Wastewater treatment system for copper etching liquid production
The vibration speed and amplitude are adjusted by gear meshing and linkage structure, which solves the problem of automatic adjustment in the existing technology and improves the particle removal efficiency of the wastewater treatment system and the convenience of equipment maintenance.
Patent Information
- Application Number
- CN202510666750.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-22
- Publication Date
- 2025-10-10
AI Technical Summary
现有技术中铜蚀刻液生产用废水处理系统无法自动调节震动速度和震动幅度,导致颗粒物难以有效震落。
The gear meshing and linkage structure is adopted. The vibration speed is adjusted by meshing gear four with gear three, and the vibration amplitude is adjusted by meshing gear one with gear two. Combined with the linkage cooperation of the cross rod, linkage seat and oblique bar hole, the vibration speed and amplitude of the guide box can be automatically adjusted.
It realizes automatic adjustment of vibration speed and amplitude, improves the efficiency of particle removal, simplifies equipment maintenance, and enhances the system's automatic control capabilities.
Smart Images

Figure CN120754595A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to wastewater treatment technical field, especially to a kind of wastewater treatment system for copper etching liquid production. BACKGROUND
[0002] Copper etching liquid production process can produce copper-containing wastewater, need to be handled by physical, chemical, biological and other multi-level processing technology integrated system solution, finally reach industrial wastewater discharge standard or recycling requirement, copper wastewater treatment is usually removed by grid, sedimentation tank and other physical methods Large particle material and suspended solids in wastewater, reduce the subsequent processing load of wastewater treatment system, after removing large particle material and suspended solids, sand filter, activated carbon filter and other ways are used to further remove suspended solids, small particles and possible dissolved organic matter.
[0003] However, the prior art still has the following defects: the filtering device capable of automatically discharging particles in copper-containing wastewater cannot automatically adjust the vibration speed and vibration amplitude to shake off the particles remaining on the waste discharge device. Therefore, we propose a wastewater treatment system for copper etching liquid production to solve the above-mentioned problems. SUMMARY
[0004] The present application aims to provide a wastewater treatment system for copper etching liquid production, which solves the problem of not being able to automatically adjust the vibration speed and vibration amplitude in the prior art.
[0005] Therefore, the wastewater treatment system for copper etching liquid production adopted by the present application comprises: a wastewater tank, a round rod four rotatably arranged on the wastewater tank, a filter screen fixedly arranged on the round rod four, a spray head fixedly arranged on the wastewater tank, a gear four fixedly arranged on the round rod four, a gear one fixedly arranged on the round rod four, a gear two engaged with the gear one, a limiting plug rod fixedly penetrating through the gear two, a gear three fixedly arranged at the end of the limiting plug rod, a round tube movably sleeved on the limiting plug rod, a support frame one rotatably connected with the round tube, a linkage seat one fixedly connected with the end of the limiting plug rod, an inclined strip hole opened on both sides of the linkage seat one, a linkage seat two movably sleeved on the linkage seat one, a cross rod sliding on the track of the inclined strip hole, a round block fixedly arranged at the end of the linkage seat two, a bearing six fixedly sleeved on the outer circle of the round block, a rectangular hole one opened on the round block, a vibration assembly rotatably arranged at the end of the cross rod, and a guide box pressed on the vibration assembly; the cross rod movably penetrates through the rectangular hole one.
[0006] Optionally, the filter screen is fixedly arranged on a fan frame, the fan frame is fixedly arranged on the round rod four, the outer circle of the fan frame is fixedly provided with a fixed ring, the fixed ring is rotatably inserted into a groove seat, the inner wall of the wastewater tank is provided with a groove, and the groove seat is movably inserted into the groove.
[0007] Optionally, the top of the wastewater tank is fixedly provided with two groups of cross blocks, the cross blocks are movably sleeved with plug blocks, the plug blocks are integrally formed with support rods, the support rods are provided with U-shaped grooves, the two ends of the round rod four are sleeved with bearings two, the inner ring of the bearings two is fixedly connected with the outer ring of the round rod four, the outer ring of the bearings two is fixedly provided with a limiting block, and the bearings two and the limiting block are movably inserted into the U-shaped groove.
