A corrosion-proof material storage device with self-cleaning function
By designing a self-cleaning anti-corrosion material storage device, and utilizing the coordinated work of the support frame, rotating component, cleaning component, and positioning component, the problem of low cleaning efficiency in existing technologies is solved, achieving automated cleaning and fixed positioning.
Patent Information
- Application Number
- CN202211612163.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-15
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2042-12-15
AI Technical Summary
Existing anti-corrosion tape storage devices are inefficient and time-consuming to clean, and are not convenient for positioning, fixing, and retrieval.
A self-cleaning anti-corrosion material storage device was designed, comprising a support frame, a rotating component, a cleaning component, a position adjustment component, and a positioning component. The components work together through program control to achieve automated cleaning and positioning functions.
It enables automated cleaning of the storage environment for corrosion-resistant materials, improving cleaning efficiency and quality, ensuring a clean storage environment, and facilitating positioning and retrieval.
Smart Images

Figure CN115743962B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of anti-corrosion material storage equipment, and in particular to an anti-corrosion material storage device with a self-cleaning function. Background Technology
[0002] Anti-corrosion tape refers to adhesive tape used for corrosion prevention. Polyethylene anti-corrosion tape and polypropylene fiber anti-corrosion tape are widely used in chemical infrastructure and pipeline elbow corrosion prevention. When storing anti-corrosion tape, it is necessary to keep the storage environment clean and dry to ensure the long-term storage of the tape products. In most cases, cleaning the storage area of anti-corrosion tape requires manual cleaning. When cleaning machines are used, the anti-corrosion tape must be removed first. Such cleaning methods are inefficient and time-consuming.
[0003] Chinese utility model patent with announcement number "CN212074774U" proposes a storage device for tape production, including a storage box. Several grooves are vertically formed inside the bottom of the storage box. A first spring is fixedly connected to the bottom of each groove. A horizontal plate is horizontally fixedly connected between the upper ends of the first springs. Several sleeve rods are evenly fixedly installed on the upper part of the horizontal plate. Cavities are formed both above and below each sleeve rod. An extension rod is vertically positioned at the center of the upper wall of each cavity. Movable rods are movably inserted at the center of both sides of the cavity, with the outer ends of the movable rods extending beyond the outer ends of the sleeve rods. While this patent facilitates tape storage, it does not allow for automatic cleaning of the storage area. Furthermore, it is inconvenient for positioning, fixing, and retrieving the tape. Summary of the Invention
[0004] To address the aforementioned technical problems, this invention provides a self-cleaning anti-corrosion material storage device, comprising a support frame and a program control component. A rotating component is mounted on the support frame, and a storage box is mounted on the rotating component. A cleaning component and a position adjustment component are installed inside the storage box. Two sets of position adjustment components are arranged vertically inside the storage box. Each position adjustment component has multiple sets of positioning components evenly spaced in a circular pattern. The position adjustment component includes a lifting mechanism, a turntable, a connecting shaft, a motor, and a support plate. The lifting mechanism is installed inside the storage box, and the support plate is fixedly mounted on the lifting mechanism. The turntable is rotatably mounted on the support plate, the motor is mounted on the support plate, and the connecting shaft is rotatably mounted on the support plate. The turntable and the connecting shaft are fixedly connected, and the output shaft of the motor is fixedly connected to the connecting shaft. The turntable has multiple sliding grooves, and a fan is fixedly mounted on the connecting shaft. Multiple sewage outlets are provided at both the upper and lower ends of the storage box, and plugs are detachably installed at each sewage outlet.
[0005] Furthermore, the positioning assembly includes a positioning cylinder, an electric cylinder two, an electric cylinder three, and a positioning rod. The positioning cylinder is slidably installed in a slide groove one. The electric cylinder two is fixedly installed in a turntable. The piston rod of the electric cylinder two is fixedly connected to the positioning cylinder. The electric cylinder three is fixedly installed in the positioning cylinder. A top rod is fixedly installed on the piston rod of the electric cylinder three. The positioning rod is slidably installed on the positioning cylinder. One end of the positioning rod is provided with an arc-shaped head, and the other end of the positioning rod is provided with a conical support head. The arc-shaped head is slidably connected to the top rod.
