Folding type material taking spoon

By designing an adjustable-length folding scoop, the problems of non-adjustable length and inconvenience in scooping out residual powder in existing scoops are solved, improving ease of use and stability while saving costs.

CN121845407APending Publication Date: 2026-04-14BIOSTIME (CHANGSHA) NUTRITION FOOD CO LTD +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-23
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

The existing scoop cannot be adjusted in length, which affects its convenience. When the scoop body is cylindrical, it is inconvenient to scoop up excess powder.

Method used

A folding feeding spoon is designed, which can be rotated to a first position and a second position via a pivot handle to adjust the length of the feeding spoon. The spoon body posture is stabilized by reasonably setting the spoon mouth and auxiliary external surface, reducing the amount of material used. A reinforced locking mechanism is adopted to improve stability.

Benefits of technology

It enables flexible adjustment of the length of the scoop, improving convenience and ease of scooping out excess powder, saving costs, and improving product reliability and durability.

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Abstract

The invention discloses a folding type material taking spoon which comprises a spoon body, a supporting frame and a pivoting handle. A powder cavity is formed in the spoon body; the supporting frame is arranged on the spoon body; a matching groove is formed in the supporting frame; a holding end is formed on the pivoting handle; the pivoting handle is pivoted on the supporting frame and can rotate to a first position and a second position relative to the supporting frame; when the pivoting handle is located at the first position, the pivoting handle is embedded in the matching groove; when the pivoting handle is located at the second position, the holding end is located on an extension line, facing the direction away from the spoon body, of the extension track of the supporting frame; the spoon body is provided with a spoon mouth protruding outwards. By reasonably arranging the connection relation of the spoon body, the supporting frame and the pivoting handle, the pivoting handle can rotate to the first position and the second position, so that the length of the material taking spoon can be adjusted, different use requirements can be better met, the use convenience is improved, the material consumption can be reduced, the cost is saved, and residual powder can be conveniently taken by the spoon.
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Description

Technical Field

[0001] This invention relates to the field of food scoops, and more specifically to a folding food scoop. Background Technology

[0002] As accessories for powdered products such as milk powder and nutritional powder, scoops are commonly used to scoop out the powder. In today's increasingly competitive market, companies have higher requirements for powdered product accessories, often hoping to attract consumers and improve their user experience through differentiated designs.

[0003] With the diversification of accessories design for differentiated powder products, although the shapes of dispensing spoons on the market vary, most of them are integrally molded and generally have the following problems: the overall length cannot be adjusted, affecting the convenience of different uses; the spoon body is mostly cylindrical, making it inconvenient to scoop out the remaining powder when there is a small amount of powder left at the bottom of the container. Summary of the Invention

[0004] In order to overcome the shortcomings of the prior art, the purpose of this invention is to provide a folding scoop, which, by reasonably setting the connection relationship between the scoop body, the support frame and the pivot handle, allows the pivot handle to rotate to a first position and a second position to adjust the length of the scoop, thereby better meeting different usage needs and improving the convenience of use. At the same time, by reasonably setting the scoop mouth, it is convenient to scoop up residual powder.

[0005] The objective of this invention is achieved through the following technical solution: A folding feeding spoon includes a spoon body, a support frame, and a pivot handle. The spoon body forms a powder cavity. The support frame is disposed on the spoon body and has a mating groove. The pivot handle has a gripping end. The pivot handle is pivotally connected to the support frame and can rotate relative to the support frame to a first position and a second position. When the pivot handle is in the first position, it is embedded in the mating groove. When the pivot handle is in the second position, the gripping end is located on the extension line of the support frame's extension trajectory, which is directed away from the spoon body. The spoon body has an outwardly protruding spoon mouth. The outer side of the spoon mouth has a first auxiliary outer surface and a second auxiliary outer surface. The first auxiliary outer surface and the second auxiliary outer surface are perpendicular to each other. The pivot handle is provided with a locking part, which engages with the support frame when the pivot handle is in the second position. The pivot handle also includes a first end-mounted connecting portion, which is disposed between the locking portion and the gripping end.

