Non-stick rice storage spoon
The non-stick rice storage paddle, designed with a ring-shaped snap-fit component and an anti-stick structure, solves the problems of rice sticking and inconvenient base disassembly, achieving the effects of preventing rice from sticking, easy cleaning, and stable storage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2026-06-12
AI Technical Summary
Traditional rice scoops are prone to rice residue sticking and clumping on the scoop head when stored, which can cause hygiene problems if left for a long time. Existing non-stick designs are easily worn and the base is inconvenient to disassemble and clean.
Design a non-stick rice storage shovel. It adopts a ring-shaped snap-fit component to achieve a rotatable and detachable connection between the container and the base. The shovel head surface has an anti-stick structure, the base is equipped with a silicone anti-slip suction cup, the grip is ergonomically designed, and the modular components make it easy to clean.
It effectively prevents rice from sticking, improves cleaning convenience, extends service life, enhances stability, reduces the risk of bacterial growth, and improves human-computer interaction.
Smart Images

Figure CN224344783U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rice paddle technology, and in particular discloses a non-stick rice paddle for storing rice. Background Technology
[0002] Traditional rice scoops are prone to rice residue sticking and clumping on the tip when stored, which can cause hygiene problems if left for a long time. Existing anti-stick designs mostly achieve this through surface coatings, but these are prone to wear and tear and have a short lifespan. Commercially available rice paddles often lack dedicated storage structures, making them easy to slip and tip over when placed haphazardly on the countertop. Some designs with fixed bases often have drawbacks such as inconvenient disassembly and many hard-to-clean areas. Utility Model Content
[0003] In order to overcome the shortcomings and deficiencies of the existing technology, the purpose of this utility model is to provide a non-stick rice storage shovel, which solves the technical problems of easy wear of the surface coating of the existing rice scoop, and inconvenience of disassembling the base and rice scoop and making it difficult to clean.
[0004] To achieve the above objectives, this utility model provides a non-stick rice storage paddle, comprising a rice scoop body and a base for supporting the rice scoop body. The base is used to place the paddle on a surface of an external object. The rice scoop body includes a grip and a scoop head at the end of the grip. The surface of the scoop head is provided with an anti-stick structure to prevent the scoop head from sticking to the rice. The base includes a chassis for placing the paddle on a surface of an external object and a receiving compartment on the chassis. The receiving compartment has a first opening and a main receiving cavity communicating with the first opening. The end of the grip of the rice scoop body away from the scoop head is placed in the main receiving cavity through the first opening. A ring-shaped snap-fit assembly is provided between the chassis and the receiving compartment, enabling a rotatable and detachable connection between the receiving compartment and the chassis.
[0005] Furthermore, the bottom of the chassis is provided with a silicone anti-slip suction cup, which can be one, two, three or four.
[0006] Furthermore, the annular snap-fit assembly includes an outer convex ring disposed on the chassis, an inner concave annular groove disposed on the outer convex ring, and a guide rail disposed on the outer convex ring communicating with the inner concave annular groove. The extension direction of the guide rail is intersected with the opening direction of the inner concave annular groove. The annular snap-fit assembly also includes a second opening opened in the accommodating compartment and a first protrusion disposed on the inner wall of the accommodating compartment at the second opening. The second opening is adapted to the outer convex ring, and the first protrusion is used to snap-fit with the inner concave annular groove.
[0007] The accommodating compartment is detachably connected to the chassis through a combination of linear reciprocating and rotational motions. When the accommodating compartment performs the combined motion, the first protrusion enters the concave annular groove via the guide rail to achieve the engagement between the chassis and the accommodating compartment.
[0008] Furthermore, the edge of the concave annular groove opening is provided with a first rib that cooperates with the guide rail. The length direction of the first rib intersects with the rotation path of the first protrusion. The thickness of the side wall of the concave annular groove away from the chassis gradually increases along the forward movement path of the first protrusion.