[0006] Furthermore, a spring is fitted on the positioning rod, one end of the spring is fixedly connected to the conical support head, and the other end of the spring is fixedly connected to the positioning cylinder. The top rod is a cone with a large bottom and a small top and an arc surface. Multiple positioning rods and springs are provided, and the multiple positioning rods and springs are evenly distributed in a circumferential shape.
[0007] Furthermore, the cleaning assembly includes a second motor, a first rotating shaft, a first support plate, a third rotating shaft, a second support plate, and a transmission mechanism. The first and third rotating shafts are rotatably mounted on both sides of the storage box, the first support plate is fixedly mounted on the first rotating shaft, and the second support plate is fixedly mounted on the third rotating shaft. The first and third rotating shafts are connected by the transmission mechanism, and multiple nozzles are fixedly mounted on both the first and second support plates.
[0008] Furthermore, both ends of the first support plate and the second support plate are provided with arc surfaces, and both the first support plate and the second support plate are provided with multiple liquid injection ports, and the liquid injection ports are connected to a cleaning liquid injection mechanism.
[0009] Furthermore, the transmission mechanism includes a second rotating shaft, a third gear, a first pulley, a fourth gear, a belt, and a second pulley. The second rotating shaft is rotatably mounted on the storage box. The third gear is fixedly mounted on the first rotating shaft, and the fourth gear is fixedly mounted on the second rotating shaft. The third gear and the fourth gear are meshed together. The first pulley is fixedly mounted on the second rotating shaft, and the second pulley is fixedly mounted on the third rotating shaft. The first pulley and the second pulley are connected by a belt.
[0010] Furthermore, the lifting mechanism includes a third motor, a first rotating rod, a second rotating rod, a connector, and a support base. The third motor and the support base are both fixedly installed inside the storage box. The output shaft of the third motor passes through the support base, and a worm gear is fixedly installed on the output shaft of the third motor. Support rods are fixedly installed on the support base. Multiple sets of support rods are provided, with two support rods forming a set. Multiple sets of support rods are evenly distributed in a circumferential shape. A first connecting shaft is rotatably installed on each set of support rods. A worm wheel is fixedly installed on the first connecting shaft, and the worm wheel meshes with the worm gear. One end of the first rotating rod is fixedly installed on the first connecting shaft. The connector is fixedly installed on the third support plate. One end of the second rotating rod is rotatably connected to the connector, and the other end of the second rotating rod is rotatably connected to the first rotating rod. Multiple sets of the first rotating rod, the second rotating rod, the connector, and the worm wheel are provided and evenly distributed in a circumferential shape.
[0011] Furthermore, two of the rotating components and support frames are provided and distributed on both sides of the storage box. The rotating component includes a motor, a gear, a gear, a connecting shaft, and a connecting shaft. The motor is fixedly mounted on the support frame. The gear is fixedly mounted on the output shaft of the motor. The connecting shaft is rotatably mounted on the support frame and is fixedly connected to the storage box. The connecting shaft is fixedly mounted on the connecting shaft and the gear is fixedly mounted on the connecting shaft. The gear and gear are meshed together.
[0012] Furthermore, the storage box is provided with two door assemblies and two discharge ports, both of which are distributed vertically. The door assembly is located at the discharge port position. The door assembly includes an electric cylinder and a baffle. The baffle is slidably installed on the storage box. The electric cylinder is fixedly installed on the storage box. The piston rod of the electric cylinder is fixedly connected to the baffle. Multiple electric cylinders are provided.
[0013] The beneficial effects of this invention compared with the prior art are: (1) This invention can adjust the storage position of the anti-corrosion material through two sets of position adjustment components, which facilitates the cleaning of the storage environment of the anti-corrosion material and solves the technical problem in the prior art that the anti-corrosion material needs to be moved away before cleaning when the storage environment of the anti-corrosion material needs to be cleaned; (2) This invention can automatically clean the storage position of the anti-corrosion material through the cooperation of the cleaning component and the fan, with good cleaning efficiency and cleaning quality; (3) This invention can switch the position of the two sets of position adjustment components through the rotating component, which ensures that the storage environment of the anti-corrosion material is always kept clean and further improves the cleaning efficiency. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of the present invention. Figure 1 .
[0015] Figure 2 This is a schematic diagram of the overall structure of the present invention. Figure 2 .
[0016] Figure 3 This is a schematic diagram of the overall structure of the present invention. Figure 3 .
[0017] Figure 4 This is a schematic diagram of the overall structure of the present invention. Figure 4 .
