Stirring machine
By tilting the mixing structure to support the mixing drum and the support structure, the problem of uneven mixing when mixing viscous materials is solved, and a multi-directional uniform mixing effect is achieved in three-dimensional space.
Patent Information
- Application Number
- CN202422668612.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2034-11-04
AI Technical Summary
Existing mixers have a small mixing range when mixing highly viscous materials, making it difficult to achieve uniform mixing.
By setting an inclined mixing drum and supporting structure, and using a contact rod and support plate to support the mixing drum, the mixing rod can be used to stir the material in an inclined state, and the material can be mixed in multiple directions in a three-dimensional space.
It enhances the mixing effect of viscous materials, avoids uneven mixing, and improves mixing efficiency.
Smart Images

Figure CN223628446U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to raw material stirring technical field especially, relates to a kind of stirrers. BACKGROUND
[0002] The stirrer is a kind of commonly used kitchen equipment or industrial equipment, and its main function is to mix two or more materials uniformly by rotating blades or paddles. Stirrers are widely used in food processing, chemical industry, pharmaceutical industry, construction and other fields. In the food industry, stirrers play a crucial role. They are widely used in food processing, mixing, stirring, emulsification, homogenization and other processes to ensure uniform mixing of food materials and final product quality.
[0003] Current stirrers mostly place the stirring cylinder on the ground and set a stirring rod at the top of the stirring cylinder to stir directly. However, this stirring method has a small actual stirring range of the stirring rod and a single movement trajectory of the material, mainly flowing in the horizontal stirring direction. For many food raw materials with high viscosity, this stirring method lacks vertical force and is difficult to achieve uniform stirring and mixing. SUMMARY
[0004] To solve the technical problems of the prior art, the utility model provides a stirrer.
[0005] To solve the above technical problems, the utility model provides the following technical solutions:
[0006] A stirrer comprises a stirring cylinder, a contact rod, and a support plate. The stirring cylinder includes a stirring rod, which is arranged at one end of the stirring cylinder. The stirring cylinder is placed on the contact rod at one side. The end of the stirring cylinder away from the stirring rod is placed on the support plate. The contact rod is inclined towards the support plate.
[0007] Further, the support plate comprises a side plate and a bottom plate. The side plate is connected to the bottom plate and perpendicular to the bottom plate.
[0008] Further, the support plate further comprises a base. A round rod is arranged on the base. The side plate is arranged on the round rod and can rotate relative to the round rod.
[0009] Further, the contact rod comprises a pneumatic cylinder, a guide cylinder, and a support rod. The guide cylinder is arranged on the pneumatic cylinder. The support rod is telescopically arranged at one end in the guide cylinder.
[0010] Further, the number of contact rods is two. The contact rods are oppositely arranged at one side of the stirring cylinder.
[0011] Further, the support rod comprises a contact ball, which is arranged at the side of the support rod away from the guide cylinder.
[0012] Further, the stirring cylinder further comprises a support structure, wherein the support structure comprises a fixed block, a support rod and a fixed ring; the fixed block is arranged on the side of the stirring cylinder away from the abutting rod; one end of the support rod is connected with the fixed block, and the other end is connected with the fixed ring.
[0013] Further, the stirring rod comprises a connecting rod and a stirring rod; the connecting rod is connected with the stirring rod; and the fixed ring is sleeved on the connecting rod.
[0014] The stirring cylinder can be placed on the abutting rod and the support plate in an inclined manner, so that the stirring rod in the stirring cylinder can stir the material in an inclined manner, which is beneficial to the mixing and exchange of the material with other materials in all directions in the three-dimensional space, and facilitates the stirring of some materials with high viscosity. BRIEF DESCRIPTION OF DRAWINGS
[0015] Fig. 1 The utility model discloses a structure schematic diagram.
[0016] Fig. 2 The utility model discloses a part structure schematic diagram.
[0017] Fig. 3 The utility model discloses a stirring cylinder part structure section view.
[0018] In the drawing: 1, stirring cylinder;11, stirring rod;111, connecting rod;112, stirring rod;12, support structure;121, fixed block;122, support rod;123, fixed ring;2, abutting rod;21, air cylinder;22, guide cylinder;23, support rod;231, abutting ball;3, support plate;31, side plate;32, bottom plate;33, base;331, round rod. DETAILED DESCRIPTION
[0019] The following is a specific embodiment of the utility model and is further described in combination with the drawings, but the utility model is not limited to these embodiments.
[0020] According to Figs. 1-3 The utility model provides a kind of stirrer, comprising: stirring cylinder 1, abutting rod 2, support plate 3.
[0021] Stirring cylinder 1 includes: stirring rod 11. Stirring rod 11 is arranged at one end of stirring cylinder 1. Stirring cylinder 1 is placed on abutting rod 2 on one side. Stirring cylinder 1 is placed on support plate 3 away from one end of stirring rod 11. Abutting rod 2 is inclined to support plate 3.
