Mixing and guiding machine for alumina powder processing

By introducing an anti-overflow device and a feeding device into the mixing and guiding machine, the problems of powder splashing and loss during the processing of alumina powder are solved, and the normal use of the equipment and the protection of economic benefits are achieved.

CN223393285UActive Publication Date: 2025-09-30淄博奥太新材料科技有限公司
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Patent Information

Application Number
CN202422202491.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-09-30
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

When existing mixing and guiding equipment is used to mix alumina powder and other materials, the powder is prone to splashing and the materials are prone to scattering around the processing equipment, increasing the workload of the cleaning staff and causing economic losses.

Method used

A mixing and guiding machine for alumina powder processing was designed. It adopted an overflow prevention device and a feeding device, including a stirring rod, a guide cover, a discharge cover and a pressing plate. The overflow prevention device collected the splashed powder material, and the feeding device assisted the material transportation to reduce the material loss.

Benefits of technology

It effectively reduces the probability of powdered materials splashing out of the mixing barrel, reduces the workload and economic losses of cleaning personnel, and ensures the normal use of equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of material mixing equipment, in particular to a material mixing and guiding machine for alumina powder processing, which comprises a material mixing barrel, a support frame is fixedly connected to the surface of the material mixing barrel, a material guiding pipe is fixedly connected to the lower surface of the material mixing barrel, the material guiding pipe is communicated with the material mixing barrel, a control motor is mounted on the surface of the material guiding pipe, and the control motor is connected with the support frame. A driving motor is mounted on the surface of the mixing barrel, a stirring rod is fixedly connected to the driving end of the driving motor, an anti-overflow device is arranged on the surface of the stirring rod, the anti-overflow device comprises a mounting rod, the mounting rod is fixedly connected with the surface of the stirring rod, and a guide cover is fixedly connected to the lower surface of the mounting rod. According to the anti-overflow device disclosed by the utility model, splashing powdery materials can be conveniently collected, the probability that the powdery materials are splashed out of the mixing barrel is reduced, the workload of cleaning personnel is reduced, the loss of the materials is reduced, the economic loss of a user is reduced, and normal use of equipment is facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of mixing equipment, in particular to a mixing material guiding machine for processing alumina powder. Background Art

[0002] Alumina powder production technology is becoming increasingly sophisticated, and it is now possible to produce alumina powders below 1 micron in size. Nano-alumina transparent liquid XZ-LY101 is colorless and transparent. This nano-alumina transparent dispersion uses 5-10 nanometer alumina, which is screened through multiple layers of deep processing. A mixing and feeding machine is often used during the processing of alumina powder.

[0003] The inventors found in their daily work that when most mixing and guiding equipment are stirring alumina powder and other materials, the powder is prone to splashing, and the materials are prone to scattering around the processing equipment, increasing the workload of the cleaning personnel. At the same time, the loss of materials can easily cause certain economic losses to the producers, which is not conducive to the normal use of the equipment. Improvements are needed. Utility Model Content

[0004] The purpose of the utility model is to solve the shortcomings of most mixing and guiding equipment in the prior art, that is, when stirring alumina powder and other materials, powder is prone to splashing, materials are prone to scattering around the processing equipment, increasing the workload of cleaning personnel, and at the same time, material loss is likely to cause certain economic losses to producers, which is not conducive to the normal use of the equipment. A mixing and guiding machine for alumina powder processing is proposed to solve the shortcomings of most mixing and guiding equipment in the prior art, that is, when stirring alumina powder and other materials, powder is prone to splashing, materials are prone to scattering around the processing equipment, increasing the workload of cleaning personnel, and material loss is likely to cause certain economic losses to producers, which is not conducive to the normal use of the equipment.

[0005] The control cabinet that is located at the top of described support frame is equipped with the control cabinet that is located at the top of described support frame, and the control cabinet that is located at the top of described support frame is equipped with the control cabinet that is located at the top of described support frame.

