A mixing bowl fixture and method of use
By incorporating springs and limiting grooves into the mixing drum fixing device, and utilizing the elasticity of the springs and the stability design of the sliding plate, the problem of the mixing drum tipping over during construction is solved, thereby improving construction efficiency and quality and reducing costs.
Patent Information
- Application Number
- CN202211201803.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-29
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2042-09-29
AI Technical Summary
During the mixing process, the mixing drum is prone to rotating or tipping over due to excessive speed or high viscosity of the raw materials, which affects the construction quality and efficiency.
A mixing tank fixing device was designed. By setting a spring on the side of the sliding block, the spring force is used to lock the mixing tank in place. Combined with the design of the limiting groove and the sliding plate, the locking plate is ensured to move stably on the panel and prevent the mixing tank from tipping over.
It effectively prevents the mixing tank from rotating or tipping over during construction, improving labor efficiency and construction quality, reducing costs, and expanding the applicability of the device.
Smart Images

Figure CN115569592B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the technical fields of industry, construction and manufacturing, and particularly relates to a mixing tank fixing device and its usage method. Background Technology
[0002] In industrial, construction, and manufacturing processes, it is often necessary to mix and stir multiple raw materials. However, during the mixing process, the mixing drum may rotate or tip over due to excessively high mixing speed or high viscosity of the raw materials. A mixing drum fixing device can effectively secure the mixing drum, thereby preventing it from rotating or tipping over during mixing, improving labor efficiency and construction quality, and reducing costs. Summary of the Invention
[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a mixing tank fixing device and a method of use. The device and method of this invention use a spring on the side of the sliding block to lock the mixing tank with the spring force, which effectively prevents the mixing tank from rotating or tipping over during construction.
[0004] To achieve the above-mentioned objectives, the technical solution provided by this invention patent is as follows:
[0005] A mixing tank fixing device includes a base, a limiting module, a sliding module, a pedal module, and a spring module. The base includes a panel and a cylinder. The limiting module includes a limiting groove, a locking plate, and a sliding plate. The sliding module includes a sliding block, a connecting rod structure, and a central sliding rod. The pedal module includes a fork, a fork connecting rod, and a pedal. The spring module includes a spring and a spring seat. The limiting module is mounted on the panel of the base. The sliding module is connected to the limiting module, and the pedal module is connected to the sliding module.
[0006] The base panel is provided with a sliding hole, and limiting grooves are provided on both sides of the sliding hole. A sliding plate is provided in the limiting groove, the sliding plate is connected to the card plate, the bottom end of the card plate is connected to the sliding block, and the mixing tank is fixed between the card plates.
[0007] The linkage structure includes a connecting rod and a central slider. The sliding block is connected to the central slider via the connecting rod. The central slider is sleeved on the central sliding rod and slides on the central sliding rod. The bottom end of the central slider is connected to the shift fork. The shift fork is connected to the pedal via the shift fork connecting rod. The spring module is provided on the side of the sliding block.
[0008] When the pedal moves downward, it drives the central slider to move upward. The central slider drives the clamping plate to separate from the mixing tank through the connecting rod. When the pedal is perpendicular to the side of the cylinder of the base, the clamping plate fixes the mixing tank on the panel of the base.
[0009] The base is cylindrical in shape, with a panel on the upper end. The cylinder is hollow in shape, with its end face connected to the outer side of the panel end face. The cylinder and the panel are integrally formed.
[0010] The panel end face is provided with a plurality of sliding holes, which are evenly distributed on the panel. The sliding holes arranged on the panel are all equidistant from the center of the panel, and the sliding holes are rectangular through holes.
[0011] The aforementioned card plate is generally triangular prism-shaped. A rubber gasket is provided on the surface of the card plate that connects to the mixing tank. The width of the card plate is smaller than the width of the sliding hole. The bottom end of the card plate is connected to the sliding block. The card plate and the sliding block are integrally formed. The sliding block is generally cuboid-shaped. A bearing is provided at the bottom end of the sliding block. The bearing is fixed to the bottom end of the sliding block by a pin and rotates on the pin.
[0012] The bottom of both sides of the aforementioned card plate is provided with sliding plates, which slide within the limiting groove; one side of the sliding plate near the cylinder is connected to one end of the spring, and the other end of the spring is connected to the spring seat, which is fixed to the outer side of the lower end of the panel.
