An integrated device for rapid polishing, cleaning and drying and its usage method
By designing a fast polishing, cleaning and drying integrated device including abutment, polishing container, cleaning container and blower, the mobile mechanism is used to achieve rapid treatment of magnesium clamps, the problems of residual surface and low production capacity efficiency of magnesium clamps in existing equipment are solved, and efficient polishing, cleaning and drying effects are achieved.
Patent Information
- Application Number
- CN202411528741.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2044-10-30
AI Technical Summary
The existing market lacks integrated equipment for rapid polishing, cleaning and drying, resulting in residual polishing liquid and cleaning liquid on the surface of magnesium clamps, and low production capacity efficiency.
A rapid polishing, cleaning and drying integrated device is designed, including a base, polishing container, cleaning container and blower, to achieve rapid polishing, cleaning and drying of magnesium clips through a moving mechanism.
It effectively reduces the process interval time, improves production capacity efficiency, and reduces the probability of residual polishing liquid and cleaning liquid on the surface of magnesium clamp.
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Figure CN119392257B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of medical devices, and particularly to a rapid polishing, cleaning, and drying integrated device and its usage method. Background Art
[0002] With the continuous development of society, medical degradable magnesium materials, as in-vivo implantable devices, can spontaneously corrode and degrade in the in-vivo environment and ultimately be completely absorbed by the human body, which is suitable for fundamentally solving the direct and potential problems caused by the retention of traditional permanent implantable medical devices. As a key basic material for high-end products of Class III medical devices, it is particularly important how to safely and effectively utilize medical degradable magnesium materials.
[0003] Among them, the degradable magnesium metal clip (hereinafter referred to as "magnesium clip") obtained the registration approval for innovative products from the National Medical Products Administration in 2023. It is the first Class III medical device product made of degradable magnesium material approved in China and also the tenth magnesium-based implantable medical device product approved for use in the world.
[0004] Currently, after the product was launched on the market, the demand has increased linearly, and the original production capacity construction can no longer meet the existing demand; especially after the magnesium material is processed and formed, there will be burrs and oxide skins on the surface, and subsequent surface polishing and cleaning are required, and then the surface needs to be dried in a timely manner, otherwise oxidation will occur on the surface of the magnesium clip;
[0005] However, there is no corresponding integrated equipment for polishing, cleaning, and drying in the existing market, and the interval time between the three processes of polishing, cleaning, and drying is long, resulting in residues of polishing liquid and cleaning liquid on the surface of the magnesium clip; and the production efficiency is relatively low. Summary of the Invention
[0006] In order to improve the problems existing in the above technology, this application provides a rapid polishing, cleaning, and drying integrated device and its usage method.
[0007] In the first aspect, this application provides a rapid polishing, cleaning, and drying integrated device, adopting the following technical solution:
[0008] A rapid polishing, cleaning, and drying integrated device includes: a base, a polishing container for storing polishing liquid, a cleaning container for storing cleaning liquid, and a blower. The polishing container, the cleaning container, and the blower are all arranged on the base. A moving mechanism is arranged on the base, and a carrying component for carrying magnesium clips is arranged on the moving mechanism.
[0009] By adopting the above technical solution, first place the magnesium clip on the bearing component, and then use the moving mechanism to drive the magnesium clip to pass through the polishing container, cleaning container and blower in sequence and quickly, so as to quickly complete the polishing, cleaning and drying treatment of the magnesium clip, thereby effectively reducing the interval time of the process and improving the production efficiency; and ensure the timely removal of the polishing liquid and the timely drying of the cleaning liquid, reducing the occurrence probability of the residue of the polishing liquid and the cleaning liquid on the surface of the magnesium clip.
[0010] Optionally, the bearing component includes: a fixed rod, a first fixing pin, a limit pin, a first connecting rod, a second connecting rod and a second fixing pin. The limit pin is fixedly arranged on the fixed rod. A first positioning hole and a second positioning hole are penetrated and opened on the first connecting rod. One end of the first fixing pin is fixed to the fixed rod and the other end is fixed in the first positioning hole. One end of the second fixing pin is fixed to the second connecting rod and the other end is fixed in the second positioning hole, and the second connecting rod is connected to the moving mechanism.
