Food processor with stable structure
By using an adapter to combine with the mounting column in the food processing machine, the problems of shrinkage of the machine casing and stress concentration caused by the excessive length of the water pump mounting column are solved. This achieves stable fixing of the water pump and simplifies assembly, improving user experience and assembly efficiency.
Patent Information
- Application Number
- CN202520043789.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-01-08
AI Technical Summary
In existing food processing machines, the excessively long mounting column of the water pump causes severe shrinkage of the machine casing and stress concentration at the connection points, making it prone to breakage, difficult to assemble, and inefficient.
By combining the adapter with the mounting column, the length of the mounting column is shortened, and the buffer design between the adapter and the water pump reduces stress concentration, increases the buffering effect, and improves assembly stability.
This effectively avoids stress concentration at the connection between the mounting column and the housing, ensuring the consistency of the housing appearance and the stability of the water pump, simplifying the assembly process and improving assembly efficiency.
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Figure CN223860710U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliance technology, specifically to a food processing machine with a stable structure. Background Technology
[0002] Existing food processors typically include a base and a blending cup assembly mounted on the base. The base comprises an upper base and a lower base, which together form a cavity. A motor assembly is housed within the cavity and connected to a stirring element within the blending cup assembly to drive the stirring element to rotate. Researchers have found that the connection and assembly of the upper and lower bases are complex, requiring consideration of the connection structure and demolding direction during production. The manufacturing processes for the molds of the lower and upper bases are also complex. To simplify demolding, utility model patent CN202121756343.2 discloses a blender base and a blender, which incorporates a transition piece and an inclined connecting part between the upper and lower bases. The axis of the connecting part is at an angle to the injection molding direction of the lower base, simplifying the mold and improving the connection reliability.
[0003] However, this type of food processor requires users to manually add water to the grinding chamber to process ingredients such as soy milk, and it also needs to be cleaned after processing, which is very troublesome. Therefore, in order to realize the automatic processing and cleaning of ingredients, some researchers have installed a water tank on the outside of the machine and connected it to the grinding chamber through a water inlet pipe. When using the food processor to process ingredients, users can use a water pump to pump water from the water tank into the grinding chamber to process the ingredients. At the same time, when the ingredients are processed and the grinding chamber needs to be cleaned, water can also be added to the grinding chamber through the water tank to achieve automatic cleaning of the grinding chamber. The entire food processing process is more automated. To secure the water pump, mounting posts are typically installed inside the casing. The pump is then fixed to these posts using connectors. However, because these mounting posts are usually quite long, the surface area of the casing at the mounting post location shrinks significantly. Furthermore, the length of the mounting posts causes the pump to shake when the user moves the food processor. The resulting torque is transmitted to the mounting posts, creating significant stress concentration at the connection between the posts and the casing. Over time, this can lead to cracks or even breakage at the connection point, rendering the pump unsecured. Additionally, when installing the pump onto the casing, the excessive length of the mounting posts can cause them to break due to the high stress they experience during installation. This process is both difficult and inefficient. Utility Model Content
[0004] The purpose of this utility model is to provide a food processing machine with a stable structure, in order to solve the problems in existing food processing machines where the length of the mounting column for fixing the water pump is too long, resulting in a serious reduction in the appearance of the machine casing and excessive stress concentration at the connection between the mounting column and the machine casing when the mounting column is under stress, which can easily cause the mounting column to break.
[0005] To achieve the above objectives, this utility model provides a structurally stable food processing machine, including a machine body, a grinding cup with a grinding chamber disposed within the machine body, a grinding device disposed within the grinding chamber, and a motor that is drivenly connected to the grinding device. The food processing machine also includes a water tank communicating with the grinding chamber, and the water tank and the grinding chamber are connected by a water pump. The machine body includes a casing, and the inner wall of the casing is provided with a mounting column. An adapter is provided between the mounting column and the water pump. The food processing machine also includes a connector, which passes through the water pump and the adapter in sequence and is fastened to the mounting column.
[0006] This application incorporates a water tank connected to the grinding chamber in the food processor. This allows users to automatically inject water from the tank into the grinding chamber via a water pump when processing ingredients. Furthermore, when cleaning the grinding chamber is required after processing, the water tank can be used to automatically clean it. This significantly increases the automation of the entire food processing process, freeing up users' hands and enhancing the user experience.
