Gravel processing is with broken mixture device

文档序号:1679179 发布日期:2020-01-03 浏览:39次 中文

阅读说明:本技术 一种砾石加工用破碎混合物装置 (Gravel processing is with broken mixture device ) 是由 宾霞 朱玉圆 胡园园 于 2019-11-14 设计创作,主要内容包括:本发明公开了一种砾石加工用破碎混合物装置,包括外壳、开设在外壳上的入口和收集箱,还包括搅拌机构和过滤机构,搅拌机构包括第一电机、第一转动轴、第一搅拌片、第二电机、第二转动轴和第二搅拌片,过滤机构包括第一振动动力件、第一振动板、第一筛孔、第一出口、第二振动动力件、第二振动板、第二筛孔、第二出口和传送件。通过设置两组搅拌组件和两组过滤组件使得砾石加工用破碎混合物装置对砾石的搅拌和过滤效果更好,将颗粒较大的砾石通过第一出口向外部排出,颗粒较小的砾石通过第二出口向外部排出,将一些粉尘通过传送件向收集箱中运输,进行回收利用。(The invention discloses a mixture crushing device for gravel processing, which comprises a shell, an inlet and a collecting box which are arranged on the shell, and further comprises a stirring mechanism and a filtering mechanism, wherein the stirring mechanism comprises a first motor, a first rotating shaft, a first stirring sheet, a second motor, a second rotating shaft and a second stirring sheet, and the filtering mechanism comprises a first vibration power part, a first vibrating plate, a first sieve mesh, a first outlet, a second vibration power part, a second vibrating plate, a second sieve mesh, a second outlet and a conveying part. Make broken mixture device for gravel processing to the stirring of gravel and filter effect better through setting up two sets of stirring subassemblies and two sets of filter assembly, discharge the great gravel of granule to the outside through first export, discharge the less gravel of granule to the outside through the second export, transport some dusts in to the collecting box through conveying spare, carry out recycle.)

1. A broken mixture device for gravel processing comprises a shell (1), an inlet (2) and a collecting box (18) which are arranged on the shell (1), and is characterized by further comprising a stirring mechanism and a filtering mechanism, wherein the stirring mechanism comprises a first motor (3), a first rotating shaft (4), a first stirring sheet (5), a second motor (10), a second rotating shaft (11) and a second stirring sheet (12), the filtering mechanism comprises a first vibration power part (6), a first vibration plate (7), a first sieve mesh (8), a first outlet (9), a second vibration power part (13), a second vibration plate (14), a second sieve mesh (15), a second outlet (16) and a conveying part (17), the first motor (3) is positioned below the opening (2) and is arranged on the inner wall of the shell (1), the first motor (3) is coaxially connected with the first rotating shaft (4), a first stirring sheet (5) is arranged on the first rotating shaft (4), a first vibration power part (6) is positioned below the first motor (3) and the first vibration power part (6) is installed on the outer wall of the shell (1), the first vibration power part (6) is connected with a first vibration plate (7), the first vibration plate (7) is obliquely arranged, the bottom end of the first vibration plate (7) is communicated with a first outlet (9), and a first sieve hole (8) is formed in the first vibration plate (7); second motor (10) are located the below of first vibration board (7) and install in the inner wall of casing (1), second motor (10) coaxial coupling second axis of rotation (11), set up second stirring piece (12) on second axis of rotation (11), second vibration power spare (13) are located the below of second motor (10) and install in the outer wall of casing (1), second vibration power spare (13) are connected second vibration board (14) and second vibration board (14) slope setting, second vibration board (14) are seted up second sieve mesh (15), the bottom of second vibration board (14) is led to second export (16), the below of second vibration board (14) sets up driving medium (17), the output of driving medium (17) is led to collecting box (18), the width of first sieve mesh (8) is greater than the width of second sieve mesh (15).

2. A crushing mixture device for gravel processing according to claim 1, characterized in that the first sieve mesh (8) and the second sieve mesh (15) are both circular in shape.

3. A crushing mixture device for gravel processing according to claim 1 or 2, characterized in that the conveyor (17) is a conveyor belt.

4. The crushed mixture device for gravel processing according to claim 3, wherein the angles of the first vibrating plate (7) and the second vibrating plate (14) are each 30 to 75 degrees.

5. A crushed mixture device for gravel processing according to claim 4, wherein the first stirring blade (5) and the second stirring blade (14) are both in the shape of a bar.

6. A crushing mixture device for gravel processing according to claim 1, characterized in that the number of inlets (2) is three.