[0006] Preferably, a pressing plate is fixedly connected to the lower surface of the discharge cover, and the pressing plate also applies pressure to the splashed material during the rotation process.

[0007] Preferably, the pressing plate is arranged at an angle.

[0008] Preferably, the longitudinal section of the guide cover is trapezoidal, which facilitates guiding the material.

[0009] Preferably, there are three anti-overflow devices, which are arranged in a circular array. During processing, the material to be mixed is added to the mixing barrel, and then the drive motor is turned on. The drive motor drives the stirring rod to rotate, and then the material is fully stirred. During the stirring process, the material is prone to splashing. The stirring rod drives the guide cover to rotate, and the guide cover covers the powdered material splashed in the mixing barrel during the rotation. Then the material is ejected from the discharge cover through the flow channel. The ejected material puts pressure on the material splashed below, and the pressure plate also puts pressure on the splashed material during the rotation.

[0010] Preferably, a feeding device is provided inside the mixing barrel, and the feeding device is located below the stirring rod. The feeding device facilitates the transportation of auxiliary materials and facilitates the normal use of the equipment.

[0011] Preferably, the unloading device includes a telescopic cylinder, which is located on one side of the mixing barrel. The surface of the mixing barrel is fixedly connected to a mounting sleeve, and the telescopic cylinder is fixed to the surface of the mixing barrel through the mounting sleeve. The driving end of the telescopic cylinder is fixedly connected to a connecting block, and one side of the connecting block is fixedly connected to a baffle. One end of the baffle is inserted into the mixing barrel, and the baffle slides with the inner wall of the mixing barrel. The baffle is located below the stirring rod. When unloading, the telescopic cylinder can push the connecting block, and then the connecting block drives the baffle to move. The baffle then moves away from the top of the connection between the guide tube and the mixing barrel, and then the mixed material enters the guide tube, and then the material can be transported.

[0012] Compared with the prior art, the advantages and positive effects of the present invention are:

[0013] In the utility model, during processing, the materials to be mixed are added into the mixing barrel, and then the driving motor is turned on, which drives the stirring rod to rotate, and then the materials are fully stirred. During the stirring process, the materials are prone to splashing, and the stirring rod drives the guide cover to rotate. During the rotation, the guide cover covers the powdered materials splashed in the mixing barrel, and then the materials are ejected from the discharge cover through the flow channel. The ejected materials put pressure on the materials splashed below, and the pressing plate also puts pressure on the splashed materials during the rotation. The anti-overflow device facilitates the collection of the splashed powdered materials, reduces the probability of the powdered materials splashing out of the mixing barrel, reduces the workload of the cleaning personnel, reduces the loss of materials, reduces the economic losses of users, and facilitates the normal use of the equipment.

[0014] In the utility model, when unloading, the telescopic cylinder can push the connecting block, and then the connecting block drives the baffle to move, and the baffle is then moved away from the upper part of the connection between the guide tube and the mixing barrel, and then the mixed material enters the guide tube, and then the material can be transported. Through the unloading device, the auxiliary material is transported, which facilitates the normal use of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 The utility model provides a three-dimensional structural diagram of a mixing and guiding machine for processing aluminum oxide powder;

[0016] Figure 2 This is a schematic diagram of the structure of a mixing and guiding machine for processing alumina powder proposed in the utility model;

[0017] Figure 3 The utility model provides a cross-sectional structural diagram of a mixing and guiding machine for processing alumina powder;

[0018] Figure 4 This is a partial structural diagram of a mixing and guiding machine for processing alumina powder proposed in the utility model;

[0019] Figure 5 The utility model provides a structural schematic diagram of an overflow prevention device in a mixing and guiding machine for processing aluminum oxide powder.

