Container with stirring and mixing functions
By designing a polygonal combination structure of a spiral guide rod and a vertical cylindrical column, the problem of imperfections in existing container stirring structures was solved, achieving a more efficient stirring effect and structural strength, while reducing friction and mold costs.
Patent Information
- Application Number
- CN202520378796.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-03-06
AI Technical Summary
The existing container's stirring structure has some shortcomings in use and needs further improvement to enhance its practicality.
A combined structure of a spiral guide rod and a vertical cylinder column with a spiral polygonal profile was designed. By combining the guide section and the guide section, the lifting and turning movements of the spiral rod are synchronized. The polygonal profile and the inner convex arc wall design reduce friction, increase structural strength and guide torque, and achieve stable positioning through limiting ribs and guide grooves.
It improves the mixing efficiency and structural strength of the container, reduces friction, achieves smoother mixing, and reduces mold costs.
Smart Images

Figure CN223865346U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a container, and more particularly to an innovative container structure with a mixing device. Background Technology
[0002] Many consumers often need to mix different liquids or mix powders with water when using containers.
[0003] Although some companies in the industry have developed containers with built-in stirring functions, their stirring structures still have shortcomings in use, and further improvements are necessary.
[0004] Therefore, in view of the problems existing in the above-mentioned conventional container structures, how to develop a more ideal and practical innovative structure is what users expect, and it is also the goal and direction that relevant companies must strive to achieve in their research and development. Utility Model Content
[0005] The main objective of this utility model is to provide a container with a stirring and mixing function. The technical problem it aims to solve is to innovate and break through by developing a new type of container structure that is more ideal and practical.
[0006] Based on the aforementioned objectives, the purpose of this utility model is achieved as follows.
[0007] A container with a stirring and mixing function includes: a tank for containing liquid, the tank having an opening; a cover, assembled to the opening of the tank in an openable state, the cover integrally forming a downwardly extending vertical cylindrical column, the vertical cylindrical column being a vertically hollow tube defining a guide section and a guide section arranged vertically, wherein the guide section has a polygonal profile in cross-section, and the polygonal profile has a spiral extension and turning shape along the vertical direction; a mixing component including a spiral guide rod, a control handle, and a mixing disc, wherein the spiral guide rod includes an upper end, a lower end, and a spiral shaft between the upper and lower ends, the spiral shaft extending through the guide section of the vertical cylindrical column, and the spiral shaft has a polygonal wheel cross-section. The spiral shape, with its polygonal profile, extends vertically in a spiral-like, turning pattern. This allows the spiral rod to rotate synchronously as it moves up and down in the guide section. The control handle is located above the vertical cylindrical column of the cover. The bottom of the control handle forms an insertion seat that can be embedded in the guide section of the vertical cylindrical column. The insertion seat has a pivoting connection recess so that the upper end of the spiral guide rod forms a corresponding pivot end. By assembling the pivot end with the pivoting connection recess, the spiral guide rod can rotate freely relative to the control handle. The stirring disc is detachably attached to the lower end of the spiral guide rod. The stirring disc has multiple stirring components and can rotate and move up and down synchronously with the spiral guide rod.
[0008] The outstanding and beneficial technical effects of this utility model compared to the prior art are:
[0009] The main advantage lies in the polygonal cross-sectional arrangement of the helical rod and the guide section of the vertical cylinder, which achieves superior structural strength and helical guidance, thereby enhancing the practical improvement of container product quality and efficiency. Furthermore, the bottom insert of the control handle can be embedded in the guide section of the vertical cylinder during descent to achieve stable guidance.
[0010] Another objective of this invention is to achieve a more efficient and smoother operation by using a polygonal profile in the vertical cylindrical guide section with several convex arc walls and a polygonal profile in the spiral guide rod with several convex arc sides. This design allows the intersecting points of the convex arc sides of the spiral rod to form acute angles of less than 90 degrees. This configuration provides a rib-like sliding effect during rotation, resulting in a better guiding torque. In addition to improving structural strength, it also reduces the sliding friction between the spiral rod and the vertical cylindrical guide section, making the operation smoother and more unobstructed.
[0011] Another objective of this utility model is to achieve the advantages and practical advancements of further positioning the control handle direction by forming a plurality of limiting ribs in the guide section of the vertical cylinder and forming a plurality of guide grooves in the insertion seat to engage with the limiting ribs. Attached Figure Description
[0012] Figure 1 This is a perspective view of a preferred embodiment of the container of this utility model.
[0013] Figure 2 This is an exploded perspective view of a preferred embodiment of the container of this utility model.
