Cleaning water control device
By designing a cleaning and water control device, using a vibrating motor and extrusion mechanism, the problem of difficulty in thoroughly controlling the drying of silicon carbide powder after cleaning is solved, and a more efficient drying effect is achieved to ensure the quality of silicon carbide ingots.
Patent Information
- Application Number
- CN202422339110.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-25
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-25
AI Technical Summary
In the prior art, silicon carbide powder is difficult to completely control drying after cleaning, which affects the quality of silicon carbide ingots.
A cleaning and water control device is designed, including a bracket, a water control tank and a vibration motor. A through hole is provided in the water control tank. The vibration motor drives the water control tank to vibrate to discharge liquid, and combines the extrusion mechanism and liquid collection component to improve the drying effect.
Through the cooperation of vibration and extrusion mechanism, the drying effect of silicon carbide powder is significantly improved, ensuring the quality of silicon carbide ingots.
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Figure CN223061134U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of crystal production equipment, and particularly to a cleaning and water control device. Background Art
[0002] As a third-generation semiconductor material, silicon carbide single crystal has unique properties such as a large bandgap, strong radiation resistance, high breakdown electric field, small dielectric constant, large thermal conductivity, high electron saturation drift velocity, and high chemical stability. It is considered an ideal semiconductor material for manufacturing optoelectronic devices, high-frequency high-power devices, and power electronic devices. It has a wide range of applications in white light illumination, optical storage, screen display, aerospace, high-temperature radiation environment, oil exploration, automation, radar and communication, automotive electronics, etc., and particularly has an important strategic position in national defense and military, so it has received great attention from various countries.
[0003] The raw material used in the growth of silicon carbide crystals is silicon carbide powder. In the growth of silicon carbide crystals, there are high requirements for the cleanliness and purity of the silicon carbide powder, and the cleanliness and purity of the raw material affect the quality of the grown silicon carbide ingot. In the prior art, the silicon carbide powder is usually washed by water washing, but the existing silicon carbide powder is difficult to be completely dried after cleaning. Utility Model Content
[0004] In order to solve the deficiencies of the prior art, the purpose of this application is to provide a cleaning and water control device with better water control effect.
[0005] To achieve the above purpose, this application adopts the following technical solutions:
[0006] A cleaning and water control device, which includes a bracket, a water control tank, and a vibration motor. The water control tank is installed on the bracket. The water control tank surrounds to form a chamber, and the chamber has a disposal volume for placing a drainage bag. The bottom of the water control tank has a plurality of through holes penetrating through its two opposite surfaces; the vibration motor is installed on the bracket, and the vibration motor is configured to be able to drive the water control tank to vibrate, so that the liquid in the drainage bag leaves the disposal volume through the through holes.
[0007] Further, the water control tank has an opening communicating with the disposal volume, and in the direction from the opening to the bottom of the water control tank, the size of the water control tank is configured to show a shrinking trend.
[0008] Further, the cleaning and water control device includes at least two water control tanks, and the at least two water control tanks are arranged along a set direction.
[0009] Further, the material of the water control tank is configured to be polytetrafluoroethylene.
[0010] Further, the cleaning and water control device further includes a squeezing mechanism, which includes a roller and a driving unit. The roller is located in the treatment volume, and there is a gap between the roller and the bottom of the water control tank. The driving unit is in transmission connection with the roller, and the driving unit is configured to drive the roller to move in the treatment volume along a set direction.
[0011] Further, guide rails extending along the set direction are provided on two opposite side walls of the water control tank. Both ends of the roller are respectively installed on the two side walls, and at least part of the roller passes through the guide rails and is movably connected to the guide rails.
[0012] Further, the cleaning and water control device further includes a liquid collecting assembly, which is installed on the bracket and is located below the water control tank. The liquid collecting assembly has a water inlet, and the water inlet faces the through hole.
[0013] Further, the liquid collecting assembly has a bottom surface inclined relative to the horizontal plane, and the liquid collecting assembly further includes a water outlet, which is located at the lowest point of the bottom surface of the liquid collecting assembly;
[0014] And / or, the liquid collecting assembly is slidably connected to the bracket, and the liquid collecting assembly is configured to be separable from the bracket.