[0007] Meanwhile, the inner wall of the machine casing is equipped with a mounting post, and an adapter is provided between the mounting post and the water pump. The food processing machine also includes a connector, allowing assemblers to pass the connector through the water pump and the adapter in sequence and fasten it to the mounting post during water pump installation. This achieves a fixed connection between the water pump and the machine casing, ensuring the stability of the water pump's position. Compared to the existing method of fixing the water pump by setting a long mounting post, the use of the adapter, which is fixed between the mounting post and the water pump, significantly shortens the length of the mounting post. This effectively avoids the problem of an excessively long mounting post that is integrally molded into the machine casing, resulting in severe shrinkage of the area where the mounting post is molded into the casing. This design addresses the issue of unevenness or dents on the casing surface, ensuring a consistent appearance. Furthermore, the adapter, fixed between the mounting post and the water pump, provides cushioning. When the pump shakes, there's a buffer between the pump and the adapter, as well as between the adapter and the mounting post. This effectively prevents the pump's shaking from directly transmitting torque to the mounting post, which would otherwise be subjected to excessive stress due to its length and the resulting high stress at the connection between the casing and the post, potentially causing breakage. This ensures the stability of the mounting post structure and guarantees the pump's secure hold. Additionally, during pump installation, the adapter reduces stress at the connection between the mounting post and the casing, preventing breakage due to excessive stress on the long mounting post. This simplifies the assembly process and improves efficiency.
[0008] In a preferred embodiment of a structurally stable food processing machine, the adapter is provided with a clearance hole for the connector to pass through, and the clearance hole is clearance-fitted with the connector.
[0009] By providing a clearance hole for the connector to pass through, the connector can pass through the clearance hole and be fastened to the mounting post, thus fixing the water pump. At the same time, the clearance hole and the connector are clearance-fitted, so that the connector does not contact the hole wall. Therefore, the connector is not subjected to radial force from the connector. When the water pump shakes, the buffering effect between the connector and the connector can be further improved, thereby further ensuring the stability of the overall connection and further preventing the water pump from detaching from the casing.
[0010] In a preferred embodiment of a structurally stable food processing machine, the water pump includes a body and a fixed plate, the fixed plate being supported below the body, and the connecting piece passing through the fixed plate and the adapter in sequence and being fastened to the mounting column.
[0011] By including the water pump body and the fixing plate, the fixing plate supports the body from below, and the connecting parts pass through the fixing plate and the adapter in sequence and are fastened to the mounting column, the fixing plate and the connecting parts are connected and fixed, which can support and fix the body and ensure the stability of the body position.
[0012] In a preferred embodiment of a structurally stable food processing machine, a shock-absorbing pad is also clamped between the fixed plate and the adapter.
[0013] By sandwiching a shock-absorbing pad between the fixed plate and the adapter, a flexible connection and fixation are achieved between the fixed plate and the adapter. This helps to further enhance the buffering effect of the fixed plate and the adapter. When the water pump shakes, the shock-absorbing pad can buffer the deformation, reducing the torque transmission to the adapter and thus improving the overall structural stability. Simultaneously, during water pump installation, the shock-absorbing pad also reduces the torque transmission to the adapter and the fixed column, further preventing the mounting column from breaking due to excessive stress, and helping to further improve assembly efficiency.
[0014] In a preferred embodiment of a structurally stable food processing machine, the shock-absorbing pad includes a through hole through which a connector passes, and the outer wall portion of the shock-absorbing pad facing the adapter side is recessed to form an annular limiting groove surrounding the outside of the through hole, into which the adapter is inserted.
[0015] By recessing the outer wall of the damping pad towards the adapter to form an annular limiting groove surrounding the through hole, the adapter is inserted into the annular limiting groove. This allows assemblers to quickly align the damping pad and the adapter during pump assembly by using the annular limiting groove and the adapter, which helps improve assembly efficiency. At the same time, the annular limiting groove and the adapter can also ensure the alignment of the two, guaranteeing the stability of the damping pad's position and preventing lateral movement that would lead to a decrease in its damping effect.
[0016] In a preferred embodiment of a structurally stable food processing machine, two mounting columns and two adapters are provided, and the two mounting columns and adapters are located on opposite sides of the main body, with the main body clamped between the two adapters.
