A even equipment for antistatic master batch of plastic

文档序号:1280557 发布日期:2020-08-28 浏览:16次 中文

阅读说明:本技术 一种用于塑胶抗静电母粒的均匀设备 (A even equipment for antistatic master batch of plastic ) 是由 武民绍 于 2020-06-01 设计创作,主要内容包括:本发明公开了一种用于塑胶抗静电母粒的均匀设备,包括:搅拌箱、若干个结构相同的原料箱、卸料阀门以及搅拌支撑支架,所述卸料阀门安装于搅拌箱底端上,所述搅拌箱安装于搅拌支撑支架上,所述搅拌箱内安装有搅拌结构以及辅助搅拌结构,若干个所述原料箱安装于搅拌支撑支架上,且若干个所述原料箱分别通过上料结构连接于搅拌箱上;本发明的有益效果是,通过翻转结构、辅助搅拌结构以及搅拌结构,使得搅拌箱内的液体成若干个垂直方向上360度搅拌漩涡流、若干个水平方向上360度搅拌漩涡流以及将搅拌箱1内底端原料翻转到液体原料顶端的效果,通过上料结构将原料大于一定大小的固态颗粒过滤掉,分别原料搅拌均匀以及避免沉淀。(The invention discloses a uniform device for plastic antistatic master batch, which comprises: the stirring device comprises a stirring box, a plurality of raw material boxes with the same structure, a discharging valve and a stirring support bracket, wherein the discharging valve is arranged at the bottom end of the stirring box; the invention has the beneficial effects that through the overturning structure, the auxiliary stirring structure and the stirring structure, the liquid in the stirring box is formed into a plurality of 360-degree stirring eddy currents in the vertical direction, a plurality of 360-degree stirring eddy currents in the horizontal direction and the effect of overturning the bottom raw material in the stirring box 1 to the top end of the liquid raw material, solid particles with the size larger than a certain size of the raw material are filtered through the feeding structure, and the raw material is uniformly stirred and prevented from precipitating respectively.)

1. A even equipment for antistatic master batch of plastic includes: the device comprises a stirring box (1), a plurality of raw material boxes (2) with the same structure, a discharging valve (3) and a stirring support bracket (4), and is characterized in that the discharging valve (3) is installed at the bottom end of the stirring box (1), the stirring box (1) is installed on the stirring support bracket (4), a stirring structure and an auxiliary stirring structure are installed in the stirring box (1), the raw material boxes (2) are installed on the stirring support bracket (4), and the raw material boxes (2) are respectively connected to the stirring box (1) through feeding structures;

the stirring structure includes: the stirring device comprises a stirring driving machine (5), a stirring driving gear (6), a plurality of stirring transmission gears (7) with the same structure, a plurality of stirring shafts (8) with the same structure, a plurality of stirring U-shaped rods (9) with the same structure and a stirring transmission chain (10);

stirring driver (5) are installed on agitator tank (1) lateral wall, stirring drive gear (6) are installed on stirring driver (5) drive end, a plurality of (mixing) shaft (8) are inserted on agitator tank (1) lateral wall through the bearing activity, a plurality of stirring drive gear (7) are installed in a plurality of on (mixing) shaft (8), a plurality of stirring U type pole (9) are installed in a plurality of respectively on (mixing) shaft (8), stirring drive chain (10) suit is in a plurality of on stirring drive gear (7) and stirring drive gear (6).

2. The apparatus of claim 1, wherein the auxiliary stirring structure comprises: the stirring auxiliary driving machine comprises a stirring auxiliary driving machine (11), a stirring auxiliary driving gear (12), a plurality of stirring auxiliary transmission gears (13) with the same structure, a plurality of stirring auxiliary circulating shafts (14) with the same structure, a plurality of turning blades (15) with the same structure, a plurality of turning discs (16) with the same structure and turning chains (17);

the stirring auxiliary driving mechanism is characterized in that the turnover disc (16) is arranged on the inner side of the stirring box (1), the stirring auxiliary circulating shaft (14) is movably arranged on the turnover disc (16) through a bearing, the turnover blades (15) are respectively arranged on the stirring auxiliary circulating shaft (14), the stirring auxiliary driving gear (13) is respectively arranged on the stirring auxiliary circulating shaft (14), the stirring auxiliary driving mechanism (11) is arranged on the outer side wall of the stirring box (1), the stirring auxiliary driving gear (12) is arranged on the driving end of the stirring auxiliary driving mechanism (11), and the turnover chain (17) is sleeved on the stirring auxiliary driving gear (13) and the stirring auxiliary driving gear (12).

