SUMMERY OF THE UTILITY MODEL
In view of the above, embodiments of the present application provide a reusable container.
In order to achieve the above purpose, the technical solution of the embodiment of the present application is implemented as follows:
an embodiment of the present application provides a container, including:
a bottle body having a material containing cavity with an open top side;
the shell is sleeved outside the bottle body and is detachably connected with the bottle body; and
the coating assembly can cover or open the top opening of the material containing cavity, and a coating head of the coating assembly can extend into or pull out of the material containing cavity through the top opening of the material containing cavity.
In some embodiments, the vial is snap-fit with the housing.
In some embodiments, one of the outer peripheral wall of the bottle body and the inner peripheral wall of the housing is formed with a convex portion, and the other of the outer peripheral wall of the bottle body and the inner peripheral wall of the housing is formed with a concave portion, and the convex portion is inserted into the concave portion to cause the bottle body to be snapped into the housing.
In some embodiments, the separation force of the bottle body from the housing is between 1kgf and 2.5 kgf.
In some embodiments, the coating assembly comprises:
a cover body; and
the coating piece is provided with the coating head, and one end of the coating piece, which is far away from the coating head, extends into the cover body and is detachably connected with the cover body.
In some embodiments, the applicator member is snap-fit to the cover.
In some embodiments, the outer peripheral wall of the end of the applicator member remote from the applicator head is formed with a protrusion, the inner peripheral wall of the cap body is formed with a boss, the protrusion is movable from the bottom side of the boss to the top side of the boss, and the bottom surface of the protrusion is capable of abutting the top surface of the boss to snap the applicator member to the cap body.
In some embodiments, the top of the applicator is configured with an annular plate formed with at least one notch, the protrusion being formed on the outer peripheral wall of the annular plate.
In some embodiments, the cap body has a separation force from the application member of between 1kgf and 2.5 kgf.
In some embodiments, the bottle body and the applicator are threadably engaged such that the applicator closes or opens the top opening of the receptacle chamber.
In some embodiments, the applicator includes a connecting sleeve and a shaft; the connecting sleeve extends into the cover body and is detachably connected with the cover body, the top of the rod body extends into the connecting sleeve and is connected with the connecting sleeve, and the bottom of the rod body is connected with the coating head;
the bottle body is provided with an external thread at the position of the opening at the top side of the material containing cavity, an internal thread is formed inside the connecting sleeve, and the external thread is matched with the internal thread so as to enable the coating piece to cover or open the opening at the top side of the material containing cavity.
In some embodiments, the container further comprises a sealing sleeve, the sealing sleeve is positioned at the top opening of the material containing cavity and is sleeved on the inner wall surface of the material containing cavity, and the sealing sleeve can seal a gap between the coating assembly and the bottle body in a state that the coating assembly covers the material containing cavity.
In some embodiments, the bottom portion of the sealing boot closes to form a scraper portion having a minimum inner diameter that is less than a maximum outer diameter of the applicator head.
In some embodiments, the container includes a bottle cap capable of closing or opening the top-side opening of the holding cavity.
The container provided by the embodiment of the application comprises a bottle body, a shell and an application assembly. The user can need not directly to abandon the container after using up the interior material of bottle, can dismantle the bottle from the casing to replace new bottle, can realize the function of filling once more of product. So, when guaranteeing container normal use, casing and bottle physical stamina can separate in appropriate time, and casing ability reuse has reduced the use cost of container, and the environmental protection is practiced thrift more to the product.
Detailed Description
It should be noted that the various embodiments/implementations provided in this application can be combined with each other without contradiction. The detailed description in the specific embodiments should be understood as an illustration of the spirit of the application and not as an undue limitation of the application.
In the description of the present application, the orientation or positional relationship of the terms "top" and "bottom" are based on the orientation or positional relationship of the container of fig. 3, it being understood that these orientation terms are merely for convenience of describing the present application and for simplicity of description, and are not intended to indicate or imply that the referenced device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be considered limiting of the present application.
Referring to fig. 1 and 2, the present embodiment provides a container including a bottle body 1, a housing 2, and an application assembly 3. The bottle body 1 is provided with a material containing cavity 1a with an opening at the top side, the shell 2 is sleeved outside the bottle body 1 and is detachably connected with the bottle body 1, the coating component 3 can cover or open the opening at the top side of the material containing cavity 1a, and the coating head 31 of the coating component 3 can extend into or pull out of the material containing cavity 1a through the opening at the top side of the material containing cavity 1 a. That is, the user can remove the bottle body 1 from the housing 2 and replace a new bottle body 1 without directly discarding the container after using the material in the bottle body 1, thereby realizing the function of refilling the product. So, when guaranteeing container normal use, casing 2 can separate in suitable time with bottle 1, and casing 2 can reuse, has reduced the use cost of container, and the environmental protection is practiced thrift more to the product.