[0008] Optionally, one side of the support rod is fixedly provided with a motor, the motor is fixedly connected with the end of the round rod four through a shaft coupling, one side of the top of the support rod is fixedly provided with a controller, the support rod is fixedly provided with an electric push rod, a bearing eight is fixedly inserted into the gear three, and the outer ring of the bearing eight is fixedly connected with the inner ring of the gear three, and the piston rod end of the electric push rod is fixedly inserted into the bearing eight.
[0009] Optionally, the outer ring of the round pipe is fixedly inserted into the inner ring of the bearing three, the outer ring of the bearing three is fixedly inserted into the support frame one, the support frame one is fixedly arranged on the support plate, the outer ring of the bearing six is fixedly arranged on the support frame two, the bottom of the support frame two is fixedly arranged on the support plate, and the support plate is fixedly arranged on the wastewater tank.
[0010] Optionally, the two sides of the linkage seat one are fixedly provided with limiting connecting rods, the ends of the limiting connecting rods are fixedly provided with limiting rods, the two sides of the linkage seat two are provided with flat hole, the limiting connecting rods are movably inserted into the flat hole, the two sides of the linkage seat two are integrally formed with limiting frames two, the limiting rods are movably inserted into the limiting frames two, the top and bottom of the linkage seat two are integrally formed with longitudinal limiting blocks, the top and bottom of the cross rod are movably inserted into the longitudinal limiting blocks, the two sides of the cross rod are integrally formed with sliding rods, and the sliding rods are slidably inserted into the inclined strip holes.
[0011] Optionally, one side of the top of the support plate is fixedly provided with a U-shaped seat, the U-shaped seat is fixedly provided with a round rod one, the round rod one is rotatably sleeved with a turntable, and the top of the turntable is fixedly connected with one side of the bottom of the guide box.
[0012] Optionally, the top and bottom of the limiting plug rod are fixedly provided with convex blocks, the top and bottom of the round pipe are provided with strip holes, and the convex blocks are movably inserted into the strip holes.
[0013] Optionally, the top of the support rod is fixedly provided with a water pump, the output end of the water pump is fixedly provided with a water pipe, and the output end of the water pipe is fixedly provided with a spray head.
[0014] Optionally, the vibration assembly comprises an elongated round rod three integrally formed at the end of the cross bar, a connecting rod one rotatably arranged on the elongated round rod three, a connecting rod two rotatably arranged on the connecting rod one, a top rod fixedly arranged at the top of the connecting rod two, a gravity sensor fixedly arranged at the top of the top rod, and a limiting rod fixedly arranged on the support frame one, the connecting rod two movably passes through the limiting rod, the outer ring of the elongated round rod three is fixedly arranged through the inner ring of the bearing seven, the outer ring of the bearing seven is fixedly arranged through the connecting rod one, and the end of the connecting rod two and the end of the connecting rod one are rotatably connected through the round rod two.
[0015] Compared with the prior art, the present application has the following advantages: When in use, the gear four can engage with the gear three, the rotation speed is slow, the gear one can engage with the gear two, the rotation speed is fast, the gear three is pushed and pulled to control the vibration speed of the guide box, when the limiting plug rod moves on the circular tube and the gear one, the gear four, the gear three and the gear two engage to adjust the vibration speed of the guide box, through the linkage of the cross bar, the linkage seat one, the inclined slot hole, the round block, the bearing six and the linkage seat two, when the limiting plug rod is inserted into the circular tube, the vibration amplitude of the guide box can be automatically adjusted, when the limiting plug rod is away from the circular tube, the gear three engages with the gear four, the vibration speed slows down, the elongated round rod three moves down in the round block, thereby reducing the vibration amplitude; when the limiting plug rod is inserted into the circular tube, the gear one engages with the gear two, the elongated round rod three moves up in the round block, thereby increasing the vibration amplitude, through the cooperation of the inclined slot hole and the cross bar, the position of the cross bar is raised and lowered. The second, the particles