[0006] The pivot handle is also equipped with a first reinforcing locking mechanism and a second reinforcing locking mechanism; when the pivot handle is rotated to the first position, the first reinforcing locking mechanism is used to lock onto the support frame; when the pivot handle is rotated to the second position, the second reinforcing locking mechanism is used to lock onto the support frame.

[0007] The mounting section is provided with a mounting slot for mounting and engaging with the support frame.

[0008] The mounting portion includes a first side wall portion, a second side wall portion, and a connecting wall portion; the first side wall portion and the second side wall portion are arranged opposite to each other, and the connecting wall portion is disposed between the first side wall portion and the second side wall portion; the first side wall portion, the second side wall portion, and the connecting wall portion form the mounting groove.

[0009] The pivot handle can rotate relative to the support frame about the rotation axis; the locking part and the gripping end are located on the same side of the rotation axis.

[0010] The end of the support frame away from the spoon body is used for locking with the mounting part.

[0011] The spoon body is provided with an exhaust hole that communicates with the powder chamber.

[0012] The support frame has a powder leakage hole between its end near the spoon body and the spoon body.

[0013] When the pivot handle is in the first position, the pivot handle is embedded and locked in the mating groove.

[0014] The outer side of the spoon nozzle also includes an arc surface, which connects the first auxiliary outer surface and the second auxiliary outer surface.

[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: This invention provides a folding scoop, which features a pivot handle pivotally connected to a support frame and rotatable relative to the support frame to a first position and a second position. When the pivot handle is in the first position, it is fitted into a mating groove. When the pivot handle is in the second position, the gripping end is located on the extension line of the support frame's trajectory, moving away from the scoop body. The length of the scoop can be adjusted to better meet different usage needs and improve ease of use. Furthermore, compared to existing folding scoops, this invention reduces material usage and saves costs. By rationally designing the scoop nozzle, the first and second auxiliary external surfaces adhere to the can body and bottom when scooping powder, maintaining the stability of the scoop's posture and preventing residual powder from scattering to the edges, thus facilitating the scooping of residual powder and improving the powder-holding experience. The combination of a first and a second reinforcing locking mechanism enhances the stability of the pivot handle in the first and second positions, improving product reliability and durability. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of the folding feeding spoon of the present invention; Figure 2 This is a schematic diagram of the back of the folding spoon of the present invention; Figure 3 This is an exploded view of the folding feeding spoon of the present invention; Figure 4 An internal schematic diagram of another embodiment of the pivot handle; Figure 5 This is a schematic diagram showing the adjustment component moving from the first locking position to the second locking position and the third locking position; Among them, 10. Spoon body; 11. Spoon nozzle; 12. First auxiliary outer surface; 13. Second auxiliary outer surface; 20. Support frame; 21. Mating groove; 30. Pivoting handle; 31. Locking part; 32. Locking groove; 33. First side wall part; 34. Second side wall part; 35. Connecting wall part; 36. First end connecting part; 37. Mating handle body; 38. Second end connecting part; 39. Holding end; 40. Holding unit; 51. Arc surface; 52. Powder cavity; 53. Vent hole; 61. Powder leakage hole; 73. First movable cavity; 74. 75. First embedding groove; 77. Holding arc surface; 78. First reinforced locking mechanism; 79. Second reinforced locking mechanism; 80. First locking seat; 81. First locking end; 82. Second locking seat; 83. Second movable cavity; 84. Second embedding groove; 85. Adjusting component; 86. First spring; 87. Second spring; 88. First inclined guide surface; 89. First vertical surface; 90. Second inclined guide surface; 91. Second vertical surface; 93. Adjusting rod; 94. First inclined mating surface; 95. Second inclined mating surface. Detailed Implementation

[0017] The present invention will now be further described in conjunction with the accompanying drawings and specific embodiments. It should be noted that, without conflict, the various embodiments or technical features described below can be arbitrarily combined to form new embodiments.

