Stacked rotary powder box
Through the design of stacked rotating powder boxes, fixed columns and magnet slots are used to achieve compact storage and convenient use of various cosmetics, solving the problem of existing powder boxes taking up large space and being inconvenient to use, and providing a convenient cosmetics carrying solution.
Patent Information
- Application Number
- CN202422963255.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-12-03
AI Technical Summary
Existing cosmetic powder boxes have a single shape and function, which results in a large space being occupied and inconvenient to use when carrying multiple powder boxes.
A stacked rotating powder box is designed. Through the combination of fixed columns and magnet slots, the box cover, middle layer powder box and bottom layer powder box can be rotated and magnetically fixed, which is convenient for the storage and use of various cosmetics.
The problem that multiple powder boxes take up a lot of space and are inconvenient to use is solved, and compact storage and convenient use of the powder boxes are achieved. The design of the magnet slot makes the powder box easy to open and does not consume effort.
Smart Images

Figure CN223365146U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cosmetic storage devices, and in particular to a stacked rotary powder box. Background Art
[0002] People are paying more and more attention to their own image, and often carry powder boxes in their bags so that they can touch up their makeup on certain occasions.
[0003] Currently, most makeup powder boxes on the market are relatively simple in shape and function. Different types of cosmetics (such as pressed powder, foundation, blush, etc.) are needed when applying makeup. When going out and needing to touch up makeup, multiple makeup powder boxes that need to be used are placed in the bag in advance. Different powder boxes contain different cosmetics. Placing multiple single powder boxes in the bag not only takes up space but is also relatively messy. It is also troublesome to take out the powder boxes one by one when using them. Utility Model Content
[0004] In view of the deficiencies in the prior art, the utility model provides a stacked rotary powder box.
[0005] The utility model discloses a stacked rotary powder box, comprising: a fixed column, a box cover, at least one intermediate layer powder box, a bottom layer powder box, and a plurality of magnets. One end of the box cover, the at least one intermediate layer powder box, and the bottom layer powder box extends through and is rotatably mounted on the fixed column. The box cover, the at least one intermediate layer powder box, and the bottom layer powder box are stacked sequentially from top to bottom along the height direction of the fixed column. The other ends of the box cover, the at least one intermediate layer powder box, and the bottom layer powder box are each provided with a magnet slot, each magnet slot being provided with a magnet. The box cover, the at least one intermediate layer powder box, and the bottom layer powder box are magnetically fixed by the magnets.
[0006] Preferably, the lid, at least one intermediate layer powder box, and the bottom layer powder box are provided with a first circular hole, a second circular hole, and a third circular hole at one end connected to the fixed column. The fixed column includes a column shaft, a fixing head, and a fixing seat. The diameter of the column shaft is less than or equal to the inner diameter of the first circular hole, the second circular hole, and the third circular hole, and the column shaft passes through the first circular hole, the second circular hole, and the third circular hole in sequence. The diameter of the fixing head is greater than the inner diameter of the first circular hole, and the fixing head is fixedly connected to the end of the column shaft near the lid. The diameter of the fixing seat is greater than the inner diameter of the third circular hole, and the fixing seat is detachably connected to the end of the column shaft near the bottom layer powder box.
[0007] Preferably, the middle layer powder box includes a first powder box body and an inner box, the first powder box body is passed through the fixed column, and the first powder box body is provided with at least one first receiving groove, and each first receiving groove is embedded with an inner box.
[0008] Preferably, the cross-section of the first receiving groove along the direction perpendicular to the fixing column is elliptical and / or circular, and the cross-section of the inner box along the direction perpendicular to the fixing column has the same shape as the cross-section of the first receiving groove along the direction perpendicular to the fixing column.
[0009] Preferably, the bottom layer powder box includes a second powder box body and a pull-out tray. The second powder box body is inserted through the fixed column and provided with a second receiving slot. The second receiving slot is provided with an insertion and extraction opening at one end away from the second powder box body connected to the fixed column. The two opposite long sides of the second receiving slot are respectively provided with first strip grooves. The pull-out tray includes a tray body and a mirror. The two opposite long sides of the tray body are respectively provided with ridges. The mirror is mounted on the side of the tray body facing the middle layer powder box. The tray body is inserted into the second receiving slot through the insertion opening, and each ridge is correspondingly embedded in a first strip groove, and the ridge can slide relative to the first strip groove.
