Quadrilateral powder box container
By designing a combined structure for a quadrilateral powder box container and a magnetic hinge mechanism, the problem of insufficient sealing performance of existing powder box containers has been solved, achieving effective sealing and diverse content capacity.
Patent Information
- Application Number
- CN202520145838.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-12-23
- Filing Date
- 2025-01-22
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing powder box containers are usually round, making it difficult to achieve high airtightness. Furthermore, the design limitations of quadrilateral powder box containers cause the moisture and volatile components of cosmetics to evaporate easily, affecting product quality.
A quadrilateral powder box container was designed, which adopts a combination structure of an internal base, a lower shell, a sealing ring, an inner cover, and an upper shell. It uses a magnet and hinge mechanism to achieve sealing, and combines porous material gaskets and mesh components to enhance the sealing performance.
Effectively seals cosmetic containers to prevent the evaporation of moisture and volatile ingredients, maintaining the quantity and performance of cosmetics, and providing diverse ways to contain contents.
Smart Images

Figure CN223873470U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a cosmetic container, in particular to a quadrilateral powder box container BACKGROUND
[0002] Cosmetics such as foundation are usually provided in a powder box container. The existing powder box container, also called a "powder box", generally has a simple structure in which the contents (cosmetics) are contained in a lower case, and an upper case is hingedly coupled to the lower case. Sometimes, a powder puff is also arranged above the powder product, and a mirror is also installed on the inner surface of the upper case.
[0003] Generally, cosmetics contain a large amount of moisture, alcohol, and other volatile components. If the cosmetic container that contains them does not have high airtightness, the moisture evaporates, the volatile components volatilize, and this can cause the amount of the cosmetic to decrease or the performance of the cosmetic to decrease.
[0004] The powder box container is mainly manufactured in a circular shape because it is difficult to achieve high airtightness if the powder box container is manufactured in a shape other than a circle. On the other hand, due to the characteristics of cosmetic products, it is important to differentiate cosmetic containers from each other through a delicate appearance, but if the powder box container is limited to a circular shape, the design of the appearance of the product to which it can be applied will necessarily be limited. SUMMARY
[0005] Therefore, the utility model is proposed to solve the above problems, and aims to provide a quadrilateral powder box container that can maintain high airtightness while having a quadrilateral shape.
[0006] Other objects of the utility model will become more apparent through the following embodiments described below.
[0007] The technical solution of the utility model for solving the above problems is as follows.
[0008] The utility model provides a kind of quadrilateral powder box container, it has quadrilateral shape, the quadrilateral powder box container includes: internal base, it includes base bottom and base inner wall to form containing space on the inside of the base inner wall, and including with the base inner wall is spaced apart interval from the base bottom upwardly extending base outer wall, and including in the position corresponding to the quadrilateral shape one side first inside hinge part formed in the base outer wall;Lower shell, it includes around the intermediate margin of the base outer wall, and including from the upper end of the intermediate margin outwardly extending and forming the flat surface in upper portion outside lug, and including in the position corresponding to the quadrilateral shape another side first outside hinge part formed in the outside lug;Close ring, it includes being configured to be inserted into the gap between the base inner wall and the base outer wall ring side wall, and including from the upper end of the ring side wall inwardly extending and forming the flat surface in upper portion and being formed with opening portion in the center and being communicated with the containing space inside lug;Internal cover, it includes being configured to cover the cover plate of the opening portion, and including in the edge of the cover plate bending and upwardly extending bending part, and including in the edge of the bending part downwardly protruding cover rim, and including sealing component installed between the cover plate and the cover rim, and including in the position corresponding to the first inside hinge part second inside hinge part formed in the cover rim and being configured to be hingedly combined with the first inside hinge part, to be configured to open and close the opening portion;And upper shell, it includes shell plate and shell outer wall to form cover space in the inside of the shell outer wall, and including in the position corresponding to the first outside hinge part second outside hinge part formed in the shell outer wall and being configured to be hingedly combined with the first outside hinge part, and the sealing component includes: fixed part, which is in contact with the lower side surface of the bending part;And airtight part, which extends downward from the outside upper portion of the fixed part, when the internal cover is closed, the outside surface of the airtight part is in close contact with the inside surface of the base outer wall, and the lower end of the airtight part and the end of the inside lower portion of the fixed part are located above the inside lug of the close ring.
[0009] Wherein, the lower shell includes: intermediate component, which includes the intermediate margin and the outside lug;And lower component, which is combined to the lower portion of the intermediate component.
