Food material processing equipment
By integrating the inner and outer layers of the cup body and creating a sound insulation cavity, the problems of high production cost and poor sound insulation of the blender cup body are solved, achieving the effects of reducing noise, improving crushing effect, and facilitating cleaning.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-03-24
AI Technical Summary
The production cost of existing blender cups is high and the sound insulation effect is poor. The production process is complicated and it is difficult to meet the noise control requirements.
The cup body adopts an integrated inner and outer layer design, forming a sound insulation cavity through the connecting section. A sound insulation cavity is also set between the inner and outer layers. Combined with sound insulation filling material and reinforcement structure, the angle of the connecting section and the transition segment are optimized to improve stability and sound insulation effect.
It reduces production costs, improves crushing efficiency, simplifies the production process, enhances sound insulation, and facilitates cleaning and maintenance.
Smart Images

Figure CN224023410U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the food processing equipment related technical field, concretely relates to a food processing equipment. BACKGROUND
[0002] The blender is a kind of food processing electric appliance commonly used in family, and its main function is to crush food materials to facilitate people to eat or further process.In the field of acoustics engineering, noise control and isolation is an important research direction, especially in the closed space, such as the cup body of the blender, the control of noise is particularly important.The current blender usually adopts single-layer cup body design, usually does not take sound insulation measures, or has inner layer cup body and outer shell assembled into two layers.The cup body assembled into two layers has higher production cost and lower production efficiency. SUMMARY
[0003] Therefore, the technical problem to be solved by the utility model is that the production cost of the cup body of the food processing equipment is high.
[0004] To solve the above technical problems, the utility model provides a kind of food processing equipment, including base and cup body, cup body is connected with base, cup body includes inner layer, outer layer and connecting section, inner layer, outer layer and connecting section are integrally arranged, inner layer is connected with outer layer by connecting section, and sound insulation cavity is formed between inner layer and outer layer.
[0005] Optionally, the connecting section is inclinedly arranged relative to the surface of the outer layer and forms an included angle less than 90 degrees between the surface of the outer layer.
[0006] Optionally, the included angle ranges from 25° to 55°.
[0007] Optionally, one end of the connecting section has a transition section, the connecting section is connected with the inner wall of the outer layer and / or the outer wall of the inner layer through the transition section, and the transition section has a curved surface structure.
[0008] Optionally, one end of the connecting section close to the inner wall of the outer layer has a transition section, and the transition section includes a first extension section and a second extension section connected in sequence, the first extension section is connected with the inner wall of the outer layer, the first extension section extends along the arrangement direction between the inner layer and the outer layer, and the second extension section is inclinedly arranged relative to the arrangement direction between the inner layer and the outer layer.
[0009] Optionally, the extension length of the first extension section ranges from 1mm to 1.5mm.
[0010] Optionally, the bottom of the cup body has a butt joint structure for butt joint with the base, and the connecting section and the butt joint structure are located at the top end and the bottom end of the sound insulation cavity respectively.
[0011] Optionally, the food material processing device further comprises a partition, which is located in the sound insulation cavity and divides the sound insulation cavity into a plurality of sub sound insulation cavities arranged along the axial direction of the cup body.
[0012] Optionally, the inner layer comprises a containing section and a supporting section arranged along the axial direction of the cup body, the inner side of the containing section forms a containing cavity for containing food material, and the supporting section is used for abutting and fitting with the base, the partition is located at the connection between the containing section and the supporting section, the first sub sound insulation cavity is formed between the containing section and the outer layer, and the second sub sound insulation cavity is formed between the supporting section and the outer layer.
[0013] Optionally, the food material processing device further comprises a sound insulation filler, which is arranged in the first sub sound insulation cavity.
[0014] Optionally, the base has an abutting protrusion, at least a part of the abutting protrusion can extend into the second sub sound insulation cavity.
[0015] Optionally, the food material processing device further comprises a reinforcing portion, the inner layer comprises a bottom section and a containing section extending along the axial direction of the cup body, the bottom section and the containing section form a containing cavity for containing food material, and the inner wall and / or the outer wall of the bottom section and / or the containing section are provided with the reinforcing portion.
