Formula chain conveyor is adjusted to three-dimensional multi-angle

文档序号:964315 发布日期:2020-11-03 浏览:18次 中文

阅读说明:本技术 一种三坐标多角度调节式链式输送机 (Formula chain conveyor is adjusted to three-dimensional multi-angle ) 是由 杨海俊 于 2020-07-20 设计创作,主要内容包括:本发明提供一种三坐标多角度调节式链式输送机,包括四个第一支撑腿,四个所述第一支撑腿上方均可拆卸连接第一支撑板,第一支撑板上方固定连接两个第一支撑条,两个所第一支撑条上端可拆卸连接第一传动轴,两个第一支撑条一侧可拆卸连接第一移动结构,第一移动结构上方设有两个第二支撑条,两个第二支撑条可拆卸连接第二传动轴,第一转动轴和第二转动轴之间设有三角收缩结构,三角收缩结构上端可拆卸连接第三转动轴,且第二转动轴和第三转动轴上均通过第一传送带连接,第一传送带上设有第一传送链,第一传送链可拆卸连接第二传送带,且两个三角收缩结构之间设有第一连接轴,第一连接轴上设有伸缩限位结构,伸缩限位结构对应限位第一传送带。(The invention provides a three-coordinate multi-angle adjusting type chain conveyor, which comprises four first supporting legs, wherein a first supporting plate can be detachably connected above the four first supporting legs, two first supporting bars are fixedly connected above the first supporting plate, the upper ends of the two first supporting bars are detachably connected with a first transmission shaft, one side of each of the two first supporting bars is detachably connected with a first moving structure, two second supporting bars are arranged above the first moving structure and detachably connected with a second transmission shaft, a triangular contraction structure is arranged between the first transmission shaft and the second transmission shaft, the upper end of the triangular contraction structure is detachably connected with a third transmission shaft, the second transmission shaft and the third transmission shaft are both connected through a first transmission belt, the first transmission belt is provided with a first transmission chain, the first transmission chain is detachably connected with a second transmission belt, and a first connecting shaft is arranged between the two triangular contraction structures, the first connecting shaft is provided with a telescopic limiting structure, and the telescopic limiting structure corresponds to the first limiting conveyor belt.)

1. The utility model provides a formula chain conveyor is adjusted to three-dimensional multi-angle, includes four first supporting leg (1), its characterized in that: four first supporting legs (1) are connected with a first supporting plate (2) in a detachable manner, two first supporting bars (3) are fixedly connected with the upper portion of the first supporting plate (2), two first transmission shafts (4) are connected with the upper ends of the first supporting bars (3) in a detachable manner, a first moving structure (5) is connected with one side of each of the two first supporting bars (3) in a detachable manner, two second supporting bars (6) are arranged above the first moving structure (5), a second transmission shaft (41) is connected with the two second supporting bars (6) in a detachable manner, a triangular contraction structure (7) is arranged between the first rotating shaft (4) and the second rotating shaft (41), the upper end of the triangular contraction structure (7) is connected with the third rotating shaft (42) in a detachable manner, and the first transmission belt (43) is connected with the first rotating shaft (4), the second rotating shaft (41) and the third rotating shaft (42), be equipped with first conveying chain (44) on first conveyer belt (43), first conveying chain (44) can be dismantled and connect second conveyer belt (45), and two be equipped with first connecting axle (8) between triangle contraction structure (7), be equipped with flexible limit structure (9) on first connecting axle (8), flexible limit structure (9) correspond spacingly first conveyer belt (43).

2. The three-coordinate, multi-angle adjustable chain conveyor of claim 1, wherein: first removal structure (5) include two electric telescopic handle (51), two first electric telescopic handle (51) can dismantle the connection second support bar (6), first backup pad (2) top is equipped with first spout (21), be equipped with first slide bar (52) in first spout (21), first slide bar (52) run through second support bar (6).

3. The three-coordinate, multi-angle adjustable chain conveyor of claim 1, wherein: the first supporting strips (3) and the second supporting strips (6) are arranged in an L-shaped manner.

4. The three-coordinate, multi-angle adjustable chain conveyor of claim 1, wherein: all be equipped with three second spout (46), three on first transmission shaft (4), second transmission shaft (41) and third transmission shaft (42) first drive wheel (47) is connected to the equal bearing in second spout (46) both ends, just on first transmission shaft (4) first drive wheel (47) one end all is equipped with a driving motor (48).

5. The three-coordinate, multi-angle adjustable chain conveyor of claim 1, wherein: the triangular contraction structure (7) comprises a first connecting rod (71), the outer side of the first connecting rod (71) is slidably connected with three first connecting rings (72), the outer sides of the three first connecting rings (72) are detachably connected with first expansion plates (73), one ends of the three first expansion plates (73) are detachably connected with second connecting rings (74), the third connecting rings (74) are respectively in bearing connection with the first rotating shaft (4), the second rotating shaft (41) and one end of the third rotating shaft (42), the inner opening of the first connecting ring (72) connected with the third rotating shaft (42) is in meshing connection with a second driving motor (75), and the second driving motor (75) is arranged in the first connecting rod (71).

6. The three-coordinate, multi-angle adjustable chain conveyor of claim 1, wherein: flexible limit structure (9) include three third go-between (91), it is three third go-between (91) sliding connection in first connecting axle (8), and three third go-between (91) outside all is equipped with first telescopic link (92), connection U word board (93), two can be dismantled to first telescopic link (92) one end both sides U word board (93) symmetry sets up, and two U word board (93) internal orifice sliding connection first conveyer belt (43).

