Storage box and beauty suite

By using a circular arc structure in the beauty device storage box to replace the hinge connection, the problem of high cost of existing storage boxes is solved, and a more stable and lower-cost rotating connection between the lid and the body is achieved, with a simple appearance.

CN223736666UActive Publication Date: 2025-12-30HANGZHOU ULIKE TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520187526.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2025-12-30
Estimated Expiration
2035-02-06

AI Technical Summary

Technical Problem

Existing beauty device storage boxes use hinge connections, which increases costs and hinders cost reduction.

Method used

The lid and body are connected by a circular arc fit structure, eliminating the need for a pivot. The lid and body are connected by a circular arc groove and a circular arc component, which slide in the circumferential direction.

Benefits of technology

It reduces the cost of the storage box, avoids the problem of the hinge getting damp and rusting, and provides a more stable rotation connection without affecting the simplicity of the appearance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a storage box and a beauty suite, the storage box comprises a box body and a box cover, and the box body is provided with a storage groove for placing articles; the box cover is rotationally connected with the box body through an arc matching structure and used for sealing or opening a groove opening of the containing groove. The circular arc matching structure comprises a circular arc groove and a circular arc piece which are concentrically arranged, the circular arc groove and the circular arc piece are arranged on the box body and the box cover respectively, the circular arc piece is arranged in the circular arc groove, and the circular arc piece and the circular arc groove are in sliding fit in the circumferential direction of the circular arc groove. According to the technical scheme, the cost of the storage box is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of beauty equipment, in particular to a storage box and a beauty kit. BACKGROUND

[0002] At present, in order to facilitate the storage of the beauty instrument, the merchants have launched the beauty instrument storage box, and the user can put the beauty instrument into the storage box for storage when not using the beauty instrument, so that the beauty instrument can be kept clean.

[0003] The storage box usually comprises a box body and a box cover, the box body is provided with a storage slot for accommodating the beauty instrument, and the box cover is used for opening or closing the storage slot of the box body. In order to facilitate the user to operate the box cover to open or close, the box cover and the box body are connected by rotation, that is, the box cover is rotated relative to the box body to realize opening or closing. In the existing structure of the storage box, the box cover and the box body are connected by rotation through a rotating shaft. Since the rotating shaft is used, the cost of this rotation connection scheme is relatively high, which is not conducive to reducing the cost of the storage box. CONTENT OF THE UTILITY MODEL

[0004] The main purpose of the present application is to provide a storage box, which aims to reduce the cost of the storage box.

[0005] In order to achieve the above purpose, the storage box provided by the present application comprises:

[0006] The box body is provided with a storage slot for placing articles;

[0007] The box cover is connected with the box body by an arc matching structure, and is used for covering or opening the slot opening of the storage slot;

[0008] The arc matching structure comprises a concentrically arranged arc groove and an arc piece, the arc groove and the arc piece are arranged on the box body and the box cover respectively, the arc piece is arranged in the arc groove, and the arc piece and the arc groove are slidingly matched in the circumferential direction of the arc groove.

[0009] In some embodiments, the arc matching structure is arranged close to the first side end of the box cover, and the rotation axis of the box cover is located at the first side end or adjacent to the first side end;

[0010] And / or,

[0011] The box cover is connected with the box body by one arc matching structure, and the arc matching structure is arranged close to the middle position of one side end of the box cover; or, the box cover is connected with the box body by a plurality of arc matching structures, and each arc matching structure is distributed along one side end of the box cover.

[0012] And / or,

[0013] The box body is provided with a disinfection module for disinfecting the articles in the receiving groove.

[0014] In some embodiments, the arcuate fitting structure is located on the side of the box cover facing the box body, two ends of the arcuate member in the circumferential direction are a first end and a second end respectively, and two ends of the arcuate groove in the circumferential direction are a third end and a fourth end respectively.

[0015] The arcuate member is arranged on a first box member, the arcuate groove is arranged on a second box member, the first end is an end of the arcuate member close to the first box member, and the third end is an end of the arcuate groove close to the first box member; wherein the first box member and the second box member are in turn the box cover and the box body, or the first box member and the second box member are in turn the box body and the box cover.

[0016] When the arcuate member slides along the arcuate groove from the fourth end to the third end, the box cover rotates around its rotation axis to gradually open the slot opening of the receiving groove.

[0017] In some embodiments, the third end opening is provided, and a anti-disengagement structure is arranged between the arcuate member and the arcuate groove to prevent the arcuate member from disengaging from the arcuate groove at the third end.

[0018] In some embodiments, the anti-disengagement structure includes a limiting portion and an avoiding groove.

[0019] The limiting portion is arranged on one side of the arcuate member, the avoiding groove is arranged on an inner side wall of the arcuate groove and extends in the circumferential direction of the arcuate groove, the limiting portion is located in the avoiding groove, one end of the avoiding groove close to the third end is provided with a blocking portion, and the limiting portion is spaced from the blocking portion when the box cover covers the slot opening of the receiving groove.

[0020] Alternatively, the limiting portion is arranged on an inner side wall of the arcuate groove, the avoiding groove is arranged on one side of the arcuate member and extends in the circumferential direction of the arcuate member, the limiting portion is located in the avoiding groove, one end of the avoiding groove close to the second end is provided with a blocking portion, and the limiting portion is spaced from the blocking portion when the box cover covers the slot opening of the receiving groove.

[0021] In some embodiments, the limiting portion is a protruding strip arranged in the axial direction of the arcuate member, one end of the protruding strip is provided with a reinforcing rib arranged in the circumferential direction of the arcuate member, and one end of the avoiding groove provided with the blocking portion is provided with an avoiding notch avoiding the reinforcing rib.