[0011] By adopting the above technical solution, hang the magnesium clip between the limit pins, and thus the loading of the magnesium clip can be completed.
[0012] Optionally, the moving mechanism includes: a sliding component and a lifting component. The lifting component is installed on the base platform, the sliding component is installed on the lifting component, and the second connecting rod is connected to the sliding component.
[0013] By adopting the above technical solution, the sliding component can drive the second connecting rod to move horizontally, thereby driving the magnesium clip to pass through the polishing container, the cleaning container and the blower; the lifting component can drive the second connecting rod to move vertically, thereby facilitating immersion into the polishing container and the cleaning container.
[0014] Optionally, the sliding component includes: a connecting cross bar, a third connecting rod, a first fixing screw and a sliding rod. The sliding rod is installed on the lifting component, and a sliding groove is opened on the sliding rod. One end of the third connecting rod is slidably arranged in the sliding groove and the other end is fixedly connected to the connecting cross bar through the first fixing screw, and the second connecting rod is connected to the connecting cross bar.
[0015] By adopting the above technical solution, when pushing the third connecting rod to move, the third connecting rod can drive the connecting cross bar to move, that is, drive the second connecting rod to move.
[0016] Optionally, the sliding component further includes: a shaft wheel and a second fixing screw. A rolling groove is opened on the inner wall of the sliding groove. The second fixing screw is in threaded cooperation with the third connecting rod. The shaft wheel is coaxially sleeved on the second fixing screw, and the shaft wheel is arranged in the rolling groove.
[0017] By adopting the above technical solution, when pushing the third connecting rod to move, the shaft wheel can roll in the rolling groove, thereby making the movement of the third connecting rod smoother.
[0018] Optionally, a third positioning hole is provided on the second connecting rod, a magnet is fixedly arranged in the third positioning hole, and the third connecting rod is fixedly attached to the connecting cross bar through the magnet.
[0019] By adopting the above technical solution, by using the magnetism of the magnet, it is more convenient to separate or connect the second connecting rod and the connecting cross bar.
[0020] Optionally, the lifting assembly includes: a column, a rotary motor, a roller, a rotary shaft, a sliding block, a third fixing pin and a belt. The column is fixed on the base, and a fourth positioning hole is penetrated through the column. One end of the rotary shaft is rotatably installed in the fourth positioning hole and the other end is coaxially fixed with the roller. The rotary motor is installed on the column, and the output shaft of the rotary motor is fixedly arranged coaxially with the rotary shaft. The belt is wound around the roller, the sliding block is fixed on the belt, a fifth positioning hole is penetrated through the inner wall of the sliding groove, and one end of the third fixing pin is fixed to the sliding block and the other end is fixed in the fifth positioning hole.
[0021] By adopting the above technical solution, start the rotary motor to drive the rotary shaft to drive the roller to rotate, so that the belt can drive the sliding block to rise or fall.
[0022] Optionally, an installation assembly is arranged between the blower and the base.
[0023] By adopting the above technical solution, the installation assembly can quickly detach the blower from the base for maintenance or replacement.
[0024] Optionally, the installation assembly includes: a fourth connecting rod and a third fixing screw. One end of the fourth connecting rod is fixed on the base and the other end is fixedly connected to the blower through the third fixing screw.
[0025] By adopting the above technical solution, when disassembling the blower, directly unscrew the third fixing screw from the fourth connecting rod to complete the separation of the blower and the fourth connecting rod.
