A plush toy suction machine
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-02
- Publication Date
- 2026-08-14
AI Technical Summary
[0002]目前在毛绒玩具生产销售前,为了避免玩具外部的绒毛存在碎屑或脱落的绒毛影响后续销售,往往会对毛绒玩具进行以此碎屑和浮毛的清理,目前常见的清理手段大多采用敲打的方式使碎屑和浮毛脱落,配合外部抽真空装置产生的空气抽吸,从而将此类碎屑浮毛快速清理和收集,但目前一般的吸毛机过滤结构大多单一,即过滤位置单一,通常仅采用一个过滤板或网袋进行过滤,随着加工时间的增加,易出现收集的绒毛堵塞抽吸通道,导致负压抽吸力减弱,影响毛绒玩具的清理效果
[0011]本申请通过吸毛机构中,滚筒和传动组件的配合,可以使得滚筒在进行吸毛处理时保持位置的变化,避免单一吸附过滤位置出现绒毛杂质堵塞影响加工,同时刮毛器的设置可以同步滚筒的转动对吸附的杂质进行清洁,从而减少人工的介入并提高生产效率和效果。
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Figure CN224633730U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of toy processing technology, specifically relating to a plush toy suction machine. Background Technology
[0002] Currently, before the production and sale of plush toys, in order to avoid the presence of debris or loose fur on the outside of the toys affecting subsequent sales, the plush toys are often cleaned to remove these debris and loose fur. The most common cleaning methods are to knock the debris and loose fur off by tapping, combined with the air suction generated by an external vacuum device, so as to quickly clean and collect such debris and loose fur. However, most of the current fur suction machines have a simple filtration structure, that is, a single filtration position, usually using only a filter plate or mesh bag for filtration. As the processing time increases, the collected fur is prone to clogging the suction channel, resulting in a weakening of the negative pressure suction force and affecting the cleaning effect of the plush toys. Utility Model Content
[0003] The purpose of this invention is to provide a plush toy suction machine to solve the problems mentioned in the background art.
[0004] To achieve the above-mentioned technical objectives, the technical solution adopted by this utility model is as follows:
[0005] A plush toy suction machine includes a body, a processing chamber on the upper side of the body, a hair collection chamber on the lower side of the body, and a hair suction mechanism between the processing chamber and the hair collection chamber.
[0006] The hair suction mechanism consists of a roller, a transmission assembly, and a hair scraper. An inner cavity is formed between the processing chamber and the hair collection chamber, and the inner cavity connects the processing chamber and the hair collection chamber. The roller is rotated and sealed in the inner cavity, and the inner cavity extends through one side of the machine body. The transmission assembly is located on the side of the machine body and is connected to the roller for transmission. The hair scraper is located between the inner cavity and the roller. Several suction holes are formed on the side of the roller.
[0007] The transmission assembly consists of a motor, a transmission wheel, a transmission belt, and a driven ring. One side of the drum rotates and extends out of the inner cavity in a sealed manner. The motor is fixedly installed on the side of the machine body. The transmission wheel is concentrically connected to the output shaft of the motor. The driven ring is concentrically distributed with the drum. The transmission belt is disposed between the transmission wheel and the driven ring.
[0008] The inner cavity is composed of interconnected rectangular cavities and hemispherical cavities distributed vertically, with the roller located inside the hemispherical cavity and spaced apart from its inner wall.
[0009] The hair removal device consists of a sealing plate and a scraper. The sealing plate is an arc plate located inside the roller and fixedly connected to the inner wall of the inner cavity. The sealing plate is slidably and sealed to the lower inner wall of the roller. The scraper is located in the hemispherical cavity and is slidably and sealed to the outer wall of the roller. Both the sealing plate and the scraper correspond to the communication opening between the hemispherical cavity and the hair collection cavity. The scraper is located on the front side in the direction of roller rotation.
[0010] This application has at least the following advantages compared to the prior art:
[0011] This application utilizes the cooperation between the roller and the transmission component in the hair suction mechanism to ensure that the roller maintains a changing position during the hair suction process. This avoids clogging of the processing by lint and impurities at a single suction and filtration position. At the same time, the addition of a scraper can synchronize the rotation of the roller to clean the adsorbed impurities, thereby reducing manual intervention and improving production efficiency and effectiveness. Attached Figure Description
[0012] This utility model can be further illustrated by the non-limiting embodiments given in the accompanying drawings.
[0013] Figure 1 This is a schematic diagram of the overall structure of this application.
[0014] Figure 2 This is a structural cross-sectional view of this application.
[0015] Figure 3 This is a schematic diagram of the hair removal mechanism in this application.
[0016] Machine body 1, processing chamber 11, hair collection chamber 12, roller 2, motor 3, transmission wheel 31, transmission belt 32, driven ring 33, rectangular cavity 4, hemispherical cavity 41, sealing plate 5, scraper 51. Detailed Implementation
[0017] To enable those skilled in the art to better understand this utility model, the technical solution of this utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0018] like Figure 1-3 As shown, a plush toy suction machine includes a body 1, a processing chamber 11 on the upper side of the body 1, a hair collection chamber 12 on the lower side of the body 1, and a hair suction mechanism between the processing chamber 11 and the hair collection chamber 12.
[0019] The hair suction mechanism consists of a roller 2, a transmission assembly, and a hair scraper. An inner cavity is formed between the processing chamber 11 and the hair collection chamber 12, and the inner cavity connects the processing chamber 11 and the hair collection chamber 12. The roller 2 is rotated and sealed in the inner cavity, which extends through one side of the machine body 1. The transmission assembly is located on the side of the machine body 1 and is connected to the roller 2 for transmission. The hair scraper is located between the inner cavity and the roller 2. Several suction holes are formed on the side of the roller 2.
