Ointment storage container
By designing a storage container for traditional Chinese medicine pastes with a base and a hemispherical lid, the problems of large packaging volume and difficulty in controlling dosage in traditional Chinese medicine pastes have been solved, achieving the effects of portability and precise dosage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGTZE RIVER PHARM GRP CO LTD
- Filing Date
- 2025-04-17
- Publication Date
- 2026-04-14
AI Technical Summary
Traditional herbal pastes are bulky, inconvenient to carry, and difficult to control the dosage.
Design a container for storing medicinal pastes, which includes a base plate and two hemispherical lids. The hemispherical lids are detachably connected to the base plate to form independent storage chambers, which can hold different medicinal pastes. They can be taken out independently when needed. The structure is compact and easy to carry.
It enables the portability of medicinal pastes and precise dosage control, reducing waste and improving ease of use.
Smart Images

Figure CN224117968U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of packaging technology, and more specifically, to a container for storing traditional Chinese medicine pastes. Background Technology
[0002] With the fast pace of modern life and increased health awareness, the market demand for traditional and effective tonics like medicinal pastes is growing. Medicinal pastes are designated drug formulas in traditional Chinese medicine, typically composed of various herbs. They can be used externally, such as to treat skin diseases, burns, and wounds, or internally, such as to treat digestive and respiratory system diseases. The formulas and usage of medicinal pastes have undergone rigorous clinical trials and have proven their efficacy. Medicinal pastes are a common treatment method in traditional Chinese medicine. Currently, medicinal pastes are generally packaged in bags, using strip packaging devices to pack them according to specific specifications and dimensions.
[0003] However, traditional herbal paste packaging has drawbacks such as bulky shape, difficulty in controlling dosage, and inconvenience in carrying. Utility Model Content
[0004] The purpose of this invention includes, for example, providing a container for storing traditional Chinese medicine pastes that can reduce volume and is easy to carry and use.
[0005] The embodiments of this utility model can be implemented as follows:
[0006] In a first aspect, this utility model provides a container for storing traditional Chinese medicine pastes, comprising a base plate, a first hemispherical cover, and a second hemispherical cover, wherein:
[0007] The base plate has a first plate surface and a second plate surface arranged opposite to each other; the first hemispherical cover is located on the side where the first plate surface is located and is detachably connected to the base plate, and the first hemispherical cover and the base plate cooperate to form a first receiving chamber for receiving the paste; the second hemispherical cover is located on the side where the second plate surface is located and is detachably connected to the base plate, and the second hemispherical cover and the base plate cooperate to form a second receiving chamber for receiving the paste.
[0008] In an optional embodiment, the first disk surface is provided with a first groove, and the annular groove peripheral wall of the first groove is provided with a first limiting protrusion. The first limiting protrusion and the bottom wall of the first groove are spaced apart to form a first limiting space. The outer peripheral surface of the first hemispherical cover is provided with a first snap-fit protrusion. The first hemispherical cover is rotatably engaged with the base disk, and the first snap-fit protrusion can rotate into the first limiting space to restrict the separation of the first hemispherical cover from the base disk.
[0009] In an optional embodiment, the surface of the first snap-fit protrusion has a first snap-fit surface and a first limiting surface connected together, and the first snap-fit surface and the first limiting surface have an angle between them.
[0010] The surface of the first limiting protrusion has a connected first bottom side surface and a first end surface, the first bottom side surface being located on the side of the first limiting protrusion near the bottom wall of the first groove; the first engaging surface is used to contact the first bottom side surface when the first engaging protrusion is located within the first limiting space; the first limiting surface is used to contact the first end surface when the first engaging protrusion is located within the first limiting space, so as to restrict the first engaging protrusion from rotating away from the first limiting protrusion.
[0011] In an optional implementation, the first snap-fit surface or the first bottom surface is configured as a slope.