[0018] like Figure 1-3As shown, a folding feeding spoon includes a spoon body 10, a support frame 20, and a pivot handle 30; the spoon body 10 forms a powder cavity 52; the support frame 20 is disposed on the spoon body 10; a mating groove 21 is provided on the support frame 20; the pivot handle 30 forms a gripping end 39; the pivot handle 30 is pivotally connected to the support frame 20 and can rotate relative to the support frame 20 to a first position and a second position; when the pivot handle 30 is in the first position, it is embedded in the mating groove 21; when the pivot handle 30 is in the second position, the gripping end 39 is... On the extension line L of the extension trajectory of the support frame 20 in the direction away from the spoon body 10, that is, when the pivot handle 30 is in the second position, the holding end 39 extends out of the support frame 20 as the pivot handle 30 rotates, and is located on the extension line of the extension trajectory of the support frame 20 in the direction away from the spoon body 10; the spoon body 10 is provided with an outwardly protruding spoon mouth 11; the outer side of the spoon mouth 11 is provided with a first auxiliary outer surface 12 and a second auxiliary outer surface 13; the first auxiliary outer surface 12 and the second auxiliary outer surface 13 are arranged perpendicularly.

[0019] In use, the user rotates the pivot handle 30 relative to the support frame 20 to the first position, where the pivot handle 30 is embedded in the mating groove 21. In this state, the length of the scoop is shorter, making it easier to store and better meeting storage needs. It is also suitable for use when there is a large amount of milk powder in the initial stage. The user rotates the pivot handle 30 to the second position, so that the holding end 39 is located on the extension line of the support frame 20 in the direction away from the scoop body 10. In this state, the length of the scoop is relatively longer, making it suitable for use when only a small amount of milk powder remains in the milk powder can at the end of its use. The longer scoop avoids the consumer having to put their hands into the can, making it more convenient and hygienic, and better meeting the needs when there is only a small amount of milk powder left in the can. When scooping up a small amount of powder remaining at the bottom of the can, the first auxiliary external surface 12 and the second auxiliary external surface 13 can be used to scoop up the powder while adhering to the can body and bottom, allowing for quick removal of the remaining material. Therefore, the present invention provides a folding scooping spoon, which, by pivoting the pivot handle 30 onto the support frame 20 and allowing it to rotate relative to the support frame 20 to a first position and a second position, such that when the pivot handle 30 is in the first position, it is embedded in the mating groove 21, and when the pivot handle 30 is in the second position, the holding end 39 is located... The extension trajectory of the support frame 20 is directed toward the extension line away from the spoon body 10. By switching the pivot handle 30 between the first position and the second position, the length of the scooping spoon can be adjusted to better meet different usage needs and improve ease of use. At the same time, by reasonably setting the spoon mouth 11, when scooping powder, the first auxiliary outer surface 12 and the second auxiliary outer surface 13 are attached to the can body and the bottom of the can, which can maintain the stability of the posture of the spoon body 10, prevent residual powder from scattering to the edge, facilitate the scooping of residual powder, and further improve the powder holding experience.

[0020] The pivot handle 30 is provided with a locking part 31. When the pivot handle 30 is in the second position, the locking part 31 engages with the support frame 20. When the pivot handle 30 rotates to the second position, the locking part 31 engages with the support frame 20, so that the pivot handle 30 is stably maintained in the second position, improving the stability of use.

[0021] The locking part 31 is provided with a locking groove 32 for locking with the support frame 20. When the user rotates the pivot handle 30 from the first position to the second position, the locking part 31 locks with the support frame 20 through the locking groove 32, so that the pivot handle 30 is stably held in the second position.

