A modification device and method for high-purity silver target material.

By designing a motor-driven rotation system and filter assembly, the problems of impurity re-attachment and slow dissolution rate during the silver raw material dissolution process were solved, achieving efficient silver target processing.

CN117105316BActive Publication Date: 2025-10-31ZHUZHOU TORCH ANTAI NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202311074589.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-24
Publication Date
2025-10-31
Estimated Expiration
2043-08-24

AI Technical Summary

Technical Problem

In existing equipment, impurities floating on the surface of the solution can easily re-adhere to the surface of the silver raw material during the dissolution process, affecting the dissolution effect and processing quality. At the same time, the dissolution speed is slow, which limits the processing progress.

Method used

A modified high-purity silver target material modification device was designed. The device generates foam to float impurities by driving a rotating column and an active gear system with a motor. Impurities are collected by a filter screen, and the device is combined with a shock-absorbing component to reduce the impact of equipment vibration and ensure the cleanliness of the silver raw material surface.

Benefits of technology

It effectively reduces impurities in the solution, increases the dissolution rate of silver raw materials, ensures the processing quality and progress of silver targets, and reduces the impact of equipment vibration on processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a modification device and method for high-purity silver target material, comprising: an outer casing; a fixed frame, the side of which is fixedly connected to both sides of the outer casing; a motor, the outer surface of which is fixedly connected to the side of the fixed frame; a first upper rotating basket, the inner surface of the middle part of which is fixedly connected to the outer surface of the middle part of the rotating column, facilitating the rotation of the first upper rotating basket in the dissolving solution; a connecting column, the top of which is fixedly connected to the bottom of the rotating column, facilitating the conversion of the rotational force of the rotating column into power generation; a drive gear, the middle part of which is fixedly connected to the outer surface of the connecting column; and a pad, the center of the top of which is movably connected to the bottom of the connecting column. By incorporating a motor, rotating column, first upper rotating basket, first lower rotating basket, drive gear, and foam dispensing assembly, this invention can reduce impurities in the dissolving solution and accelerate the dissolution of silver raw materials during the dissolution process, thereby improving the processing speed of silver target material.
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Description

Technical Field

[0001] This invention relates to the field of high-purity silver target technology, and more specifically, to a modification apparatus and method for high-purity silver target. Background Technology

[0002] High-purity silver targets refer to silver target materials with high purity that have undergone fine preparation and processing. They are commonly used in fields such as the preparation of ultrathin films or research on high-purity metallic silver, the manufacture of optoelectronic devices, optical coatings, and surface modification. Modification equipment refers to specialized equipment used to modify materials, aiming to change the physical, chemical, or surface properties of the original material to improve its specific performance or meet specific needs.

[0003] However, existing devices have certain problems in use. For example, when dissolving and precipitating silver raw materials, the dissolving solution chemically removes impurities from the surface of the silver raw materials. Some of these impurities are relatively light and float in the water. After the dissolution and precipitation are completed, when the silver raw materials are taken out, the impurities floating on the surface of the solution will re-adhere to the surface of the silver raw materials, thereby weakening the dissolution and precipitation effect and affecting the quality of subsequent processing. At the same time, directly immersing the silver raw materials in the dissolving solution and letting them dissolve will result in a slower dissolution rate, which will have a certain impact on the progress of silver target processing. Summary of the Invention

[0004] In order to overcome the above-mentioned defects of the prior art, the embodiments of the present invention provide a modified high-purity silver target material modification equipment and method, which can reduce impurities in the solution and accelerate the dissolution of silver raw materials, thereby improving the processing progress of silver target material and solving the problems mentioned in the background art.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a modification device for high-purity silver target material, comprising...

[0006] outer box;

[0007] A fixing frame, the side of which is fixedly connected to both sides of the outer casing;

[0008] An electric motor, the outer surface of which is fixedly connected to the side of a mounting bracket;

[0009] A rotating column, the top of which is fixedly connected to the drive shaft of a motor;

[0010] The first upper rotating basket has its inner surface in the middle fixedly connected to the outer surface in the middle of the rotating column, which facilitates the rotation of the first upper rotating basket in the solution.