[0012] In an optional embodiment, the second disk surface is provided with a second groove, and a second limiting protrusion is provided on the annular groove peripheral wall of the second groove. The second limiting protrusion and the bottom wall of the second groove are spaced apart to form a second limiting space. The outer peripheral surface of the second hemispherical cover is provided with a second snap-fit protrusion. The second hemispherical cover is rotatably engaged with the base disk, and the second snap-fit protrusion can rotate into the second limiting space to restrict the separation of the second hemispherical cover from the base disk.
[0013] In an optional embodiment, the surface of the second snap-fit protrusion has a connected second snap-fit surface and a second limiting surface, and the second snap-fit surface and the second limiting surface have an angle between them.
[0014] The surface of the second limiting protrusion has a connected second bottom side surface and a second end surface, the second bottom side surface being located on the side of the second limiting protrusion near the bottom wall of the second groove; the second engaging surface is used to contact the second bottom side surface when the second engaging protrusion is located within the second limiting space; the second limiting surface is used to contact the second end surface when the second engaging protrusion is located within the second limiting space, so as to restrict the second engaging protrusion from rotating away from the second limiting protrusion.
[0015] In an optional embodiment, the second snap-fit surface or the second bottom surface is configured as a slope.
[0016] In an optional embodiment, the outer spherical surface of the first hemispherical cover is provided with a first light-blocking film, and the outer spherical surface of the second hemispherical cover is provided with a second light-blocking film.
[0017] In an optional embodiment, the first light-shielding film and the second light-shielding film are different colors; the container for storing the herbal paste also includes a first transparent cover and a second transparent cover; the first transparent cover is connected to the first hemispherical cover, and the two cooperate to clamp the first light-shielding film; the second transparent cover is connected to the second hemispherical cover, and the two cooperate to clamp the second light-shielding film.
[0018] In an optional embodiment, a first seal is provided between the first hemispherical cover and the base plate; or / and, a second seal is provided between the second hemispherical cover and the base plate.
[0019] The beneficial effects of this utility model embodiment include, for example:
[0020] In summary, the herbal paste storage container provided in this embodiment features a first hemispherical lid and a second hemispherical lid on either side of a base plate. The first hemispherical lid and the base plate form a first receiving chamber, and the second hemispherical lid and the base plate form a second receiving chamber. The first and second receiving chambers are independently configured, allowing for the placement of different herbal pastes without interference during use. For example, daytime-use herbal pastes can be placed in the first receiving chamber, while nighttime-use herbal pastes can be placed in the second receiving chamber. This allows users to conveniently select the appropriate herbal paste based on their needs. When the first and second hemispherical lids and the base plate are assembled, they form a compact, small-sized, and portable structure. Furthermore, the fixed volumes of the first and second receiving chambers allow for better dosage control. Attached Figure Description
[0021] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.
[0022] Figure 1 This is an exploded view of the container for storing medicinal pastes according to an embodiment of this application;
[0023] Figure 2 This is an exploded view of the base plate according to an embodiment of this application;
[0024] Figure 3 This is a schematic diagram of the first hemispherical cover and the first transparent cover according to an embodiment of this application;
[0025] Figure 4 This is a schematic diagram of the second hemispherical cover and the second transparent cover according to an embodiment of this application.
[0026] icon:
[0027] 100 - Base plate; 110 - First plate surface; 111 - First groove; 112 - First limiting protrusion; 1121 - First bottom side surface; 1122 - First end face; 113 - First limiting space; 120 - Second plate surface; 121 - Second groove; 122 - Second limiting protrusion; 1221 - Second bottom side surface; 1222 - Second end face; 123 - Second limiting space; 130 - Inner convex ring; 200 - First hemispherical cover; 201 - First hemispherical groove; 210 - First snap-fit protrusion; 211 - First snap-fit surface; 212 - First limiting surface; 300 - Second hemispherical cover; 301 - Second hemispherical groove; 310 - Second snap-fit protrusion; 311 - Second snap-fit surface; 312 - Second limiting surface; 400 - First transparent cover; 500 - Second transparent cover. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. The components of the embodiments of this utility model described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0029] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but merely to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.
[0030] It should be noted that similar labels and letters in the following figures indicate similar items. Therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0031] In the description of this utility model, it should be noted that if terms such as "upper," "lower," "inner," or "outer" are used to indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or the orientation or positional relationship in which the product is usually placed during use, they are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.
