Roller for fluid mixer

文档序号:1527319 发布日期:2020-02-14 浏览:26次 中文

阅读说明:本技术 一种用于流体混合机的滚筒 (Roller for fluid mixer ) 是由 李志忠 李志光 李争象 于 2019-10-29 设计创作,主要内容包括:本发明公开一种用于流体混合机的滚筒,属于工业设备技术领域,包括滚筒主体、出料口、入料口,所述滚筒主体包括外层、内层,所述外层与内层之间设置有夹层,所述夹层内部设置有定位体,所述定位体为圆弧型结构,所述定位体与外层和内层滑动连接,所述定位体的两侧设置有推动体,本发明利用定位体的圆弧型结构使得定位体的重心下移,进而定位体与滚筒主体发生相对运动,带动推动体发生移动,从而带动扰流体发生旋转,干扰滚筒主体内部物料的流动方向,实现二次搅拌物料提高混合物料的效果,缩短混合物料的时间,提高工作效率。(The invention discloses a roller for a fluid mixer, which belongs to the technical field of industrial equipment and comprises a roller main body, a discharge port and a feeding port, wherein the roller main body comprises an outer layer and an inner layer, an interlayer is arranged between the outer layer and the inner layer, a positioning body is arranged in the interlayer, the positioning body is of an arc-shaped structure, the positioning body is in sliding connection with the outer layer and the inner layer, and pushing bodies are arranged on two sides of the positioning body.)

1. The utility model provides a cylinder for fluid mixer, includes cylinder main part (1), discharge gate (3), pan feeding mouth (14), its characterized in that, cylinder main part (1) is including outer (4), inlayer (5), be provided with the intermediate layer between outer (4) and inlayer (5), the inside location body (6) that is provided with of intermediate layer, the location body (6) are circular arc type structure, location body (6) and outer (4) and inlayer (5) sliding connection, the both sides of the location body (6) are provided with and promote body (10) to it is connected with location body (6) transmission to promote body (10), it disturbs fluid (12) to set up on one side of outer (4) is kept away from in inlayer (5), it is connected with the transmission of the body of disturbing (10).

2. The drum for a fluid mixing machine according to claim 1, wherein: the angle formed by the arc-shaped structure of the positioning body (6) is larger than 90 degrees.

3. The drum for a fluid mixing machine according to claim 1, wherein: the locating body (6) is provided with pulley (7) with the junction of skin (4) and inlayer (5), locating body (6) passes through pulley (7) and skin (4) and inlayer (5) sliding connection.

4. A drum for a fluid mixing machine, according to claim 3, wherein: the outer layer (4) is provided with a sliding groove (9), and the sliding groove (9) is connected with the pulley (7) in a sliding mode.

5. The drum for a fluid mixing machine according to claim 1, wherein: the positioning body (6) and the joint of the pushing body (10) are provided with a groove (8), the pushing body (10) is embedded into the groove (8), the groove (8) is of an inwards concave arc-shaped structure, and one end of the pushing body (10) embedded into the positioning body (6) is of an arc-shaped structure.

6. The drum for a fluid mixing machine according to claim 5, wherein: the edge of the groove (8) is provided with an arc edge.

7. The drum for a fluid mixing machine according to claim 5, wherein: the pushing body (10) comprises a moving frame (15) and a transmission gear (17), an elastic element (13) is arranged on one side, away from the positioning body (6), of the moving frame (15), the transmission gear (17) is located inside the moving frame (15), teeth (16) are arranged on one side wall of the inside of the moving frame (15), the teeth (16) are meshed with the transmission gear (17), and the transmission gear (17) is in transmission connection with the turbulent flow body (12).

8. The drum for a fluid mixing machine according to claim 1, wherein: and a turbulence strip (18) is arranged on the turbulence body (12).

9. The drum for a fluid mixing machine according to claim 1, wherein: and a guide plate (11) is arranged on one side of the inner layer (5) far away from the outer layer (4).

10. The drum for a fluid mixing machine according to claim 1, wherein: the lateral wall of the outer side of the roller body (1) is fixedly sleeved with a driving gear ring (2).

Technical Field

The invention discloses a roller for a fluid mixer, and belongs to the technical field of industrial equipment.