[0018] Figure 5 This is a schematic diagram of a partial structural cut of the present invention.
[0019] Figure 6 This is a schematic diagram of the cleaning component structure of the present invention. Figure 1 .
[0020] Figure 7 This is a schematic diagram of the cleaning component structure of the present invention. Figure 2 .
[0021] Figure 8 This is a schematic diagram of the position adjustment component structure of the present invention. Figure 1 .
[0022] Figure 9 This is a schematic diagram of the position adjustment component structure of the present invention. Figure 2 .
[0023] Figure 10 This is a schematic diagram of the lifting mechanism of the present invention.
[0024] Figure 11 This is a cross-sectional view of a partial structure of the position adjustment component of the present invention.
[0025] Figure 12 For the present invention Figure 11 Enlarged structural diagram at point A in the middle.
[0026] Reference numerals: 101-Support frame; 102-Motor 1; 103-Gear 1; 104-Gear 2; 105-Connecting shaft 2; 106-Connecting shaft 3; 201-Storage box; 202-Plug; 301-Electric cylinder 1; 302-Baffle; 401-Motor 2; 402-Rotating shaft 1; 403-Support plate 1; 404-Nozzle; 405-Rotating shaft 2; 406-Gear 3; 407-Pulley 1; 408-Gear 4; 409-Belt; 410-Pulley 2; 411- 412-Support plate 2; 413-Injection port; 501-Motor 3; 502-Rotating rod 1; 503-Rotating rod 2; 504-Connector; 505-Worm gear; 506-Worm; 507-Support seat; 508-Support rod; 601-Turntable; 602-Fan; 603-Connecting shaft 4; 604-Motor 4; 605-Support plate 3; 701-Positioning cylinder; 702-Electric cylinder 2; 703-Electric cylinder 3; 704-Push rod; 705-Positioning rod; 706-Spring. Detailed Implementation
[0027] The present invention will be further described below with reference to specific embodiments. The illustrative embodiments and descriptions herein are used to explain the present invention, but are not intended to limit the present invention.
[0028] Example: Figures 1-12 The self-cleaning anti-corrosion material storage device shown includes a support frame 101 and a program control component. A rotating component is mounted on the support frame 101, and a storage box 201 is mounted on the rotating component. A cleaning component and a position adjustment component are installed inside the storage box 201. Two sets of position adjustment components are arranged vertically inside the storage box 201. Multiple sets of positioning components are arranged on the position adjustment components, and the multiple sets of positioning components are evenly spaced in a circumferential shape. The position adjustment component includes a lifting mechanism, a turntable 601, a connecting shaft 603, a motor 604, and a support plate 605. The lifting mechanism is mounted on... Inside the storage tank 201, support plate 3 605 is fixedly installed on the lifting mechanism, turntable 601 is rotatably installed on support plate 3 605, motor 4 604 is installed on support plate 3 605, and connecting shaft 4 603 is rotatably installed on support plate 3 605. Turntable 601 and connecting shaft 4 603 are fixedly connected. The output shaft of motor 4 604 is fixedly connected to connecting shaft 4 603. Turntable 601 is provided with multiple sliding grooves. Fan 602 is fixedly installed on connecting shaft 4 603. Multiple sewage outlets are provided at the upper and lower ends of storage tank 201. Plugs 202 are detachably installed at the sewage outlets.
[0029] The positioning assembly includes a positioning cylinder 701, an electric cylinder 2 702, an electric cylinder 3 703, and a positioning rod 705. The positioning cylinder 701 is slidably installed in the slide groove 1. The electric cylinder 2 702 is fixedly installed in the turntable 601. The piston rod of the electric cylinder 2 702 is fixedly connected to the positioning cylinder 701. The electric cylinder 3 703 is fixedly installed in the positioning cylinder 701. A top rod 704 is fixedly installed on the piston rod of the electric cylinder 3 703. The positioning rod 705 is slidably installed on the positioning cylinder 701. One end of the positioning rod 705 is provided with an arc-shaped head, and the other end of the positioning rod 705 is provided with a conical support head. The arc-shaped head is slidably connected to the top rod 704.
[0030] A spring 706 is fitted on the positioning rod 705. One end of the spring 706 is fixedly connected to the conical support head, and the other end of the spring 706 is fixedly connected to the positioning cylinder 701. The top rod 704 is a cone with a large bottom and a small top and an arc surface. Multiple positioning rods 705 and springs 706 are provided, and the multiple positioning rods 705 and springs 706 are evenly distributed in a circumferential shape.