[0020] When performing hair removal treatment on plush toys, the toy is placed in the processing chamber 11 of the machine body 1, and then the hair removal mechanism is turned on to perform hair removal treatment. During the hair removal process, the toy can be manually patted to make some loose and attached plush fall off.
[0021] The roller 2 in the hair suction mechanism extends out of the body 1 and is connected to the air passage of the external vacuum suction mechanism. In order to prevent some finer hairs from directly passing through the suction holes of the roller 2 and entering the vacuum suction mechanism and causing damage to the equipment, a filter screen can be added between the vacuum suction mechanism and the roller 2. At the same time, the connection between the roller 2 and the vacuum suction mechanism is a rotary seal connection to meet the needs of sealing and component movement.
[0022] When the plush on the toy falls off, it is drawn into the roller 2 by the external vacuum suction and adheres to the roller 2. When the roller 2 continues to rotate to the point where the lint scraper is located, the attached lint will be scraped off and fall into the lint collection chamber 12. This cleans the roller 2, prevents too much lint from adhering to the roller 2, which would reduce the vacuum suction capacity, and also reduces the frequency of manual cleaning, thereby improving the efficiency and effectiveness of production processing.
[0023] The transmission assembly consists of a motor 3, a transmission wheel 31, a transmission belt 32, and a driven ring 33. The roller 2 rotates and extends out of the inner cavity with a seal on one side. The motor 3 is fixedly installed on the side of the machine body 1. The transmission wheel 31 is concentrically connected to the output shaft of the motor 3. The driven ring 33 is concentrically distributed with the roller 2. The transmission belt 32 is installed between the transmission wheel 31 and the driven ring 33.
[0024] When driving the roller 2, the motor 3 starts and drives the transmission wheel 31 to rotate through the output shaft. The transmission wheel 31 then drives the driven ring 33 to rotate through the transmission belt 32, thereby driving the roller 2 to rotate, thus achieving the effect of changing the angle of the roller 2 in real time.
[0025] The inner cavity consists of a rectangular cavity 4 and a hemispherical cavity 41 that are interconnected and distributed vertically. The roller 2 is located inside the hemispherical cavity 41 and is spaced apart from its inner wall.
[0026] The rectangular cavity 4 is used to cooperate with the treatment chamber 11 to form a suction space, and the hemispherical cavity 41 is used to cooperate with the roller 2 to reduce the gap between the roller 2 and the hemispherical cavity 41, thereby improving the adsorption capacity.
[0027] The hair removal device consists of a sealing plate 5 and a scraper 51. The sealing plate 5 is an arc plate located inside the roller 2 and fixedly connected to the inner wall of the inner cavity. The sealing plate 5 is slidably and sealed to the lower inner wall of the roller 2. The scraper 51 is located in the hemispherical cavity 41 and is slidably and sealed to the outer wall of the roller 2. Both the sealing plate 5 and the scraper 51 correspond to the communication opening between the hemispherical cavity 41 and the hair collection cavity 12. The scraper 51 is located on the front side in the rotation direction of the roller 2.
[0028] The sealing plate 5 can cause the outer side of the roller 2 to lose its adsorption force when the roller 2 is positioned corresponding to the hair collection cavity 12. This can be used in conjunction with the scraper 51 to scrape the debris and lint on the roller 2 that have lost their adsorption force into the hair collection cavity 12, thereby achieving the functions of cleaning and collection.
[0029] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit the scope of this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.
Claims
1. A plush toy processing suction machine, comprising a machine body, a processing chamber is arranged on the upper side of the machine body, and a lint collecting cavity is arranged on the lower side of the machine body, characterized in that: A hair suction mechanism is provided between the processing chamber and the hair collection chamber; The hair suction mechanism consists of a roller, a transmission assembly, and a hair scraper. An inner cavity is formed between the processing chamber and the hair collection chamber, and the inner cavity connects the processing chamber and the hair collection chamber. The roller is rotated and sealed in the inner cavity, and the inner cavity extends through one side of the machine body. The transmission assembly is located on the side of the machine body and is connected to the roller for transmission. The hair scraper is located between the inner cavity and the roller. Several suction holes are formed on the side of the roller.
2. A lint picking machine for processing plush toys as claimed in claim 1, characterized in that: The transmission assembly consists of a motor, a transmission wheel, a transmission belt, and a driven ring. One side of the drum rotates and extends out of the inner cavity in a sealed manner. The motor is fixedly installed on the side of the machine body. The transmission wheel is concentrically connected to the output shaft of the motor. The driven ring is concentrically distributed with the drum. The transmission belt is disposed between the transmission wheel and the driven ring.
3. A lint picking machine for processing plush toys as claimed in claim 2, characterized in that: The inner cavity is composed of interconnected rectangular cavities and hemispherical cavities distributed vertically, with the roller located inside the hemispherical cavity and spaced apart from its inner wall.
4. A lint picking machine for processing plush toys as claimed in claim 3, wherein: The hair removal device consists of a sealing plate and a scraper. The sealing plate is an arc plate located inside the roller and fixedly connected to the inner wall of the inner cavity. The sealing plate is slidably and sealed to the lower inner wall of the roller. The scraper is located in the hemispherical cavity and is slidably and sealed to the outer wall of the roller. Both the sealing plate and the scraper correspond to the communication opening between the hemispherical cavity and the hair collection cavity. The scraper is located on the front side in the direction of roller rotation.