[0010] Wherein, the lower shell includes first magnet, the upper shell includes second magnet, the second magnet is combined to the position corresponding to the first magnet, and has magnetic attraction relative to the first magnet, the lower component includes support protrusion, the support protrusion supports the first magnet from below in a manner that the first magnet is located below the outside lug.
[0011] The lower housing includes a first magnet, and the upper housing includes a second magnet coupled to a position corresponding to the first magnet and having magnetic attraction with respect to the first magnet.
[0012] The liner includes a porous material, and the liner is impregnated with a liquid content.
[0013] The net member covers the upper portion of the accommodation space, and the inner base further includes a base support wall extending upward from the base bottom at a distance from the inner base wall on the inner side of the inner base wall.
[0014] The effects of the present application are as follows.
[0015] The present application can achieve various effects including the following matters.
[0016] According to an embodiment of the present application, when the inner cover is closed with respect to the inner base, the sealing member can be in contact with the flat surface of the inner side lug of the abutting ring, thereby effectively sealing the accommodation space on the inner side of the inner base.
[0017] Further, according to an embodiment of the present application, when the upper housing is closed with respect to the lower housing, the first magnet and the second magnet make the lower end of the housing outer wall and the flat surface of the outer side lug abut each other, thereby more effectively sealing the inside than in the case of using a button or the like. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 is a perspective view of a quadrangular powder container according to an embodiment of the present application.
[0019] Figure 2 is a perspective view of a quadrangular powder container according to an embodiment of the present application. Figure 1
[0020] Figure 3 is an exploded perspective view of a quadrangular powder container according to an embodiment of the present application.
[0021] Figure 4 and Figure 5 is a cross-sectional view of the quadrangular powder box container shown in Figure 3
[0022] Figure 6 is an exploded perspective view of a quadrangular powder box container of another embodiment of the present application.
[0023] Figure 7 and Figure 8 is a cross-sectional view of the quadrangular powder box container shown in Figure 6 DETAILED DESCRIPTION
[0024] The present application can have various modifications and can have various embodiments, and a specific embodiment will be exemplified in the accompanying drawings and will be described in detail in the detailed description. However, this is not intended to limit the present application to a specific embodiment, and it should be understood to include all modifications, equivalents, and alternatives included in the idea and technical scope of the present application. In explaining the present application, when it is judged that a specific description of related known technology can make the gist of the present application obscure, the detailed description is omitted.
[0025] The terms used in the present application are used only to describe specific embodiments and are not intended to limit the present application. Unless the context clearly dictates otherwise, the singular expression includes the plural expression. In the present application, the terms "include" or "have" and the like should be understood to mean the presence of features, numbers, steps, actions, constituent elements, components or combinations thereof described in the specification and do not preclude the presence or addition of one or more other features, numbers, steps, actions, constituent elements, components or combinations thereof.
[0026] The first, second, and the like terms can be used to describe various components, but these components should not be limited by these terms. These terms are used only for the purpose of distinguishing one constituent element from other constituent elements.
[0027] Embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the description with reference to the drawings, the same or corresponding constituent elements will be given the same reference numerals regardless of the reference numerals, and repeated description thereof will be omitted.
[0028] For convenience of explanation, the expressions of "inner side", "outer side", "upper side" and "lower side" are used in the present specification. In the following description, the "inner side" means a side close to the inside of the powder container 1000, and the "outer side" means a side away from the inside of the powder container 1000. On the other hand, the "upper side" means a direction in which the accommodation space 550 of the inner base 500 is opened, and the "lower side" means a direction opposite thereto. Of course, when the powder container 1000 of an embodiment of the present application is actually used, the upper side direction mentioned in the specification can not coincide with the actual upper side direction.
[0029] Figure 1 and Figure 2 is a perspective view of a quadrangular powder container 1000 of an embodiment of the present application, which is exemplarily shown, Figure 1 shows a state in which the powder container 1000 is closed, Figure 2 shows a state in which the powder container 1000 is opened. Figure 3 is an exploded perspective view of the powder container 1000, Figure 4 and Figure 5 is a sectional view of the powder container 1000.