[0031] The cleaning assembly includes a second motor 401, a first rotating shaft 402, a first support plate 403, a third rotating shaft 411, a second support plate 412, and a transmission mechanism. The first rotating shaft 402 and the third rotating shaft 411 are rotatably mounted on both sides of the storage box 201, the first support plate 403 is fixedly mounted on the first rotating shaft 402, and the second support plate 412 is fixedly mounted on the third rotating shaft 411. The first rotating shaft 402 and the third rotating shaft 411 are connected by the transmission mechanism. Multiple nozzles 404 are fixedly mounted on both the first support plate 403 and the second support plate 412.
[0032] Both ends of the support plate 1 403 and the support plate 2 412 are provided with arc surfaces. Both the support plate 1 403 and the support plate 2 412 are provided with multiple liquid injection ports 413, and the liquid injection ports 413 are connected to a cleaning liquid injection mechanism.
[0033] The transmission mechanism includes a second shaft 405, a third gear 406, a first pulley 407, a fourth gear 408, a belt 409, and a second pulley 410. The second shaft 405 is rotatably mounted on the storage box 201. The third gear 406 is fixedly mounted on the first shaft 402. The fourth gear 408 is fixedly mounted on the second shaft 405. The third gear 406 and the fourth gear 408 are meshed together. The first pulley 407 is fixedly mounted on the second shaft 405. The second pulley 410 is fixedly mounted on the third shaft 411. The first pulley 407 and the second pulley 410 are connected by the belt 409.
[0034] The lifting mechanism includes a third motor 501, a first rotating rod 502, a second rotating rod 503, a connector 504, and a support base 507. Both the third motor 501 and the support base 507 are fixedly installed inside the storage box 201. The output shaft of the third motor 501 passes through the support base 507, and a worm gear 506 is fixedly installed on the output shaft of the third motor 501. Support rods 508 are fixedly installed on the support base 507. Multiple sets of support rods 508 are provided, with two support rods forming a group. These groups of support rods 508 are evenly distributed in a circumferential shape. Each group of support rods 508... Each of the components is rotatably mounted with a connecting shaft 1, on which a worm gear 505 is fixedly mounted. The worm gear 505 meshes with the worm 506. One end of the rotating rod 1 502 is fixedly mounted on the connecting shaft 1. The connecting head 504 is fixedly connected to the support plate 3 605. One end of the rotating rod 2 503 is rotatably connected to the connecting head 504, and the other end of the rotating rod 2 503 is rotatably connected to the rotating rod 1 502. Multiple rotating rods 1 502, rotating rod 2 503, connecting head 504, and worm gear 505 are provided and are evenly distributed in a circumferential shape.
[0035] Two rotating components and two support frames 101 are provided and distributed on both sides of the storage box 201. The rotating component includes a motor 102, a gear 103, a gear 2 104, a connecting shaft 2 105, and a connecting shaft 3 106. The motor 102 is fixedly mounted on the support frame 101. The gear 103 is fixedly mounted on the output shaft of the motor 102. The connecting shaft 3 106 is rotatably mounted on the support frame 101 and is fixedly connected to the storage box 201. The connecting shaft 2 105 is fixedly mounted on the connecting shaft 3 106. The gear 2 104 is fixedly mounted on the connecting shaft 2 105. The gear 1 103 and the gear 2 104 are meshed together.
[0036] The storage box 201 is equipped with two door assemblies and two discharge ports, both of which are distributed vertically. The door assembly is located at the discharge port position. The door assembly includes an electric cylinder 301 and a baffle 302. The baffle 302 is slidably installed on the storage box 201, and the electric cylinder 301 is fixedly installed on the storage box 201. The piston rod of the electric cylinder 301 is fixedly connected to the baffle 302. Multiple electric cylinders 301 are provided.
[0037] When the positioning component needs to work, the electric cylinder 703 is started. The piston rod of the electric cylinder 703 drives the push rod 704 to move. Since the push rod 704 is a cone with a large bottom and a small top and an arc surface, when the push rod 704 rises, it pushes multiple positioning rods 705 to move, so that the multiple positioning rods 705 press against the inside of the rolled anti-corrosion material cylinder, thereby positioning the rolled anti-corrosion material.