in the wastewater in the wastewater tank can be filtered, through the cooperation of the groove seat and the groove, the filter screen, the fan frame and the fixing ring are convenient to maintain, through the cooperation of the cross block and the plug block, the support rod and the wastewater tank are convenient to fix quickly, through the cooperation of the bearing two, the limiting block and the U-shaped groove, the round rod four is convenient to rotate on the support rod, the motor can drive the round rod four to rotate, at the same time, the gear four, the gear one and the filter screen are driven to rotate, the filter screen rotates to conveniently take the particles in the wastewater, the controller can control the electric push rod, through the cooperation of the piston rod of the electric push rod and the bearing eight, the gear three is pushed without affecting the rotation of the gear three, the bearing three is convenient for the circular tube to rotate in place, the support plate plays a supporting role, through the cooperation of the support frame two, the bearing six and the round block, the round block is convenient to rotate in place, through the cooperation of the limiting connecting rod and the flat slot hole, the linkage seat one, the linkage seat two and the cross bar are limited, through the cooperation of the limiting frame two and the limiting rod, the linkage seat one, the linkage seat two and the cross bar are limited, through the cooperation of the longitudinal limiting block and the cross bar, the cross bar is limited, through the cooperation of the sliding rod and the inclined slot hole, the cross bar is limited. III. Through the cooperation of the U-shaped seat, the round rod one and the rotating disc, the guide box is facilitated to rotate with the round rod one as the shaft; through the cooperation of the protrusion and the strip-shaped hole, the limiting insertion rod and the circular tube are facilitated to be limited; through the water pump pumping water into the water pipe, the water can be sprayed from the nozzle to wash away the particulate matter attached on the filter screen; through the linkage cooperation of the connecting rod one, the connecting rod two, the limiting rod and the extension round rod three, the guide box is facilitated to be vibrated. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 is a schematic diagram of the overall three-dimensional structure of the present application; Figure 2 is a schematic diagram of the partial exploded cross-sectional structure of the present application; Figure 3 is a schematic diagram of the partial exploded three-dimensional structure of the present application; Figure 4 is a schematic diagram of the partial three-dimensional structure of the present application; Figure 5 is a schematic diagram of the partial exploded three-dimensional structure of the present application; Figure 6 is a schematic diagram of the partial exploded three-dimensional structure of the present application; Figure 7 is a schematic diagram of the partial exploded three-dimensional structure of the present application; Figure 8 is a schematic diagram of the partial exploded three-dimensional structure of the present application; Figure 9 is a schematic diagram of the partial three-dimensional structure of the present application; Figure 10 is a schematic diagram of the partial three-dimensional structure of the present application.
[0017] BRIEF DESCRIPTION OF DRAWINGS 1, filter screen; 2, fan skeleton; 3, fixed ring; 4, groove seat; 5, extension round rod three; 6, gear one; 7, gear two; 8, gear three; 9, round pipe; 10, strip hole; 11, protruding block; 12, support frame one; 13, round block; 14, connecting rod one; 15, connecting rod two; 16, ejector rod; 17, round rod one; 18, rotary disc; 19, gear four; 20, round rod two; 21, limiting rod; 22, electric push rod; 23, controller; 24, motor; 25, support frame two; 26, gravity sensor; 27, spray head; 28, water pump; 29, water pipe; 30, guide box; 31, U-shaped seat; 32, support plate; 33, round rod four; 34, support rod; 35, U-shaped groove; 36, plug block; 37, cross block; 38, wastewater pool; 39, recess; 40, rectangular hole one; 41, bearing two; 42, limiting block; 43, bearing three; 44, limiting plug rod; 45, linkage seat one; 46, limiting connecting rod; 47, limiting single strip; 48, inclined strip hole; 49, linkage seat two; 50, flat strip hole; 51, longitudinal limiting block; 52, limiting frame two; 53, cross rod; 54, sliding rod; 55, bearing six; 57, bearing seven; 58, bearing eight. DETAILED DESCRIPTION
[0018] In order to better understand the purpose, structure and function of the present application, the following will be combined with the accompanying drawings to make a further detailed description. Figures 1-8 The present application is further described in detail.