[0013] The aforementioned central slider is generally square, with a through hole in the center. The central sliding rod is inserted into the through hole of the central slider. Multiple bearings are provided on the outside of the central slider. The bearings on the central slider are fixed to the side of the central slider by pins, and the bearings of the central slider rotate on the pins. The bearings provided on the side of the central slider are respectively connected to the sliding blocks in the sliding holes on the panel by connecting rods.
[0014] The aforementioned central slider is square in shape, and the central slider is installed in the middle of the lower end of the panel. The central slider is welded and fixed to the panel perpendicularly.
[0015] The two sides of the aforementioned shift fork are welded and fixed to the bottom end of the central slider. The central slider passes through the groove in the middle of the shift fork. The shift fork is connected to the shift fork connecting rod. The shift fork connecting rod is connected to the pedal through a pedal bearing. The pedal bearing is installed on the cylinder. The pedal and the shift fork move with the pedal bearing as the fulcrum.
[0016] A method for using a mixing tank fixing device, the method specifically includes the following steps:
[0017] The first step is to prepare a mixing tank fixing device, which includes a base, a limiting module, a sliding module, a pedal module, and a spring module. The base includes a panel and a cylinder. The limiting module includes a limiting groove, a locking plate, and a sliding plate. The sliding module includes a sliding block, a connecting rod structure, and a central sliding rod. The pedal module includes a fork, a fork connecting rod, and a pedal. The spring module includes a spring and a spring seat. The limiting module is installed on the panel of the base. The sliding module is connected to the limiting module, and the pedal module is connected to the sliding module. The panel of the base has a sliding hole, and limiting grooves are provided on both sides of the sliding hole. A sliding plate is installed in the limiting groove. The sliding plate is connected to... The clamping plate is connected, and the bottom end of the clamping plate is connected to the sliding block. The mixing tank is fixed between the clamping plates. The linkage structure includes a connecting rod and a central slider. The sliding block is connected to the central slider through the connecting rod. The central slider is sleeved on the central sliding rod and slides on the central sliding rod. The bottom end of the central slider is connected to the shift fork. The shift fork is connected to the pedal through the shift fork connecting rod. The spring module is provided on the side of the sliding block. When the pedal moves downward, it drives the central slider to move upward. The central slider drives the clamping plate to separate from the mixing tank through the connecting rod. When the pedal is perpendicular to the side of the cylinder of the base, the clamping plate fixes the mixing tank on the panel of the base.
[0018] The second step is for the operator to step on the pedal and apply a downward force to the pedal to make the pedal move downward. When the pedal moves downward, the fork moves upward and drives the central slider to move along the central slide rod towards the panel. The central slide rod drives the sliding block to move outward from the panel through the connecting rod. At the same time, the sliding plate moves in the limiting slide groove to make the locking plate move outward from the panel.
[0019] Third, after the clamping plate moves to the outside of the panel, place the mixing bucket in the middle of the panel, with the center of the mixing bucket coinciding with the center of the panel. After the mixing bucket is installed, release the pedal, and the spring pushes the sliding block to move towards the center of the panel, so that the pedal moves upward and is perpendicular to the cylinder. At the same time, the fork moves downward, driving the central slider to move downward. The central slider drives the sliding block to move towards the center of the panel through the connecting rod, so that the clamping plate locks the mixing bucket.
[0020] Fourth, after the mixing tank is installed, use the mixing device to perform mixing operations inside the mixing tank;
[0021] Fifth step: After the mixing is completed, repeat step two to remove the mixing bowl from the panel to complete the mixing operation.
[0022] Based on the above technical solution, the method for splicing steel plates of different thicknesses proposed in this invention has achieved the following technical advantages through practical application:
[0023] 1. The present invention provides a mixing tank fixing device by setting a spring on the side of the sliding block. The spring force is used to lock the mixing tank in place by a clamping plate, which effectively prevents the mixing tank from rotating or tipping over during construction, thereby improving labor efficiency and construction quality and reducing costs.
[0024] 2. The mixing tank fixing device of the present invention sets the sliding plate in the limiting groove, so that the sliding plate moves in the limiting groove, preventing the sliding plate from moving up and down, improving the stability of the clamping plate moving on the panel, and improving the effect of the clamping plate in clamping the mixing tank.
[0025] 3. The mixing tank fixing device of the present invention improves the effect of the clamping plate in fixing the mixing tank by setting a rubber gasket on the side where the clamping plate connects to the mixing tank, without damaging the mixing tank.
