Assembly line body connection mechanism capable of preventing materials from falling

文档序号:1637020 发布日期:2020-01-17 浏览:13次 中文

阅读说明:本技术 防物料掉落的流水线线体接驳机构 (Assembly line body connection mechanism capable of preventing materials from falling ) 是由 不公告发明人 于 2019-10-25 设计创作,主要内容包括:本发明公开了防物料掉落的流水线线体接驳机构,具体涉及流水线接驳机构设计,尤其是用于流水线线体与线体之间的防物料掉落接驳机构。包括进料轴、进料轴传动带、齿轮结构、齿轮轴、电机、传送带。本发明的有益效果是,接驳流水线线体,防止物料掉落。(The invention discloses a material-falling-preventing assembly line body connection mechanism, particularly relates to the design of an assembly line connection mechanism, and particularly relates to a material-falling-preventing connection mechanism used between an assembly line body and a line body. Comprises a feeding shaft, a feeding shaft transmission belt, a gear structure, a gear shaft, a motor and a transmission belt. The invention has the beneficial effects that the assembly line body is connected, and the materials are prevented from falling.)

1. Prevent assembly line body mechanism of plugging into that material dropped, its characterized in that:

comprises a feeding shaft, a feeding shaft transmission belt, a gear structure, a gear shaft, a motor and a transmission belt;

the gear shaft drives the feeding shaft to rotate through a feeding shaft transmission belt;

the tail end of the gear shaft is provided with a gear tooth structure which is meshed with the gear, and the gear is driven by the motor to rotate, so that the gear shaft is driven to rotate;

the conveying belt is connected with the gear shaft and the driven shaft and rotates along with the gear shaft through the friction force of the inner rough surface;

the feeding shaft is used for filling a gap between the conveying belt and the line body conveying belt and conveying materials.

2. The material drop prevention assembly line body docking mechanism of claim 1, wherein:

the diameter of the feeding shaft is smaller than that of the gear shaft, and comb-shaped rubber gear teeth are densely distributed on the surface of the shaft body and used for conveying materials to the conveying belt.

3. The material drop prevention assembly line body docking mechanism of claim 1, wherein:

the tail end of the gear-free shaft is erected on a bearing, and the other bearing is positioned between the conveying belt and the conveying belt of the feeding shaft.

4. The material drop prevention assembly line body docking mechanism of claim 1, wherein:

the conveyer belt is made of rubber materials, can be stretched, and has the thickness ranging from 4mm to 8 mm.

5. The material drop prevention assembly line body docking mechanism of claim 1, wherein:

the gear shaft and the feeding shaft transmission belt are provided with grooves below and used for placing the feeding shaft transmission belt.

6. The material drop prevention assembly line body docking mechanism of claim 1, wherein:

the lower part of the feeding shaft transmission belt is also provided with a groove for placing the feeding shaft transmission belt.

Technical Field

The invention discloses a material-falling-preventing assembly line body connection mechanism, particularly relates to the design of an assembly line connection mechanism, and particularly relates to a material-falling-preventing connection mechanism used between an assembly line body and a line body.

Background

In the LCM process, the radius of a rotating shaft for driving the assembly line to operate is required to be larger and the thickness of a conveying belt is required to be thicker due to the fact that the assembly line body is longer, the self weight is larger and the bearing amount of materials is larger, so that the radian of the tail end of the assembly line is larger. This results in the situation that the material often falls off when two lines are docked. Therefore, a connection mechanism needs to be erected between the two assembly lines to reduce the loss caused by falling of materials.

Disclosure of Invention

In order to solve the defects, the invention discloses a production line body connection mechanism for preventing materials from falling.

In order to achieve the purpose, the invention adopts the following technical scheme:

the invention discloses a production line body connection mechanism capable of preventing materials from falling, which is characterized in that: comprises a feeding shaft, a feeding shaft transmission belt, a gear structure, a gear shaft, a motor and a transmission belt; the gear shaft drives the feeding shaft to rotate through a feeding shaft transmission belt; the tail end of the gear shaft is provided with a gear tooth structure which is meshed with the gear, and the gear is driven by the motor to rotate, so that the gear shaft is driven to rotate; the conveying belt is connected with the gear shaft and the driven shaft and rotates along with the gear shaft through the friction force of the inner rough surface; the feeding shaft is used for filling a gap between the conveying belt and the line body conveying belt and conveying materials.

In any of the above schemes, preferably, the diameter of the feeding shaft is smaller than that of the gear shaft, and comb-shaped rubber gear teeth are densely distributed on the surface of the shaft body and used for conveying the materials to the conveying belt.

In any of the above embodiments, preferably, the gear shaft and the end of the gearless shaft are mounted on a bearing, and the other bearing is located between the conveyor belt and the conveyor belt of the feeding shaft.

Preferably, in any of the above embodiments, the conveyor belt is made of rubber, is stretchable, and has a thickness of 4mm to 8 mm.

Any scheme above is preferred, gear shaft, feeding shaft drive belt below is fluted, is used for placing feeding shaft drive belt.

In any of the above solutions, it is preferable that the feeding shaft transmission belt has a groove below for placing the feeding shaft transmission belt.

The invention has the beneficial effects that the assembly line body is connected, and the materials are prevented from falling.

Drawings

Fig. 1 is a schematic view of a material falling prevention assembly line body connection mechanism;

fig. 2 is a schematic view of the installation position of the production line body connection mechanism for preventing materials from falling;

in fig. 1, reference numeral 1 denotes a feed shaft, reference numeral 2 denotes a feed shaft transmission belt, reference numeral 3 denotes a gear structure, reference numeral 4 denotes a gear shaft, reference numeral 5 denotes a motor, and reference numeral 6 denotes a transmission belt.

Detailed Description

The invention will be described in detail with reference to the drawings and specific embodiments, which are illustrative of the invention and are not to be construed as limiting the invention.

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