[0010] Preferably, a second strip groove is provided on one side of the disc body on which the mirror is mounted, and the second strip groove is provided at one end of the disc body close to the insertion and extraction port.
[0011] Preferably, there are multiple second strip grooves, and the multiple second strip grooves are arranged at equal intervals along the length direction of the disk body.
[0012] Preferably, magnet grooves are provided on the facing surfaces of the box cover and the middle layer powder box, and a magnet groove is provided on the side of the disk body facing the second powder box body, and the magnet grooves provided on the box cover, the middle layer powder box and the disk body are coaxial.
[0013] Preferably, the fixing seat includes a base and a protrusion, the outer diameter of the base is larger than the inner diameter of the third circular hole, one end of the protrusion is fixed to the base, the surface of the protrusion is threaded, the inner wall of the column shaft is threaded, and the protrusion is threadedly connected to the column shaft.
[0014] The beneficial effect of the present invention is that, compared with the prior art, the stacked rotating powder box, with the lid, at least one intermediate layer powder box, and one end of the bottom layer powder box being intersected and mounted on a fixed column and rotatable in a circumferential direction, can accommodate multiple powder boxes for various needs, solving the problem of multiple single powder boxes being space-consuming and disorganized in a bag. The lid, at least one intermediate layer powder box, and the bottom layer powder box are each provided with a magnet slot at the other end, each magnet slot containing a magnet, so that the lid, at least one intermediate layer powder box, and the bottom layer powder box are magnetically fixed together, achieving a good compromise between easy sliding and difficult opening of the powder box. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:
[0016] Figure 1 A perspective view of a stacked rotary powder box;
[0017] Figure 2 An exploded perspective view of a stacked rotating powder box;
[0018] Figure 3 Another exploded perspective view of the stacked rotating powder box;
[0019] Figure 4 This is an exploded view of the fixed column of the stacked rotary powder box;
[0020] Figure 5 This is an exploded view of one of the middle layer powder boxes;
[0021] Figure 6 This is an exploded view of another type of middle layer powder box;
[0022] Figure 7 This is an exploded view of the bottom powder box.
[0023] Reference numerals
[0024] 1. Fixed column; 11. Column shaft; 12. Fixed head; 13. Fixed seat; 131. Base; 132. Raised portion; 2. Box cover; 21. First circular hole;
[0025] 3. Intermediate powder box; 31. Second circular hole; 32. First powder box body; 321. First receiving groove; 33. Inner box;
[0026] 4. Bottom powder box; 41. Third circular hole; 42. Second powder box body; 421. Second accommodating slot; 4211. Strip groove; 422. Insertion and extraction port; 43. Pull-out tray; 431. Tray body; 4311. Raised strip; 4312. Second strip groove; 432. Mirror. DETAILED DESCRIPTION
[0027] The following diagrams illustrate various embodiments of the present invention. For clarity, many practical details will be included in the following description. However, it should be understood that these practical details are not intended to limit the present invention. In other words, in some embodiments of the present invention, these practical details are not essential. Furthermore, to simplify the drawings, some commonly used structures and components are depicted in simplified schematic form.
[0028] In addition, in the present invention, descriptions such as "first" and "second" are only used for descriptive purposes and do not specifically refer to the order or sequence, nor are they used to limit the present invention. They are only used to distinguish components or operations described with the same technical terms, and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of technical features indicated. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in this field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.
[0029] See also Figures 1 to 3 As shown, Figure 1 This is a three-dimensional diagram of a stacked rotary powder box. Figure 2 This is an exploded perspective view of the stacked rotating powder box. Figure 3 This is another exploded perspective view of a stacked rotating powder box. This embodiment discloses a stacked rotating powder box comprising a fixed column 1, a cover 2, at least one intermediate layer powder box 3, a bottom layer powder box 4, and a plurality of magnets 5. With the fixed column 1 as the axis, one end of the bottom layer powder box 4 passes through the fixed column 1 and is placed at the bottom. At least one end of the intermediate layer powder box 3 then passes through the fixed column 1 and is stacked on the bottom layer powder box 4. Finally, one end of the cover 2 passes through the fixed column 1 and is buckled onto the topmost intermediate layer powder box 3. The cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4 are all capable of circumferential rotation around the fixed column 1. The ends of the cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4, facing away from the fixed column 1, each have a magnet slot 6, and magnets 5 are mounted within the magnet slot 6. When the cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4 are stacked, the magnet slots 6 are positioned correspondingly. The cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4 are fixedly connected by the magnetic attraction of the magnets 5.
