Waste pyrophyllite cleaning and recycling device

The design of the aggregate trough and dust filter solves the problem of dust pollution during the pyrophyllite crushing process, realizes dust collection and material recycling, and improves the cleanliness of the working environment and the convenience of equipment maintenance.

CN223405020UActive Publication Date: 2025-10-03HENAN TANLONG NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202422532917.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-18
Publication Date
2025-10-03
Estimated Expiration
2034-10-18

AI Technical Summary

Technical Problem

During the pyrophyllite crushing process, a large amount of dust is emitted, polluting the working environment and causing material waste.

Method used

A waste pyrophyllite cleaning and recovery device is designed, which includes a collection trough, an air induced draft component, a dust filter component and a support plate. The dust airflow is introduced into the accumulated water in the collection trough through the air induced draft duct, and the powder is filtered and precipitated by the filter cloth. The collection trough is detachable for easy maintenance.

Benefits of technology

Effectively reduce dust pollution, reduce material waste, improve the cleanliness of the working environment, and facilitate equipment installation and maintenance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a waste pyrophyllite cleaning and recycling device, which belongs to the technical field of dust fall, and comprises a material collecting groove arranged at the top of a material inlet of crushing equipment, the interior of the material collecting groove is used for containing accumulated water, a supporting plate is further arranged on the material collecting groove, a plurality of air inducing pieces are arranged on the supporting plate, air inducing pipes and air guiding pipes are connected to the air inducing pieces, and the air guiding pipes are connected with the material collecting groove. The end, away from the air inducing piece, of the air guiding pipe is located in accumulated water in the material collecting groove. According to the pyrophyllite powder collecting device, pyrophyllite powder at the feed port of the crushing mechanism can be collected, so that a large amount of pyrophyllite powder can be prevented from flying in the air to influence the working environment.
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Description

Technical Field

[0001] The utility model relates to the technical field of dust reduction equipment, in particular to a waste pyrophyllite cleaning and recovery device. Background Art

[0002] Pyrophyllite, with the chemical formula Al2Si4O102, is a naturally occurring silicate mineral. Its key characteristics include excellent pressure transmission, sealing, insulation, heat resistance, and machinability. These properties make pyrophyllite an ideal medium for ultrahigh-pressure synthesis of superhard materials such as diamond.

[0003] In the prior art, the diamond preparation process requires crushing pyrophyllite blocks and grinding them into powder. The powdered pyrophyllite is then pressed into a specific shape for preparing diamonds. After the diamond preparation is completed, the pyrophyllite needs to be smashed open to remove the diamonds inside. These smashed diamond blocks will be crushed and ground again for reuse.

[0004] In actual crushing operations, pyrophyllite is basically crushed by using crushing equipment such as double-roll crushers or hammer crushers. During the pyrophyllite crushing process, a large amount of pyrophyllite dust will float out through the pyrophyllite feed port, thereby affecting the crushing working environment. Utility Model Content

[0005] In view of this, the utility model provides a waste pyrophyllite cleaning and recovery device, which can collect pyrophyllite powder at the feed inlet of the crushing mechanism, thereby preventing a large amount of pyrophyllite powder from floating in the air and affecting the working environment.

[0006] In order to solve the above technical problems, the utility model provides a waste talc cleaning and recovery device, including an aggregate trough arranged at the top of the crushing equipment feed port, the aggregate trough is used to hold accumulated water, and a support plate is also provided on the aggregate trough, the support plate is horizontally arranged on the side of the aggregate trough, and a plurality of air induced parts are placed on the support plate, and an air induced pipe and an air guide pipe are connected to the air induced parts. The end of the air induced pipe is located at the crushing equipment feed port, and the end of the air guide pipe is away from the air induced parts and is located in the accumulated water in the aggregate trough, and the air flow carrying talc powder can be introduced into the aggregate trough through the air induced pipe and the air guide pipe.

[0007] A dust filter is also provided in the aggregate trough, through which the pyrophyllite powder in the aggregate trough can be easily taken out.

[0008] The dust filter comprises a movable frame, wherein a filter cloth is connected inside the movable frame, and the pyrophyllite powder in the accumulated water can be filtered through the filter cloth.

[0009] The movable frame includes four edges, each edge is provided with a material guide groove, and the four material guide grooves are all located on the same side of the movable frame. The cross section of the material guide groove is a right triangle structure, that is, the four material guide grooves are connected end to end.