[0009] Furthermore, the anti-stick structure includes strip-shaped ribs or columnar protrusions on the two working surfaces of the spoon head. The strip-shaped ribs extend along the direction in which the spoon head is inserted into the rice, and multiple strip-shaped ribs are arranged on two opposite surfaces of the spoon head.
[0010] Furthermore, the columnar protrusions can be square or cylindrical in shape.
[0011] Furthermore, the anti-stick structure also includes at least one nanocrystalline anti-stick composite layer coated on the working surface of the spoon head, the nanocrystalline anti-stick composite layer comprising alternating aluminum oxide transition layers and silicon carbide-polyetheretherketone composite surface layers.
[0012] Furthermore, there are multiple strip-shaped ribs, which are arranged parallel to each other along a direction that intersects with the direction in which the spoon head is inserted into the rice.
[0013] Furthermore, the grip includes a spoon handle, and the two opposite outer surfaces of the spoon handle are provided with a third groove that fits the fingertips of the human body. The third groove extends along the length of the spoon handle, and the cross-section of the third groove is crescent-shaped.
[0014] Furthermore, the grip also includes a spoon neck connected between the spoon handle and the spoon head. The spoon neck has an arc-shaped section that is easy for a person to hold, and the edge of the arc-shaped section forms a concave arc-shaped bend that is recessed towards the inside of the spoon head relative to the edge of the spoon handle.
[0015] Furthermore, the spoon head has a second groove, the central region of which has the greatest depth, and the bottom wall of the second groove gradually rises from its central region to the outer periphery to form a slope.
[0016] Furthermore, the spoon head is provided with multiple parallel and spaced strip-shaped water passage holes. The width W of the strip-shaped water passage holes satisfies: 0.5mm < W < minimum normal rice grain diameter. The strip-shaped holes are used by the user to filter rice grains when washing rice.
[0017] Furthermore, the accommodating compartment includes a protective shell and a placement component disposed within the protective shell. The protective shell is detachably connected to the chassis, and the placement component is detachably installed within the protective shell. The placement component has an auxiliary accommodating cavity communicating with a first opening, and the end of the gripping component away from the spoon head is placed in the auxiliary accommodating cavity through the first opening.
[0018] Furthermore, a water-receiving groove is provided in the middle of the outer convex ring, and a drain hole is provided at the bottom of the placement component. The bottom of the placement component is U-shaped, and the U-shaped bottom guides any water droplets that may be present on the grip to the drain hole, and then flows out from the drain hole to the water-receiving groove. This structural design makes it easy for the rice paddle to drain water and dry.
[0019] Furthermore, the protective shell includes a first shell and a second shell detachably connected to the first shell. The first shell and the second shell are provided with a fourth groove, and the two sides of the placement member are provided with limiting plates for extending into the fourth groove.
[0020] Furthermore, the first housing is provided with a plurality of first protrusions, and the second housing is provided with a first cylinder for accommodating the first protrusions. The first protrusions and the first cylinder are interference-fitted, and the first housing and the second housing are detachably connected by means of the interference fit between the first protrusions and the first cylinder.
[0021] Furthermore, the first housing is provided with a sealing ring surrounding its inner wall, and the second housing is provided with a fifth groove for receiving the sealing ring. The sealing ring is used to be placed into the fifth groove so that the first housing and the second housing are further sealed.