[0019] Example one, refer to Figures 1-8The present application discloses a wastewater treatment system for copper etching liquid production, which can automatically adjust the vibration speed and vibration amplitude to solve the problem of the particles remaining on the waste disposal equipment, and comprises a wastewater pool 38, a round rod four 33 rotatably arranged on the wastewater pool 38, a filter screen 1 fixedly arranged on the round rod four 33, a spray head 27 fixedly arranged on the wastewater pool 38, a gear four 19 fixedly arranged on the round rod four 33, a gear one 6 fixedly arranged on the round rod four 33, a gear two 7 engaged with the gear one 6, a limiting plug rod 44 fixedly penetrating through the gear two 7, a gear three 8 fixedly arranged at the end of the limiting plug rod 44, a round pipe 9 movably sleeved on the limiting plug rod 44, a support frame one 12 rotatably connected with the round pipe 9, a linkage seat one 45 fixedly connected with the end of the limiting plug rod 44, an inclined strip hole 48 formed on the two sides of the linkage seat one 45, a linkage seat two 49 movably sleeved on the linkage seat one 45, a cross rod 53 sliding on the track of the inclined strip hole 48, a round block 13 fixedly arranged at the end of the linkage seat two 49, a bearing six 55 with an inner ring fixedly sleeved on the outer ring of the round block 13, a rectangular hole one 40 formed on the round block 13, a vibration assembly rotatably arranged at the end of the cross rod 53 and a guide box 30 pressed on the vibration assembly, and the cross rod 53 movably penetrates through the rectangular hole one 40. In use, the gear four 19 can be engaged with the gear three 8, the rotation speed is slow, the gear one 6 can be engaged with the gear two 7, the rotation speed is fast, the gear three 8 is pushed and pulled to control the vibration speed of the guide box 30, when the limiting plug rod 44 moves on the round pipe 9, the gear one 6, the gear four 19, the gear three 8 and the gear two 7 are engaged to adjust the vibration speed of the guide box 30, through the linkage of the cross rod 53, the linkage seat one 45, the inclined strip hole 48, the round block 13, the bearing six 55 and the linkage seat two 49, when the limiting plug rod 44 is inserted into the round pipe 9, the vibration amplitude of the guide box 30 can be automatically adjusted, when the limiting plug rod 44 is away from the round pipe 9, the gear three 8 is engaged with the gear four 19, the vibration speed is slow, the extension round rod three 5 is lowered in the round block 13, thereby reducing the vibration amplitude; when the limiting plug rod 44 is inserted into the round pipe 9, the gear one 6 is engaged with the gear two 7, the extension round rod three 5 is raised in the round block 13, thereby increasing the vibration amplitude, through the cooperation of the inclined strip hole 48 and the cross rod 53, the position of the cross rod 53 is raised and lowered.
[0020] The filter screen 1 is fixedly arranged on the fan framework 2, the fan framework 2 is fixedly arranged on the round rod four 33, the outer ring of the fan framework 2 is fixedly arranged with a fixed ring 3, the fixed ring 3 is rotatably inserted into a slot seat 4, the inner wall of the wastewater pool 38 is formed with a groove 39, and the slot seat 4 is movably inserted into the groove 39. The filter screen 1, the fan framework 2 and the fixed ring 3 can filter the particles in the wastewater in the wastewater pool 38, and the cooperation of the slot seat 4 and the groove 39 facilitates the maintenance of the filter screen 1, the fan framework 2 and the fixed ring 3.
[0021] The top of the wastewater pool 38 is fixedly provided with two groups of cross blocks 37, the cross blocks 37 are movably sleeved with plug blocks 36, the two plug blocks 36 are integrally formed with support rods 34, the support rods 34 are provided with U-shaped grooves 35, the two ends of the round rod four 33 are sleeved with bearings two 41, the inner ring of the bearing two 41 is fixedly connected with the outer ring of the round rod four 33, the outer ring of the bearing two 41 is fixedly provided with a limiting block 42, and the bearing two 41 and the limiting block 42 are movably inserted into the U-shaped groove 35. Through the cooperation of the cross block 37 and the plug block 36, the support rod 34 and the wastewater pool 38 are conveniently and quickly fixed, and through the cooperation of the bearing two 41, the limiting block 42 and the U-shaped groove 35, the round rod four 33 is conveniently rotated on the support rod 34.