[0022] In some embodiments, the groove bottom of the avoiding groove is provided with a protruding part spaced from the blocking part, when the limiting part moves to the space between the protruding part and the blocking part, the protruding part clamps the edge of the side of the limiting part away from the blocking part, so as to maintain the current state of the box cover.

[0023] In some embodiments, the third end opening is provided, and the first end is connected to the first box piece;

[0024] Or, the third end opening is provided, the first end is connected to the first box piece, the axial length of the circular arc piece is matched with the axial length of the circular arc groove, and the two ends in the axial direction of the circular arc groove are provided with a sealing structure.

[0025] Or, the two ends in the axial direction of the circular arc groove are provided with an opening structure, the two ends in the axial direction of the circular arc piece are provided with a connecting part outside the circular arc groove, and the circular arc piece is connected to the first box piece through the connecting part.

[0026] In some embodiments, the circular arc piece is connected to the side of the box cover facing the box body, and the circular arc groove is arranged on the box body.

[0027] In some embodiments, at least one circular arc concave surface and a splicing piece corresponding to the circular arc concave surface are arranged on the box body, the splicing piece has a circular arc convex surface opposite to and spaced from the corresponding circular arc concave surface, and the circular arc concave surface and the circular arc convex surface form the circular arc groove.

[0028] In some embodiments, the splicing piece comprises an assembling part and a splicing part with the circular arc convex surface, the assembling part is positioned by a positioning structure and fixed by a fixing structure.

[0029] In some embodiments, the positioning structure comprises at least two positioning columns spaced along the axial direction of the circular arc groove and a positioning hole corresponding to the positioning column, the positioning column and the positioning hole are arranged on the box body and the assembling part respectively, and each positioning column is inserted into the corresponding positioning hole.

[0030] And / or, the fixing structure comprises at least one first screw hole arranged on the assembling part, at least one second screw hole arranged on the box body, and at least one locking screw, the first screw hole and the second screw hole correspond to each other, the locking screw corresponds to the first screw hole, and the locking screw is screwed and fixed in the corresponding first screw hole and second screw hole.

[0031] And / or,

[0032] The splicing pieces are multiple, and the assembling parts of the splicing pieces are different in structure.

[0033] And / or,

[0034] The material of the splicing piece is self-lubricating material.

[0035] The application also provides a beauty kit, comprising a beauty instrument and the storage box.

[0036] The technical scheme of the storage box of the application adopts the arrangement of the circular-arc groove and the circular-arc piece on the box body and the box cover respectively, the circular-arc piece is arranged concentrically with the circular-arc groove, and the circular-arc piece is arranged in the circular-arc groove and is in sliding fit with the circular-arc groove in the circumferential direction, so that when the circular-arc piece slides along the circumferential direction of the circular-arc groove, the box cover rotates relative to the box body, that is, the sliding connection of the circular-arc piece and the circular-arc groove realizes the rotary connection of the box cover and the box body. Compared with the rotary connection scheme of the box cover and the box body through the rotating shaft in the prior art, the scheme of the storage box of the application eliminates the rotating shaft and reduces the cost of the storage box. BRIEF DESCRIPTION OF DRAWINGS

[0037] In order to more clearly illustrate the technical scheme in the embodiments of the application or the prior art, the drawings needed in the description of the embodiments or the prior art will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative effort on the basis of the drawings shown.

[0038] Figure 1 Structure diagram of an embodiment of the storage box of the application in the closed state of the box cover;

[0039] Figure 2 Structure diagram of an embodiment of the storage box of the application in the closed state of the box cover; Figure 1 Top view of the storage box shown;

[0040] Figure 3 Structure diagram of an embodiment of the storage box of the application in the closed state of the box cover; Figure 2 Sectional view in A-A direction of the storage box shown;

[0041] Figure 4 Structure diagram of an embodiment of the storage box of the application in the closed state of the box cover; Figure 2 Sectional view in B-B direction of the storage box shown;

[0042] Figure 5 Structure diagram of an embodiment of the box body of the storage box of the application;

[0043] Figure 6 Top view of an embodiment of the box body of the storage box of the application;

[0044] Figure 7 Structure diagram of an embodiment of the box body of the storage box of the application; Figure 6 Sectional view in C-C direction of the box body of the storage box shown;

[0045] Figure 8 Structure diagram of an embodiment of the box body of the storage box of the application; Figure 6 Sectional view in D-D direction of the box body of the storage box shown;

[0046] Figure 9 Fig. 1 is a schematic structural view of an embodiment of a box cover of a storage box according to the present application;

[0047] Figure 10 Fig. 2 is a plan view of the box cover shown in Fig. 1; Figure 9

[0048] Figure 11 Fig. 3 is a sectional view along the direction of E-E in Fig. 2; Figure 10

[0049] Figure 12 Fig. 4 is a sectional view along the direction of F-F in Fig. 2. Figure 10

[0050] Fig. 5 is a schematic structural view of an embodiment of a splicing piece of a storage box according to the present application; Figure 13

[0051] Fig. 6 is a schematic structural view of another embodiment of a splicing piece of a storage box according to the present application; Figure 14

[0052] Fig. 7 is a schematic structural view of an embodiment of a box body of a storage box according to the present application; Figure 15

[0053] Fig. 8 is a schematic structural view of an embodiment of a storage box according to the present application in an open state of the box cover; Figure 16

[0054] Fig. 9 is a top view of the storage box shown in Fig. 8; Figure 17 Figure 16 Fig. 10 is a sectional view along the direction of E-E in Fig. 9;

[0055] Figure 18 Fig. 11 is a sectional view along the direction of F-F in Fig. 9. Figure 17

[0056] Figure 19 Figure 17 DETAILED DESCRIPTION

[0057] The technical solutions in the embodiments of the present application will be described clearly and completely in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0058] It should be noted that all the directionality indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative position relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directionality indications also change accordingly. ​​​​​​

[0059] In addition, the description related to "first", "second" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first", "second" can explicitly or implicitly include at least one of the features. In addition, "and / or" throughout the text includes three schemes, for example, A and / or B includes A technical scheme, B technical scheme, and A and B technical scheme; in addition, the technical schemes of each embodiment can be combined with each other, but it must be based on the realization of ordinary skilled in the art, when the combination of technical schemes appears contradictory or unachievable, it should be considered that the combination of technical schemes does not exist, and is not within the protection scope required by the present application.