[0011] The top of the No. 1 lower rotating basket is attached to the bottom of the No. 1 upper rotating basket;

[0012] A connecting column, the top of which is fixedly connected to the bottom of a rotating column, so that the rotational force of the rotating column can be used to generate electricity;

[0013] A drive gear, the middle part of which is fixedly connected to the outer surface of the connecting column;

[0014] A pad, the center of the top of which is movably connected to the bottom of the connecting column.

[0015] In a preferred embodiment, the system further includes a water outlet component, an auxiliary dissolving component, a fixing block, a buckle, and a foam outlet component. The water outlet component is located on the front of the outer casing and is used to pour out and recycle the dissolved liquid inside the outer casing. The end of the auxiliary dissolving component is fixedly connected to the outer surface of the rotating column. The back of the fixing block is fixedly connected to the outer surface of the first upper rotating basket. The back of the buckle is fixedly connected to the outer surface of the first lower rotating basket. The middle part of the first lower rotating basket is detachably installed on the outer surface of the buckle. The bottom of the foam outlet component is fixedly connected to the bottom of the inner surface of the outer casing. The middle part of the foam outlet component is meshed with the outer surface of the drive gear.

[0016] In a preferred embodiment, the system further includes a rotating ring, a movable door, a fixed door, a screening assembly, and a shock-absorbing assembly. The bottom of the rotating ring is fixedly connected to the top of the outer casing. The front of the movable door is movably connected to the back of the rotating ring. The side of the fixed door is fixedly connected to the top of the outer casing. The screening assembly is located in the middle of the fixed door to facilitate the vertical movement of the fixed door. The bottom of the screening assembly is slidably connected to the inner surface of the outer casing. The end of the shock-absorbing assembly is fixedly connected to the side of the outer casing, and there is one shock-absorbing assembly on each of the four sides of the outer casing.

[0017] In a preferred embodiment, the water outlet assembly includes a water outlet pipe, a cap, a first sealing ring, and a sponge block. The left end of the water outlet pipe is fixedly connected to the front of the outer casing. The inner surface of the cap is detachably installed on the outer surface of the front of the water outlet pipe. The first sealing ring is disposed on the inner surface of the cap, and the sponge block is disposed on the inner surface of the cap.

[0018] In a preferred embodiment, the auxiliary dissolving assembly includes a first support frame, a second upper rotating basket, a hollow tube, a slot, an elastic mechanism, a telescopic tube, and a second lower rotating basket. The left end of the first support frame is fixedly connected to the outer surface of the rotating column. The middle part of the second upper rotating basket is fixedly connected to the bottom of the first support frame. The top of the hollow tube is fixedly connected to the bottom of the first support frame. The slot is located on the side of the hollow tube to facilitate fixing the position of other components. The side of the elastic mechanism fits against the outer surface of the slot. The outer surface of the telescopic tube is slidably connected to the inner surface of the hollow tube. The inner surface of the telescopic tube is fixedly connected to the side of the elastic mechanism. The middle part of the second lower rotating basket is fixedly connected to the bottom of the telescopic tube.

[0019] In a preferred embodiment, the elastic mechanism includes a fixed column, a movable column, a ball, and a first spring. The left end of the fixed column is fixedly connected to the inner surface of the telescopic tube. The outer surface of the movable column is in contact with the inner surface of the fixed column. The outer surface of the ball is fixedly connected to the right end of the movable column and is in contact with the outer surface of the slot. The end of the first spring is fixedly connected to the outer surface of the ball, and the inner surface of the first spring is movably connected to the outer surface of the movable column.

[0020] In a preferred embodiment, the foam dispensing assembly includes a placement block, a passive drive shaft, a passive gear, a foam machine, a second sealing ring, a conveying pipe, and a container. The bottom of the placement block is fixedly connected to the bottom of the inner surface of the outer casing. The bottom of the passive drive shaft is movably connected to the top of the placement block. The middle part of the passive gear is fixedly connected to the outer surface of the middle part of the passive drive shaft. The outer surface of the passive gear meshes with the outer surface of the drive gear. The bottom of the foam machine is fixedly connected to the top of the passive drive shaft. The outer surface of the foam machine is fixedly connected to the inner surface of the outer casing. The outer surface of the second sealing ring is fixedly connected to the top of the foam machine. One end of the conveying pipe is fixedly connected to the side of the foam machine. The top of the container is fixedly connected to the other end of the conveying pipe. The bottom of the container is fixedly connected to the inner surface of the outer casing.