[0026] In a second aspect, the present application provides a use method of a rapid polishing, cleaning and drying integrated device, adopting the following technical solution:
[0027] A use method of a rapid polishing, cleaning and drying integrated device includes the following steps:
[0028] S1: Place the magnesium clips in the middle of the limit pins and fill them up;
[0029] S2: Adsorb the second connecting rod to the connecting crossbar through a magnet;
[0030] S3: Move the third connecting rod to move the magnesium clamp above the polishing container;
[0031] S4: Start the rotating motor to rotate clockwise to control the sliding rod to descend until the magnesium clamp is completely immersed in the polishing container;
[0032] S5: After polishing for a certain time, start the rotating motor to rotate counterclockwise to control the sliding rod to rise;
[0033] S6: Move the third connecting rod to move the magnesium clamp above the cleaning container;
[0034] S7: Start the rotating motor to rotate clockwise to control the sliding rod to descend until the magnesium clamp is completely immersed in the cleaning container;
[0035] S8: After cleaning for a certain time, start the rotating motor to rotate counterclockwise to control the sliding rod to rise;
[0036] S9: Move the third connecting rod to move the magnesium clamp below the blower;
[0037] S10: Start the blower to heat the magnesium clamp;
[0038] S11: After heating for a certain time, remove the second connecting rod and directly pour out the magnesium clamp to transfer it to the next process;
[0039] S12: Repeat steps S1 - S11 to achieve mass production of the surface treatment of the magnesium clamp.
[0040] By adopting the above technical solution, the production efficiency can be effectively improved.
[0041] In summary, the present application includes at least one of the following beneficial effects:
[0042] 1. First, place the magnesium clamp on the bearing assembly, and then use the moving mechanism to drive the magnesium clamp to sequentially and quickly pass through the polishing container, the cleaning container and the blower, so as to quickly complete the polishing, cleaning and drying of the magnesium clamp, thereby effectively reducing the interval time of the process to improve the production efficiency; and ensure the timely removal of the polishing liquid and the timely drying of the cleaning liquid, reducing the occurrence probability of the residue of the polishing liquid and the cleaning liquid on the surface of the magnesium clamp.
[0043] 2. When pushing the third connecting rod to move, the axle wheel can roll in the rolling groove, thereby making the movement of the third connecting rod smoother.
[0044] 3. When disassembling the blower, directly unscrew the fixing screw three from the fourth connecting rod to complete the separation of the blower from the fourth connecting rod. Description of the Drawings
[0045] Figure 1 is a schematic structural view according to an embodiment of the present application;
[0046] Figure 2 is Figure 1 a schematic front view of
[0047] Figure 3 is Figure 1 a schematic partial enlarged view of part A in
[0048] Figure 4 is along Figure 2 a schematic cross-sectional view taken along the cutting line B-B in
[0049] Figure 5 is Figure 4 a schematic partial enlarged view of part C in
[0050] Figure 6 is Figure 4 a schematic partial enlarged view of part D in
[0051] Figure 7 is along Figure 2 a schematic cross-sectional view taken along the cutting line E-E in
[0052] Figure 8 is Figure 7 a schematic partial enlarged view of part F in
[0053] Figure 9 is Figure 1 a schematic side view of
[0054] Figure 10 is Figure 9 a schematic partial enlarged view of part G in
[0055] In the figure: 1. base; 11. polishing container; 12. cleaning container; 13. blower; 14. reserved groove; 2. bearing assembly; 21. fixing rod; 22. first fixing pin; 23. limiting pin; 24. first connecting rod; 241. first positioning hole; 242. second positioning hole; 25. second connecting rod; 251. third positioning hole; 2511. magnet; 26. second fixing pin; 3. sliding assembly; 31. connecting cross bar; 32. third connecting rod; 33. first fixing screw; 34. sliding rod; 341. sliding groove; 342. rolling groove; 343. fifth positioning hole; 35. shaft wheel; 36. second fixing screw; 4. lifting assembly; 41. column; 411. fourth positioning hole; 42. rotating motor; 43. roller; 44. rotating shaft; 45. sliding block; 46. third fixing pin; 47. belt; 5. mounting assembly; 51. fourth connecting rod; 52. third fixing screw. Detailed implementation manners
[0056] The present application provides an integrated device for rapid polishing, cleaning and drying.