[0020] Legend:

[0021] 1. Mixing barrel; 2. Support frame; 3. Material guide pipe; 4. Drive motor; 5. Stirring rod; 6. Control motor; 7. Anti-overflow device; 71. Mounting rod; 72. Guide cover; 73. Connecting pipe; 74. Discharge cover; 75. Pressing plate; 76. Flow channel; 8. Unloading device; 81. Mounting sleeve; 82. Telescopic cylinder; 83. Connecting block; 84. Baffle. DETAILED DESCRIPTION

[0022] See also Figure 1-5The utility model provides a technical solution: a mixing and guiding machine for processing alumina powder, comprising a mixing barrel 1, a support frame 2 is fixedly connected to the surface of the mixing barrel 1, a guide pipe 3 is fixedly connected to the lower surface of the mixing barrel 1, the guide pipe 3 is connected to the mixing barrel 1, a control motor 6 is installed on the surface of the guide pipe 3, a driving motor 4 is installed on the surface of the mixing barrel 1, a stirring rod 5 is fixedly connected to the driving end of the driving motor 4, an anti-overflow device 7 is provided on the surface of the stirring rod 5, the anti-overflow device 7 includes a mounting rod 71, the mounting rod 71 is connected to the stirring rod 5 The surface of the mounting rod 71 is fixedly connected, the lower surface of the mounting rod 71 is fixedly connected with a guide cover 72, the lower surface of the guide cover 72 is fixedly connected with a connecting pipe 73, the lower surface of the connecting pipe 73 is fixedly connected with a discharge cover 74, and a flow channel 76 is provided between the guide cover 72, the connecting pipe 73 and the discharge cover 74. The overflow prevention device 7 facilitates the collection of splashed powdered materials, reduces the probability of powdered materials splashing out of the mixing barrel 1, reduces the workload of cleaning personnel, reduces material loss, reduces the economic loss of users, and facilitates the normal use of the equipment.

[0023] Specifically, a pressing plate 75 is fixedly connected to the lower surface of the discharge cover 74 , and the pressing plate 75 also applies pressure to the splashed materials during the rotation process.

[0024] Specifically, the pressing plate 75 is arranged at an angle.

[0025] Specifically, the longitudinal section of the guide cover 72 is trapezoidal, which facilitates guiding the material.

[0026] In this embodiment, there are three anti-overflow devices 7, which are arranged in a circular array. During processing, the material to be mixed is added to the mixing barrel 1, and then the drive motor 4 is turned on. The drive motor 4 drives the stirring rod 5 to rotate, and then the material is fully stirred. During the stirring process, the material is prone to splashing. The stirring rod 5 drives the guide cover 72 to rotate. During the rotation, the guide cover 72 covers the powdered material splashed in the mixing barrel 1, and then the material is ejected from the discharge cover 74 through the flow channel 76. The ejected material puts pressure on the material splashed below, and the pressure plate 75 also puts pressure on the splashed material during the rotation.

[0027] Specifically, a feeding device 8 is provided inside the mixing barrel 1 and is located below the stirring rod 5. The feeding device 8 facilitates the transportation of auxiliary materials and facilitates the normal use of the equipment.

[0028] In this embodiment: the unloading device 8 includes a telescopic cylinder 82, which is located on one side of the mixing barrel 1. The surface of the mixing barrel 1 is fixedly connected with a mounting sleeve 81, and the telescopic cylinder 82 is fixed to the surface of the mixing barrel 1 through the mounting sleeve 81. The driving end of the telescopic cylinder 82 is fixedly connected with a connecting block 83, and one side of the connecting block 83 is fixedly connected with a baffle 84. One end of the baffle 84 is inserted into the mixing barrel 1, and the baffle 84 slides with the inner wall of the mixing barrel 1. The baffle 84 is located below the stirring rod 5. When unloading, the telescopic cylinder 82 can push the connecting block 83, and then the connecting block 83 drives the baffle 84 to move. The baffle 84 then moves away from the top of the connection between the guide pipe 3 and the mixing barrel 1, and then the stirred material enters the guide pipe 3, and then the material can be transported.

