Hair care product containing bottle

CN223415862UActive Publication Date: 2025-10-10ZHEJIANG HAOMAI TECH CO LTD
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Patent Information

Application Number
CN202421503416.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-27
Publication Date
2025-10-10
Estimated Expiration
2034-06-27

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Abstract

The utility model discloses a containing bottle for hair care products, and belongs to the technical field of bottled containers. Comprising a bottle body, a bottle cap and a bottle base, a storage cavity is formed in the bottom of the bottle base, and the bottom of the storage cavity is sealed through an adhesion layer; a rotating groove used for installing the bottle body is formed in the upper end of the bottle base, an annular air pressure cavity is formed in the inner wall of the rotating groove and communicates with the retracting and releasing cavity, a piston head used for changing the volume of air flow in the cavity is arranged in the annular air pressure cavity, and the piston head is connected with the bottle body; the piston head can move in the annular air pressure cavity along with rotation of the bottle body, the adhesion layer shrinks and expands along with volume change of air flow in the contraction and release cavity, and the expanded adhesion layer is adhered to the placement plane after making contact with the placement plane. The bottle holder can be placed on different placing surfaces, and the stability of the whole containing bottle is guaranteed.
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Description

Technical Field

[0001] The utility model relates to a bottle for containing hair care products, belonging to the technical field of bottled containers. Background Art

[0002] Hair care products are designed to address various aspects of hair care, nourishing damaged strands or ends and restoring hair to a healthy state. Hair care products can be categorized by form: clear liquids, thick lotions and pastes, gels, aerosols, and masks. Each of these forms has its own unique characteristics, suiting different hair types and care needs.

[0003] Existing containers for paste products mostly have a bottom structure with the center contracted upward. Such a structure is in contact with the placement surface on all sides. This structure can ensure the stability of the bottle to a certain extent. However, due to the small contact area between the container and the placement surface, it is easy to slip between the container and the placement surface, causing the bottle to slip and break. If a flat bottom structure with a large friction coefficient is used, it is difficult to maintain stability when placed on an uneven surface. Utility Model Content

[0004] The technical problem to be solved by the utility model is to provide a hair care product containing bottle, which solves the problem in the prior art that the bottom contact surface of the containing bottle can only be suitable for a single placement surface.

[0005] The technical problem to be solved by the present invention is achieved by adopting the following technical solutions: A hair care product container bottle comprises a bottle body, a bottle cap and a bottle base;

[0006] The bottom of the bottle holder is provided with a retractable cavity, and the bottom of the retractable cavity is sealed by an adhesive layer;

[0007] The upper end of the bottle seat is provided with a rotating groove for mounting the bottle body, the inner wall of the rotating groove is provided with an annular air pressure chamber, the annular air pressure chamber is communicated with the retractable chamber, a piston head for changing the volume of the air flow in the chamber is provided inside the annular air pressure chamber, the piston head is connected to the bottle body, and the piston head can move in the annular air pressure chamber as the bottle body rotates;

[0008] The attachment layer contracts and expands as the volume of the airflow in the retractable cavity changes, and the expanded attachment layer comes into contact with the placement plane and adheres to the placement plane.

[0009] By adopting the technical scheme, the movement of the piston can be controlled by rotating the bottle body, the gas in the annular air pressure cavity is pressed into the retractable cavity or the gas in the retractable cavity is drawn back into the annular air pressure cavity, so that the total amount of air in the retractable cavity is controlled, when the total amount of air in the retractable cavity increases, the air in the retractable cavity generates outward pressure on the adhesion layer, the adhesion layer expands outward, and the expanded adhesion layer is in contact with the placement surface, when the total amount of air in the retractable cavity decreases, the pressure disappears, the adhesion layer automatically shrinks, and the adhesion layer is separated from the placement surface.