[0021] In a preferred embodiment, the screening assembly includes a movable frame, a filter screen, and a No. 3 sealing ring. The movable frame is located in the middle of the fixed door. The top of the filter screen is fixedly connected to the bottom of the movable frame. The inner surface of the No. 3 sealing ring is fixedly connected to the outer surface of the filter screen. The outer surface of the No. 3 sealing ring is slidably connected to the inner surface of the outer casing.

[0022] In a preferred embodiment, the shock-absorbing assembly includes a second support frame, a disassembly plate, a telescopic column, a first rubber ring, a second spring, a second rubber ring, and a support foot. The left end of the second support frame is fixedly connected to the side of the outer casing. The top of the disassembly plate is detachably connected to the end of the second support frame. The top of the telescopic column is fixedly connected to the bottom of the disassembly plate. The inner surface of the first rubber ring is fixedly connected to the outer surface of the telescopic column. The top of the first rubber ring is in contact with the bottom of the disassembly plate. The top of the second spring is fixedly connected to the bottom of the first rubber ring. The inner surface of the second spring is movably connected to the outer surface of the telescopic column. The top of the second rubber ring is fixedly connected to the bottom of the second spring. The center of the top of the support foot is in contact with the bottom of the second rubber ring. The center of the top of the support foot is fixedly connected to the bottom of the telescopic column.

[0023] In a preferred embodiment, the following steps are included:

[0024] S1: Place the silver material into the fixed block and the first lower rotating basket, fix it with the buckle and the first lower rotating basket, and turn on the motor to rotate. The rotation of the rotating column will drive the connecting column and the driving gear to rotate, thereby causing the driven gear to rotate as well.

[0025] S2: The passive gear is fixedly connected to the passive drive shaft, which will generate power inside the foam machine. Bubbles will be ejected from the top of the foam machine, achieving the effect of rapid dissolution while also allowing impurities inside the solution to adhere and float to the surface.

[0026] S3: After the rotation and dissolution are completed, pull the screening component to vertically pull the filter screen out of the solution to collect and filter the foam and impurities on the surface of the solution, so as to keep the surface of the silver block as clean as possible when it is taken out.

[0027] The technical effects and advantages of this invention are as follows:

[0028] 1. This invention, by setting up a motor, a rotating column, an upper rotating basket, a lower rotating basket, a drive gear, and a foam dispensing assembly, enables the top motor to drive the rotating column to rotate during the rapid dissolution of silver raw materials. This rotation of the drive gear, in turn, causes the passive gear to rotate, generating electricity. This electricity, in turn, powers the bubble generator inside the foam machine to produce bubbles. With the connection of the container and the delivery pipe, this system can continuously assist the foam machine in its operation, carrying impurities in the solution to the water surface through bubbles. Furthermore, the generation of bubbles does not affect the dissolution effect of the solution. This reduces impurities in the solution while accelerating the dissolution of silver raw materials, thus improving the processing speed of silver target materials.

[0029] 2. By setting up a movable frame, a filter screen, and a No. 3 sealing ring, this invention can effectively collect impurities after they float to the surface through the bubbles using the filtering effect of the filter screen, and at the same time, it can puncture the bubbles. In this way, when the silver raw material is taken out, it can be ensured that the surface of the silver raw material is not attached to the dissolved impurities as much as possible.

[0030] 3. By setting up a shock-absorbing component, the vibration generated by the machine when the silver material inside the outer casing rotates may affect the normal operation of the equipment. With the action of the two shock-absorbing components, No. 1 rubber ring and No. 2 rubber ring, the vibration generated by the drive equipment can be effectively weakened to a minimum, thereby ensuring that the silver material will not be affected during operation. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the overall structure of the present invention.

