A water-based UV resin stirring device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-08
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]公开号为CN211302793U的中国专利公开了一种水性UV树脂搅拌装置,包括搅拌桶和搅拌桶上方的推料构件,所述搅拌桶的下表面焊接有支撑杆,所述搅拌桶的下方支撑杆的下表面位置处焊接有支撑板,所述搅拌桶的下表面贯通安装有电磁阀,所述电磁阀的下端贯通连接有出料口,所述搅拌桶的上表面前端贯通设置有进料口,所述搅拌桶的内部安装有搅拌构件,所述搅拌桶的上表面贯通安装有清洁构件,所述搅拌桶的内部上端安装有搅拌构件,所述搅拌构件的上端设置有电机,所述电机的外表面安装有电机支架,上述专利虽然能够对水性UV树脂进行搅拌,但只是通过三组搅拌叶对水性UV树脂进行一个方向的搅拌,导致部分水性UV树脂难以被搅拌均匀,影响了水性UV树脂的品质
[0016]1、将水性UV树脂通过进料斗倒入搅拌桶内,启动驱动机构带动转动盘正转,前后两侧搅拌架也就正转对水性UV树脂进行搅拌,且前后两侧搅拌架还带动水性UV树脂上下流动被进一步的搅拌均匀,使得全部的水性UV树脂都能被搅拌,也就提高了水性UV树脂的品质。
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Figure CN115814658B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to a stirring device, and more particularly to a stirring device for an aqueous UV resin. Background Technology
[0002] During the production process, water-based UV resins generally need to be proportioned and then stirred to enable them to undergo subsequent processing.
[0003] Chinese patent CN211302793U discloses a water-based UV resin stirring device, including a stirring tank and a pushing component above the stirring tank. A support rod is welded to the lower surface of the stirring tank, and a support plate is welded to the lower surface of the support rod. A solenoid valve is installed through the lower surface of the stirring tank, and a discharge port is connected through the lower end of the solenoid valve. A feed port is provided through the front end of the upper surface of the stirring tank. A stirring component is installed inside the stirring tank, and a cleaning component is installed through the upper surface of the stirring tank. A stirring component is installed at the upper end of the inner part of the stirring tank, and a motor is provided at the upper end of the stirring component. A motor bracket is installed on the outer surface of the motor. Although the above patent can stir water-based UV resin, it only stirs the water-based UV resin in one direction through three sets of stirring blades, which makes it difficult for some water-based UV resin to be stirred evenly, affecting the quality of the water-based UV resin.
[0004] The present invention aims to solve the problems existing in the above-mentioned patents. To this end, an aqueous UV resin stirring device is proposed that can further stir and evenly mix the waterborne UV resin flowing up and down, thereby improving the quality of the waterborne UV resin. Summary of the Invention
[0005] To overcome the drawback of using three sets of stirring blades to stir waterborne UV resin in one direction, which makes it difficult to stir some waterborne UV resin evenly and affects the quality of waterborne UV resin, this invention provides a waterborne UV resin stirring device that can further stir the waterborne UV resin by allowing it to flow up and down and be stirred evenly, thereby improving the quality of waterborne UV resin.
[0006] This invention is achieved through the following technical means:
[0007] A water-based UV resin mixing device includes a support frame, a mixing tank, a mixing rack, a rotating cover, a control pipe, a feed hopper, and a high-pressure nozzle. The mixing tank is fixedly connected to the inner side of the support frame along the circumference. The control pipe is connected to the front bottom of the mixing tank. The rotating cover is rotatably connected to the upper part of the mixing tank along the circumference. The high-pressure nozzle is connected to the left side of the top of the rotating cover, and the feed hopper is connected to the right side of the top of the rotating cover. The mixing rack for mixing the water-based UV resin is symmetrically rotated through the top of the rotating cover. The spiral directions of the front and rear mixing racks are different. The device also includes a drive mechanism and a rotation mechanism. A drive mechanism for rotating the mixing rack is provided between the rotating cover and the mixing tank. A rotation mechanism for driving the mixing rack to rotate is provided on the mixing tank.