3. The homogenizing device for the plastic antistatic master batch according to claim 1, characterized in that a turning structure is arranged in the stirring tank (1);

the flip structure includes: a plurality of turnover pipes (18) with the same structure, a plurality of turnover shafts (19) with the same structure, a turnover driving machine (20), a plurality of turnover gears (21) with the same structure and a turnover chain (22);

the turnover mechanism is characterized in that the turnover pipes (18) are respectively arranged on the inner side wall of the stirring box (1), the turnover shafts (19) are respectively movably arranged in the turnover pipes (18) through bearings, the turnover driving machine (20) is arranged on the outer side wall of the stirring box (1), the turnover gears (21) are respectively arranged on the turnover driving machine (20) and the turnover shafts (19), and the turnover chains (22) are sleeved on the turnover gears (21).

4. The apparatus for homogenizing the plastic antistatic master batch according to claim 3, wherein the plurality of the turnover pipes (18) are respectively provided with a turnover inlet (23) and a turnover outlet (24).

5. The homogenizing apparatus for plastic antistatic masterbatch according to claim 1, characterized in that the stirring tank (1) is provided with a water level meter (25).

6. The homogenizing device for the plastic antistatic master batch according to claim 1, wherein a temperature adjusting structure is arranged on the stirring structure;

the temperature regulation structure comprises: a pair of shunt tubes (26), a pump (27), a heating box (28) and an electric heating tube (29) with the same structure;

a plurality of louvre (30) have been seted up respectively in (mixing) shaft (8), it is a pair of be provided with the bearing that a plurality of structure is the same in shunt tubes (26) respectively, (a plurality of) mixing shaft (8) are respectively through bearing cartridge in a pair of on shunt tubes (26), install on agitator tank (1) heating cabinet (28), install in heating cabinet (28) electrothermal tube (29), pump (27) are installed on heating cabinet (28), and are a pair of shunt tubes (26) are installed respectively on pump (27) and heating cabinet (28).

7. The homogenizing apparatus for plastic antistatic master batch according to claim 1, characterized in that the stirring tank (1) is provided with an ultrasonic brake.

8. The homogenizing apparatus for plastic antistatic masterbatch according to claim 1, characterized in that the stirring tank (1) is provided with an observation port.

9. The apparatus of claim 1, wherein the feeding structure comprises: a plurality of feeding T-shaped pipes (31) with the same structure, a plurality of feeding shafts (32) with the same structure, a feeding driving machine (33), a plurality of feeding gears (34) with the same structure and a feeding chain (35);

the feeding T-shaped pipe (31) is connected to the stirring box (1) and the raw material box (2) respectively, the feeding shaft (32) is movably inserted into the feeding T-shaped pipe (31) through a bearing respectively, the feeding gears (34) are installed on the feeding shaft (32) respectively, the feeding chain (35) is sleeved on the feeding gears (34), the feeding driving machine (33) is installed on the feeding T-shaped pipe (31), and the driving end of the feeding driving machine (33) is connected to the feeding gears (34).

10. The homogenizing apparatus for plastic antistatic masterbatch according to claim 1, characterized in that the stirring tank (1) is provided with a one-way pressure valve.

Technical Field

The invention relates to the technical field of plastic production, in particular to a homogenizing device for plastic antistatic master batches.

Background

The master batch is an aggregate obtained by uniformly loading an excessive amount of pigment (dye) in resin, is a granular material which is prepared by mixing and mixing required various additives, fillers and a small amount of carrier resin in the plastic processing and forming process for convenience in operation, metering, mixing, melting, extruding, granulating and the like through equipment such as an extruder and the like, is called master batch, and needs to be uniformly mixed with various raw materials in the production process of the plastic antistatic master batch.

Disclosure of Invention

The invention aims to solve the problems, designs a homogenizing device for the plastic antistatic master batch, and solves the problem of uneven stirring in the prior art.