[0030] Referring to Figures 1 to 5 , the quadrangular powder container 1000 of an embodiment of the present application can generally include a lower housing 100, an inner base 500, a tight ring 700, an inner cover 800, and an upper housing 900. The quadrangular powder container 1000 is characterized in that it has a quadrangular shape when viewed from above, and the internal constituent elements provide a high sealing performance. The inner base 500 and the inner cover 800 can be formed with a first inner side hinge portion 570 and a second inner side hinge portion 870, respectively, and are combined to be opened and closed by a hinge; the lower housing 100 and the upper housing 900 can be formed with a first outer side hinge portion 380 and a second outer side hinge portion 980, respectively, and are combined to be opened and closed by a hinge.
[0031] The lower housing 100 can be configured to surround the inner base 500, and includes the first outer side hinge portion 380 for hinge combination with the upper housing 900.
[0032] In the example shown in the accompanying drawings, the lower housing 100 includes a lower side member 200 and an intermediate member 300, and is formed by combining them with each other. Of course, in some embodiments, the lower housing 100 can be formed as one integral member.
[0033] The lower component 200 may include a housing bottom surface 210 and a lower housing outer wall 220. The housing bottom surface 210 may form part or all of the bottom of the quadrilateral powder container 1000, and the lower housing outer wall 220 may extend upward from the outer edge of the housing bottom surface 210 to form the lower outer portion of the quadrilateral powder container 1000. Engagement protrusions and / or engagement grooves 222 for engagement with the intermediate component 300 may be formed on the inner surface of the lower housing outer wall 220.
[0034] The intermediate component 300 may include an outer lug 310 and an intermediate edge 320. The intermediate edge 320 may be configured as an outer wall 540 surrounding the inner base 500, and the outer lug 310 may extend outward from the upper end of the intermediate edge 320 and form a flat surface on the upper part. At one side of the quadrilateral shape of the powder container 1000, a recess 317 may be formed in the intermediate edge 320 for the first inner hinge portion 570.
[0035] The intermediate component 300 may also include a first outer hinge portion 380, which may be formed on the outer lug 310 at a position corresponding to one side of the quadrilateral shape of the powder box container 1000.
[0036] Insertion holes 205 and 305 can be formed in the lower component 200 and the middle component 300, respectively. For example... Figure 4 and Figure 5 As shown, the insertion hole 205 formed on the lower component 200 can be smaller than the insertion hole 305 formed on the middle component 300, thereby forming a boss at the lower part of the middle edge 320. In some embodiments of this invention, the insertion hole 205 of the lower component 200 can be formed as a blind hole instead of a through hole, or it can be omitted altogether.
[0037] The insertion hole 305 formed in the lower housing 100 is shaped to correspond to the shape of the outer wall 540 of the inner base 500, and can be formed into an arc shape with a quadrilateral shape and rounded corners. Each side of the insertion hole 305 can be formed as a straight line, but it can also be formed into a gentle arc shape with a large radius of curvature as shown in the figure.
[0038] Thus, the inner base 500 can be inserted into and installed into the insertion holes 205, 305 formed in the lower housing 100. A portion of the lower part of the inner base 500 can be engaged with a boss formed by the size difference between the insertion holes 205, 305 of the lower part 200 and the middle part 300.
[0039] On the other hand, the lower case 100 and the upper case 900, which are openably and closably coupled to each other, can be provided with a first magnet 390 and a second magnet 990. When the lower case 100 is composed of the lower side member 200 and the middle member 300, as shown in Figure 4 the lower side member 200 can be formed with a support protrusion 229 supported inwardly from an inner side surface of the lower side case outer wall 220. The support protrusion 229 can support the first magnet 390 from below, such that the first magnet 390 is disposed adjacent to the outer side lug 310.
[0040] The inner base 500 can include a base bottom 510 and a base inner wall 530, and form an accommodation space 550 inwardly thereof. The inner base 500 can further include a base outer wall 540 formed at a distance from the base inner wall 530. At a position corresponding to one side of the quadrangular shape of the powder case container 1000, the base outer wall 540 can be formed with a first inner side hinge portion 570. As described above, the first inner side hinge portion 570 is configured to be rotatably coupled to a second inner side hinge portion 870 formed in the inner cover 800, and to open and close the inner cover 800 with the inner base 500 as a reference.
[0041] Although Figure 4 and Figure 5 not shown in the drawings, the inner base 500 can accommodate a content such as a cosmetic in the accommodation space 550. In a preferred embodiment of the present application, the content can be provided in the form of being impregnated in a pad (not shown), and the pad impregnated with the content can be disposed in the accommodation space 550. That is, the cosmetic can be provided in the form of a liquid having a relatively low viscosity, for example, and a pad of a porous material containing the liquid can be disposed in the accommodation space 550. When the user wants to use the content, the user can press the pad with a cosmetic tool such as a puff, so that the content impregnated in the pad is moved to the cosmetic tool.