[0022] When the stirring barrel 1 is arranged, the bottom end is placed on the support plate 3, and the side is supported by the abutting rod 2; due to the inclination of the abutting rod 2 to the support plate 3, the stirring barrel 1 is also in an inclined state; the stirring rod 11 is arranged at one end of the stirring barrel 1, so that when the stirring rod 11 stirs, the plane on which it rotates is also an inclined plane; through the rotating mode, the material will rotate with the stirring rod, so that the material will also be driven to flow in an inclined direction; when reaching the highest point, the material will naturally fall down by gravity; through the arrangement of the inclined stirring rod, the movement track of the material is close to a spiral shape during the stirring process; such a movement track is beneficial to the continuous exchange and mixing of the material with other materials in all directions in the three-dimensional space, thereby enhancing the mixing effect; the utility model has remarkable effects when some food raw materials with high viscosity are stirred, and the uneven stirring and mixing situation is avoided.
[0023] The support plate 3 comprises a side plate 31 and a bottom plate 32. The side plate 31 is connected with the bottom plate 32. The side plate 31 is perpendicular to the bottom plate 32. The support plate 3 further comprises a base 33. The base 33 is provided with a round rod 331. The side plate 31 is arranged on the round rod 331. The side plate 31 can rotate relative to the round rod 331. The abutting rod 2 comprises a gas cylinder 21, a guide cylinder 22 and a support rod 23. The guide cylinder 22 is arranged on the gas cylinder 21. One end of the support rod 23 is telescopically arranged in the guide cylinder 22. The number of the abutting rod 2 is two. The abutting rods 2 are oppositely arranged on one side of the stirring barrel 1. The support rod 23 comprises an abutting ball 231. The abutting ball 231 is arranged on the side of the support rod 23 away from the guide cylinder 22.
[0024] The support plate 3 comprises a side plate 31 and a bottom plate 32, the side plate 31 is perpendicular to the bottom plate 32, so that the stirring drum 1 is placed on the support plate 3 and is in contact with the bottom plate 32 and the side plate 31 respectively, the contact rod 2 of the utility model has two and is oppositely arranged on one side of the stirring drum 1, that is, when the stirring drum 1 is placed on the support plate 3, the two contact rods 2 just contact the stirring drum 1 and are symmetrical relative to the stirring drum 1, so that when the stirring drum 1 is placed on the contact rod 2, it will be clamped between the two contact rods 2, avoiding the stirring drum 1 moving to the direction of the line connecting the two contact rods 2, at the same time, the contact rod 2 also serves as the support of the gravity of the stirring drum 1 to avoid it falling to the ground, and at the same time, the bottom plate 32 also supports the bottom end of the stirring drum 1 to avoid it sliding along the inclined plane in the inclined state. The contact rod 2 for supporting one side of the stirring drum 1 is also provided with a contact ball 231, so that when the contact rod 2 supports the stirring drum 1, the support point is avoided to be too sharp to damage the stirring drum 1. The support rod 23 of the contact rod 2 can also be telescopic in the guide cylinder 22 through the air cylinder 21 to change the height of the contact rod 2, and the side plate 31 and the bottom plate 32 of the support plate 3 can also rotate around the round rod 331 of the base 33, so that when the stirring drum 1 is placed on the support plate 3, the height of the contact rod 2 can be changed by rotating the bottom plate 32, thereby changing the inclination angle of the stirring drum 1, so that the angle can be adjusted according to the specific situation of the material, when adjusting the inclination angle of the stirring drum 1, the inclination angle (the angle relative to the vertical plane) should be greater than 45°, which is because the bottom surface of the stirring drum 1 is supported by the bottom plate 32, and the side plate 31 and the bottom plate 32 are perpendicular to the cylindrical bottom surface and side surface, so that the two surfaces of the stirring drum 1 are just fitted with the side plate 31 and the bottom plate 32 respectively, when the stirring drum 1 is about to slide, the bottom end will exert force on the bottom plate 32, the bottom plate 32 will drive the side plate 31 to rotate together, and the side plate will contact the stirring drum 1 on the side of the stirring drum 1, that is, if the stirring drum 1 falls off, it is because the force of the bottom plate 32 on the stirring drum 1 is small, and the force of the side plate 31 on the stirring drum 1 is large, so that the bottom plate 32 and the side plate 31 rotate together, causing the stirring drum 1 to rotate and fall off, at this time, the inclination angle of the stirring drum 1 is large, that is, the component force of the weight of the stirring drum 1 on the bottom plate 32 is large, and the component force on the side plate 31 is small, therefore, the inclination angle of the utility model should be large, so that the component force of the stirring drum 1 on the side plate 31 is large, and the support force of the bottom plate 32 on the stirring drum 1 is large, thereby supporting the stirring drum 1, at this time, although the support force of the side plate 31 on the stirring drum 1 is small, the contact rod 2 also supports together. On the other hand, the large inclination angle of the stirring drum 1 is helpful for the mixing of the material in the up-down direction, is conducive to the mixing of the material in the vertical direction, and also avoids the inclination angle being too large to prevent the material from having a large amplitude of movement in the vertical direction and a small amplitude of movement in other directions.
