Modularized electric heating stirring kettle with quick cleaning structure
By combining modular design with multi-directional stirring components, the problem of poor stirring effect in existing mixing tanks has been solved, achieving uniform mixing and rapid cleaning of materials.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- CHONGQING XIEMEI ELECTRIC CO LTD
- Filing Date
- 2026-02-27
- Publication Date
- 2026-05-01
AI Technical Summary
In actual use, existing mixing tanks only use a motor to drive the mixing blades to mix materials, resulting in poor mixing effect.
It adopts a modular design, including a frame, heating vessel, lifting module, stirring module, lateral movement module and cleaning module. Through the combination of dual-axis motor, reciprocating component, driving bevel gear, round rod, driven bevel gear, belt pulley drive component, cover component, rotating rod and stirring component, it realizes multi-directional movement of stirring component, and is equipped with cleaning motor and cleaning component to achieve rapid cleaning.
It improves the mixing effect, enabling uniform mixing of materials in different locations, and has a rapid cleaning function, solving the problem of poor mixing effect.
Smart Images

Figure CN121944908A_ABST
Abstract
Description
A modular electrically heated stirring vessel with a rapid cleaning structure Technical Field
[0001] This invention relates to the field of material mixing equipment technology, and in particular to a modular electrically heated stirring vessel with a rapid cleaning structure. Background Technology
[0002] Stirred tanks, widely used in chemical, pharmaceutical, food, and bioengineering fields, are core mixing and reaction equipment. Their main function is to force materials to flow, shear, and diffuse through the rotation of an internal stirring device, thereby achieving uniform mixing, enhancing heat and mass transfer processes, or precisely controlling and promoting chemical reaction processes. Traditional stirred tanks typically consist of a tank body, a stirring system, and corresponding support structures.
[0003] However, existing mixing tanks only use a motor to drive the mixing blades to mix the materials in actual use, resulting in poor mixing effect. Summary of the Invention
[0004] The purpose of this invention is to provide a modular electrically heated stirring vessel with a rapid cleaning structure, which solves the technical problem that existing stirring vessels only use a motor to drive the stirring blades to stir materials in actual use, resulting in poor stirring effect.
[0005] To achieve the above objectives, the present invention provides a modular electric heating stirring vessel with a rapid cleaning structure, comprising a frame, a heating vessel body, a lifting module, a stirring module, a lateral movement module, and a cleaning module. The heating vessel body has a discharge port. The lifting module is mounted on the frame, and the cleaning module is mounted on the lifting module. The lateral movement module is used to move the heating vessel body. The stirring module includes a dual-axis motor, a reciprocating component, a driving bevel gear, a round rod, a driven bevel gear, a belt pulley drive component, a cover component, a rotating rod, and a stirring component. The reciprocating component is slidably connected to the lifting module, the cover component is fixedly connected to the lifting module, the rotating rod is rotatably connected to the rod body, the stirring component is slidably connected to the rotating component, and the stirring component is also rotatably connected to the reciprocating component. The dual-axis motor is mounted on the lifting module, and its two output ends are fixedly connected to the reciprocating component and the driving bevel gear, respectively. The round rod is rotatably connected to the lifting module, the driven bevel gear is fixedly connected to the round rod, and the belt pulley drive component is connected to both the round rod and the rotating component.
[0006] The transverse module includes a sleeve, a guide rod, a transverse motor, and a transverse screw. The sleeve is fixedly connected to the heating vessel body. The guide rod and the transverse screw are both mounted on the frame. The transverse motor is used to drive the transverse screw to rotate. The transverse screw is threadedly engaged with the sleeve.
[0007] The cleaning module includes a cleaning motor and a cleaning component. The cleaning motor is mounted on the lifting assembly, and the output end of the cleaning motor is connected to the cleaning component.
[0008] The lifting module includes two electric cylinders, two support rods, and a lifting plate. The two support rods are slidably connected to the frame, and the lifting plate is fixedly connected to the two support rods. The electric cylinders are used to drive the lifting plate to move.
[0009] The reciprocating component includes a cam and a slider. The slider is slidably connected to the lifting module and is also in clearance fit with the stirring component. The cam is fixedly connected to the output end of the dual-axis motor away from the active bevel gear and is in contact with the slider.
[0010] The sliding component includes a T-shaped rod and a connecting plate. The T-shaped rod is slidably connected to the lifting plate, and the connecting plate is connected to both the T-shaped rod and the stirring component.
[0011] The cover assembly includes a support rod and a cover plate, wherein the support rod is fixedly connected to the lifting plate, and the cover plate is fixedly connected to the support rod.