[0026] 4. The mixing tank fixing device of the present invention allows the sliding block to slide in the sliding hole, so that the clamping plate can hold mixing tanks of different sizes, thereby improving the applicability of the mixing tank fixing device and reducing production costs. Attached Figure Description
[0027] Figure 1 This is a cross-sectional view of the mixing tank fixing device in the mixing tank fixing device of the present invention.
[0028] Figure 2 This invention relates to a mixing tank fixing device. Figure 1 AA sectional view.
[0029] Figure 3 This invention relates to a mixing tank fixing device. Figure 1 BB cross-sectional view.
[0030] Figure 4 This invention relates to a mixing tank fixing device. Figure 1 CC section view. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of this invention clearer, the invention is described below with reference to specific examples shown in the accompanying drawings. However, it should be understood that these descriptions are merely exemplary and not intended to limit the scope of the invention. Furthermore, descriptions of well-known structures and techniques are omitted in the following description to avoid unnecessarily obscuring the concept of the invention.
[0032] like Figure 1-4The present invention pertains to a mixing tank fixing device, which includes a base 1, a limiting module, a sliding module, a pedal module, and a spring module. The base 1 includes a panel 17 and a cylinder 16. The limiting module includes a limiting groove 12, a locking plate 11, and a sliding plate 10. The sliding module includes a sliding block 15, a connecting rod structure, and a central sliding rod 4. The pedal module includes a fork 7, a fork connecting rod 14, and a pedal 9. The spring module includes a spring 2 and a spring seat 13. The limiting module is installed on the panel 17 of the base 1. The sliding module is connected to the limiting module, and the pedal module is connected to the sliding module. By setting the spring 2 on the side of the sliding block 15, the elastic force of the spring 2 is used to lock the mixing tank 18 with the locking plate 11, effectively preventing the mixing tank 18 from rotating or tipping over during construction, thereby improving labor efficiency and construction quality, and reducing costs.
[0033] The base 1 has a sliding hole on its panel 17, and limiting grooves 12 are provided on both sides of the sliding hole. A sliding plate 10 is provided in the limiting groove 12. The sliding plate 10 is connected to the clamping plate 11. The bottom end of the clamping plate 11 is connected to the sliding block 15. The mixing tank 18 is fixed between the clamping plates 11. The sliding plate 10 is placed in the limiting groove 12, so that the sliding plate 10 moves within the limiting groove 12, preventing the sliding plate 10 from moving up and down. This improves the stability of the clamping plate 11 on the panel 17 and improves the effect of the clamping plate 11 in holding the mixing tank 18.
[0034] The linkage structure includes a connecting rod 5 and a central slider 6. The sliding block 15 is connected to the central slider 6 via the connecting rod 5. The central slider 6 is sleeved on the central slide rod 4 and slides on the central slide rod 4. The bottom end of the central slider 6 is connected to the shift fork 7. The shift fork 7 is connected to the pedal 9 via the shift fork connecting rod 14. The spring module is provided on the side of the sliding block 15.
[0035] When the pedal 9 moves downward, it drives the central slider 6 to move upward. The central slider 6 drives the clamping plate 11 to separate from the mixing tank 18 through the connecting rod 5. When the pedal 9 is perpendicular to the side of the cylinder 16 of the base 1, the clamping plate 11 fixes the mixing tank 18 on the panel 17 of the base 1.
[0036] The base 1 is cylindrical in shape, and a panel 17 is provided on the upper end of the base 1. The cylinder 16 is hollow in shape, and the end face of the cylinder 16 is connected to the outer side of the end face of the panel 17. The cylinder 16 and the panel 17 are integrally formed.
[0037] Multiple sliding holes are provided on the end face of the panel 17. The sliding holes are evenly distributed on the panel 17. The sliding holes arranged on the panel 17 are equidistant from the center of the panel 17. The sliding holes are rectangular through holes.
[0038] The aforementioned clamping plate 11 is generally triangular prism-shaped. A rubber gasket is provided on the surface of the clamping plate 11 that connects with the mixing tank 18. The width of the clamping plate 11 is smaller than the width of the sliding hole. The bottom end of the clamping plate 11 is connected to the sliding block 15. The clamping plate 11 and the sliding block 15 are integrally formed. The sliding block 15 is generally cuboid-shaped. A bearing 3 is provided at the bottom end of the sliding block 15. The bearing 3 is fixed to the bottom end of the sliding block 15 by a pin 31 and rotates on the pin 31. By providing a rubber gasket on the side of the clamping plate 11 that connects with the mixing tank 18, the effect of the clamping plate 11 in clamping the mixing tank 18 is improved, while the mixing tank 18 is not damaged.
