Complementary food machine stable in installation
By forming a slot in the bracket and mixing cup of the supplementary food machine and inserting anti-slip pads, the problem of increasing the radial size of the supplementary food machine is solved, the stable installation of the mixing cup and the portability of the supplementary food machine are achieved, and the efficiency of the steam channel is improved.
Patent Information
- Application Number
- CN202420752347.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-11
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-04-11
AI Technical Summary
While ensuring that the capacity of the mixing cup or stewing cup remains unchanged, the existing supplementary food machine increases the radial size of the whole supplementary food machine and reduces portability.
The bracket and the mixing cup are recessed inwardly to form a slot, and the anti-slip pad is embedded, and the other in the bracket and the mixing cup is tightly matched with the anti-slip pad, increasing the friction between the mixing cup and the bracket, ensuring stable installation of the mixing cup, and reducing the radial size of the supplementary food machine.
While ensuring the radial size and capacity of the mixing cup, the radial size of the whole food supplementary machine is significantly reduced, the portability of the equipment is improved, and the utilization rate and steam efficiency of the food supplementary machine are improved by optimizing the steam channel.
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Figure CN222929644U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food processors, in particular to a complementary food processor with stable installation. Background Art
[0002] The complementary food processor belongs to one of the food processors, which has functions such as food stirring, crushing, and even heating and steaming. It is a small household appliance that can quickly crush, stir, and steam foods such as fruits, vegetables, and meats, and can especially meet the complementary food processing and cooking requirements of infants and the elderly, thus being recognized by more and more consumers.
[0003] The application number is CN202321431578.3, and the invention name is "A fixing structure of a complementary food processor", which discloses that a ring-shaped positioning boss is provided on the inner wall of the bracket, the anti-slip pad is embedded on the surface of the positioning boss, a flanging is provided outward at the top of the stirring cup, and the flanging is pressed on the positioning boss and the anti-slip pad. However, the technical problem existing in this technical solution is that generally, it is considered that the capacity of the stirring cup in the complementary food processor is small. When a positioning boss is convexly provided on the inner wall of the bracket towards the stirring cup, in order to ensure the capacity of the stirring cup, the radial size of the entire complementary food processor will be increased; secondly, the anti-slip pad has a certain thickness, and when the anti-slip pad is installed on the positioning boss, the radial size of the complementary food processor will be further increased.
[0004] The application number is CN201821180117.2, and the invention name is "A food processor with convenient use", which discloses that a limiting rib for preventing the stewing cup from tilting is provided on the inner side wall of the supporting ring wall of the stewing cup rack to prevent the stewing cup from tilting after being placed in place, so as to ensure the stability of the stewing cup during operation. However, the technical problem existing in this technical solution is that firstly, the limiting rib protrudes from the inner side wall of the supporting ring wall. In order to ensure the capacity of the stewing cup, the radial size of the whole machine will be increased.
[0005] The above disclosed technical solutions all have the following technical problems: In order to achieve stable installation of the stirring cup or the stewing cup, and at the same time to ensure that the capacity of the stewing cup or the stirring cup remains unchanged, the radial size of the whole complementary food processor will be increased, reducing portability. Content of the Utility Model
[0006] The purpose of the utility model is to provide a complementary food processor with stable installation to solve the technical problem that the radial size of the complementary food processor increases while ensuring the capacity of the stewing cup or the stirring cup remains unchanged.
[0007] To solve the above technical problems, the utility model provides a complementary food processor with stable installation, including:
[0008] A cup body;
[0009] A bracket, installed at the top inlet of the cup body;
[0010] The stirring cup passes through the bracket on one side and is suspended inside the cup body, and is mounted on the bracket on the other side, and a stirring blade is installed therein.
[0011] One of the bracket and the stirring cup is recessed inward to form a card slot, and the stable-installed food processor further includes an anti-slip cushion block embedded in the card slot, and the other of the bracket and the stirring cup is in tight contact with the anti-slip cushion block.
[0012] Preferably, the card slot has a first card slot portion extending to both sides of the anti-slip cushion block, and a first steam gap is formed between the first card slot portion and the other of the bracket and the stirring cup.
[0013] Preferably, the bracket is recessed inward to form the card slot, and the top of the stirring cup extends away from the center to form a flanging, and the stirring cup is erected and pressed against the anti-slip cushion block through the flanging.
[0014] Preferably, a second steam gap is formed between the lower surface of the flanging and the upper surface of the bracket, and the second steam gap and the first steam gap are connected to form an air flow channel.