[0008] Further explanation includes the presence of an observation window, which is fixedly connected to the center of the front side of the mixing tank.
[0009] Further explanation: The drive mechanism includes a dual-shaft motor, a rotating shaft, a first spur gear, and an external gear ring. An external gear ring is fixedly mounted circumferentially on the middle of the outer side of the rotating cover. A dual-shaft motor is fixedly connected to the middle of the rear side of the mixing tank. A rotating shaft is fixedly connected to the upper and lower output shaft ends of the dual-shaft motor. A first spur gear for driving the external gear ring to rotate is fixedly mounted on the upper rotating shaft end. The first spur gear meshes with the external gear ring.
[0010] Further explanation: The rotating mechanism includes a perforated plate, an internal gear ring, and a second spur gear. The perforated plate is fixedly connected to the upper part of the inner side of the mixing tank along the circumference. An internal gear ring is fixedly connected to the inner side of the perforated plate along the circumference. The upper parts of the front and rear mixing frames are fixedly fitted with second spur gears, and both second spur gears mesh with the internal gear ring.
[0011] Further explanation includes an auxiliary stirring mechanism for stirring the water-based UV resin at the bottom of the mixing tank. The auxiliary stirring mechanism includes a synchronous belt, a short shaft, a spiral plate, a fixed ring, and inclined plates. The short shaft is rotatably connected to the middle of the bottom of the mixing tank. The upper part of the short shaft is fixedly fitted with a spiral plate for moving the water-based UV resin upwards and stirring. The lower part of the spiral plate is fixedly connected to a fixed ring along the circumference. Ten inclined plates for pushing the water-based UV resin are fixedly connected at even intervals along the circumference outside the fixed ring. The lower part of the rotating shaft and the lower part of the short shaft are connected by a synchronous belt, which is located outside the mixing tank.
[0012] Further explanation includes a wall-scraping mechanism for removing residual water-based UV resin. This mechanism comprises a fixed gear ring, a sliding ring, a telescopic rod, a third column gear, a cleaning roller, a rotating ring, a column spring, and a splined bushing. The inner side of the mixing tank is symmetrically connected to the sliding ring in a vertically rotating manner. A splined bushing is symmetrically connected to the lower sliding ring in a front-to-back rotating manner. A telescopic rod is symmetrically connected to the upper sliding ring in a front-to-back rotating manner. An inclined plate reverses and contacts the telescopic rod. The lower part of the telescopic rod has a splined groove, and the lower parts of the front and rear telescopic rods are respectively slidably connected to the front and rear splines. Inside the bushing, a third column gear is fixedly mounted on the upper part of the front and rear telescopic rods. A fixed gear ring for driving the third column gear to rotate is fixedly connected to the upper part of the inner side of the mixing tank along the circumference. The fixed gear ring is located above the upper sliding ring and meshes with the two third column gears. Cleaning rollers for removing residual water-based UV resin on the inner wall of the mixing tank are fixedly mounted on the front and rear telescopic rods. Rotating rings are rotatably connected to the top of the front and rear cleaning rollers. A column spring is connected between the top of the front and rear rotating rings and the bottom of the upper sliding ring. The column spring is sleeved on the telescopic rod.
[0013] Further explanation includes an auxiliary rotating mechanism for guiding the sliding ring. The auxiliary rotating mechanism includes mounting rods and auxiliary wheels. At least ten mounting rods are fixedly connected to the outer sides of the upper and lower sliding rings at even intervals along the circumference. The auxiliary wheels for guiding the sliding rings are rotatably mounted in the middle of the ten mounting rods, and the auxiliary wheels are in contact with the inner side of the mixing tank.
[0014] Further explanation includes a rolling mechanism for guiding the telescopic rod. The rolling mechanism includes a mounting shaft and rollers. The mounting shaft is fixed to the top of all the inclined plates, and the rollers for guiding the telescopic rod are rotatably mounted in the middle of the mounting shaft.