In one embodiment, referring to fig. 2, 3 and 5, the bottle body 1 is clamped with the housing 2. Because the bottle body 1 and the shell 2 may need to be disassembled and assembled for many times, the bottle body 1 and the shell 2 are matched and clamped in consideration of simple installation and cost, so that the bottle body 1 and the shell 2 can be conveniently disassembled while the matching is guaranteed to be firm.
In one embodiment, referring to fig. 2, 3 and 5, a convex portion 11 is formed on one of the outer peripheral wall of the bottle body 1 and the inner peripheral wall of the housing 2, a concave portion 21 is formed on the other of the outer peripheral wall of the bottle body 1 and the inner peripheral wall of the housing 2, and the convex portion 11 is inserted into the concave portion 21 to clamp the bottle body 1 in the housing 2. If the convex part is formed on the bottle body 1, the corresponding shell 2 is provided with a concave part 21; if the female portion 21 is formed on the vial 1, a male portion is formed on the corresponding housing 2.
Convex part and concave part 21 are the integrated into one piece structure with bottle 1 or casing 2 respectively, so, the joint cooperation is compacter, structural strength is good. It will be appreciated that the connection of the male and female portions 21 to the vial 1 or housing 2, respectively, may also be a variety of connections, such as welding, gluing, etc.
The material of the bottle body 1 and the housing 2 is not limited, and for example, the bottle body 1 and the housing 2 are made of plastic material with certain elasticity.
In one embodiment, the separation force between the bottle body 1 and the housing 2 is 1kgf to 2.5 kgf. That is, the separation force of the clamping between the bottle body 1 and the shell 2 can be set between 9.8N and 24.5N according to the actual use condition. So, bottle 1 and casing 2 joint is effectual when normal use, and bottle 1 is connected closely with casing 2. When the bottle body 1 needs to be replaced and detached, the separating force is moderate, and the user can detach the bottle body conveniently.
In one embodiment, referring to fig. 2, 3 and 4, the applicator assembly 3 includes a cap 32 and an applicator member 33 provided with an applicator head 31. The end of the applicator element 33 remote from the applicator head 31 projects into the cap 32 and is detachably connected to the cap 32. That is, the applicator head 31 is detachable from the cap body 32, and when the applicator member 33 is damaged or the applicator member 33 cannot meet the user's use requirement, the user can replace the applicator member 33 as needed without discarding the container. Therefore, various use requirements of the user on the container are met, the use experience of the user is improved, the use cost of the container is reduced, and the product is more economical and environment-friendly.
In one embodiment, referring to fig. 2, 3 and 4, the applicator 33 is snap-fitted to the cover 32. Because the coating member 33 and the cover body 32 may need to be disassembled and assembled for many times, the coating member 33 and the cover body 32 can be disassembled conveniently while ensuring the firm fit because the coating member is clamped in the fit between the coating member 33 and the cover body 32 due to the convenience and cost of installation.
In one embodiment, referring to fig. 2, 3 and 4, the outer peripheral wall of the end of the application member 33 away from the application head 31 is formed with a protrusion 331, the inner peripheral wall of the cover 32 is formed with a boss 321, the protrusion 331 can move from the bottom side of the boss 321 to the top side of the boss 321, and the bottom surface of the protrusion 331 can abut against the top surface of the boss 321, so that the application member 33 is clamped with the cover 32. That is, when the application member 33 is attached to the lid body 32, the projection 331 elastically deforms the projection 331 or the projection 321 by pressing the projection 321, thereby snapping the application member 33 onto the lid body 32. After installation, the bottom surface of the projection 331 can abut against the top surface of the boss 321, and a certain separation force is required to separate the cap 32 and the applicator 33 from the engaged state.
In one embodiment, the separating force between the cap 32 and the applicator 33 is 1kgf to 2.5 kgf. That is, the separating force of the engagement between the cover 32 and the applicator 33 may be set to 9.8N to 24.5N depending on the actual use. Therefore, the cover body 32 and the coating piece 33 are good in clamping effect in normal use, and the cover body 32 and the coating piece 33 are tightly connected. When the coating member 33 needs to be replaced and disassembled, the separating force is moderate, and the user can conveniently disassemble the coating member.
In one embodiment, referring to fig. 4 and 6, the top of the coating member 33 is configured with a ring plate 332, the ring plate 332 is formed with at least one notch 332a, and the protrusion 331 is formed on the outer peripheral wall of the ring plate 332. On the one hand, the top of the coating member 33 is provided as the annular plate 332, which can reduce the weight of the material, make the structure thinner and lighter, and reduce the production cost. On the other hand, because the cover 32 and the coating member 33 need to be connected in a clamping manner, the annular plate 332 is provided with the notch 332a, so that the size of elastic deformation of the protrusion 331 in the process of clamping the boss 321 can be adjusted, and the clamping fit of different separating forces of products can be adapted.