Background

Mixers, as the name implies, are mechanical devices that mix two or more materials. The existing mixing machines are various in types, such as a colter mixing machine, a non-gravity mixing machine, a V-shaped mixing machine, a drum type mixing machine and the like, wherein the drum type mixing machine utilizes the self weight of materials to continuously turn over for mixing.

The prior patent No. CN201821905333.9 discloses a livestock and poultry excrement fermentation cylinder sealing structure, including the cylinder body, fix the outer seal section of thick bamboo at cylinder body tip, fix shrouding in the frame and fix on the shrouding and be located the inside inner seal section of thick bamboo of outer seal section, still including setting up the sealing washer between outer seal section of thick bamboo and inner seal section, the sealing washer includes constant diameter section and the outer section of expanding that links to each other with the constant diameter section, the constant diameter section matches the suit on the inner seal section and with the outer section of expanding towards the cylinder body, constant diameter section and outer seal section clearance fit, the both sides that lie in the constant diameter section on the outer wall of inner seal section are equipped with spacing ring and stop screw, the outer section of expanding pressurized keeps elasticity in close contact with outer seal section.

Above-mentioned scheme seal structure has that area of contact is little, frictional resistance is little, the installation is dismantled conveniently and the leakproofness is good etc. advantage, but the cylinder is when rotating, and the material slides along the cylinder inner wall together for the material direction of motion is the same, causes material fluid structure relatively stable, thereby the effect of mixing is relatively poor, and efficiency is also relatively low.

Disclosure of Invention

The invention aims to solve the problems, and provides a roller for a fluid mixer, which utilizes an arc-shaped structure of a positioning body to enable the gravity center of the positioning body to move downwards, so that the positioning body and a roller main body move relatively to drive a pushing body to move, so that a turbulent body is driven to rotate, the flowing direction of materials in the roller main body is disturbed, the pushing body is used for stirring the materials while the roller main body works, and the mixing effect of the materials is improved.

The invention realizes the aim through the following technical scheme, and the roller for the fluid mixer comprises a roller main body, a discharge hole and a feeding hole, wherein the roller main body comprises an outer layer and an inner layer, an interlayer is arranged between the outer layer and the inner layer, a positioning body is arranged in the interlayer, the positioning body is of an arc structure, the positioning body is in sliding connection with the outer layer and the inner layer, pushing bodies are arranged on two sides of the positioning body and are in transmission connection with the positioning body, a disturbing fluid is arranged on one side of the inner layer, which is far away from the outer layer, and the pushing bodies are in transmission connection with the disturbing fluid.

Through adopting above-mentioned technical scheme, when utilizing the circular arc type structure of the location body to make the cylinder main part take place to rotate, the location body is because the relative ground of gravity reason position is fixed motionless to the location body promotes the body relatively and takes place to remove, and then drives and promotes the body and remove, makes and promotes the body and drive the vortex body and take place to rotate, disturbs the flow direction of the inside material of cylinder main part, promotes the body when realizing cylinder main part work and stirs the processing to the material, forms the mixed flow and improves the effect of mixing.

Preferably, the angle formed by the arc-shaped structure of the positioning body is larger than 90 degrees.

By adopting the technical scheme, the range covered by the positioning body is matched with the sliding range of the inner wall material of the inner layer.

Preferably, the locating body and the outer and inner layer are provided with pulleys at their junctions, and the locating body is slidably connected with the outer and inner layers via the pulleys.

Through adopting above-mentioned technical scheme, utilize the pulley to reduce the frictional resistance between the location body and skin and the inlayer.

Preferably, the outer layer is provided with a sliding groove, and the sliding groove is connected with the pulley in a sliding manner.

Through adopting above-mentioned technical scheme, utilize the spout further to reduce the frictional resistance between the location body and the skin.

Preferably, the locating body is provided with a groove at the joint with the pushing body, the pushing body is embedded into the groove, the groove is of an inwards concave arc structure, and one end of the pushing body, which is embedded into the locating body, is of an arc structure.

Through adopting above-mentioned technical scheme, utilize indent arc structure and arc structure to cooperate for the transmission between the location body and the promotion body is more smooth.