[0022] Furthermore, the inner wall of the fourth groove is provided with a second rib. The second rib extends along the direction in which the limiting plate is inserted into the fourth groove. The second rib can make the inner wall of the fourth groove and the limiting plate form an interference fit so that the two are more tightly fixed and prevent the placement part from moving relative to each other in the main cavity. The beneficial effects of this utility model are as follows: The non-stick rice storage scoop of this utility model achieves a rotatable and detachable connection between the container and the base through a ring-shaped snap-fit component. When the container is axially pressed in and rotated, the protrusion slides into the concave annular groove along the guide rail to form a mechanical lock. The anti-stick structure of the scoop head adopts an array of strip-shaped ribs parallel to the digging direction, combined with a stepped slope structure with a central depression, to reduce the contact area of rice and guide its aggregation, reducing the amount of rice adhering and avoiding scratching the coating of the rice cooker's inner pot. The arc-shaped grip groove of the grip provides multi-point contact stress dispersion through a crescent-shaped cross-section, and the inward-folded guide slope of the arc-shaped transition neck optimizes the operating angle. Strip-shaped water passages of a specific width are opened to form rice grain screening channels, and the elastic deformation of the silicone anti-slip suction cup achieves stable adsorption of the base. The modular design of the container allows for independent cleaning of each component, reducing the risk of bacterial growth. Each component, through the combination of material properties and structure, forms a composite functional system of synergistic anti-sticking, stable storage, and human-computer interaction. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of the non-stick rice storage shovel of this utility model.
[0024] Figure 2 This is an exploded structural diagram of the non-stick rice storage shovel of this utility model;
[0025] Figure 3 This is a schematic diagram of the bottom structure of the base of this utility model;
[0026] Figure 4 for Figure 3 A magnified structural diagram of part A in the middle;
[0027] Figure 5 This is an exploded view of the accommodating compartment of this utility model;
[0028] Figure 6 This is a schematic diagram of the structure of the placement component of this utility model;
[0029] Figure 7 This is a schematic diagram of the chassis structure of this utility model;
[0030] Figure 8 This is a schematic diagram of the structure of the rice spoon body of this utility model;
[0031] Figure 9 This is a longitudinal cross-sectional schematic diagram of the rice spoon body of this utility model;
[0032] Figure 10 for Figure 9 A magnified structural diagram of part B in the middle section;
[0033] Figure 11 This is a schematic diagram of the structure of the rice spoon body in another embodiment of the present invention.
[0034] The reference numerals in the figures include:
[0035] 1. Spoon body; 2. Base; 3. Ring snap-fit assembly; 4. Anti-stick structure; 11. Grip; 111. Spoon handle; 112. Third groove; 113. Spoon neck; 12. Spoon head; 121. Second groove; 122. Strip-shaped water passage hole; 123. Guide edge; 21. Base; 22. Container; 221. First opening; 222. Main container cavity; 23. Protective shell; 231. First shell; 232. Second shell; 233. Fourth groove; 234. Second rib; 24. Placement piece; 240. Drain hole; 241. Auxiliary container cavity; 242. Limiting plate; 31. Outer protruding ring; 310. Water receiving groove; 32. Inner concave ring groove; 321. First rib; 33. Guide rail; 34. Second opening; 35. First protrusion; 41. Strip-shaped protruding rib; 411. Guide slope. Detailed Implementation
[0036] To further illustrate the technical means and effects adopted by this utility model in order to achieve the intended utility model purpose, the following detailed description of the specific implementation methods, structure, features and effects of this utility model is provided in conjunction with the accompanying drawings and preferred embodiments.
[0037] Please see Figures 1 to 11 This utility model discloses a non-stick rice scoop for easy storage, comprising a scoop body 1 and a base 2 for supporting the scoop body 1. The base 2 is used to place the scoop on a support surface of an external object. The scoop body 1 includes a grip 11 and a scoop head 12 disposed at the end of the grip 11. The surface of the scoop head 12 is provided with an anti-stick structure 4 to prevent the scoop head 12 from sticking to the rice. Compared with traditional rice scoops, rice is less likely to stick when scooping rice, reducing rice waste and making cleaning easier. The base 2 provides stable support for the scoop and facilitates storage.
[0038] The base 2 includes a chassis 21 and a receiving compartment 22 disposed on the chassis 21. The chassis 21 is placed directly on the bearing surface of an external object. The receiving compartment 22 has a first opening 221 and a main receiving cavity 222 communicating with the first opening 221. The end of the grip 11 of the rice spoon body 1 away from the spoon head 12 can be placed in the main receiving cavity 222 through the first opening 221, so as to realize the orderly storage of the rice spoon, avoid the rice spoon being placed randomly and getting dusty, and keep the rice spoon clean.