The technical scheme of the invention for realizing the aim is as follows: a even equipment for antistatic master batch of plastic includes: the stirring device comprises a stirring box, a plurality of raw material boxes with the same structure, a discharging valve and a stirring support bracket, wherein the discharging valve is arranged at the bottom end of the stirring box;

the stirring structure includes: the stirring driving mechanism, the stirring driving gear, a plurality of stirring transmission gears with the same structure, a plurality of stirring shafts with the same structure, a plurality of stirring U-shaped rods with the same structure and a stirring transmission chain;

the stirring driving mechanism is arranged on the side wall of the outer side of the stirring box, the stirring driving gear is arranged on the driving end of the stirring driving mechanism, the stirring shaft is movably inserted into the side wall of the stirring box through a bearing, the stirring driving gears are arranged on the stirring shaft, the stirring U-shaped rods are respectively arranged on the stirring shaft, and the stirring driving chain is sleeved on the stirring driving gears and the stirring driving gear.

Preferably, the auxiliary stirring structure comprises: the stirring auxiliary driving machine, the stirring auxiliary driving gear, a plurality of stirring auxiliary transmission gears with the same structure, a plurality of stirring auxiliary circulating shafts with the same structure, a plurality of overturning blades with the same structure, a plurality of overturning disks with the same structure and an overturning chain;

the stirring auxiliary circulating shaft is movably installed on the plurality of stirring auxiliary circulating shaft through a bearing, the plurality of overturning blades are installed on the plurality of stirring auxiliary circulating shaft respectively, the plurality of stirring auxiliary circulating shaft is installed on the plurality of stirring auxiliary circulating shaft respectively, the plurality of stirring auxiliary driving gear is installed on the plurality of stirring auxiliary circulating shaft, the stirring auxiliary driving gear is installed on the side wall of the outer side of the stirring box, the stirring auxiliary driving gear is installed on the driving end of the stirring auxiliary driving gear, and the overturning chain is sleeved on the plurality of stirring auxiliary driving gear and the stirring auxiliary driving gear.

Preferably, a turnover structure is arranged in the stirring box;

the flip structure includes: the overturning device comprises a plurality of overturning pipes with the same structure, a plurality of overturning shafts with the same structure, an overturning driving machine, a plurality of overturning gears with the same structure and an overturning chain;

the turnover driving mechanism is characterized in that the turnover pipes are respectively arranged on the side wall of the inner side of the stirring box, the turnover shafts are respectively movably arranged in the turnover pipes through bearings, the turnover driving mechanism is arranged on the side wall of the outer side of the stirring box, the turnover gears are respectively arranged on the turnover driving mechanism and the turnover shafts, and the turnover chains are sleeved on the turnover gears.

Preferably, a plurality of the turnover pipes are respectively provided with a turnover inlet and a turnover outlet.

Preferably, a water level meter is arranged on the stirring tank.

Preferably, the stirring structure is provided with a temperature adjusting structure;

the temperature regulation structure comprises: a pair of shunt tubes, a pumping pump, a heating box and an electric heating tube which have the same structure;

the stirring shaft is internally provided with a plurality of bearings with the same structure, the stirring shaft is inserted into the shunt tubes through the bearings respectively, the heating box is installed on the stirring box, the electric heating tube is installed in the heating box, the pumping pump is installed on the heating box, and the shunt tubes are installed on the pumping pump and the heating box respectively.

Preferably, an ultrasonic brake is arranged on the stirring box.

Preferably, the stirring box is provided with a viewing port.

Preferably, the feeding structure comprises: the feeding device comprises a plurality of feeding T-shaped pipes with the same structure, a plurality of feeding shafts with the same structure, a feeding driving machine, a plurality of feeding gears with the same structure and a feeding chain;

the feeding T-shaped pipe is connected to the stirring box and the raw material boxes respectively, the feeding shafts are movably inserted into the feeding T-shaped pipes through bearings respectively, the feeding gears are installed on the feeding shafts respectively, the feeding chains are sleeved on the feeding gears, the feeding driving machine is installed on the feeding T-shaped pipe, and the driving end of the feeding driving machine is connected to the feeding gears.

Preferably, a one-way pressure valve is arranged on the stirring box.

The homogenizing device for the plastic antistatic master batch, which is manufactured by the technical scheme of the invention, has the effects that liquid in the stirring box is formed into a plurality of 360-degree stirring eddy currents in the vertical direction, a plurality of 360-degree stirring eddy currents in the horizontal direction and raw materials at the bottom end in the stirring box 1 are turned to the top end of the liquid raw materials through the overturning structure, solid particles with the size larger than a certain size of the raw materials are filtered through the feeding structure, and the raw materials are uniformly stirred and prevented from precipitating respectively.

