Diamond airflow shaping equipment facilitating material overturning
By introducing crushing and flipping components into the diamond airflow shaping equipment, the problem of uneven particle size is solved and a higher quality diamond powder shaping effect is achieved.
Patent Information
- Application Number
- CN202422857419.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-22
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-11-22
AI Technical Summary
The existing diamond powder airflow shaping device lacks a crushing function, resulting in uneven particle size distribution, which affects the performance and quality of the finished product.
A diamond airflow shaping device consisting of a crushing component and a turning component was designed. The crushing component was used to crush larger particles into the desired shape, and the turning component was used to turn and collide the materials to ensure the uniformity of the particles.
The performance and quality of diamond powder are improved, the uniformity and expected shape of the final product are ensured, and the effect of the shaping process is enhanced.
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Figure CN223383255U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of diamond production, in particular to a diamond airflow shaping device which is convenient for turning over materials. Background Art
[0002] Diamond powder is divided into single crystal diamond powder and polycrystalline diamond powder. Diamond powder is made from artificial diamond single crystal abrasive particles, which are crushed and shaped using a special process. Diamond powder has high hardness and good wear resistance and can be widely used in cutting, grinding, and drilling. In the production process of diamond powder, an airflow shaping device is required to grind the edges and corners of the diamond powder.
[0003] The patent document with application number CN212553289U discloses an airflow shaping device for diamond powder, comprising a shell, a top cover installed on the top of the shell, a shaping groove provided inside the shell, a discharge port connected to the middle of the top end of the top cover, wherein a feed port is provided on the side of the shell close to the shaping groove, a screw feeder is installed on the outside of the shell close to the feed port, a barrel is connected to the top of the screw feeder away from the shell, an air jet is installed in the middle of the inner side of the shaping groove, and a spring valve is equidistantly connected to the inner side of the air jet near the bottom.
[0004] In the processing of diamond powder, it is usually necessary to crush the diamonds so that the particles can be further adjusted and refined during the shaping process. However, the lack of crushing function in this device may lead to uneven particle size distribution of diamond powder. If larger particles cannot be crushed into the required shape during the airflow shaping process, the shape and performance of the finished product may not meet the expectations, thereby affecting the performance and quality of the final product. To address the above problems, we have launched a diamond airflow shaping device that facilitates material flipping. Utility Model Content
[0005] The utility model discloses a diamond airflow shaping device which is convenient for turning over materials. The utility model studies and improves the existing structure and defects, and provides a diamond airflow shaping device which is convenient for turning over materials, so as to achieve the purpose of better practical value.
[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0007] A diamond airflow shaping device that is convenient for flipping materials includes a shell, a top cover is provided on the top of the shell, the top of the top cover is fixedly connected to a discharge port, a sleeve is fixedly connected to the outside of the shell, the top of the sleeve is fixedly connected to a lower bin, a sealing plate is provided at one end of the sleeve, a spiral rod is rotatably connected to one side of the sealing plate, a first motor is provided on the other side of the sealing plate, one end of the output shaft of the first motor is fixedly connected to one end of the spiral rod, a flipping assembly is provided inside the shell, and a crushing assembly is provided inside the lower bin.
[0008] In a preferred solution, the crushing assembly includes two mounting rods, which are rotatably connected to the interior of the lower hopper, and crushing leaves are equidistantly arranged on the outside of the mounting rods.
[0009] In a preferred solution, one end of the mounting rod extends to the outside of the lower hopper and is fixedly connected to a gear, one side of the lower hopper is fixedly connected to a placement plate, a second motor is provided on the top of the placement plate, and one end of the output shaft of the second motor is fixedly connected to one end of one of the mounting rods.
[0010] In a preferred solution, a drainage frame is fixedly connected to the interior of the lower silo.
[0011] In a preferred embodiment, the flip assembly includes a rotating rod, which is arranged inside the shell, the top of the rotating rod is fixedly connected to the fan blade, the bottom of the rotating rod is fixedly connected to the scraper, and the outer side of the rotating rod is equidistantly fixedly connected to the stirring rod.
[0012] In a preferred solution, a sleeve is provided on the outer side of the rotating rod, a fixing rod is fixedly connected between the outer side of the sleeve and the inner wall of the shell at an equal distance, and two rings are fixedly connected to the outer side of the rotating rod.
[0013] In a preferred solution, a mounting plate is fixedly connected to the outer side of the housing, a blower is provided on the top of the mounting plate, and a connecting pipe is fixedly connected to the outer side of the blower.
[0014] The utility model provides a diamond airflow shaping device that is convenient for turning over materials and has the following advantages:
[0015] By crushing larger particles into the desired shape through a crushing component, the properties of the diamond powder can be improved, ensuring that the quality of the final product meets specific application requirements. Uniform particles help improve its performance in the shaping process. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a three-dimensional schematic diagram of a diamond airflow shaping device proposed by the utility model, which is convenient for turning over materials.
