Wall breaking machine with novel stirring mode

By using a blender with a dual-blade coaxial reverse design, the problems of high noise and low grinding efficiency have been solved, enabling faster and finer grinding of soy milk and other beverages.

CN223640594UActive Publication Date: 2025-12-09山东泽飞电器有限公司
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Patent Information

Application Number
CN202422285731.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-12-09
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

The blades of existing high-speed blenders rotate in the same direction, which causes the water flow vortex to generate a lot of noise and requires high speed, making it difficult to achieve fine particle size grinding.

Method used

It adopts a dual-blade coaxial reverse design to achieve a turbulence effect, reduce noise and improve grinding efficiency.

Benefits of technology

It effectively reduces the noise generated by water bubbles and achieves a faster and finer grinding effect for soy milk and other beverages.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wall breaking machines, in particular to a wall breaking machine with a novel stirring mode, which can realize a turbulent flow effect through coaxial reverse rotation of double blades, can effectively reduce the noise effect generated by water flow bubbles, can fully grind the particle size of soybean milk beverages through the reverse rotation of the double blades, and realizes a quicker and finer effect. Comprising a wall breaking machine base, the wall breaking machine further comprises a wall breaking machine cup body, a heating disc assembly and a sealing mechanism, the wall breaking machine cup body is installed on the wall breaking machine base and used for storing raw materials, the heating disc assembly is installed on the wall breaking machine base and drives the sealing mechanism to rotate, and the sealing mechanism is installed on the heating disc assembly and used for breaking and grinding the raw materials.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of wall breaking machine, in particular to a new stirring mode's wall breaking machine. BACKGROUND

[0002] Wall breaking machine is a kind of small household appliance that is common in our daily life, it has the functions of juicer, soybean milk maker, food processor, grinder and other products, and can achieve one machine with multiple functions.

[0003] The existing wall breaking machine, for example, the utility model patent of a wall breaking machine in the application No.202221433571.0, its main structure includes wall breaking machine base, the upper portion of wall breaking machine base is installed with wall breaking machine bottle body, the outer side of wall breaking machine bottle body is provided with isolation device, the lower portion of wall breaking machine base is installed with cleaning device;When using, various raw materials are put into wall breaking machine bottle body, then the button switch on wall breaking machine base is operated to break the wall of raw materials, when it is needed to isolate wall breaking machine base and the button switch thereon, the buckle in isolation device is operated, so that the isolation frame is separated from the fixed box, under the action of extension spring, moving block and isolation frame descend along guide rod, so as to cover wall breaking machine base and the button switch thereon, and then wall breaking machine base and the button switch thereon are isolated, and the supporting plate plays the role of supporting.

[0004] However, all blades of the existing wall breaking machine rotate in the same direction, liquid rotates in one direction, vortex is generated, and relatively large noise is generated, and high speed is needed to achieve a certain particle size. UTILITY MODEL CONTENTS

[0005] To solve the above technical problems, the utility model provides a new stirring mode's wall breaking machine through coaxial counter-rotation of double blades, which can realize the effect of disturbing flow, effectively reduce the noise effect of water flow bubbles, and through counter-rotation of double blades, can fully grind the particle size of soybean milk drinks, realize faster and more delicate effect.

[0006] The utility model relates to a new stirring mode's wall breaking machine, which comprises a wall breaking machine base;Further comprising a wall breaking machine cup body, a heating disc assembly and a sealing mechanism, the wall breaking machine cup body is installed on the wall breaking machine base and stores raw materials, the heating disc assembly is installed on the wall breaking machine base and drives the sealing mechanism to rotate, and the sealing mechanism is installed on the heating disc assembly and grinds the raw materials;The staff places the wall breaking machine base on the desktop, adds raw materials into the wall breaking machine cup body, starts the heating disc assembly after power on, and the heating disc assembly drives the sealing mechanism to rotate and grind the raw materials.

[0007] Preferably, the base of the wall breaking machine comprises a cup base, a coupler, a cup shell, a heating disc sealing ring, a heating disc support and a cup sealing ring, the cup base is placed on the desktop, the coupler is installed on the cup base, the cup shell is installed on the cup base, the heating disc sealing ring is installed in the cup shell, the heating disc support is installed in the cup shell, and the bottom end of the cup sealing ring is connected with the top end of the heating disc support; the cup base and the cup shell are provided to support the cup of the wall breaking machine, so that the stability of the device during use is maintained, the coupler is in communication with the power supply, the coupler transmits electrical signals to the heating disc assembly, the heating disc support is provided to support the heating disc assembly, and the heating disc sealing ring is provided to enhance the sealing effect of the device and prevent liquid from overflowing.