[0022] One side of the support rod 34 is fixedly provided with a motor 24, the motor 24 is fixedly connected with the end of the round rod four 33 through a shaft coupling, one side of the top of the support rod 34 is fixedly provided with a controller 23, the support rod 34 is fixedly provided with an electric push rod 22, a bearing eight 58 is fixedly inserted into the gear three 8, the outer ring of the bearing eight 58 is fixedly connected with the inner ring of the gear three 8, and the piston rod end of the electric push rod 22 is fixedly inserted into the bearing eight 58. The motor 24 can drive the round rod four 33 to rotate, and at the same time drive the gear four 19, the gear one 6 and the filter screen 1 to rotate, the rotation of the filter screen 1 can conveniently bring the particles in the wastewater, the controller 23 can control the electric push rod 22, and through the cooperation of the piston rod of the electric push rod 22 and the bearing eight 58, the gear three 8 can be conveniently pushed without affecting the rotation of the gear three 8.
[0023] Embodiment two, refer to Figures 1-8 In order to solve the problem that the vibration speed and the vibration amplitude cannot be automatically adjusted to shake off the particles remaining on the waste discharge equipment, in the embodiment, based on the same concept as the above-mentioned embodiment one, the wastewater treatment system for copper etching liquid production further comprises: the outer ring of the circular tube 9 is fixedly penetrated through the inner ring of the bearing three 43, the outer ring of the bearing three 43 is fixedly penetrated through the support frame one 12, the support frame one 12 is fixedly arranged on the support plate 32, the outer ring bottom of the bearing six 55 is fixedly arranged on the support frame two 25, the bottom of the support frame two 25 is fixedly arranged on the support plate 32, and the support plate 32 is fixedly arranged on the wastewater pool 38. The bearing three 43 facilitates the circular tube 9 to rotate in place, the support plate 32 plays a supporting role, and through the cooperation of the support frame two 25, the bearing six 55 and the circular block 13, the circular block 13 is facilitated to rotate in place.
[0024] The linkage seat one 45 is fixedly provided with a limiting connecting rod 46 at both sides, the limiting connecting rod 46 is fixedly provided with a limiting single rod 47 at the end, the linkage seat two 49 is provided with a flat hole 50 at both sides, the limiting connecting rod 46 is movably inserted into the flat hole 50, the linkage seat two 49 is integrally formed with a limiting frame two 52 at both sides, the limiting single rod 47 is movably inserted into the limiting frame two 52, the linkage seat two 49 is integrally formed with a longitudinal limiting block 51 at the top and the bottom, the cross rod 53 is movably inserted into the longitudinal limiting block 51, the cross rod 53 is integrally formed with a sliding rod 54 at both sides, and the sliding rod 54 is slidably inserted into the inclined hole 48. The linkage seat one 45, the linkage seat two 49 and the cross rod 53 are limited by the cooperation of the limiting connecting rod 46 and the flat hole 50, the linkage seat one 45, the linkage seat two 49 and the cross rod 53 are limited by the cooperation of the limiting frame two 52 and the limiting single rod 47, the cross rod 53 is limited by the cooperation of the longitudinal limiting block 51 and the cross rod 53, and the cross rod 53 is limited by the cooperation of the sliding rod 54 and the inclined hole 48.
[0025] The top side of the supporting plate 32 is fixedly provided with a U-shaped seat 31, the U-shaped seat 31 is fixedly provided with a round rod one 17, the round rod one 17 movably sleeves the rotating disc 18, and the top of the rotating disc 18 is fixedly connected with the bottom side of the guide box 30. The guide box 30 is rotatable around the round rod one 17 by the cooperation of the U-shaped seat 31, the round rod one 17 and the rotating disc 18. The top and the bottom of the limiting inserting rod 44 are fixedly provided with protrusions 11, the top and the bottom of the circular tube 9 are provided with strip-shaped holes 10, and the protrusions 11 are movably inserted into the strip-shaped holes 10. The limiting inserting rod 44 and the circular tube 9 are limited by the cooperation of the protrusions 11 and the strip-shaped holes 10.