Preferably, the edge of the groove is provided with an arc-shaped edge.

Through adopting above-mentioned technical scheme, utilize the arc limit to reduce when promoting body and recess phase separation, the frictional resistance who causes.

Preferably, the pushing body comprises a moving frame and a transmission gear, one side, far away from the positioning body, of the moving frame is provided with an elastic element, the transmission gear is located inside the moving frame, tooth teeth are arranged on the side wall of one side inside the moving frame and meshed with the transmission gear, and the transmission gear is in transmission connection with the turbulence body.

Through adopting above-mentioned technical scheme, utilize the cooperation between removal frame, tooth and the drive gear, drive the vortex body and take place the rotation.

Preferably, the turbulent flow body is provided with a turbulent flow strip.

Through adopting above-mentioned technical scheme, utilize the vortex strip reinforcing to disturb the vortex effect of fluid to the material.

Preferably, a guide plate is arranged on one side of the inner layer far away from the outer layer.

Through adopting above-mentioned technical scheme, utilize the deflector to produce the disturbance effect to the material.

Preferably, the side wall of the outer side of the roller body is fixedly sleeved with a driving gear ring.

By adopting the technical scheme, the driving gear ring is connected with an external driving device, so that the stable rotation of the roller body is ensured.

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

firstly, when the roller main body rotates, the center of gravity of the positioning body moves downwards by utilizing the arc-shaped structure of the positioning body, so that the positioning body and the roller main body move relatively to drive the pushing body to move, thereby driving the turbulence body to rotate, disturbing the flow direction of materials in the roller main body, forming the effect of secondarily stirring the materials and improving the mixed materials, further shortening the time of mixing the materials and improving the working efficiency;

secondly, the sliding transmission effect between the positioning body and the outer layer and between the positioning body and the inner layer is enhanced by utilizing the pulleys, so that the relative movement effect of the positioning body and the roller main body is further ensured;

and thirdly, when the pushing body is embedded into the groove and separated from the groove, the generated acting force drives the movable frame to move, so that teeth on the movable frame are meshed with the transmission gear, the transmission gear drives the turbulence body to rotate, the flowing direction of the materials in the main body of the interference roller is played, and the effect of stirring the materials secondarily is formed.

Drawings

FIG. 1 is a schematic structural diagram of a drum for a fluid mixer according to the present invention, which is mainly used for showing the overall structure of the drum;

FIG. 2 is a schematic front sectional view of the main body of the roller according to the present invention, which is mainly used to show the internal structure of the main body of the roller;

FIG. 3 is a schematic side sectional view of the roller body of the present invention, which is mainly used to show the internal structure of the roller body;

FIG. 4 is a schematic structural view at A in FIG. 3, which is mainly used for showing the connection relationship between the positioning body and the pushing body;

FIG. 5 is a schematic structural diagram of a pushing body of the present invention, which is mainly used for showing the internal structure of the pushing body;

fig. 6 is a schematic structural diagram of the turbulent flow body of the present invention, which is mainly used for representing the internal structure of the turbulent flow body.

Reference numerals: 1. a drum body; 2. a driving gear ring; 3. a discharge port; 4. an outer layer; 5. an inner layer; 6. a positioning body; 7. a pulley; 8. a groove; 9. a chute; 10. a pushing body; 11. a guide plate; 12. a fluid-disturbing body; 13. a resilient element; 14. a feeding port; 15. moving the frame; 16. teeth; 17. a transmission gear; 18. a spoiler strip.

Detailed Description

In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "back", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only used for convenience of describing the present invention and simplifying the description, but do not indicate or imply that the designated device or element must have a specific orientation, be constructed in a specific orientation, and be operated, and thus should not be construed as limiting the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