[0030] Thus, with the fixed column 1 as the axis, the box cover 2, at least one intermediate layer powder box 3 and one end of the bottom layer powder box 4 are penetrated from top to bottom along the height direction of the fixed column 1, and the box cover 2, at least one intermediate layer powder box 3 and the bottom layer powder box 4 are movably connected to the fixed column 1, and can rotate circumferentially with the fixed column 1 as the rotation axis.
[0031] Among them, one intermediate layer powder box 3 can be set, or two or more can be set. When one intermediate layer powder box 3 is set, the box cover 2, the intermediate layer powder box 3 and the bottom layer powder box 4 are stacked in sequence from top to bottom along the height of the fixed column 1.
[0032] When two or more intermediate layer powder boxes 3 are provided, they are stacked sequentially from top to bottom along the height of the fixed column 1, with the box cover 2 stacked on the topmost intermediate layer powder box 3, and the bottommost intermediate layer powder box 3 stacked on the bottom layer powder box 4. By providing two or more intermediate layer powder boxes 3, a variety of loose powders or liquid foundations can be placed in different intermediate layer powder boxes 3 according to user needs, while the bottom layer powder box 4 can be used to store tools such as powder puffs and brushes.
[0033] In this embodiment, the box cover 2, the middle layer powder box 3, and the bottom layer powder box 4 are stacked and fixed by magnets 5. When in use, the box cover 2 is moved so that the box cover 2 rotates along the fixing column 1, the middle layer powder box is opened, and the middle layer powder box 3 is moved so that the bottom layer powder box 4 is opened. The axial rotation design increases practicality and convenience for users, solving the problem of multiple single powder boxes being scattered in a bag. In addition, the box cover 2, at least one middle layer powder box 3, and the bottom layer powder box 4 can also be axially rotated to be used simultaneously, which is convenient and quick. The other end of the box cover 2, at least one middle layer powder box 3, and one bottom layer powder box 4 are each provided with a magnet slot 6, and each magnet slot 6 is provided with a magnet 5. The box cover 2, at least one middle layer powder box 3, and one bottom layer powder box 4 are magnetically fixed by the magnets 5, making it easy to open and effortless.
[0034] Review Figure 2 and Figure 3 As shown, in this embodiment, a first circular hole 21 is formed at one end of the box cover 2, and a magnet slot 6 is formed at the other end of the box cover 2, in which a magnet 5 is placed; a second circular hole 31 is formed at one end of the intermediate layer powder box 3, and a magnet slot 6 is formed at the other end of the intermediate layer powder box 3, in which a magnet 5 is placed; and a third circular hole 41 is formed at one end of the bottom layer powder box 4, and a magnet slot 6 is formed at the other end of the bottom layer powder box 4, in which a magnet 5 is placed. When the box cover 2, the intermediate layer powder box 3, and the bottom layer powder box 4 are stacked, the first circular hole 21, the second circular hole 31, and the third circular hole 41 correspond to each other. Then, the fixing post 1 is sequentially passed through the first circular hole 21, the second circular hole 31, and the third circular hole 41, or the fixing post is sequentially passed through the third circular hole 41, the second circular hole 31, and the first circular hole 21, so that the box cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4 are movably connected to the fixing post 1 and can rotate circumferentially along the fixing post 1. When the box cover 2, at least one middle layer powder box 3 and the bottom layer powder box 4 are passed through and stacked on the fixed column 1, the positions of the magnet slots 6 correspond one to one, so that the magnets 5 in the magnet slots 6 can also correspond one to one, and the box cover 2, at least one middle layer powder box 3 and the bottom layer powder box 4 are fixed by magnetic attraction through the magnets 5.