[0008] Preferably, the cup of the wall breaking machine comprises a glass cup, a micro-motion connecting rod, a micro-motion spring, a handle and a cup cover, the bottom end of the glass cup is connected with the top end of the cup shell, the inside of the glass cup is provided with an inner cavity, the top end of the glass cup is provided with a feeding port, the micro-motion connecting rod is installed on the glass cup, the micro-motion spring is installed on the micro-motion connecting rod, the handle is installed on the micro-motion connecting rod, and the cup cover is installed at the top feeding port of the glass cup; the handle is provided to facilitate the staff to take the device, the staff places the device on the desktop, then feeds the raw materials into the inner cavity of the glass cup, and then closes the cup cover to prevent liquid from splashing during the wall breaking process.

[0009] Preferably, the heating disc assembly comprises a connecting head, a first metal gasket, a gear support, three sets of transmission gears, a first snap spring, a gear driving shaft, a shaft sealing ring and a gear driven shaft, the connecting head is installed on the cup base, the first metal gasket is installed on the connecting head, the gear support is installed on the connecting head, the three sets of transmission gears are sleeved on the gear support, the first snap spring is installed on the gear support, the gear driving shaft is inserted into the gear support and the connecting head, the shaft sealing ring is installed on the gear driving shaft, and the gear driven shaft is sleeved on the gear driving shaft and is in meshing transmission with the transmission gears, the gear driving shaft has 10 teeth, the transmission gears have 19 teeth, and the gear driven shaft has 50 teeth; the gear driving shaft and the gear driven shaft are sealed and waterproofed by the shaft sealing ring, the transmission gears can only rotate around the support shaft under the fixation of the gear support, the main machine motor rotates clockwise, the connecting head provides power to the gear driving shaft, the gear driving shaft rotates clockwise, and the gear driving shaft drives the gear driven shaft to rotate counterclockwise through the three sets of transmission gears.

[0010] Preferably, the sealing mechanism includes a second snap ring, two sets of third snap rings, two sets of bearings, two sets of second metal gaskets, a shaft seal, a heating plate, a lower blade, and an upper blade. The second snap ring is mounted on the gear driven shaft, both sets of third snap rings are fitted onto the gear driven shaft, both sets of bearings are fitted onto the gear driven shaft, both sets of second metal gaskets are fitted onto the gear driven shaft, the shaft seal is mounted on the gear driven shaft, the heating plate is mounted on the shaft seal, the lower blade is riveted to the gear driven shaft, and the upper blade is riveted to the gear drive shaft. The gear drive shaft is fixed to the heating plate by the two sets of third snap rings, the two sets of bearings, and the two sets of second metal gaskets, and is sealed and waterproof by the shaft seal. The gear drive shaft and the gear driven shaft are sealed and waterproof by a shaft sealing ring. The gear drive shaft drives the upper blade to rotate clockwise, and the gear driven shaft drives the lower blade to rotate counterclockwise.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows: the staff places the base of the blender on the table, adds the raw materials into the blender cup, and after powering on, starts the heating plate assembly. The heating plate assembly drives the sealing mechanism to rotate and crush and grind the raw materials. Attached Figure Description

[0012] Figure 1 This is a cross-sectional axonometric structural schematic diagram of this utility model;

[0013] Figure 2 This is an exploded structural diagram of the blender base and blender cup of this utility model;

[0014] Figure 3 This is an exploded structural diagram of the heating plate assembly and sealing mechanism of this utility model;

[0015] Figure 4 This is a partially enlarged isometric structural diagram of the heating plate assembly and sealing mechanism of this utility model;

[0016] Figure 5 This is a top cross-sectional view of the heating plate assembly of this utility model.

[0017] Figure 6 This is a partially enlarged cross-sectional isometric structural diagram of the heating plate assembly and sealing mechanism of this utility model.

[0018] The attached diagram is labeled as follows: 01, blender base; 11, cup base; 12, coupler; 13, cup shell; 14, heating plate sealing ring; 15, heating plate bracket; 16, cup sealing ring; 02, blender cup; 21, glass cup; 22, micro-motion linkage; 23, micro-motion spring; 24, handle; 25, cup lid; 03, heating plate assembly; 31, connector; 32, first hardware gasket; 33, gear bracket; 34, transmission gear; 35, first snap ring; 36, gear drive shaft; 37, shaft sealing ring; 38, gear driven shaft; 04, sealing mechanism; 41, second snap ring; 42, third snap ring; 43, bearing; 44, second hardware gasket; 45, shaft seal; 46, heating plate; 47, lower blade; 48, upper blade. Detailed Implementation

[0019] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.