[0032] Furthermore, the terms "first" and "second" are used only to distinguish descriptions and should not be interpreted as indicating or implying relative importance.
[0033] It should be noted that, where there is no conflict, the features in the embodiments of this utility model can be combined with each other.
[0034] In existing technologies, herbal pastes are generally packaged in strip-shaped bags, which are bulky and inconvenient to carry and store. The packaging bags are also flexible and have blind spots, resulting in incomplete consumption of the herbal paste inside the bag, which easily leads to waste and increases costs. In addition, users need to control the dosage themselves based on experience when taking herbal pastes, which results in poor dosage control accuracy.
[0035] In view of this, the designers have provided a container for storing medicinal pastes that can reduce the volume, making it easy to carry and store; and also makes it easy to control the dosage each time.
[0036] Please refer to Figure 1 This embodiment provides a container for storing medicinal pastes, including a base plate 100, a first hemispherical cover 200, and a second hemispherical cover 300. The base plate 100 has a first plate surface 110 and a second plate surface 120 disposed opposite to each other. The first hemispherical cover 200 is located on the side of the first plate surface 110 and is detachably connected to the base plate 100, and the first hemispherical cover 200 and the base plate 100 cooperate to form a first receiving chamber for containing the medicinal paste. The second hemispherical cover 300 is located on the side of the second plate surface 120 and is detachably connected to the base plate 100, and the second hemispherical cover 300 and the base plate 100 cooperate to form a second receiving chamber for containing the medicinal paste.
[0037] As described above, the method of using the herbal paste storage container provided in this embodiment is as follows:
[0038] Different types of medicinal pastes with different effects can be placed in the first and second receiving chambers. For example, a paste for daytime use can be placed in the first receiving chamber, and a paste for nighttime use can be placed in the second receiving chamber. In use, the paste in the first receiving chamber can be taken independently by opening the first hemispherical cover 200, or the paste in the second receiving chamber can be taken independently by opening the second hemispherical cover 300. The operation is convenient. The volumes of the first and second receiving chambers are fixed, allowing for precise control of the dosage. Furthermore, under normal circumstances, the first hemispherical cover 200, the second hemispherical cover 300, and the base plate 100 work together to form an integrated structure that is compact, small in size, and easy to carry.
[0039] The following examples illustrate the detailed structure of the container for storing traditional Chinese medicine pastes.
[0040] Please combine Figure 1In this embodiment, optionally, the medicinal paste storage container includes a base plate 100, a first hemispherical cover 200, a second hemispherical cover 300, a first transparent cover 400, and a second transparent cover 500. The first transparent cover 400 is installed on the first hemispherical cover 200, and the first hemispherical cover 200 is detachably connected to the base plate 100. The second transparent cover 500 is installed on the second hemispherical cover 300, and the second hemispherical cover 300 is detachably connected to the base plate 100.
[0041] Please combine Figure 2 Optionally, the base disk 100 has a first disk surface 110 and a second disk surface 120 disposed opposite to each other, both of which are circular surfaces. Simultaneously, the first disk surface 110 is provided with a circular first groove 111, and a first limiting protrusion 112 is provided on the annular groove peripheral wall of the first groove 111. A gap exists between the first limiting protrusion 112 and the bottom wall of the first groove 111 to form a first limiting space 113. It should be understood that the number of first limiting protrusions 112 can be one or more. For example, in this embodiment, the number of first limiting protrusions 112 is three, and the three first limiting protrusions 112 are evenly spaced around the axis of the base disk 100. Furthermore, for ease of manufacturing, the structure of the three first limiting protrusions 112 can be set to be identical. To avoid repetition and redundancy, this embodiment provides a detailed description of the structure of one first limiting protrusion 112.
[0042] Optionally, the first limiting protrusion 112 is configured as a strip-shaped protrusion, and the surface of the first limiting protrusion 112 has a connected first bottom side surface 1121 and a first end surface 1122. The first bottom side surface 1121 is located on the side of the first limiting protrusion 112 close to the bottom wall of the first groove 111.