[0029] Working principle: During processing, the materials to be mixed are added into the mixing barrel 1, and then the driving motor 4 is turned on. The driving motor 4 drives the stirring rod 5 to rotate, and then the materials are fully stirred. During the stirring process, the materials are prone to splashing. The stirring rod 5 drives the guide cover 72 to rotate. During the rotation process, the guide cover 72 covers the powdered materials splashed in the mixing barrel 1, and then the materials are ejected from the discharge cover 74 through the flow channel 76. The ejected materials put pressure on the materials splashed below. The pressure plate 75 also puts pressure on the splashed materials during the rotation process, and the anti-overflow device 7 is used to facilitate The splashed powdered material is collected, the probability of the powdered material splashing out of the mixing barrel 1 is reduced, the workload of the cleaning personnel is reduced, the loss of materials is reduced, the economic loss of the user is reduced, and the normal use of the equipment is facilitated. When unloading, the telescopic cylinder 82 can push the connecting block 83, and then the connecting block 83 drives the baffle 84 to move, and the baffle 84 is then moved away from the top of the connection between the guide pipe 3 and the mixing barrel 1, and then the mixed material enters the guide pipe 3, and then the material can be transported. Through the unloading device 8, the auxiliary material is facilitated to be transported, which is convenient for the normal use of the equipment.

Claims

1. A mixing and guiding machine for processing alumina powder, comprising a mixing barrel (1), a support frame (2) fixedly connected to the surface of the mixing barrel (1), a guide pipe (3) fixedly connected to the lower surface of the mixing barrel (1), the guide pipe (3) being in communication with the mixing barrel (1), a control motor (6) being mounted on the surface of the guide pipe (3), a drive motor (4) being mounted on the surface of the mixing barrel (1), a driving end of the drive motor (4) being fixedly connected to a stirring rod (5), characterized in that: The surface of the stirring rod (5) is provided with an anti-overflow device (7), and the anti-overflow device (7) comprises a mounting rod (71), the mounting rod (71) is fixedly connected to the surface of the stirring rod (5), the lower surface of the mounting rod (71) is fixedly connected to a guide cover (72), the lower surface of the guide cover (72) is fixedly connected to a connecting pipe (73), the lower surface of the connecting pipe (73) is fixedly connected to a discharge cover (74), and a flow channel (76) is provided between the guide cover (72), the connecting pipe (73) and the discharge cover (74).

2. The material mixing and guiding machine for processing alumina powder according to claim 1, characterized in that: A pressing plate (75) is fixedly connected to the lower surface of the discharge cover (74).

3. The material mixing and guiding machine for processing alumina powder according to claim 2, characterized in that: The pressing plate (75) is arranged in an inclined manner.

4. The material mixing and guiding machine for processing alumina powder according to claim 1, characterized in that: The longitudinal section of the guide cover (72) is trapezoidal.

5. The material mixing and guiding machine for processing alumina powder according to claim 1, characterized in that: The number of the anti-overflow devices (7) is three, and the three anti-overflow devices (7) are arranged in a circular array.

6. The material mixing and guiding machine for processing alumina powder according to claim 1, characterized in that: A feeding device (8) is provided inside the mixing barrel (1), and the feeding device (8) is located below the stirring rod (5).

7. The material mixing and guiding machine for processing alumina powder according to claim 6, characterized in that: The unloading device (8) includes a telescopic cylinder (82), the telescopic cylinder (82) is located on one side of the mixing barrel (1), the surface of the mixing barrel (1) is fixedly connected to a mounting sleeve (81), the telescopic cylinder (82) is fixed to the surface of the mixing barrel (1) through the mounting sleeve (81), the driving end of the telescopic cylinder (82) is fixedly connected to a connecting block (83), one side of the connecting block (83) is fixedly connected to a baffle (84), one end of the baffle (84) is inserted into the mixing barrel (1), the baffle (84) slides with the inner wall of the mixing barrel (1), and the baffle (84) is located below the stirring rod (5).