7. A crushed mixture device for gravel processing according to claim 1, wherein the first screen openings (8) and the second screen openings (15) are both strip-shaped.

Technical Field

The invention relates to a gravel processing device, in particular to a mixture crushing device for gravel processing.

Background

The invention provides a crushing device for processing gravels, which is used for processing the gravels, but is a primary treatment for crushing the gravels, so that the gravels cannot be processed in different sizes through a gravel crushing device, the gravels with different sizes are applied to different occasions, and the gravel can be crushed and mixed in different sizes.

Disclosure of Invention

The invention aims to provide a crushing mixture device for gravel processing, which solves the problems in the background technology.

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

a mixture crushing device for gravel processing comprises a shell, an inlet and a collecting box which are arranged on the shell, a stirring mechanism and a filtering mechanism, wherein the stirring mechanism comprises a first motor, a first rotating shaft, a first stirring sheet, a second motor, a second rotating shaft and a second stirring sheet, the filtering mechanism comprises a first vibration power piece, a first vibrating plate, a first sieve mesh, a first outlet, a second vibration power piece, a second vibrating plate, a second sieve mesh, a second outlet and a conveying piece, the first motor is positioned below an opening and is arranged on the inner wall of a shell, the first motor is coaxially connected with the first rotating shaft, the first rotating shaft is provided with the first stirring sheet, the first vibration power piece is positioned below the first motor and is arranged on the outer wall of the shell, the first vibration power piece is connected with the first vibrating plate and is obliquely arranged, the bottom end of the first vibrating plate is communicated with the first outlet, a first sieve hole is formed in the first vibrating plate; the second motor is located the below of first vibration board and installs in the inner wall of casing, second motor coaxial coupling second axis of rotation, set up the second stirring piece in the second axis of rotation, the second vibrates the below that power spare is located the second motor and installs in the outer wall of casing, the second vibrates power spare and connects second vibration board and the slope of second vibration board and set up, the second sieve mesh is seted up to the second vibration board, the second export is access to the bottom of second vibration board, the below of second vibration board sets up the driving medium, the output of driving medium is access to the collecting box, the width of first sieve mesh is greater than the width of second sieve mesh.

As a still further scheme of the invention: the first sieve pore and the second sieve pore are both circular in shape. The conveying member is a conveyor belt. The angles of the first vibrating plate and the second vibrating plate are both 30-75 degrees. The first stirring sheet and the second stirring sheet are both in a strip shape.

As a still further scheme of the invention: the number of the inlets is three. The first sieve pore and the second sieve pore are both in a strip shape.

Compared with the prior art, the invention has the beneficial effects that: the first motor is coaxially connected with the first rotating shaft, the first rotating shaft is provided with a first stirring sheet, the first vibration power part is positioned below the first motor, the first vibration power part is connected with a first vibration plate, the first vibration plate is obliquely arranged, the bottom end of the first vibration plate is communicated with the first outlet, and the first vibration plate is provided with a first sieve hole; the second motor is coaxially connected with a second rotating shaft, a second stirring sheet is arranged on the second rotating shaft, a second vibration power part is positioned below the second motor and is arranged on the outer wall of the shell, the second vibration power part is connected with a second vibration plate, the second vibration plate is obliquely arranged, a second sieve hole is formed in the second vibration plate, the bottom end of the second vibration plate is communicated with a second outlet, a transmission part is arranged below the second vibration plate, the output end of the transmission part is communicated with the collection box, and the width of the first sieve hole is larger than that of the second sieve hole; make broken mixture device for gravel processing to the stirring of gravel and filter effect better through setting up two sets of stirring subassemblies and two sets of filter assembly, discharge the great gravel of granule to the outside through first export, discharge the less gravel of granule to the outside through the second export, transport some dusts in to the collecting box through conveying spare, carry out recycle.

Drawings

Fig. 1 is a schematic structural view of a crushing mixture device for gravel processing.

Fig. 2 is a schematic diagram of a crushing mechanism of the mixture crushing device for gravel processing.

In the figure: 1-shell, 2-inlet, 3-first motor, 4-first rotating shaft, 5-first stirring sheet, 6-first vibrating power piece, 7-first vibrating plate, 8-first sieve hole, 9-first outlet, 10-second motor, 11-second rotating shaft, 12-second stirring sheet, 13-second vibrating power piece, 14-second vibrating plate, 15-second sieve hole, 16-second outlet, 17-conveying piece and 18-collecting box.

Detailed Description

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

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