[0016] Optionally, the reinforcing portion comprises a plurality of longitudinal reinforcing ribs and an annular reinforcing rib, the longitudinal reinforcing ribs are located in the containing section and extend along the axial direction of the cup body, and the annular reinforcing rib is located in the bottom section and extends along the circumferential direction of the cup body.
[0017] The technical scheme provided by the utility model has the following advantages:
[0018] The food material processing device provided by the utility model connects the inner layer and the outer layer into a whole through the setting of the connecting section, so that the cup body can be integrally arranged, a sound insulation cavity can be formed between the inner layer and the outer layer, the production process can be simplified, the production is facilitated, the production cost is reduced, the noise can be effectively reduced, the crushing effect of the food material processing device is improved, the shortcomings of the traditional food material processing device, such as complex production process of two cup bodies and poor sound insulation effect of a single cup body, are avoided, and the integrally arranged cup body is also beneficial to daily cleaning and maintenance. ACCURACY
[0019] In order to more clearly illustrate the specific embodiments of the utility model or the technical scheme in the prior art, the following will briefly introduce the drawings needed to be used in the specific embodiments or the prior art description, and obviously, the drawings in the following description are some embodiments of the utility model, and those skilled in the art can also obtain other drawings according to these drawings without creating creative labor.
[0020] Figure 1 It is a sectional view of the food material processing device of the utility model.
[0021] Figure 2 It is the cross-sectional view of the cup body, the stirring blade and the shaft coupling of the utility model;
[0022] Figure 3 It is the cross-sectional view of the cup body of the utility model;
[0023] Figure 4 It is the enlarged view of the transition section of the utility model;
[0024] Figure 5 It is the axonometric view of the food material processing equipment of the utility model;
[0025] Figure 6 It is the front view of the food material processing equipment of the utility model;
[0026] Figure 7 It is the top view of the food material processing equipment of the utility model.
[0027] Explanation of reference signs:
[0028] 10, base; 11, butt joint convex; 20, cup body; 21, inner layer; 211, containing section; 2111, first sub sound insulation cavity; 212, supporting section; 2121, second sub sound insulation cavity; 213, bottom section; 22, outer layer; 23, connecting section; 231, transition section; 2311, first extension section; 2312, second extension section; 30, separation part; 40, reinforcing part; 41, longitudinal reinforcing rib; 42, annular reinforcing rib; 50, stirring blade; alpha, included angle. DETAILED DESCRIPTION
[0029] The technical solutions of the utility model will be described clearly and completely below in combination with the drawings. Obviously, the described embodiments are part of the embodiments of the utility model, rather than all the embodiments. The utility model will be described in detail below with reference to the drawings and in combination with the embodiments. It should be noted that the embodiments in the utility model and the features in the embodiments can be combined with each other without conflict.
[0030] It should be noted that the terms "first", "second" and the like in the specification and claims of the utility model and the above-mentioned drawings are used to distinguish similar objects, and do not have to be used to describe a specific order or sequence.
[0031] In the utility model, the orientation words such as "upper", "lower", "top", "bottom" used without making the opposite statement are usually for the direction shown in the drawings, or for the components themselves in the vertical, perpendicular or gravity direction. Similarly, for the convenience of understanding and description, "inner", "outer" means relative to the contour of each component itself, but the above-mentioned orientation words are not used to limit the utility model.
[0032] This invention solves the problem of high production costs for cups in existing food processing equipment.
[0033] like Figures 1 to 7 The food processing equipment shown includes a base 10 and a cup body 20. The cup body 20 is connected to the base 10. The cup body 20 includes an inner layer 21, an outer layer 22 and a connecting section 23. The inner layer 21, the outer layer 22 and the connecting section 23 are integrated. The inner layer 21 is connected to the outer layer 22 through the connecting section 23, and a sound insulation cavity is formed between the inner layer 21 and the outer layer 22.