[0039] Specifically, in another embodiment, the bottom of the chassis 21 is provided with anti-slip suction cups made of silicone material, and the number can be one, two, three, or four. By adhering to the bearing surface with the suction cups, the rice paddle can be prevented from shifting due to external force collisions or other reasons during placement, and the stability is greatly improved compared to the ordinary placement method.
[0040] In actual manufacturing, the anti-slip suction cup can be designed with adjustable height and suction power. For example, a threaded adjustment knob can be installed at the bottom of the suction cup. By rotating the knob, the contact area and pressure between the suction cup and the supporting surface can be changed, thereby adjusting the suction power. This allows it to adapt to supporting surfaces of different materials and surface smoothness, expanding the application scenarios of the rice paddle.
[0041] Specifically, an annular snap-fit assembly 3 is provided between the chassis 21 and the accommodating compartment 22. The annular snap-fit assembly 3 includes an outer convex ring 31 disposed on the chassis 21, an inner concave annular groove 32 on the outer convex ring 31, and a guide rail 33 communicating with the inner concave annular groove 32. The extension direction of the guide rail 33 is perpendicular to the opening direction of the inner concave annular groove 32. The accommodating compartment 22 is provided with a second opening 34 adapted to the outer convex ring 31, and a first protrusion 35 is located on the inner wall of the accommodating compartment 22 at the second opening 34. The first protrusion 35 can snap-fit with the inner concave annular groove 32. During installation, the accommodating compartment 22 is detachably connected to the chassis 21 through a compound movement of axial pressing (the first protrusion 35 enters the guide rail 33) and horizontal rotation (the first protrusion 35 enters the inner concave annular groove 32). That is, when the accommodating compartment 22 performs the compound movement, the first protrusion 35 enters the inner concave annular groove 32 via the guide rail 33 to achieve snap-fit. This detachable connection method makes it easy to disassemble and clean the compartment 22 and chassis 21, resulting in a more thorough cleaning compared to a monolithic structure.
[0042] Specifically, the opening edge of the concave annular groove 32 is provided with a first rib 321 that mates with the guide rail 33. The length direction of the first rib 321 is perpendicular to the rotation path of the first protrusion 35. The thickness of the sidewall of the concave annular groove 32 away from the chassis 21 gradually increases along the forward movement path of the first protrusion 35. The first rib 321 can be made of an elastic material. During the rotation of the accommodating chamber 22, after the first protrusion 35 is squeezed past the first rib 321, the first rib 321 can use its own elasticity to recover and stop the first protrusion 35, preventing the first protrusion 35 from moving out of the concave annular groove 32. Furthermore, the change in the sidewall thickness of the concave annular groove 32 makes the engagement more secure and less prone to loosening.
[0043] Specifically, in this embodiment, the inner ring groove, guide rail 33, first rib 321 and first protrusion 35 are each provided in 2 sets. In actual manufacturing, there can be 3 sets, 4 sets or 5 sets.
[0044] Specifically, the anti-stick structure 4 includes strip-shaped ribs 41 or columnar protrusions on the two working surfaces of the spoon head 12. The strip-shaped ribs 41 extend along the direction in which the spoon head 12 is inserted into the rice, and multiple strip-shaped ribs 41 are distributed on the two opposite surfaces of the spoon head 12, which can reduce the contact area between the spoon head 12 and the rice, making it less likely for the rice to stick. The columnar protrusions can be square or cylindrical structures, which also play the role of reducing the contact area and preventing sticking. Compared with the traditional smooth spoon head 12, the rice sticking situation is significantly improved.
[0045] Specifically, when there are multiple strip-shaped ribs 41, they can be arranged parallel to the direction that intersects with the direction in which the spoon head 12 is inserted into the rice, thereby reducing the contact area from multiple directions and enhancing the anti-stick effect.