[0057] Refer to Figure 1 , an integrated device for rapid polishing, cleaning and drying includes: a base 1, a polishing container 11 for storing polishing liquid, a cleaning container 12 for storing cleaning liquid, and a blower 13. In this embodiment, the base 1 can be made of metal materials, including but not limited to aluminum, stainless steel, titanium, etc., or resin materials, including but not limited to acrylic, ABS, peek, etc.; the metal materials can be processed and formed by a 3-axis CNC numerical control processing device, and the resin materials can be obtained by 3D printing; and the thickness of the base 1 ≥ 5 mm.
[0058] Refer to Figure 1 , two reserved slots 14 are opened on the top wall of the base 1, the depth of the reserved slots 14 is at least ≥ 2 mm, and the shapes of the reserved slots 14 include but are not limited to rectangles, arc notches, squares, etc.; the polishing container 11 is fixed in one of the reserved slots 14, and the cleaning container 12 is fixed in the other reserved slot 14. In this embodiment, the polishing liquid can be composed of phosphoric acid, ethylene glycol and absolute ethanol, and the ratio can be 1:1:1, so as to effectively remove the burrs and oxide skins on the surface of the magnesium clip; the cleaning liquid is absolute ethanol, so as to effectively remove the residual polishing liquid on the surface of the magnesium clip.
[0059] Refer to Figure 1 , the blower 13 is installed on the top wall of the base 1 through the installation component 5, and the installation component 5 can be used to quickly detach the blower 13 from the base 1 for maintenance or replacement; in this embodiment, the temperature of the blower 13 is set between 80-100 °C, so as to quickly dry the cleaning liquid on the surface of the magnesium clip.
[0060] Refer to Figure 1 , the installation component 5 includes: a connecting rod four 51 and a fixing screw three 52. One end of the connecting rod four 51 is fixed on the top wall of the base 1, and the other end is fixedly connected to the blower 13 through the fixing screw three 52. When it is necessary to disassemble the blower 13, directly unscrew the fixing screw three 52 from the connecting rod four 51 to complete the separation of the blower 13 and the connecting rod four 51.
[0061] Refer to Figure 1 , a moving mechanism is arranged on the top wall of the base 1, and a carrying component 2 is arranged on the moving mechanism. During application, the magnesium clip is placed on the carrying component 2, and then the moving mechanism can be used to drive the magnesium clip to pass through the polishing container 11, the cleaning container 12 and the blower 13 in sequence and quickly, so as to quickly complete the polishing, cleaning and drying processes of the magnesium clip, thereby effectively reducing the interval time of the process and improving the production efficiency; and ensuring the timely removal of the polishing liquid and the timely drying of the cleaning liquid, reducing the occurrence probability of the residual polishing liquid and cleaning liquid on the surface of the magnesium clip.
[0062] See Figure 2 and Figure 3 , the carrier assembly 2 includes: a fixing rod 21, a first fixing pin 22, a limiting pin 23, a first connecting rod 24, a second connecting rod 25 and a second fixing pin 26. In this embodiment, there are two first connecting rods 24, and a plurality of first positioning holes 241 are formed in the side wall of the first connecting rod 24 along the length direction; one end of the first fixing pin 22 is fixedly connected to the end wall of the fixing rod 21, and the other end is welded in the first positioning hole 241, that is, the fixing rod 21 is located between the two first connecting rods 24 and is perpendicular to each other.
[0063] See Figure 3 , the limiting pin 23 is fixed on the top wall of the fixing rod 21. In this embodiment, every two limiting pins 23 are a group, and multiple groups are arranged along the length direction of the fixing rod 21. During application, the magnesium clip can be hung between each group of limiting pins 23, so as to complete the loading of the magnesium clip.
[0064] See Figure 4 and Figure 5 , a second positioning hole 242 is formed in the top wall of one of the first connecting rods 24; one end of the second fixing pin 26 is fixedly connected to the second connecting rod 25, and the other end is welded in the second positioning hole 242, and the end of the second connecting rod 25 away from the first connecting rod 24 is connected to the moving mechanism. During application, the moving mechanism can drive the second connecting rod 25 to move; in this embodiment, there are two second connecting rods 25, and the two second connecting rods 25 are arranged along the length direction of the first connecting rod 24.