[0035] Further, see Figure 4 , Figure 4An exploded view of the fixed column of a stacked rotary powder compact. In this embodiment, the fixed column 1 comprises a shaft 11, a fixed head 12, and a fixed base 13. The shaft 11 is a hollow, smooth tube with a diameter less than or equal to the inner diameters of the first, second, and fourth circular holes 21, 31, and 41. The shaft 11 sequentially passes through the first, second, and fourth circular holes 21, 31, and 41, facilitating the placement of the lid 2, the intermediate powder compact 3, and the bottom powder compact 4 on the shaft 11. Furthermore, the lid 2, the intermediate powder compact 3, and the bottom powder compact 4 can rotate relative to the shaft 11.
[0036] The diameter of the fixed head 12 is larger than the inner diameter of the first circular hole 21. The column shaft 11 passes through one end of the box cover 2 and is fixedly connected to the fixed head 12. The connection method can be screw fixing or welding, etc., so as to prevent the box cover 2, the middle powder box layer 3 and the bottom powder box 4 from passing through the fixed head 12 and scattering.
[0037] The fixing base 13 includes a base 131 and a raised portion 132. The outer diameter of the base 131 is larger than the inner diameter of the third circular hole 41. One end of the raised portion 132 is fixedly connected to the base 131. The raised portion 111 has a threaded surface. The inner wall of the column shaft 11 also has a threaded surface. The raised portion 111 can be screwed into the column shaft 11 through the thread to pass through one end of the bottom box 4 and fix it. In this way, the box cover 2, the middle powder box layer 3, and the bottom powder box 4 can be prevented from being scattered through the fixing base 13. In addition, the fixing base 13 and the column shaft 11 are connected by a threaded connection, and the threaded connection is a detachable connection method, which is simple and convenient to assemble and disassemble.
[0038] Further, see Figure 5 and Figure 6 As shown, Figure 5 This is an exploded view of one of the middle layer powder boxes. Figure 6 This is an exploded view of another intermediate powder box. In this embodiment, the intermediate powder box 3 includes a first powder box body 32 and an inner box 33. The first powder box body 32 is inserted through the fixed column 1 and is provided with a first receiving slot 321. The number of first receiving slots 321 can be one, two, or more, depending on actual needs. Each first receiving slot 321 is embedded with an inner box 33. The inner box 33 can be connected by a snap-on connection or by installing magnets on the first receiving slots to secure the inner box 33.
[0039] The shape of the first receiving groove 321 can be unrestricted and can be set according to actual usage requirements. Correspondingly, the shape of the inner box 33 can also be unrestricted, but it must match the shape of the first receiving groove 321 so that the inner box 33 can be reasonably embedded in the first receiving groove 321. For example, the cross-sectional shape of the inner box 33 along the direction perpendicular to the fixing column 1 can be square, diamond, circular or elliptical, and correspondingly, the cross-sectional shape of the first receiving groove 321 along the direction perpendicular to the fixing column 1 is also square, diamond, circular or elliptical.
[0040] In this embodiment, preferably, two intermediate layer powder boxes 3 are provided. In one intermediate layer powder box 3, the first receiving groove 321 has an elliptical cross-sectional shape along a direction perpendicular to the fixed column 1, while in the other intermediate layer powder box 3, the first receiving groove 321 has a circular cross-sectional shape along a direction perpendicular to the fixed column 1. When the first receiving groove 321 has an elliptical cross-sectional shape along a direction perpendicular to the fixed column 1, the inner box 33 has an elliptical cross-sectional shape along a direction perpendicular to the fixed column 1; when the first receiving groove 321 has a circular cross-sectional shape along a direction perpendicular to the fixed column 1, the inner box 33 has a circular cross-sectional shape along a direction perpendicular to the fixed column 1.
[0041] It should also be noted that when there are two or more first accommodating grooves 321 set in the middle layer powder box 3, the shapes of the first accommodating grooves 321 can all be the same, for example, they can all be cylindrical, and correspondingly, the shapes of the inner boxes 33 are all cylindrical. The shapes of the first accommodating grooves 321 can also be different, for example, the shape of one of the first accommodating grooves 321 is cylindrical, and the shape of the other first accommodating grooves 321 is rectangular, and correspondingly, the shape of one of the inner boxes 33 is cylindrical, and the shape of the other inner box 33 is rectangular.