[0046] Specifically, the anti-stick structure 4 also includes at least one nanocrystalline anti-stick composite layer coated on the working surface of the spoon head 12. This composite layer comprises alternating aluminum oxide-rich transition layers and silicon carbide-polyetheretherketone composite surface layers. The nanocrystalline anti-stick composite layer has excellent anti-stick properties, further reducing the adhesion between rice and the spoon head 12, while also possessing certain wear resistance, extending the service life of the rice paddle.
[0047] Specifically, the anti-stick structure 4 also includes a guide edge 123 surrounding the spoon head 12. The thickness of the guide edge 123 gradually decreases from the inside of the second groove 121 outwards. This design results in a flattened geometric configuration at the edge of the spoon head 12. In practical applications, when the rice paddle is inserted into a pile of rice, this flattened edge effectively reduces the resistance encountered when inserting the paddle. Based on the principles of fluid mechanics and solid mechanics, the smaller contact area and the gradually narrowing edge shape reduce the reaction force generated by the rice on the insertion action of the spoon head 12, allowing the rice paddle to cut into the rice more smoothly.
[0048] Meanwhile, the guide edge 123 plays a crucial role in guiding the rice. As the rice paddle moves deeper, the rice, guided by the guide edge 123, is directed to the area of the pre-set strip-shaped ribs 41 on the surface of the spoon head 12. Because the strip-shaped ribs 41 significantly reduce the actual contact area between the rice and the spoon head 12, an effective anti-sticking effect is achieved. This design, which precisely guides the rice to the anti-stick area, greatly enhances the overall anti-sticking performance of the rice paddle.
[0049] Specifically, in this embodiment, guide slopes 411 are provided at both ends of the strip-shaped rib along its length. The arrangement of the guide slopes 411, together with the structural features of the guide edge 123, makes the spoon head 12 more smoothly and unobstructed when inserted into the rice.
[0050] In addition, the spoon head 12 presents an elliptical projection when viewed from above. The elliptical outline of the spoon head 12 can better fit the shape of the bottom and wall of a common rice cooker. During the rice serving process, compared with other shapes, the elliptical spoon head 12 can more comprehensively and efficiently gather and collect rice, reduce rice residue, and further improve the practicality of the rice paddle.
[0051] Specifically, the grip 11 includes a spoon handle 111 located at the distal end of the spoon head 12 and a spoon neck 113 connecting the spoon handle 111 and the spoon head 12. The two opposing outer surfaces of the spoon handle 111 in the grip 11 are provided with third grooves 112 that conform to the fingertips of the user. The third grooves 112 extend along the length of the spoon handle 111 and have a crescent-shaped cross-section. This design makes holding the spoon handle 111 more comfortable and reduces fatigue during prolonged use, offering better ergonomics compared to ordinary straight handle designs.
[0052] Specifically, the spoon neck 113 has an arc-shaped section that is easy for the hand to grip, and the edge of the arc-shaped section forms a concave arc-shaped bend towards the inside of the spoon head 12 relative to the edge of the spoon handle 111. This design allows the user to exert more force when scooping rice at different angles, making the operation more flexible.
[0053] Specifically, in another embodiment, the end of the spoon handle 111 away from the spoon head 12 is provided with a hanging hole, through which the spoon body 1 can be hung on an external hook.
[0054] In actual production, a folding structure can be set at the neck 113 of the spoon, such as a hinge connection. When the rice paddle is not in use, the spoon head 12 can be folded to be parallel to the handle 111, reducing the overall space occupied by the rice paddle and making it easy to store. It is especially suitable for small kitchens or scenarios where people often carry rice paddles when they go out.
[0055] Specifically, the spoon head 12 has a second groove 121, the central area of which has the greatest depth, and the bottom wall gradually rises from the central area to the outer periphery to form a slope. This structural design is conducive to the concentration and holding of rice in the spoon head 12, and it is not easy to spill.