[0065] In addition, in this embodiment, the number of the fixing rods 21 and the number of the limiting pins 23 can be increased to increase the number of magnesium clips polished, cleaned and dried at one time.
[0066] See Figure 4 , the moving mechanism includes: a sliding assembly 3 and a lifting assembly 4.
[0067] See Figure 4 and Figure 6 , the sliding assembly 3 includes: a connecting cross bar 31, a third connecting rod 32, a first fixing screw 33 and a sliding rod 34. The sliding rod 34 is installed on the lifting assembly 4, and a sliding groove 341 is formed in the side wall of the sliding rod 34 along the length direction. One end of the third connecting rod 32 is slidably arranged in the sliding groove 341 and slides along the length direction of the sliding groove 341, and the other end is fixedly connected to the connecting cross bar 31 through the first fixing screw 33. In this embodiment, there are two third connecting rods 32; the second connecting rod 25 is connected to the connecting cross bar 31. When the third connecting rod 32 is pushed to move, the third connecting rod 32 can drive the connecting cross bar 31 to move, that is, drive the second connecting rod 25 to move.
[0068] See Figure 4 andFigure 6 , further, a third positioning hole 251 is formed on the side of the second connecting rod 25 away from the connecting cross bar 31, and the third positioning hole 251 is coaxial with the first fixing screw 33; a magnet 2511 is adhesively fixed in the third positioning hole 251, that is, the second connecting rod 25 is adsorbed to the connecting cross bar 31 through the magnet 2511. By using the magnetism of the magnet 2511, it is more convenient to separate or connect the second connecting rod 25 and the connecting cross bar 31; in this embodiment, the third positioning hole 251 does not completely penetrate the second connecting rod 25, but the remaining wall thickness of the second connecting rod 25 shall not be > 0.2 mm to ensure the effective penetration of the magnetic force of the subsequent magnet 2511.
[0069] See Figure 7 and Figure 8 , further, the sliding assembly 3 further includes: a shaft wheel 35 and a second fixing screw 36. A rolling groove 342 is formed in the inner bottom wall of the sliding groove 341 along the length direction, and the shaft wheel 35 is rotatably arranged in the rolling groove 342. The second fixing screw 36 is in threaded cooperation with the end of the third connecting rod 32 away from the connecting cross bar 31, and the shaft wheel 35 is sleeved on the second fixing screw 36. When the third connecting rod 32 is pushed to move, the shaft wheel 35 can roll in the rolling groove 342, so as to make the movement of the third connecting rod 32 smoother.
[0070] See Figure 9 and Figure 10 , in this embodiment, there are two lifting assemblies 4, and the two lifting assemblies 4 are respectively located at both ends of the base 1 along the length direction, and the sliding rod 34 is arranged between the two lifting assemblies 4. The lifting assembly 4 includes: a column 41, a rotary motor 42, a roller 43, a rotary shaft 44, a sliding block 45, a third fixing pin 46 and a belt 47. The column 41 is fixedly installed above the top wall of the base 1, and a fourth positioning hole 411 is formed through the side wall of the column 41. There are two fourth positioning holes 411 on a single column 41, and they are arranged vertically; one end of the rotary shaft 44 is rotatably installed in the fourth positioning hole 411, and the other end is coaxially fixed to the roller 43, and the belt 47 is arranged between the two rollers 43 on a single column 41. The rotary motor 42 is fixedly installed on the column 41, and the output shaft of the rotary motor 42 is coaxially fixed to the rotary shaft 44.
[0071] See Figure 9 and Figure 10 , the sliding block 45 is fixed to the belt 47, and the sliding block 45 is fixed to the belt 47 on only one side, so that the belt 47 can drive the sliding block 45 to move up and down in the vertical direction. A fifth positioning hole 343 is formed through the inner side wall of the sliding groove 341; one end of the third fixing pin 46 is fixedly connected to the sliding block 45, and the other end is welded in the fifth positioning hole 343. During application, the rotary motor 42 is started to drive the rotary shaft 44 to drive the roller 43 to rotate, so that the belt 47 can drive the sliding block 45 to rise or fall.