[0015] Further, the cleaning and water control device includes at least two water control tanks, which are arranged along the set direction. Each water control tank is configured with a squeezing mechanism, which includes a roller and a driving unit. The roller is located in the treatment volume, and there is a gap between the roller and the bottom of the water control tank. The driving unit is in transmission connection with the roller, and the driving unit is configured to drive the roller to move in the treatment volume along a set direction.
[0016] The present application also provides a cleaning and water control device, which includes a bracket, a water control tank and a squeezing mechanism. The water control tank is installed on the bracket, and the water control tank surrounds to form a chamber. The chamber has a treatment volume for placing a water drainage bag. The bottom of the water control tank has a through hole penetrating through its two opposite surfaces. The squeezing mechanism includes a roller and a driving unit. The roller is located in the treatment volume, and there is a gap between the roller and the bottom of the water control tank. The driving unit is in transmission connection with the roller, and the driving unit is configured to drive the roller to move in the treatment volume along a set direction. Among them, guide rails extending along the set direction are provided on two opposite side walls of the water control tank. Both ends of the roller are respectively installed on the two side walls, and at least part of the roller passes through the guide rails and is movably connected to the guide rails.
[0017] The above-mentioned cleaning and water control device improves the water control effect by setting a water control tank for placing a water drainage bag and a vibration motor, and driving the water control tank to vibrate through the vibration motor so that the liquid in the water drainage bag can flow out of the water control tank. Description of the Drawings
[0018] Figure 1This is a schematic structural diagram of the cleaning and water control device in the embodiment of the present application;
[0019] Figure 2 This is a schematic structural diagram of the extrusion mechanism in the embodiment of the present application;
[0020] Figure 3 This is a schematic structural diagram of the liquid collection assembly in the embodiment of the present application. Specific Embodiments
[0021] To enable those skilled in the art to better understand the solution of the present application, the technical solutions in the specific embodiments of the present application will be clearly and completely described below in conjunction with the accompanying drawings in the embodiments of the present application. To clearly illustrate the solution, the present application also provides the left-right direction as shown in Figure 1 shown.
[0022] As shown in Figure 1 shown, the present application provides a cleaning and water control device 100. The cleaning and water control device 100 acts on silicon carbide, and the cleaning and water control device 100 is used to drain the water in the silicon carbide. The cleaning and water control device 100 includes a bracket 11, a water control tank 12, and a vibration motor 13. The water control tank 12 and the vibration motor 13 are both installed on the bracket 11, and the bracket 11 is used to carry the water control tank 12 and the vibration motor 13. The water control tank 12 surrounds to form a chamber 121. There is a treatment volume in the chamber 121, and the treatment volume is used to place a water drainage bag containing silicon carbide. The bottom of the water control tank 12 also has a plurality of through holes 122 penetrating through its opposite two surfaces.
[0023] Exemplarily, the number of the through holes 122 is several, and the several through holes 122 are evenly arranged at the bottom of the water control tank 12. When the water drainage bag is placed in the chamber 121, the water drainage bag is located above the several through holes 122, so that the liquid in the water drainage bag can be evenly discharged through the several through holes 122, thereby improving the water drainage effect of the cleaning and water control device 100.
[0024] The vibration motor 13 is connected to the water control tank 12, and the vibration motor 13 is configured to be able to drive the water control tank 12 to vibrate, so that the liquid in the water drainage bag can leave the treatment volume through the through holes 122, thereby realizing the water drainage of the water drainage bag.
[0025] Exemplarily, the water control tank 12 is movably connected to the bracket 11, so that the water control tank 12 can move relative to the bracket 11. The output shaft of the vibration motor 13 is fixedly connected to the water control tank 12, and further the vibration motor 13 can drive the water control tank 12 to vibrate to drain the water drainage bag.
[0026] As shown in Figure 1 shown, as a way, the water control tank 12 has an opening 123, and the opening 123 is communicated with the treatment volume. In the direction from the opening 123 to the bottom of the water control tank 12, the size of the water control tank 12 is configured to show a shrinking trend.
[0027] Exemplarily, the water control tank 12 is in the shape of a trapezoidal prism, wherein the opening 123 of the water control tank 12 and the bottom of the water control tank 12 are oppositely arranged, and the area of the opening 123 of the water control tank 12 is larger than the area of the bottom of the water control tank 12. Through the above arrangement, the water in the water drainage bag can be effectively drained.