[0039] The bottom sides of the aforementioned card plate 11 are respectively provided with sliding plates 10, which slide within the limiting groove 12; one side of the sliding plate 10 near the cylinder 16 is connected to one end of the spring 2, and the other end of the spring 2 is connected to the spring seat 13, which is fixed to the outer side of the lower end of the panel 17; by sliding the sliding block 15 in the sliding hole, the card plate 11 can hold different sizes of mixing tanks 18, which improves the applicability of the mixing tank 18 fixing device and reduces production costs.
[0040] The aforementioned central slider 6 is generally square, with a through hole in the center. The central sliding rod 4 is inserted into the through hole of the central slider 6. Multiple bearings 3 are provided on the outer side of the central slider 6. The bearings 3 on the central slider 6 are fixed to the side of the central slider 6 by pins 31, and the bearings 3 on the central slider 6 rotate on the pins 31. The bearings 3 on the side of the central slider 6 are respectively connected to the sliding blocks 15 in the sliding holes on the panel 17 by connecting rods 5.
[0041] The aforementioned central slider 6 is generally square, and the central slider 4 is installed in the middle of the lower end of the panel 17. The central slider 4 is vertically welded and fixed to the panel 17.
[0042] The fork 7 is welded and fixed to the bottom of the central slider 6 on both sides. The central slider 4 passes through the groove in the middle of the fork 7. The fork 7 is connected to the fork connecting rod 14. The fork connecting rod 14 is connected to the pedal 9 through the pedal bearing 8. The pedal bearing 8 is installed on the cylinder 16. The pedal 9 and the fork 7 move with the pedal bearing 8 as the fulcrum.
[0043] This invention relates to a method for using a mixing tank fixing device, which specifically includes the following steps:
[0044] The first step is to prepare a mixing tank fixing device, which includes a base 1, a limiting module, a sliding module, a pedal module, and a spring module. The base 1 includes a panel 17 and a cylinder 16. The limiting module includes a limiting groove 12, a locking plate 11, and a sliding plate 10. The sliding module includes a sliding block 15, a connecting rod structure, and a central sliding rod 4. The pedal module includes a fork 7, a fork connecting rod 14, and a pedal 9. The spring module includes a spring 2 and a spring seat 13. The limiting module is installed on the panel 17 of the base 1. The sliding module is connected to the limiting module, and the pedal module is connected to the sliding module. The panel 17 of the base 1 is provided with a sliding hole. Limiting grooves 12 are provided on both sides of the sliding hole. The sliding plate 10 is provided in the limiting groove 12. The sliding plate 10 is connected to the locking plate 11. The base 11 is connected to the sliding block 15 at its bottom end, and the mixing tank 18 is fixed between the two plates 11. The linkage structure includes a connecting rod 5 and a central slider 6. The sliding block 15 is connected to the central slider 6 through the connecting rod 5. The central slider 6 is sleeved on the central sliding rod 4 and slides on the central sliding rod 4. The bottom end of the central slider 6 is connected to the fork 7, and the fork 7 is connected to the pedal 9 through the fork connecting rod 14. The sliding block 15 is provided with a spring module on its side. When the pedal 9 moves downward, it drives the central slider 6 to move upward. The central slider 6 drives the plate 11 to separate from the mixing tank 18 through the connecting rod 5. When the pedal 9 is perpendicular to the side of the cylinder 16 of the base 1, the plate 11 fixes the mixing tank 18 to the panel 17 of the base 1.
[0045] The second step is for the operator to step on the pedal 9 and apply a downward force to the pedal 9 to make the pedal 9 move downward. When the pedal 9 moves downward, the fork 7 moves upward and drives the central slider 6 to move along the central slide rod 4 towards the panel 17. The central slide rod 4 drives the sliding block 15 to move outward in the sliding block 15 through the connecting rod 5. At the same time, the sliding plate 10 moves in the limiting slide groove 12 to make the locking plate 11 move outward in the panel 17.
