Stirring mechanism and wall breaking machine
By designing a combination of stirring blades, stirring hammers, sieves, and grinding structures in the blender, the problem of existing blenders being unable to process liquid and dry powder foods simultaneously has been solved. This enables efficient processing of multiple ingredients in the same device, enhancing functionality and user experience.
Patent Information
- Application Number
- CN202520129743.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing blenders struggle to efficiently process both liquid and dry powder foods simultaneously, particularly in the grinding function.
A mixing mechanism was designed, including a mixing blade, a mixing hammer, a sieve, and a grinding structure. The mixing blade performs initial cutting, the sieve filters the mixture, and the mixing hammer and grinding structure then perform fine grinding to achieve the juicing function. When making dry powder foods, the sieve is removed, and the mixing hammer and grinding structure directly perform grinding to achieve the powdering function.
It enables efficient processing of both liquid and dry powder foods in the same device, combining juicing and grinding functions, thus improving the user experience and versatility.
Smart Images

Figure CN223715615U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a wall breaking machine technical field, especially a kind of stirring mechanism and wall breaking machine. BACKGROUND
[0002] With the improvement of people's living standards, the concern for their own health is constantly improving, and more and more attention is paid to the absorption of food nutrition. Traditional food processing methods may not be able to completely release the nutrients in food. The wall breaking machine can break the cell wall of food materials, promote the release of nutrients such as vitamins, minerals and dietary fiber in cells, and be more easily absorbed by the human body.
[0003] The existing wall breaking machine can usually only be used to make fluid food, and its principle is to drive the blade to rotate at high speed by the motor to cut and crush the food materials placed in the cup body, such as fresh fruit and vegetable juice, grain paste, nut paste, etc. However, when processing soybean coffee and other foods that need to be ground into dry powder, the food is not easy to grind due to the interference of the screen. If the blade is used to cut the food, the volume of soybean coffee and other foods is small, and the shell is tough, which is not easy to cut and can easily damage the blade. Therefore, it is difficult for the existing wall breaking machine to realize the powder grinding function, and it is very inconvenient to make. SUMMARY
[0004] In view of the deficiencies in the prior art, the utility model provides a stirring mechanism and a wall breaking machine, which can make both fluid food and dry powder food.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A stirring mechanism includes a housing, a shaft, a stirring knife, a stirring hammer, a screen and a grinding structure. The shaft is rotatably connected to the housing. The stirring knife and the stirring hammer are connected to the shaft in sequence along the axial direction of the shaft. The screen is detachably connected to the housing. The screen is arranged in the housing. The stirring knife is located on one side of the screen, and the stirring hammer is located on the other side of the screen. The grinding structure is arranged in the housing. The grinding structure surrounds the stirring hammer, and a gap is formed between the stirring hammer and the grinding structure.
[0007] As one of the embodiments, the outer periphery of the screen is close to the housing. The screen has a central hole for the shaft to pass through. An inlet channel is formed between the central hole and the shaft.
[0008] As one of the embodiments, the screen is provided with a sieve hole. The sieve hole is located at the outer periphery of the screen, and the inlet channel is located at the middle of the screen.
[0009] As one of the embodiments, the screen is inclined towards the direction close to the stirring hammer from the direction of the outer periphery of the screen to the center hole.
[0010] As one of the embodiments, the stirring hammer comprises a hammer head part and a connecting part connected with each other, the hammer head part and the grinding structure are arranged at intervals, the connecting part is connected with the rotating shaft, and the connecting part is rotationally connected with the rotating shaft along the circumferential direction of the shell.
[0011] As one of the embodiments, the grinding structure comprises a plurality of grinding teeth, and the inner side of the shell is provided with a plurality of grinding teeth along the circumferential direction of the shell.
[0012] As one of the embodiments, the grinding structure comprises a grinding disc and grinding teeth, the grinding disc is sleeved on the outer periphery of the stirring hammer, the side of the grinding disc towards the stirring hammer is provided with a plurality of grinding teeth, and the bottom of the grinding disc is matched with the bottom of the inner cavity of the shell along the circumferential direction of the grinding disc.