[0032] Figure 2 This is a cross-sectional assembly structure diagram of the present invention.

[0033] Figure 3 This is a schematic diagram of the water outlet component structure of the present invention.

[0034] Figure 4 This is a schematic diagram of the auxiliary dissolution component structure of the present invention.

[0035] Figure 5 This is a schematic diagram of the elastic mechanism structure of the present invention.

[0036] Figure 6 This is a schematic diagram of the foam dispensing component structure of the present invention.

[0037] Figure 7 This is a schematic diagram of the screening component structure of the present invention.

[0038] Figure 8 This is a schematic diagram of the shock absorption component structure of the present invention.

[0039] The attached diagram is labeled as follows: 1. Outer casing; 2. Water outlet assembly; 3. Fixing frame; 4. Motor; 5. Rotating column; 6. Auxiliary dissolving assembly; 7. Upper rotating basket No. 1; 8. Fixing block; 9. Buckle; 10. Lower rotating basket No. 1; 11. Connecting column; 12. Drive gear; 13. Pad block; 14. Foam outlet assembly; 15. Rotating ring; 16. Movable door; 17. Fixed door; 18. Screening assembly; 19. Shock absorption assembly; 21. Water outlet pipe; 22. Cap; 23. Sealing ring No. 1; 24. Sponge block; 61. Support frame No. 1; 62. Upper rotating basket No. 2; 63. Hollow tube; 64. Groove; 65. 66. Elastic mechanism; 67. Telescopic tube; 68. No. 2 lower rotating basket; 69. Fixed column; 60. Movable column; 61. Rolling ball; 62. No. 1 spring; 13. Placement block; 144. Passive drive shaft; 15. Passive gear; 16. Foam machine; 17. No. 2 sealing ring; 185. Conveying pipe; 196. Container box; 197. Movable frame; 198. Filter screen; 199. No. 3 sealing ring; 190. No. 2 support frame; 191. Disassembly plate; 192. Telescopic column; 193. No. 1 rubber ring; 194. No. 1 spring; 195. No. 2 rubber ring; 196. Support foot. Detailed Implementation

[0040] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0041] As attached Figure 1-8 The apparatus shown is for modifying high-purity silver targets, comprising:

[0042] Outer box 1;

[0043] The fixing frame 3 is fixedly connected to the two sides of the outer casing 1 on its side.

[0044] Motor 4, the outer surface of which is fixedly connected to the side of the fixing frame 3;

[0045] Rotating column 5, the top of which is fixedly connected to the drive shaft of motor 4;

[0046] The first upper rotating basket 7 has its inner surface in the middle fixedly connected to the outer surface in the middle of the rotating column 5, which facilitates the rotation of the first upper rotating basket 7 in the solution.

[0047] The top of the first lower rotating basket 10 is attached to the bottom of the first upper rotating basket 7;

[0048] A connecting column 11 is fixedly connected at its top to the bottom of a rotating column 5, so that the rotational force of the rotating column 5 can be used to generate electricity.

[0049] The driving gear 12 is fixedly connected to the outer surface of the connecting column 11 at its middle part.

[0050] The center of the top of the pad 13 is movably connected to the bottom of the connecting post 11.

[0051] In a preferred embodiment, the system further includes a water outlet component 2, an auxiliary dissolving component 6, a fixing block 8, a buckle 9, and a foam outlet component 14. The water outlet component 2 is located on the front of the outer casing 1 and is used to pour out and recycle the dissolved liquid inside the outer casing 1. The end of the auxiliary dissolving component 6 is fixedly connected to the outer surface of the rotating column 5. The back of the fixing block 8 is fixedly connected to the outer surface of the first upper rotating basket 7. The back of the buckle 9 is fixedly connected to the outer surface of the first lower rotating basket 10. The middle part of the first lower rotating basket 10 is detachably installed on the outer surface of the buckle 9. The bottom of the foam outlet component 14 is fixedly connected to the bottom of the inner surface of the outer casing 1, and the middle part of the foam outlet component 14 is meshed with the outer surface of the drive gear 12.