[0042] The gasket 700 is coupled to the inner base 500 to increase the sealing performance with the inner cover 800, and on the other hand, can prevent the pad or the like disposed in the accommodation space 550 from being detached.
[0043] The gasket ring 700 can include an inner side lug 710 and a ring side wall 730. The inner side lug 710 can extend inwardly from an upper end of the ring side wall 730, and an opening portion 705 communicating with the accommodation space 550 can be formed in an inner side thereof. An upper portion of the inner side lug 710 can form a flat surface. The ring side wall 730 can be configured to be inserted into a gap between the inner wall 530 and the outer wall 540 of the base. In order for the gasket ring 700 to be firmly combined with the inner base 500, a combination protrusion and / or a combination groove can be formed on an outer side surface and / or an inner side surface of the ring side wall 730, and a combination groove and / or a combination protrusion engaging therewith can be formed at corresponding positions on an outer side surface of the inner wall 530 and an inner side surface of the outer wall 540.
[0044] The inner cover 800 can be configured to be openable and closable in hinged combination with the inner base 500. The inner cover 800 can include a cover plate 810, a curved portion 820, a cover rim 830, and a sealing member 840.
[0045] The cover plate 810 can have a substantially flat shape, and can be configured to cover the opening portion 705 of the gasket ring 700. The curved portion 820 can be curved upwardly from an edge of the cover plate 810. The cover rim 830 can be configured in a form protruding downwardly from an edge of the curved portion 820. The inner cover 800 can further include a second inner side hinge portion 870 for hinged combination with the inner base 500. The second inner side hinge portion 870 can be formed at the cover rim 830 in correspondence with the first inner side hinge portion 570. Referring to Figure 3 , for example, hinge holes can be respectively formed in the first inner side hinge portion 570 and the second inner side hinge portion 870, and in a state in which these hinge holes are aligned, they can be rotatably combined with respect to each other as the hinge pin 70 is inserted.
[0046] As shown in Figure 4 and Figure 5 , a lower surface of the cover plate 810 can be more protruded downwardly than a lower surface of the curved portion 820 to form a kind of groove between the cover plate 810 and the cover rim 830, and the sealing member 840 can be fitted and mounted to the groove.
[0047] The sealing member 840 can include a fixing portion 842 and a sealing portion 844. The fixing portion 842 is a portion of the sealing member 840 inserted and fixed between the cover plate 810 and the cover rim 830, can be in contact with a lower side surface of the curved portion 820, and can be formed in a shape corresponding thereto. The sealing portion 844 can extend downwardly from an outer side upper portion of the fixing portion 842.
[0048] When the inner cover 800 is closed relative to the inner base 500, the outer surface of the sealing portion 844 can be in close contact with the surface of the outer wall 540 of the base. Furthermore, the lower end of the sealing portion 844 and the lower inner end of the fixing portion 842 can be located above the inner lug 710 of the fitting ring 700. In some embodiments of this invention, the lower end of the sealing portion 844 and the lower inner end of the fixing portion 842 can directly contact the flat surface of the inner lug 710, thereby doubly sealing the receiving space 550 of the inner base 500. Even if the lower end of the sealing portion 844 and the lower inner end of the fixing portion 842 do not directly contact the inner lug 710, since they are located above the inner lug 710, the receiving space 550 can be easily sealed by methods such as placing individual components on the flat surface of the inner lug 710.
[0049] The upper housing 900 can be hinged to the lower housing 100 to be openable and closable. The upper housing 900 may include a housing plate 910 and a housing outer wall 920, and a cover space 950 is formed on the inner side of the housing outer wall 920.
[0050] The housing plate 910 can have a generally flat shape and can form the upper part of the powder box container 1000. For example... Figure 2 and Figure 3 As shown, a mirror 880 can be installed on the lower part of the housing plate 910. When applying cosmetics, the user can open the upper housing 900 and look at the mirror 880 while applying makeup.
[0051] The outer wall 920 of the housing can extend downward from the edge of the housing plate 910 and form a cover space 950 on the inside. When the upper housing 900 is closed, the portion of the inner cover 800 and the like located above the lower housing 100 can be accommodated within the cover space 950.