[0010] A force applying piece is provided on one side of the movable frame located at the material guide trough, and force is applied to the material guide trough by the force applying piece.

[0011] A support frame is also provided in the aggregate trough corresponding to the movable frame, and the support frame can provide support for the movable frame.

[0012] The support plate is an L-shaped structure and is fixed to the side of the aggregate trough by bolts, that is, the support plate and the aggregate trough can be easily disassembled and installed by the bolts.

[0013] The support plate is fixed to the top of the crushing equipment inlet by bolts, that is, the bolts are used to facilitate the disassembly or installation of the entire equipment.

[0014] In summary, compared with the prior art, this application has at least one of the following beneficial technical effects:

[0015] 1. The air flow at the inlet of the crushing equipment can be indirectly introduced into the accumulated water in the aggregate trough through the air induced parts, which can not only reduce dust but also collect the pyrophyllite dust carried in the air flow, thereby not only improving the cleanliness of the working environment but also avoiding material waste to a certain extent.

[0016] 2. The entire equipment is installed by bolts, which not only makes it easy to quickly install the entire equipment, but also allows it to be quickly disassembled for maintenance or replacement. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a structural diagram of a waste pyrophyllite cleaning and recovery device of the utility model;

[0018] Figure 2 It is a schematic structural diagram of a cross-sectional view of the present utility model;

[0019] Figure 3 For this utility model Figure 2 Schematic diagram of the structure at point A.

[0020] Description of reference numerals:

[0021] 100. Crushing equipment; 101. Aggregate trough; 102. Support plate; 103. Air induction member; 104. Air induction duct; 105. Air guide duct;

[0022] 200, dust filter; 201, movable frame; 202, filter cloth; 203, material guide chute; 204, force applying member;

[0023] 300. Support frame. DETAILED DESCRIPTION

[0024] In order to make the purpose, technical solutions and advantages of the embodiment of the present invention clearer, the following will be combined with the appended drawings of the embodiment of the present invention. Figure 1-3 , clearly and completely describing the technical solutions of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field fall within the scope of protection of the present invention.

[0025] like Figure 1-3 As shown: it includes an aggregate trough 101 arranged on the top of the feed inlet of the crushing device 100, the aggregate trough 101 is used to hold accumulated water, and a support plate 102 is further laterally provided on the side of the aggregate trough 101, and the shape of the support plate 102 is adapted to the feed inlet of the crushing device 100, that is, the bottom of the support plate 102 can fit over the top of the feed inlet of the crushing device 100, and the side of the support plate 102 away from the feed inlet also has a horizontal plane, and a plurality of air-inducing members 103 are further provided on the horizontal plane of the upper part of the support plate 102. In this embodiment, the air-inducing member 103 is configured as an induced draft fan, and an induced draft duct 104 is connected to the air inlet of the induced draft fan, and an air guide duct 105 is connected to the air outlet of the induced draft fan, and an end of the induced draft duct 104 away from the induced draft fan is located at the feed inlet, and an end of the air guide duct 105 away from the induced draft fan is located in the accumulated water in the aggregate trough 101;

[0026] While the crushing equipment 100 is running, the air induced component 103 is controlled to work. When the air induced component 103 works, the airflow at the feed port can be sucked into the air induced duct 104, and then the airflow can enter the accumulated water in the water trough through the air induced fan and the air duct 105. In this way, the airflow can carry the talc dust into the accumulated water, and the airflow will float upward through the accumulated water, while the talc powder will adhere to the accumulated water, thereby completing the cleaning of the working environment and the recycling of materials.

[0027] like Figure 1 、 2 , 3,

[0028] A dust filter 200 is also provided in the aggregate trough 101. When the crushing work is completed, the dust filter 200 is taken out from the aggregate trough 101, and the pyrophyllite dust in the aggregate trough 101 will be taken out as the dust filter 200 moves upward.

[0029] In this embodiment, the dust filter 200 includes a movable frame 201, which is a rectangular frame structure. A filter cloth 202 is connected to the movable frame 201, so that when the dust filter 200 moves upward, the filter cloth 202 will not affect the accumulated water and can also block the talc powder above the filter cloth 202. In this way, the talc powder can be taken out and then dried, and the talc powder can be put into use again.