[0014] Figure 3 This is a three-dimensional sectional view of the cover body of a preferred embodiment of the present invention.
[0015] Figure 4 This is a perspective view of the cover of a preferred embodiment of the present invention, taken from an elevation angle.
[0016] Figure 5 This is a combined cross-sectional view of a preferred embodiment of the container of this utility model.
[0017] Figure 6 for Figure 5 Section 6-6.
[0018] Figure 7 for Figure 5 Section 7-7.
[0019] Figure 8 for Figure 5Section 8-8.
[0020] Figure 9 This is a schematic diagram of the mixing and stirring component in operation according to a preferred embodiment of the present invention.
[0021] Figure 10 This is a diagram of another preferred embodiment of the spiral rod body of this utility model. Detailed Implementation
[0022] Please see Figures 1 to 8 The diagram shows a preferred embodiment of the container with stirring and mixing function of this utility model. However, these embodiments are for illustrative purposes only and are not limited to this structure in patent applications.
[0023] The container comprises: a tank 10 for containing a liquid, the tank 10 having an opening 11; a cover 20, assembled in an openable state to the opening 11 of the tank 10, the cover 20 integrally forming a downwardly extending vertical cylindrical column 30, the vertical cylindrical column 30 being a vertically hollow tube defining a guide section 31 and a guide section 32 arranged vertically, wherein the cross-section of the guide section 32 is a polygonal profile (in this example, a quadrilateral, but it could also be a triangle or pentagon, etc.), and the polygonal profile has a spiral extension and turning shape along the vertical direction; a mixing and stirring component 40, including a spiral guide rod 41, a control handle 42, and a stirring plate 43, wherein the spiral guide rod 41 includes an upper end 411, a lower end 412, and a spiral shaft 413 between the upper end 411 and the lower end 412, the spiral shaft 413 extending through the guide section 31 of the vertical cylindrical column 30. 2. The cross-section of the helical rod 413 has a polygonal profile, and the polygonal profile has a spiral extension and turning shape along the vertical direction. When the helical rod 413 moves up and down in the guide section, it will be guided and simultaneously generate a turning movement. The control handle 42 is located above the vertical cylinder 30 of the cover 20. The bottom end of the control handle 42 forms an insertion seat 44, which can be embedded in the guide section 31 of the vertical cylinder 30. The insertion seat 44 has a pivot assembly. The upper end 411 of the spiral guide rod 41 is connected to the recess 45 so that a pivot end 414 is formed correspondingly. The pivot end 414 is assembled with the pivot assembly recess 45 so that the spiral guide rod 41 can rotate freely relative to the control handle 42 when it is driven up and down. The stirring plate 43 is detachably assembled with the lower end of the spiral guide rod 41. The stirring plate 43 has a plurality of stirring components 435 and the stirring plate 43 rotates and rises and falls synchronously with the spiral guide rod 41.
[0024] like Figure 5As shown, in this example, the polygonal profile of the guide section 32 of the vertical cylindrical column 30 is formed with several inwardly convex arc walls 325, and the polygonal profile of the helical rod body 413 of the helical guide rod 41 is formed with several inwardly convex arc sides 415. The intersection of each inwardly convex arc side 415 of the helical rod body 413 will form an acute angle 417 of less than 90 degrees. This shape will have a rib-like sliding effect when guiding rotation, thereby obtaining a better guiding torque. In addition to the effect of improving structural strength, it can also reduce the sliding friction between the helical rod body 413 and the guide section 32 of the vertical cylindrical column 30, making the operation smoother and more unobstructed.
[0025] like Figure 3 As shown, in this example, the guide section 31 of the vertical cylinder 30 is further formed with a plurality of limiting ribs 315, and the insertion seat 44 is correspondingly formed with a plurality of guide grooves 445 to engage with the limiting ribs 315 to position the direction of the control handle 42.
[0026] like Figure 1 and Figure 2 As shown, in this example, the control handle 42 of the mixing and stirring component 40 is configured to have a transverse flange 425 (similar to a T-shape in this example), and a handle 50 with a downward curving shape is formed on one side of the cover 20. When the insertion seat 44 of the control handle 42 is embedded in the guide section 31 of the vertical cylinder 30, and the guide groove 445 is engaged with the limiting rib 315, the transverse flange 425 of the control handle 42 is aligned with the handle 50.
[0027] like Figure 1 and Figure 2 As shown, in this example, a liquid outlet 60 is formed at one point of the cover 20. The liquid outlet 60 is provided with a movable cover 61, and the movable cover 61 is positioned below the transverse flange 425 of the control handle 42, so that the transverse flange 425 can block the movable cover 61 (preventing the movable cover 61 from being opened accidentally).