In one embodiment, referring to FIGS. 2 and 6, the bottle body 1 and the applying member 33 are screw-engaged so that the applying member 33 covers or uncovers the top opening of the receiving chamber 1 a. Through screw-thread fit, bottle 1 and coating piece 33 can only open or close through the mode of relative rotation, can avoid the container because receive great external force occasionally and lead to bottle 1 and coating piece 33 to separate, and the reliability of being connected between bottle 1 and the coating piece 33 is high.
For example, in one embodiment, referring to fig. 2 and 6, applicator 33 includes a coupling sleeve 333 and a stem 334. The connecting sleeve 333 extends into the cover 32 and is detachably connected with the cover 32, the top of the rod 334 extends into the connecting sleeve 333 and is connected with the connecting sleeve 333, and the bottom of the rod 334 is connected with the coating head 31. The bottle body 1 is formed with a male screw 12 at a position of an opening of the receiving chamber 1a, and a female screw 3331 is formed inside the coupling sleeve 333, and the male screw 12 is engaged with the female screw 3331 to close or open the top opening of the receiving chamber 1a by the coating member 33. That is to say, the connecting sleeve 333 is an integrally formed part, and on one hand, the connecting sleeve can be matched with the cover body 32 to realize that the coating member 33 can be detached from the cover body 32, and the container can replace different coating members 33 according to different requirements, so that various use requirements of customers can be met. On the other hand, the coating member 33 is independent from the cover 32, the coating member 33 can independently cover or open the bottle body 1, the cover 32, the cover 3232 and the cover 323232 are used for providing attractive appearance, the cover 32 and the coating member 33 have clear functions and compact structure, and the process cost of the container can be reduced.
The connection mode of the coating head 31 and the bottom of the rod body 334 is not limited, and various connection modes such as glue joint, clamping joint and the like can be adopted. Illustratively, the coating head 31 has a plug formed at the top end thereof and a slot formed at the bottom end of the rod 334, and the plug is inserted into the slot from the bottom end of the rod 334 by interference fit, so that the coating head 31 is connected to the rod 334.
The type of the application head 31 is not limited, and may be a structure having a dipping or sucking function. For example, the coating head 31 may be a brush head made of a cotton material, the coating head 31 may also be a brush made of a soft material, and the coating head 31 may further include a brush rod and rolling brushes spaced apart from the brush rod.
In one embodiment, referring to fig. 2, 3 and 5, the container further includes a sealing sleeve 4, the sealing sleeve 4 is located at the top opening of the material containing cavity 1a and is sleeved on the inner wall surface of the material containing cavity 1a, and the sealing sleeve 4 can seal the gap between the coating assembly 3 and the bottle body 1 in a state that the coating assembly 3 covers the material containing cavity 1 a. The sealing sleeve 4 can play a role in preventing the substances in the containing cavity from leaking out.
The material of the sealing sleeve 4 is not limited. For example, rubber or silicone may be used.
In one embodiment, referring to fig. 2, 3 and 5, the bottom of the sealing sleeve 4 is closed to form a scraper 41, and the minimum inner diameter of the scraper 41 is smaller than the maximum outer diameter of the coating head 31. So, when the user took out coating head 31 and uses, scrape material portion 41 and can contact with coating head 31, the user can adjust coating head 31 according to actual conditions and dip in the quantity of getting and holding intracavity material, has improved user's use and has experienced, can reduce the extravagant condition of material that dips in too much and lead to.
In one embodiment, referring to fig. 7, 8 and 9, the container includes a cap 7, and the cap 7 can close or open the top opening of the material containing chamber 1 a. On the one hand, the bottle cap 7 is used for sealing a new bottle body 1 for replacement; on the other hand, when the user is not using the material in the original bottle body 1, but needs to replace the new material of other bottle bodies 1, the bottle cap 7 can cover the bottle body 1 detached from the shell 2, so that the user can seal the bottle body 1 which is not used.
In an exemplary embodiment, referring to fig. 7, 8 and 9, a sealing sleeve 4 is provided between the bottle cap 7 and the bottle body 1 for replacing the sealing to ensure that the material in the material chamber 1a is not contaminated.
In one embodiment, referring to fig. 1, 2 and 3, the container includes a cover 5 and a housing 6, the cover 5 is disposed on the outer side of the coating assembly 3 and is fixedly connected to the coating assembly 3, and the housing 6 is disposed on the outer side of the housing 2 and is fixedly connected to the housing 2. The material of the cover 5 and the housing 6 is not limited. For example, the cover 5 and the housing 6 are smooth-surfaced metal pieces to enhance the attractive appearance of the product.
The above description is only for the specific embodiments of the present application, but the scope of the present application is not limited thereto, and any person skilled in the art can easily conceive of the changes or substitutions within the technical scope of the present application, and all the changes or substitutions should be covered by the scope of the present application. Therefore, the protection scope of the present application shall be subject to the protection scope of the claims.