[0042] Further, see Figure 7 , Figure 7 This is an exploded view of the bottom powder box. In this embodiment, the bottom powder box 4 includes a second powder box body 42 and a pull-out tray 43. The second powder box body 42 is inserted through the fixed column 1. The second powder box body 42 defines a second receiving slot 421. The second receiving slot 421 has an insertion opening 422 at one end, away from the connection between the second powder box body 42 and the fixed column 1. The second receiving slot 421 has two opposite long sides defined by first strip grooves 4211.
[0043] The pull-out tray 43 comprises a tray body 431 and a mirror 432. The mirror 432 is mounted on the side of the tray body 431 facing the intermediate layer powder compact 3. Ribs 4311 are provided on opposite long sides of the tray body 431. The tray body 431 is inserted into the second receiving slot 421 through the insertion opening 422, with each rib 4311 correspondingly engaging a first strip-shaped groove 4211. When the ribs 4311 are fully engaged with the first strip-shaped groove 4211, the tray body 431 covers the second receiving slot 421, creating a sealed space within the second receiving slot 421. When the tray body 431 is pulled, the ribs 4311 slide along the first strip-shaped groove 4211, withdrawing the tray body and exposing the interior of the second receiving slot 421.
[0044] To facilitate the removal and insertion of the tray body 431, a second strip groove 432 is provided on the side of the tray body 431 where the mirror 432 is mounted. The second strip groove 432 is located at one end of the tray body 431 near the insertion and extraction port 422. The second strip groove 432 can be one, two, or any other desired number. The second strip groove 432 can be pushed and pulled to allow the pull-out tray 43 to be pulled and moved relative to the strip groove 431. When there are multiple second strip grooves 4312, the multiple second strip grooves 4312 are arranged at equal intervals along the length of the tray body 431.
[0045] In actual use, the box cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4 are stacked and arranged on the fixed column 1, and the box cover 2, at least one intermediate layer powder box 3, and the bottom layer powder box 4 all rotate around the fixed column 1. When in use, the box cover 2, the intermediate layer powder box 3, and the bottom layer powder box 4 only need to be moved so that the box cover 2, the intermediate layer powder box 3, and the bottom layer powder box 4 are relatively displaced, and the box can be used. The threaded connection between the column shaft 11 and the fixed seat 13 facilitates assembly and disassembly, and is simple and easy to operate. When multiple intermediate powder boxes 3 are provided, the number of cosmetic types that can be accommodated increases. The first receiving slots 321 and corresponding inner boxes 33 provided on different intermediate powder boxes 3 differ in shape. In one intermediate powder box 3, the inner box 33 has an elliptical cross-section perpendicular to the fixing post 1, while in another intermediate powder box 3, the inner box 33 has a circular cross-section perpendicular to the fixing post 1. This provides a variety of shapes for the inner boxes 33, making it easier to distinguish between different types of cosmetics when packaging. In particular, similar shades of loose powder or liquid foundation can be distinguished by the shape of the inner box 33 they are placed in. The second receiving slot 421, pull-out tray 43, and mirror 432 of the bottom powder box 4 are designed so that the pull-out tray 43 is retractable relative to the second receiving slot 421. When stored, the lid of the second receiving slot 421 seals its opening. When pulled out, the mirror 45 on the pull-out tray 43 is visible. The opening of the second receiving slot 421 allows for access to makeup brushes and other tools, providing convenient storage and ease of use. When the box cover 2, the middle layer powder box 3 and the bottom layer powder box 4 are stacked on the fixed column 1, the magnets 5 are placed in the magnet slots 6 and their positions correspond one to one. The box cover 2, the middle layer powder box 3 and the bottom layer powder box 4 are fixed by magnetic attraction through the magnets 5, making them easy to close and open.
[0046] The above description is merely an embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be included within the scope of the claims of the present invention.
Claims
1. A stacked rotary powder box, characterized in that: include: A fixed column (1), a box cover (2), at least one intermediate layer powder box (3), a bottom layer powder box (4) and a plurality of magnets (5), wherein one end of the box cover (2), at least one intermediate layer powder box (3) and the bottom layer powder box (4) penetrates and is rotatably arranged on the fixed column (1), and the box cover (2), at least one intermediate layer powder box (3) and the bottom layer powder box (4) are stacked in sequence from top to bottom along the height direction of the fixed column (1); the other ends of the box cover (2), at least one intermediate layer powder box (3) and the bottom layer powder box (4) are each provided with a magnet slot (6), and each magnet slot (6) is provided with the magnet (5), and the box cover (2), at least one intermediate layer powder box (3) and the bottom layer powder box (4) are magnetically fixed by the magnets (5).