Drawings

Fig. 1 is a schematic sectional view of a main view of a homogenizing device for plastic antistatic master batch according to the present invention.

Fig. 2 is a schematic side sectional view of the homogenizing apparatus for the plastic antistatic masterbatch of the present invention.

Fig. 3 is a schematic top cross-sectional view of a homogenizing apparatus for plastic antistatic master batch according to the present invention.

Fig. 4 is a schematic diagram of an overturning structure of the homogenizing device for the plastic antistatic master batch.

Fig. 5 is a schematic diagram of an auxiliary stirring structure of the homogenizing device for the plastic antistatic master batch.

In the figure: 1-a stirring box; 2-a raw material tank; 3-a discharge valve; 4-stirring the supporting bracket; 5-stirring driving machine; 6-stirring driving gear; 7-stirring transmission gear; 8-stirring shaft; 9-stirring a U-shaped rod; 10-stirring a transmission chain; 11-stirring auxiliary driving machine; 12-stirring auxiliary driving gear; 13-stirring auxiliary transmission gear; 14-stirring auxiliary circulation shaft; 15-turning over the leaves; 16-flipping the disc; 17-turning over the chain; 18-a everting tube; 19-a turning shaft; 20-turning over a driver; 21-a flipping gear; 22-turnover chain; 23-a flip entry; 24-a flip outlet; 25-a water level meter; 26-a shunt tube; 27-a pump; 28-a heating box; 29-electric heating tubes; 30-heat dissipation holes; 31-feeding a T-shaped pipe; 32-a feeding shaft; 33-a feeding driver; 34-a feeding gear; 35-feeding chain.