[0012] This invention discloses a modular electric heating stirring vessel with a rapid cleaning structure. In practical use, the material to be stirred is added into the heating vessel. Then, the lifting module moves the stirring module downward, placing the stirring element inside the heating vessel. The dual-shaft motor is activated, with one output driving the driving bevel gear to rotate. The driving bevel gear drives the rod to rotate via the driven bevel gear. The rod drives the rotating component to rotate via the belt pulley transmission component, thereby causing the stirring element to stir the material. Simultaneously, the other output of the dual-shaft motor drives the stirring element to move up and down reciprocally via the reciprocating component, enabling the stirring element to stir and mix the material at different locations. This method solves the technical problem of existing stirring vessels that rely solely on a motor to drive the stirring blades for stirring, resulting in poor stirring effect. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 is a perspective view of the first embodiment of the present invention.
[0015] Figure 2 is a structural schematic diagram of the second embodiment of the present invention.
[0016] Figure 3 is a front view of the third embodiment of the present invention.
[0017] Figure 4 is an enlarged view of a partial structure at point A in Figure 1 of the present invention.
[0018] Figure 5 is an enlarged view of a partial structure at point B in Figure 1 of the present invention.
[0019] Figure 6 is a front view of the second embodiment of the present invention.
[0020] In the diagram: 1-Frame, 2-Heating vessel, 3-Dual-shaft motor, 4-Driving bevel gear, 5-Round rod, 6-Driven bevel gear, 7-Belt pulley transmission component, 8-Rotating rod, 9-Agitator component, 10-Sleeve component, 11-Discharge port, 12-Guide rod, 13-Transverse movement motor, 14-Transverse movement screw, 15-Cleaning motor, 16-Electric cylinder, 17-Support rod, 18-Lifting plate, 19-Cam, 20-T-shaped rod, 21-Connecting plate, 22-Support rod, 23-Cover plate, 24-Support plate, 25-Double-direction screw, 26-Block, 27-Connecting block, 28-Cleaning component, 29-Horizontal plate, 30-Moving screw, 31-Moving plate, 32-Moving wheel. Detailed Implementation
[0021] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0022] The first embodiment of this application is as follows: Please refer to Figures 1-5. Figure 1 is a perspective view of the first embodiment of the present invention. Figure 2 is a structural schematic diagram of the second embodiment of the present invention. Figure 3 is a front view of the third embodiment of the present invention. Figure 4 is an enlarged view of a partial structure at point A in Figure 1 of the present invention. Figure 5 is an enlarged view of a partial structure at point B in Figure 1 of the present invention.
[0023] This invention provides a modular electrically heated stirring vessel with a rapid cleaning structure, comprising a frame 1, a heating vessel body 2, a lifting module, a stirring module, a transverse module, and a cleaning module. The stirring module includes a dual-shaft motor 3, a reciprocating component, a driving bevel gear 4, a round rod 5, a driven bevel gear 6, a belt pulley transmission component 7, a cover component, a rotating rod 8, and a stirring component 9. The transverse module includes a sleeve component 10, a guide rod 12, a transverse motor 13, and a transverse screw 14. The cleaning module includes a cleaning motor 15 and a cleaning component. The lifting module includes two electric cylinders 16, two support rods 17, and a lifting plate 18. The reciprocating component includes a cam 19 and a sliding component. The sliding component includes a T-shaped rod 20 and a connecting plate 21. The cover component includes a support rod 22 and a cover plate 23. The aforementioned solution solves the technical problem of poor stirring effect in existing stirring vessels where only a motor drives the stirring blades to stir materials during actual use.
[0024] In this specific embodiment, the heating vessel 2 has a discharge port 11, the lifting module is mounted on the frame 1, the cleaning module is mounted on the lifting module, and the lateral movement module is used to move the heating vessel 2; the heating vessel 2 is used to carry materials.
[0025] The reciprocating component is slidably connected to the lifting module, the cover is fixedly connected to the lifting module, the rotating rod 8 is rotatably connected to the rod body, the stirring component 9 is slidably connected to the rotating component, and the stirring component 9 is also rotatably connected to the reciprocating component. The dual-axis motor 3 is mounted on the lifting module, and its two output ends are fixedly connected to the reciprocating component and the driving bevel gear 4, respectively. The round rod 5 is rotatably connected to the lifting module, the driven bevel gear 6 is fixedly connected to the round rod 5, and the belt pulley transmission component 7 is connected to both the round rod 5 and the rotating component. The support rod 22 is fixedly connected to the lifting plate 18, and the cover plate 23 is fixedly connected to the support rod 22. In actual use, the material to be stirred is added into the heating vessel 2. Then, the lifting module drives the stirring module to move downward, placing the stirring element 9 inside the heating vessel 2. The dual-axis motor 3 is started. One output end of the dual-axis motor 3 drives the active bevel gear 4 to rotate. The active bevel gear 4 drives the round rod 5 to rotate through the driven bevel gear 6. The round rod 5 drives the rotating element to rotate through the belt pulley transmission component 7, thereby driving the stirring element 9 to stir the material. At the same time, the other output end of the dual-axis motor 3 drives the stirring element 9 to move up and down reciprocally through the reciprocating component, thereby enabling the stirring element 9 to stir and mix the material at different positions. This method solves the technical problem in the prior art where the stirring vessel only uses a motor to drive the stirring blade to stir the material, resulting in poor stirring effect.