[0020] Example 1

[0021] This utility model discloses a novel blender with a new mixing method, comprising a blender base 01; it also includes a blender cup body 02, a heating plate assembly 03, and a sealing mechanism 04. The blender cup body 02 is mounted on the blender base 01 and stores the raw materials. The heating plate assembly 03 is mounted on the blender base 01 and drives the sealing mechanism 04 to rotate. The sealing mechanism 04 is mounted on the heating plate assembly 03 and crushes and grinds the raw materials. The blender base 01 includes a cup body base 11, a coupler 12, a cup body shell 13, a heating plate sealing ring 14, and a heating plate support 1. The blender cup body 02 includes a glass cup 21, a micro-motion linkage 22, a micro-motion spring 23, a handle 24, and a lid 25. The bottom end of the glass cup 21 is connected to the top end of the lid 13. The blender cup body 02 includes a glass cup 21, a micro-motion linkage 22, a micro-motion spring 23, a handle 24, and a lid 25. The bottom end of the glass cup 21 is connected to the top end of the lid 13. The internal cavity is provided, and the top of the glass cup 21 has a feeding port. A micro-motion linkage 22 is installed on the glass cup 21, a micro-motion spring 23 is installed on the micro-motion linkage 22, a handle 24 is installed on the micro-motion linkage 22, and a cup lid 25 is installed at the feeding port at the top of the glass cup 21. The heating plate assembly 03 includes a connector 31, a first hardware gasket 32, a gear bracket 33, three sets of transmission gears 34, a first retaining ring 35, a gear drive shaft 36, a shaft seal 37, and a gear driven shaft 38. The connector 31 is installed on the cup body base 11, and the first five... A gold gasket 32 ​​is installed on the connector 31, a gear bracket 33 is installed on the connector 31, three sets of transmission gears 34 are all fitted on the gear bracket 33, a first snap ring 35 is installed on the gear bracket 33, a gear drive shaft 36 is inserted into the gear bracket 33 and the connector 31, a shaft seal ring 37 is installed on the gear drive shaft 36, a gear driven shaft 38 is fitted on the gear drive shaft 36 and meshes with the transmission gears 34 for transmission, and the gear drive shaft 36 has 10 teeth, the transmission gear 34 has 19 teeth, and the gear driven shaft 38 has 50 teeth;During operation, the device is first assisted by a handle 24 for easy handling. After placing the device on a table, the operator pours the raw materials into the inner cavity of the glass 21, then closes the lid 25 to prevent liquid splashing during blending. The base 11 and outer shell 13 provide support for the blender's glass 02, ensuring stability during use. The coupler 12 is connected to a power source and transmits electrical signals to the heating plate assembly 03. The heating plate bracket 15 supports the heating plate assembly 03. The heating plate sealing ring 14 enhances the sealing effect of the device, preventing liquid leakage. The gear drive shaft 36 and the gear driven shaft 38 are sealed and waterproofed by the shaft sealing ring 37. The transmission gear 34 can only rotate around the support shaft under the fixing effect of the gear bracket 33. The main motor rotates clockwise, providing power to the gear drive shaft 36 through the connector 31. The gear drive shaft 36 rotates clockwise, and the gear drive shaft 36 drives the gear driven shaft 38 to rotate counterclockwise through the three sets of transmission gears 34. The gear drive shaft 36 and the gear driven shaft 38 drive the sealing mechanism 04 to rotate.