Detailed Description

The present invention will be described in detail with reference to the accompanying drawings, and as shown in fig. 1 to 5, a homogenizing apparatus for plastic antistatic master batch includes: the stirring device comprises a stirring box 1, a plurality of raw material boxes 2 with the same structure, a discharging valve 3 and a stirring support bracket 4, wherein the discharging valve 3 is installed at the bottom end of the stirring box 1, the stirring box 1 is installed on the stirring support bracket 4, a stirring structure and an auxiliary stirring structure are installed in the stirring box 1, the raw material boxes 2 are installed on the stirring support bracket 4, and the raw material boxes 2 are respectively connected to the stirring box 1 through feeding structures; the stirring structure includes: the stirring device comprises a stirring driving machine 5, a stirring driving gear 6, a plurality of stirring transmission gears 7 with the same structure, a plurality of stirring shafts 8 with the same structure, a plurality of stirring U-shaped rods 9 with the same structure and a stirring transmission chain 10; the stirring driving mechanism 5 is arranged on the side wall of the outer side of the stirring box 1, the stirring driving gear 6 is arranged on the driving end of the stirring driving mechanism 5, a plurality of stirring shafts 8 are movably inserted into the side wall of the stirring box 1 through bearings, a plurality of stirring transmission gears 7 are arranged on the plurality of stirring shafts 8, a plurality of stirring U-shaped rods 9 are respectively arranged on the plurality of stirring shafts 8, and the stirring transmission chains 10 are sleeved on the plurality of stirring transmission gears 7 and the stirring driving gear 6; the auxiliary stirring structure comprises: the stirring auxiliary driving machine 11, the stirring auxiliary driving gear 12, a plurality of stirring auxiliary transmission gears 13 with the same structure, a plurality of stirring auxiliary circulating shafts 14 with the same structure, a plurality of turning blades 15 with the same structure, a plurality of turning discs 16 with the same structure and a turning chain 17; the stirring auxiliary driving mechanism comprises a plurality of overturning disks 16, a plurality of stirring auxiliary circulating shafts 14, a plurality of stirring auxiliary driving gears 13, a plurality of stirring auxiliary circulating shafts 14, a plurality of stirring auxiliary driving gears 12, a plurality of stirring auxiliary driving gears 13 and a plurality of stirring auxiliary driving gears 12, wherein the overturning disks 16 are arranged on the inner side of a stirring box 1, the stirring auxiliary circulating shafts 14 are movably arranged on the overturning disks 16 through bearings, the overturning blades 15 are respectively arranged on the stirring auxiliary circulating shafts 14, the stirring auxiliary driving gears 13 are respectively arranged on the stirring auxiliary circulating shafts 14, the stirring auxiliary driving mechanism 11 is arranged on the outer side wall of the stirring box 1, the stirring auxiliary driving gears 12 are arranged on the driving end of the stirring auxiliary driving; a turnover structure is arranged in the stirring box 1; the flip structure includes: a plurality of turnover pipes 18 with the same structure, a plurality of turnover shafts 19 with the same structure, a turnover driving machine 20, a plurality of turnover gears 21 with the same structure and a turnover chain (22); the overturning devices comprise a plurality of overturning pipes 18, a plurality of overturning shafts 19, an overturning driver 20, a plurality of overturning gears 21 and a plurality of overturning shafts 19, wherein the overturning pipes 18 are respectively arranged on the inner side wall of the stirring box 1, the overturning shafts 19 are respectively and movably arranged in the overturning pipes 18 through bearings, the overturning driver 20 is arranged on the outer side wall of the stirring box 1, the overturning gears 21 are respectively arranged on the overturning driver 20 and the overturning shafts 19, and the overturning chains (22) are sleeved on the overturning gears 21; the overturning pipes 18 are respectively provided with an overturning inlet 23 and an overturning outlet 24; a water level meter 25 is arranged on the stirring box 1; the stirring structure is provided with a temperature adjusting structure; the temperature regulation structure comprises: a pair of shunt tubes 26, a pump 27, a heating box 28 and an electric heating tube 29 with the same structure; heat dissipation holes 30 are respectively formed in the stirring shafts 8, a plurality of bearings with the same structure are respectively arranged in the pair of shunt tubes 26, the stirring shafts 8 are respectively inserted into the pair of shunt tubes 26 through the bearings, the heating box 28 is installed on the stirring box 1, the electric heating tube 29 is installed in the heating box 28, the pumping pump 27 is installed on the heating box 28, and the pair of shunt tubes 26 are respectively installed on the pumping pump 27 and the heating box 28; an ultrasonic brake is arranged on the stirring box 1; the stirring box 1 is provided with an observation port; the material loading structure comprises: a plurality of feeding T-shaped pipes 31 with the same structure, a plurality of feeding shafts 32 with the same structure, a feeding driving machine 33, a plurality of feeding gears 34 with the same structure and a feeding chain 35; the feeding T-shaped pipes 31 are respectively connected to the stirring box 1 and the raw material boxes 2, the feeding shafts 32 are respectively movably inserted into the feeding T-shaped pipes 31 through bearings, the feeding gears 34 are respectively installed on the feeding shafts 32, the feeding chains 35 are sleeved on the feeding gears 34, the feeding driver 33 is installed on the feeding T-shaped pipes 31, and the driving end of the feeding driver 33 is connected to the feeding gears 34; and a one-way pressure valve is arranged on the stirring box 1.

The present embodiment is characterized by comprising: the stirring device comprises a stirring box, a plurality of raw material boxes with the same structure, a discharging valve and a stirring support bracket, wherein the discharging valve is arranged at the bottom end of the stirring box; the stirring structure includes: the stirring driving mechanism, the stirring driving gear, a plurality of stirring transmission gears with the same structure, a plurality of stirring shafts with the same structure, a plurality of stirring U-shaped rods with the same structure and a stirring transmission chain; the stirring driving mechanism is arranged on the side wall of the outer side of the stirring box, the stirring driving gear is arranged on the driving end of the stirring driving mechanism, the stirring shafts are movably inserted into the side wall of the stirring box through bearings, the stirring transmission gears are arranged on the stirring shafts, the stirring U-shaped rods are respectively arranged on the stirring shafts, and the stirring transmission chains are sleeved on the stirring transmission gears and the stirring driving gear; through flip structure, supplementary stirring structure and stirring structure for 360 degrees stirring eddy currents on the liquid becomes a plurality of vertical direction in the agitator tank, 360 degrees stirring eddy currents on a plurality of horizontal direction and with agitator tank 1 bottom end raw materials upset to the effect on liquid raw materials top, filter the solid-state particle that is greater than the certain size with the raw materials through the material loading structure, raw materials stirring evenly and avoid deposiing respectively.

All the electrical components in the present application are connected with the power supply adapted to the electrical components through the wires, and an appropriate controller should be selected according to actual conditions to meet the control requirements, and specific connection and control sequences should be obtained.

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