[0034] In this embodiment, the inner layer 21 and the outer layer 22 are connected into a whole by setting a connecting section 23, so that the cup body 20 can be set as a whole and a sound insulation cavity can be formed between the inner layer 21 and the outer layer 22. This simplifies the production process, facilitates production, and reduces production costs. It can also effectively reduce noise and improve the crushing effect of food processing equipment. This avoids the disadvantages of traditional food processing equipment, which has a more complicated production process for processing two cup bodies 20 and poor sound insulation effect of a single cup body 20. In addition, the integrated cup body 20 is also conducive to daily cleaning and maintenance.
[0035] It should be noted that, as Figure 6 As shown, the food processing equipment in this embodiment is illustrated using a high-speed blender as an example. Of course, depending on the actual situation, the food processing equipment in this embodiment can also be other food grinding and processing equipment such as a soy milk maker.
[0036] In this embodiment, the cup body 20 is cylindrical. The lower half of the cup body 20 is divided into an inner layer 21 and an outer layer 22 along the connecting section 23. The outer layer 22 of the cup body 20 is cylindrical, and the inner layer 21 is also cylindrical. The outer layer 22 is fitted over the inner layer 21. The connecting section 23 is located at the end of the inner layer 21 furthest from the base 10. The entire cup body 20 is a single component, facilitating manufacturing. The space between the inner layer 21, the outer layer 22, and the connecting section 23 serves as a sound insulation cavity, absorbing sound waves through air damping and reducing noise propagation.
[0037] In this embodiment, the connecting segment 23 is inclined relative to the surface of the outer layer 22, forming an angle α of less than 90 degrees with the surface of the outer layer 22. This facilitates the sliding of food ingredients and prevents food ingredients from accumulating on the connecting segment 23 and affecting the pulverizing effect. Specifically, in this embodiment, the connecting segment 23 is located at the end of the inner layer 21 away from the base 10. The inclination direction of the connecting segment 23 from the end near the outer layer 22 to the end away from the outer layer 22 is downward. That is, along the direction close to the axis of the cup body 20, the connecting segment 23 tapers inward, and its diameter gradually decreases. While the connecting segment 23 forms an angle of less than 90 degrees with the surface of the outer layer 22, the connecting segment 23 also forms an angle of greater than 90 degrees with the surface of the inner layer 21.Figure 1 、 Figure 2 、 Figure 3 As shown in FIG. 1, the inner wall of the cup body 20 is always arranged in a direction inclined from top to bottom, so that when food materials stick to the inner wall of the cup body 20 during the crushing of the food materials by the food material processing device, the food materials can naturally slide down along the inner wall of the cup body 20. Since the inner wall of the cup body 20 is not inclined from bottom to top, the food materials can be prevented from piling up on the inner wall of the cup body 20, thereby facilitating the crushing effect of the food materials.
[0038] Preferably, the included angle a is in the range of 25°-55°, so as to optimize the inclined direction of the connecting section 23, avoid food residues on the connecting section 23, and facilitate the production and daily cleaning of the cup body 20, while improving the crushing effect. When the included angle a is less than 25°, the angle formed is too small, which is difficult to produce and inconvenient to clean; when the included angle a is greater than 55°, the angle between the connecting section 23 and the horizontal plane is too small, which is prone to cause the food materials to fall on the connecting section 23 and be difficult to fall off.
[0039] In the present embodiment, considering the stability of the connection between the inner layer 21 and the outer layer 22, one end of the connecting section 23 has a transition section 231, the connecting section 23 is connected to the inner wall of the outer layer 22 and / or the outer wall of the inner layer 21 through the transition section 231, and the transition section 231 has a curved surface structure, thereby avoiding the generation of sharp corners, improving the strength of the cup body 20, and facilitating cleaning and processing production. Specifically, the transition section 231 of the present embodiment is arranged at the end of the connecting section 23 away from the inner layer 21. Since an acute angle is formed between the connecting section 23 and the outer layer 22 at this position, the connection between the connecting section 23 and the outer layer 22 is prone to generate sharp corners, which is prone to cause difficulties in production and manufacturing, stress concentration affecting the strength of the cup body 20, and inconvenience in cleaning the cup body 20. Therefore, the extension direction of the side of the transition section 231 facing the base 10 is different from that of other positions of the connecting section 23, and the side of the transition section 231 facing the base 10 is arranged as a curved surface, thereby reducing stress concentration and improving the strength of the cup body 20.