[0060] At present, the storage box on the market usually includes two main structures of box body and box cover, the box cover and the box body are rotatably connected through the rotating shaft, and the box cover is rotated relative to the box body to realize opening or closing. In the existing rotating connection scheme of the box cover of the storage box, the rotating shaft is used, the cost of the rotating scheme is high, which is not conducive to reducing the cost of the storage box.

[0061] In order to reduce the cost of the storage box, the inventor of the present application proposes a new storage box scheme, which adopts an innovative rotating connection scheme to save the use of the rotating shaft. The present application proposes a storage box, which is mainly used for storing beauty instruments (such as hair removal instruments, radio frequency beauty instruments, ultrasonic beauty instruments, etc.), of course, it can also be used for storing other articles.

[0062] Combined with reference Figures 1 to 8 , and Figures 16 to 19 In the present embodiment, the storage box includes a box body 10 and a box cover 20, the box body 10 is provided with a storage slot 11 for placing articles (such as beauty instruments), and the box cover 20 is used for covering or opening the slot opening of the storage slot 11; the box cover 20 is rotatably connected with the box body 10 through an arc matching structure. The arc matching structure includes concentrically arranged arc grooves 30 and arc pieces 40, that is, the centers of the arc grooves 30 and the centers of the arc pieces 40 are coincident. The arc grooves 30 and the arc pieces 40 are respectively arranged on the box body 10 and the box cover 20; the arc grooves 30 can be arranged on the box body 10, and the arc pieces 40 can be arranged on the box cover 20, or the arc grooves 30 can be arranged on the box cover 20, and the arc pieces 40 can be arranged on the box body 10; in the drawings of the present embodiment, the arc grooves 30 are arranged on the box body 10, and the arc pieces 40 are arranged on the box cover 20.

[0063] The arc piece 40 is arranged in the arc groove 30, and the arc piece 40 and the arc groove 30 are in sliding fit in the circumferential direction of the arc groove 30, that is, the arc piece 40 and the arc groove 30 are in sliding connection, and the sliding direction is the circumferential direction of the arc groove 30. When the arc piece 40 slides relative to the arc groove 30 along the circumferential direction of the arc groove 30, it is actually that the arc piece 40 rotates relative to the arc groove 30 about the axial line where the arc center of the arc piece 40 is located, that is, the arc piece 40 rotates relative to the arc groove 30 about the axial line where the arc center of the arc piece 40 is located, and the box cover 20 rotates relative to the box body 10 about the axial line where the arc center of the arc piece 40 is located. Therefore, the sliding connection of the arc piece 40 and the arc groove 30 realizes the rotary connection of the box cover 20 and the box body 10. The rotary axis of the box cover 20 relative to the box cover 20 is the axial line where the arc center of the arc piece 40 is located.

[0064] The box cover 20 can be rotatably connected to the box body 10 by one arc fitting structure, or by multiple arc fitting structures (for example, two arc fitting structures in the embodiment). When the box cover 20 is rotatably connected to the box body 10 by one arc fitting structure, the arc fitting structure can be arranged near the middle of the side end of the box cover 20, so that the rotary connection of the box cover 20 and the box body 10 is more stable. When the box cover 20 is rotatably connected to the box body 10 by multiple arc fitting structures, the arc fitting structures can be distributed along the side end of the box cover 20 at intervals, that is, along the rotary axis of the box cover 20 at intervals. The arc piece 40 can be a long arc plate or an arc piece, or other arc-shaped structural member.

[0065] The technical scheme of the storage box of the embodiment is that the arc groove 30 and the arc piece 40 are arranged on the box body 10 and the box cover 20 respectively, the arc piece 40 and the arc groove 30 are concentrically arranged, and the arc piece 40 is arranged in the arc groove 30 and in sliding fit with the arc groove 30 in the circumferential direction, so that when the arc piece 40 slides along the circumferential direction of the arc groove 30, the box cover 20 rotates relative to the box body 10, that is, the rotary connection of the box cover 20 and the box body 10 is realized by the sliding connection of the arc piece 40 and the arc groove 30. Compared with the prior art that the rotary connection of the box cover 20 and the box body 10 is realized by a rotating shaft, the technical scheme of the storage box of the embodiment eliminates the rotating shaft and reduces the cost of the storage box.

[0066] In particular, compared with the scheme that the box cover 20 and the box body 10 are rotatably connected by a metal rotating shaft, the technical scheme of the embodiment can also avoid the problem of rust caused by moisture, so that the rotary connection of the box cover 20 and the box body 10 is more stable and reliable.