[0015] Preferably, the card slot is formed on the bracket, the anti-slip cushion block includes a cushion block body and a folded edge provided at one end of the cushion block body, the card slot includes a second card slot portion provided on the upper surface of the bracket and embedding the cushion block body, and a third card slot portion provided on the inner side surface of the bracket and embedding the folded edge, and the second card slot portion and the third card slot portion communicate with each other.
[0016] Preferably, a first card hole communicating with the second card slot portion is formed on the upper surface of the bracket, a second card hole communicating with the third card slot portion is formed on the inner side surface of the bracket, a first card block engaged with the first card hole is provided at the bottom of the cushion block body, and a second card block engaged with the second card hole is provided on the folded edge.
[0017] Preferably, a surrounding plate is provided along the circumference on the upper surface of the bracket, and the stable-installed food processor further includes a handle rotatably connected to the inner side wall of the surrounding plate, and a receiving groove for receiving the handle is formed by surrounding between the inner side wall of the surrounding plate and the upper surface of the bracket.
[0018] Preferably, the handle includes a protrusion protruding from the outer side surface of the handle, and a groove is formed on the inner wall surface of the protrusion.
[0019] Preferably, an opening for receiving the protrusion is formed on the side wall of the surrounding plate, and the opening communicates with the receiving groove.
[0020] Preferably, a plurality of ribs are circumferentially provided on the inner side wall of the accommodating cavity of the cup body, and the bracket is mounted on the ribs.
[0021] The beneficial effects of the present utility model are as follows:
[0022] 1. An installation-stable food processor provided by the present utility model forms a card slot by inward depression of one of the bracket and the mixing cup, and the anti-slip pad is embedded in the card slot, and the other of the bracket and the mixing cup is in tight fit with the anti-slip pad; since a mixing blade is installed in the mixing cup, during the stirring process of the mixing blade in the mixing cup, the mixing cup will move circumferentially along with the mixing blade, and relative movement will occur between the mixing cup and the bracket. Through the anti-slip pad, the friction between the mixing cup and the bracket is increased, so that the mixing cup can be stably mounted on the bracket. Secondly, the card slot is concave with respect to the surface of the bracket or the mixing cup, and the anti-slip pad is embedded in the card slot. Therefore, without changing the radial dimension and capacity of the mixing cup, the overall radial dimension of the food processor is greatly reduced.
[0023] 2. Through the first card slot part extending from the card slot to both sides of the anti-slip pad, a first steam gap is formed between the first card slot part and the other of the bracket and the mixing cup; when the card slot is formed on the bracket, the first card slot part is not used for embedding the anti-slip pad. Since the first card slot part is formed by inward depression on the bracket, a large gap is formed between the first card slot part and the outer wall surface of the mixing cup, and this gap is the first steam gap, which can allow the steam generated in the cup body to pass through; based on the use situation of the food processor in a small space, without changing the radial dimension of the mixing cup, that is, when ensuring the processing capacity of the mixing cup, through the first card slot part formed by inward depression of the anti-slip pad, more steam can pass through the gap between the bracket and the mixing cup, greatly improving the utilization rate of the internal space of the food processor. In addition, the steam efficiency entering the mixing cup is also improved.
[0024] 3. Based on the fact that a flanging is formed by extending the top of the mixing cup away from the center, the mixing cup is erected and abutted against the anti-slip pad through the flanging, and a second steam gap is formed between the lower surface of the flanging and the upper surface of the bracket, and the second steam gap and the first steam gap are connected to form an air flow channel; since the flanging extends radially outward, and the flanging is respectively arranged on the upper surface of the anti-slip pad and the upper surface of the bracket, and the steam continuously runs vertically upward, the extending direction of the first steam gap is almost the same as the rising direction of the steam, and the first steam gap is arranged vertically or approximately vertically. Based on the fact that the flanging extends radially outward, the second steam gap also extends radially outward, causing the air flow channel to suddenly turn. After the steam comes out along the second steam gap, the steam will collide with the inner wall surface of the bracket, and the bracket gives the steam a reaction force in the central direction, causing the steam path to turn again and enter the mixing cup, avoiding the upward running of the steam due to inertia and ensuring that the steam can effectively enter the mixing cup.