[0040] In the present embodiment, one end of the connecting section 23 close to the inner wall of the outer layer 22 has a transition section 231, and the transition section 231 includes a first extension section 2311 and a second extension section 2312 connected in sequence, the first extension section 2311 is connected to the inner wall of the outer layer 22, and the first extension section 2311 extends along the arrangement direction between the inner layer 21 and the outer layer 22, and the second extension section 2312 is arranged inclinedly relative to the arrangement direction between the inner layer 21 and the outer layer 22, thereby making the connection between the connecting section 23 and the outer layer 22 extend smoothly, thereby reducing the processing difficulty and improving the strength of the cup body 20. Specifically, as shown in FIG. 1, the transition section 231 of the present embodiment is arranged at the end of the connecting section 23 close to the inner wall of the outer layer 22. Since an acute angle is formed between the connecting section 23 and the outer layer 22 at this position, the connection between the connecting section 23 and the outer layer 22 is prone to generate sharp corners, which is prone to cause difficulties in production and manufacturing, stress concentration affecting the strength of the cup body 20, and inconvenience in cleaning the cup body 20. Therefore, the extension direction of the side of the transition section 231 facing the base 10 is different from that of other positions of the connecting section 23, and the side of the transition section 231 facing the base 10 is arranged as a curved surface, thereby reducing stress concentration and improving the strength of the cup body 20. Figure 4As shown, the first extension section 2311 and the second extension section 2312 are arranged on the side of the connecting section 23 facing the base 10. In this embodiment, the first extension section 2311 of the cup body 20 extends horizontally, and the two ends of the first extension section 2311 are connected with rounded corners, so that the first extension section 2311 and the inner wall of the outer layer 22 and the second extension section 2312 are smoothly connected, avoiding local sharp corners. The second extension section 2312 serves to connect the first extension section 2311 and other parts of the connecting section 23, avoiding the connection of the first extension section 2311 and other parts of the connecting section 23 being too abrupt, thereby dispersing stress and improving the strength of the cup body 20. In this embodiment, the first extension section 2311 and the second extension section 2312 are arranged as curved structures, so that the transition section 231 as a whole extends along a curve, thereby avoiding sharp corners and stress concentration, and reducing the processing difficulty. Of course, according to the actual situation, the extension direction of the first extension section 2311 can also have a small inclination angle with the horizontal direction, which is convenient for processing and manufacturing, and does not affect the strength of the cup body 20.
[0041] Preferably, the extension length of the first extension section 2311 ranges from 1 mm to 1.5 mm, so that the transition section 231 as a transition part of the connecting section 23 and the outer layer 22 of the cup body 20 is not too long to affect the inclination direction of the connecting section 23, and can also play a smooth transition role.
[0042] More preferably, the extension length of the first extension section 2311 ranges from 1.2 mm. The extension length of the first extension section 2311 refers to the length of the first extension section 2311 extending in the radial direction of the cup body 20.
[0043] In this embodiment, the bottom of the cup body 20 has a butt joint structure for butt joint with the base 10, and the connecting section 23 and the butt joint structure are respectively located at the top end and the bottom end of the sound insulation cavity, so that the cup body 20 can be directly butt joint with the base 10. Specifically, the outer layer 22 and the inner layer 21 of the cup body 20 in this embodiment are arranged at intervals at the bottom of the cup body 20, i.e., the sound insulation cavity has an opening facing the base 10 at the bottom of the cup body 20, and the base 10 has a butt joint protrusion 11 that can extend into the sound insulation cavity from the opening to limit the position of the cup body 20. The sound insulation cavity in this embodiment is arranged in a ring shape, and the butt joint protrusion 11 can be correspondingly arranged in a ring shape or an arc shape to limit the cup body 20.