[0026] Secondly, the sleeve 10 is fixedly connected to the heating vessel 2. The guide rod 12 and the transverse screw 14 are both mounted on the frame 1. The transverse motor 13 is used to drive the transverse screw 14 to rotate. The transverse screw 14 is threadedly engaged with the sleeve 10. By starting the transverse motor 13, the transverse motor 13 drives the transverse screw 14 to rotate. The transverse screw 14 then drives the sleeve 10 to move, thereby driving the heating vessel 2 to move.
[0027] Meanwhile, the cleaning motor 15 is mounted on the lifting assembly, and the output end of the cleaning motor 15 is connected to the cleaning component. When the heating vessel 2 moves to the bottom of the cleaning component, the lifting assembly moves down to place the cleaning component inside the heating vessel 2, and the cleaning motor 15 is started. The cleaning motor 15 then drives the cleaning component to clean the interior.
[0028] Furthermore, both support rods 17 are slidably connected to the frame 1, and the lifting plates 18 are fixedly connected to both support rods 17. The electric cylinder 16 is used to drive the lifting plates 18 to move. By activating the two electric cylinders 16, the electric cylinders 16 drive the lifting plates 18 to move, thereby driving the stirring module and the cleaning module to rise and fall.
[0029] Furthermore, the sliding member is slidably connected to the lifting module, and the sliding member is also in clearance fit with the stirring member 9. The cam 19 is fixedly connected to the output end of the dual-axis motor 3 away from the active bevel gear 4. The cam 19 contacts the sliding member, and the corresponding output end of the dual-axis motor 3 drives the cam 19 to rotate. The cam 19 then pushes the sliding member upward, and the sliding member drives the stirring member 9 to rise. After rising to the designated position, the cam 19 no longer pushes the sliding member, and the sliding member falls with gravity, thereby causing the stirring member 9 to reciprocate.
[0030] Furthermore, the T-shaped rod 20 is slidably connected to the lifting plate 18, and the connecting plate 21 is connected to both the T-shaped rod 20 and the stirring component 9. When the cam 19 rotates, it drives the T-shaped rod 20 to move, and the T-shaped rod 20 drives the lifting plate 18 to move.
[0031] Furthermore, the cleaning component includes a support plate 24, a bidirectional screw 25, two blocks 26, multiple connecting blocks 27, and two cleaning parts 28. The support plate 24 is fixedly connected to the output end of the cleaning motor 15. The bidirectional screw 25 is rotatably connected to the support plate 24. The blocks 26 are threadedly engaged with the bidirectional screw 25. One end of the connecting block 27 is hinged to the corresponding block 26, and the other end of the connecting block 27 is hinged to the corresponding cleaning part 28. By rotating the bidirectional screw 25, the two blocks 26 slide. While the blocks 26 slide, the two ends of the connecting block 27 rotate on the corresponding blocks 26 and the corresponding cleaning parts 28, respectively. While the connecting block 27 rotates, it abuts against the corresponding cleaning part 28 as it moves. The cleaning part moves closer to or further away from the bidirectional screw 25, thus facilitating adjustment according to the inner diameter of the heating vessel 2.
[0032] Using a modular electric heating stirring vessel with a rapid cleaning structure according to this embodiment, in specific use, the material to be stirred is added into the heating vessel body 2. Then, the lifting module drives the stirring module to move down, so that the stirring element 9 is placed inside the heating vessel body 2. The dual-shaft motor 3 is started. One output end of the dual-shaft motor 3 drives the driving bevel gear 4 to rotate. The driving bevel gear 4 drives the round rod 5 to rotate through the driven bevel gear 6. The round rod 5 drives the rotating element to rotate through the belt pulley transmission component 7, thereby driving the stirring element 9 to stir the material. At the same time, the other output end of the dual-shaft motor 3 drives the stirring element 9 to move up and down reciprocally through the reciprocating component, so that the stirring element 9 can stir and mix the material at different positions. In this way, the technical problem of the existing stirring vessel, which only uses the motor to drive the stirring blade to stir the material during actual use, resulting in poor stirring effect, is solved.