[0017] By providing two mounting posts and two adapters, with each located on opposite sides of the main body, the number of mounting posts connected to the housing is increased, thereby dispersing the torque and further enhancing the fixation of the water pump, ensuring the stability of the overall structure. Simultaneously, the main body is clamped between the two adapters, achieving lateral restraint on the main body, further enhancing its fixation and preventing lateral movement under stress.
[0018] In a preferred embodiment of a structurally stable food processing machine, the main body includes a pump body and a housing, the housing being integrally formed with a fixed plate.
[0019] By making the outer shell and the fixing plate as a single piece, the step of connecting and fixing the two is eliminated, which further improves the assembly efficiency. At the same time, it can also improve the stability of the connection between the outer shell and the fixing plate, thereby improving the stability of the overall structure.
[0020] In a preferred embodiment of a structurally stable food processing machine, the outer wall of the mounting column is provided with reinforcing ribs extending along its axial direction.
[0021] By providing reinforcing ribs extending axially on the outer wall of the mounting column, the strength of the mounting column is further improved. When the mounting column is subjected to radial force, the reinforcing ribs can provide support, thus avoiding stress concentration at the connection between the mounting column and the shell, which could lead to the failure of the mounting column.
[0022] In a preferred embodiment of a structurally stable food processing machine, multiple reinforcing ribs are provided and spaced circumferentially along the outer side wall of the mounting column, with the bottom end of each reinforcing rib protruding from the bottom surface of the mounting column to surround the outside of the adapter.
[0023] By providing multiple reinforcing ribs spaced circumferentially along the outer wall of the mounting column, the overall strength of the mounting column is enhanced, increasing its circumferential strength and preventing breakage. Furthermore, the bottom of the reinforcing ribs protrudes from the bottom surface of the mounting column to surround the outer side of the adapter, allowing the mounting column to radially limit the adapter. This not only enables rapid alignment during assembly through the cooperation of the reinforcing ribs and the adapter, further improving assembly efficiency, but also ensures the stability of the connection between the adapter and the mounting column, preventing significant lateral movement of the adapter under stress that could lead to instability in the connection.
[0024] In a preferred embodiment of a structurally stable food processing machine, the rear end of the machine casing is recessed to form a mounting platform, a water tank is mounted on the mounting platform, and a mounting column is formed on the inner wall of the mounting platform and extends downward.
[0025] By molding the mounting post into the inner wall of the mounting platform and extending it downwards, the part of the housing with the molding mounting post is shielded by the water tank, preventing this part from being exposed to the outside world, thus further ensuring the consistency of the overall appearance of the machine. Attached Figure Description
[0026] The accompanying drawings, which are included to provide a further understanding of the present invention and constitute a part of this invention, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:
[0027] Figure 1 This is a half-sectional view of a food processing machine in one embodiment of the present invention;
[0028] Figure 2This is a schematic diagram of the structure of the housing and water pump and other components in one embodiment of the present invention;
[0029] Figure 3 for Figure 2 Enlarged view of section A;
[0030] Figure 4 This is a schematic diagram of the structure of the water pump and adapter components in one embodiment of the present invention;
[0031] Figure 5 This is a schematic diagram of the mounting column in one embodiment of the present invention.
[0032] List of components and reference numerals:
[0033] 1-Main body, 11-Casing, 111-Mounting platform, 112-Mounting column, 1121-Reinforcing rib; 2-Grinding cup, 21-Grinding chamber; 3-Water tank; 4-Water pump, 41-Main body, 42-Fixing plate; 5-Adapter; 6-Shock damping pad, 61-Through hole, 62-Annular limiting groove; 7-Connecting piece. Detailed Implementation
[0034] To more clearly illustrate the overall concept of this utility model, a detailed description will be provided below with reference to the accompanying drawings.
[0035] It should be noted that many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0036] like Figures 1 to 5 As shown, this utility model provides a structurally stable food processing machine, including a body 1, a grinding cup 2 disposed within the body 1 and having a grinding chamber 21, a grinding device disposed within the grinding chamber 21, and a motor drivenly connected to the grinding device. The food processing machine also includes a water tank 3 communicating with the grinding chamber 21, and the water tank 3 and the grinding chamber 21 are connected via a water pump 4. The body 1 includes a casing 11, and the inner wall of the casing 11 is provided with a mounting post 112. A transition piece 5 is provided between the mounting post 112 and the water pump 4. The food processing machine also includes a connector 7, which passes through the water pump 4 and the transition piece 5 in sequence and is fastened to the mounting post 112. It should be noted that this application does not specifically limit the structure of the connector 7. As a preferred embodiment of this application, such as... Figure 4 As shown, the connector 7 is a screw, and the mounting post 112 has a screw hole that engages with the screw thread.