[0015] The significant advancement of this invention lies in:
[0016] 1. Pour the water-based UV resin into the mixing tank through the feed hopper, start the drive mechanism to make the rotating disc rotate forward, and the front and rear mixing racks also rotate forward to stir the water-based UV resin. The front and rear mixing racks also cause the water-based UV resin to flow up and down and be further stirred evenly, so that all the water-based UV resin can be stirred, thus improving the quality of the water-based UV resin.
[0017] 2. Under the action of the auxiliary stirring mechanism, whenever the stirring rack stirs the water-based UV resin, the auxiliary stirring mechanism can further stir the water-based UV resin at the bottom of the stirring tank, preventing the water-based UV resin at the bottom of the stirring tank from being difficult to stir, thus ensuring that all the water-based UV resin can be stirred.
[0018] 3. The scraping mechanism can remove the water-based UV resin remaining inside the mixing tank, preventing waste caused by residual water-based UV resin in the mixing tank, thus ensuring that all water-based UV resin can be collected and treated. Attached Figure Description
[0019] Figure 1 This is a three-dimensional structural diagram of the present invention.
[0020] Figure 2 This is a partial cross-sectional structural diagram of the present invention.
[0021] Figure 3 This is an enlarged schematic diagram of part A of the present invention.
[0022] Figure 4 This is a partial cross-sectional view of the driving mechanism of the present invention.
[0023] Figure 5 This is a partial cross-sectional view of the rotating mechanism of the present invention.
[0024] Figure 6 This is a first-view partial cross-sectional structural schematic diagram of the auxiliary stirring mechanism of the present invention.
[0025] Figure 7 This is a second-view cross-sectional structural schematic diagram of the auxiliary stirring mechanism of the present invention.
[0026] Figure 8 This is a three-dimensional structural diagram of the spiral plate of the present invention.
[0027] Figure 9 This is a three-dimensional structural diagram of the wall scraping mechanism of the present invention.
[0028] Figure 10 This is an enlarged schematic diagram of part B of the present invention.
[0029] Figure 11 This is a partial cross-sectional view of the wall scraping mechanism of the present invention.
[0030] Figure 12 This is a three-dimensional structural diagram of the auxiliary rotation mechanism of the present invention.
[0031] Figure 13 This is an enlarged schematic diagram of part C of the present invention.
[0032] Figure 14 This is a partial cross-sectional view of the first type of rolling mechanism of the present invention.
[0033] Figure 15 This is a schematic cross-sectional view of the second type of rolling mechanism of the present invention.
[0034] The components in the attached diagram are labeled as follows: 1. Support frame, 2. Mixing tank, 21. Observation window, 22. Mixing rack, 23. Rotating cover, 3. Control tube, 31. Feed hopper, 32. High-pressure nozzle, 4. Drive mechanism, 41. Dual-shaft motor, 42. Rotating shaft, 43. First column gear, 44. External gear ring, 5. Rotating mechanism, 51. Perforated plate, 52. Internal gear ring, 53. Second column gear, 6. Auxiliary mixing mechanism, 61. Synchronous belt, 62. Short shaft, 63. Spiral plate, 64. Fixed ring, 65. Inclined plate, 7. Scraping mechanism, 71. Fixed gear ring, 72. Sliding ring, 73. Telescopic rod, 74. Third column gear, 75. Cleaning roller, 76. Rotating ring, 77. Column spring, 78. Spline bushing, 8. Auxiliary rotating mechanism, 81. Mounting rod, 82. Assist wheel, 9. Rolling mechanism, 91. Mounting shaft, 92. Roller. Detailed Implementation
[0035] First, it should be noted that in different described embodiments, the same components are given the same reference numerals or the same component names. The disclosure contained throughout this specification can be applied semantically to the same components having the same reference numerals or the same component names. The location descriptions selected in the specification, such as upper, lower, and lateral, also refer to the directly described and illustrated figures and are semantically applied to the new location when the location changes.