[0026] The top of the supporting rod 34 is fixedly provided with the water pump 28, the output end of the water pump 28 is fixedly provided with the water pipe 29, and the output end of the water pipe 29 is fixedly provided with the spray head 27. The particles adhered to the filter screen 1 can be washed away by water sprayed from the spray head 27 by pumping water into the water pipe 29 by the water pump 28.
[0027] The vibration assembly comprises an extension round rod three 5 integrally formed at the end of the cross rod 53, a connecting rod one 14 rotatably arranged on the extension round rod three 5, a connecting rod two 15 rotatably arranged on the connecting rod one 14, a top rod 16 fixedly arranged at the top of the connecting rod two 15, a gravity sensor 26 fixedly arranged at the top of the top rod 16, and a limiting rod 21 fixedly arranged on the supporting frame one 12, the connecting rod two 15 is movably inserted into the limiting rod 21, the outer ring of the extension round rod three 5 is fixedly inserted into the inner ring of the bearing seven 57, the outer ring of the bearing seven 57 is fixedly inserted into the connecting rod one 14, and the end of the connecting rod two 15 and the end of the connecting rod one 14 are rotatably connected by the round rod two 20. The guide box 30 is vibrated by the linkage cooperation of the connecting rod one 14, the connecting rod two 15, the limiting rod 21 and the extension round rod three 5.
[0028] It is worth mentioning that, by gravity sensor 26 is subjected to gravity, set the gravity demand value, to demand gravity, gravity sensor 26 signal to the controller 23, so as to control the electric push rod 22 piston rod push and pull back; Controller 23 can be selected model H3U-3232MTPLC, motor 24 can be selected model ECMA-C20604RS, gravity sensor 26 can be selected model FS series micro force sensor, electric push rod 22 can be selected model God electric push rod LW series.
[0029] The specific working principle is: in the wastewater treatment process of copper etching solution production, the first step is to filter out the particles in the copper-containing wastewater, which is convenient for subsequent sand filtration and other links; In use, start the motor 24, drive the round rod four 33, the gear four 19, the gear one 6 and the filter screen 1 to rotate, start the water pump 28 to spray water on the filter screen 1 through the water pipe 29 and the nozzle 27, and the particles are washed to the guide box 30, and the gravity signal received by the guide box 30 is transmitted to the controller 23, so as to control the electric push rod 22 to push or pull back the gear three 8 and the gear two 7; Case one: S1, when the vibration speed of the guide box 30 needs to be reduced while the vibration amplitude of the guide box 30 is reduced, pull back the gear three 8 and the gear two 7, the gear four 19 and the gear three 8 meshing, the vibration speed of the guide box 30 is slowed down; And the pullback of the limiting plug rod 44 drives the cross rod 53 and the extension round rod three 5 to move down, thereby reducing the vibration amplitude of the guide box 30; S2, pull the gear three 8 and the gear two 7, which will drive the limiting plug rod 44 to pull out the round pipe 9, and through the cooperation of the protrusion 11 and the strip hole 10, the limiting plug rod 44 and the round pipe 9 are limited, when the gear three 8 and the limiting plug rod 44 rotate, the round pipe 9 is driven to rotate, the limiting plug rod 44 drives the linkage seat one 45 to rotate, the linkage seat two 49 is also driven to rotate, thereby driving the connecting rod one 14 and the connecting rod two 15 to cooperate and drive the top rod 16 to vibrate the guide box 30, and the pullback of the limiting plug rod 44 drives the linkage seat one 45 to pull back on the linkage seat two 49, while the limiting plug rod 46 is pulled back in the flat strip hole 50, the limiting plug rod 47 is inserted in the limiting frame 52, the cross rod 53 is pulled back to the low position in the inclined strip hole 48, resulting in the extension round rod three 5 moving to the center direction of the round block 13, thereby controlling the vibration amplitude and frequency of the connecting rod two 15. Because of the linkage design, the change of vibration frequency will inevitably lead to the change of vibration amplitude, and the pullback of the limiting plug rod 44 will lead to the slow vibration frequency, which will inevitably lead to the small vibration amplitude; Case two: S1, when the vibration amplitude of the guide box 30 needs to be increased while the vibration speed