[0013] As one of the embodiments, the screen is lapped on the grinding disc.
[0014] As one of the embodiments, the screen is provided with a first inclined surface part towards the side of the grinding disc, the grinding disc is provided with a second inclined surface part towards the side of the screen, the first inclined surface part is lapped on the second inclined surface part, and the first inclined surface part and the second inclined surface part are matched with each other.
[0015] The utility model still adopted the following technical scheme, a wall breaking machine, including above any one item the stirring mechanism and drive piece, the drive end of drive piece and rotating shaft connection.
[0016] The utility model discloses a beneficial effect lies in: the present application provides a kind of stirring mechanism and wall breaking machine, stirring mechanism includes shell, shaft, stirring knife, stirring hammer, screen and grinding structure, shaft is rotatably connected in shell, stirring knife and stirring hammer are sequentially connected in the axial direction of shaft along shaft;Screen is detachably connected in shell, screen is set in shell, stirring knife is located at one side of screen, and stirring hammer is located at the other side of screen;Grinding structure is located in shell, grinding structure is set around stirring hammer, and spacing is formed between stirring hammer and grinding structure.The driving end of driving part is connected with shaft to drive shaft to rotate.Compared with prior art, the present application is provided with stirring knife and stirring hammer, and screen is detachably installed between stirring knife and stirring hammer, when making fluid food, first cutting and rough machining are carried out to food by stirring knife, then filtering is carried out through screen, and then fine grinding is carried out through stirring hammer and grinding structure, to realize the juicing function of stirring mechanism.When making dry powder food, screen is removed, to avoid that screen affects the falling of food, and stirring hammer and grinding structure grind food into powder, to realize the grinding function of stirring mechanism.The wall breaking machine using this stirring mechanism combines the advantages of juicing function and grinding function, can provide more extensive function and better use experience, can realize the efficient processing of multiple food materials in the same equipment, to meet the needs of users in different scenarios. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 The structure diagram of the stirring mechanism of the utility model is shown;
[0018] Figure 2 The cross-sectional schematic view of the stirring mechanism of the utility model is shown;
[0019] Figure 3 Another cross-sectional schematic view of the stirring mechanism of the utility model is shown;
[0020] Figure 4 For Figure 2 The enlarged view of A in the figure.
[0021] Reference signs: 1, shell;2, shaft;4, stirring hammer;5, screen;6, grinding structure;51, feed channel;52, screen hole;53, first inclined surface part;41, hammer head part;42, connecting part;61, grinding tooth;62, grinding disc;63, second inclined surface part. DETAILED DESCRIPTION
[0022] In the utility model, the terms "arrange", "have", "connect" should be understood in a broad sense. For example, it can be fixed connection, detachable connection, or integral structure; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or internal communication between two devices, elements or components. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0023] The orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "radial", "circumferential" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and is not intended to indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0024] In addition, the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "multiple" is at least two, for example, two, three, etc., unless otherwise specifically limited.
[0025] Also, in addition to indicating the orientation or positional relationship, the above-mentioned part of the term can also be used to indicate other meanings, for example, the term "upper" can also be used to indicate a certain dependent relationship or connection relationship in some cases. For ordinary skilled in the art, the specific meaning of these terms in the utility model can be understood according to the specific circumstances.
[0026] In order to make the purpose, technical scheme and advantages of the utility model more clear and explicit, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model, and are not used to limit the utility model.
[0027] Referring to Figure 1 And Figure 2The embodiment of the application provides a wall breaking machine, which comprises a stirring mechanism and a driving member. The stirring mechanism comprises a shell 1, a rotating shaft 2, a stirring blade, a stirring hammer 4, a screen 5 and a grinding structure 6. The rotating shaft 2 is rotationally connected to the shell 1. The stirring blade (not shown in the figure) and the stirring hammer 4 are sequentially connected to the rotating shaft 2 along the axial direction of the rotating shaft 2. The screen 5 is detachably connected to the shell 1. The screen 5 is arranged in the shell 1. The stirring blade is located on one side of the screen 5, and the stirring hammer 4 is located on the other side of the screen 5. The grinding structure 6 is arranged in the shell 1. The grinding structure 6 surrounds the stirring hammer 4. A gap is formed between the stirring hammer 4 and the grinding structure 6. The driving end of the driving member (not shown in the figure) is connected to the rotating shaft 2 to drive the rotating shaft 2 to rotate.