[0010] The utility model further provides: The inner wall of rotation groove is processed with the chute that links with annular air pressure cavity, the cross section of annular air pressure cavity is circular, the cross section of chute is rectangle, the end face of chute end is provided with magnetic force board.

[0011] By adopting the technical scheme, the chute is connected with the annular air pressure cavity, the cross section of the chute is rectangular, which facilitates the installation of the magnetic sliding block, ensures that the magnetic sliding block can smoothly slide in the chute without interference, and the magnetic force board at the end of the chute can be attracted to the magnetic sliding block arranged on the bottle body, so that the bottle body can be rotated when the bottle body is not rotated, and the stability of the bottle body is ensured.

[0012] The utility model further provides: The outer wall surface of bottle body bottom outwardly extends with rectangular magnetic block, there is circular arc rod coinciding with the center line of bottle body around the outer wall of bottle body through rectangular magnetic block, there is gap between circular arc rod and the outer wall of bottle body, the both ends of circular arc rod are connected with rectangular magnetic block and piston head respectively, rectangular magnetic block and chute are mutually clamped;

[0013] The rectangular magnetic block can be attracted to the magnetic force board to fix the bottle body, and the adhesion layer at the bottom of the bottle seat is in a contracted state at this time.

[0014] By adopting the technical scheme, when the magnetic force board is attracted to the rectangular magnetic block, the total amount of air in the retractable cavity is the least, the outward pressure on the adhesion layer is the least, the adhesion layer is in a contracted state, the center of the adhesion layer is contracted into the retractable cavity, and a reverse funnel is formed on the placement surface, and the bottle seat can slide relative to the placement surface at this time.

[0015] The utility model further provides: The arc of the chute is smaller than the arc of the annular air pressure cavity.

[0016] By adopting the technical scheme, when the bottle body rotates, the magnetic sliding block rotates in the chute, which can prevent the magnetic sliding block from rotating excessively, reduces unnecessary relative movement, reduces the rotation angle when the bottle body rotates, and enables the user to control the total amount of air flow in the retractable cavity at any time by rotating a small angle. It is helpful to improve the lubrication state and reduce friction, thereby reducing energy consumption and prolonging the service life of the equipment.

[0017] The utility model is further configured as follows: a contraction spring is sleeved on the arc rod, and the contraction spring can push the arc rod and the piston to move so as to increase the total amount of air in the contraction cavity, and push up the adhesion layer to expand it outward.

[0018] By adopting the above technical solution, when the magnetic plate and the rectangular magnetic block are adsorbed on each other, the contraction spring can pull the rectangular magnetic block, driving the piston and the bottle body to rotate, so that the total amount of gas in the retractable chamber is maintained at a relatively large state, so that the adhesion layer can be pushed out and expand outward to contact the placement surface.

[0019] The utility model is further configured such that: the maximum contraction force of the contraction spring is smaller than the adsorption magnetic force between the rectangular magnetic block and the magnetic plate during adsorption.

[0020] By adopting the above technical solution, the adsorption layer and the placement surface can be quickly switched between the attached state and the separated state. When the magnetic plate and the rectangular magnetic block are adsorbed, the contraction spring cannot pull the rectangular magnetic block to rotate. At this time, the adsorption layer can maintain a contracted state. When the magnetic plate and the rectangular magnetic block are separated, the greater the distance between the magnetic plate and the rectangular magnetic block, the smaller the magnetic force. At this time, the contraction spring pulls the rectangular magnetic block away from the magnetic plate, so that the adsorption layer is lifted up by the air in the contraction cavity, and the adsorption layer contacts and fits with the placement surface.

[0021] The utility model is further configured as follows: the adhesion layer is made of a shrinkable material with a large friction coefficient.

[0022] By adopting this technical solution, the material with a higher coefficient of friction means greater friction between the adhesion layer and the contact surface. This allows the adhesion layer to provide better adhesion on a variety of surfaces. On slippery or uneven surfaces, the high coefficient of friction material effectively prevents slipping. The shrinkable material can adapt to the shape and size of the contact surface. This allows the adhesion layer to closely conform to various irregular surfaces, further improving grip and stability.

[0023] The beneficial effects of the utility model are as follows: by reasonably controlling the expansion and contraction of the adsorption layer, the bottle holder can be placed on different placement surfaces, thereby ensuring the stability of the entire bottle; when the placement surface is uneven, the adsorption layer is controlled to contract into the retracting cavity, thereby enabling the adsorption layer to more fully contact the uneven placement surface; when the placement surface is relatively smooth, the adsorption layer is controlled to expand outward, thereby enabling the adsorption layer and the placement surface to adhere to each other, thereby preventing the bottle holder from sliding and rolling off. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] Figure 1 It is a front view of the utility model;

[0025] Figure 2 The adhesive layer of the utility model is in a contracted state. Figure 1 Cross-sectional view in the F direction;

[0026] Figure 3 The adhesive layer of the utility model is in an expanded state. Figure 1 Cross-sectional view in the F direction;

[0027] Figure 4 It is a schematic diagram of the three-dimensional structure of the utility model;

[0028] Figure 5 For this utility model Figure 4 A magnified schematic diagram of the structure in the middle.

[0029] In the figure: 1. Bottle body; 2. Bottle cap; 3. Bottle base; 4. Retractable chamber; 5. Piston head; 6. Rectangular magnetic block; 7. Arc rod; 8. Contraction spring; 9. Adhesion layer; 201. Step groove; 301. Rotating groove; 302. Annular air pressure chamber; 303. Slide groove; 304. Connecting channel. DETAILED DESCRIPTION

[0030] In order to make the technical means, creative features, objectives and effects of the present invention easier to understand, the present invention is further described below with reference to specific illustrations.

[0031] like Figure 1 As shown, a hair care product bottle includes a bottle body 1. The bottle body 1 is provided with an inner cavity for containing hair care cream. A threaded structure is provided at the opening of the bottle body 1 and is connected to the bottle cap 2. The bottom of the inner cavity is an arc-shaped structure, which can prevent the corner between the bottom and the side from being too small, resulting in the residual cream being unable to be removed.

[0032] like Figure 2 As shown, a threaded structure is also processed on the inner side of the bottle cap 2 to be connected to the bottle body 1, and a stepped groove 201 is processed at the opening. The setting of the stepped groove 201 allows the bottle cap 2 to be quickly connected to the bottle body 1. When the bottle body 1 and the bottle cap 2 are connected, the outer wall of the stepped groove 201 will wrap the outer wall surface of the upper end area of ​​the bottle body 1, thereby protecting the bottle body 1. At the same time, a sealing ring can be provided in the stepped groove 201. The sealing ring can be made of rubber material. When the bottle body 1 and the bottle cap 2 are connected by threads, they can be sealed by the sealing ring.

[0033] like Figure 4 As shown, the bottle seat 3 serves as the base of the bottle body 1 and is mainly used to support the bottle body 1. A rotating connecting hole is provided in the center of the rotating groove 301 provided at the upper end of the bottle seat 3. The rotating connecting hole is connected to the connecting head provided at the bottom of the bottle body 1. The connecting head and the connecting hole can be rotated to ensure the control of the airflow in the retractable cavity 4.

[0034] The retractable cavity 4 is arranged at the bottom of the bottle seat 3 and is sealed by an adhesion layer 9 at the bottom of the retractable cavity 4; since the adhesion layer 9 is made of elastic material, such as rubber-like polymer material or silicone-like high-temperature resistant material, whenever the total amount of air in the contraction cavity changes, the air pressure change inside the contraction cavity can act on the adhesion layer 9 to control the contraction and expansion of the adhesion layer 9.