[0052] In a preferred embodiment, the system further includes a rotating ring 15, a movable door 16, a fixed door 17, a screening assembly 18, and a shock-absorbing assembly 19. The bottom of the rotating ring 15 is fixedly connected to the top of the outer casing 1. The front of the movable door 16 is movably connected to the back of the rotating ring 15. The side of the fixed door 17 is fixedly connected to the top of the outer casing 1. The screening assembly 18 is disposed in the middle of the fixed door 17 to facilitate the vertical movement of the fixed door 17. The bottom of the screening assembly 18 is slidably connected to the inner surface of the outer casing 1. The end of the shock-absorbing assembly 19 is fixedly connected to the side of the outer casing 1, and there is one shock-absorbing assembly on each of the four sides of the outer casing 1.

[0053] In a preferred embodiment, the water outlet assembly 2 includes a water outlet pipe 21, a cap 22, a first sealing ring 23, and a sponge block 24. The left end of the water outlet pipe 21 is fixedly connected to the front of the outer casing 1. The inner surface of the cap 22 is detachably installed on the outer surface of the front of the water outlet pipe 21. The first sealing ring 23 is disposed on the inner surface of the cap 22, and the sponge block 24 is disposed on the inner surface of the cap 22.

[0054] In a preferred embodiment, the auxiliary dissolving component 6 includes a first support frame 61, a second upper rotating basket 62, a hollow tube 63, a slot 64, an elastic mechanism 65, a telescopic tube 66, and a second lower rotating basket 67. The left end of the first support frame 61 is fixedly connected to the outer surface of the rotating column 5. The middle part of the second upper rotating basket 62 is fixedly connected to the bottom of the first support frame 61. The top of the hollow tube 63 is fixedly connected to the bottom of the first support frame 61. The slot 64 is provided on the side of the hollow tube 63 to facilitate the fixing of the position of other components. The side of the elastic mechanism 65 is in contact with the outer surface of the slot 64. The outer surface of the telescopic tube 66 is slidably connected to the inner surface of the hollow tube 63. The inner surface of the telescopic tube 66 is fixedly connected to the side of the elastic mechanism 65. The middle part of the second lower rotating basket 67 is fixedly connected to the bottom of the telescopic tube 66.

[0055] In a preferred embodiment, the elastic mechanism 65 includes a fixed post 651, a movable post 652, a ball bearing 653, and a first spring 654. The left end of the fixed post 651 is fixedly connected to the inner surface of the telescopic tube 66. The outer surface of the movable post 652 is in contact with the inner surface of the fixed post 651. The outer surface of the ball bearing 653 is fixedly connected to the right end of the movable post 652. The outer surface of the ball bearing 653 is in contact with the outer surface of the slot 64. The end of the first spring 654 is fixedly connected to the outer surface of the ball bearing 653. The inner surface of the first spring 654 is movably connected to the outer surface of the movable post 652.

[0056] In a preferred embodiment, the foam dispensing assembly 14 includes a placement block 141, a passive drive shaft 142, a passive gear 143, a foam machine 144, a second sealing ring 145, a delivery pipe 146, and a container 147. The bottom of the placement block 141 is fixedly connected to the bottom of the inner surface of the outer casing 1. The bottom of the passive drive shaft 142 is movably connected to the top of the placement block 141. The middle part of the passive gear 143 is fixedly connected to the outer surface of the middle part of the passive drive shaft 142. The outer surface of the passive gear 143... The outer surface of the foam machine 144 is meshed with the outer surface of the drive gear 12. The bottom of the foam machine 144 is fixedly connected to the top of the passive drive shaft 142. The outer surface of the foam machine 144 is fixedly connected to the inner surface of the outer box 1. The outer surface of the second sealing ring 145 is fixedly connected to the top of the foam machine 144. One end of the conveying pipe 146 is fixedly connected to the side of the foam machine 144. The top of the container 147 is fixedly connected to the other end of the conveying pipe 146. The bottom of the container 147 is fixedly connected to the inner surface of the outer box 1.