[0028] In actual application, the shell 1 is provided with a feeding port. Along the axial direction of the rotating shaft 2, the stirring blade is arranged above the stirring hammer 4, that is, the stirring blade is closer to the feeding port than the stirring hammer 4. The screen 5 is arranged between the stirring blade and the stirring hammer 4. The grinding structure 6 surrounds the stirring hammer 4. The gap between the stirring hammer 4 and the grinding structure 6 is used for grinding food. When processing fluid food, the food is put into the shell 1 from the feeding port. The driving member drives the rotating shaft 2 to rotate. The stirring blade first cuts the food. The cut food falls into the grinding structure 6 through the screen 5 and is then ground by the stirring hammer 4 and the grinding structure 6 to form more delicate fluid food, realizing the juicing function of the wall breaking machine. When making fluid food, the screen 5 is usually arranged between the stirring blade and the stirring hammer 4. The screen 5 can intercept large-particle food from falling into the stirring hammer 4. Because the gap between the stirring hammer 4 and the grinding structure 6 is limited and cannot grind food with too large a volume, the screen 5 can avoid affecting the grinding function of the stirring hammer 4.
[0029] However, when making dry powder food such as coffee or soybeans, the volume of such food is small and the shell 1 is relatively tough. The stirring blade cannot accurately cut when rotating and will cause wear of the stirring blade. Therefore, the stirring hammer 4 is usually used for grinding. Therefore, when making dry powder food, the screen 5 can be removed to avoid affecting the food from entering the grinding structure 6. After the food is poured into the grinding structure 6 from the feeding port, the food is directly ground by the stirring hammer 4 and the grinding structure 6, realizing the grinding function of the wall breaking machine. In addition, the stirring hammer 4 and the grinding structure 6 are arranged at intervals, so that the stirring hammer 4 does not contact the grinding structure 6 during grinding, thereby avoiding wear of the surface and avoiding residue falling of the grinding structure 6.
[0030] Compared with the prior art, the stirring knife and the stirring hammer 4 are arranged, and the screen 5 is detachably installed between the stirring knife and the stirring hammer 4. When fluid food is made, the food is first cut by the stirring knife, then filtered through the screen 5, and then finely ground by the stirring hammer 4 and the grinding structure 6, so as to realize the juicing function of the stirring mechanism. When dry powder food is made, the screen 5 is removed to avoid affecting the falling of the food, and the stirring hammer 4 and the grinding structure 6 grind the food into powder, so as to realize the grinding function of the stirring mechanism. The wall breaking machine adopting the stirring mechanism combines the advantages of the juicing function and the grinding function, can provide more extensive functions and better use experience, can realize efficient processing of various food materials in the same device, and meets the needs of users in different scenes.
[0031] It should be noted that the driving member can adopt a structure of a motor or a motor.
[0032] Referring to Figure 2 , the outer periphery of the screen 5 is close to the shell 1, the screen 5 has a central hole for the rotating shaft 2 to pass through, and the central hole and the rotating shaft 2 form a feeding channel 51.
[0033] In actual application, the screen 5 is provided with a central hole, one end of the rotating shaft 2 passes through the central hole and is rotationally connected with the top cover of the shell 1, and the other end extends out of the shell 1 and is connected with the driving end of the driving member. The central hole and the rotating shaft 2 form an annular feeding channel 51. When fluid food is made, the stirring knife first cuts the food into particles of a certain size, and then the food falls from the feeding channel 51 into the grinding structure 6, and then is ground by the stirring hammer 4 and the grinding structure 6 to form fine fluid food. The feeding channel 51 has a certain screening function, which can prevent too large food from falling into the grinding structure 6, and the feeding channel 51 can be adapted to rotating shafts 2 of different sizes, thereby improving the practicability of the device.