[0036] Example 1
[0037] A water-based UV resin mixing device includes a support frame 1, a mixing tank 2, a mixing rack 22, a rotating cover 23, a material control pipe 3, a feed hopper 31, a high-pressure nozzle 32, a drive mechanism 4, and a rotating mechanism 5. (See also...) Figure 1 , Figure 2 , Figure 4 and Figure 5 As shown, a mixing tank 2 is fixedly connected to the inner side of the support frame 1 along the circumference. A control pipe 3 is connected to the bottom front side of the mixing tank 2. A rotating cover 23 is rotatably connected to the upper part of the mixing tank 2 along the circumference. A high-pressure nozzle 32 is connected to the top left side of the rotating cover 23, and a feed hopper 31 is connected to the top right side of the rotating cover 23. A mixing frame 22 is symmetrically rotated through the top of the rotating cover 23. When the mixing frame 22 rotates, it can stir the water-based UV resin. The spiral directions of the front and rear mixing frames 22 are different. A drive mechanism 4 is provided between the rotating cover 23 and the mixing tank 2. When the drive mechanism 4 operates, it can make the mixing frame 22 rotate. A rotating mechanism 5 is provided on the mixing tank 2. When the rotating mechanism 5 operates, it can drive the mixing frame 22 to rotate.
[0038] It also includes viewing window 21, please refer to Figure 1 As shown, an observation window 21 is fixedly connected to the middle of the front side of the mixing tank 2.
[0039] The drive mechanism 4 includes a dual-axis motor 41, a rotating shaft 42, a first spur gear 43, and an external gear ring 44. Please refer to [link / reference]. Figure 2 and Figure 4 As shown, an external gear ring 44 is fixedly mounted circumferentially on the outer center of the rotating cover 23. A dual-shaft motor 41 is installed on the outer rear side of the mixing tank 2 by bolt connection. The upper and lower output shaft ends of the dual-shaft motor 41 are fixedly connected to rotating shafts 42. A first spur gear 43 is fixedly mounted on the upper rotating shaft 42. The first spur gear 43 meshes with the external gear ring 44. When the first spur gear 43 rotates, it can drive the external gear ring 44 to rotate.
[0040] The rotating mechanism 5 includes a perforated plate 51, an internal gear ring 52, and a second spur gear 53. (See attached image.) Figure 2 and Figure 5 As shown, a perforated plate 51 is installed on the upper inner side of the mixing tank 2 by welding along the circumference. An internal gear ring 52 is fixedly connected to the inner side of the perforated plate 51 along the circumference. A second column gear 53 is fixedly mounted on the upper part of the front and rear mixing racks 22. Both second column gears 53 mesh with the internal gear ring 52.
[0041] First, the receiving container is opened by the control pipe 3. Then, an appropriate amount of water-based UV resin is poured into the mixing tank 2 through the feed hopper 31. The water-based UV resin comes into contact with the front and rear mixing racks 22. The drive mechanism 4 is started, which drives the rotating cover 23 to rotate forward. The rotation of the rotating cover 23 drives the front and rear mixing racks 22 to rotate forward. The front and rear mixing racks 22 stir the water-based UV resin. At the same time, the rotation of the front and rear mixing racks 22 also drives the rotating mechanism 5 to rotate. The rotation of the front and rear mixing racks 22 causes the water-based UV resin to flow up and down. Since the spirals of the front and rear mixing racks 22 are different, the direction of the water-based UV resin flow caused by the rotation of the front and rear mixing racks 22 is not the same. This avoids some water-based UV resin being difficult to stir evenly, thus making the water-based UV resin more thoroughly stirred and improving the quality of the water-based UV resin. At the same time, the stirring of the water-based UV resin can be viewed through the observation window 21. After the water-based UV resin is stirred, the control pipe 3 is opened, and the water-based UV resin in the mixing tank 2 is discharged into the collection container through the control pipe 3. After all the water-based UV resin is discharged, the control pipe 3 is closed, and the collection container is disconnected from the control pipe 3. Then, another water receiving container is connected to the control pipe 3, and a water spraying machine is connected to the high-pressure nozzle 32 to discharge water into the high-pressure nozzle 32. The high-pressure nozzle 32 discharges water into the mixing tank 2, and the front and rear mixing racks 22 reverse to clean the inside of the mixing tank 2 with water. At the same time, the mixing racks 22 are also cleaned with water. After the mixing racks 22 and the inside of the mixing tank 2 are clean, the drive mechanism 4 is closed, and the drive mechanism 4 stops driving the rotating cover 23 to reverse. The rotating cover 23 stops driving the front and rear mixing racks 22 to reverse, and the rotating mechanism 5 also stops operating. The control pipe 3 is then started to discharge the water in the mixing tank 2 into the water receiving container, and then the water receiving container is disconnected from the control pipe 3.