[0057] In a preferred embodiment, the screening component 18 includes a movable frame 181, a filter screen 182, and a third sealing ring 183. The movable frame 181 is disposed in the middle of the fixed door 17. The top of the filter screen 182 is fixedly connected to the bottom of the movable frame 181. The inner surface of the third sealing ring 183 is fixedly connected to the outer surface of the filter screen 182. The outer surface of the third sealing ring 183 is slidably connected to the inner surface of the outer casing 1.

[0058] In a preferred embodiment, the shock-absorbing assembly 19 includes a second support frame 191, a disassembly plate 192, a telescopic column 193, a first rubber ring 194, a second spring 195, a second rubber ring 196, and a support foot 197. The left end of the second support frame 191 is fixedly connected to the side of the outer casing 1. The top of the disassembly plate 192 is detachably connected to the end of the second support frame 191. The top of the telescopic column 193 is fixedly connected to the bottom of the disassembly plate 192. The inner surface of the first rubber ring 194 is connected to the telescopic column 195. The outer surface of the 3 is fixedly connected, the top of the first rubber ring 194 is attached to the bottom of the disassembly plate 192, the top of the second spring 195 is fixedly connected to the bottom of the first rubber ring 194, the inner surface of the second spring 195 is movably connected to the outer surface of the telescopic column 193, the top of the second rubber ring 196 is fixedly connected to the bottom of the second spring 195, the center of the top of the support foot 197 is attached to the bottom of the second rubber ring 196, and the center of the top of the support foot 197 is fixedly connected to the bottom of the telescopic column 193.

[0059] In a preferred embodiment, the following steps are included:

[0060] S1: Place the silver material into the fixed block 8 and the first lower rotating basket 10, fix it with the buckle 9 and the first lower rotating basket 10, and turn on the motor 4 to rotate. The rotation of the rotating column 5 will drive the connecting column 11 and the driving gear 12 to rotate, thereby causing the driven gear 143 to rotate as well.

[0061] S2: The passive gear 143 is fixedly connected to the passive drive shaft 142, so that the foam machine 144 will generate power inside, and bubbles will be ejected from the top of the foam machine 144, achieving the effect of rapid dissolution while also allowing impurities inside the solution to adhere and float to the surface.

[0062] S3: After the rotation and dissolution are completed, the filter screen 182 is pulled vertically from the dissolution liquid by pulling the screening component 18 to collect and filter the foam and impurities on the surface of the dissolution liquid, so as to keep the surface of the silver block as clean as possible when it is taken out.

[0063] The working principle of this invention is as follows: When the silver raw material is rapidly dissolved by rotation, the motor 4 at the top can drive the rotating column 5 to rotate, thereby causing the drive gear 12 to rotate. Under the rotation of the drive gear 12, the passive gear 143 will be passively rotated. The rotation of the passive gear 143 generates electricity, which can generate bubbles in the bubble generator inside the foam machine 144. With the connection of the container 147 and the conveying pipe 146, it can assist the foam machine 144 for a long time, bringing impurities in the solution to the water surface through bubbles, and the generation of bubbles will not affect the dissolution effect of the solution.

[0064] After the impurities float to the surface through the bubbles, the filter screen 182 effectively collects the impurities and also pops the bubbles. This ensures that the surface of the silver material is free of dissolved impurities when it is removed.

[0065] When the silver material inside the outer casing 1 is rotated, the vibration generated by the machine may affect the normal operation of the equipment. With the action of the two shock-absorbing components, No. 1 rubber ring 194 and No. 2 rubber ring 196, the vibration generated by the drive equipment can be effectively weakened to a minimum, thereby ensuring that the silver material will not be affected during operation.

[0066] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0067] Secondly: The accompanying drawings of the embodiments disclosed in this invention only involve the structures involved in the embodiments disclosed in this invention. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this invention can be combined with each other.