[0034] Referring again to Figure 2 , the screen 5 is provided with a screen hole 52, the screen hole 52 is located at the outer periphery of the screen 5, and the feeding channel 51 is located at the middle of the screen 5.
[0035] In practical applications, when the wall-breaking machine is used to make fluid food, most of the food particles will fall into the grinding structure 6 from the feeding channel 51 after being preliminarily cut by the stirring knife, and the fine grinding of the stirring hammer 4 and the grinding structure 6 forms fine fluid food. Since the rotating shaft 2 rotates at high speed, the high-speed rotation of the stirring knife will generate strong vortex above the screen 5, so that the pressure above the screen 5 is less than the pressure below the screen 5. At the same time, the centrifugal force of the stirring hammer 4 in rotation will make the food move to the outer periphery of the screen 5, that is, to the position close to the screen hole 52. Under the action of the pressure difference, the food in the grinding structure 6 will re-enter the stirring knife from the screen hole 52, repeatedly pass through the cutting of the stirring knife, and then pass through the grinding of the stirring hammer 4 and the grinding structure 6, so as to realize the cycle grinding of the food and improve the fineness of the food wall-breaking. The screen 5 is provided with a screen hole 52 at the outer periphery thereof, and the screen hole 52 is used for the food to re-enter the stirring knife, so as to realize the function of cycle stirring of the food.
[0036] Referring to Figure 3 , the screen 5 is inclined to the direction close to the stirring hammer 4 from the outer periphery to the center hole of the screen 5.
[0037] In practical applications, the screen 5 is gradually inclined to the direction close to the stirring hammer 4 from the outer periphery to the center hole of the screen 5, and the middle part of the screen 5 is closer to the stirring hammer 4 than the outer periphery, that is, the feeding channel 51 is closer to the stirring hammer 4 than the screen hole 52, and the feeding channel 51 and the screen hole 52 are inclined and extended to form a guide part, which can guide the food falling on the screen 5 to enter the feeding channel 51, prevent the food from blocking the screen hole 52, and avoid affecting the food in the grinding structure 6 to re-enter the stirring knife from the screen hole 52.
[0038] Referring to Figure 3 , the stirring hammer 4 comprises a hammer head part 41 and a connecting part 42 connected with each other, the hammer head part 41 is arranged in a spaced manner with the grinding structure 6, the connecting part 42 is connected with the rotating shaft 2, and the connecting part 42 is rotationally connected with the rotating shaft 2 along the circumferential direction of the shell 1; or the hammer head part 41 is rotationally connected with the connecting part 42.
[0039] In practical applications, the stirring hammer 4 may encounter large or hard food fragments during grinding. In order to avoid the stirring hammer 4 from being stuck and affecting the grinding work, the connecting part 42 and the rotating shaft 2 are rotationally connected in the present application. When the rotating shaft 2 rotates, the rotating shaft 2 drives the stirring hammer 4 to rotate. When the stirring hammer 4 collides with the large food particles, the connecting part 42 rotates relative to the rotating shaft 2 under the action of the collision force, so that the spacing between the stirring hammer 4 and the grinding structure 6 is increased, the food particles can pass through more conveniently, the stirring hammer 4 is prevented from being stuck, and the stirring mechanism is suitable for grinding food of different sizes and improves the practicability of the stirring mechanism.
[0040] It should be noted that the direction of rotation of the connecting portion 42 should be opposite to the direction of rotation of the rotating shaft 2; in other embodiments, the connecting portion 42 can be fixedly connected with the rotating shaft 2, and the hammer head portion 41 is rotatably connected with the connecting portion 42, so that when the hammer head portion 41 collides with a large food fragment, the hammer head portion 41 rotates relative to the connecting portion 42, and the spacing between the hammer head portion 41 and the grinding structure 6 can be increased, thereby achieving similar effects as described above.
[0041] Again referring to Figure 3 , the grinding structure 6 includes a plurality of grinding teeth 61, and the inner side surface of the shell 1 is provided with the plurality of grinding teeth 61 along the circumferential direction of the shell 1.