[0042] When the mixing tank 2 contains an appropriate amount of water-based UV resin, the dual-shaft motor 41 is started to drive the upper and lower rotating shafts 42 to rotate in reverse. The upper rotating shaft 42 rotates in reverse to drive the first column gear 43 to rotate in reverse. The first column gear 43 rotates in reverse to drive the outer gear ring 44 to rotate in the forward direction. The outer gear ring 44 rotates in the forward direction to drive the rotating cover 23 to rotate in the forward direction. This causes the front and rear mixing racks 22 to rotate in the forward direction to stir the water-based UV resin. When the water-based UV resin has been stirred and the mixing tank 2 has been cleaned, the dual-shaft motor 41 is turned off. The first column gear 43 stops driving the outer gear ring 44 to rotate in the forward direction. The outer gear ring 44 stops driving the rotating cover 23 to rotate in the forward direction. The front and rear mixing racks 22 also stop rotating in the forward direction.
[0043] When the dual-shaft motor 41 starts and reverses, the front and rear mixing racks 22 rotate clockwise, driving the front and rear second spur gears 53 to rotate clockwise. The clockwise rotation of the front and rear second spur gears 53, through the internal gear ring 52, causes the front and rear mixing racks 22 to rotate. The rotation of the front and rear mixing racks 22 causes the water-based UV resin to flow up and down and be stirred, thus making the water-based UV resin more thoroughly stirred. When the dual-shaft motor 41 is turned off, the front and rear mixing racks 22 stop driving the front and rear second spur gears 53 to rotate clockwise, and the front and rear second spur gears 53 also stop rotating through the internal gear ring 52, and the front and rear mixing racks 22 also stop rotating.
[0044] Example 2
[0045] Based on Embodiment 1, an auxiliary stirring mechanism 6 is also included. The auxiliary stirring mechanism 6 includes a synchronous belt 61, a short shaft 62, a spiral plate 63, a fixing ring 64, and an inclined plate 65. Please refer to [link to previous document]. Figure 2 , Figure 6 , Figure 7 and Figure 8 As shown, a short shaft 62 is rotatably connected to the bottom center of the mixing tank 2. A spiral plate 63 is fixedly mounted on the upper part of the short shaft 62. When the spiral plate 63 reverses, it can drive the water-based UV resin to move upward and be stirred. A fixing ring 64 is fixedly connected to the lower part of the outer side of the spiral plate 63 along the circumference. Ten inclined plates 65 are fixedly connected to the outer side of the fixing ring 64 along the circumference at even intervals. When the inclined plates 65 reverse, they can push the water-based UV resin. The lower part of the rotating shaft 42 and the lower part of the short shaft 62 are connected by a synchronous belt 61, which is located outside the mixing tank 2.