[0017] Figure 2 This is a schematic diagram of a front and cross-section of a diamond airflow shaping device proposed by the present invention, which is convenient for turning over materials.
[0018] Figure 3 This is a first explosion diagram of a diamond airflow shaping device proposed by the utility model for facilitating material flipping.
[0019] Figure 4 This is a second explosion diagram of a diamond airflow shaping device proposed by the present invention that is convenient for turning over materials.
[0020] Figure 5 This is a third explosion diagram of a diamond airflow shaping device proposed by the present invention that is convenient for turning over materials.
[0021] In the accompanying drawings: 1. Outer casing; 2. Top cover; 3. Discharge port; 4. Sleeve; 5. Discharge hopper; 6. Sealing plate; 7. Screw rod; 8. First motor; 9. Mounting plate; 10. Blower; 11. Connecting pipe; 12. Rotating rod; 13. Fan blade; 14. Scraper; 15. Sleeve; 16. Fixed rod; 17. Ring; 18. Stirring rod; 19. Mounting rod; 20. Crushing blade; 21. Gear; 22. Placement plate; 23. Second motor; 24. Drainage frame. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. The components of the embodiments of the present application generally described and marked in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work fall within the scope of protection of the present application.
[0023] The utility model discloses a diamond airflow shaping device that is convenient for turning over materials and is mainly used in the scene of diamond production.
[0024] Reference Figures 1 to 5A diamond airflow shaping device that is convenient for turning over materials comprises: a shell 1, a top cover 2 is provided on the top of the shell 1, a discharge port 3 is fixedly connected to the top of the top cover 2, a sleeve 4 is fixedly connected to the outside of the shell 1, a lower bin 5 is fixedly connected to the top of the sleeve 4, a sealing plate 6 is provided at one end of the sleeve 4, a screw rod 7 is rotatably connected to one side of the sealing plate 6, a first motor 8 is provided on the other side of the sealing plate 6, one end of the output shaft of the first motor 8 is fixedly connected to one end of the screw rod 7, a turning assembly is provided inside the shell 1, and a crushing assembly is provided inside the lower bin 5;
[0025] The crushing assembly includes two mounting rods 19, which are rotatably connected to the interior of the lower hopper 5. Crushing leaves 20 are equidistantly arranged on the outside of the mounting rods 19.
[0026] One end of the mounting rod 19 extends to the outside of the lower hopper 5 and is fixedly connected to a gear 21. A placement plate 22 is fixedly connected to one side of the lower hopper 5. A second motor 23 is provided on the top of the placement plate 22. One end of the output shaft of the second motor 23 is fixedly connected to one end of one of the mounting rods 19.
[0027] In the above technical solution, it is considered that the lack of crushing function of the device may lead to uneven particle size distribution of diamond powder. If larger particles cannot be crushed into the desired shape during the airflow shaping process, the shape and performance of the finished product may not meet expectations, thereby affecting the performance and quality of the final product. In order to solve such problems, the specific operation is as follows: by setting a crushing component, the diamond raw material is put into the lower hopper 5, and then the second motor 23 is started to drive one of the mounting rods 19 to rotate. The meshing relationship between the two gears 21 is used to drive the two mounting rods 19 to rotate, and then the crushing blades 20 are driven to rotate to crush the raw material. The crushed raw material falls into the sleeve 4, and the first motor 8 is started to drive the spiral rod 7 to rotate to transport the raw material into the shell 1. Then, the turning component is used to turn the raw material so that the raw material can fully collide and shape the raw material. The crushing component crushes larger particles into the desired shape, which can improve the performance of the diamond powder and ensure that the quality of the final product meets specific application requirements. Uniform particles help improve its performance in the shaping process.
[0028] Reference Figures 1 to 5 In a preferred embodiment, a drainage frame 24 is fixedly connected to the interior of the lower hopper 5; the drainage frame 24 can guide the raw materials to the area where the crushing leaves 20 rotate, so that the raw materials can contact the crushing leaves 20 more efficiently, thereby enhancing the crushing effect.