[0037] This application includes a water tank 3 connected to the grinding chamber 21 in the food processor. This allows the user to automatically inject water from the water tank 3 into the grinding chamber 21 via the water pump 4 when processing food ingredients. This enables the food ingredients to be processed. At the same time, when the food ingredients are processed and the grinding chamber 21 needs to be cleaned, water can also be injected into the grinding chamber 21 via the water tank 3 to automatically clean the grinding chamber 21. The entire food processing process is more automated, freeing up the user's hands and improving the user experience.
[0038] Meanwhile, the inner wall of the housing 11 is provided with a mounting post 112, and an adapter 5 is provided between the mounting post 112 and the water pump 4. The food processing machine also includes a connector 7, which allows the assembler to pass the connector 7 through the water pump 4 and the adapter 5 in sequence and fasten it to the mounting post 112 when installing the water pump 4, thereby achieving a fixed connection between the water pump 4 and the housing 11 and ensuring the stability of the water pump 4's position. Compared with the existing method of fixing the water pump 4 by setting a long mounting post 112, the setting of the adapter 5, which is fixed between the mounting post 112 and the water pump 4, can greatly shorten the length of the mounting post 112. On the one hand, it effectively avoids the mounting post 112 being too long and integrally formed on the housing 11, which would cause the housing 11 to form the mounting post 112. The significant shrinkage of part 2 causes unevenness and pitting on the surface of the casing 11, ensuring the consistency of the casing 11's appearance. On the other hand, the adapter 5, fixed between the mounting post 112 and the water pump 4, also provides a certain buffering effect. When the water pump 4 shakes, there is a certain buffer between the water pump 4 and the adapter, and there is also a certain buffer between the adapter 5 and the fixed post. This effectively prevents the torque from being directly transmitted to the mounting post 112 when the water pump 4 shakes, which would cause the mounting post 112 to be subjected to greater force and be longer, resulting in greater stress at the connection between the casing and the mounting post 112, causing the mounting post 112 to break at the junction with the casing. This ensures the stability of the mounting post 112 structure and thus ensures the fixation of the water pump 4. In addition, when the assembly personnel install the water pump 4, the stress on the connection between the mounting column 112 and the housing can be reduced through the adapter 5. This effectively avoids the situation where the mounting column 112 is too long and therefore subject to excessive stress during the installation of the water pump 4, which could cause it to break. This makes the assembly process simpler and more convenient, and improves assembly efficiency.
[0039] As a preferred embodiment of this application, such as Figure 4 As shown, the adapter 5 is provided with a clearance hole for the connector 7 to pass through, and the clearance hole is clearance-fitted with the connector 7.
[0040] By providing a clearance hole for the connector 7 to pass through in the adapter 5, the connector 7 can pass through the clearance hole and be fastened to the mounting post 112, thereby fixing the water pump 4. At the same time, the clearance hole and the connector 7 are fitted with a clearance, so that the connector 7 does not contact the hole wall of the clearance hole. Therefore, the adapter 5 is not subjected to radial force from the connector 7. When the water pump 4 shakes, the buffering effect between the connector 7 and the adapter 5 can be further improved, thereby further ensuring the stability of the overall connection and further preventing the water pump 4 from detaching from the housing 11.
[0041] As a preferred embodiment of this application, such as Figure 4 As shown, the water pump 4 includes a body 41 and a fixing plate 42. The fixing plate 42 is supported below the body 41. The connector 7 passes through the fixing plate 42 and the adapter 5 in sequence and is fastened to the mounting column 112.
[0042] By including the body 41 and the fixing plate 42, the fixing plate 42 is supported under the body 41, and the connecting piece 7 passes through the fixing plate 42 and the adapter 5 in sequence and is fastened to the mounting column 112, so that after the fixing plate 42 and the connecting piece 7 are connected and fixed, the body 41 can be supported and fixed, ensuring the stability of the position of the body 41.