[0042] In actual applications, the grinding structure 6 can be integrally formed with the shell 1, for example, a plurality of grinding teeth 61 are arranged on the inner side surface of the shell 1, and the stirring hammer 4 and the grinding teeth 61 are arranged at intervals, so that when food falls on the stirring hammer 4, the stirring hammer 4 rotates to achieve the grinding function of the grinding teeth 61 and the stirring hammer 4 on the food. In this way, the structure is simpler, and the grinding structure 6 does not need to be assembled, thereby saving installation and production costs.
[0043] It should be noted that the integrally formed structure refers to manufacturing parts as a whole through a specific process, for example, an injection molding process, which can simplify the production process and improve production efficiency.
[0044] Again referring to Figure 3 , the grinding structure 6 can also include a grinding disc 62 and the grinding teeth 61, the grinding disc 62 is sleeved on the outer periphery of the stirring hammer 4, the side of the grinding disc 62 facing the stirring hammer 4 is provided with a plurality of grinding teeth 61, and the bottom of the grinding disc 62 is attached to the bottom of the inner cavity of the shell 1 along the circumferential direction of the grinding disc 62.
[0045] In actual applications, the grinding structure 6 can also be connected with the shell 1 in a split structure, the grinding structure 6 includes the grinding disc 62, the inner side surface of the grinding disc 62 is provided with a plurality of grinding teeth 61, the grinding disc 62 can abut against the inner side surface of the shell 1 to provide stability for the installation of the grinding disc 62, and the bottom of the grinding disc 62 is attached to the bottom of the inner cavity of the shell 1. In this way, when dry powder food is made, the food can be prevented from running out of the gap between the grinding disc 62 and the bottom of the inner cavity of the shell 1, so that the stirring hammer 4 cannot grind the food completely, thereby affecting the grinding effect of the cell wall breaking machine. By using the split connection mode, the grinding disc 62 can be taken out for cleaning after long-term use, which is convenient for cleaning and replacement, improves the user experience and food hygiene, and prolongs the service life of the stirring mechanism.
[0046] Referring to Figure 4The screen 5 is overlapped on the grinding disc 62. In an embodiment, the grinding disc 62 and the screen 5 can have the same size, which can improve the stability of the installation of the two, and the screen hole 52 is arranged in the grinding disc 62, which can avoid the food falling from the screen hole 52 from falling outside the grinding disc 62. During the assembly, the grinding disc 62 is first installed in the shell 1, and then the screen 5 is overlapped on the grinding disc 62. The grinding disc 62 provides a position for the installation of the screen 5, which improves the assembly efficiency.
[0047] Referring again to Figure 4 The side of the screen 5 facing the grinding disc 62 is provided with a first inclined surface part 53, and the side of the grinding disc 62 facing the screen 5 is provided with a second inclined surface part 63. The first inclined surface part 53 is overlapped on the second inclined surface part 63, and the first inclined surface part 53 and the second inclined surface part 63 are in close contact with each other.
[0048] In actual application, the first inclined surface part 53 and the second inclined surface part 63 have the functions of guiding and positioning, which can quickly realize the overlapping of the screen 5 and the grinding disc 62, so that the screen 5 and the grinding disc 62 are more convenient and fast to assemble. The operator only needs to align and splice the first inclined surface part 53 and the second inclined surface part 63 according to the predetermined overlapping mode, and the assembly of the screen 5 and the grinding disc 62 can be completed without using additional tools or complex operation steps.