[0028] Based on the above-described structural composition and technical features, the container with stirring and mixing function disclosed in this utility model is used as follows: Figure 9As shown, when the user moves the auger 413 up and down in the guide section 32 of the vertical cylinder 30 by holding the control handle 42 (as shown by arrow L1), the auger 413 will be guided to rotate and generate a directional movement (as shown by arrow L2). The insertion seat 44 has a pivoting connection recess 45, so that the upper end 411 of the auger 41 pivoting end 414 is assembled with the pivoting connection recess 45, so that the auger 41 has a freely rotatable operation relative to the control handle 42 when it is driven up and down. That is to say, the user only needs to move the control handle 42 up and down in a fixed direction, and the auger 41 will generate a directional movement. The stirring plate 43 is detachably assembled at the lower end of the auger 41, and the stirring plate 43 rotates and moves up and down synchronously with the auger 41. During this operation, the liquid (such as milk, milk tea, coffee) contained in the container 10 can be stirred. This invention primarily achieves a superior spiral guiding effect by combining the polygonal cross-sectional profiles of the helical rod body 413 and the guiding section 32 of the vertical cylinder 30, thereby improving the quality and efficiency of container products. Furthermore, the bottom insertion seat 44 of the control handle 42 can be embedded in the guiding section 31 of the vertical cylinder 30 during descent, thus providing a stable guiding effect.
[0029] like Figure 10 As shown, this is another embodiment of the present invention. In this example, the polygonal contour of the spiral rod 413 has several demolding facets 416 on its outer side. The advantage of this embodiment is that by utilizing the demolding shape characteristics of the demolding facets 416, the forming mold of the spiral guide rod 41 does not need to use a slider to achieve demolding, thereby further reducing mold costs.
Claims
1. A container with a stirring and mixing function, characterized in that... include: A container for holding a liquid, the container having an opening; A cover body is assembled into the opening of the tank body in an openable state. The cover body is integrally formed with a vertically extending cylindrical column, and the vertical cylindrical column is in the shape of a vertically hollow tube, defining a guide section and a guide section arranged vertically. The cross-section of the guide section is in the shape of a polygonal outline, and the polygonal outline has a spiral extension and turning shape along the vertical direction. A mixing component includes a spiral guide rod, a control handle, and a mixing disc. The spiral guide rod includes an upper end, a lower end, and a spiral shaft between the upper and lower ends. The spiral shaft extends through the guide section of a vertical cylindrical column. The cross-section of the spiral shaft has a polygonal profile, and the polygonal profile has a spiral extension and turning shape along the vertical direction. This ensures that when the spiral shaft moves up and down in the guide section, it will be guided and simultaneously generate a turning motion. The control handle is located above the vertical cylindrical column of the cover. The bottom end of the control handle forms an insertion seat that can be embedded in the guide section of the vertical cylindrical column. The insertion seat has a pivoting connection recess so that the upper end of the spiral guide rod forms a corresponding pivoting end. By using the pivoting end to assemble with the pivoting connection recess, the spiral guide rod can rotate freely relative to the control handle when it is driven up and down. The mixing disc is detachably assembled to the lower end of the spiral guide rod. The mixing disc forms a plurality of mixing components, and the mixing disc rotates and moves up and down synchronously with the spiral guide rod.
2. The container with stirring and mixing function according to claim 1, characterized in that... The polygonal profile of the guide section of the vertical cylindrical column forms several inwardly convex arc walls, while the polygonal profile of the spiral guide rod forms several inwardly convex arc sides. The intersection of the inwardly convex arc sides of the spiral rod will form an acute angle of less than 90 degrees.
3. The container with stirring and mixing function according to claim 1, characterized in that... The guide section of the vertical cylinder is further formed with multiple limiting ribs, and the insertion seat is formed with multiple guide grooves to engage with the limiting ribs in order to position the direction of the control handle.
4. The container with stirring and mixing function according to claim 3, characterized in that... The control handle of the mixing component is designed with a transverse flange, and a handle with a downward curving shape is formed on one side of the cover. When the insertion seat of the control handle is embedded in the guide section of the vertical cylinder, and the guide groove and the limiting rib are engaged, the transverse flange of the control handle is aligned with the handle.
5. The container with stirring and mixing function according to claim 4, characterized in that... A liquid outlet is formed at one point on the cover, and the liquid outlet assembly is equipped with a movable cover, which is positioned below the transverse flange of the control handle, thereby enabling the transverse flange to block the movable cover.
6. The container with stirring and mixing function according to claim 1, characterized in that... The polygonal profile of the spiral shaft has several demolding facets on the outer side.