[0043] Furthermore, such as Figure 4 As shown, a shock-absorbing pad 6 is also sandwiched between the fixing plate 42 and the adapter 5.
[0044] By clamping a shock-absorbing pad 6 between the fixed plate 42 and the adapter 5, a flexible connection and fixation between the fixed plate 42 and the adapter 5 is achieved. This helps to further enhance the buffering effect of the fixed plate 42 and the adapter 5. When the water pump 4 shakes, the shock-absorbing pad 6 can buffer the deformation and reduce the torque transmission to the adapter 5, thereby improving the stability of the overall structure. At the same time, when installing the water pump 4, the installation of the shock-absorbing pad 6 can also reduce the torque transmission to the adapter 5 and the fixed column, further preventing the mounting column 112 from breaking due to excessive force, and helping to further improve assembly efficiency.
[0045] It should be noted that this application does not specifically limit the structure of the shock-absorbing pad 6. As a preferred embodiment, such as... Figure 4 As shown, the shock-absorbing pad 6 includes a through hole 61 through which the connector 7 passes. The outer wall portion of the shock-absorbing pad 6 facing the adapter 5 is recessed to form an annular limiting groove 62 surrounding the outside of the through hole 61. The adapter 5 is inserted into the annular limiting groove 62.
[0046] By recessing the outer wall of the damping pad 6 towards the adapter 5 to form an annular limiting groove 62 surrounding the through hole 61, and inserting the adapter 5 into the annular limiting groove 62, the assembly personnel can quickly align the damping pad 6 and the adapter 5 through the cooperation of the annular limiting groove 62 and the adapter 5 when assembling the water pump 4. This helps to improve assembly efficiency. At the same time, the cooperation of the annular limiting groove 62 and the adapter 5 can also ensure the alignment and coordination of the two, ensuring the stability of the position of the damping pad 6 and preventing it from moving laterally, which would lead to a deterioration in its damping effect.
[0047] As a preferred embodiment, such as Figure 4 As shown, there are two mounting posts 112 and two adapters 5, and the two mounting posts 112 and adapters 5 are located on opposite sides of the main body 41, with the main body 41 sandwiched between the two adapters 5.
[0048] By providing two mounting posts 112 and two adapters 5, with the two mounting posts 112 and adapters 5 located on opposite sides of the main body 41, the number of mounting posts 112 connected to the housing is increased, thereby dispersing the torque and further enhancing the fixing effect on the water pump 4, ensuring the stability of the overall structure. Simultaneously, the main body 41 is clamped between the two adapters 5, achieving lateral limitation of the main body 41, further enhancing the fixing effect on the main body 41 and preventing lateral movement under stress.
[0049] It should be noted that this application does not specifically limit the relative relationship between the main body 41 and the fixing plate 42. They can be formed separately and then connected by the connector 7. Alternatively, this can be a preferred embodiment of this application, such as... Figure 3 , Figure 4 As shown, the main body 41 includes a pump body and a housing, and the housing and the fixing plate 42 are integrally formed.
[0050] By making the outer shell and the fixing plate 42 as a single piece, the step of connecting and fixing the two is eliminated, which further improves the assembly efficiency. At the same time, it can also improve the stability of the connection between the outer shell and the fixing plate 42, thereby improving the stability of the overall structure.
[0051] As a preferred embodiment of this application, such as Figure 4 As shown, the outer wall of the mounting column 112 is provided with reinforcing ribs 1121 extending along its axial direction.
[0052] By providing reinforcing ribs 1121 extending axially on the outer wall of the mounting column 112, the strength of the mounting column 112 is further improved, so that when the mounting column 112 is subjected to radial force, it can be supported by the reinforcing ribs 1121, thus avoiding stress concentration at the connection between the mounting column 112 and the shell, which could lead to the breakage of the mounting column 112.
[0053] It should be noted that this application does not specifically limit the structure of the reinforcing rib 1121. As one preferred embodiment of this application, such as... Figure 5 As shown, multiple reinforcing ribs 1121 are provided and are spaced apart circumferentially along the outer side wall of the mounting column 112. The bottom end of each reinforcing rib 1121 protrudes from the bottom surface of the mounting column 112 to surround the outside of the adapter 5.