[0022] The mounting portion 31 includes a first side wall portion 33, a second side wall portion 34, and a connecting wall portion 35. The first side wall portion 33 and the second side wall portion 34 are arranged opposite to each other, and the connecting wall portion 35 is disposed between the first side wall portion 33 and the second side wall portion 34. The first side wall portion 33, the second side wall portion 34, and the connecting wall portion 35 form the mounting groove 32. By combining the first side wall portion 33, the second side wall portion 34, and the connecting wall portion 35 into the mounting portion 31, the formation of the mounting groove 32 can be facilitated.

[0023] Specifically, the locking part 31 is locked to the end of the support frame 20 away from the spoon body 10. When the pivot handle 30 is rotated from the first position to the second position, the end of the support frame 20 away from the spoon body 10 is inserted into and locked in the locking groove 32 of the locking part 31, thereby realizing the locking part 31 and the support frame 20 locking together.

[0024] The pivot handle 30 can rotate relative to the support frame 20 about the rotation axis P; the locking part 31 and the gripping end 39 are located on the same side of the rotation axis. Specifically, the pivot handle 30 also includes a first end-positioned connecting part 36, which is disposed between the locking part 31 and the gripping end 39. By adopting the above structure, it is convenient to process and manufacture.

[0025] One end of the pivot handle 30 is formed as a gripping end 39, and the other end is formed as a mating handle body 37. When the pivot handle 30 is in the first position, the mating handle body 37 is embedded in the mating groove 21 at the end away from the spoon body 10, and cooperates with the end of the support frame 20 away from the spoon body 10 to form a gripping unit 40 for a person to hold. When the pivot handle 30 rotates relative to the support frame 20 to the first position, the user can hold the gripping unit 40 to scoop food. By mating the mating handle body 37 with the end of the support frame 20 away from the spoon body 10 to form a gripping structure for a person to hold, the gripping area can be increased, making it convenient to use. Furthermore, by further optimizing its size and curvature, the thumb can fit comfortably when holding, thereby further improving the user experience.

[0026] The pivot handle 30 also includes a second end-mounted connecting portion 38, which is disposed between the locking portion 31 and the mating handle body 37. By adopting the above structure, it is convenient to process and manufacture. The locking portion 31 is a raised ridge that protrudes relative to the back of the second end-mounted connecting portion 38 and the back of the first end-mounted connecting portion 36.

[0027] The end of the mating handle 37 near the second end connecting portion 38 is hinged to the support frame 20 for easy installation. Of course, the hinge position of the pivot handle 30 is not limited to this and can be set according to actual needs.

[0028] The pivot handle 30 can be hinged to the support frame 20 via a hinge or a hinge mechanism. Alternatively, the pivot handle 30 can be pivotally hinged to the support frame 20 via a pivot shaft. Specifically, the pivot handle 30 can be fixedly connected to the pivot shaft, and both sides of the pivot shaft can be rotatably inserted into through holes on both sides of the support frame 20, allowing the pivot handle 30 to pivot around the axis of the pivot shaft to a first position or a second position. The axis of the pivot shaft forms the rotation axis of the pivot handle 30.

[0029] When the pivot handle 30 is in the first position, the pivot handle 30 is embedded and locked in the mating groove 21. Thus, when the pivot handle 30 is in the first position, the pivot handle 30 can be stably maintained in the first position by being locked in the mating groove 21, thereby improving the reliability of use.

[0030] The outer side of the spoon nozzle 11 also includes an arc surface 51, which connects the first auxiliary outer surface 12 and the second auxiliary outer surface 13. By connecting the arc surface 51 between the first auxiliary outer surface 12 and the second auxiliary outer surface 13, the sharpness of the right-angled edge is avoided, preventing powder from being stuck due to the right-angled edge and remaining, and making the connection between the first auxiliary outer surface 12 and the second auxiliary outer surface 13 smoother, thus optimizing the powder flow path.

[0031] The spoon body 10 is provided with an exhaust hole 53 that communicates with the powder chamber 52. When scooping powder, the air in the powder chamber 52 is quickly discharged through the exhaust hole 53, which avoids inaccurate metering due to air pressure buildup and ensures the accuracy of the amount of powder scooped each time.

