Line rod type material turnover vehicle

文档序号:546028 发布日期:2021-06-04 浏览:4次 中文

阅读说明:本技术 一种线棒型物料周转车 (Line rod type material turnover vehicle ) 是由 朱志荣 于 2019-11-19 设计创作,主要内容包括:本发明公开一种线棒型物料周转车,包括四根下端带有滚轮的立柱、顶板以及若干分层结构,四根立柱呈方形分布,顶板为方形板且顶板的四个顶角与四根立柱的顶端分别固定连接,形成方框车架,若干分层结构沿方框车架纵向设置,将方框车架分为若干放料层架,分层结构包括两横板以及若干横轴辊,每一分层结构中,两横板分别设置在方框车架对侧两立柱之间且两横板位于同一水平高度,横轴辊均匀设置在两横板之间,每一横板与其上方横板或顶板之间均匀设有若干竖轴辊。其优点在于,将放料层架的底面和侧面设计为多轴辊结构,使物料与其底面和侧面的接触均由滑动摩擦转变为滚动摩擦,物料进出更为方便,转移速率更快。(The invention discloses a line rod type material turnover vehicle which comprises four upright posts, a top plate and a plurality of layered structures, wherein the lower ends of the upright posts are provided with idler wheels, the four upright posts are distributed in a square shape, the top plate is a square plate, four vertex angles of the top plate are respectively and fixedly connected with the top ends of the four upright posts to form a square frame, the layered structures are longitudinally arranged along the square frame to divide the square frame into a plurality of material placing layered frames, each layered structure comprises two transverse plates and a plurality of transverse shaft rollers, in each layered structure, the two transverse plates are respectively arranged between the two upright posts on opposite sides of the square frame, the two transverse plates are positioned at the same horizontal height, the transverse shaft rollers are uniformly arranged between the two transverse plates, and. The bottom surface and the side surface of the discharging layer frame are designed into a multi-shaft roller structure, so that the contact of the material with the bottom surface and the side surface is changed from sliding friction to rolling friction, the material can enter and exit more conveniently, and the transfer rate is higher.)

1. The utility model provides a line stick type material turnover vehicle which characterized in that: including four stands that the lower extreme has the gyro wheel, roof and a plurality of layered structure, four stands are square distribution, four apex angles that the roof is square board and roof and the top of four stands are fixed connection respectively, form the square frame, a plurality of layered structure vertically sets up along the square frame, divide into a plurality of blowing shelves with the square frame, layered structure includes two diaphragms and a plurality of cross axle roller, in each layered structure, two diaphragms set up respectively between square frame offside stand and two diaphragms are located same level, the cross axle roller evenly sets up between two diaphragms.

2. The line bar type material turnover vehicle of claim 1, wherein: a plurality of vertical shaft rollers are uniformly arranged between each transverse plate and the transverse plate or the top plate above the transverse plate, and in each discharging layer frame, the distance between two vertical shaft rollers at the opposite side is smaller than that between two vertical columns at the opposite side.

3. The line bar type material turnover vehicle of claim 1 or 2, wherein: and a plurality of V-shaped concave ring grooves are uniformly formed from one end of the transverse shaft roller to the other end of the transverse shaft roller.

4. The line bar type material turnover vehicle of claim 3, wherein: both sides all are equipped with material blocking structure around the roof.

5. The line bar type material turnover vehicle of claim 4, wherein: the material blocking structure is an inverted L-shaped plate, and a linear slot matched with the width of the L-shaped plate is formed in the top plate.

6. The line bar type material turnover vehicle of claim 4, wherein: the material blocking structure is a T-shaped rod piece, and a circular slot matched with the diameter of the T-shaped rod piece is formed in the top plate.

Technical Field

The invention relates to the technical field of transfer machinery, in particular to a linear rod type material transfer vehicle.

Background

In a production workshop, a multi-layer material transfer vehicle is generally used for transferring materials which are not suitable for being placed in a superposition mode or materials which need to be placed in a partition mode.

Disclosure of Invention

The invention aims to provide a line rod type material turnover vehicle aiming at the existing technical situation, the bottom surface and the side surface of a material placing layer frame are designed into a multi-shaft roller structure, so that the contact of materials with the bottom surface and the side surface is changed from sliding friction into rolling friction, the materials can enter and exit more conveniently, the transfer rate is higher, meanwhile, material blocking structures are arranged on the front side and the rear side of a square frame, the materials can be prevented from sliding out, and the structure is simple and easy to use.