[0043] Meanwhile, the second disk surface 120 is provided with a circular second groove 121, and a second limiting protrusion 122 is provided on the annular groove peripheral wall of the second groove 121. A gap exists between the second limiting protrusion 122 and the bottom wall of the second groove 121 to form a second limiting space 123. It should be understood that the number of second limiting protrusions 122 can be one or more. For example, in this embodiment, the number of second limiting protrusions 122 is three. The three second limiting protrusions 122 are evenly spaced around the axis of the base disk 100, and the three second limiting protrusions 122 cooperate with the bottom wall of the groove to form three second limiting spaces 123. Furthermore, for ease of processing, the structure of the three second limiting protrusions 122 can be set to be identical. To avoid repetition and redundancy, this embodiment provides a detailed description of the structure of one second limiting protrusion 122.
[0044] For example, the second limiting protrusion 122 is configured as a strip-shaped protrusion, and the surface of the second limiting protrusion 122 has a connected second bottom side surface 1221 and a second end surface 1222. The second bottom side surface 1221 is located on the side of the second limiting protrusion 122 near the bottom wall of the second groove 121. The first end surface 1122 and the second end surface 1222 can be distributed at the same end in a set rotation direction of the base disk 100, or the first end surface 1122 and the second end surface 1222 can be distributed at opposite ends in the set rotation direction of the base disk 100.
[0045] In addition, to prevent slippage during operation, anti-slip patterns can be provided on the outer peripheral surface of the base plate 100. The outer peripheral surface of the base plate 100 can be partially spherical, and the anti-slip patterns can be multiple staggered anti-slip grooves. When opening the first hemispherical cover 200 and the second hemispherical cover 300, the operator can apply force to the anti-slip patterns to increase friction, making it less likely to slip and saving time and effort during operation.
[0046] Please combine Figure 1 and Figure 3 In this embodiment, optionally, the first hemispherical cover 200 has a first hemispherical groove 201, and the outer peripheral surface of the first hemispherical cover 200 is provided with a first snap-fit protrusion 210. The number of the first snap-fit protrusions 210 is equal to the number of the first limiting protrusions 112. For example, in this embodiment, the number of the first snap-fit protrusions 210 is three. Part of the first hemispherical cover 200 is inserted into the first groove 111, and the first hemispherical cover 200 is rotatably engaged with the base plate 100. The first snap-fit protrusions 210 can rotate into the first limiting space 113 to restrict the separation of the first hemispherical cover 200 from the base plate 100. At this time, the first plate surface 110 closes the opening of the first hemispherical groove 201, defining the first receiving cavity. The first snap-fit protrusions 210 can also rotate out from the first limiting space 113, thereby opening the first hemispherical cover 200.
[0047] Optionally, the surface of the first engaging protrusion 210 has a connected first engaging surface 211 and a first limiting surface 212, with the first engaging surface 211 and the first limiting surface 212 forming an angle. The first engaging surface 211 can be configured as an inclined surface. When the first hemispherical cover 200 rotates relative to the base plate 100, the three first engaging protrusions 210 can simultaneously engage into the corresponding first limiting spaces 113. When the first engaging protrusion 210 and the first limiting protrusion 112 are engaged in place, the first engaging surface 211 contacts the first bottom side surface 1121, and the first limiting surface 212 contacts the first end surface 1122. For example, when the first hemispherical cover 200 is rotated clockwise, the first engaging protrusion 210 can be engaged into the first limiting space 113, and the first limiting surface 212 contacts the first end surface 1122. At this time, it is impossible to continue rotating clockwise, and the feedback of the rotation into place is achieved through a mechanical structure. If the first hemispherical cover 200 is rotated counterclockwise to engage with the base plate 100, and the first engaging protrusion 210 cannot enter the first limiting space 113, thus failing to engage, the operator is prompted to rotate in the opposite direction, i.e., clockwise, to engage the first engaging protrusion 210 with the first limiting space 113.