[0046] It also includes a wall scraping mechanism 7, which comprises a fixed gear ring 71, a sliding ring 72, a telescopic rod 73, a third column gear 74, a cleaning roller 75, a rotating ring 76, a column spring 77, and a splined bushing 78. Please refer to [link / reference]. Figure 2 , Figure 9 , Figure 10 and Figure 11As shown, a sliding ring 72 is symmetrically rotated on the inner side of the mixing tank 2. A splined bushing 78 is symmetrically rotated on the lower sliding ring 72, and a telescopic rod 73 is symmetrically rotated on the upper sliding ring 72. The inclined plate 65 reverses and contacts the telescopic rod 73. The lower part of the telescopic rod 73 has a splined groove. The lower parts of the front and rear telescopic rods 73 slide through the inner sides of the front and rear splined bushings 78, respectively. A third column gear 74 is fixedly fitted on the upper part of both the front and rear telescopic rods 73. A fixed gear ring 71 is fixedly connected circumferentially on the upper part of the inner side of the mixing tank 2. The fixed gear ring 71 is located on the upper sliding ring. Above the moving ring 72, the fixed gear ring 71 meshes with two third column gears 74. When the third column gears 74 rotate, the fixed gear ring 71 can drive the third column gears 74 to rotate. Cleaning rollers 75 are fixedly mounted on the front and rear telescopic rods 73. When the cleaning rollers 75 rotate and move, they can remove the water-based UV resin residue on the inner wall of the mixing tank 2. Rotating rings 76 are rotatably connected to the top of the front and rear cleaning rollers 75. A column spring 77 is connected between the top of the front and rear rotating rings 76 and the bottom of the upper sliding ring 72. The column spring 77 is sleeved on the telescopic rod 73.
[0047] When an appropriate amount of water-based UV resin is poured into the mixing tank 2, the resin comes into contact with the spiral plate 63 and the inclined plate 65. When the dual-shaft motor 41 starts and reverses, the lower rotating shaft 42 reverses, driving the short shaft 62 to reverse via the synchronous belt 61. The short shaft 62 then drives the spiral plate 63 to reverse, causing the water-based UV resin at the bottom of the mixing tank 2 to flow upwards and be stirred. Simultaneously, the reverse rotation of the spiral plate 63 also drives all the inclined plates 65 to reverse via the fixing ring 64, further stirring the water-based UV resin. When the dual-shaft motor 41 is turned off, the lower rotating shaft 42 stops driving the short shaft 62 to reverse via the synchronous belt 61, and the short shaft 62 stops driving the spiral plate 63 to reverse. The spiral plate 63 then stops driving all the inclined plates 65 to reverse via the fixing ring 64. In this way, the spiral plate 63 and the inclined plates 65 stir the water-based UV resin, preventing the resin at the bottom of the mixing tank 2 from being difficult to stir, thus ensuring that all the water-based UV resin is stirred.
[0048] When all the inclined plates 65 reverse, they come into contact with the front and rear telescopic rods 73. This reversal of the inclined plates 65 drives the front and rear telescopic rods 73 to reverse, which in turn drives the front and rear cleaning rollers 75 to reverse. The reversed cleaning rollers 75 remove the water-based UV resin remaining on the inner wall of the mixing tank 2. The reversal of the front and rear telescopic rods 73 also drives the front and rear third column gears 74 to reverse. The reversed third column gears 74 rotate through the fixed gear ring 71, and this rotation, through the telescopic rods 73, drives the front and rear cleaning rollers 75 to rotate, thus better removing the water-based UV resin. Simultaneously, the reversal of the inclined plates 65 also drives the front and rear cleaning rollers 75 to rotate. The telescopic rod 73 moves upward, causing the front and rear cleaning rollers 75 to move upward. The upward movement of the cleaning rollers 75 then causes the front and rear rotating rings 76 to move upward, compressing the column spring 77. The upward movement of the cleaning rollers 75 further removes residual water-based UV resin. As the inclined plate 65 continues to reverse, it disengages from the telescopic rods 73. Due to the action of the column spring 77, the rotating rings 76 move the cleaning rollers 75 downward to reset, and the cleaning rollers 75 stop reversing. This process repeats continuously, causing the cleaning rollers 75 to reverse and move up and down to remove residual water-based UV resin. When all the inclined plates 65 stop reversing, the front and rear telescopic rods 73 stop reversing, and the cleaning rollers 75 also stop reversing and rotating. This prevents residual water-based UV resin in the mixing tank 2 from being wasted, ensuring that all water-based UV resin is collected and processed.