[0049] Compared with the prior art, the embodiment of the present application provides a stirring mechanism and a wall breaking machine. The stirring mechanism comprises a shell 1, a rotating shaft 2, a stirring blade, a stirring hammer 4, a screen 5 and a grinding structure 6. The rotating shaft 2 is rotationally connected to the shell 1. The stirring blade and the stirring hammer 4 are sequentially connected to the rotating shaft 2 along the axial direction of the rotating shaft 2. The screen 5 is detachably connected to the shell 1. The screen 5 is arranged in the shell 1. The stirring blade is located on one side of the screen 5, and the stirring hammer 4 is located on the other side of the screen 5. The grinding structure 6 is arranged in the shell 1. The grinding structure 6 surrounds the stirring hammer 4, and a gap is formed between the stirring hammer 4 and the grinding structure 6. The driving end of the driving member is connected to the rotating shaft 2 to drive the rotating shaft 2 to rotate. Compared with the prior art, the stirring blade and the stirring hammer 4 are arranged, and the screen 5 is detachably installed between the stirring blade and the stirring hammer 4. When making fluid food, the food is first cut and roughly processed by the stirring blade, then filtered by the screen 5, and then finely ground by the stirring hammer 4 and the grinding structure 6, so as to realize the juicing function of the stirring mechanism. When making dry powder food, the screen 5 is removed to avoid affecting the falling of the food. The stirring hammer 4 and the grinding structure 6 grind the food into powder, so as to realize the grinding function of the stirring mechanism. The wall breaking machine adopting the stirring mechanism combines the advantages of the juicing function and the grinding function, can provide more extensive functions and better use experience, can realize efficient processing of various food materials in the same equipment, and meets the needs of users in different scenes.
[0050] The above description is only a specific implementation of the present application. It should be pointed out that, for those skilled in the art, without departing from the principles of the present application, a number of improvements and refinements can be made, which should also be considered as the protection scope of the present application.
Claims
1. A stirring mechanism characterized by, The application relates to a stirring mechanism, which comprises the following parts: a shell (1); a rotating shaft (2) connected to the shell (1); a stirring blade and a stirring hammer (4) connected to the rotating shaft (2) in sequence along the axial direction of the rotating shaft (2); a screen (5) detachably connected to the shell (1), wherein the screen (5) is arranged in the shell (1), the stirring blade is located on one side of the screen (5), and the stirring hammer (4) is located on the other side of the screen (5); a grinding structure (6) arranged in the shell (1), wherein the grinding structure (6) is arranged around the stirring hammer (4), and a space is formed between the stirring hammer (4) and the grinding structure (6). The outer periphery of the screen (5) is close to the shell (1), the screen (5) has a central hole for the rotating shaft (2) to pass through, and a feeding channel (51) is formed between the central hole and the rotating shaft (2). The screen (5) is provided with screen holes (52) located at the outer periphery of the screen (5), and the feeding channel (51) is located at the middle of the screen (5). From the outer periphery of the screen (5) to the central hole, the screen (5) is inclined to the direction close to the stirring hammer (4). The stirring hammer (4) comprises a hammer head (41) and a connecting part (42) connected to each other, the hammer head (41) and the grinding structure (6) are arranged at intervals, the connecting part (42) is connected to the rotating shaft (2), and the connecting part (42) is rotatably connected to the rotating shaft (2) along the circumferential direction of the shell (1); or the hammer head (41) is rotatably connected to the connecting part (42). The grinding structure (6) comprises a plurality of grinding teeth (61), and the inner side of the shell (1) is provided with a plurality of the grinding teeth (61) along the circumferential direction of the shell (1).
2. The stirring mechanism of claim 1, wherein The grinding structure (6) comprises a grinding disc (62) and grinding teeth (61), the grinding disc (62) is sleeved on the outer periphery of the stirring hammer (4), the grinding disc (62) is provided with a plurality of the grinding teeth (61) on the side close to the stirring hammer (4), and the bottom of the grinding disc (62) is attached to the bottom of the inner cavity of the shell (1) along the circumferential direction of the grinding disc (62).
3. The stirring mechanism of claim 2, wherein The screen (5) is overlapped on the grinding disc (62).
4. The stirring mechanism of claim 2, wherein The screen (5) is provided with a first inclined surface part (53) on the side close to the grinding disc (62), the grinding disc (62) is provided with a second inclined surface part (63) on the side close to the screen (5), the first inclined surface part (53) is overlapped on the second inclined surface part (63), and the first inclined surface part (53) and the second inclined surface part (63) are attached to each other.
5. The stirring mechanism of claim 1, wherein The application further relates to a driving part connected to the rotating shaft (2) of the stirring mechanism.
6. The stirring mechanism of claim 1, wherein 7. The stirring mechanism of claim 1, wherein 8. The stirring mechanism of claim 7, wherein, 9. The stirring mechanism of claim 8, wherein, 10. A cell disrupter characterized by comprising: