Full-spiral cosmetic lifting container
By designing a full-spiral cosmetic lift container, the rotating stirring and spiral lifting functions of the full-spiral lift are solved, and the use efficiency and environmental protection are improved.
Patent Information
- Application Number
- CN202421993830.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The existing cosmetic bottle containers are prone to material layering during use, resulting in unsatisfactory use effect and varying degrees of residual amount of use, which easily pollutes the environment.
Design a fully spiral cosmetic lift container that includes the bottle body, bottle cap, material picking rod and inner plug. The fully spiral lifter ensures that the cosmetic material is fully mixed and reduces residue through rotating stirring and spiral lifting.
Through the rotating stirring and spiral lifting functions of the full spiral lift, the deposition and layering of cosmetics are avoided, the efficiency of use is improved, the residual amount is reduced, and the environment is protected.
Smart Images

Figure CN222892355U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cosmetic packaging containers, in particular to a full-spiral cosmetic lifting container. Background Art
[0002] Common liquid, viscous, and semi-solid cosmetics are usually stored in bottled containers, such as lip gloss, lip glaze, liquid lipstick, etc. Conventional bottled containers generally include a bottle body, a bottle cap, a material picking rod, and a material brush. The material brush is arranged at the front end of the material picking rod, and the material picking rod is fixed at the lower end of the bottle cap and extends through the bottle cap into the bottle body to pick up the material.
[0003] However, liquid, viscous, and semi-solid cosmetics are prone to stratification, resulting in unsatisfactory use effects of the cosmetics. Therefore, before use, it is generally necessary to manually stir or shake the cosmetics in the bottle.
[0004] For liquid cosmetic materials, the cosmetics in the bottle can be stirred and mixed using a material picking rod and a material brush, or mixed by shaking. However, for viscous and semi-solid cosmetic materials, the mixing effect is not ideal.
[0005] Moreover, bottled products such as lip gloss and lip glaze currently on the market all have varying degrees of residual content, which can easily pollute the environment if discarded outside. Utility Model Content
[0006] The technical problem solved by the utility model is to provide a cosmetic full spiral lifting container which can not only stir and mix the cosmetic material in the bottle but also fully utilize the cosmetic material in the bottle.
[0007] The technical solution adopted by the utility model to solve its technical problems is:
[0008] A full spiral cosmetic lifting container, comprising a bottle body, a bottle cap, a material taking rod and an inner plug, and a full spiral lifter;
[0009] The bottle body is provided with a material cavity for loading cosmetic material, the material cavity passes through the upper end of the bottle body, a bottle mouth is formed at the upper end of the bottle body, and the bottle cap is used to cover the bottle mouth;
[0010] The material taking rod is used to extend into the material cavity to take materials, and the material taking rod is regularly arranged at the lower end of the bottle cap;
[0011] The full spiral lifter is installed in the material cavity, and the bottle mouth is pressed by the inner plug to limit the full spiral lifter in the material cavity. The outer surface of the inner plug is interference-fitted with the inner wall of the bottle mouth and is clamped and fixed thereto. The material picking rod passes through the inner plug and the full spiral lifter in sequence and is clamped with the top end of the full spiral lifter. The bottle cap drives the material picking rod to rotate, and the rotation of the material picking rod drives the full spiral lifter to rotate in the material cavity.
[0012] The full spiral elevator comprises a top, a hollow full spiral lifting part in the middle and a bottom. The full spiral lifting part is regularly arranged between the top and bottom ends of the full spiral elevator, and is used to rotate and stir the cosmetic material in the material cavity, and at the same time, spirally lift the cosmetic material at the bottom of the material cavity upward.
[0013] The full spiral lifting part includes a plurality of spiral lifting parts connected end to end, and the spiral lifting part includes a plurality of staggered spiral lifting plates arranged front and back and a transfer plate for connecting the upper and lower sets of spiral lifting plates;
[0014] The plurality of spiral lifting plates avoid the material taking rod in the middle and are arranged in a staggered manner around the periphery of the material taking rod, so as to form a plurality of spiral ascending channels around the periphery of the material taking rod, and form a material taking area in the middle of the full spiral lifting part for the material taking rod to pass through;
[0015] The plurality of spiral lifting parts rotate and stir the cosmetic material in the material cavity, and drive the cosmetic material in the material cavity to flow upward along the plurality of spiral lifting passages, and then flow into the material taking area in the middle of the full spiral lifting part, so as to be picked up by the material taking brush head at the front end of the material taking rod.
[0016] Furthermore, the middle of several of the adapter plates are regularly disconnected to form two left and right groups of adapter plates, which are staggered up and down through several front and rear spiral lifting plates to form two groups of complementary segmented spiral lifting plates, and the segmented spiral lifting plates are segmented up and down with respect to the adapter plates; the two groups of complementary segmented spiral lifting plates are staggered with each other around the periphery of the material picking rod to form a segmented and continuously spirally ascending full spiral lifting part, and the segmented and continuously spirally ascending full spiral lifting part includes several segments of spiral lifting parts with respect to the several adapter plates.
[0017] Furthermore, the full-spiral lifting part includes two sets of complementary full-spiral lifting plates, which are arranged in the form of unfolded springs, and one side of the full-spiral lifting plates generally rises in a spiral to form a continuous full-spiral lifting part; the two sets of complementary full-spiral lifting plates avoid the middle material picking rod and are staggered around the periphery of the material picking rod, thereby forming a continuous spiral rising channel around the periphery of the material picking rod, and forming a material picking area in the middle of the full-spiral lifting part for the material picking rod to pass through; while the continuous full-spiral lifting part rotates and stirs the cosmetic material in the material cavity, it drives the cosmetic material at the bottom of the material cavity to flow upward along the continuous spiral rising channel, and flows into the material picking area to be used by the material picking brush head at the tail end of the material picking rod.
[0018] Furthermore, a slot is regularly arranged in the middle of the top of the full spiral lifter to facilitate the passage of the material picking rod. The material picking rod passes through the slot and is engaged with the full spiral lifter through the slot. The slot is arranged along the shape of the material picking rod.
[0019] Furthermore, the material taking rod is a regular polygonal column, and the material taking rod is a regular polygonal column larger than a regular hexagon.
[0020] Furthermore, the material taking rod is a regular dodecagonal column.
[0021] Furthermore, the bottle body adopts an inner and outer bottle body design, including an inner bottle body and an outer bottle body, and the inner bottle body and the outer bottle body are snap-fitted together; the bottle cap adopts an inner and outer bottle cap design, including an inner bottle cap and an outer bottle cap, and the inner bottle cap and the outer bottle cap are snap-fitted together.
[0022] The beneficial effects of the utility model are:
[0023] The utility model can rotate and stir the cosmetic material in the material cavity by the full spiral lifter, and can simultaneously spirally lift the cosmetic material at the bottom of the material cavity upward, which can avoid the deposition and stratification of the cosmetic material in the material cavity on the one hand; on the other hand, the cosmetic material at the bottom of the material cavity can be spirally lifted, thereby reducing the residual cosmetic material in the material cavity, so as to maximize the use, thereby better saving resources and protecting the environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 It is a structural diagram of the utility model;
[0025] Figure 2 for Figure 1 The three-dimensional structure diagram of the Zhongquan spiral lifter;
[0026] Figure 3 for Figure 2Front view of
[0027] The markings in the figure are:
[0028] 1. Bottle body, 11. Inner bottle body, 12. Outer bottle body, 2. Bottle cap, 21. Inner bottle cap, 22. Outer bottle cap, 3. Material pick-up rod, 4. Inner plug, 5. Full spiral lifter;
[0029] 101, material cavity, 401, annular top edge, 402, inner plug clamp ring, 403, material rod extension entrance, 501, top end, 502, full spiral lifting part, 503, bottom end, 5011, material rod clamping mouth, 5021, spiral lifting plate, 5022, adapter plate, 5023, spiral lifting channel, 5024, material taking area. DETAILED DESCRIPTION
[0030] In order to make the above-mentioned purposes, features and advantages of the utility model more obvious and easy to understand, the specific implementation methods of the utility model are described in detail below in conjunction with the accompanying drawings. In the following description, many specific details are set forth to facilitate a full understanding of the utility model. However, the utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar improvements without violating the connotation of the utility model, so the utility model is not limited by the specific embodiments disclosed below.
[0031] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as those commonly understood by those skilled in the art in the technical field of the present invention. The terms used herein in the specification of the present invention are only for the purpose of describing specific embodiments and are not intended to limit the present invention. The term "and / or" used herein includes any and all combinations of one or more related listed items.
[0032] like Figure 1-2 As shown, the utility model provides a full-spiral cosmetic lifting container, comprising a bottle body 1, a bottle cap 2, a material taking rod 3, an inner plug 4 and a full-spiral lifter 5.
[0033] The bottle body 1 is provided with a material cavity 101 for loading cosmetic material, and the material cavity 101 passes through the upper end of the bottle body 1, thereby forming a bottle mouth at the upper end of the bottle body 1. The bottle cap 2 is locked with the upper end of the bottle body 1 by means of threaded engagement or snap-fit structure engagement, thereby covering and sealing the bottle mouth.
[0034] Furthermore, the material taking rod 3 is used to extend into the material cavity 101 to take the material. The material taking rod 3 is regularly arranged at the lower end of the bottle cap 2. The tail of the material taking rod 3 ( Figure 1 The lower end of the material collecting brush head (not shown in the figure) is used to install the material collecting brush head, and the material collecting brush head is made into different shapes according to the actual product.
[0035] Furthermore, the full spiral lifter 5 is installed in the material cavity 101, and the bottle mouth is pressed by the inner plug 4, so that the full spiral lifter 5 is confined in the material cavity 101. The full spiral lifter 5 is driven by the material taking rod 3 to rotate in the material cavity 101, thereby rotating and stirring the cosmetic material in the material cavity, and at the same time, the cosmetic material at the bottom of the material cavity is spirally lifted upward. Among them, the outer surface of the inner plug 4 is interference fit with the inner wall of the bottle mouth and is fixed in the bottle mouth.
[0036] Furthermore, the material taking rod 3 passes through the inner plug 4 and the full spiral lifter 5 in sequence, and is engaged with the full spiral lifter 5. The material taking rod 3 is driven to rotate by the bottle cap 2, and the material taking rod 3 drives the full spiral lifter 5 to rotate in the material cavity 101, so that the cosmetic material in the material cavity 101 is rotated and stirred by the rotation of the full spiral lifter 5, and the cosmetic material at the bottom of the material cavity is rotated and lifted upward.
[0037] Further, such as Figure 1 As shown, the bottle body 1 adopts an inner and outer bottle body design, including an inner bottle body 11 and an outer bottle body 12, and the inner bottle body 11 and the outer bottle body 12 are fixed together by clamping points and clamping mouths. Among them, the material cavity 101 is set in the inner bottle body 11.
[0038] Furthermore, the bottle cap 2 also adopts an inner and outer bottle cap design, including an inner bottle cap 21 and an outer bottle cap 22, and the inner bottle cap and the outer bottle cap are also fixed together by a clamping point and a clamping mouth. Preferably, the inner bottle cap 21 and the inner bottle body 11 are locked by threaded engagement.
[0039] The above-mentioned clamping points are protruding clamping points, and the clamping openings are recessed clamping openings. The specific shapes and quantities are not limited, and there can be several clamping points and clamping openings, or several annular clamping points and annular clamping openings. Of course, there is no limitation on the setting positions. For example, if the clamping points are set on the inner bottle body, then the clamping openings are set at the corresponding positions of the outer bottle body.
[0040] The design of the inner and outer bottle bodies and the inner and outer bottle caps can, on the one hand, provide various patterns on the outer bottle body and the outer bottle cap to enhance the aesthetics; on the other hand, the outer bottle body and the outer bottle cap can be set into different shapes, thereby reducing the development cost of different products.
[0041] Further, such as Figure 1 As shown, the inner plug 4 is fixed at the bottle mouth of the inner bottle body 11. The outer surface of the inner plug 4 is interference fit with the inner wall of the bottle mouth of the inner bottle body, and is fixed together by the clamping point and the clamping mouth structure.
[0042] In one embodiment, if Figure 1As shown, the outer surface of the inner plug 4 is regularly provided with a plurality of protruding inner plug snap rings 402, which are protruding annular structures and are regularly provided on the outer surface of the inner plug 4. Correspondingly, the inner wall of the inner bottle body 11 is regularly provided with a plurality of recessed annular snap rings at the positions of the plurality of inner plug snap rings 402.
[0043] Furthermore, in order to facilitate the installation and removal of the inner plug 4, an annular top plate 401 is provided on the top of the inner plug 4. The annular top plate 401 can abut against the bottle mouth of the inner bottle body 11 to prevent the inner plug 4 from falling into the inner bottle body; on the other hand, it is convenient to manually remove the inner plug 4. By moving the annular top plate 401 at the top, the inner plug 4 can be quickly removed.
[0044] Furthermore, a material taking rod insertion opening 403 is provided at the bottom end of the inner plug 4 for facilitating the material taking rod 3 to be inserted into the material cavity 101 .
[0045] Further, such as Figure 2 As shown, the full spiral lifter 5 includes a top 501, a full spiral lifter 502 and a bottom 503. The full spiral lifter 502 is regularly arranged between the top 501 and the bottom 503, and is used to rotate and stir the cosmetic material in the material cavity, and at the same time, the cosmetic material at the bottom of the material cavity is spirally lifted upward.
[0046] Further, in one embodiment, if Figure 2 and Figure 3 As shown, the full spiral lifting part 502 includes a plurality of spiral lifting parts connected end to end. A single spiral lifting part includes at least two staggered spiral lifting plates 5021 arranged in front and back and a transfer plate 5022 for connecting the upper and lower sets of spiral lifting plates. Figure 2 and Figure 3 As shown, two spiral lifting plates 5021 are staggered front and back between the upper and lower adapter plates 5022 to form a spiral lifting part. Several spiral lifting parts are interconnected end to end, and a full spiral lifting part is formed by the design of a shared adapter plate, so that they are regularly arranged between the top end 501 and the bottom end 502 of the full spiral lifter.
[0047] Furthermore, the two spiral lifting plates 5021 of the spiral lifting part avoid the material taking rod 3 in the middle and are arranged in a staggered manner around the periphery of the material taking rod, so as to form a plurality of spiral ascending channels on the periphery of the material taking rod, and form a material taking area 5024 in the middle of the plurality of spiral lifting parts for the material taking rod 3 to pass through. While the plurality of spiral lifting parts rotate and stir the cosmetic material in the material cavity 101, the cosmetic material at the bottom of the material cavity is lifted upward in turn, and flows into the material taking area 5024 in the middle of the full spiral lifter, so as to be picked up by the material taking brush head at the front end of the material taking rod 3.
[0048] Further, such as Figure 3As shown, in one embodiment, the middle of a plurality of adapter plates 5022 is regularly disconnected to form two groups of left and right adapter plates, and the two groups of left and right adapter plates are staggered and connected to each other up and down through a plurality of front and rear spiral lifting plates, such as Figure 3 and Figure 2 As shown, the rear end of the adapter plate at the upper left end is connected to the rear end of the adapter plate at the lower right end through a spiral lifting plate at the rear, and the front end of the adapter plate at the upper right end is connected to the front end of the adapter plate at the lower left end through a spiral lifting plate at the front, thereby forming two sets of complementary segmented spiral lifting plates, and the segmented spiral lifting plates form upper and lower segments for the adapter plates. The segmented spiral lifting plates are in the shape of stairs, including several segments of spiral lifting plates and an adapter plate arranged horizontally in the middle.
[0049] Two sets of complementary segmented spiral lifting plates are arranged alternately around the periphery of the material taking rod 3, thereby forming a segmented and continuously spirally ascending full spiral lifting portion. The segmented and continuously spirally ascending full spiral lifting portion includes several segments of spiral lifting portions for several adapter plates.
[0050] Further, at least two groups of spiral lifting parts are provided in the middle of the full spiral lifter 5. In one embodiment, Figure 2 As shown, five groups are provided.
[0051] Further, such as Figure 2 As shown, the spiral lifting plates 502 are provided with two pieces, which are arranged alternately, so as to form a spiral lifting channel 5023 between the two spiral lifting plates. When the material taking rod 3 drives the full spiral lifter 5 to rotate, the two spiral lifting plates start to rotate regularly, so as to stir the cosmetic material in the material cavity 101, and at the same time drive the cosmetic material at the bottom of the material cavity to be lifted upward along the spiral lifting channel 5023, and flow into the material taking area 5024 in the middle of the spiral lifting part.
[0052] Furthermore, the spiral structure of the spiral lifting part can be set to a left-handed or right-handed mode, and the upward lifting force is generated by adopting different spiral directions. In principle, when rotating clockwise, the material body at the bottom can be lifted upward while tightening the bottle cap.
[0053] Further, in another embodiment, the full spiral lifting part 502 omits the above-mentioned adapter plate 5022, and two sets of complementary full spiral lifting plates are arranged in a staggered manner. The full spiral lifting plate is similar to an unfolded spring design, rising while spiraling, thereby forming a continuous full spiral lifting part. The two sets of complementary full spiral lifting plates avoid the middle material taking rod and are arranged in a staggered manner around the periphery of the material taking rod, thereby forming a spiral rising channel around the periphery of the material taking rod. While the continuous spiral lifting part rotates and stirs the cosmetic material in the material cavity, the continuous spiral lifting part drives the cosmetic material at the bottom of the material cavity to flow upward along the spiral rising channel and then flow into the middle material taking area for use by the material taking brush head at the tail end of the material taking rod.
[0054] Further, the top end 501 is used to connect the material taking rod 3, and a material taking rod bayonet 5011 through which the material taking rod 3 can pass conveniently is arranged through the middle position of the top end 501 up and down. The material taking rod bayonet 5011 is arranged along the shape of the material taking rod 3. In the present utility model, the material taking rod 3 is a regular polygon column. Therefore, the material taking rod bayonet 5011 is a regular polygon bayonet and is consistent with the shape of the material taking rod. Through the regular polygon design, the material taking rod 3 can be clamped and restricted in the material taking rod bayonet 5011, thereby driving the full spiral lifter 5 to rotate in the material cavity.
[0055] Further, the material taking rod 3 is a regular polygon column with more than six sides. In one embodiment, a regular dodecagon column is adopted.
[0056] The usage process of the cosmetic spiral lifting container of the present utility model is as follows:
[0057] By rotating the bottle cap, the bottle cap drives the material taking rod to rotate. The material taking rod drives the full spiral lifter to rotate through the polygon cooperation. When the full spiral lifter rotates, it can lift the lip gloss material at the bottom of the container upward to the position of the material taking brush head, so that the material taking brush head can stick to the inner material for use.
[0058] The specific embodiments described above further illustrate the purpose, technical solutions and beneficial effects of the present utility model. It should be understood that the above are only specific embodiments of the present utility model and are not used to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included in the protection scope of the present utility model.
Claims
1. A full spiral cosmetic lifting container, characterized by: Including bottle body, bottle cap, material picking rod and inner plug, full spiral lifter; The bottle body is provided with a material cavity for loading cosmetic material, the material cavity passes through the upper end of the bottle body, a bottle mouth is formed at the upper end of the bottle body, and the bottle cap is used to cover the bottle mouth; The material taking rod is used to extend into the material cavity to take materials, and the material taking rod is regularly arranged at the lower end of the bottle cap; The full spiral lifter is installed in the material cavity, and the bottle mouth is pressed by the inner plug to limit the full spiral lifter in the material cavity. The outer surface of the inner plug is interference-fitted with the inner wall of the bottle mouth and is clamped and fixed thereto. The material picking rod passes through the inner plug and the full spiral lifter in sequence and is clamped with the top end of the full spiral lifter. The bottle cap drives the material picking rod to rotate, and the rotation of the material picking rod drives the full spiral lifter to rotate in the material cavity. The full spiral elevator comprises a top, a hollow full spiral lifting part in the middle and a bottom. The full spiral lifting part is regularly arranged between the top and bottom ends of the full spiral elevator, and is used to rotate and stir the cosmetic material in the material cavity, and at the same time, spirally lift the cosmetic material at the bottom of the material cavity upward.
2. A full spiral cosmetic lifting container as claimed in claim 1, characterized in that: The full spiral lifting part includes a plurality of spiral lifting parts connected end to end, and the spiral lifting part includes a plurality of staggered spiral lifting plates arranged front and back and a transfer plate for connecting the upper and lower sets of spiral lifting plates; A plurality of spiral lifting plates avoid the material taking rod in the middle and are arranged in a staggered manner around the periphery of the material taking rod, so as to form a plurality of spiral ascending channels around the periphery of the material taking rod, and form a material taking area in the middle of the full spiral lifting part for the material taking rod to pass through; The plurality of spiral lifting parts rotate and stir the cosmetic material in the material cavity, and drive the cosmetic material in the material cavity to flow upward along the plurality of spiral ascending channels, and flow into the material taking area in the middle of the full spiral lifting part, so as to be picked up by the material taking brush head at the front end of the material taking rod.
3. A full spiral cosmetic lifting container as claimed in claim 2, characterized in that: Several of the adapter plates are regularly disconnected in the middle to form two groups of left and right adapter plates. The two groups of left and right adapter plates are staggered up and down through several front and rear spiral lifting plates to form two groups of complementary segmented spiral lifting plates. The segmented spiral lifting plates are segmented up and down with respect to the adapter plates; the two groups of complementary segmented spiral lifting plates are staggered with each other around the periphery of the material picking rod to form a segmented and continuously spirally ascending full spiral lifting part. The segmented and continuously spirally ascending full spiral lifting part includes several segments of spiral lifting parts with respect to the several adapter plates.
4. A full spiral cosmetic lifting container as claimed in claim 1, characterized in that: The full-spiral lifting part includes two sets of complementary full-spiral lifting plates, which are arranged in the form of unfolded springs, and one side of the full-spiral lifting plates generally rises in a spiral to form a continuous full-spiral lifting part; the two sets of complementary full-spiral lifting plates avoid the middle material picking rod and are staggered around the periphery of the material picking rod, thereby forming a continuous spiral rising channel around the periphery of the material picking rod, and forming a material picking area in the middle of the full-spiral lifting part for the material picking rod to pass through; while the continuous full-spiral lifting part rotates and stirs the cosmetic material in the material cavity, it drives the cosmetic material at the bottom of the material cavity to flow upward along the continuous spiral rising channel, and flows into the material picking area to be used by the material picking brush head at the tail end of the material picking rod.
5. A full spiral cosmetic lifting container according to any one of claims 2 to 4, characterized in that: A slot is regularly arranged in the middle of the top of the full spiral lifter to facilitate the passage of the material picking rod. The material picking rod passes through the slot and is engaged with the full spiral lifter through the slot. The slot is arranged along the shape of the material picking rod.
6. A full spiral cosmetic lifting container as claimed in claim 5, characterized in that: The material taking rod is in the form of a regular polygonal column, and the material taking rod is a regular polygonal column larger than a regular hexagon.
7. A full spiral cosmetic lifting container as claimed in claim 6, characterized in that: The material taking rod is a regular dodecagonal column.
8. The full spiral cosmetic lifting container according to claim 1, characterized in that: The bottle body adopts an inner and outer bottle body design, including an inner bottle body and an outer bottle body, and the inner bottle body and the outer bottle body are snap-fitted together; the bottle cap adopts an inner and outer bottle cap design, including an inner bottle cap and an outer bottle cap, and the inner bottle cap and the outer bottle cap are snap-fitted together.