[0056] Specifically, in another embodiment, the spoon head 12 has multiple parallel, spaced-apart strip-shaped water passage holes 122, the width W of which satisfies 0.5mm < W < the minimum normal rice grain diameter. When rinsing rice, the strip-shaped water passage holes 122 can be used to filter rice grains, realizing the function of rinsing rice with a rice paddle, which is more integrated than using a separate rice rinsing tool.
[0057] Specifically, the receiving compartment 22 includes a protective shell 23 and a placement component 24 disposed within the protective shell 23. The protective shell 23 is detachably connected to the chassis 21, and the placement component 24 is detachably installed within the protective shell 23. The placement component 24 has an auxiliary receiving cavity 241 communicating with the first opening 221, and the end of the rice spoon body 1 holding member 11 away from the spoon head 12 is placed within the auxiliary receiving cavity 241. The protective shell 23 protects the placement component 24 and the rice paddle, and the detachable structure facilitates the maintenance and replacement of each component.
[0058] Specifically, the outer convex ring 31 has a water receiving groove 310 in the middle, and the bottom of the placement component 24 has a drain hole 240. The bottom of the placement component 24 is U-shaped. Water droplets that may be on the rice paddle will be guided to the drain hole 240 and then flow into the water receiving groove 310, so as to facilitate the draining of water from the rice paddle, keep the rice paddle dry, reduce bacterial growth, and extend the service life of the rice paddle.
[0059] Specifically, the protective shell 23 includes a first shell 231 and a second shell 232 detachably connected to the first shell 231. A fourth groove 233 is provided inside both the first shell 231 and the second shell 232. Limiting plates 242 are provided on both sides of the placement member 24, and the limiting plates 242 can extend into the fourth groove 233. The first shell 231 has multiple first protrusions, and the second shell 232 has a first cylindrical body for accommodating the first protrusions. The first protrusions and the first cylindrical body are interference-fitted to achieve a detachable connection between them.
[0060] The first housing 231 has a sealing ring surrounding its inner wall, and the second housing 232 has a fifth groove for accommodating the sealing ring, further enhancing the sealing effect. The inner wall of the fourth groove 233 has a second rib 234 extending along the insertion direction of the limiting plate 242, creating an interference fit between the inner wall of the fourth groove 233 and the limiting plate 242, preventing relative movement of the placement component 24 within the main accommodating cavity 222. Through these structures, the protective housing 23 is securely installed and has good sealing performance, effectively protecting the internal structure.
[0061] This utility model's rice paddle effectively solves the problem of rice sticking by incorporating an anti-stick structure 4 in the spoon head 12, including strip-shaped ribs 41 (or columnar protrusions) and a nano-crystalline anti-stick composite layer. The base 2 features an anti-slip suction cup, a ring-shaped locking component 3, and a detachable storage compartment 22, ensuring stable placement and easy cleaning. The handle 111 and neck 113 of the grip 11 are ergonomically designed for easy operation. The second groove 121 and strip-shaped drainage holes 122 in the spoon head 12 optimize the functions of serving and rinsing rice. The protective shell 23, placement component 24, and related connections and drainage structures inside the storage compartment 22 ensure the safety and dryness of the rice paddle during storage. Overall, this utility model's rice paddle is more functionally complete, easier to operate, and has a longer service life, representing a significant improvement over existing rice paddles.
[0062] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present utility model shall still fall within the scope of the present utility model.
Claims
1. A non-stick rice storage paddle, comprising a rice scoop body (1); characterized in that: It also includes a base (2) for supporting the rice spoon body (1), the rice spoon body (1) being placed on the bearing surface of an external object via the base (2), the rice spoon body (1) including a grip (11) and a spoon head (12) disposed at the end of the grip (11), the surface of the spoon head (12) being provided with an anti-stick structure (4) for preventing the spoon head (12) from sticking to the rice outside; the base (2) including a base plate (21) for placing on the bearing surface of an external object and a base plate (21) for supporting the rice spoon body (1). The container (22) has a first opening (221) and a main cavity (222) communicating with the first opening (221). The end of the grip (11) away from the spoon head (12) is placed in the main cavity (222) through the first opening (221). A ring-shaped snap-fit assembly (3) is provided between the chassis (21) and the container (22). The non-stick rice storage shovel achieves a rotatable and detachable connection between the container (22) and the chassis (21) through the ring-shaped snap-fit assembly (3).