[0038] When the lifting mechanism needs to work, motor 3 501 starts, and the output shaft of motor 3 501 drives worm 506 to rotate. Worm 506 drives worm wheel 505 to rotate. Worm wheel 505 drives rotating rod 1 502 to rotate through connecting shaft 1. Rotating rod 1 502 drives connecting head 504 to rise and fall through rotating rod 2 503. Connecting head 504 drives support plate 3 605 to rise and fall.
[0039] When turntable 601 needs to rotate, motor 604 starts, and the output shaft of motor 604 drives connecting shaft 603 to rotate. Connecting shaft 603 drives turntable 601 and fan 602 to rotate. When turntable 601 rotates on support plate 605, it drives positioning component to rotate.
[0040] When the cleaning components need to be cleaned, motor 2 401 starts. The output shaft of motor 2 401 drives shaft 1 402 to rotate. Shaft 1 402 drives gear 3 406 to rotate. Gear 3 406 drives shaft 2 405 to rotate via gear 408. Shaft 2 405 drives pulley 1 407 to rotate. Pulley 1 407 drives pulley 2 410 to rotate via belt 409. Pulley 2 410 drives shaft 3 411 to rotate. When shaft 1 402 rotates, it drives support plate 1 403 to rotate. When shaft 3 411 rotates, it drives support plate 2 412 to rotate, thereby changing the positions of support plate 1 403 and support plate 2 412. When the cleaning components need to be cleaned, support plate 1 403 and support plate 2 412 are rotated to a horizontal position (e.g., ...). Figure 6 As shown, the nozzles 404 on support plate 403 and support plate 412 are activated to spray cleaning fluid, thereby cleaning the position adjustment component and positioning component installed at the bottom of storage tank 201. After cleaning, the plug 202 at the bottom of storage tank 201 is opened, and the cleaning fluid flows out from the sewage outlet on storage tank 201. The turntable 601 rotates after cleaning, and under the action of centrifugal force, it can quickly throw off the cleaning fluid. At the same time, the fan 602 installed on the top of storage tank 201 blows the position adjustment component and positioning component at the bottom of storage tank 201 dry when it rotates.
[0041] When the rotating component needs to work, motor 102 starts, and the output shaft of motor 102 drives gear 103 to rotate. Gear 103 drives connecting shaft 205 to rotate through gear 2104. Connecting shaft 205 drives storage box 201 to rotate through connecting shaft 3106. The position of the component is adjusted by the rotation of storage box 201 and the two sets of position adjustment components inside storage box 201.
[0042] When it is necessary to store roll-shaped anti-corrosion material, electric cylinder 301 is activated. The piston rod of electric cylinder 301 drives the baffle 302 to move, thereby removing the baffle 302 from the discharge port on the storage box 201 and placing the roll-shaped anti-corrosion material onto the positioning component on the turntable 601. The positioning component supports the roll-shaped anti-corrosion material from inside the roll-shaped anti-corrosion material cylinder. Electric cylinder 702 is activated. The piston rod of electric cylinder 702 drives the positioning cylinder 701 to slide on the turntable 601, thereby moving the roll-shaped anti-corrosion material into the storage box 201. The turntable 601 rotates, thereby sequentially placing multiple roll-shaped anti-corrosion materials onto the corresponding positioning components. When it is necessary to remove the roll-shaped anti-corrosion material, the piston rod of electric cylinder 702 drives the positioning cylinder 701 to slide on the turntable 601, thereby moving the roll-shaped anti-corrosion material out from inside the storage box 201. Then the positioning component releases the roll-shaped anti-corrosion material, making it easy to remove the roll-shaped anti-corrosion material.
[0043] When storing roll-shaped anti-corrosion materials, the roll-shaped anti-corrosion materials are placed on multiple positioning components on one set of positioning adjustment components at a time. Another set of positioning adjustment components is used to temporarily store the roll-shaped anti-corrosion materials during self-cleaning operations. The two sets of positioning adjustment components are used alternately to perform self-cleaning, thereby ensuring that the storage area for the roll-shaped anti-corrosion materials is always clean.