[0052] The upper housing 900 may further include a second outer hinge portion 980 for hinge engagement with the lower housing 100. The second outer hinge portion 980 may be formed on the outer wall 920 of the housing at a position corresponding to the first outer hinge portion 380. (Refer to...) Figure 3 For example, hinge holes can be formed in the first outer hinge portion 380 and the second outer hinge portion 980 respectively. With these hinge holes aligned, they can rotate relative to each other when the hinge pin 80 is inserted.
[0053] On the other hand, a first magnet 390 and a second magnet 990 can be provided in the lower housing 100 and the upper housing 900, which are closable and connectable to each other. A magnet slot 919 that opens upwards can be formed in the upper housing 900 such that the second magnet 990 can be located below the outer wall 920 of the housing. For example... Figure 4As shown, the magnet groove 919 can be formed in a portion of the outer wall 920 of the housing in such a manner that the second magnet 990 can be disposed in a position corresponding to the first magnet 390.
[0054] In a preferred embodiment of the present application, the upper housing 900 can further include a mounting plate 940. The mounting plate 940 can be mounted to an upper portion of the housing plate 910, and can cover the open upper portion of the magnet groove 919 when mounted. The logo and other design elements of the product can be drawn on the upper surface of the mounting plate 940.
[0055] According to the present application, when the inner cover 800 is closed with respect to the inner base 500, the sealing member 840 can double-contact the flat surface of the inner side lug 710 of the ring 700, thereby effectively sealing the accommodation space 550 inside the inner base 500. In addition, when the upper housing 900 is closed with respect to the lower housing 100, the first magnet 390 and the second magnet 990 cause the lower end of the outer wall 920 of the housing and the flat surface of the outer side lug 310 to be in close contact with each other, thereby more effectively sealing the interior than in the case of using a movable member such as a button.
[0056] Figure 6 is an exploded perspective view of a quadrangular powder container 1000 according to another embodiment of the present application, Figure 7 and Figure 8 is a perspective view of the quadrangular powder container 1000 according to another embodiment of the present application, Figure 6 is a cross-sectional view of the quadrangular powder container 1000 according to another embodiment of the present application.
[0057] Figures 6 to 8 The closed appearance and the open appearance of the quadrangular powder container 1000 according to another embodiment of the present application shown in Figure 1 and Figure 2 are substantially the same.
[0058] Figures 6 to 8 The second embodiment shown in Figures 3 to 5 has many points in common with the first embodiment shown in Hereinafter, the second embodiment will be described with a focus on the differences from the first embodiment. The features described with respect to the first embodiment can be applied to the second embodiment, and likewise the features described with respect to the second embodiment can be applied to the first embodiment. Some reference numerals mentioned in the description of the second embodiment are intended to refer to the corresponding constituent elements to those to which the corresponding reference numerals are applied in the first embodiment.
[0059] In the powder container 1000 according to the embodiment described above, Figures 3 to 5 the content can be in a liquid state, and can be provided to the accommodation space 550 in a state of being impregnated in a gasket (not shown) formed of a porous material or the like. Hereinafter, the powder container 1000 according to the embodiment described above, Figures 6 to 8In the powder container 1000 of the described embodiment, a mesh member 600 is further provided to inhibit leakage of the contents to the outside to some extent, whereby a more diverse variety of contents can be accommodated in the accommodation space 550. In the present embodiment, as in the foregoing, a liquid content impregnated in a gasket (not shown) can be disposed in the accommodation space 550, but it is also possible to fill a content such as a cream or a gel having a relatively high viscosity without a gasket (not shown).
[0060] As shown in Figures 6 to 8 the powder container 1000 of the present embodiment can further include the mesh member 600. The mesh member 600 is a member in the shape of a mesh formed with a plurality of fine pores, and can be disposed so as to cover the upper portion of the accommodation space. When the mesh member 600 is pressed from above by a user, the mesh member 600 can be pressed downward and moved downward, and the contents of the accommodation space 550 can be adhered to the upper portion of the mesh member 600 through the pores formed in the mesh member 600.
[0061] In comparison with the first embodiment described above, the constituent elements of the powder container 1000 of the second embodiment of the present application can be changed so as to be able to fix the mesh member 600 at a specified position. For example, the inner base 500 can further include a base support wall 520. The base support wall 520 extends upward from the base bottom 510 at a distance from the inner side of the base inner wall 530. In addition, the close-fitting ring 700 can further include a ring inner wall 720 that extends downward from the inner side lug 710 at a distance from the inner side of the ring side wall 730. A plurality of fixing prongs 722 can be formed at the lower end of the ring inner wall 720.
