Linear directional conveying device for cylindrical materials with cross sections

文档序号:1014463 发布日期:2020-10-27 浏览:35次 中文

阅读说明:本技术 一种截面圆柱形材料直线定向输送装置 (Linear directional conveying device for cylindrical materials with cross sections ) 是由 孙辉 于 2019-04-18 设计创作,主要内容包括:本发明公开了一种截面圆柱形材料直线定向输送装置,包括旋转驱动链轮、圆柱形材料输送链、内链节、外链节、马达、固定板和壳体转动行星减速机,所述圆柱形材料输送链设有两套,每套圆柱形材料输送链上均设有两套旋转驱动链轮,两套圆柱形材料输送链自上而下对称设置,圆柱形材料输送链套设在两套旋转驱动链轮上;所述圆柱形材料输送链由内链节和外链节依次交错拼装组成。本发明所描述的截面圆柱形材料直线定向输送装置,解决了采用滚轮挤压输送材料,挤压过程中输送材料会发生变形和磨损,造成材料损坏或影响其后期使用性能的弊端;输送链链节多点与输送材料接触,提高了输送力和输送效果,并更好保护输送材料。(The invention discloses a linear directional conveying device for a cylindrical material with a cross section, which comprises rotary driving chain wheels, cylindrical material conveying chains, inner chain links, outer chain links, a motor, a fixing plate and a shell rotating planetary speed reducer, wherein the cylindrical material conveying chains are provided with two sets, each set of cylindrical material conveying chain is provided with two sets of rotary driving chain wheels, the two sets of cylindrical material conveying chains are symmetrically arranged from top to bottom, and the cylindrical material conveying chains are sleeved on the two sets of rotary driving chain wheels; the cylindrical material conveying chain is formed by sequentially and alternately assembling inner chain links and outer chain links. The linear directional conveying device for the cylindrical material with the cross section, which is described by the invention, solves the defects that the conveying material is deformed and abraded in the extrusion process by adopting the roller to extrude and convey the material, so that the material is damaged or the later use performance of the material is influenced; the multiple points of the chain links of the conveying chain are in contact with the conveying material, so that the conveying force and the conveying effect are improved, and the conveying material is better protected.)

1. A linear directional conveying device for a cylindrical material with a cross section comprises rotary driving chain wheels (1), cylindrical material conveying chains (2), inner chain links (4), outer chain links (5), a motor (8), a fixing plate (7) and a shell rotating planetary speed reducer (6), and is characterized in that the cylindrical material conveying chains (2) are provided with two sets, each set of cylindrical material conveying chain (2) is provided with two sets of rotary driving chain wheels (1), the two sets of cylindrical material conveying chains (2) are symmetrically arranged from top to bottom, and the cylindrical material conveying chains (2) are sleeved on the two sets of rotary driving chain wheels (1); the cylindrical material conveying chain (2) is formed by sequentially and alternately assembling inner chain links (4) and outer chain links.

2. The linear directional conveying device for the cylindrical materials with the cross sections as claimed in claim 1, wherein a shell rotating planetary reducer (6) is arranged inside the rotary driving chain wheel (1), the shell rotating planetary reducer (6) is fixedly connected with the rotary driving chain wheel (1), and the motor (8) is directly connected with the shell rotating planetary reducer (6).

3. A linear directional conveyor for cylindrical materials with cross-section according to claim 2, characterized in that the whole of said motor (8) is fixed on the fixed plate (7) by means of bolts, the fixed plate (7) being mounted on the base which can be moved adjustably.

4. A linear directional conveyor for cylindrical materials with a cross section according to claim 2, characterized in that the motor (8) is incorporated inside the casing rotating planetary reducer (6).

Technical Field

The invention relates to the technical field of cylindrical material conveying, in particular to a linear directional conveying device for a cylindrical material with a section.

Background

The linear directional conveying device for the cylindrical materials, such as cables, round steel, steel wire ropes and the like, and linear conveying of other cylindrical materials with sections. At present, the roller is adopted to extrude and convey materials, and the materials are driven to move by the rotation of the roller to realize conveying. Since the rollers theoretically make line contact with the material during extrusion, the material being conveyed during extrusion may deform and wear, causing material damage or affecting its later use properties.

Disclosure of Invention

The invention aims to provide a linear directional conveying device for a cylindrical material with a section, which solves the problems in the background technology.