[0067] In addition, in the prior art storage box, the rotation axis of the box cover is the center line of the rotating shaft, so that when the rotation axis of the box cover is arranged outside the storage box, the rotating shaft needs to be installed outside the storage box (i.e., exposed outside the storage box), which reduces the simplicity of the appearance of the storage box and is not beautiful. However, in the storage box of the present embodiment, the rotation axis of the box cover 20 is the axial line of the arc center of the circular arc piece 40, i.e., the rotation axis of the box cover 20 is not on the circular arc matching structure, and the rotation axis of the box cover 20 is spaced apart from the circular arc piece 40 and the circular arc groove 30. Therefore, when the rotation axis of the box cover 20 is arranged outside the storage box, the circular arc piece 40 and the circular arc groove 30 do not need to be installed outside the sterilization box together with the rotation axis, but can be arranged inside the storage box, without affecting the simplicity of the appearance of the storage box. Therefore, under the premise of ensuring the simplicity of the appearance of the storage box, the rotation axis of the box cover 20 can be arranged inside or outside the storage box, which is more conducive to meeting the design requirements of the storage box.

[0068] In some embodiments, the box body 10 of the storage box can be provided with a sterilization module for sterilizing the articles in the storage groove 11. When the user puts the articles (such as beauty instruments) that need to be sterilized into the storage groove 11, the sterilization module can be started to sterilize the articles in the storage groove 11. In this way, the storage box not only meets the storage requirements of the articles, but also can sterilize the articles while storing them. The sterilization module can be a device that generates ultraviolet rays, or a device that uses other sterilization and disinfection methods.

[0069] With reference to Figure 3 , Figure 4 , Figures 9 to 12 In some embodiments, the box cover 20 includes a first side end 21 (which can be any end of the box cover 20), and the circular arc matching structure is arranged close to the first side end 21 of the box cover 20. The rotation axis of the box cover 20 (i.e., the box cover 20) can be located on the first side end 21, or the rotation axis of the box cover 20 is adjacent to the first side end 21. When the rotation axis of the box cover 20 is located on or adjacent to the first side end 21, during the rotation of the box cover 20 around the rotation center, the first side end 21 of the box cover 20 moves very little because it is adjacent to the rotation axis, which can greatly reduce the movement space reserved around the first side end 21 of the box cover 20, so that the box cover 20 and the box body 10 are more tightly assembled, the gap is smaller, and the appearance is more beautiful. Of course, in other embodiments, the rotation axis of the box cover 20 can also be arranged at other positions.

[0070] With reference to Figures 1 to 4 , Figure 7 , Figure 8 , Figure 11 and Figure 12In some embodiments, the arcuate fitting structure is located on the side of the box cover 20 facing the box body 10, so that when the box cover 20 is closed (i.e., when the slot of the cover storage groove 11 is closed), the arcuate fitting structure does not protrude outward, and the appearance of the storage box is more simple and elegant.

[0071] In the embodiments of the present application, the two ends of the arcuate member 40 in the circumferential direction are respectively denoted as a first end 41 and a second end 42, and the two ends of the arcuate groove 30 in the circumferential direction are respectively denoted as a third end 31 and a fourth end 32. The arcuate member 40 is arranged in a first box member, and the arcuate groove 30 is arranged in a second box member. The first box member and the second box member are in turn the box cover 20 and the box body 10, or the first box member and the second box member are in turn the box body 10 and the box cover 20. Among them, the first end 41 is the end of the arcuate member 40 close to the first box member (i.e., the second end 42 is the end of the arcuate member 40 away from the first box member), and the third end 31 is the end of the arcuate groove 30 close to the first box member (i.e., the fourth end 32 is the end of the arcuate groove 30 away from the first box member). In the drawings of the embodiments of the present application, the first box member is taken as the box cover 20, and the second box member is taken as the box body 10. When the arcuate member 40 slides along the arcuate groove 30 from the fourth end 32 to the third end 31, the box cover 20 rotates around the rotation axis to gradually open the slot of the storage groove 11; when the arcuate member 40 slides along the arcuate groove 30 from the third end 31 to the fourth end 32, the box cover 20 rotates around the rotation axis to gradually close the slot of the storage groove 11.

[0072] Referring to Figures 3 to 8 and Figure 19 In some embodiments, the third end 31 of the arcuate groove 30 is open. Since the arcuate member 40 slides along the arcuate groove 30 from the fourth end 32 to the third end 31 during the opening process of the box cover 20, in order to prevent the box cover 20 from being opened at too large an angle, causing the entire arcuate member 40 to be separated from the third end 31 of the arcuate groove 30, and further causing the box cover 20 to fall off the box body 10, the present embodiment adopts a separation-preventing structure 50 between the arcuate member 40 and the arcuate groove 30 to prevent the arcuate member 40 from being separated from the third end 31 of the arcuate groove 30. In this way, it is ensured that the arcuate member 40 does not separate from the arcuate groove 30 during the opening process of the box cover 20, thereby ensuring the stability of the rotational connection between the box cover 20 and the box body 10.

[0073] Referring to Figure 3 , Figure 4 , Figure 7 , Figure 8 and Figure 19In some embodiments, the anti-detachment structure 50 includes a limiting part 51 and a relief groove 52; the limiting part 51 is disposed on one side of the arc member 40, and the relief groove 52 extends along the circumference of the arc groove 30 and is disposed on an inner side wall of the arc groove 30. The limiting part 51 is located in the relief groove 52, and a blocking part 521 is provided at one end of the relief groove 52 near the third end 31; when the box cover 20 seals the opening of the storage groove 11, the limiting part 51 and the blocking part 521 are spaced apart, that is, there is a certain gap between the limiting part 51 and the blocking part 521. This gap allows the arc member 40 to slide a certain distance along the arc groove 30 to open the box cover 20. The anti-detachment structure 50 of this embodiment prevents the arc-shaped component 40 from detaching from the arc groove 30 from the third end 31. The principle is as follows: When the arc-shaped component 40 slides along the arc groove 30 from the fourth end 32 to the third end 31, causing the lid 20 to gradually open the storage slot 11, the limiting part 51 moves along the arc-shaped component 40. That is, the limiting part 51 gradually moves towards the blocking part 521 along the clearance groove 52. After the arc-shaped component 40 slides a certain distance along the arc groove 30 from the fourth end 32 to the third end 31, the limiting part 51 moves to the position of the blocking part 521, and the blocking part 521 abuts against the limiting part 51 (see reference). Figure 19 This prevents the arc-shaped component 40 from continuing to slide in the current direction. At this time, the second end 42 of the arc-shaped component 40 is still inside the arc groove 30. In this way, it is ensured that the arc-shaped component 40 will not completely slide out of the arc groove 30 from the fourth end 32 to the third end 31 along the arc groove 30.