[0048] To allow the operator to more intuitively understand the direction of rotation, an arrow can be set on the first hemispherical cover 200. The arrow can be marked with the words "open" or "closed" to indicate that the first groove 111 is opened or closed along the direction of the arrow.
[0049] Meanwhile, since the first engaging surface 211 is set as an inclined surface, with the rotation direction of the first spherical cover toward the opening of the first groove 111 as a reference, the deeper the first engaging surface 211 is inserted into the first limiting space 113, the higher its height, thus securing it more tightly. Obviously, in other embodiments, the first bottom side surface 1121 can also be set as an inclined surface. As the insertion depth of the first engaging protrusion 210 increases, the clamping force between the first engaging protrusion 210 and the first limiting protrusion 112 becomes greater, resulting in a better clamping effect.
[0050] Furthermore, a first light-blocking film can be provided on the outer surface of the first hemispherical cover 200. The first transparent cover 400 is connected to the first hemispherical cover 200, and the two work together to hold the first light-blocking film. The herbal paste inside the first receiving cavity is not easily affected by light, achieving a light-blocking and freshness-preserving effect. The color of the first light-blocking film can be adjusted as needed. The color of the first light-blocking film can be directly observed through the first transparent cover 400, thereby determining the consumption time of the herbal paste in the first receiving cavity based on the color of the first light-blocking film. For example, the first light-blocking film is a gold film.
[0051] Furthermore, to improve sealing, a first sealing element is provided between the first hemispherical cover 200 and the first disc surface 110. For example, the first sealing element can be a sealing ring, which is located on the end face of the first transparent cover 400. When the first transparent cover 400 approaches the first disc surface 110, the two cooperate to compress the first sealing element, thereby achieving a seal. An annular groove can be provided on the first transparent cover 400, and the first sealing element can be embedded in the annular groove.
[0052] Please combine Figure 1 and Figure 4 In this embodiment, optionally, the second hemispherical cover 300 has a second hemispherical groove 301, and the outer peripheral surface of the second hemispherical cover 300 is provided with a second snap-fit protrusion 310. The number of second snap-fit protrusions 310 is equal to the number of second limiting protrusions 122. For example, in this embodiment, the number of second snap-fit protrusions 310 is three. Part of the second hemispherical cover 300 is inserted into the second groove 121, and the second hemispherical cover 300 is rotatably engaged with the base plate 100. The second snap-fit protrusion 310 can rotate into the second limiting space 123 to restrict the separation of the second hemispherical cover 300 from the base plate 100. At this time, the second plate surface 120 closes the opening of the second hemispherical groove 301, defining the second receiving cavity. The second snap-fit protrusion 310 can also rotate out from the second limiting space 123, thereby opening the second hemispherical cover 300.
[0053] Optionally, the surface of the second snap-fit protrusion 310 has a connected second snap-fit surface 311 and a second limiting surface 312, with the second snap-fit surface 311 and the second limiting surface 312 forming an angle. The second snap-fit surface 311 can be configured as an inclined surface. When the second hemispherical cover 300 rotates relative to the base plate 100, the three second snap-fit protrusions 310 can simultaneously snap into the corresponding second limiting spaces 123, and when the second snap-fit protrusion 310 and the second limiting protrusion 122 are engaged, the second snap-fit surface 311 contacts the second bottom side surface 1221, and the second limiting surface 312 contacts the second end surface 1222. For example, when the second hemispherical cover 300 is rotated clockwise, the second snap-fit protrusion 310 can be engaged into the second limiting space 123, and the second limiting surface 312 contacts the second end surface 1222. At this time, it is impossible to continue rotating clockwise, and the feedback of the rotation into place is achieved through a mechanical structure. If the second hemispherical cover 300 is rotated counterclockwise to engage with the base plate 100, and the second engaging protrusion 310 cannot enter the second limiting space 123, thus failing to engage, the operator is prompted to rotate in the opposite direction, i.e., clockwise, to engage the second engaging protrusion 310 with the second limiting space 123.
[0054] To allow the operator to more intuitively understand the direction of rotation, an arrow can be set on the second hemispherical cover 300. The arrow can be marked with the words "open" or "closed" to indicate whether the second groove 121 is opened or closed along the direction of the arrow.