[0025] 4. Through the surrounding plate arranged circumferentially on the upper surface of the bracket, the handle is rotatably connected to the inner side wall of the surrounding plate. After the whole machine is installed, the handle is rotatably arranged in the accommodating groove. The inner side wall of the handle and the outer wall surface of the stirring cup are used to form a third steam gap, which becomes a part of the air flow channel, greatly compressing the space in the height direction of the food processor and greatly improving the utilization rate of the internal space of the food processor. Moreover, the surrounding plate has a certain height, and a fourth steam gap is formed between the inner wall surface of the surrounding plate and the inner and outer wall surfaces of the stirrer. The surrounding plate has a blocking effect on the steam, effectively preventing the steam from running disorderly to the radial outside of the bracket and allowing as much steam as possible to enter the first steam gap to ensure the amount of steam entering the stirring cup. Brief Description of the Drawings
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required to be used in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to these drawings.
[0027] Figure 1 It is a schematic structural diagram of a food processor with stable installation in one embodiment of the present invention.
[0028] Figure 2 It is Figure 1 a schematic cross-sectional view of the food processor shown.
[0029] Figure 3 It is Figure 1 an exploded schematic view of the bracket, handle and anti-slip pad shown.
[0030] Figure 4 It is Figure 3 an enlarged schematic view of the part A shown.
[0031] Figure 5 It is Figure 1 a schematic cross-sectional view of the bracket, handle and anti-slip pad shown.
[0032] Figure 6 It is Figure 3 a schematic structural diagram of the anti-slip pad shown.
[0033] Figure 7 It is Figure 1 a schematic structural diagram of the food processor from another perspective shown.
[0034] The names of the components marked in the figure are as follows:
[0035] 1. Bracket; 11. Enclosure panel; 111. Accommodating groove; 1112. Opening; 112. Second card slot portion; 1121. First card hole; 113. Third card slot portion; 1131. Second card hole; 114. First card slot portion; 12. Anti-slip cushion block; 121. Cushion block body; 122. Flange; 123. First latch; 124. Second latch; 13. Handle; 132. Protrusion; 1321. Groove; 2. Cup body; 21. Accommodating cavity; 22. Rib; 3. Stirring cup; 31. Flanging. Detailed implementation manners
[0036] The following further describes the present utility model in detail in conjunction with the accompanying drawings and specific embodiments.
[0037] Please refer to Figures 1-7 , an embodiment of the present utility model provides a food processor with stable installation, including a cup body 2, a bracket 1, a stirring cup 3, an anti-slip cushion block 12 and a handle 13.
[0038] The bracket 1 is arranged at the top inlet of the cup body 2; one side of the stirring cup 3 passes through the bracket 1 and is suspended in the cup body 2, and the other side is mounted on the bracket 1, and a stirring knife is installed therein; one of the bracket 1 and the stirring cup 3 is recessed inward to form a card slot, and the food processor with stable installation further includes an anti-slip cushion block 12 embedded in the card slot, and the other of the bracket 1 and the stirring cup 3 is in tight fit with the anti-slip cushion block 12.
[0039] It can be understood that, since a stirring knife is installed in the stirring cup 3, during the stirring process of the stirring knife in the stirring cup 3, the stirring cup 3 will move circumferentially along with the stirring knife, and relative movement will occur between the stirring cup 3 and the bracket 1. Through the anti-slip cushion block 12, the friction between the stirring cup 3 and the bracket 1 is increased, so that the stirring cup 3 can be stably mounted on the bracket 1. Secondly, the card slot is concave with respect to the surface of the bracket 1 or the stirring cup 3, and the anti-slip cushion block 12 is embedded in the card slot. Therefore, while ensuring the radial dimension and capacity of the stirring cup 3, the overall radial dimension of the food processor is greatly reduced.
[0040] It should be noted that the anti-slip cushion block 12 can be made of materials such as silica gel, as long as it can increase the friction. The shape of the anti-slip cushion block 12 can be in any form, for example: "L" shape, cuboid shape, etc. The number of card slots can be set to one or more along the inner circumference of the bracket 1 or along the outer circumference of the stirring cup 3, and the specific number can be adjusted according to actual needs. The number of anti-slip cushion blocks 12 is adapted to the number of card slots. The card slots can be arranged at intervals in the whole circumference.
[0041] The specific structure of the card slot: As Figures 3-5As shown, the card slot has a first card slot portion 114 extending to both sides of the anti-slip cushion block 12, and a first steam gap is formed between the first card slot portion 114 and the other one of the bracket 1 and the mixing cup 3.