[0074] In some embodiments, when there is a need for the lid 20 to rotate and open to a larger angle, the limiting part 51 can be set close to the second end 42 of the arc member 40. In this way, when the lid 20 closes the opening of the storage groove 11, the distance between the limiting part 51 and the blocking part 521 is larger, so that the arc member 40 can slide a longer distance along the arc groove 30 from the fourth end 32 to the third end 31, that is, the lid 20 can rotate and open to a larger angle around the rotation axis.

[0075] It should be noted that, in the figures of this embodiment, the limiting part 51 is provided on the concave side 43 of the arc member 40 and the clearance groove 52 is provided on the arc convex surface 302 of the arc groove 30 as an example; of course, in other embodiments, the anti-detachment structure 50 can also be configured such that the limiting part 51 is provided on the convex side 44 of the arc member 40 and the clearance groove 52 is provided on the arc concave surface 301 of the arc groove 30.

[0076] In addition, in other embodiments, the setting scheme of the limiting portion 51 and the avoiding groove 52 of the anti-disengagement structure 50 can also be that the limiting portion 51 is arranged on an inner side wall of the circular-arc groove 30, and the avoiding groove 52 is arranged on one side of the circular-arc piece 40 in a circumferential direction of the circular-arc piece 40, the limiting portion 51 is located in the avoiding groove 52, and one end of the avoiding groove 52 close to the second end 42 is provided with a blocking portion 521; when the box cover 20 covers the slot opening of the receiving groove 11, the limiting portion 51 is spaced from the blocking portion 521. The principle of the anti-disengagement structure 50 in this embodiment is that, during the process that the circular-arc piece 40 slides along the circular-arc groove 30 from the fourth end 32 to the third end 31 to gradually open the slot opening of the receiving groove 11, the blocking portion 521 moves along with the circular-arc piece 40, that is, the blocking portion 521 gradually moves close to the limiting portion 51 along the circular-arc groove 30, and when the circular-arc piece 40 slides a certain distance along the circular-arc groove 30 from the fourth end 32 to the third end 31, the blocking portion 521 moves to the position of the limiting portion 51, the limiting portion 51 abuts against the blocking portion 521, so that the circular-arc piece 40 cannot continue to slide in the current direction, and at this time, the second end 42 of the circular-arc piece 40 is still in the circular-arc groove 30. In this way, it is ensured that the circular-arc piece 40 cannot completely slide out of the circular-arc groove 30 from the fourth end 32 to the third end 31.

[0077] In combination with reference to Figure 9 and Figure 14 In some embodiments, the limiting portion 51 is a protruding strip arranged in an axial direction of the circular-arc piece 40, one end of the protruding strip is provided with a reinforcing rib 511 arranged in a circumferential direction of the circular-arc piece 40, the reinforcing rib 511 is used to enhance the strength of the protruding strip, so that the protruding strip is not easily deformed under stress; and one end of the avoiding groove 52 provided with the blocking portion 521 is provided with an avoiding notch 522 avoiding the reinforcing rib 511, so that the reinforcing rib 511 does not hinder the sliding of the circular-arc piece 40 when the circular-arc piece 40 slides along the circular-arc groove 30. In this embodiment, the scheme of the protruding strip and the reinforcing rib 511 of the limiting portion 51 ensures the strength and reliability of the anti-disengagement structure 50. Of course, in other embodiments, the limiting portion 51 can also have other structures, for example, the limiting portion 51 is a boss, or the limiting portion 51 includes a plurality of bosses distributed in the axial direction of the circular-arc piece 40.

[0078] In some embodiments, the circular-arc piece 40 includes a first circular-arc segment 401 and a second circular-arc segment 402 arranged in sequence in an axial direction of the circular-arc piece 40, the protruding strip and the reinforcing rib 511 are arranged on the concave side 43 of the second circular-arc segment 402, that is, the first circular-arc segment 401 is used for sliding cooperation with the circular-arc groove 30, and the second circular-arc segment 402 is used for limiting the sliding stroke of the circular-arc piece 40 to prevent the circular-arc piece 40 from disengaging from the circular-arc groove 30.

[0079] In combination with reference to Figure 8 and Figure 13In some embodiments, the groove bottom of the avoidance groove 52 is provided with a protruding part 523 which is spaced apart from the blocking part 521. When the limiting part 51 moves to between the protruding part 523 and the blocking part 521, the protruding part 523 clamps the edge of the side of the limiting part 51 which is away from the blocking part 521, so as to maintain the current state of the box cover 20. In the process of rotating and opening the box cover 20, the limiting part 51 gradually moves to be close to the blocking part 521. When the limiting part 51 moves to between the protruding part 523 and the blocking part 521 with the gradual opening of the box cover 20, if the box cover 20 is released at this time, the protruding part 523 will clamp the edge of the side of the limiting part 51 which is away from the blocking part 521, so as to prevent the limiting part 51 from moving away from the blocking part 521, that is, to prevent the box cover 20 from automatically falling back, so as to maintain the current state of the box cover 20. In this way, when using the storage box, the user does not need to hold the box cover 20 by hand to prevent the box cover 20 from falling back, and the user can complete the putting and taking of the articles with one hand, and the operation is more convenient.