[0062] When the quadrangular powder container 1000 of the present embodiment is assembled, the edges of the mesh member 600 can be first fixed to the fixing prongs 722 of the close-fitting ring 700. In this state, the ring inner wall 720 can be inserted between the base support wall 520 and the base inner wall 530. Since the mesh member 600 is formed in the shape of a mesh with pores, when the close-fitting ring 700 is combined to the inner base 500 in a state in which the lower end thereof is combined to the fixing prongs 722 of the ring inner wall 720, the mesh member 600 is stretched, and a portion of the edges of the mesh member 600 is pulled flat on the upper portion of the base support wall 520, as shown in Figure 7 and Figure 8 the mesh member 600, and the middle portion of the mesh member 600 is pulled flat on the upper portion of the base support wall 520.
[0063] Also in the present embodiment, the sealing member 840 is in contact with the flat surface of the inner side lug 710 in double, whereby the accommodation space 550 can be effectively sealed, and the lower end of the housing outer wall 920 is in contact with the flat surface of the outer side lug 310, whereby the interior can be effectively sealed.
[0064] Although described above with reference to one embodiment of the present application, those skilled in the art will understand that modifications and changes can be made to the present application without departing from the spirit and scope of the present application as recited in the claims.
Claims
1. A quadrilateral powder container having a quadrilateral shape, characterized by, comprises a first inner side hinge part formed at the outer side lug in a position corresponding to one side of the quadrangular shape; a lower case comprising a middle part including the middle rim and the outer side lug, and a lower side part coupled to a lower portion of the middle part; a gasket comprising a gasket side wall configured to be inserted into a gap between the inner side wall of the base and the outer side wall of the base, and an inner side lug extending from an upper end of the gasket side wall to an inner side to form a flat surface at an upper portion and having an opening part formed at a center to communicate with the accommodation space; an inner cover comprising a cover plate configured to cover the opening part, a bent part bent at an edge of the cover plate to extend upward, a cover rim protruding downward at an edge of the bent part, a sealing member installed between the cover plate and the cover rim, and a second inner side hinge part formed at the cover rim in a position corresponding to the first inner side hinge part and configured to be hingedly coupled with the first inner side hinge part to open and close the opening part; and an upper case comprising a case plate and a case outer wall to form a cover space at an inner side of the case outer wall, and a second outer side hinge part formed at the case outer wall in a position corresponding to the first outer side hinge part and configured to be hingedly coupled with the first outer side hinge part, and the sealing member comprises: a fixing part in contact with a lower side surface of the bent part; and a closing part extending downward from an outer side upper portion of the fixing part, when the inner cover is closed, an outer side surface of the closing part is in close contact with an inner side surface of the outer side wall of the base, and an end portion of a lower end of the closing part and an inner side lower portion of the fixing part is positioned above the inner side lug of the gasket. 2.The quadrangular powder container according to claim 1, wherein the lower case comprises: a middle part including the middle rim and the outer side lug; and a lower side part coupled to a lower portion of the middle part. 3.The quadrangular powder container according to claim 2, wherein the lower case includes a first magnet, the upper case includes a second magnet coupled to a position corresponding to the first magnet and having a magnetic attraction with respect to the first magnet, the lower side part includes a support protrusion supporting the first magnet from below in a manner that the first magnet is positioned below the outer side lug. 4.The quadrangular powder container according to claim 1, wherein the lower case includes a first magnet, the upper case includes a second magnet coupled to a position corresponding to the first magnet and having a magnetic attraction with respect to the first magnet, A magnet groove opened upward is formed in the upper case to insert the second magnet, and the upper case includes a mounting plate combined to the upper portion to shield the magnet groove.
5. The quadrilateral powder container according to claim 1, wherein A porous material pad is further included in the accommodation space, and the pad is impregnated with a liquid content.
6. The quadrilateral powder container according to claim 1, wherein A mesh member in the shape of a mesh is further included to cover the upper portion of the accommodation space, The inner base further includes a base support wall extended upward from the base bottom at a distance from the inner wall of the base, The abutting ring further includes a ring inner wall extended downward from the inner side lug at a distance from the side wall of the ring on the inner side of the side wall, and a plurality of fixing prongs are formed at the lower end, The ring inner wall is inserted between the inner wall of the base and the base support wall in a state that the edge of the mesh member is fixed by the fixing prongs.