Technical Field

The invention relates to the technical field of chain conveyors, in particular to a three-coordinate multi-angle adjustable chain conveyor.

Background

The chain conveyer is a conveyer which utilizes chains to drag and bear materials or utilizes laths, metal mesh belts, roller ways and the like arranged on the chains to bear the materials. It can be divided into chain type, chain plate type, chain net type and plate type.

The existing chain conveyor is provided with two transmission shafts which are correspondingly connected through a chain, and then a conveyor belt is arranged on the chain, so that chain conveying is realized;

however, the chain is easy to deform, so that when the angle of the conveying end is changed, the chain and the transmission shaft can be derailed to a certain extent, and the technical problem of inconvenient use is caused.

Disclosure of Invention

The invention provides a three-coordinate multi-angle adjusting type chain conveyor which is used for solving the technical problem that in the background technology, a chain is easy to deform, so that when the angle of a conveying end is changed, the chain and a transmission shaft can be derailed to a certain extent, and the use is inconvenient.

In order to solve the technical problems, the technical scheme provided by the invention is as follows: a three-coordinate multi-angle adjusting type chain conveyor comprises four first supporting legs, wherein a first supporting plate can be detachably connected above the four first supporting legs, two first supporting bars are fixedly connected above the first supporting plate, the upper ends of the two first supporting bars are detachably connected with a first transmission shaft, one side of each of the two first supporting bars is detachably connected with a first moving structure, two second supporting bars are arranged above the first moving structure and detachably connected with a second transmission shaft, a triangular contraction structure is arranged between the first rotating shaft and the second rotating shaft, the upper end of the triangular contraction structure is detachably connected with a third rotating shaft, the first transmission shaft, the second rotating shaft and the third rotating shaft are connected through a first transmission belt, and a first transmission chain is arranged on the first transmission belt, the first conveying chain is detachably connected with the second conveying belt, a first connecting shaft is arranged between the triangular shrinkage structures, a telescopic limiting structure is arranged on the first connecting shaft, and the telescopic limiting structure corresponds to and limits the first conveying belt.

Further, first removal structure includes two electric telescopic handle, two first electric telescopic handle can dismantle the connection the second support bar, first backup pad top is equipped with first spout, be equipped with first slide bar in the first spout, first slide bar runs through the second support bar.

Furthermore, the first supporting strip and the second supporting strip are arranged in an L-shaped manner.

Furthermore, all be equipped with three second spout on first transmission shaft, second transmission shaft and the third transmission shaft, it is three first drive wheel is connected to the equal bearing in second spout both ends, just in the first transmission shaft first drive wheel one end all is equipped with a driving motor.

Furthermore, the triangular contraction structure comprises a first connecting rod, wherein the outer side of the first connecting rod is slidably connected with three first connecting rings, the outer sides of the first connecting rings are detachably connected with a first expansion plate, the outer sides of the first connecting rings are three, one end of the first expansion plate is detachably connected with a second connecting ring, the second connecting ring is respectively in bearing connection with the first rotating shaft, the second rotating shaft and one end of the third rotating shaft, and is connected with the third rotating shaft through the inner opening of the first connecting ring in an occluded manner and is connected with a second driving motor, and the second driving motor is arranged in the first connecting rod.

Furthermore, flexible limit structure includes three third go-between, and is three third go-between sliding connection in first connecting axle, and three the third go-between outside all is equipped with first telescopic link, connection U word board, two can be dismantled to first telescopic link one end both sides U word board symmetry sets up, and two U word inboard mouthful sliding connection first conveyer belt.

Compared with the prior art, the invention has the beneficial effects that:

the method comprises the following steps that firstly, two first supporting strips are symmetrically arranged on a first supporting plate, one side of each first supporting strip is provided with a first moving structure, and the first supporting plate is provided with a second moving structure;

the distance between the first transmission shaft and the second rotation shaft is adjusted by the movement of the first moving structure, and then the corresponding inclination angle and height are adjusted by the triangular contraction structure,

finally, the length of the first conveyor belt in the triangular structure is adjusted on one hand through the telescopic limiting structure, and the inclined angle of the first conveyor belt at the material guiding position is adjusted on the other hand.

Drawings

The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate exemplary embodiments of the invention and together with the description, serve to explain the principles of the invention.

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

FIG. 2 is a schematic view of a first moving structure of the present invention;

fig. 3 is a schematic view of the triangular contraction structure of the present invention.

In the figure: 1-a first support leg, 2-a first support plate, 3-a first support bar, 4-a first transmission shaft, 41-a second rotation shaft, 42-a third rotation shaft, 43-a first conveyor belt, 44-a first transmission chain, 45-a second conveyor belt, 46-a second chute, 47-a first transmission wheel, 48-a first driving motor, 5-a first moving structure, 51-a first electric telescopic rod, 52-a first sliding rod, 6-a second support bar, 7-a triangular contracting structure, 71-a first connecting rod, 72-a first connecting ring, 73-a first telescopic plate, 74-a second connecting ring, 75-a second driving motor, 8-a first connecting shaft, 9-a telescopic limiting structure, 91-a third connecting ring, 92-a first telescopic rod, 93-U shaped board.

Detailed Description

Reference will now be made in detail to various exemplary embodiments of the invention, the detailed description should not be construed as limiting the invention but as a more detailed description of certain aspects, features and embodiments of the invention.

It will be apparent to those skilled in the art that various modifications and variations can be made in the specific embodiments of the present disclosure without departing from the scope or spirit of the disclosure. Other embodiments will be apparent to those skilled in the art from consideration of the specification. The specification and examples are exemplary only.

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