[0028] As an alternative implementation, the cleaning and water control device 100 includes at least two water control tanks 12, and the at least two water control tanks 12 are arranged in a set direction.
[0029] Exemplarily, the number of the water control tanks 12 is two, the two water control tanks 12 are distributed in the left - right direction, the two water control tanks 12 are fixedly connected to each other and are commonly connected to the vibration motor 13. Through the above arrangement, the water control tank 12 can accommodate more water drainage bags, thereby improving the water drainage efficiency of the water control tank 12.
[0030] Optionally, the number of the vibration motors 13 is the same as the number of the water control tanks 12, and each vibration motor 13 is connected to a water control tank 12, thereby improving the vibration intensity of each water control tank 12, and thus improving the water control effect of the water control tank 12.
[0031] In some embodiments, the material of the water control tank 12 is configured as polytetrafluoroethylene. Since the polytetrafluoroethylene material has good insulation, the water control tank 12 made of the polytetrafluoroethylene material can avoid generating static electricity between the silicon carbide in the water drainage bag. In addition, the water control tank 12 made of the above - mentioned material can also avoid causing metal pollution to the silicon carbide in the water drainage bag during the process of draining the water drainage bag.
[0032] As Figure 2 shown, as an implementation, the cleaning and water control device 100 further includes an extrusion mechanism 14. The extrusion mechanism 14 acts on the water drainage bag, and the extrusion mechanism 14 is used to extrude the water in the water drainage bag. The extrusion mechanism 14 includes a roller 141 and a driving unit 142. The roller 141 is located in the chamber 121, and there is a gap between the roller 141 and the bottom of the water control tank 12. The driving unit 142 is installed on the frame 11, and the driving unit 142 is in transmission connection with the roller 141. The driving unit 142 is configured to be able to drive the roller 141 to move in the treatment volume along a set direction. The driving unit 142 includes, but is not limited to, a cylinder or a linear motor, etc.
[0033] In the embodiment of the present application, the set direction is the left - right direction. When the water drainage bag is placed in the water control tank 12, the water drainage bag is located in the gap between the roller 141 and the water control tank 12. Then, when the roller 141 moves, it can squeeze the water drainage bag so that the water in the water drainage bag flows out, thereby facilitating the drying of the silicon carbide in the water drainage bag.
[0034] Specifically, guide rails 124 extending in a set direction are provided on two opposite side walls of the water control tank 12. Both ends of the roller 141 are respectively installed on the two side walls. At least part of the roller 141 passes through the guide rail 124 and is movably connected to the guide rail 124, so that the roller 141 can move within the guide rail 124, facilitating the roller 141 to squeeze the water drainage bag to dry the water drainage bag.
[0035] It should be noted that when multiple water control tanks 12 are provided, a roller 141 and a guide rail 124 are provided in each water control tank 12. The driving unit 142 can drive each roller 141 to move to squeeze out the liquid in the water drainage bag in each water control tank 12.
[0036] As Figure 2 and Figure 3 As shown, as an implementation manner, the cleaning and water control device 100 further includes a liquid collecting assembly 15. The liquid collecting assembly 15 is installed on the bracket 11 and is also located below the water control tank 12. The liquid collecting assembly 15 has a water inlet 151. The water inlet 151 faces the through hole 122 in the water control tank 12. The water control tank 12 is communicated with the liquid collecting assembly 15 through the water inlet 151, so that the liquid in the water drainage bag can enter the liquid collecting assembly 15 through the water inlet 151, thereby preventing the liquid from re-entering the water drainage bag and affecting the drying of the silicon carbide in the water drainage bag.
[0037] Specifically, the liquid collecting assembly 15 has a bottom surface 152 inclined relative to the horizontal plane. The liquid collecting assembly 15 further includes a water outlet 153. The water outlet 153 is arranged at the lowest position of the liquid collecting assembly 15, so that the liquid in the liquid collecting assembly 15 can be discharged through the water outlet 153, thereby preventing the liquid in the liquid collecting assembly 15 from being too much and entering the water drainage bag to affect the drying of the silicon carbide in the water drainage bag.