[0046] Third, after the clamping plate 11 moves to the outside of the panel 17, the mixing barrel 18 is placed in the middle of the panel 17, with the center of the mixing barrel 18 coinciding with the center of the panel 17. After the mixing barrel 18 is installed, the pedal 9 is released, and the spring 2 pushes the sliding block 15 to move towards the center of the panel 17, so that the pedal 9 moves upward and is perpendicular to the cylinder 16. At the same time, the fork 7 moves downward and drives the central slider 6 to move downward. The central slider 6 drives the sliding block 15 to move towards the center of the panel 17 through the connecting rod 5, so that the clamping plate 11 clamps the mixing barrel 18.
[0047] Fourth step: After the mixing tank 18 is installed, use the mixing device to perform mixing operations inside the mixing tank 18;
[0048] Fifth step: After the mixing operation is completed, repeat the second step and remove the mixing bowl 18 from the panel 17 to complete the mixing operation.
[0049] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them; although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications can still be made to the specific implementation of the invention or equivalent substitutions can be made to some technical features without departing from the spirit of the technical solutions of the present invention, and all such modifications and substitutions should be covered within the scope of the technical solutions claimed in the present invention.
Claims
1. A mixing tank fixing device, characterized in that, The device includes a base (1), a limiting module, a sliding module, a pedal module, and a spring module. The base (1) includes a panel (17) and a cylinder (16). The limiting module includes a limiting groove (12), a locking plate (11), and a sliding plate (10). The sliding module includes a sliding block (15), a connecting rod structure, and a central sliding rod (4). The pedal module includes a shift fork (7), a shift fork connecting rod (14), and a pedal (9). The spring module includes a spring (2) and a spring seat (13). The limiting module is installed on the panel (17) of the base (1). The sliding module is connected to the limiting module, and the pedal module is connected to the sliding module. The base (1) has a sliding hole on its panel (17), and a limiting groove (12) is provided on both sides of the sliding hole. A sliding plate (10) is provided in the limiting groove (12). The sliding plate (10) is connected to the card plate (11). The bottom end of the card plate (11) is connected to the sliding block (15). The mixing tank (18) is fixed between the card plates (11). The linkage structure includes a connecting rod (5) and a central slider (6). The sliding block (15) is connected to the central slider (6) through the connecting rod (5). The central slider (6) is sleeved on the central slide rod (4). The central slider (6) slides on the central slide rod (4). The bottom end of the central slider (6) is connected to the shift fork (7). The shift fork (7) is connected to the pedal (9) through the shift fork connecting rod (14). The spring module is provided on the side of the sliding block (15). The fork (7) is welded and fixed to the bottom of the central slider (6) on both sides. The central slider (4) passes through the groove in the middle of the fork (7). The fork (7) is connected to the fork connecting rod (14). The fork connecting rod (14) is connected to the pedal (9) through the pedal bearing (8). The pedal bearing (8) is installed on the cylinder (16). The pedal (9) and the fork (7) move with the pedal bearing (8) as the fulcrum. The central slider (6) is square in shape. A through hole is provided in the middle of the central slider (6). The central sliding rod (4) is inserted into the through hole of the central slider (6). Multiple bearings (3) are provided on the outside of the central slider (6). The bearings (3) on the central slider (6) are fixed to the side of the central slider (6) by a pin (31). The bearings (3) on the central slider (6) rotate on the pin (31). The bearings (3) provided on the side of the central slider (6) are respectively connected to the sliding block (15) in the sliding hole on the panel (17) by a connecting rod (5). When the pedal (9) moves downward, it drives the central slider (6) to move upward. The central slider (6) drives the clamping plate (11) to separate from the mixing tank (18) through the connecting rod (5). When the pedal (9) is perpendicular to the side of the cylinder (16) of the base (1), the clamping plate (11) fixes the mixing tank (18) on the panel (17) of the base (1).
2. The mixing tank fixing device according to claim 1, characterized in that, The base (1) is cylindrical in shape, and a panel (17) is provided on the upper end of the base (1). The cylinder (16) is hollow in shape, and the end face of the cylinder (16) is connected to the outer side of the end face of the panel (17). The cylinder (16) and the panel (17) are integrally formed.
3. The mixing tank fixing device according to claim 2, characterized in that, Multiple sliding holes are provided on the end face of the panel (17). The sliding holes are evenly distributed on the panel (17). The sliding holes arranged on the panel (17) are all the same distance from the center of the panel (17). The sliding holes are rectangular through holes.