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

a linear directional conveying device for a cylindrical material with a cross section comprises rotary driving chain wheels, cylindrical material conveying chains, inner chain links, outer chain links, motors, fixing plates and a shell rotating planetary reducer, wherein the cylindrical material conveying chains are provided with two sets, each set of cylindrical material conveying chain is provided with two sets of rotary driving chain wheels, the two sets of cylindrical material conveying chains are symmetrically arranged from top to bottom, and the cylindrical material conveying chains are sleeved on the two sets of rotary driving chain wheels; the cylindrical material conveying chain is formed by sequentially and alternately assembling inner chain links and outer chain links.

As a further scheme of the invention: the inside of rotary driving sprocket is equipped with casing rotation planetary reducer, and casing rotation planetary reducer and rotary driving sprocket fixed connection, motor and casing rotation planetary reducer directly link.

As a further scheme of the invention: the whole motor is fixed on a fixing plate through a bolt, and the fixing plate is arranged on the base capable of moving in an adjustable mode.

As a further scheme of the invention: the motor is concealed inside the shell rotating planetary reducer.

Compared with the prior art, the linear directional conveying device for the cylindrical material with the cross section, which is disclosed by the invention, solves the problems that the conveying material is deformed and abraded in the extrusion process by adopting the roller to extrude and convey the material, so that the material is damaged or the later use performance of the conveying material is influenced; the multiple points of the chain links of the conveying chain are in contact with the conveying material, so that the conveying force and the conveying effect are improved, and the conveying material is better protected.

Drawings

Fig. 1 is a schematic structural diagram of a linear directional conveying device for cylindrical materials with cross sections.

FIG. 2 is a schematic structural diagram of A-A in a linear directional material conveying device with a cylindrical section.

FIG. 3 is a front view of a rotary driving sprocket of a linear directional material conveying device with a cylindrical section.

FIG. 4 is a schematic diagram of the internal structure of a rotary driving sprocket in a linear directional material conveying device with a cylindrical section.

In the figure: 1. a rotary drive sprocket; 2. a cylindrical material conveyor chain; 3. conveying the material; 4. an inner link; 5. an outer link; 6. the shell rotates the planetary reducer; 7. a fixing plate; 8. a motor.

Detailed Description

The technical solution of the present patent will be described in further detail with reference to the following embodiments.

Referring to fig. 1-4, a section cylindrical material linear directional conveying device comprises rotary driving chain wheels 1, cylindrical material conveying chains 2, inner chain links 4, outer chain links 5, a motor 8, a fixing plate 7 and a shell rotating planetary reducer 6, wherein the cylindrical material conveying chains 2 are provided with two sets, each set of cylindrical material conveying chain 2 is provided with two sets of rotary driving chain wheels 1, the two sets of cylindrical material conveying chains 2 are symmetrically arranged from top to bottom, the cylindrical material conveying chains 2 are sleeved on the two sets of rotary driving chain wheels 1, and the distance between the two sets of rotary driving chain wheels 1 can be adjusted, so that the distance between the upper set of cylindrical material conveying chains 2 and the lower set of cylindrical material conveying chains 2 can be adjusted as required.

The cylindrical material conveying chain 2 is formed by sequentially and alternately assembling inner chain links 4 and outer chain links.

And a conveying material 3 is arranged between the two sets of cylindrical material conveying chains 2.

The inside of the rotary driving chain wheel 1 is provided with a shell rotating planetary reducer 6, the shell rotating planetary reducer 6 is fixedly connected with the rotary driving chain wheel 1, a motor 8 is directly connected with the shell rotating planetary reducer 6, and the motor 8 is concealed inside the shell rotating planetary reducer 6.

The whole motor 8 is fixed on a fixed plate 7 through a bolt, and the fixed plate 7 is arranged on a base which can be adjusted and moved; when the motor 8 rotates forward, the rotary drive sprocket 1 rotates clockwise, and when the motor 8 rotates backward, the rotary drive sprocket 1 rotates counterclockwise.

In the using process of the invention, when the cylindrical material conveying chain 2 above rotates clockwise and the cylindrical material conveying chain 2 below rotates anticlockwise, the conveying material 3 can be conveyed leftwards; conversely, when the upper cylindrical material conveying chain 2 rotates counterclockwise and the lower cylindrical material conveying chain 2 rotates clockwise, the conveying material can be conveyed rightward.

In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those of ordinary skill in the art through specific situations.

Although the preferred embodiments of the present patent have been described in detail, the present patent is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present patent within the knowledge of those skilled in the art.

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