[0025] The stirring drum 1 further comprises a support structure 12. The support structure 12 comprises a fixing block 121, a support rod 122 and a fixing ring 123. The fixing block 121 is arranged on the side of the stirring drum 1 away from the abutting rod 2. The support rod 122 is connected to the fixing block 121 at one end and connected to the fixing ring 123 at the other end. The stirring rod 11 comprises a connecting rod 111 and a stirring rod 112. The connecting rod 111 is connected to the stirring rod 112. The fixing ring 123 is sleeved on the connecting rod 111.
[0026] When the stirring drum 1 is inclined, the stirring rod 11 will also be inclined, so that the stirring rod 11 will be affected by its own gravity when rotating, and the material being stirred will also generate a force on the connecting rod 111 in the same direction through the stirring rod 112, which is easy to cause the connecting rod 111 of the stirring rod 11 to bend. The utility model discloses a support structure 12 arranged on the stirring drum 1, a fixing ring 123 sleeved on the rotatable connecting rod 111, and a support rod 122 connected to the fixing ring 123 and the fixing block 121, so that when the connecting rod 111 rotates to drive the stirring rod 112 to rotate, the side end of the connecting rod 111 is supported, thereby avoiding the bending of the connecting rod 111 caused by its own gravity and the reaction force of the material. The state of the stirring rod 11 is more stable during stirring.
[0027] The working principle and use process of the utility model are as follows:
[0028] In use, the end of the stirring drum 1 away from the stirring rod 11 is arranged on the support plate 3, and the bottom end and the side surface of the stirring drum 1 are attached to the bottom plate 32 and the side plate 31 respectively. Then, according to the actual situation of the material, the side plate 31 and the bottom plate 32 are rotated to make the stirring drum 1 at a certain inclination angle, the cylinder 21 is started to make the support rod 23 extend and retract in the guide sleeve, the side of the support rod 23 provided with the abutting ball 231 approaches the stirring drum 1, and the abutting ball 231 contacts the stirring drum 1, then the stirring drum 1 is opened, the material to be stirred is introduced into the stirring drum 1, the stirring drum 1 is closed, and the stirring rod 11 is started to drive the connecting rod 111 to stir the stirring rod 112, so as to stir the material.
[0029] In conclusion, the utility model discloses an abutting rod and a support plate, which can place the stirring drum on the structures in an inclined manner, so that the stirring rod in the stirring drum stirs the material in an inclined manner, which is beneficial to the mixing and exchange of the material in the three-dimensional space in all directions and facilitates the stirring of some materials with high viscosity.
[0030] The specific embodiments described herein are merely illustrative of the spirit of the present application. Those skilled in the art of the present application can make various modifications or supplements to the described specific embodiments or replace them with similar ways, but will not deviate from the spirit of the present application or exceed the scope defined by the appended claims.
Claims
1. A blender characterized by: Include: The stirring barrel (1), the resistance rod (2), the support plate (3); The stirring barrel (1) comprises: stirring rod (11); The stirring rod (11) is arranged at one end of the stirring barrel (1); The stirring barrel (1) is placed on the resistance rod (2) on one side; The stirring barrel (1) is placed on the support plate (3) away from one end of the stirring rod (11); The resistance rod (2) is inclined to the support plate (3); The support plate (3) comprises: side plate (31), bottom plate (32); The side plate (31) is connected with the bottom plate (32); The side plate (31) is perpendicular to the bottom plate (32); The support plate (3) further comprises: base (33); The base (33) is provided with a round rod (331); The side plate (31) is arranged on the round rod (331); The side plate (31) can rotate relative to the round rod (331).
2. The blender of claim 1, wherein: The resistance rod (2) comprises: cylinder (21), guide cylinder (22), support rod (23); The guide cylinder (22) is arranged on the cylinder (21); The support rod (23) is arranged in the guide cylinder (22) at one end.
3. The blender of claim 2, wherein: The resistance rod (2) is two in number; The resistance rod (2) is arranged on one side of the stirring barrel (1) oppositely.
4. The blender of claim 3, wherein: The support rod (23) comprises: resistance ball (231); The resistance ball (231) is arranged on the side of the support rod (23) away from the guide cylinder (22).
5. The blender of claim 1, wherein: The stirring barrel (1) further comprises: support structure (12); The support structure (12) comprises: fixed block (121), support rod (122), fixed ring (123); The fixed block (121) is arranged on the side of the stirring barrel (1) away from the resistance rod (2); The support rod (122) is connected with the fixed block (121) at one end, and is connected with the fixed ring (123) on the other side.
6. The blender of claim 5, wherein: The stirring rod (11) comprises: connecting rod (111), stirring rod (112); The connecting rod (111) is connected with the stirring rod (112); The fixed ring (123) is sleeved on the connecting rod (111).