[0080] In some embodiments, the protruding part 523 can be provided in plurality and spaced apart between the limiting part 51 and the blocking part 521. In this way, when the box cover 20 is opened at different angles, there is a corresponding protruding part 523 clamping the edge of the side of the limiting part 51 which is away from the blocking part 521, so as to prevent the box cover 20 from falling back. When opening or closing the box cover 20, the user applies a force to the box cover 20, so that the limiting part 51 passes over the protruding part 523, thereby opening or closing the box cover 20.

[0081] The protruding part 523 can be a convex rib, the surface of the convex rib can be an arc surface or a guide slope, or the protruding part 523 can be a hemispherical convex point, so that the user only needs to exert a small force to make the limiting part 51 pass over the protruding part 523, thereby realizing the opening or closing of the box cover 20.

[0082] The protruding part 523 can also be an elastically arched piece, for example, the groove bottom of the avoidance groove 52 is provided with a mounting hole, and the elastically arched piece is installed in the mounting hole. The arched part of the elastically arched piece is located outside the mounting hole. In the process of opening and closing the box cover 20, the limiting part 51 passes over the elastically arched piece by extruding the arched part of the elastically arched piece to make the elastically arched piece retract into the mounting hole. When the limiting part 51 passes over the elastically arched piece, the elastically arched piece is reset. The use of the elastically arched piece in the protruding part 523 can reduce the friction loss with the limiting part 51, has a longer service life, and is more stable.

[0083] Of course, in other embodiments, the protruding part 523 can also be on the inner side wall of the circular arc groove 30, and the protruding part 523 is spaced apart from the third end 31 of the circular arc groove 30. In the process of opening the box cover 20, when the limiting part 51 moves to pass over the protruding part 523, the protruding part 523 can clamp the edge of the limiting part 51, which can also achieve the effect of preventing the box cover 20 from falling back.

[0084] With reference to Figure 3 , Figure 4 , Figure 11 , Figure 12 , Figure 18 and Figure 19 , in the drawings of the embodiments, the first box piece is taken as the box cover 20. In some embodiments, the connection scheme of the circular arc piece 40 and the first box piece can be that the third end 31 of the circular arc groove 30 is provided with an opening, and the circular arc piece 40 is directly connected to the first box piece through the first end 41 thereof; and the first end 41 of the box body 10 is located outside the circular arc groove 30. In addition, in some embodiments, the axial length of the circular arc piece 40 can be adapted to the axial length of the circular arc groove 30, and both ends of the circular arc groove 30 in the axial direction are provided with openings, so that the circular arc piece 40 and the circular arc groove 30 cannot move relative to each other in the axial direction, thereby avoiding the relative movement of the box cover 20 and the box body 10 in the direction of the rotation axis thereof, and the connection of the box cover 20 and the box body 10 is more stable.

[0085] In some embodiments, the connection scheme of the circular arc piece 40 and the first box piece can also be that both ends of the circular arc groove 30 in the axial direction are provided with openings, both ends of the circular arc piece 40 in the axial direction are provided with connecting portions located outside the circular arc groove 30, and the circular arc piece 40 is connected to the first box piece through the connecting portions. In this connection scheme, the circular arc piece 40 can be completely arranged in the circular arc groove 30, and the third end 31 of the circular arc groove 30 can be provided with an opening or be sealed.

[0086] With reference to Figures 3 to 15 , in the drawings of the embodiments, the circular arc piece 40 is connected to the side of the box cover 20 facing the box body 10, and the circular arc groove 30 is arranged in the box body 10. It should be noted that in other embodiments, the arrangement positions of the circular arc piece 40 and the circular arc groove 30 can be interchanged.

[0087] In some embodiments, the circular arc piece 40 and the box cover 20 can be arranged integrally, which can save the process of mounting the circular arc piece 40 and the box cover 20, improve the assembly efficiency of the storage box, and make the connection of the circular arc piece 40 and the box cover 20 more firm, thereby improving the stability of the rotational connection of the box cover 20 and the box body 10. Of course, in other embodiments, the circular arc piece 40 and the box cover 20 can also be arranged separately, and the circular arc piece 40 can be fixed on the box cover 20 by adhesion or be locked on the box cover 20 by screws, etc.

[0088] With reference to Figures 3 to 8 , and Figures 13 to 15In some embodiments, the box body 10 is provided with at least one circular-arc concave surface 301 and a corresponding splicing piece 12 (two circular-arc concave surfaces 301 and two splicing pieces 12 are taken as an example in the embodiment), the splicing piece 12 has a circular-arc convex surface 302 opposite to the corresponding circular-arc concave surface 301 and spaced apart from the corresponding circular-arc concave surface 301, and a circular-arc groove 30 is formed between each circular-arc concave surface 301 and the circular-arc convex surface 302 of the corresponding splicing piece 12, the circular-arc concave surface 301 and the circular-arc convex surface 302 are two opposite inner side walls of the circular-arc groove 30. In the embodiment, the circular-arc groove 30 is spliced by the splicing piece 12 and the circular-arc concave surface 301, so that when the box cover 20 and the box body 10 are assembled, the splicing piece 12 can be separated from the circular-arc concave surface 301 of the box body 10 first, and then the circular-arc piece 40 of the box cover 20 is assembled with the circular-arc concave surface 301, and then the splicing piece 12 is assembled to the concave surface side 43 of the circular-arc piece 40; or the splicing piece 12 can be separated from the circular-arc concave surface 301 first, and then the splicing piece 12 is assembled with the circular-arc piece 40, and then the splicing piece 12 and the circular-arc piece 40 are installed on the box body 10 together; so that the assembly of the box cover 20 and the box body 10 is more convenient and fast, and the assembly efficiency of the storage box is improved.