[0042] It can be understood that in this embodiment, the card slot is formed on the bracket 1, and the first card slot portion 114 is not used for embedding the anti-slip cushion block 12. Since the first card slot portion 114 is recessed inward on the bracket 1, there is a large gap between the first card slot portion 114 and the outer wall surface of the mixing cup 3, and this gap is the first steam gap, which allows the steam generated in the cup body 2 to pass through; since the food processor needs to have both a space to accommodate the mixing cup 3 and a space to hold water, based on the use of a small space in the food processor, when the radial dimension of the mixing cup 3 is not changed, that is, when ensuring the processing capacity of the mixing cup 3, the first card slot portion 114 formed by the inward depression of the anti-slip cushion block 12 allows more steam to pass through the gap between the bracket 1 and the mixing cup 3, greatly improving the utilization rate of the internal space of the food processor. In addition, it also improves the steam efficiency entering the mixing cup 3.
[0043] Furthermore, the bracket 1 is recessed inward to form the card slot, and the top of the mixing cup 3 extends away from the center to form a flanging 31. The mixing cup 3 is erected and abutted against the anti-slip cushion block 12 through the flanging 31. It can be understood that the mixing cup 3 passes through the bracket 1 and is hung on a plurality of anti-slip cushion blocks 12 through the flanging 31, so that the contact area between the mixing cup 3 and the bracket 1 is increased, and the mixing cup 3 can be installed on the bracket 1 more stably. At this time, the mixing cup 3 is received in the cup body 2, and a water storage cavity is formed between the outer wall of the mixing cup 3 and the inner wall of the cup body 2.
[0044] Even further, a second steam gap is formed between the lower surface of the flanging 31 and the upper surface of the bracket 1, and the second steam gap and the first steam gap are connected to form an air flow channel.
[0045] It can be understood that as Figure 2As shown, steam comes out from the water storage cavity in the cup body 2, passes through the first steam gap and the second steam gap in sequence, and finally enters the mixing cup 3, so that the ingredients in the mixing cup 3 are steamed by the steam. Since the flanging 31 extends radially outward, and the flanging 31 is respectively arranged on the upper surface of the anti-slip pad 12 and the upper surface of the bracket 1, the steam continuously runs vertically upward. The extending direction of the first steam gap is almost the same as the rising direction of the steam, and the first steam gap is arranged vertically or approximately vertically. Based on the fact that the flanging 31 extends radially outward, the second steam gap also extends radially outward, causing the air flow channel to suddenly turn. After the steam comes out along the second steam gap, the steam will collide with the inner wall surface of the bracket 1, and the bracket 1 gives the steam a reaction force in the central direction, causing the steam path to turn again and enter the mixing cup 3, avoiding the inertial upward running of the steam and ensuring that the steam can effectively enter the mixing cup 3.
[0046] As Figures 5-6 shown, the specific structure and installation of the anti-slip pad 12: In this embodiment, the anti-slip pad 12 is in an "L" shape. The card slot is formed on the bracket 1. The anti-slip pad 12 includes a pad body 121 and a folded edge 122 provided at one end of the pad body 121. The card slot includes a second card slot part 112 provided on the upper surface of the bracket 1 and embedding the pad body 121, and a third card slot part 113 provided on the inner side surface of the bracket 1 and embedding the folded edge 122. The second card slot part 112 and the third card slot part 113 communicate with each other.
[0047] It can be understood that the pad body 121 is arranged horizontally and is in tight fit with the flanging 31 of the pad body 121; the folded edge 122 is arranged vertically and is in tight fit with the outer wall surface of the mixing cup 3, so that the contact area between the mixing cup 3 and the anti-slip pad 12 is greatly increased, and the mixing cup 3 can fully contact with the anti-slip pad 12, and further the mixing cup 3 is more stably installed on the bracket 1 through the anti-slip pad 12.
[0048] In order to make the installation of the anti-slip pad 12 more stable, as Figures 4-6 shown, a first card hole 1121 communicating with the second card slot part 112 is formed on the upper surface of the bracket 1, and a second card hole 1131 communicating with the third card slot part 113 is formed on the inner side surface of the bracket 1. A first card block 123 engaged with the first card hole 1121 is provided at the bottom of the pad body 121, and a second card block 124 engaged with the second card hole 1131 is provided on the folded edge 122.
[0049] It should be noted that the cross-section of the first card block 123 is triangular, and the triangle is the most stable; the cross-section of the second card block 124 is in a "T" shape.