[0038] Optionally, the liquid collecting assembly 15 can also be set to be slidably connected to the bracket 11, and the liquid collecting assembly 15 is configured to be separable from the bracket 11. Through the above settings, when the liquid in the liquid collecting assembly 15 is too much, the liquid collecting assembly 15 can be separated from the bracket 11 to remove the liquid in the liquid collecting assembly 15, thereby preventing the liquid in the liquid collecting assembly 15 from being too much and entering the water drainage bag to affect the drying of the silicon carbide in the water drainage bag.
[0039] It should be understood that for those of ordinary skill in the art, improvements or transformations can be made according to the above description, and all such improvements and transformations should fall within the protection scope of the appended claims of this application.
Claims
1. A cleaning and water control device, characterized in that, Comprising: A bracket; A water control tank, the water control tank is installed on the bracket, the water control tank surrounds to form a chamber, the chamber has a disposal volume for placing a drainage bag, and the bottom of the water control tank has a plurality of through holes penetrating through its two opposite surfaces; A vibration motor, the vibration motor is installed on the bracket, and the vibration motor is configured to be able to drive the water control tank to vibrate, so that the liquid in the drainage bag leaves the disposal volume through the through holes.
2. The cleaning and water control device according to claim 1, wherein The water control tank has an opening communicating with the disposal volume, and in the direction from the opening to the bottom of the water control tank, the size of the water control tank is configured to show a shrinking trend.
3. The cleaning and water control device according to claim 1, wherein The cleaning and water control device includes at least two of the water control tanks, and at least two of the water control tanks are arranged along a set direction.
4. The cleaning and water control device according to claim 1, wherein The material of the water control tank is configured to be polytetrafluoroethylene.
5. The cleaning and water control device according to claim 1, wherein The cleaning and water control device further includes an extrusion mechanism, the extrusion mechanism includes a roller and a driving unit, the roller is located in the disposal volume, and there is a gap between the roller and the bottom of the water control tank, the driving unit is in transmission connection with the roller, and the driving unit is configured to drive the roller to move in the disposal volume along a set direction.
6. The cleaning and water control device according to claim 5, wherein Guide rails extending along the set direction are provided on two opposite side walls of the water control tank, and two ends of the roller are respectively installed on the two side walls, and at least part of the roller passes through the guide rails and is movably connected with the guide rails.
7. The cleaning and water control device according to claim 1, wherein The cleaning and water control device further includes a liquid collection assembly, the liquid collection assembly is installed on the bracket and is located below the water control tank, the liquid collection assembly has a water inlet, and the water inlet faces the through holes.
8. The cleaning and water control device according to claim 7, wherein The liquid collection assembly has a bottom surface inclined relative to the horizontal plane, and the liquid collection assembly further includes a water outlet, and the water outlet is located at the lowest point of the bottom surface of the liquid collection assembly; And / or, the liquid collection assembly is slidably connected with the bracket, and the liquid collection assembly is configured to be separable from the bracket.
9. The cleaning and water control device according to claim 1, wherein The cleaning and water control device includes at least two of the water control tanks, at least two of the water control tanks are arranged along a set direction, and an extrusion mechanism is configured in each of the water control tanks, the extrusion mechanism includes a roller and a driving unit, the roller is located in the disposal volume, and there is a gap between the roller and the bottom of the water control tank, the driving unit is in transmission connection with the roller, and the driving unit is configured to drive the roller to move in the disposal volume along a set direction.
10. A cleaning and water control device, characterized in that, Comprising: A bracket; A water control tank, the water control tank is installed on the bracket, the water control tank surrounds to form a chamber, the chamber has a disposal volume for placing a drainage bag, and the bottom of the water control tank has through holes penetrating two opposite surfaces thereof; An extrusion mechanism, the extrusion mechanism includes a rolling and a driving unit, the rolling is located in the disposal volume, and there is a gap between the rolling and the bottom of the water control tank, the driving unit is in transmission connection with the rolling, and the driving unit is configured to drive the rolling to move in the disposal volume along a set direction; Wherein, guide rails extending along the set direction are provided on two opposite side walls of the water control tank, both ends of the rolling are respectively installed on the two side walls, and at least part of the rolling passes through the guide rails and is movably connected with the guide rails.