[0089] With reference to Figure 7 , Figure 8 , Figure 13 and Figure 14 In some embodiments, the splicing piece 12 includes an assembly part 121 and a splicing part 122 with a circular-arc convex surface 302, the assembly part 121 is positioned by a positioning structure and fixed by a fixing structure with the box body 10. The splicing part 122 is used to splice with the circular-arc concave surface 301 provided on the box body 10 to form the circular-arc groove 30, and the assembly part 121 is used to fix with the box body 10 to keep the splicing part 122 and the circular-arc groove relatively fixed. In the embodiment, the assembly part 121 and the box body 10 are positioned by the positioning structure, which ensures the accuracy of the installation of the assembly part 121 and the box body 10, so that the circular-arc groove 30 formed between each circular-arc concave surface 301 and the circular-arc convex surface 302 of the corresponding splicing part 122 is more standard and unified, and the cooperation between the circular-arc piece 40 and the circular-arc groove 30 is smoother, that is, the rotational connection between the box cover 20 and the box body 10 is smoother.

[0090] In some embodiments, the material of the splicing piece 12 can be selected from self-lubricating materials. In this way, the friction between the circular-arc piece 40 and the circular-arc convex surface 302 of the splicing piece 12 is reduced, and the sliding between the circular-arc piece 40 and the circular-arc convex surface 302 of the splicing piece 12 becomes smoother and smoother as the storage box is used for a longer time. In addition, the circular-arc piece 40 can also be made of self-lubricating material, which further improves the sliding smoothness between the circular-arc piece 40 and the circular-arc groove 30, and makes the rotation of the box cover 20 relative to the box body 10 smoother.

[0091] With reference to Figure 7 ,Figure 8 、 Figures 13 to 15 In some embodiments, the positioning structure includes at least two positioning posts 61 and positioning holes 62 corresponding to the positioning posts 61, which are axially spaced along the circular arc groove 30, and are respectively arranged on the box body 10 and the assembly part 121, and each positioning post 61 is inserted into the corresponding positioning hole 62. In the drawings of the present embodiment, the positioning structure is taken as an example including two positioning posts 61 and two positioning holes 62, and of course, in other embodiments, the positioning structure can also include a larger number of positioning posts 61 and positioning holes 62, such as three positioning posts 61 and three positioning holes 62. The shape of the positioning post 61 is not limited, which can be a cylindrical shape, an elliptical cylindrical shape, a triangular prism shape, a quadrangular prism shape, a prismless shape, etc., and the shape of the positioning hole 62 is adapted to the shape of the positioning post 61; in the drawings of the present embodiment, the positioning post 61 is taken as an example of a cylindrical shape, and the positioning hole 62 is a circular hole. In the scheme of the present embodiment, when the splicing piece 12 is installed with the box body 10, each positioning hole 62 of the assembly part 121 is respectively aligned with the corresponding positioning post 61 and is sleeved in, the positioning of the assembly part 121 and the box body 10 is completed, and then the assembly part 121 and the box body 10 are fixed by the fixing structure, that is, the accurate installation of the splicing piece 12 and the box body 10 is realized.

[0092] Referring to Figures 13 to 15 In some embodiments, the fixing structure includes at least one first screw hole 71 arranged on the assembly part 121, at least one second screw hole 72 arranged on the box body 10, and at least one locking screw. The first screw hole 71 and the second screw hole 72 correspond one by one, and the locking screw corresponds one by one with the first screw hole 71, and is screwed and fixed in the corresponding first screw hole 71 and second screw hole 72. After the assembly part 121 and the box body 10 are positioned by the positioning structure, at this time, each first screw hole 71 is aligned with the corresponding second screw hole 72, each locking screw is screwed and inserted into the corresponding first screw hole 71 and second screw hole 72, so as to lock and fix the assembly part 121 and the box body 10, that is, the installation of the splicing piece 12 and the box body 10 is completed; in the present embodiment, the fixing structure adopts the fixing mode of the locking screw, which is simple and convenient, and has good firmness. It should be noted that in other embodiments, the fixing structure can also be other structural schemes, such as being fixed by a buckle structure.

[0093] In some embodiments, the plurality of splicing pieces 12 are provided, i.e., a plurality of arc grooves 30 are provided; each arc groove 30 can have some differences, for example, the axial length of each arc groove 30 is different, or the position of the setting of the avoidance groove 52 in the arc groove 30 is different, etc. In order to avoid the installation error of the splicing piece 12, the structure of the assembly part 121 of each splicing piece 12 is different in the embodiment, for example, the length of the assembly part 121 is different, the shape of the assembly part 121 is different, or the spacing between the positioning holes 62 on the assembly part 121 is different, so that the assembly part 121 of each splicing piece 12 can only be assembled to the corresponding position, which has a foolproof effect, and can effectively avoid the defective products caused by the installation error of the splicing piece 12, and improve the yield.

[0094] The application also provides a beauty kit, which comprises a beauty instrument and the storage box described above, and the storage groove of the storage box is used for placing the beauty instrument. The specific structure of the storage box is referred to the above embodiments, which will not be described here. The beauty kit of the application has all the technical effects brought by the technical solutions of all the embodiments of the storage box, which will not be described here.

[0095] The technical features of the above embodiments can be combined arbitrarily. In order to make the description simple, all possible combinations of the technical features in the above embodiments are not described, but as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present application.