[0044] In the embodiment, the food material processing device further comprises a partition 30 located in the sound insulation cavity and separating the sound insulation cavity into a plurality of sub-sound insulation cavities arranged along the axial direction of the cup body 20, thereby facilitating the increase of the sound wave propagation path, improving the sound insulation effect, and facilitating the improvement of the strength of the cup body 20. Specifically, the partition 30 of the embodiment can be arranged as an annular partition plate, which is arranged between the connecting section 23 and the bottom of the cup body 20, and is connected to the inner wall of the outer layer 22 on the side away from the axis of the cup body 20, and is connected to the outer surface of the inner layer 21 on the side close to the axis of the cup body 20, thereby separating the sound insulation cavity into two sub-sound insulation cavities arranged along the axial direction of the cup body 20. Of course, the number of sub-sound insulation cavities is not limited, and a plurality of partitions 30 can be arranged to form three or more sub-sound insulation cavities according to actual needs. The partition 30 can also be connected to the connecting section 23 instead of being connected to the inner layer 21 and the outer layer 22 of the cup body 20, and extends along the axial direction of the cup body 20 to the bottom of the cup body 20, thereby separating the sound insulation cavity into a plurality of sub-sound insulation cavities arranged along the radial direction of the cup body 20.
[0045] In the embodiment, the inner layer 21 comprises a containing section 211 arranged along the axial direction of the cup body 20 and a supporting section 212, the inner side of the containing section 211 forms a containing cavity for containing food materials, and the supporting section 212 is used for abutting and cooperating with the base 10. That is, the part of the inner layer 21 of the cup body 20 away from the base 10 is the containing section 211, and the part close to the base 10 is the supporting section 212, both the containing section 211 and the supporting section 212 extend along the axial direction of the cup body 20, the supporting section 212 has an abutting structure, and when the supporting section 212 cooperates with the abutting protrusion 11 of the base 10, the abutting protrusion 11 is located on the side of the supporting section 212 away from the axis of the cup body 20 to limit the position of the cup body 20. The partition 30 is located at the connection between the containing section 211 and the supporting section 212, the first sub-sound insulation cavity 2111 is formed between the containing section 211 and the outer layer 22, and the second sub-sound insulation cavity 2121 is formed between the supporting section 212 and the outer layer 22, thereby separating the sound insulation cavity into the first sub-sound insulation cavity 2111 matched with the food material processing area and the second sub-sound insulation cavity 2121 matched with the connecting area of the base 10, and isolating the noise of different areas respectively.
[0046] In the embodiment, the food material processing device further comprises a sound insulation filler arranged in the first sub-sound insulation cavity 2111, thereby improving the sound insulation effect of the first sub-sound insulation cavity 2111. Specifically, the first sub-sound insulation cavity 2111 of the embodiment is enclosed annular space surrounded by the outer layer 22, the inner layer 21, the connecting section 23 and the partition 30, so that the sound insulation filler can be arranged to fill the first sub-sound insulation cavity 2111 to further improve the sound insulation effect, and the sound insulation filler is not easy to fall out of the first sub-sound insulation cavity 2111. Optionally, the sound insulation filler can be sound insulation cotton or the like.
[0047] In the embodiment, at least part of the butt protrusion 11 can extend into the second sub-sound insulation cavity 2121, thereby fixing the position of the cup body 20. The second sub-sound insulation cavity 2121 of the embodiment is a semi-closed cavity, one end of the second sub-sound insulation cavity 2121 is close to the partition 30, and the other end is an opening towards the base 10, so as to facilitate the extension of the butt protrusion 11.