[0032] The support frame 20 has a powder leakage hole 61 between its end near the spoon body 10 and the spoon body 10. When the spoon body 10 scoops up excessive powder, the excess powder can be overflowed from the powder leakage hole 61 by gently scraping the mouth of the can or tilting the spoon body 10, thus achieving accurate material handling.

[0033] The gripping end 39 is provided with a gripping arc surface 75. By conforming the gripping arc surface 75 to the physiological curve of the thumb when gripping, the gripping comfort is improved, and the user experience is significantly optimized by combining ergonomic design. Preferably, the gripping arc surface 75 is provided with a raised logo structure, which can be a brand logo raised structure, which can improve the visual effect and increase brand promotion, and can also increase the friction when gripping, making it less slippery and improving the user experience.

[0034] Figure 4 Another embodiment of the pivot handle 30 is disclosed, which is related to... Figure 1The only difference in the pivot handle 30 is that, as shown in Figure 4, in this embodiment, the pivot handle 30 is further equipped with a first reinforcing locking mechanism 77 and a second reinforcing locking mechanism 78. When the pivot handle 30 rotates to the first position, the first reinforcing locking mechanism 77 is used to lock onto the support frame 20, further improving the stability of the pivot handle 30 in the first position; when the pivot handle 30 rotates to the second position, the second reinforcing locking mechanism 78 is used to lock onto the support frame 20, further improving the stability of the pivot handle 30 in the second position, and further improving the stability and reliability of use.

[0035] The first reinforced locking mechanism 77 includes a first locking seat 79; the first locking seat 79 has a first locking end 80, the pivot handle 30 is provided with a first movable cavity 73, the first locking seat 79 is movably installed in the first movable cavity 73, the support frame 20 is provided with a first embedding groove 74, the first embedding groove 74 is used for the first locking end 80 of the first locking seat 79 to be embedded, when the pivot handle 30 is rotated to the first position, by utilizing the pivot handle 30 to engage with the mating groove 21, and by utilizing the first locking end 80 of the first locking seat 79 to be embedded in the first embedding groove 74, the stability of the pivot handle 30 in maintaining the first position is improved, and its service life is extended, thereby improving the reliability and durability of the product.

[0036] The second reinforced locking mechanism 78 includes a second locking seat 81; the second locking seat 81 has a second locking end 82, a second movable cavity 83 is provided on the pivot handle 30, the second locking seat 81 is movably installed in the second movable cavity 83, and a second embedding groove 84 is provided on the support frame 20. The second embedding groove 84 is used for the second locking end 82 of the second locking seat 81 to be embedded. When the pivot handle 30 is rotated to the second position, the stability of the pivot handle 30 in maintaining the second position is improved by using the locking part 31 to engage with the support frame 20 and by using the second locking end 82 of the second locking seat 81 to be embedded in the second embedding groove 84, thereby extending its service life and improving the reliability and durability of the product.

[0037] An adjusting member 85 is also installed on the pivot handle 30. The adjusting member 85 can be adjusted to a first locking position, a second locking position, and a third locking position. When the adjusting member 85 is in the first locking position, the first locking end 80 of the first locking seat 79 extends out of the first movable cavity 73, and the second locking end 82 of the second locking seat 81 is located in the second movable cavity 83. When the adjusting member 85 is in the second locking position, the first locking end 80 of the first locking seat 79 is located in the first movable cavity 73, and the second locking end 82 of the second locking seat 81 is located in the second movable cavity 83. When the adjusting member 85 is in the third locking position, the first locking end 80 of the first locking seat 79 is located in the first movable cavity 73, and the second locking end 82 of the second locking seat 81 extends out of the second movable cavity 83. In use, when the pivot handle 30 is in the first position, the adjusting member 85 can be adjusted to the first locking position so that the first locking end 80 of the first locking seat 79 extends out of the first movable cavity 73 and is embedded in the first mounting groove 74, thereby locking the first reinforcing locking mechanism 77 onto the support frame 20. If it is necessary to rotate the pivot handle 30 from the first position to the second position, the pivot handle 30 can be adjusted to the second locking position. At this time, the first locking end 80 of the first locking seat 79 is located in the first movable cavity 73, and the second locking end 82 of the second locking seat 81 is located in the second movable cavity 83. The lock between the first reinforcing locking mechanism 77 and the support frame 20 can be released, and the pivot handle 30 can be rotated from the first position to the second position. At this time, the adjusting member 85 can be adjusted to the third locking position so that the second locking end 82 of the second locking seat 81 extends out of the second movable cavity 83 and is embedded in the second mounting groove 84, thereby locking the second reinforcing locking mechanism 78 onto the support frame 20.