of the guide box 30 is increased, the gear three 8 and the gear two 7 are pushed out, the gear one 6 and the gear two 7 are engaged, and the vibration speed of the guide box 30 is increased; S2, and the limiting plug rod 44 pushes the cross rod 53 and the extension round rod three 5 upwards, so that the vibration amplitude of the guide box 30 is increased; the gear three 8 and the gear two 7 are pushed, the limiting plug rod 44 is inserted into the circular tube 9, the limiting plug rod 44 and the circular tube 9 are limited through the cooperation of the protrusion 11 and the strip hole 10, when the gear three 8 and the limiting plug rod 44 rotate, the circular tube 9 is rotated, the limiting plug rod 44 drives the linkage seat one 45 to rotate, the linkage seat two 49 is also driven to rotate, so as to drive the connecting rod one 14 and the connecting rod two 15 to cooperate and drive the top rod 16 to vibrate the guide box 30, and the insertion of the limiting plug rod 44 drives the linkage seat one 45 to be inserted into the linkage seat two 49, at the same time, the limiting connecting rod 46 is inserted along the flat strip hole 50, the limiting single rod 47 is pulled back in the limiting frame 52, the cross rod 53 is inserted back to the high position in the inclined strip hole 48, so that the extension round rod three 5 is away from the circular center direction of the circular block 13, thereby controlling the vibration amplitude and the vibration frequency of the connecting rod two 15. The insertion of the limiting plug rod 44 causes the vibration frequency to be fast, and the linkage necessarily causes the vibration amplitude to be large.
[0030] Case three, remove the gravity sensor 26 and the controller 23, the vibration amplitude and the vibration frequency of the guide box 30 can be controlled by directly controlling the pushing of the piston rod of the electric push rod 22, and the vibration effect can also be achieved.
[0031] It should be noted that, in the present text, relational terms such as first and second and the like can only be used to distinguish one entity or action from another entity or action, without necessarily requiring or implying that there is any such actual relationship or order between these entities or actions. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or equipment including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or equipment.
[0032] The above are all preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, therefore: any equivalent changes made on the basis of the structure, shape, principle of the present application shall be covered within the protection scope of the present application.
Claims
1. A wastewater treatment system for copper etching solution production, characterized in that: include: Wastewater tank (38), round rod four (33) rotatably mounted on wastewater tank (38), filter screen (1) fixedly mounted on round rod four (33), nozzle (27) fixedly mounted on wastewater tank (38), gear four (19) fixedly mounted on round rod four (33), gear one (6) fixedly mounted on round rod four (33), gear two (7) meshed with gear one (6), a limit rod (44) fixedly passed through gear two (7), gear three (8) fixedly mounted at the end of the limit rod (44), a round tube (9) movably sleeved on the limit rod (44), a support frame one (12) rotatably connected to the round tube (9), and a support frame one (13) rotatably connected to the limit rod (9). A linkage seat (45) fixedly connected to the end of the insertion rod (44), oblique bar holes (48) opened on both sides of the linkage seat (45), a linkage seat (49) movably sleeved on the linkage seat (45), a cross rod (53) sliding on the track of the oblique bar hole (48), a round block (13) fixedly set at the end of the linkage seat (49), a bearing (55) with an inner ring fixedly sleeved on the outer ring of the round block (13), a rectangular hole (40) opened on the round block (13), a vibration component rotatably set at the end of the cross rod (53) and a guide box (30) pressed on the vibration component; the cross rod (53) movably passes through the rectangular hole (40).
2. A copper etching solution production wastewater treatment system according to claim 1, characterized in that: The filter screen (1) is fixedly arranged on the fan frame (2), the fan frame (2) is fixedly arranged on the round rod (33), the outer ring of the fan frame (2) is fixedly provided with a fixing ring (3), the fixing ring (3) is rotatably inserted into the groove seat (4), the inner wall of the wastewater tank (38) is provided with a groove (39), and the groove seat (4) is movably inserted into the groove (39).