[0048] In the embodiment, the inner layer 21 further comprises a bottom section 213, the bottom section 213 and the accommodation section 211 form an accommodation cavity, and the support section 212 is closer to the butt protrusion 11 than the bottom section 213, that is, the part above the bottom section 213 is the accommodation section 211, and the part below the bottom section 213 is the support section 212. The bottom section 213 is circular, and the edge of the bottom section 213 is connected to the side of the accommodation section 211 close to the base 10. The food processing device of the embodiment further comprises a stirring blade 50 and a shaft coupling, the stirring blade 50 is arranged in the accommodation cavity, and the shaft coupling passes through the bottom section 213 and is arranged between the stirring blade 50 and the base 10. The shaft coupling connects the stirring blade 50 and the base 10. The noise of the food processing device is mainly generated near the stirring blade 50 and the shaft coupling below the blade. Therefore, when the noise generated by the crushed food in the accommodation section 211 propagates outward, part of the noise propagates in the horizontal direction, and the noise is sequentially transmitted to the outside of the food processing device through the accommodation section 211, the first sub-sound insulation cavity 2111, and the outer layer 22, thereby weakening the noise through multi-layer sound insulation. The first sub-sound insulation cavity 2111 in this path is filled with sound insulation filler, which can further weaken the noise. Another part of the noise propagates outward in the obliquely downward direction, and the noise is sequentially transmitted to the outside of the food processing device through the bottom section 213, the support section 212, the second sub-sound insulation cavity 2121, and the outer layer 22, thereby weakening the noise through multi-layer sound insulation. It should be noted that, Figure 1 、 Figure 2 、 Figure 3 The arrows in the above figures represent the direction of noise propagation.
[0049] As shown in Figure 5 、 Figure 7 , in the embodiment, the food processing device further comprises a reinforcing portion 40, and the inner wall and / or the outer wall of the bottom section 213 and / or the accommodation section 211 is provided with the reinforcing portion 40, thereby improving the strength of the cup body 20. Specifically, since the crushing of food is in the accommodation cavity, the bottom section 213 and the accommodation section 211 of the embodiment are both provided with the reinforcing portion 40. The reinforcing portion 40 can be arranged on the outer wall, or on the inner wall, or on both the inner wall and the outer wall. As long as the strength of the inner layer 21 of the cup body 20 can be improved, the embodiment of the reinforcing portion 40 is arranged as a reinforcing rib.
[0050] In the embodiment, the reinforcing portion 40 comprises a plurality of longitudinal reinforcing ribs 41 and annular reinforcing ribs 42, the longitudinal reinforcing ribs 41 are located in the accommodating section 211 and extend along the axial direction of the cup body 20, and the annular reinforcing ribs 42 are located in the bottom surface section 213 and extend along the circumferential direction of the cup body 20, so that the longitudinal and lateral strength of the cup body 20 is simultaneously enhanced by the combination of the longitudinal reinforcing ribs 41 and the annular reinforcing ribs 42, thereby improving the stability of the overall structure of the cup body 20. Specifically, the accommodating section 211 of the embodiment extends along the axial direction of the cup body 20, and the longitudinal reinforcing ribs 41 are correspondingly arranged to extend along the axial direction of the cup body 20, so as to enhance the strength of the inner layer 21. The longitudinal reinforcing ribs 41 can be arranged in multiple numbers and uniformly arranged along the circumferential direction of the accommodating section 211, thereby improving the overall strength of the inner layer 21 and avoiding deformation and damage of the inner layer 21 during the crushing process of the food materials. The bottom surface section 213 of the embodiment is circular and perpendicular to the axial direction of the cup body 20, and the annular reinforcing ribs 42 are correspondingly arranged in the form of a ring and surround the bottom surface section 213 along the circumferential direction of the bottom surface section 213. The annular reinforcing ribs 42 can also be arranged in multiple numbers and uniformly arranged along the radial direction of the bottom surface section 213, thereby improving the strength of the bottom surface section 213, preventing deformation and damage of the bottom surface section 213 and ensuring long-term stable operation of the food material processing equipment.
[0051] From the above description, it can be seen that the embodiments of the utility model realize the following technical effects:
[0052] 1. The problem of high production cost of the cup body of the food material processing equipment in the prior art is solved.
[0053] 2. The inner layer and the outer layer are connected as a whole by the connecting section, so that the cup body can be integrally arranged and a sound insulation cavity can be formed between the inner layer and the outer layer, which can simplify the production process, facilitate production and reduce production cost, and effectively reduce noise and improve the crushing effect of the food material processing equipment.
[0054] 3. The disadvantages of complex production process of two cup bodies and poor sound insulation effect of a single cup body of the traditional food material processing equipment are avoided, and the integrally arranged cup body is also conducive to daily cleaning and maintenance.