[0068] In conclusion, the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A modification device for high-purity silver target material, characterized in that, include outer box(1); The side of the fixed frame (3) is fixedly connected to both sides of the outer box (1); The outer surface of the motor (4) is fixedly connected to the side of the fixing frame (3); Rotating column (5), the top of which is fixedly connected to the drive shaft of motor (4); The inner surface of the first upper rotating basket (7) is fixedly connected to the outer surface of the middle part of the rotating column (5), so that the first upper rotating basket (7) can rotate in the solution. The top of the first lower rotating basket (10) is attached to the bottom of the first upper rotating basket (7); A connecting column (11) is fixedly connected to the bottom of a rotating column (5) to facilitate the use of the rotational force of the rotating column (5) for power generation. The driving gear (12) is fixedly connected to the outer surface of the connecting column (11) at its middle part; The center of the top of the pad (13) is movably connected to the bottom of the connecting post (11); The auxiliary dissolving component (6) includes a first support frame (61), a second upper rotating basket (62), a hollow tube (63), a slot (64), an elastic mechanism (65), a telescopic tube (66), and a second lower rotating basket (67). The left end of the first support frame (61) is fixedly connected to the outer surface of the rotating column (5). The outer surface of the telescopic tube (66) is slidably connected to the inner surface of the hollow tube (63). The inner surface of the telescopic tube (66) is fixedly connected to the side of the elastic mechanism (65). Foam outlet assembly (14), which includes a placement block (141), a passive drive shaft (142), a passive gear (143), a foam machine (144), a second sealing ring (145), a delivery pipe (146), and a container (147). The shock absorption assembly (19) includes a second support frame (191), a disassembly plate (192), a telescopic column (193), a first rubber ring (194), a second spring (195), a second rubber ring (196), and a support foot (197).

2. The modification equipment for high-purity silver target material according to claim 1, characterized in that: It also includes a water outlet component (2), a fixing block (8), and a buckle (9). The water outlet component (2) is located on the front of the outer box (1) and is used to pour out and recycle the dissolving liquid inside the outer box (1). The end of the auxiliary dissolving component (6) is fixedly connected to the outer surface of the rotating column (5). The back of the fixing block (8) is fixedly connected to the outer surface of the first upper rotating basket (7). The back of the buckle (9) is fixedly connected to the outer surface of the first lower rotating basket (10). The middle part of the first lower rotating basket (10) is detachably installed with the outer surface of the buckle (9). The bottom of the foam outlet component (14) is fixedly connected to the bottom of the inner surface of the outer box (1). The middle part of the foam outlet component (14) is meshed with the outer surface of the drive gear (12).

3. The modification equipment for high-purity silver target material according to claim 1, characterized in that: It also includes a rotating ring (15), a movable door (16), a fixed door (17), and a screening component (18). The bottom of the rotating ring (15) is fixedly connected to the top of the outer box (1). The front of the movable door (16) is movably connected to the back of the rotating ring (15). The side of the fixed door (17) is fixedly connected to the top of the outer box (1). The screening component (18) is located in the middle of the fixed door (17) to facilitate the up and down movement of the fixed door (17). The bottom of the screening component (18) is slidably connected to the inner surface of the outer box (1). The end of the shock-absorbing component (19) is fixedly connected to the side of the outer box (1), and there is one on each of the four sides of the outer box (1).

4. The modification equipment for high-purity silver target material according to claim 2, characterized in that: The water outlet assembly (2) includes a water outlet pipe (21), a cap (22), a first sealing ring (23), and a sponge block (24). The left end of the water outlet pipe (21) is fixedly connected to the front of the outer casing (1). The inner surface of the cap (22) and the outer surface of the front of the water outlet pipe (21) are detachably installed. The first sealing ring (23) is set on the inner surface of the cap (22), and the sponge block (24) is set on the inner surface of the cap (22).

5. The modification equipment for high-purity silver target material according to claim 2, characterized in that: The middle part of the second upper rotating basket (62) is fixedly connected to the bottom of the first support frame (61), the top of the hollow tube (63) is fixedly connected to the bottom of the first support frame (61), the slot (64) is set on the side of the hollow tube (63) to facilitate the fixing of the position of other components, the side of the elastic mechanism (65) is in contact with the outer surface of the slot (64), and the middle part of the second lower rotating basket (67) is fixedly connected to the bottom of the telescopic tube (66).