[0044] The working principle of this invention is as follows: When it is necessary to clean the position adjustment component on which the roll of anti-corrosion material is placed at the bottom of the storage box 201, the lifting mechanism drives the positioning component to rise and fall through the turntable 601. The positioning component drives the roll of anti-corrosion material to rise and fall, thereby transferring the roll of anti-corrosion material on the position adjustment component at the bottom of the storage box 201 to the position adjustment component at the top of the storage box 201. Then, the cleaning component and the fan 602 clean and dry the position adjustment component at the bottom of the storage box 201. If it is necessary to clean the position adjustment component at the top of the storage box 201, the two position adjustment components are repositioned by rotating the component, and then the cleaning component is used for cleaning.
[0045] It should be noted that the start and stop of the power components in this invention are controlled by a program control component.
Claims
1. A self-cleaning anti-corrosion material storage device, comprising a support frame (101) and a program control component, wherein a rotating component is mounted on the support frame (101), characterized in that, A storage box (201) is installed on the rotating assembly. A cleaning assembly and a position adjustment assembly are installed inside the storage box (201). Two sets of position adjustment assemblies are arranged vertically inside the storage box (201). Multiple sets of positioning components are arranged on the position adjustment assembly, evenly spaced in a circular pattern. The position adjustment assembly includes a lifting mechanism, a turntable (601), a connecting shaft (603), a motor (604), and a support plate (605). The lifting mechanism is installed inside the storage box (201), and the support plate (605) is fixedly installed on the lifting mechanism. The turntable (601) 601) is rotatably mounted on support plate three (605), motor four (604) is mounted on support plate three (605), connecting shaft four (603) is rotatably mounted on support plate three (605), turntable (601) and connecting shaft four (603) are fixedly connected, output shaft of motor four (604) is fixedly connected to connecting shaft four (603), turntable (601) is provided with multiple sliding grooves, fan (602) is fixedly mounted on connecting shaft four (603), storage box (201) is provided with multiple sewage outlets at both the upper and lower ends, and plugs (202) are detachably installed at the sewage outlets; The lifting mechanism drives the positioning component to rise and fall via the turntable (601), and the positioning component drives the roll of anti-corrosion material to rise and fall, thereby transferring the roll of anti-corrosion material on the lower position adjustment component of the storage box (201) to the upper position adjustment component of the storage box (201). The lower position adjustment component of the storage box (201) is cleaned and dried by the cleaning component and the fan (602). When the upper position adjustment component of the storage box (201) needs to be cleaned, the two position adjustment components are changed by rotating the component, and the cleaning component is used for cleaning. The cleaning assembly includes a second motor (401), a first rotating shaft (402), a first support plate (403), a third rotating shaft (411), a second support plate (412), and a transmission mechanism. The first rotating shaft (402) and the third rotating shaft (411) are rotatably mounted on both sides of the storage box (201). The first support plate (403) is fixedly mounted on the first rotating shaft (402), and the second support plate (412) is fixedly mounted on the third rotating shaft (411). The first rotating shaft (402) and the third rotating shaft (411) are connected by the transmission mechanism. Multiple nozzles (404) are fixedly mounted on both the first support plate (403) and the second support plate (412). The transmission mechanism includes a second rotating shaft (405), a third gear (406), a first pulley (407), a fourth gear (408), a belt (409), and a second pulley (410). The second rotating shaft (405) is rotatably mounted on the storage box (201). The third gear (406) is fixedly mounted on the first rotating shaft (402). The fourth gear (408) is fixedly mounted on the second rotating shaft (405). The third gear (406) and the fourth gear (408) are meshed together. The first pulley (407) is fixedly mounted on the second rotating shaft (405). The second pulley (410) is fixedly mounted on the third rotating shaft (411). The first pulley (407) and the second pulley (410) are connected by a belt (409). When the cleaning component needs to be working, the output shaft of motor two (401) drives shaft one (402) to rotate. Shaft one (402) drives gear three (406) to rotate. Gear three (406) drives shaft two (405) to rotate through gear four (408). Shaft two (405) drives pulley one (407) to rotate. Pulley one (407) drives pulley two (410) to rotate through belt (409). Pulley two (410) drives shaft three (411) to rotate. When shaft one (402) rotates, it drives support plate one (403) to rotate. When shaft three (411) rotates, it drives support plate two (412) to rotate, thereby changing the position of support plate one (403) and support plate two (412). When the cleaning component needs to be working, support plate one (403) and support plate two (412) are rotated to a horizontal position.