2. The stacked rotary powder box according to claim 1, characterized in that: The ends of the box cover (2), at least one of the middle layer powder box (3) and the bottom layer powder box (4) connected to the fixed column (1) are respectively provided with a first circular hole (21), a second circular hole (31) and a third circular hole (41); the fixed column (1) comprises a column shaft (11), a fixing head (12) and a fixing seat (13); the diameter of the column shaft (11) is less than or equal to the inner diameter of the first circular hole (21), the second circular hole (31) and the third circular hole (41); the column shaft (11) is provided with a first circular hole (21), a second circular hole (31) and a ... ) passes through the first circular hole (21), the second circular hole (31) and the third circular hole (41) in sequence; the diameter of the fixing head (12) is larger than the inner diameter of the first circular hole (21), and the fixing head (12) is fixedly connected to the end of the column shaft (11) close to the box cover (2); the diameter of the fixing seat (13) is larger than the inner diameter of the third circular hole (41), and the fixing seat (13) is detachably connected to the end of the column shaft (11) close to the bottom powder box (4).
3. The stacked rotary powder box according to claim 1, characterized in that: The intermediate layer powder box (3) comprises a first powder box body (32) and an inner box (33), wherein the first powder box body (32) is passed through the fixed column (1), and the first powder box body (32) is provided with at least one first receiving groove (321), and each first receiving groove (321) is embedded with one of the inner boxes (33).
4. The stacked rotary powder box according to claim 3, characterized in that: The cross-section of the first accommodating groove (321) along a direction perpendicular to the fixing column (1) is elliptical or circular, and the cross-section of the inner box (33) along a direction perpendicular to the fixing column (1) has the same shape as the cross-section of the first accommodating groove (321) along a direction perpendicular to the fixing column (1).
5. The stacked rotary powder box according to claim 1, characterized in that: The bottom powder box (4) includes a second powder box body (42) and a pull-out plate (43), wherein the second powder box body (42) is passed through the fixed column (1), and a second receiving groove (421) is provided on the second powder box body (42), and an insertion opening (422) is provided at one end of the second receiving groove (421) away from the second powder box body (42) connected to the fixed column (1); first strip grooves (4211) are respectively provided on the two opposite long sides of the second receiving groove (421); the pull-out plate (43) includes a plate body (431) and a mirror (432), convex strips (4311) are respectively provided on the two opposite long sides of the disk body (431), the mirror (432) is installed on the side of the disk body (431) facing the middle layer powder box (3), the disk body (431) is inserted into the second receiving groove (421) from the insertion and extraction port (422), and each convex strip (4311) is correspondingly embedded in a first strip groove (4211), and the convex strip (4311) can slide relative to the first strip groove (4211).
6. The stacked rotary powder box according to claim 5, characterized in that: A second strip groove (4312) is provided on one side of the disk body (431) on which the mirror (432) is mounted, and the second strip groove (4312) is provided at one end of the disk body (431) close to the insertion and extraction port (422).
7. The stacked rotary powder box according to claim 6, characterized in that: There are a plurality of second strip-shaped grooves (4312), and the plurality of second strip-shaped grooves (4312) are arranged at equal intervals along the length direction of the disk body (431).
8. The stacked rotary powder box according to any one of claims 5 to 7, characterized in that: The magnet slots (6) are provided on the facing surfaces of the box cover (2) and the intermediate layer powder box (3), and the magnet slots (6) are provided on the side of the disk body (431) facing the second powder box body (42). The magnet slots (6) provided on the box cover (2), the intermediate layer powder box (3) and the disk body (431) are coaxial.
9. The stacked rotary powder box according to claim 2, characterized in that: The fixing seat (13) includes a base (131) and a raised portion (132), the outer diameter of the base (131) is larger than the inner diameter of the third circular hole (41), one end of the raised portion (132) is fixed to the base (131), the surface of the raised portion (132) is threaded, the inner wall of the column shaft (11) is provided with a thread, and the raised portion (132) is threadedly connected to the column shaft (11).