[0035] A rotating groove 301 for mounting the bottle body 1 is provided at the upper end of the bottle seat 3, and an annular air pressure chamber 302 is provided on the inner wall of the rotating groove 301. The annular air pressure chamber 302 is communicated with the retractable chamber 4, and a piston head 5 for changing the volume of the air flow in the chamber is provided inside the annular air pressure chamber 302. The piston head 5 is connected to the bottle body 1, and the piston head 5 and the bottle body 1 are connected by an arc rod 7. The center of the arc rod 7 coincides with the cylindrical center line of the bottle body 1. When the bottle body 1 rotates, the arc rod 7 can rotate at the same angular velocity as the bottle body 1, thereby pushing the piston head 5 set at the end of the arc rod 7 to move in the annular air pressure chamber 302 through the arc rod 7. The position of the piston head 5 in the annular air pressure chamber 302 is different, the total amount of air flow in the contraction chamber is also different, and the degree of contraction and expansion of the adhesion layer 9 is also different.

[0036] A connecting passage 304 is provided between the annular air pressure chamber 302 and the retractable chamber 4 for connecting the two.

[0037] The inner wall of the rotating trough 301 is machined with a chute 303 connected to the annular air pressure chamber 302. The annular air pressure chamber 302 has a circular cross-section, while the chute 303 has a rectangular cross-section. A magnetic plate is installed on the end surface of the chute 303. The connection between the chute 303 and the annular air pressure chamber 302 and the rectangular cross-section of the chute 303 facilitate the installation of a magnetic slider, ensuring that the magnetic slider can slide smoothly and without interference within the chute 303 as the bottle body 1 rotates. The magnetic plate at the end of the chute 303 can attract the magnetic plate installed on the bottle body 1, thereby preventing the bottle body 1 from rotating when it is not rotating, and ensuring the stability of the bottle body 1.

[0038] like Figure 2 and Figure 3 As shown, when the magnetic plate and rectangular magnet 6 are attracted to each other, the total amount of air in the retractable chamber 4 is minimal, and the outward pressure on the adhesive layer 9 is minimal, causing it to be in a contracted state. The center of the adhesive layer 9 contracts into the retractable chamber 4, forming an inverted funnel that snaps onto the placement surface. At this point, the bottle holder 3 can slide relative to the placement surface. When the magnetic plate and rectangular magnet 6 are mutually attracted, the contraction spring 8 pulls the rectangular magnet 6, driving the piston and bottle body 1 to rotate, keeping the total amount of air in the retractable chamber 4 at a high level, allowing the adhesive layer 9 to be pushed out and expand outward to contact the placement surface.

[0039] like Figure 5As shown, the rectangular magnetic block 6 can be attracted to the magnetic plate to fix the bottle body 1. At this time, the adhesive layer 9 at the bottom of the bottle holder 3 is in a contracted state. The arc rod 7 is equipped with a contraction spring 8, which can push the arc rod 7 and the piston to move, thereby increasing the total amount of air in the contraction chamber, pushing up the adhesive layer 9 and expanding it outward.

[0040] The arc of the chute 303 is smaller than that of the rotating air pressure chamber, so that when the bottle body 1 rotates, the magnetic slider rotates in the chute 303, which can prevent the magnetic slider from rotating excessively with respect to the bottle body 1 and reduce unnecessary relative movement.

[0041] The maximum contraction force of the contraction spring 8 is less than the magnetic force of adsorption between the rectangular magnetic block 6 and the magnetic plate during adsorption. This allows the adsorption layer to quickly switch between the attached and separated states with respect to the placement surface. When the magnetic plate and the rectangular magnetic block 6 are adsorbed, the contraction spring 8 cannot pull the rectangular magnetic block 6 to rotate, and the adsorption layer can remain in the contracted state. When the magnetic plate and the rectangular magnetic block 6 are separated, the greater the distance between the magnetic plate and the rectangular magnetic block 6, the smaller the magnetic force. At this time, the contraction spring 8 pulls the rectangular magnetic block 6 away from the magnetic plate, causing the adsorption layer to be lifted by the air in the contraction cavity and come into contact with the placement surface.