4. The mixing tank fixing device according to claim 3, characterized in that, The card plate (11) is generally triangular prism-shaped. The surface of the card plate (11) connected to the mixing tank (18) is provided with a rubber gasket. The width of the card plate (11) is smaller than the width of the sliding hole. The bottom end of the card plate (11) is connected to the sliding block (15). The card plate (11) and the sliding block (15) are integrally formed. The sliding block (15) is generally rectangular. The bottom end of the sliding block (15) is provided with a bearing (3). The bearing (3) is fixed to the bottom end of the sliding block (15) by a pin (31). The bearing (3) rotates on the pin (31).
5. The mixing tank fixing device according to claim 4, characterized in that, The bottom of both sides of the card plate (11) is provided with sliding plates (10), which slide in the limiting groove (12); the side of the sliding plate (10) near the cylinder (16) is connected to one end of the spring (2), and the other end of the spring (2) is connected to the spring seat (13), which is fixed to the outer side of the lower end of the panel (17).
6. The mixing tank fixing device according to claim 1, characterized in that, The central slider (6) is square in shape, and the central slide rod (4) is installed in the middle of the lower end of the panel (17). The central slide rod (4) is vertically welded and fixed to the panel (17).
7. A method of using a mixing tank fixing device, characterized in that, The method specifically includes the following steps: The first step is to prepare a mixing tank fixing device, which includes a base (1), a limiting module, a sliding module, a pedal module and a spring module. The base (1) includes a panel (17) and a cylinder (16). The limiting module includes a limiting groove (12), a clamping plate (11) and a sliding plate (10). The sliding module includes a sliding block (15), a connecting rod structure and a central sliding rod (4). The pedal module includes a fork (7), a fork connecting rod (14) and a pedal (9). The spring module includes a spring (2) and a spring seat (13). The limiting module is installed on the panel (17) of the base (1). The sliding module is connected to the limiting module and the pedal module is connected to the sliding module. The panel (17) of the base (1) is provided with a sliding hole. The limiting groove (12) is provided on both sides of the sliding hole. The sliding plate (10) is provided in the limiting groove (12). The sliding plate (10) is connected to the clamping plate (11). The bottom end of the sliding block (15) is connected to the sliding block (15), and the mixing tank (18) is fixed between the clamping plates (11); the connecting rod structure includes a connecting rod (5) and a central slider (6). The sliding block (15) is connected to the central slider (6) through the connecting rod (5). The central slider (6) is sleeved on the central sliding rod (4), and the central slider (6) slides on the central sliding rod (4). The bottom end of the central slider (6) is connected to the fork (7), and the fork (7) is connected to the sliding block (7) through the sliding block (15). The fork linkage (14) is connected to the pedal (9); the sliding block (15) is provided with the spring module on its side; when the pedal (9) moves downward, it drives the central slider (6) to move upward, and the central slider (6) drives the clamping plate (11) to separate from the mixing tank (18) through the linkage (5). When the pedal (9) is perpendicular to the side of the cylinder (16) of the base (1), the clamping plate (11) fixes the mixing tank (18) on the panel (17) of the base (1); In the second step, the operator steps on the pedal (9) and applies a downward force to the pedal (9) to make the pedal (9) move downward. When the pedal (9) moves downward, the fork (7) moves upward and drives the central slider (6) to move along the central slide rod (4) towards the panel (17). The central slide rod (4) drives the sliding block (15) to move outward in the sliding block (15) through the connecting rod (5). At the same time, the sliding plate (10) moves in the limiting slide groove (12) to make the clamping plate (11) move outward in the panel (17). Third step, after the clamping plate (11) moves to the outside of the panel (17), place the mixing barrel (18) in the middle of the panel (17). The center of the mixing barrel (18) coincides with the center of the panel (17). After the mixing barrel (18) is installed, release the pedal (9). The spring (2) pushes the sliding block (15) to move towards the center of the panel (17), so that the pedal (9) moves upward and is perpendicular to the cylinder (16). At the same time, the fork (7) moves downward and drives the central slider (6) to move downward. The central slider (6) drives the sliding block (15) to move towards the center of the panel (17) through the connecting rod (5), so that the clamping plate (11) clamps the mixing barrel (18). Fourth step: After the mixing tank (18) is installed, use the mixing device to carry out mixing operations in the mixing tank (18); Fifth step: After the mixing operation is completed, repeat the second step and remove the mixing bucket (18) from the panel (17) to complete the mixing operation.
Citation Information
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