[0033] The second embodiment of this application is as follows: Please refer to Figure 6, which is a front view of the second embodiment of the present invention. Based on the first embodiment, the modular electric heating stirring vessel with a rapid cleaning structure in this embodiment further includes two horizontal plates 29, two moving screws 30, two moving plates 31, and multiple moving wheels 32.
[0034] In this specific embodiment, the horizontal plate 29 is fixedly connected to the frame 1, the movable plate 31 is slidably connected to the frame 1, the movable screw 30 is used to drive the movable plate 31 to rise and fall, and the movable wheel 32 is set on the corresponding movable wheel 32. When the frame 1 needs to be moved, by rotating the two movable screws 30, the movable screws 30 drive the movable plate 31 to slide on the frame 1, thereby driving the corresponding movable wheel 32 to move, so that the movable wheel 32 is placed on the ground for support and rolls to move the frame 1. After moving to the designated position, the movable screws 30 are used to store the movable wheel 32 to prevent it from rolling randomly. In this way, the frame 1 can be moved easily and its stability can be maintained.
[0035] Using a modular electric heating stirring vessel with a rapid cleaning structure according to this embodiment, when the frame 1 needs to be moved, the two moving screws 30 are rotated. The moving screws 30 drive the moving plate 31 to slide on the frame 1, thereby driving the corresponding moving wheel 32 to move. The moving wheel 32 is placed on the ground for support and rolls to move the frame 1. After moving to the designated position, the moving screws 30 are used to store the moving wheel 32 to prevent it from rolling randomly. In this way, the frame 1 can be moved easily and its stability can be maintained.
[0036] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art will understand that all or part of the processes for implementing the above embodiments and equivalent variations made in accordance with the claims of this application are still within the scope of this application.
Claims
1. A modular electrically heated stirring vessel with a rapid cleaning structure, comprising a frame and a heating vessel body, wherein the heating vessel body has a discharge port, characterized in that, It also includes a lifting module, a stirring module, a traversing module, and a cleaning module; the lifting module is mounted on the frame, the cleaning module is mounted on the lifting module, and the traversing module is used to move the heating vessel; the stirring module includes a dual-shaft motor, a reciprocating component, a driving bevel gear, a round rod, a driven bevel gear, a belt pulley drive, a cover, a rotating rod, and a stirring component; the reciprocating component is slidably connected to the lifting module, the cover is fixedly connected to the lifting module, the rotating rod is rotatably connected to the rod body, the stirring component is slidably connected to the rotating component, and the stirring component is also rotatably connected to the reciprocating component; the dual-shaft motor is mounted on the lifting module, and its two output ends are fixedly connected to the reciprocating component and the driving bevel gear, respectively; the round rod is rotatably connected to the lifting module, the driven bevel gear is fixedly connected to the round rod, and the belt pulley drive is connected to both the round rod and the rotating component.
2. The modular electrically heated stirring vessel with a rapid cleaning structure as described in claim 1, characterized in that, The transverse module includes a sleeve, a guide rod, a transverse motor, and a transverse screw. The sleeve is fixedly connected to the heating vessel body. The guide rod and the transverse screw are both mounted on the frame. The transverse motor is used to drive the transverse screw to rotate. The transverse screw is threadedly engaged with the sleeve.
3. The modular electrically heated stirring vessel with a rapid cleaning structure as described in claim 2, characterized in that, The cleaning module includes a cleaning motor and a cleaning component. The cleaning motor is mounted on the lifting assembly, and the output end of the cleaning motor is connected to the cleaning component.
4. The modular electrically heated stirring vessel with a rapid cleaning structure as described in claim 3, characterized in that, The lifting module includes two electric cylinders, two support rods, and a lifting plate. Both support rods are slidably connected to the frame, and the lifting plates are fixedly connected to the two support rods. The electric cylinders are used to drive the lifting plates to move.
5. The modular electrically heated stirring vessel with a rapid cleaning structure as described in claim 1, characterized in that, The reciprocating component includes a cam and a slider. The slider is slidably connected to the lifting module and also has a clearance fit with the stirring component. The cam is fixedly connected to the output end of the dual-axis motor away from the active bevel gear and contacts the slider.
6. The modular electrically heated stirring vessel with a rapid cleaning structure as described in claim 5, characterized in that, The sliding component includes a T-shaped rod and a connecting plate. The T-shaped rod is slidably connected to the lifting plate, and the connecting plate is connected to both the T-shaped rod and the stirring component.
7. The modular electrically heated stirring vessel with a rapid cleaning structure as described in claim 4, characterized in that, The cover assembly includes a support rod and a cover plate, wherein the support rod is fixedly connected to the lifting plate, and the cover plate is fixedly connected to the support rod.