[0072] The working principle of an integrated device for rapid polishing, cleaning, and drying in this application is as follows: During application, place the magnesium clip between each pair of limit pins 23, and then use the moving mechanism to drive the magnesium clip to pass quickly through the polishing container 11, the cleaning container 12, and the blower 13 in sequence, so as to quickly complete the polishing, cleaning, and drying processes of the magnesium clip, thereby effectively reducing the interval time between processes and improving production efficiency; and ensure the timely removal of the polishing liquid and the timely drying of the cleaning liquid, reducing the probability of residue of the polishing liquid and the cleaning liquid on the surface of the magnesium clip.
[0073] This application also provides a method for using an integrated device for rapid polishing, cleaning, and drying.
[0074] A method for using an integrated device for rapid polishing, cleaning, and drying includes the following steps:
[0075] S1: Place the magnesium clip in the middle of the limit pins 23 and fill it up;
[0076] S2: Adsorb the second connecting rod 25 to the connecting crossbar 31 through the magnet 2511;
[0077] S3: Move the third connecting rod 32 to move the magnesium clip above the polishing container 11;
[0078] S4: Start the rotary motor 42 to rotate clockwise to control the sliding rod 34 to descend until the magnesium clip is completely immersed in the polishing container 11;
[0079] S5: After polishing for a certain period of time, start the rotary motor 42 to rotate counterclockwise to control the sliding rod 34 to rise;
[0080] S6: Move the third connecting rod 32 to move the magnesium clip above the cleaning container 12;
[0081] S7: Start the rotary motor 42 to rotate clockwise to control the sliding rod 34 to descend until the magnesium clip is completely immersed in the cleaning container 12;
[0082] S8: After cleaning for a certain period of time, start the rotary motor 42 to rotate counterclockwise to control the sliding rod 34 to rise;
[0083] S9: Move the third connecting rod 32 to move the magnesium clip below the blower 13;
[0084] S10: Start the blower 13 to heat the magnesium clip;
[0085] S11: After heating for a certain period of time, remove the second connecting rod 25 and directly pour out the magnesium clip to transfer to the next process;
[0086] S12: Repeat steps S1 - S11 to achieve mass production of the surface treatment of the magnesium clip.
[0087] The above are all preferred embodiments of this application, and do not limit the protection scope of this application accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of this application shall be covered within the protection scope of this application.
Claims
1. A rapid polishing, cleaning and drying integrated device, characterized in that: include: A base (1), a polishing container (11) for storing polishing liquid, a cleaning container (12) for storing cleaning liquid, and a blower (13), wherein the polishing container (11), the cleaning container (12), and the blower (13) are all arranged on the base (1), and a moving mechanism is arranged on the base (1), and a bearing assembly (2) for bearing a magnesium clip is arranged on the moving mechanism; The bearing assembly (2) comprises: a fixing rod (21), a fixing pin 1 (22), a limiting pin (23), a connecting rod 1 (24), a connecting rod 2 (25) and a fixing pin 2 (26); the limiting pin (23) is fixedly arranged on the fixing rod (21); a positioning hole 1 (241) and a positioning hole 2 (242) are formed through the connecting rod 1 (24); one end of the fixing pin 1 (22) is fixed to the fixing rod (21) and the other end is fixed in the positioning hole 1 (241); one end of the fixing pin 2 (26) is fixed to the connecting rod 2 (25) and the other end is fixed in the positioning hole 2 (242); and the connecting rod 2 (25) is connected to the moving mechanism; The moving mechanism comprises: a sliding assembly (3) and a lifting assembly (4), wherein the lifting assembly (4) is mounted on the base (1), the sliding assembly (3) is mounted on the lifting assembly (4), and the second connecting rod (25) is connected to the sliding assembly (3); The sliding assembly (3) comprises: a connecting cross bar (31), a connecting rod three (32), a fixing screw one (33) and a sliding rod (34); the sliding rod (34) is mounted on the lifting assembly (4), and a sliding groove (341) is provided on the sliding rod (34); one end of the connecting rod three (32) is slidably arranged in the sliding groove (341), and the other end is fixedly connected to the connecting cross bar (31) by the fixing screw one (33); the connecting rod two (25) is connected to the connecting cross bar (31); The sliding assembly (3) further comprises: an axle wheel (35) and a second fixing screw (36); the inner wall of the sliding groove (341) is provided with a rolling groove (342); the second fixing screw (36) is threadedly matched with the third connecting rod (32); the axle wheel (35) is coaxially sleeved on the second fixing screw (36), and the axle wheel (35) is arranged in the rolling groove (342).