[0055] It should be noted that the engagement directions of the first hemispherical cover 200 and the second hemispherical cover 300 with the base plate 100 can be set to be in the same direction or opposite directions. That is, the first hemispherical cover 200 engages with the base plate 100 by rotating clockwise, and the second hemispherical cover 300 engages with the base plate 100 by rotating counterclockwise. Alternatively, both can engage with the base plate 100 by rotating clockwise, or both can engage with the base plate 100 by rotating counterclockwise.
[0056] Meanwhile, since the second engaging surface 311 is set as an inclined surface, with the rotation direction of the second spherical cover toward the opening of the second groove 121 as a reference, the deeper the second engaging surface 311 is inserted into the second limiting space 123, the higher its height, thus securing it more tightly. Obviously, in other embodiments, the second bottom side surface 1221 can also be set as an inclined surface. As the insertion depth of the second engaging protrusion 310 increases, the clamping force between the second engaging protrusion 310 and the second limiting protrusion 122 becomes greater, resulting in a better clamping effect.
[0057] Furthermore, a second light-proof film can be provided on the outer surface of the second hemispherical cover 300. The second transparent cover 500 is connected to the second hemispherical cover 300, and the two work together to hold the second light-proof film. The herbal paste inside the second receiving cavity is not easily affected by light, achieving a light-proof preservation effect. The color of the second light-proof film can be adjusted as needed. The color of the second light-proof film can be directly observed through the second transparent cover 500, thereby determining the consumption time of the herbal paste in the second receiving cavity based on the color of the second light-proof film. For example, the second light-proof film can be silver.
[0058] Furthermore, to improve sealing, a second sealing element is provided between the second hemispherical cover 300 and the second disc surface 120. For example, the second sealing element can be a sealing ring, which is located on the end face of the second through cover 500. When the second through cover 500 is close to the second disc surface 120, the two cooperate to compress the second sealing element and achieve a seal. An annular groove can be provided on the second through cover 500, and the second sealing element is embedded in the annular groove.
[0059] It should be noted that when the herbal paste is stored in the first and second receiving cavities, the herbal paste in the corresponding cavity can be selected by observing the color of the first and second light-proof films. For example, during the day, the herbal paste in the first receiving cavity corresponding to the gold light-proof film can be taken. Conversely, at night, the herbal paste in the second receiving cavity corresponding to the silver light-proof film can be taken.
[0060] In other embodiments, optionally, both the first disc surface 110 and the second disc surface 120 are provided with inwardly protruding inner rings 130. The first limiting protrusion 112 and the inner rings 130 on the first disc surface 110 cooperate to clamp the first locking protrusion 210; the second limiting protrusion 122 and the inner rings 130 on the second disc surface 120 cooperate to clamp the second locking protrusion 220. This design leaves a certain gap to facilitate thermal expansion and contraction during product transportation, or collision between the pastes, making it safer to use.
[0061] The herbal paste storage container provided in this embodiment has a compact structure and small size, making it easy to store and carry. It also allows for the control of dosage by taking the herbal paste in the corresponding chamber as needed, making it flexible and convenient to use.
[0062] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the protection scope of the claims.
Claims
1. A container for storing traditional Chinese medicine pastes, characterized in that, It includes a base plate (100), a first hemispherical cover (200), and a second hemispherical cover (300), wherein: The base plate (100) has a first plate surface (110) and a second plate surface (120) disposed opposite to each other; the first hemispherical cover (200) is located on the side where the first plate surface (110) is located and is detachably connected to the base plate (100), and the first hemispherical cover (200) and the base plate (100) cooperate to form a first receiving chamber for receiving the paste; the second hemispherical cover (300) is located on the side where the second plate surface (120) is located and is detachably connected to the base plate (100), and the second hemispherical cover (300) and the base plate (100) cooperate to form a second receiving chamber for receiving the paste.