[0055] Obviously, the above-described embodiments are only a part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments of the utility model, other different forms of changes or variations can be made by those skilled in the art without creative labor, and all should belong to the protection scope of the utility model.
Claims
1. A food material processing apparatus characterized by comprising: The application relates to a food material processing device, which comprises: a base (10); a cup body (20) connected with the base (10), the cup body (20) comprising an inner layer (21), an outer layer (22) and a connecting section (23), the inner layer (21), the outer layer (22) and the connecting section (23) being integrally arranged, the inner layer (21) being connected with the outer layer (22) through the connecting section (23), and a sound insulation cavity being formed between the inner layer (21) and the outer layer (22).
2. The food processing apparatus according to claim 1, wherein The connecting section (23) is arranged obliquely relative to the surface of the outer layer (22) and forms an included angle smaller than 90 degrees with the surface of the outer layer (22).
3. The food processing apparatus according to claim 2, wherein The included angle ranges from 25 degrees to 55 degrees.
4. The food processing apparatus according to claim 1, wherein One end of the connecting section (23) is provided with a transition section (231), the connecting section (23) is connected with the inner wall of the outer layer (22) and / or the outer wall of the inner layer (21) through the transition section (231), and the transition section (231) has a curved surface structure.
5. The food processing apparatus according to claim 4, wherein The end of the connecting section (23) close to the inner wall of the outer layer (22) is provided with the transition section (231), the transition section (231) comprises a first extension section (2311) and a second extension section (2312) connected in sequence, the first extension section (2311) is connected with the inner wall of the outer layer (22), the first extension section (2311) extends along the arrangement direction between the inner layer (21) and the outer layer (22), and the second extension section (2312) is arranged obliquely relative to the arrangement direction between the inner layer (21) and the outer layer (22).
6. The food processing apparatus of claim 5, wherein The extension length of the first extension section (2311) ranges from 1 mm to 1.5 mm.
7. The food processing apparatus according to claim 5, wherein The bottom of the cup body (20) is provided with an abutting structure for abutting with the base (10), and the connecting section (23) and the abutting structure are located at the top end and the bottom end of the sound insulation cavity respectively.
8. The food processing apparatus according to any one of claims 1 to 7, characterized in that, The food material processing device further comprises a separation part (30) located in the sound insulation cavity and separating the sound insulation cavity into a plurality of sub sound insulation cavities arranged along the axial direction of the cup body (20).
9. The food processing apparatus according to claim 8, wherein The inner layer (21) comprises a containing section (211) and a supporting section (212) arranged along the axial direction of the cup body (20), the inner side of the containing section (211) forms a containing cavity for containing food materials, the supporting section (212) is used for abutting with the base (10), the separation part (30) is located at the connection position of the containing section (211) and the supporting section (212), a first sub sound insulation cavity (2111) is formed between the containing section (211) and the outer layer (22), and a second sub sound insulation cavity (2121) is formed between the supporting section (212) and the outer layer (22).
10. The food processing apparatus of claim 9, wherein The food material processing device further comprises sound insulation fillers arranged in the first sub sound insulation cavity (2111).
11. The food processing apparatus of claim 9, wherein The base (10) is provided with an abutting protrusion (11), at least a part of the abutting protrusion (11) can extend into the second sub sound insulation cavity (2121).
12. The food material processing apparatus according to any one of claims 1 to 7, characterized by, The food material processing device further comprises a reinforcing portion (40), the inner layer (21) comprises a bottom surface section (213) and a receiving section (211) extending axially along the cup body (20), the bottom surface section (213) and the receiving section (211) form a receiving cavity for accommodating food material, and an inner wall and / or an outer wall of the bottom surface section (213) and / or the receiving section (211) is / are provided with the reinforcing portion (40).
13. The food processing apparatus of claim 12, wherein, The reinforcing portion (40) comprises: a plurality of longitudinal reinforcing ribs (41) located in the receiving section (211) and extending axially along the cup body (20); and a ring-shaped reinforcing rib (42) located in the bottom surface section (213) and extending circumferentially along the cup body (20).