[0038] The first reinforcing locking mechanism 77 further includes a first spring 86; the first spring 86 abuts against the cavity wall between the first locking seat 79 and the first movable cavity 73, and the first spring 86 provides an elastic force to move the first locking seat 79 toward the interior of the first movable cavity 73. The second reinforcing locking mechanism 78 further includes a second spring 87; the second spring 87 abuts against the cavity wall between the second locking seat 81 and the second movable cavity 83, and the second spring 87 provides an elastic force to move the second locking seat 81 toward the interior of the second movable cavity 83.

[0039] The adjusting member 85 has a first inclined guide surface 88 and a first vertical surface 89 on the side near the first mounting groove 74. The first inclined guide surface 88 is located below the first vertical surface 89, and the upper end point of the first inclined guide surface 88 coincides with the lower end point of the first vertical surface 89. From the upper end to the lower end of the first inclined guide surface 88, the first inclined guide surface 88 gradually tilts towards the direction closer to the first mounting groove 74. The adjusting member 85 has a second inclined guide surface 90 and a second vertical surface 91 on the side near the second mounting groove 84. The second vertical surface 91 is located below the second inclined guide surface 90, and the upper end point of the second vertical surface 91 coincides with the lower end point of the second inclined guide surface 90. From the upper end to the lower end of the second inclined guide surface 90, the second inclined guide surface 90 gradually tilts away from the direction away from the second mounting groove 84. Figure 5 As shown, when the adjusting member 85 is in the first locking position, the lower end point of the first inclined guide surface 88 abuts against the first locking seat 79, and the lower end point of the second vertical surface 91 abuts against the second locking seat 81; when the adjusting member 85 is in the second locking position, the upper end point of the first inclined guide surface 88 abuts against the first locking seat 79, and the upper end point of the second vertical surface 91 abuts against the second locking seat 81; when the adjusting member 85 is in the third locking position, the upper end point of the first vertical surface 89 abuts against the first locking seat 79, and the upper end point of the second inclined guide surface 90 abuts against the second locking seat 81. By adopting the above structure for the adjusting member 85, as the position of the adjusting member 85 is adjusted, the first locking seat 79 abuts against the corresponding end point of the corresponding surface of the adjusting member 85 near the first mounting groove 74 under the elastic force of the first spring 86, and the second locking seat 81 abuts against the corresponding end point of the corresponding surface of the adjusting member 85 near the second mounting groove 84 under the elastic force of the second spring 87. This controls the first locking end 80 of the first locking seat 79 to extend or retract into the first movable cavity 73, and the second locking end 82 of the second locking seat 81 to extend or retract into the second movable cavity 83, thereby achieving the adjustment of the adjusting member 85 when it is in the first mounting groove 74. When the first locking position is reached, the first locking end 80 of the first locking seat 79 extends out of the first movable cavity 73, and the second locking end 82 of the second locking seat 81 is located inside the second movable cavity 83; when the adjusting member 85 is in the second locking position, the first locking end 80 of the first locking seat 79 is located inside the first movable cavity 73, and the second locking end 82 of the second locking seat 81 is located inside the second movable cavity 83; when the adjusting member 85 is in the third locking position, the first locking end 80 of the first locking seat 79 is located inside the first movable cavity 73, and the second locking end 82 of the second locking seat 81 extends out of the second movable cavity 83.