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

the utility model provides a line stick type material turnover vehicle, have the stand of gyro wheel including four lower extremes, roof and a plurality of layered structure, four stands are square distribution, four apex angles that the roof is square board and roof and the top of four stands are fixed connection respectively, form the square frame, a plurality of layered structure vertically sets up along the square frame, divide into a plurality of blowing shelves with the square frame, layered structure includes two diaphragms and a plurality of horizontal axis roller, in each layered structure, two diaphragms set up respectively between square frame offside two stands and two diaphragms are located same level, the horizontal axis roller evenly sets up between two diaphragms.

Furthermore, a plurality of vertical shaft rollers are uniformly arranged between each transverse plate and the transverse plate or the top plate above the transverse plate, and in each discharging layer frame, the distance between two vertical shaft rollers on the opposite side is smaller than that between two vertical columns on the opposite side.

Furthermore, a plurality of V-shaped concave ring grooves are uniformly formed from one end of the transverse shaft roller to the other end of the transverse shaft roller.

Furthermore, both sides all are equipped with material blocking structure around the roof.

Furthermore, the material blocking structure is an inverted L-shaped plate, and a linear slot matched with the width of the L-shaped plate is formed in the top plate.

Furthermore, the material blocking structure is a T-shaped rod piece, and a circular slot matched with the diameter of the T-shaped rod piece is formed in the top plate.

The invention has the beneficial effects that:

the multi-shaft roller type material storage rack has the advantages that the bottom surface and the side surface of the material storage rack are designed into the multi-shaft roller structure, so that the contact between materials and the bottom surface and the side surface of the material storage rack is changed from sliding friction to rolling friction, the materials can enter and exit more conveniently, the transfer rate is higher, meanwhile, the material blocking structures are arranged on the front side and the rear side of the square frame rack, the materials can be prevented from sliding out, the structure is simple, and the use is easy.

Drawings

FIG. 1 is a schematic structural diagram of the present invention;

FIG. 2 is a schematic structural view of an L-shaped plate of the present invention;

FIG. 3 is a schematic structural view of a T-bar of the present invention.

Description of the labeling: 1. the device comprises upright columns, 2, a top plate, 3, rollers, 4, a transverse plate, 5, a transverse shaft roller, 6, a vertical shaft roller, 7, linear slots, 8, L-shaped plates, 9, circular slots, 10 and T-shaped rods.

Detailed Description

Please refer to fig. 1, a line stick type material turnover vehicle, including four stand columns 1 with rollers 3 at the lower ends, a top plate 2 and a plurality of layered structures, wherein the four stand columns 1 are distributed in a square shape, the top plate 2 is a square plate and four apex angles of the top plate 2 are respectively and fixedly connected with the top ends of the four stand columns 1 to form a square frame, the plurality of layered structures are arranged along the longitudinal direction of the square frame, the square frame is divided into a plurality of material placing layered frames, each layered structure includes two transverse plates 4 and a plurality of transverse shaft rollers 5, in each layered structure, the two transverse plates 4 are respectively arranged between the two stand columns 1 at the opposite sides of the square frame, the two transverse plates 4 are located at the same horizontal height, and the. Preferably, a plurality of V-shaped concave ring grooves are uniformly formed from one end of the horizontal roller 5 to the other end of the horizontal roller, so that the contact area of the material and the horizontal roller 5 is reduced.

Above-mentioned technical scheme evenly is equipped with a plurality of vertical axis rollers 6 between every diaphragm 4 and its top diaphragm 4 or roof 2, and in every blowing layer frame, the interval of two vertical axis rollers 6 of offside is less than the interval of two stands 1 of offside.

The invention has the advantages that the bottom surface and the side surface of the discharging layer frame are designed into the multi-shaft roller structure, so that the contact of the materials with the bottom surface and the side surface is changed from sliding friction into rolling friction, the materials can enter and exit more conveniently, and the transfer rate is higher.

Referring to fig. 2 and 3, the front and rear sides of the top plate 2 are provided with material blocking structures. In one embodiment, the material blocking structure is an inverted L-shaped plate 8, and a linear slot 7 matched with the width of the L-shaped plate 8 is arranged on the top plate 2. In another embodiment, the material blocking structure is a T-shaped rod 10, and the top plate 2 is provided with a circular slot 9 with a diameter matched with that of the T-shaped rod 10.

Specifically, the L-shaped plate members 8 or the T-shaped bars 10 on the rear side of the top plate 2 are previously installed, and then each of the discharge racks is fed, and after the feeding is completed, the L-shaped plate members 8 or the T-shaped bars 10 on the front side of the top plate 2 are installed. The L-shaped plate 8 is matched with a rod-shaped material, and the T-shaped rod 10 is matched with a plate-shaped material.

It should be understood that the above-mentioned embodiments are merely preferred embodiments of the present invention, and not intended to limit the scope of the invention, therefore, all equivalent changes in the principle of the present invention should be included in the protection scope of the present invention.

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