2. The anti-corrosion material storage device with self-cleaning function as described in claim 1, characterized in that, The positioning assembly includes a positioning cylinder (701), an electric cylinder two (702), an electric cylinder three (703), and a positioning rod (705). The positioning cylinder (701) is slidably installed in a slide groove one. The electric cylinder two (702) is fixedly installed in a turntable (601). The piston rod of the electric cylinder two (702) is fixedly connected to the positioning cylinder (701). The electric cylinder three (703) is fixedly installed in the positioning cylinder (701). A top rod (704) is fixedly installed on the piston rod of the electric cylinder three (703). The positioning rod (705) is slidably installed on the positioning cylinder (701). One end of the positioning rod (705) is provided with an arc-shaped head, and the other end of the positioning rod (705) is provided with a conical support head. The arc-shaped head is slidably connected to the top rod (704).
3. A self-cleaning anti-corrosion material storage device as described in claim 2, characterized in that, A spring (706) is fitted on the positioning rod (705). One end of the spring (706) is fixedly connected to the conical support head, and the other end of the spring (706) is fixedly connected to the positioning cylinder (701). The top rod (704) is a cone with a large bottom and a small top and an arc surface. Multiple positioning rods (705) and springs (706) are provided, and the multiple positioning rods (705) and springs (706) are evenly distributed in a circumferential shape.
4. A corrosion-resistant material storage device with self-cleaning function as described in claim 3, characterized in that, Both ends of the first support plate (403) and the second support plate (412) are provided with arc surfaces. Both the first support plate (403) and the second support plate (412) are provided with multiple liquid injection ports (413). The liquid injection ports (413) are connected to a cleaning liquid injection mechanism.
5. A self-cleaning anti-corrosion material storage device as described in claim 1, characterized in that, The lifting mechanism includes a third motor (501), a first rotating rod (502), a second rotating rod (503), a connector (504), and a support base (507). The third motor (501) and the support base (507) are both fixedly installed inside the storage box (201). The output shaft of the third motor (501) passes through the support base (507). A worm gear (506) is fixedly installed on the output shaft of the third motor (501). A support rod (508) is fixedly installed on the support base (507). There are multiple sets of support rods (508), with two support rods (508) forming a set. The multiple sets of support rods (508) are evenly distributed in a circumferential shape. Each support rod (508) is rotatably mounted with a connecting shaft 1, and a worm gear (505) is fixedly mounted on the connecting shaft 1. The worm gear (505) is meshed with the worm (506). One end of the rotating rod 1 (502) is fixedly mounted on the connecting shaft 1. The connector (504) is fixedly mounted on the support plate 3 (605). One end of the rotating rod 2 (503) is rotatably connected to the connector (504), and the other end of the rotating rod 2 (503) is rotatably connected to the rotating rod 1 (502). Multiple rotating rods 1 (502), rotating rod 2 (503), connector (504), and worm gear (505) are provided and are evenly distributed in a circumferential shape.
6. A corrosion-resistant material storage device with self-cleaning function as described in claim 1, characterized in that, Two rotating components and two support frames (101) are provided and distributed on both sides of the storage box (201). The rotating component includes a motor (102), a gear (103), a gear (104), a connecting shaft (105), and a connecting shaft (106). The motor (102) is fixedly installed on the support frame (101). The gear (103) is fixedly installed on the output shaft of the motor (102). The connecting shaft (106) is rotatably installed on the support frame (101). The connecting shaft (106) is fixedly connected to the storage box (201). The connecting shaft (105) is fixedly installed on the connecting shaft (106). The gear (104) is fixedly installed on the connecting shaft (105). The gear (103) and the gear (104) are meshed together.
7. A corrosion-resistant material storage device with self-cleaning function as described in claim 1, characterized in that, The storage box (201) is provided with two door assemblies and two discharge ports, both of which are distributed vertically. The door assembly is located at the discharge port. The door assembly includes an electric cylinder (301) and a baffle (302). The baffle (302) is slidably installed on the storage box (201). The electric cylinder (301) is fixedly installed on the storage box (201). The piston rod of the electric cylinder (301) is fixedly connected to the baffle (302). Multiple electric cylinders (301) are provided.
Citation Information
Patent Citations
Storage device for adhesive tape production
CN212074774U
Automatic cleaning equipment for stock bin
CN113401522A
Deashing and dustproof structure of instant adhesive raw material storage tank
CN213409734U