the outside.

[0018] The outer channel housing is installed on the upper surface of the inner channel housing by means of hooks on both sides, and can be directly cleaned without disassembly during shift cleaning, which is more convenient and saves time and effort.

[0019] When the capsule detection machine is running at high speed, if there are many defective products, and the compressed air is blown into the rejection channel, vortex will be generated inside the rejection channel, and the capsule itself is light in weight, which will cause the phenomenon of rebound. At this time, the area where the capsule is rejected from the channel shell is full of air holes. When continuously rejecting, most of the airflow will be discharged from the air hole, and the capsule will fall down after encountering the channel shell when being rejected, so that the unqualified capsule is not easy to rebound and block the rejection channel.

Claims

1. A capsule ejection mechanism characterized by: The utility model relates to a kind of transport roller (1) and the compressed air nozzle (2) and the reject passage piece (3) being arranged on both sides of transport roller (1), the reject passage piece (3) includes passage inside shell (301) and passage outside shell (302), the upper portion of the passage inside shell (301) is arranged at the flush position along the transport roller (1) upper portion, and the upper portion of passage inside shell (301) is provided with observation window (303), the passage outside shell (302) is buckled on passage inside shell (301), and passage between passage outside shell (302) and passage inside shell (301) forms the passage for transporting waste gas capsule, both sides of the passage inside shell (301) are provided with hook post (304), both sides of the passage outside shell (302) are provided with hook (305) for hanging on the hook post (304), and the upper portion of the passage outside shell (302) is provided with multiple air holes (306).

2. A capsule ejecting mechanism according to claim 1, characterized in that: The hook post (304) is provided with a clamping groove, and the hook (305) can be hung in the corresponding clamping groove.

3. A capsule ejecting mechanism according to claim 1, characterized in that: The transport roller (1) is horizontally arranged.

4. A capsule ejecting mechanism according to claim 1, characterized in that: The compressed air nozzle (2) is horizontally arranged above the transport roller (1).