[0054] By providing multiple reinforcing ribs 1121 spaced circumferentially along the outer side wall of the mounting post 112, the overall strength of the mounting post 112 is enhanced, and the strength of the mounting post 112 in the circumferential direction is strengthened, further preventing the mounting post 112 from breaking. Furthermore, the bottom end of the reinforcing rib 1121 protrudes from the bottom surface of the mounting post 112 to surround the outside of the adapter 5, allowing the mounting post 112 to achieve radial limitation of the adapter 5 through the reinforcing rib 1121. This not only enables rapid alignment during assembly through the cooperation between the reinforcing rib 1121 and the adapter 5, further improving assembly efficiency, but also ensures the stability of the connection between the adapter 5 and the mounting post 112, preventing large lateral movement of the adapter 5 under stress that could cause instability in its connection with the mounting post 112.
[0055] It should be noted that this application does not specifically limit the forming position of the mounting column 112. As one preferred embodiment of this application, such as... Figure 3 , Figure 5 As shown, the rear end of the housing 11 is recessed to form a mounting platform 111, the water tank 3 is mounted on the mounting platform 111, and the mounting column 112 is formed on the inner wall of the mounting platform 111 and extends downward.
[0056] By molding the mounting post 112 into the inner wall of the mounting platform 111 and extending it downwards, the part of the housing 11 where the mounting post 112 is molded is shielded by the water tank 3, preventing this part from being exposed to the outside world, and further ensuring the consistency of the overall appearance of the machine.
[0057] The technical solutions protected by this utility model are not limited to the above embodiments. It should be noted that any combination of the technical solutions of any embodiment with one or more other embodiments is within the protection scope of this utility model. Although this utility model has been described in detail above with general descriptions and specific embodiments, some modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, all such modifications or improvements made without departing from the spirit of this utility model are within the scope of protection claimed by this utility model.
Claims
1. A structurally stable food processing machine, comprising a body, a grinding cup disposed within the body and having a grinding chamber, a grinding device disposed within the grinding chamber, and a motor drivenly connected to the grinding device, the food processing machine further comprising a water tank communicating with the grinding chamber, characterized in that, The water tank and the grinding chamber are connected by a water pump. The machine body includes a casing, and the inner wall of the casing is provided with a mounting column. A transition piece is provided between the mounting column and the water pump. The food processing machine also includes a connector, which passes through the water pump and the transition piece in sequence and is fastened to the mounting column.
2. The structurally stable food processing machine according to claim 1, characterized in that, The adapter is provided with a clearance hole for the connector to pass through, and the clearance hole is clearance-fitted with the connector.
3. The structurally stable food processing machine according to claim 1, characterized in that, The water pump includes a body and a fixing plate. The fixing plate is supported under the body. The connecting piece passes through the fixing plate and the adapter in sequence and is fastened to the mounting column.
4. A structurally stable food processing machine according to claim 3, characterized in that, A shock-absorbing pad is also sandwiched between the fixing plate and the adapter.
5. A structurally stable food processing machine according to claim 4, characterized in that, The shock-absorbing pad includes a through hole through which the connector passes. The outer wall portion of the shock-absorbing pad facing the adapter is recessed to form an annular limiting groove surrounding the outside of the through hole. The adapter is inserted into the annular limiting groove.
6. A structurally stable food processing machine according to claim 3, characterized in that, There are two mounting posts and two adapters, and the two mounting posts and the two adapters are located on opposite sides of the main body, with the main body sandwiched between the two adapters.
7. A structurally stable food processing machine according to claim 3, characterized in that, The main body includes a pump body and a housing, the housing being integrally formed with the fixing plate.
8. A structurally stable food processing machine according to claim 1, characterized in that, The outer wall of the mounting column is provided with reinforcing ribs extending along its axial direction.
9. A structurally stable food processing machine according to claim 8, characterized in that, The reinforcing ribs are provided in multiple ways and are spaced apart circumferentially along the outer side wall of the mounting column. The bottom end of each reinforcing rib protrudes from the bottom surface of the mounting column to surround the outside of the adapter.
10. A structurally stable food processing machine according to claim 1, characterized in that, The rear end of the housing is recessed to form a mounting platform, the water tank is mounted on the mounting platform, and the mounting column is formed on the inner wall of the mounting platform and extends downward.
Citation Information
Patent Citations
Food processor base and food processor
CN215605185U