[0029] Reference Figures 1 to 5In a preferred embodiment, the flip assembly includes a rotating rod 12, which is arranged inside the housing 1, and the top of the rotating rod 12 is fixedly connected to a fan blade 13, the bottom of the rotating rod 12 is fixedly connected to a scraper 14, and the outer side of the rotating rod 12 is equidistantly fixedly connected to a stirring rod 18; a sleeve 15 is provided on the outer side of the rotating rod 12, and a fixing rod 16 is equidistantly fixedly connected between the outer side of the sleeve 15 and the inner wall of the housing 1, and two collars 17 are fixedly connected to the outer side of the rotating rod 12; the outer side of the housing 1 is fixedly connected There is a mounting plate 9, a blower 10 is provided on the top of the mounting plate 9, and a connecting pipe 11 is fixedly connected to the outside of the blower 10; the crushed raw materials are transported into the outer shell 1, and then the blower 10 is started to blow air into the interior through the connecting pipe 11, driving the fan blades 13 to rotate, and at the same time blowing away the raw materials accumulated at the bottom of the outer shell 1. The rotation of the fan blades 13 drives the rotating rod 12 to rotate, and also drives the scraper 14 to rotate to flip the raw materials at the bottom. The stirring rod 18 rotates to collide with the blown raw materials, thereby accelerating the grinding and shaping of the materials.
[0030] Working principle: When in use, the diamond raw material is put into the lower hopper 5, and then the second motor 23 is started to drive one of the mounting rods 19 to rotate, and the meshing relationship of the two gears 21 is used to drive the two mounting rods 19 to rotate, and then the crushing blades 20 are driven to rotate to crush the raw material. The crushed raw material falls into the sleeve 4, and the first motor 8 is started to drive the screw rod 7 to rotate, and the raw material is transported into the outer shell 1, and then the blower 10 is started to blow air into the interior through the connecting pipe 11, driving the fan blades 13 to rotate, and at the same time blowing away the raw material accumulated at the bottom of the outer shell 1. The rotation of the fan blades 13 drives the rotating rod 12 to rotate, and also drives the scraper 14 to rotate to turn the raw material at the bottom, and the stirring rod 18 rotates to collide with the blown raw material, thereby accelerating the grinding and shaping of the material. The mass of the polished diamond powder is relatively small and is discharged through the discharge port 3 with the air flow. The contents not described in detail in this specification belong to the existing technology well known to professional and technical personnel in this field.
[0031] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. The replacements described may be partial structures, devices, or method steps, or they may be complete technical solutions. Any equivalent replacements or modifications based on the technical solution and the concept of the present invention shall be covered by the scope of protection of the present invention.
Claims
1. A diamond airflow shaping device for facilitating material turning, comprising a housing (1), characterized in that: A top cover (2) is provided on the top of the shell (1), a discharge port (3) is fixedly connected to the top of the top cover (2), a sleeve (4) is fixedly connected to the outside of the shell (1), a lower bin (5) is fixedly connected to the top of the sleeve (4), a sealing plate (6) is provided at one end of the sleeve (4), a spiral rod (7) is rotatably connected to one side of the sealing plate (6), a first motor (8) is provided at the other side of the sealing plate (6), one end of the output shaft of the first motor (8) is fixedly connected to one end of the spiral rod (7), a turning assembly is provided inside the shell (1), and a crushing assembly is provided inside the lower bin (5).
2. The diamond airflow shaping device for facilitating material turning according to claim 1, characterized in that: The crushing assembly comprises two mounting rods (19), the two mounting rods (19) being rotatably connected to the interior of the lower hopper (5), and crushing leaves (20) being equidistantly arranged on the outside of the mounting rods (19).
3. The diamond airflow shaping device for facilitating material turning according to claim 2, characterized in that: One end of the mounting rod (19) extends to the outside of the lower hopper (5) and is fixedly connected to a gear (21); one side of the lower hopper (5) is fixedly connected to a placement plate (22); a second motor (23) is provided on the top of the placement plate (22); and one end of an output shaft of the second motor (23) is fixedly connected to one end of one of the mounting rods (19).
4. The diamond airflow shaping device for facilitating material turnover according to claim 1, characterized in that: A drainage frame (24) is fixedly connected to the interior of the lower silo (5).
5. The diamond airflow shaping device for facilitating material turnover according to claim 1, characterized in that: The flip assembly comprises a rotating rod (12), the rotating rod (12) being arranged inside the housing (1), the top of the rotating rod (12) being fixedly connected to a fan blade (13), the bottom of the rotating rod (12) being fixedly connected to a scraper (14), and the outer side of the rotating rod (12) being fixedly connected to a stirring rod (18) at equal distances.
6. The diamond airflow shaping device for facilitating material turnover according to claim 5, characterized in that: A sleeve (15) is provided on the outside of the rotating rod (12), a fixing rod (16) is fixedly connected equidistantly between the outside of the sleeve (15) and the inner wall of the housing (1), and two collars (17) are fixedly connected to the outside of the rotating rod (12).
7. The diamond airflow shaping device for facilitating material turnover according to claim 1, characterized in that: A mounting plate (9) is fixedly connected to the outer side of the housing (1), a blower (10) is provided on the top of the mounting plate (9), and a connecting pipe (11) is fixedly connected to the outer side of the blower (10).
Citation Information
Patent Citations
Airflow shaping device for diamond powder
CN212553289U