[0042] Working principle: By rotating the bottle body 1 to control the rotation of the arc rod 7 and then drive the movement of the piston, the gas in the annular air pressure chamber 302 is pressed into the retractable chamber 4 or the gas in the retractable chamber 4 is drawn back into the annular air pressure chamber 302, thereby controlling the total amount of air in the retractable chamber 4. When the total amount of air in the retractable chamber 4 increases, the air in the retractable chamber 4 generates outward pressure on the adhesion layer 9, causing the adhesion layer 9 to expand outward. The expanded adhesion layer 9 contacts and fits with the placement surface. When the total amount of air in the retractable chamber 4 decreases, the pressure disappears, the adhesion layer 9 automatically contracts, and the adhesion layer 9 is separated from the placement surface.

[0043] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art will appreciate that the present invention is not limited to the above embodiments and that various modifications and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such modifications and improvements fall within the scope of protection claimed by the present invention. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. A hair care product container bottle, comprising a bottle body (1), a bottle cap (2), and a bottle base (3); characterized in that: The bottom of the bottle seat (3) is provided with a retractable cavity (4), and the bottom of the retractable cavity (4) is provided with an adhesion layer (9); The upper end of the bottle seat (3) is provided with a rotation groove (301) for mounting the bottle body (1); the inner wall of the rotation groove (301) is provided with an annular air pressure chamber (302); the annular air pressure chamber (302) is communicated with the retractable chamber (4); a piston head (5) for changing the volume of air flow in the chamber is provided inside the annular air pressure chamber (302); the piston head (5) is connected to the bottle body (1); and the piston head (5) can rotate with the bottle body (1) and move in the annular air pressure chamber (302); The adhesion layer (9) contracts and expands as the volume of the airflow in the retractable cavity (4) changes, and the expanded adhesion layer (9) comes into contact with the placement plane and adheres to the placement plane.

2. The hair care product bottle according to claim 1, characterized in that: The inner wall of the rotating groove (301) is processed with a slide groove (303) connected to the annular air pressure chamber (302), the cross section of the annular air pressure chamber (302) is circular, the cross section of the slide groove (303) is rectangular, and the end face of the slide groove (303) is provided with a magnetic plate.

3. The hair care product bottle according to claim 2, characterized in that: A rectangular magnetic block (6) extends outward from the outer wall surface of the bottom of the bottle body (1); an arc rod (7) coinciding with the center line of the bottle body (1) is arranged around the outer wall of the bottle body (1) via the rectangular magnetic block (6); a gap is left between the arc rod (7) and the outer wall of the bottle body (1); two ends of the arc rod (7) are respectively connected to the rectangular magnetic block (6) and the piston head (5); the rectangular magnetic block (6) and the slide groove (303) are mutually engaged; The rectangular magnetic block (6) can be adsorbed with the magnetic plate to fix the bottle body (1), and at this time, the attachment layer (9) at the bottom of the bottle seat (3) is in a contracted state.

4. The hair care product bottle according to claim 2, characterized in that: The curvature of the sliding groove (303) is smaller than the curvature of the rotating air pressure chamber.

5. The hair care product bottle according to claim 3, characterized in that: A contraction spring (8) is sleeved on the arc rod (7), and the contraction spring (8) can push the arc rod (7) and the piston to move so as to increase the total amount of air in the contraction cavity, thereby lifting the adhesion layer (9) and expanding it outward.

6. The hair care product bottle according to claim 5, characterized in that: The maximum contraction force of the contraction spring (8) is smaller than the adsorption magnetic force between the rectangular magnetic block (6) and the magnetic plate during adsorption.

7. The hair care product bottle according to claim 1, characterized in that: A connecting channel (304) for connecting the annular air pressure chamber (302) and the retractable chamber (4) is provided between the two.