2. The rapid polishing, cleaning and drying integrated device according to claim 1, characterized in that: The second connecting rod (25) is provided with a positioning hole (251), a magnet (2511) is fixedly arranged in the positioning hole (251), and the third connecting rod (32) is fixedly attached to the connecting cross bar (31) via the magnet (2511).
3. The rapid polishing, cleaning and drying integrated device according to claim 1, characterized in that: The lifting assembly (4) comprises: a column (41), a rotary motor (42), a roller (43), a rotary shaft (44), a sliding block (45), a fixing pin (46) and a belt (47). The column (41) is fixed on the base (1), and a positioning hole (411) is formed through the column (41). One end of the rotary shaft (44) is rotatably mounted in the positioning hole (411), and the other end is coaxially fixed to the roller (43). The lever (42) is mounted on the column (41), and the output shaft of the rotary motor (42) is fixedly moved in parallel with the rotary shaft (44), the belt (47) is wound around the roller (43), the sliding block (45) is fixed on the belt (47), a positioning hole (343) is formed through the inner wall of the sliding groove (341), one end of the fixing pin (46) is fixed to the sliding block (45), and the other end is fixed in the positioning hole (343).
4. The rapid polishing, cleaning and drying integrated device according to claim 1, characterized in that: A mounting assembly (5) is provided between the blower (13) and the base (1).
5. The rapid polishing, cleaning and drying integrated device according to claim 4, characterized in that: The mounting assembly (5) comprises: a connecting rod four (51) and a fixing screw three (52); one end of the connecting rod four (51) is fixed to the base (1), and the other end is fixedly connected to the blower (13) via the fixing screw three (52).
6. A method for using the rapid polishing, cleaning and drying integrated device according to any one of claims 1 to 5, characterized in that: The following steps are involved: S1: Place the magnesium clip between the limit pins (23) and fill it up; S2: Adsorb the second connecting rod (25) onto the connecting cross bar (31) via the magnet (2511); S3: moving the connecting rod 3 (32) to move the magnesium clamp to above the polishing container (11); S4: starting the rotary motor (42) to rotate clockwise to control the sliding rod (34) to descend until the magnesium clamp is completely immersed in the polishing container (11); S5: After polishing for a certain period of time, the rotary motor (42) is started to rotate counterclockwise to control the sliding rod (34) to rise; S6: moving the connecting rod 3 (32) to move the magnesium clamp to above the cleaning container (12); S7: Start the rotary motor (42) to rotate clockwise to control the sliding rod (34) to descend until the magnesium clip is completely immersed in the cleaning container (12); S8: After a certain cleaning time, the rotary motor (42) is started to rotate counterclockwise to control the sliding rod (34) to rise; S9: Move the connecting rod 3 (32) to move the magnesium clip to the bottom of the blower (13); S10: starting the blower (13) to heat the magnesium clip; S11: After heating for a certain period of time, remove the second connecting rod (25) and pour out the magnesium clip directly to transfer to the next process; S12: Repeat steps S1-S11 to achieve mass production of magnesium clip surface treatment.
Citation Information
Patent Citations
Electrochemical treatment device
CN215404631U