[0040] The first locking seat 79 is provided with a first inclined mating surface 94 for sliding engagement with the first inclined guide surface 88; the second locking seat 81 is provided with a second inclined mating surface 95 for sliding engagement with the second inclined guide surface 90.

[0041] The adjusting component 85 is vertically and flexibly mounted on the pivot handle 30. The pivot handle 30 has a recessed portion, and an adjusting rod 93 is internally threaded into the recessed portion. The adjusting component 85 is rotatably fitted onto the adjusting rod 93. By rotating the adjusting rod 93, the rod can be helically rotated upwards or downwards, causing the adjusting component 85 to move linearly upwards or downwards, thereby adjusting the adjusting component 85 to the corresponding locking position. To further improve ease of use, a scale can be provided on the adjusting rod 93, allowing the user to rotate the adjusting rod 93 to the desired position by referring to the corresponding scale. During operation, a screwdriver or other tools can be used to rotate the adjusting rod 93 for easier operation.

[0042] The above embodiments are merely preferred embodiments of the present invention and should not be construed as limiting the scope of protection of the present invention. Any non-substantial changes and substitutions made by those skilled in the art based on the present invention shall fall within the scope of protection claimed by the present invention.

Claims

1. A folding spoon for dispensing ingredients, characterized in that: The device includes a spoon body, a support frame, and a pivot handle. The spoon body forms a powder cavity. The support frame is disposed on the spoon body and has a mating groove. The pivot handle has a gripping end. The pivot handle is pivotally connected to the support frame and can rotate relative to the support frame to a first position and a second position. When the pivot handle is in the first position, it is embedded in the mating groove. When the pivot handle is in the second position, the gripping end is located on the extension line of the support frame's extension trajectory, which is directed away from the spoon body. The spoon body has an outwardly protruding spoon spout. The outer side of the spoon spout has a first auxiliary outer surface and a second auxiliary outer surface. The first auxiliary outer surface and the second auxiliary outer surface are perpendicular to each other. The pivot handle is provided with a locking part, which engages with the support frame when the pivot handle is in the second position. The pivot handle also includes a first end-mounted connecting portion, which is disposed between the locking portion and the gripping end.

2. The folding spoon as described in claim 1, characterized in that: The pivot handle is also equipped with a first reinforcing locking mechanism and a second reinforcing locking mechanism; when the pivot handle is rotated to the first position, the first reinforcing locking mechanism is used to lock onto the support frame; when the pivot handle is rotated to the second position, the second reinforcing locking mechanism is used to lock onto the support frame.

3. The folding spoon as described in claim 1, characterized in that: The mounting section is provided with a mounting slot for mounting and engaging with the support frame.

4. The folding spoon as described in claim 3, characterized in that: The mounting portion includes a first side wall portion, a second side wall portion, and a connecting wall portion; the first side wall portion and the second side wall portion are arranged opposite to each other, and the connecting wall portion is disposed between the first side wall portion and the second side wall portion; the first side wall portion, the second side wall portion, and the connecting wall portion form the mounting groove.

5. The folding spoon as described in claim 4, characterized in that: The pivot handle can rotate relative to the support frame about the rotation axis; the locking part and the gripping end are located on the same side of the rotation axis.

6. The folding spoon as described in claim 1, characterized in that: The end of the support frame away from the spoon body is used for locking with the mounting part.

7. The folding spoon as described in claim 1, characterized in that: The spoon body is provided with an exhaust hole that communicates with the powder chamber.

8. The folding spoon as described in claim 1, characterized in that: The support frame has a powder leakage hole between its end near the spoon body and the spoon body.

9. The folding spoon as described in claim 1, characterized in that: When the pivot handle is in the first position, the pivot handle is embedded and locked in the mating groove.

10. The folding spoon as described in claim 1, characterized in that: The outer side of the spoon nozzle also includes an arc surface, which connects the first auxiliary outer surface and the second auxiliary outer surface.