[0050] It can be understood that when the anti-slip cushion block 12 needs to be assembled, first insert the first clamping block 123 into the first clamping hole 1121 to assemble the cushion block body 121 onto the second clamping groove. Subsequently, press the folded edge 122 against the third clamping groove and engage the second clamping block 124 with the second clamping hole 1131, thereby further realizing the firm assembly of the anti-slip cushion block 12.
[0051] Furthermore, an annular concave cavity is formed at the bottom of the bracket 1, and the concave cavity is communicated with both the first clamping hole 1121 and the second clamping hole 1131. When the first clamping block 123 is inserted into the first clamping hole 1121, the stepped surface of the first clamping block 123 can abut against the end surface of the concave cavity to achieve clamping and fixing; since the second clamping block 124 is in a "T" shape, when the second clamping block 124 is clamped into the second clamping hole 1131, the stepped surface of the second clamping block 124 can abut against the side surface of the concave cavity to achieve clamping and fixing. With such a setting, the assembly of the anti-slip cushion block 12 is made more firm.
[0052] In addition, as Figures 2-6 shown, a surrounding plate 11 is provided along the circumference on the upper surface of the bracket 1. The stable-installed food processor further includes a handle 13 rotatably connected to the inner side wall of the surrounding plate 11. A receiving groove 111 for accommodating the handle 13 is formed between the inner side wall of the surrounding plate 11 and the upper surface of the bracket 1.
[0053] It should be noted that the handle 13 can be in a semi-circular ring shape. When the handle 13 is needed, rotate the handle 13 so that the handle 13 is above the mixing cup 3, and the mixing cup 3 can be pulled out or inserted into the cup body 2 as a whole by grasping the handle 13; when the handle 13 is not needed, rotate the handle 13 and store it in the receiving groove 111. When the handle 13 is in the stored state, since the handle 13 is in a semi-circular ring shape, only a part of the inner side of the surrounding plate 11 is provided with the handle 13.
[0054] It can be understood that a third steam gap is formed between the inner side wall of the handle 13 and the outer wall surface of the mixing cup 3, and the second steam gap is communicated with the third steam gap. A fourth steam gap is formed between the inner side wall of the surrounding plate 11 and the outer wall surface of the mixing cup 3. Steam comes out from the water storage cavity in the cup body 2. One air flow channel sequentially passes through the first steam gap, the second steam gap, and the third steam gap and then enters the mixing cup 3, and the other air flow channel sequentially passes through the first steam gap, the second steam gap, and the fourth steam gap and then enters the mixing cup 3 to steam the ingredients in the mixing cup 3; the above two air flow channels are distributed on the left and right sides of the mixing cup 3.
[0055] Due to the limited internal space of the food processor, after the whole machine is installed, the handle 13 is rotatably arranged in the receiving groove 111. The inner side wall of the handle 13 and the outer wall surface of the mixing cup 3 are used to form a third steam gap, which becomes a part of the air flow channel, greatly compressing the space in the height direction of the food processor and greatly improving the utilization rate of the internal space of the food processor. Moreover, since the handle 13 can be used to form a steam gap, the utilization rate of the handle 13 is also improved. In addition, the surrounding plate 11 has a certain height, and a fourth steam gap is formed between the inner wall surface of the surrounding plate 11 and the inner and outer wall surfaces of the mixer. The surrounding plate 11 has a blocking effect on the steam, effectively preventing the steam from running disorderly to the radial outside of the bracket 1 and allowing as much steam as possible to enter the first steam gap to ensure the amount of steam entering the mixing cup 3.
[0056] Specifically, the handle 13 includes a protrusion 132 protruding from the outer side surface of the handle 13, and a groove 1321 is formed on the inner wall surface of the protrusion 132. Among them, an opening 1112 for accommodating the protrusion 132 is provided on the side wall of the surrounding plate 11, and the opening 1112 communicates with the receiving groove 111.
[0057] It can be understood that the surrounding plate 11 is in a circular ring shape, and the protrusion 132 is provided in the opening 1112. On the one hand, the protrusion 132 closes the opening 1112 to prevent the steam from leaking from the opening 1112, making it difficult to ensure the amount of steam entering the mixing cup 3. On the other hand, when using the handle 13, the protrusion 132 arranged in the opening 1112 is grasped, and the operator inserts the hand into the groove 1321, greatly improving the feasibility and convenience of operating the handle 13. Secondly, as Figure 3 shown, since the groove 1321 is recessed radially outward, the third steam gap increases at the position where the groove 1321 is provided on the handle 13. At the groove 1321, the efficiency of allowing the air flow to pass through can be improved; the handle 13 has a certain thickness, so the third steam gap is smaller than the fourth steam gap; that is to say, compared with the fourth steam gap, the speed of the steam passing through the third steam gap is slower. Therefore, the third steam gap is increased at the groove 1321 to average the overall steam speed of the third steam gap at the position where the handle 13 is provided, so that the steam passing speeds of the third steam gap and the fourth steam gap are similar and equal, enabling the food ingredients in the mixing cup 3 to be heated evenly and ensuring good taste of the supplementary food.