[0049] Example 3
[0050] Based on Embodiments 1 and 2, an auxiliary rotation mechanism 8 is also included. The auxiliary rotation mechanism 8 includes a mounting rod 81 and an assist wheel 82. Please refer to [link to documentation]. Figure 2 , Figure 3 , Figure 12 and Figure 13 As shown, at least ten mounting rods 81 are fixedly connected to the outer sides of the upper and lower sliding rings 72 at even intervals along the circumference. Each of the ten mounting rods 81 has a rotating auxiliary wheel 82 mounted in the middle. The auxiliary wheel 82 contacts the inner side of the mixing tank 2 and can guide the sliding rings 72.
[0051] It also includes a rolling mechanism 9, which includes a mounting shaft 91 and rollers 92. Please refer to [link / reference]. Figure 2 , Figure 14 and Figure 15 As shown, all the inclined plates 65 are fixed to the top of the mounting shaft 91, and the mounting shaft 91 is fitted with a roller 92 in the middle of the rotating part. The roller 92 can guide the telescopic rod 73.
[0052] When the sliding ring 72 reverses, the reverse rotation of the sliding ring 72 also drives the auxiliary wheel 82 to reverse through the mounting rod 81. The auxiliary wheel 82 slides inside the mixing tank 2 in reverse rotation, and the auxiliary wheel 82 guides the sliding ring 72, ensuring that the sliding ring 72 can smoothly reverse and guide the telescopic rod 73.
[0053] When the inclined plate 65 reverses, the reverse rotation of the inclined plate 65 drives the roller 92 to reverse in turn via the mounting shaft 91. The roller 92 reverses and contacts the telescopic rod 73, and the telescopic rod 73 slides over the roller 92. Due to the action of the roller 92, the telescopic rod 73 can slide more smoothly on the inclined plate 65.
[0054] Finally, it is necessary to note that the above content is only used to help understand the technical solution of the present invention and should not be construed as a limitation on the scope of protection of the present invention; any non-essential improvements and adjustments made by those skilled in the art based on the above content of the present invention are all within the scope of protection claimed by the present invention.
Claims
1. An aqueous UV resin stirring device, comprising a support frame (1), a stirring barrel (2), a stirring frame (22), a rotating cover (23), a control material pipe (3), a feeding hopper (31) and a high-pressure nozzle (32), the inside of the support frame (1) is circumferentially fixed with the stirring barrel (2), the bottom front side of the stirring barrel (2) is communicated with the control material pipe (3), the upper part of the stirring barrel (2) is circumferentially rotatably connected with the rotating cover (23), the top left side of the rotating cover (23) is communicated with the high-pressure nozzle (32), the top right side of the rotating cover (23) is communicated with the feeding hopper (31), the top of the rotating cover (23) is symmetrically and rotatably connected with the stirring frame (22) for stirring the aqueous UV resin, the screw directions of the two stirring frames (22) on the front and back sides are different, characterized in that, It also includes a drive mechanism (4) and a rotating mechanism (5). A drive mechanism (4) for rotating the stirring rack (22) is provided between the rotating cover (23) and the stirring tank (2). A rotating mechanism (5) for rotating the stirring rack (22) is provided on the stirring tank (2). The drive mechanism (4) includes a dual-shaft motor (41), a rotating shaft (42), a first spur gear (43), and an external gear ring (44). The external gear ring (44) is fixedly mounted on the middle of the outer side of the rotating cover (23) along the circumferential direction. The dual-shaft motor (41) is fixedly connected to the middle of the outer rear side of the mixing tank (2). The upper and lower output shaft ends of the dual-shaft motor (41) are both fixedly connected to the rotating shaft (42). The upper rotating shaft (42) end is fixedly mounted with the first spur gear (43) for driving the external gear ring (44) to rotate. The first spur gear (43) meshes with the external gear ring (44). The rotating mechanism (5) includes a perforated plate (51), an internal gear ring (52), and a second spur gear (53). The perforated plate (51) is fixedly connected to the upper inner side of the mixing tank (2) along the circumferential direction. The internal gear ring (52) is fixedly connected to the inner side of the perforated plate (51) along the circumferential direction. The upper parts of the front and rear mixing racks (22) are fixedly fitted with second spur gears (53). Both second spur gears (53) mesh with the internal gear ring (52).