As shown in fig. 1-6, a roller for a fluid mixer comprises a roller body 1, a discharge port 3, and a feed port 14, wherein a material is introduced into the roller body 1 through the feed port 14, a driving gear ring 2 is fixedly sleeved on the outer side wall of the roller body 1, the driving gear ring 2 is connected with an external driving device, and the driving device is engaged with the driving gear ring 2, so that the driving gear ring 2 rotates to drive the roller body 1 to rotate, and the roller body 1 comprises an outer layer 4 and an inner layer 5, so that the outer layer 4 and the inner layer 5 rotate simultaneously, an interlayer is arranged between the outer layer 4 and the inner layer 5, a positioning body 6 is arranged inside the interlayer, and the positioning body 6 is of a circular arc structure, so that the center of gravity of the positioning body 6 deviates towards the ground direction relative to the center of gravity of the inner layer 5, thereby improving the gravity cause to rotate the outer layer 4 and the inner layer 5, the positioning body 6 is always positioned at one end of the interlayer close to the ground, so that the relative movement between the positioning body 6 and the roller main body 1 is realized, meanwhile, the positioning body 6 is connected with the outer layer 4 and the inner layer 5 in a sliding way, the connecting parts of the positioning body 6 and the outer layer 4 and the inner layer 5 are provided with pulleys 7, so that the positioning body 6 is connected with the outer layer 4 and the inner layer 5 in a sliding way through the pulleys 7, thereby reducing the friction resistance between the positioning body 6 and the outer layer 4 and the inner layer 5, making the positioning body 6 more difficult to move when the outer layer 4 and the inner layer 5 rotate, thereby further ensuring the relative movement of the positioning body 6 and the roller main body 1, ensuring that the position of the positioning body 6 is not changed when the roller main body 1 rotates, and be provided with spout 9 on outer 4, utilize spout 9 to further reduce the frictional resistance between locating body 6 and the outer 4, further guarantee the relative motion effect of locating body 6 and cylinder main part 1.

The two sides of the positioning body 6 are provided with pushing bodies 10, and the pushing bodies 10 are in transmission connection with the positioning body 6, so that when the positioning body 6 and the roller main body 1 move relatively, the positioning body 6 drives the pushing bodies 10 to be in transmission connection, the joint of the positioning body 6 and the pushing bodies 10 is provided with a groove 8, and the pushing bodies 10 are embedded in the groove 8,

thereby when the roller body 1 rotates, the position of the positioning body 6 is not changed, so that the pushing body 10 is separated from the groove 8, the groove 8 is a concave arc structure, one end of the pushing body 10 embedded into the positioning body 6 is an arc structure, the pushing body 10 is more easily separated from the groove 8 by utilizing the matching of the concave arc structure and the arc structure, and the edge of the groove 8 is provided with an arc edge, so that the transmission fluency is further improved, when the pushing body 10 is separated from the groove 8, the pushing body 10 horizontally moves, meanwhile, the angle formed by the arc structure of the positioning body 6 is more than 90 degrees, the range covered by the positioning body 6 is matched with the sliding range of the material on the inner wall of the inner layer 5, when the pushing body 10 horizontally moves, the pushing body just fits with the sliding range of the material on the inner wall of the inner layer 5, and the pushing body 10 comprises a moving frame 15 and, the movable frame 15 moves, the transmission gear 17 is positioned in the movable frame 15, the tooth 16 is arranged on the side wall of one side in the movable frame 15, the tooth 16 is meshed with the transmission gear 17, when the movable frame 15 moves horizontally, the transmission gear 17 is driven to rotate, the elastic element 13 is positioned at one end of the movable frame 15, which is far away from the positioning body 6, when the pushing body 10 is separated from the groove 8, the elastic element 13 is in a compression state, when the pushing body 10 needs to be embedded into the groove 8 again, the pushing body 10 is driven to reset by the thrust provided by the elastic element 13, the transmission gear 17 is driven to rotate again, the transmission gear 17 is in transmission connection with the turbulent flow body 12, the transmission gear 17 drives the turbulent flow body 12 to rotate, the turbulent flow body 12 is provided with the turbulent flow strip 18, when the turbulent flow body 12 rotates along with the transmission gear 17, the turbulent flow strip 18 can be better contacted with, improve the material and mix the effect, be provided with deflector 11 on one side that outer 4 was kept away from to inlayer 5 simultaneously, utilize deflector 11 to produce the disturbance effect to the material, when realizing 1 mixing material of cylinder main part, the secondary stirring material improves mixing material's effect, shortens mixing material's time, improves work efficiency.

It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

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