[0058] In order to install the bracket 1, a plurality of convex ribs 22 are circumferentially arranged on the inner side wall of the accommodating cavity 21 of the cup body 2, and the bracket 1 is erected on the convex ribs 22. The convex ribs 22 support the bottom surface of the bracket 1, enabling the bracket 1 to be set more stably on the top of the cup body 2, so that the mixing cup 3 erected on the bracket 1 can be stably suspended in the cup body 2.
[0059] Except for the above preferred embodiments, the technical solutions protected by the present utility model are not limited to the above embodiments. It should be noted that the combination of multiple technical solutions in any one embodiment, as well as the combination of the technical solutions in any one embodiment with the technical solutions in one or more other embodiments, are within the protection scope of the present utility model. Although the present utility model has been described in detail above with general descriptions and specific embodiments, on the basis of the present utility model, some modifications or improvements can be made, which are obvious to those skilled in the art. Therefore, these modifications or improvements made without departing from the spirit of the present utility model all belong to the scope of protection required by the present utility model.
Claims
1. A food supplement machine with stable installation, characterized in that: include: Cup body; A bracket is installed at the top entrance of the cup body; A stirring cup, one side of which passes through the bracket and is suspended in the cup body, and the other side is mounted on the bracket, and a stirring blade is installed in the stirring cup; One of the bracket and the mixing cup is recessed inward to form a slot, and the stably installed baby food machine also includes an anti-skid pad embedded in the slot, and the other of the bracket and the mixing cup is tightly matched with the anti-skid pad.
2. The stably installed baby food machine according to claim 1, characterized in that: The slot has a first slot portion extending toward both sides of the anti-slip pad, and a first steam gap is formed between the first slot portion and the other of the bracket and the blending cup.
3. The stably installed baby food machine according to claim 2, characterized in that: The bracket is recessed inwardly to form the slot, and the top of the mixing cup extends away from the center to form a flange, and the mixing cup is placed on the anti-slip pad by the flange.
4. The stably installed baby food machine according to claim 3, characterized in that: A second steam gap is formed between the lower surface of the flange and the upper surface of the bracket, and the second steam gap is connected to the first steam gap to form an air flow channel.
5. The stably installed baby food machine according to claim 1, characterized in that: The slot is formed on the bracket, the anti-slip pad includes a pad body and a folded edge arranged at one end of the pad body, the slot includes a second slot portion arranged on the upper surface of the bracket and embedded with the pad body, and a third slot portion arranged on the inner side surface of the bracket and embedded with the folded edge, the second slot portion and the third slot portion are connected to each other.
6. The stably installed baby food machine according to claim 5, characterized in that: A first clamping hole communicating with the second clamping slot is formed on the upper surface of the bracket, a second clamping hole communicating with the third clamping slot is formed on the inner side of the bracket, a first clamping block engaging with the first clamping hole is provided at the bottom of the cushion block body, and a second clamping block engaging with the second clamping hole is provided on the folded edge.
7. The stably installed baby food machine according to claim 1, characterized in that: The upper surface of the bracket is provided with a surrounding plate along the circumferential direction, and the stably installed baby food machine also includes a handle rotatably connected to the inner side wall of the surrounding plate, and a receiving groove for receiving the handle is formed between the inner side wall of the surrounding plate and the upper surface of the bracket.
8. The stably installed baby food machine according to claim 7, characterized in that: The handle comprises a protrusion protruding from the outer side surface of the handle, and a groove is formed on the inner wall surface of the protrusion.
9. The stably installed baby food machine according to claim 8, characterized in that: The side wall of the enclosure is provided with an opening for accommodating the protrusion, and the opening is communicated with the accommodating groove.
10. The stably installed baby food machine according to claim 1, characterized in that: A plurality of convex ribs are arranged on the inner side wall of the accommodating cavity of the cup body along the circumferential direction, and the bracket is mounted on the convex ribs.
Citation Information
Patent Citations
Food processor convenient to use
CN209091020U
Fixing structure of complementary food machine
CN220089294U