[0030] like Figure 2 、 3 As shown,

[0031] The movable frame 201 includes four edges, each of which is provided with a material guide groove 203. The cross-section of the material guide groove 203 is a right triangle structure. At the same time, the four guide grooves are all located on the same side of the movable frame 201. The four guide grooves are connected end to end, that is, the four guide grooves can form an annular groove with an inclined surface on the inner circle of the upper surface of the movable frame 201, so that when the movable frame 201 moves upward, the accumulated water can flow downward along the inclined surface of the guide groove. At the same time, the pyrophyllite powder can be prevented from falling outward between the four guide grooves on the filter cloth 202.

[0032] like Figure 1 、 2 , 3,

[0033] A force-applying member 204 is provided on one side of the movable frame 201 located at the material guide trough 203. In this embodiment, the force-applying member 204 is configured as two concave handles, that is, the movable frame 201 can be pulled out of the collecting trough 101 through the handles. At the same time, the force-applying member 204 can also be configured as other structures that are convenient for applying force to the movable frame 201.

[0034] like Figure 2 、 3 As shown,

[0035] A support frame 300 is also provided in the aggregate trough 101 corresponding to the movable frame 201. In this embodiment, the support frame 300 is also a rectangular frame structure located in the middle and lower part of the aggregate trough 101. At the same time, the movable frame 201 can be placed on the upper surface of the support frame 300, so that the accumulated water in the aggregate trough 101 can naturally settle and pass through the filter cloth 202. In this way, when the movable frame 201 moves upward, a large amount of accumulated water will not be unable to pass through the filter cloth 202 in time and be carried out.

[0036] like Figure 1 、 2 As shown,

[0037] The support plate 102 is an L-shaped structure, and the corner end of the support plate 102 is fixed to the side of the aggregate trough 101 by bolts, that is, the aggregate trough 101 can be fixed by bolts, which also makes it easy to disassemble the aggregate trough 101 by bolts, and then the aggregate trough 101 can be maintained or replaced.

[0038] The support plate 102 is fixed to the top of the feed port of the crushing device 100 by bolts, that is, the entire device can be fixed to the feed port of the crushing device 100 by bolts, which also makes it easy to install the entire device by bolts, and then the entire device can be maintained or replaced.

[0039] Furthermore, it should be noted that, in the description of this utility model, unless otherwise expressly specified or limited, the terms "installed," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; direct connections, indirect connections through an intermediate medium, and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this utility model based on specific circumstances.

[0040] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles described in the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. A waste pyrophyllite cleaning and recovery device, characterized by: The invention comprises a collecting trough (101) arranged at the top of the feeding port of the crushing equipment (100), wherein the collecting trough (101) is used for containing accumulated water, and a support plate (102) is further provided on the collecting trough (101), wherein a plurality of air inducing members (103) are arranged on the support plate (102), and the air inducing members (103) are connected to an air inducing pipe (104) and an air guide pipe (105), and an end of the air guide pipe (105) away from the air inducing member (103) is located in the accumulated water in the collecting trough (101).

2. The waste pyrophyllite cleaning and recovery device according to claim 1, wherein: A dust filter (200) is also provided in the collecting trough (101).

3. The waste pyrophyllite cleaning and recovery device according to claim 2, characterized in that: The dust filter (200) comprises a movable frame (201), and a filter cloth (202) is connected inside the movable frame (201).

4. The waste pyrophyllite cleaning and recovery device according to claim 3, characterized in that: The movable frame (201) comprises four edges, each edge being provided with a material guide trough (203), and the cross section of the material guide trough (203) is a right-angled triangle structure.

5. The waste pyrophyllite cleaning and recovery device according to claim 4, characterized in that: A force applying member (204) is provided on one side of the movable frame (201) located at the material guide trough (203).

6. The waste pyrophyllite cleaning and recovery device according to claim 3, characterized in that: A support frame (300) is also provided in the collecting trough (101) corresponding to the movable frame (201).

7. The waste pyrophyllite cleaning and recovery device according to claim 1, characterized in that: The support plate (102) is an L-shaped structure and is fixed to the side of the aggregate trough (101) by bolts.

8. A waste pyrophyllite cleaning and recovery device according to claim 1 or 7, characterized in that: The support plate (102) is fixed to the top of the feed opening of the crushing equipment (100) by means of bolts.