3. A copper etching solution production wastewater treatment system according to claim 2, characterized in that: Two groups of cross blocks (37) are fixedly provided on the top of the wastewater tank (38), and plug blocks (36) are movably sleeved on the cross blocks (37). Support rods (34) are integrally formed on the two plug blocks (36), and a U-shaped groove (35) is provided on the support rod (34). Bearings (41) are sleeved on both ends of the round rod (33), and the inner ring of the bearing (41) is fixedly connected to the outer ring of the round rod (33). A limit block (42) is fixedly provided on the outer ring of the bearing (41), and the bearing (41) and the limit block (42) are movably inserted into the U-shaped groove (35).
4. A wastewater treatment system for copper etching solution production according to claim 3, characterized in that: A motor (24) is fixedly provided on one side of the support rod (34), and the motor (24) is fixedly connected to the end of the round rod four (33) through a coupling. A controller (23) is fixedly provided on one side of the top of the support rod (34), and an electric push rod (22) is fixedly provided on the support rod (34). A bearing eight (58) is fixedly inserted into the gear three (8), and the outer ring of the bearing eight (58) is fixedly connected to the inner ring of the gear three (8), and the piston rod end of the electric push rod (22) is fixedly inserted into the bearing eight (58).
5. A wastewater treatment system for copper etching solution production according to claim 3, characterized in that: The outer ring of the circular tube (9) is fixedly passed through the inner ring of the bearing three (43), the outer ring of the bearing three (43) is fixedly passed through the support frame one (12), the support frame one (12) is fixedly set on the support plate (32), the bottom of the outer ring of the bearing six (55) is fixedly set on the support frame two (25), the bottom of the support frame two (25) is fixedly set on the support plate (32), and the support plate (32) is fixedly set on the wastewater tank (38).
6. A wastewater treatment system for copper etching solution production according to claim 1, characterized in that: The ends of both sides of the linkage seat 1 (45) are fixedly provided with limit connecting rods (46), and the ends of the limit connecting rods (46) are fixedly provided with limit single bars (47). The ends of the linkage seat 2 (49) are provided with flat bar holes (50), and the limit connecting rods (46) are movable through the flat bar holes (50). The ends of both sides of the linkage seat 2 (49) are integrally formed with limit frames 2 (52), and the limit single bar (47) is movable through the limit frame 2 (52). The top and bottom of the linkage seat 2 (49) are integrally formed with longitudinal limit blocks (51), and the top and bottom of the cross bar (53) are movable through the longitudinal limit blocks (51). The ends of both sides of the cross bar (53) are integrally formed with sliding rods (54), and the sliding rods (54) are slid through the oblique bar holes (48).
7. A wastewater treatment system for copper etching solution production according to claim 5, characterized in that: A U-shaped seat (31) is fixedly provided on one side of the top of the support plate (32), a round rod (17) is fixedly provided on the U-shaped seat (31), a turntable (18) is rotatably sleeved in the round rod (17), and the top of the turntable (18) is fixedly connected to one side of the bottom of the guide box (30).
8. A wastewater treatment system for copper etching solution production according to claim 1, characterized in that: The top and bottom of the limiting rod (44) are fixedly provided with protrusions (11), and the top and bottom of the circular tube (9) are provided with strip holes (10), and the protrusions (11) are movable through the strip holes (10).
9. A wastewater treatment system for copper etching solution production according to claim 3, characterized in that: A water pump (28) is fixedly provided on the top of the support rod (34), a water pipe (29) is fixedly provided on the output end of the water pump (28), and a nozzle (27) is fixedly provided on the output end of the water pipe (29).
10. A wastewater treatment system for copper etching solution production according to claim 6, characterized in that: The vibration assembly includes an extended round rod three (5) integrally formed at the end of the cross rod (53), a connecting rod one (14) rotatably set on the extended round rod three (5), a connecting rod two (15) rotatably set on the connecting rod one (14), a top rod (16) fixedly set on the top of the connecting rod two (15), a gravity sensor (26) fixedly set on the top of the top rod (16) and a limiting rod (21) fixedly set on the support frame one (12), the connecting rod two (15) moves through the limiting rod (21), the outer ring of the extended round rod three (5) is fixedly passed through the inner ring of the bearing seven (57), the outer ring of the bearing seven (57) is fixedly passed through the connecting rod one (14), and the end of the connecting rod two (15) and the end of the connecting rod one (14) are rotatably connected through the round rod two (20).