6. The modification equipment for high-purity silver target material according to claim 5, characterized in that: The elastic mechanism (65) includes a fixed column (651), a movable column (652), a ball (653), and a first spring (654). The left end of the fixed column (651) is fixedly connected to the inner surface of the telescopic tube (66). The outer surface of the movable column (652) is in contact with the inner surface of the fixed column (651). The outer surface of the ball (653) is fixedly connected to the right end of the movable column (652). The outer surface of the ball (653) is in contact with the outer surface of the slot (64). The end of the first spring (654) is fixedly connected to the outer surface of the ball (653). The inner surface of the first spring (654) is movably connected to the outer surface of the movable column (652).

7. The modification equipment for high-purity silver target material according to claim 2, characterized in that: The bottom of the placement block (141) is fixedly connected to the bottom of the inner surface of the outer box (1), the bottom of the passive drive shaft (142) is movably connected to the top of the placement block (141), the middle part of the passive gear (143) is fixedly connected to the outer surface of the middle part of the passive drive shaft (142), the outer surface of the passive gear (143) meshes with the outer surface of the active gear (12), the bottom of the foam machine (144) is fixedly connected to the top of the passive drive shaft (142), the outer surface of the foam machine (144) is fixedly connected to the inner surface of the outer box (1), the outer surface of the second sealing ring (145) is fixedly connected to the top of the foam machine (144), one end of the conveying pipe (146) is fixedly connected to the side of the foam machine (144), the top of the container (147) is fixedly connected to the other end of the conveying pipe (146), and the bottom of the container (147) is fixedly connected to the inner surface of the outer box (1).

8. The modification equipment for high-purity silver target material according to claim 3, characterized in that: The screening component (18) includes a movable frame (181), a filter screen (182), and a No. 3 sealing ring (183). The movable frame (181) is located in the middle of the fixed door (17). The top of the filter screen (182) is fixedly connected to the bottom of the movable frame (181). The inner surface of the No. 3 sealing ring (183) is fixedly connected to the outer surface of the filter screen (182). The outer surface of the No. 3 sealing ring (183) is slidably connected to the inner surface of the outer casing (1).

9. The modification equipment for high-purity silver target material according to claim 3, characterized in that: The left end of the second support frame (191) is fixedly connected to the side of the outer box (1), the top of the disassembly plate (192) is detachably connected to the end of the second support frame (191), the top of the telescopic column (193) is fixedly connected to the bottom of the disassembly plate (192), the inner surface of the first rubber ring (194) is fixedly connected to the outer surface of the telescopic column (193), and the top of the first rubber ring (194) is attached to the bottom of the disassembly plate (192). The top of the first spring (195) is fixedly connected to the bottom of the first rubber ring (194), the inner surface of the second spring (195) is movably connected to the outer surface of the telescopic column (193), the top of the second rubber ring (196) is fixedly connected to the bottom of the second spring (195), the center of the top of the support foot (197) is in contact with the bottom of the second rubber ring (196), and the center of the top of the support foot (197) is fixedly connected to the bottom of the telescopic column (193).

10. A method for modifying a high-purity silver target material, characterized in that: The modification equipment applied to the high-purity silver target material modified as described in claim 1 includes the following steps: S1: Place the silver material into the fixed block (8) and the first lower rotating basket (10), fix it with the buckle (9) and the first lower rotating basket (10), and turn on the motor (4) to rotate. The rotation of the rotating column (5) will drive the connecting column (11) and the driving gear (12) to rotate, so that the passive gear (143) will rotate accordingly. S2: The passive gear (143) is fixedly connected to the passive drive shaft (142), so that the foam machine (144) will generate power inside, and the bubbles will be ejected from the top of the foam machine (144), achieving the effect of rapid dissolution while also adhering to and floating the impurities inside the solution. S3: After the rotation and dissolution are completed, the filter screen (182) is pulled vertically from the dissolution liquid by pulling the screening component (18) to collect and filter the foam and impurities on the surface of the dissolution liquid, so as to keep the surface as clean as possible when the silver block is taken out.

Citation Information

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