2. The container for storing medicinal pastes according to claim 1, characterized in that: The first disk surface (110) is provided with a first groove (111), and a first limiting protrusion (112) is provided on the annular groove peripheral wall of the first groove (111). The first limiting protrusion (112) and the groove bottom wall of the first groove (111) are spaced apart to form a first limiting space (113). The outer peripheral surface of the first hemispherical cover (200) is provided with a first snap-fit protrusion (210). The first hemispherical cover (200) is rotatably engaged with the base disk (100), and the first snap-fit protrusion (210) can rotate into the first limiting space (113) to restrict the separation of the first hemispherical cover (200) from the base disk (100).
3. The container for storing medicinal pastes according to claim 2, characterized in that: The surface of the first snap-fit protrusion (210) has a first snap-fit surface (211) and a first limiting surface (212) connected together, and the first snap-fit surface (211) and the first limiting surface (212) have an angle. The surface of the first limiting protrusion (112) has a connected first bottom side surface (1121) and a first end surface (1122), the first bottom side surface (1121) being located on the side of the first limiting protrusion (112) near the bottom wall of the first groove (111); the first engaging surface (211) is used to contact the first bottom side surface (1121) when the first engaging protrusion (210) is located within the first limiting space (113); the first limiting surface (212) is used to contact the first end surface (1122) when the first engaging protrusion (210) is located within the first limiting space (113) to restrict the first engaging protrusion (210) from rotating away from the first limiting protrusion (112).
4. The container for storing medicinal pastes according to claim 3, characterized in that: The first snap-fit surface (211) or the first bottom side surface (1121) is set as an inclined surface.
5. The container for storing medicinal pastes according to claim 1, characterized in that: The second disk surface (120) is provided with a second groove (121), and a second limiting protrusion (122) is provided on the annular groove peripheral wall of the second groove (121). The second limiting protrusion (122) and the bottom wall of the second groove (121) are spaced apart to form a second limiting space (123). The outer peripheral surface of the second hemispherical cover (300) is provided with a second snap-fit protrusion (310). The second hemispherical cover (300) is rotatably engaged with the base disk (100), and the second snap-fit protrusion (310) can rotate into the second limiting space (123) to restrict the separation of the second hemispherical cover (300) from the base disk (100).
6. The container for storing traditional Chinese medicine pastes according to claim 5, characterized in that: The surface of the second snap-fit protrusion (310) has a connected second snap-fit surface (311) and a second limiting surface (312), and the second snap-fit surface (311) and the second limiting surface (312) have an angle. The surface of the second limiting protrusion (122) has a connected second bottom side surface (1221) and a second end surface (1222). The second bottom side surface (1221) is located on the side of the second limiting protrusion (122) near the bottom wall of the second groove (121). The second snap-fit surface (311) is used to contact the second bottom side surface (1221) when the second snap-fit protrusion (310) is located in the second limiting space (123). The second limiting surface (312) is used to contact the second end surface (1222) when the second snap-fit protrusion (310) is located in the second limiting space (123) to restrict the second snap-fit protrusion (310) from rotating away from the second limiting protrusion (122).
7. The container for storing medicinal pastes according to claim 6, characterized in that: The second snap-fit surface (311) or the second bottom side surface (1221) is set as a slope.
8. The container for storing medicinal pastes according to any one of claims 1-7, characterized in that: The outer spherical surface of the first hemispherical cover (200) is provided with a first light-blocking film, and the outer spherical surface of the second hemispherical cover (300) is provided with a second light-blocking film.
9. The container for storing medicinal pastes according to claim 8, characterized in that: The first light-proof film and the second light-proof film are different colors; the container for storing the herbal paste also includes a first transparent cover (400) and a second transparent cover (500); the first transparent cover (400) is connected to the first hemispherical cover (200), and the two cooperate to clamp the first light-proof film; the second transparent cover (500) is connected to the second hemispherical cover (300), and the two cooperate to clamp the second light-proof film.
10. The container for storing medicinal pastes according to any one of claims 1-7, characterized in that: A first sealing element is provided between the first hemispherical cover (200) and the base plate (100); or / and, a second sealing element is provided between the second hemispherical cover (300) and the base plate (100).