[0022] Example 2

[0023] like Figures 1 to 6As shown, this utility model discloses a new type of blender with a novel stirring method, based on embodiment 1. The sealing mechanism 04 includes a second retaining spring 41, two sets of third retaining springs 42, two sets of bearings 43, two sets of second metal gaskets 44, a shaft seal 45, a heating plate 46, a lower blade 47, and an upper blade 48. The second retaining spring 41 is mounted on the gear-driven shaft 38, both sets of third retaining springs 42 are fitted onto the gear-driven shaft 38, both sets of bearings 43 are fitted onto the gear-driven shaft 38, and both sets of second metal gaskets 44 are fitted onto the gear-driven shaft 38. The seal 45 is mounted on the gear driven shaft 38, the heating plate 46 is mounted on the seal 45, the lower blade 47 is riveted to the gear driven shaft 38, and the upper blade 48 is riveted to the gear drive shaft 36. During operation, the handle 24 facilitates easy handling by the operator. After placing the device on the table, the operator pours the raw materials into the inner cavity of the glass 21, then closes the lid 25 to prevent liquid splashing during blending. The base 11 and outer shell 13 provide convenient support for the blender's glass 02. To ensure stability during device operation, coupler 12 is connected to the power supply and transmits electrical signals to the heating plate assembly 03. The heating plate assembly 03 is supported by a heating plate bracket 15, and a heating plate sealing ring 14 enhances the sealing effect to prevent liquid leakage. The gear drive shaft 36 and the gear driven shaft 38 are sealed and waterproofed by a shaft sealing ring 37. The transmission gear 34, fixed by the gear bracket 33, can only rotate around the bracket shaft. The main motor rotates clockwise, supplying power to the gear drive shaft 36 through the connector 31. Power is provided, and the gear drive shaft 36 rotates clockwise. The gear drive shaft 36 drives the gear driven shaft 38 to rotate counterclockwise through three sets of transmission gears 34. The gear drive shaft 36 is fixed to the heating plate 46 by two sets of third snap rings 42, two sets of bearings 43 and two sets of second hardware gaskets 44. At the same time, the shaft seal 45 achieves waterproof sealing. The gear drive shaft 36 and the gear driven shaft 38 achieve waterproof sealing through the shaft seal ring 37. The gear drive shaft 36 drives the upper blade 48 to rotate clockwise, and the gear driven shaft 38 drives the lower blade 47 to rotate counterclockwise.

[0024] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A new type of blender with a novel blending method, comprising a blender base (01); characterized in that, It also includes a blender cup body (02), a heating plate assembly (03), and a sealing mechanism (04). The blender cup body (02) is installed on the blender base (01) and stores the raw materials. The heating plate assembly (03) is installed on the blender base (01) and drives the sealing mechanism (04) to rotate. The sealing mechanism (04) is installed on the heating plate assembly (03) and crushes and grinds the raw materials. The blender base (01) includes a cup base (11), a coupler (12), a cup shell (13), a heating plate sealing ring (14), a heating plate bracket (15), and a cup sealing ring (16). The cup base (11) is placed on the table, the coupler (12) is installed on the cup base (11), the cup shell (13) is installed on the cup base (11), the heating plate sealing ring (14) is installed inside the cup shell (13), the heating plate bracket (15) is installed inside the cup shell (13), and the bottom end of the cup sealing ring (16) is connected to the top end of the heating plate bracket (15). The heating plate assembly (03) includes a connector (31), a first hardware gasket (32), a gear bracket (33), three sets of transmission gears (34), a first snap ring (35), a gear drive shaft (36), a shaft seal ring (37), and a gear driven shaft (38). The connector (31) is mounted on the cup base (11), the first hardware gasket (32) is mounted on the connector (31), the gear bracket (33) is mounted on the connector (31), and the three sets of transmission gears (34) are all fitted onto the gear... On the wheel bracket (33), the first snap ring (35) is installed on the gear bracket (33), the gear drive shaft (36) is inserted into the gear bracket (33) and the connector (31), the shaft seal ring (37) is installed on the gear drive shaft (36), the gear driven shaft (38) is fitted on the gear drive shaft (36) and meshes with the transmission gear (34) for transmission, and the gear drive shaft (36) has 10 teeth, the transmission gear (34) has 19 teeth, and the gear driven shaft (38) has 50 teeth; The sealing mechanism (04) includes a second snap ring (41), two sets of third snap rings (42), two sets of bearings (43), two sets of second hardware gaskets (44), a shaft seal (45), a heating plate (46), a lower blade (47), and an upper blade (48). The second snap ring (41) is mounted on the gear driven shaft (38), the two sets of third snap rings (42) are all fitted on the gear driven shaft (38), the two sets of bearings (43) are all fitted on the gear driven shaft (38), the two sets of second hardware gaskets (44) are all fitted on the gear driven shaft (38), the shaft seal (45) is mounted on the gear driven shaft (38), the heating plate (46) is mounted on the shaft seal (45), the lower blade (47) is riveted to the gear driven shaft (38), and the upper blade (48) is riveted to the gear drive shaft (36).

2. The blender with a novel stirring method as described in claim 1, characterized in that, The blender cup body (02) includes a glass cup (21), a micro-motion linkage (22), a micro-motion spring (23), a handle (24), and a cup lid (25). The bottom of the glass cup (21) is connected to the top of the outer shell (13) of the cup body. The glass cup (21) has an inner cavity. The top of the glass cup (21) has a feed inlet. The micro-motion linkage (22) is installed on the glass cup (21). The micro-motion spring (23) is installed on the micro-motion linkage (22). The handle (24) is installed on the micro-motion linkage (22). The cup lid (25) is installed at the feed inlet at the top of the glass cup (21).

Citation Information

Patent Citations

  • Wall breaking machine

    CN217796624U