[0096] The above is only the preferred embodiments of the application, and does not limit the patent scope of the application. Any equivalent structural transformation, direct / indirect application in other related technical fields based on the application concept, the contents of the specification and the drawings of the application are included in the patent protection scope of the application.

Claims

1. A storage case characterized by comprising: The utility model relates to a box, including: Box body, be equipped with the receiving groove for placing article; Box cover, the box cover is connected with the box body through the circular arc cooperation structure and is used for covering or opening the slot of receiving groove; The circular arc cooperation structure includes concentric circular arc groove and circular arc piece, and the circular arc groove and the circular arc piece are equipped with the box body and the box cover respectively, the circular arc piece is equipped in the circular arc groove, and the circular arc piece and the circular arc groove are slidably connected in the circumferential direction of the circular arc groove.

2. The storage box according to claim 1, wherein The circular arc cooperation structure is close to the first side end of the box cover, and the rotation axis of the box cover is located in the first side end or adjacent to the first side end. And / or, The box cover is connected with the box body through one circular arc cooperation structure, and the circular arc cooperation structure is arranged near the middle position of one side end of the box cover, or the box cover is connected with the box body through multiple circular arc cooperation structures, and each circular arc cooperation structure is distributed along one side end of the box cover. And / or, The box body is equipped with a sterilization module for sterilizing the articles in the receiving groove.

3. The storage case of claim 1, wherein The circular arc cooperation structure is located on the side of the box cover facing the box body, both ends of the circular arc piece in the circumferential direction are a first end and a second end respectively, and both ends of the circular arc groove in the circumferential direction are a third end and a fourth end respectively. The circular arc piece is arranged on a first box member, the circular arc groove is arranged on a second box member, the first end of the circular arc piece is close to the first box member, and the third end of the circular arc groove is close to the first box member; wherein the first box member and the second box member are the box cover and the box body in sequence, or the first box member and the second box member are the box body and the box cover in sequence. When the circular arc piece slides along the circular arc groove from the fourth end to the third end, the box cover rotates around its rotation axis to gradually open the slot of the receiving groove.

4. The case of claim 3, wherein The third end is open, and a anti-disengagement structure is arranged between the circular arc piece and the circular arc groove to prevent the circular arc piece from disengaging from the circular arc groove.

5. The case of claim 4, wherein The anti-disengagement structure includes a limiting portion and an avoiding groove. The limiting portion is arranged on one side of the circular arc piece, the avoiding groove is arranged on an inner side wall of the circular arc groove in the circumferential direction of the circular arc groove, the limiting portion is located in the avoiding groove, one end of the avoiding groove close to the third end is provided with a blocking portion, and the limiting portion is spaced from the blocking portion when the box cover covers the slot of the receiving groove. Or, the limiting portion is arranged on an inner side wall of the circular arc groove, the avoiding groove is arranged on one side of the circular arc piece in the circumferential direction of the circular arc piece, the limiting portion is located in the avoiding groove, one end of the avoiding groove close to the second end is provided with a blocking portion, and the limiting portion is spaced from the blocking portion when the box cover covers the slot of the receiving groove.

6. The case of claim 5, wherein The limiting portion is a protruding strip arranged in the axial direction of the circular arc piece, one end of the protruding strip is provided with a reinforcing rib arranged in the circumferential direction of the circular arc piece, and one end of the avoiding groove provided with the blocking portion is provided with an avoiding notch avoiding the reinforcing rib.

7. The case of claim 5, wherein The bottom of the avoiding groove is provided with a protruding part which is spaced from the blocking part, when the limiting part moves to the space between the protruding part and the blocking part, the protruding part is clamped to the edge of the side of the limiting part which is away from the blocking part, so as to maintain the current state of the box cover.

8. The storage case of claim 3, wherein The third end opening is provided, and the first end is connected to the first box part; Or, the third end opening is provided, the first end is connected to the first box part, the axial length of the circular arc part is matched with the axial length of the circular arc groove, and the two ends in the axial direction of the circular arc groove are sealed; Or, the two ends in the axial direction of the circular arc groove are open, the two ends in the axial direction of the circular arc part are provided with connecting parts outside the circular arc groove, and the circular arc part is connected to the first box part through the connecting parts.

9. The case of claim 3, wherein The circular arc part is connected to the side of the box cover which faces the box body, and the circular arc groove is arranged in the box body.

10. The case of claim 9, wherein, The box body is provided with at least one circular arc concave surface and a splicing part corresponding to the circular arc concave surface, the splicing part has a circular arc convex surface which is opposite to and spaced from the corresponding circular arc concave surface, and the circular arc concave surface and the circular arc convex surface form the circular arc groove.

11. The case of claim 10, wherein, The splicing part includes an assembly part and a splicing part with the circular arc convex surface, the assembly part is positioned by a positioning structure and fixed by a fixing structure.

12. The storage case of claim 11, wherein, The positioning structure includes at least two positioning columns which are spaced in the axial direction of the circular arc groove and positioning holes corresponding to the positioning columns, the positioning columns and the positioning holes are arranged on the box body and the assembly part respectively, and each positioning column is inserted into the corresponding positioning hole; And / or, the fixing structure includes at least one first screw hole arranged on the assembly part, at least one second screw hole arranged on the box body, and at least one locking screw, the first screw hole and the second screw hole correspond to each other, the locking screw corresponds to the first screw hole, and the locking screw is screwed and fixed in the corresponding first screw hole and the second screw hole; And / or, The splicing parts are multiple, and the assembly parts of the splicing parts are different in structure; And / or, The material of the splicing part is self-lubricating material.

13. A cosmetic kit characterized by, The storage box is used for placing the beauty instrument. The storage box is used for placing the beauty instrument.