2. The waterborne UV resin stirring device according to claim 1, characterized in that, It also includes an observation window (21), which is fixedly connected to the middle of the front side of the mixing tank (2).
3. The waterborne UV resin stirring device according to claim 2, characterized in that, It also includes an auxiliary stirring mechanism (6) for stirring the water-based UV resin at the bottom of the mixing tank (2). The auxiliary stirring mechanism (6) includes a synchronous belt (61), a short shaft (62), a spiral plate (63), a fixed ring (64), and an inclined plate (65). The short shaft (62) is rotatably connected to the middle of the bottom of the mixing tank (2). The upper part of the short shaft (62) is fixedly fitted with a spiral plate (63) for driving the water-based UV resin to move upward and be stirred. The lower part of the outer side of the spiral plate (63) is fixedly connected to a fixed ring (64) along the circumference. The outer side of the fixed ring (64) is fixedly connected to ten inclined plates (65) for pushing the water-based UV resin at even intervals along the circumference. The lower part of the lower rotating shaft (42) and the lower part of the short shaft (62) are driven by a synchronous belt (61). The synchronous belt (61) is located outside the mixing tank (2).
4. The waterborne UV resin stirring device according to claim 3, characterized in that, It also includes a wall scraping mechanism (7) for removing residual water-based UV resin. The wall scraping mechanism (7) includes a fixed gear ring (71), a sliding ring (72), a telescopic rod (73), a third column gear (74), a cleaning roller (75), a rotating ring (76), a column spring (77), and a spline bushing (78). The inner side of the mixing tank (2) is symmetrically connected to the sliding ring (72) in a rotating manner. The lower sliding ring (72) is symmetrically connected to the spline bushing (78) in a rotating manner. The upper sliding ring (72) is symmetrically connected to the telescopic rod (73) in a rotating manner. The inclined plate (65) reverses and contacts the telescopic rod (73). The lower part of the telescopic rod (73) has a spline groove. The lower parts of the front and rear telescopic rods (73) are slidably connected to the front and rear spline bushings (78) respectively. 8) On the inner side, the upper part of the front and rear telescopic rods (73) is fixedly fitted with a third column gear (74). The upper part of the inner side of the mixing tank (2) is fixedly connected with a fixed gear ring (71) for driving the third column gear (74) to rotate. The fixed gear ring (71) is located above the upper sliding ring (72). The fixed gear ring (71) meshes with the two third column gears (74). The front and rear telescopic rods (73) are fixedly fitted with cleaning rollers (75) for removing water-based UV resin residue on the inner wall of the mixing tank (2). The top of the front and rear cleaning rollers (75) is rotatably connected with a rotating ring (76). The top of the front and rear rotating rings (76) is connected to the bottom of the upper sliding ring (72) with a column spring (77). The column spring (77) is sleeved on the telescopic rod (73).
5. The waterborne UV resin stirring device according to claim 4, characterized in that, It also includes an auxiliary rotating mechanism (8) for guiding the sliding ring (72). The auxiliary rotating mechanism (8) includes mounting rods (81) and auxiliary wheels (82). At least ten mounting rods (81) are fixedly connected to the outer sides of the upper and lower sliding rings (72) at even intervals along the circumference. The auxiliary wheels (82) for guiding the sliding rings (72) are rotatably mounted in the middle of the ten mounting rods (81). The auxiliary wheels (82) are in contact with the inner side of the mixing tank (2).
6. The waterborne UV resin stirring device according to claim 5, characterized in that, It also includes a rolling mechanism (9) for guiding the telescopic rod (73), the rolling mechanism (9) includes a mounting shaft (91) and rollers (92), the top of all the ramps (65) are fixed to the mounting shaft (91), and the mounting shaft (91) is rotatably fitted with rollers (92) for guiding the telescopic rod (73) in the middle.
Citation Information
Patent Citations
Water-based UV resin stirring device
CN211302793U
Reaction device for producing water-based paint
CN112892452A
Resin mixing and stirring device
CN115339006A