2. The non-stick rice storage paddle according to claim 1, characterized in that: The annular snap-fit assembly (3) includes an outer convex ring (31) disposed on the chassis (21), an inner concave annular groove (32) disposed on the outer convex ring (31), and a guide rail (33) disposed on the outer convex ring (31) communicating with the inner concave annular groove (32). The extension direction of the guide rail (33) is intersected with the opening direction of the inner concave annular groove (32). The annular snap-fit assembly (3) also includes a second opening (34) opened in the accommodating compartment (22) and a first protrusion (35) disposed on the inner wall of the accommodating compartment (22) at the second opening (34). The second opening (34) is adapted to the outer convex ring (31), and the first protrusion (35) is used to snap-fit with the inner concave annular groove (32). The accommodating compartment (22) is detachably connected to the chassis (21) through a combination of linear reciprocating and rotational motion. When the accommodating compartment (22) performs the combined motion, the first protrusion (35) enters the concave annular groove (32) via the guide rail (33) to achieve the engagement of the chassis (21) and the accommodating compartment (22).
3. The non-stick rice storage paddle according to claim 2, characterized in that: The concave annular groove (32) has a first rib (321) at the opening edge that cooperates with the guide rail (33). The extension direction of the first rib (321) intersects with the rotation path of the first protrusion (35). The thickness of the side wall of the concave annular groove (32) away from the chassis (21) gradually increases along the positive movement path of the first protrusion (35).
4. The non-stick rice storage paddle according to claim 1, characterized in that: The anti-stick structure (4) includes a strip-shaped rib (41) on the surface of the spoon head (12), the strip-shaped rib (41) extending along the direction in which the spoon head (12) is inserted into the outside rice.
5. The non-stick rice storage paddle according to claim 4, characterized in that: The number of strip-shaped ribs (41) is multiple, and the multiple strip-shaped ribs (41) are arranged parallel to each other along the direction that intersects with the direction in which the spoon head (12) is inserted into the outside rice.
6. The non-stick rice storage paddle according to claim 1, characterized in that: The grip (11) includes a spoon handle (111), and the two opposite outer surfaces of the spoon handle (111) are provided with a third groove (112) that fits the fingertips of the human body. The third groove (112) extends along the length of the spoon handle (111), and the cross section of the third groove (112) is crescent-shaped.
7. The non-stick rice storage paddle according to claim 6, characterized in that: The grip (11) also includes a spoon neck (113) connected between the spoon handle (111) and the spoon head (12). The spoon neck (113) has an arc-shaped section that is easy for a person to hold. The edge of the arc-shaped section forms a concave arc-shaped bend relative to the edge of the spoon handle (111) that is recessed toward the inside of the spoon head (12).
8. The non-stick rice storage paddle according to claim 1, characterized in that: The spoon head (12) has a second groove (121), the central area of the second groove (121) has the greatest depth, and the bottom wall of the second groove (121) gradually rises from its central area to the outer periphery to form a slope.
9. The non-stick rice storage paddle according to claim 1, characterized in that: The accommodating compartment (22) includes a protective shell (23) and a placement member (24) disposed within the protective shell (23). The protective shell (23) is detachably connected to the chassis (21). The placement member (24) is detachably installed within the protective shell (23). The placement member (24) has an auxiliary accommodating cavity (241) communicating with a first opening (221). The end of the gripping member (11) away from the spoon head (12) is placed in the auxiliary accommodating cavity (241) of the placement member (24) via the first opening (221).