High-strength aluminum cosmetic pressure bottle
Patent Information
- Application Number
- CN202522326256.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-03
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2035-11-03
AI Technical Summary
[0003]本实用新型提供了一种高强度铝制化妆品压力瓶,具有强度高以及放置稳定的优点,以解决现有的压力瓶受力易变形以及放置易倾倒的问题
[0012]作为本实用新型的一种优选技术方案,所述通管底部粘贴活塞,所述活塞中心设有穿孔且连通通管,所述活塞底部抵接按压弹簧,所述按压弹簧下方设有底部气压弹珠,所述底部气压弹珠嵌合漏斗管的底部入口。
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Figure CN224806068U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cosmetic packaging container technology, specifically a high-strength aluminum cosmetic pressure bottle. Background Technology
[0002] Most cosmetic pressure bottles are made of ordinary plastic or thin aluminum alloy. In actual use, ordinary aluminum pressure bottles have uniform wall thickness but poor overall rigidity. They are prone to deformation and denting when subjected to external impact or pressure, resulting in internal pressure imbalance, failure to squeeze out contents, or even bottle breakage and leakage. Moreover, most pressure bottles have simple bottom support structures, making them easy to tip over when placed, especially when tilted on a table or subjected to slight impact. Utility Model Content
[0003] This invention provides a high-strength aluminum cosmetic pressure bottle, which has the advantages of high strength and stable placement, thus solving the problems of existing pressure bottles being easily deformed under stress and easily tipping over when placed.
[0004] To achieve the above objectives, this utility model provides the following technical solution: a high-strength aluminum cosmetic pressure bottle, comprising a bottle body and a pressure cap disposed on the bottle body, and further comprising a bottle body reinforcement component, a bottle bottom support component, a straw component, and a pressing component, wherein: The bottle body has a bottle mouth at the top, and the cap has a through hole at the top. The bottle mouth and the cap fit together and rotate in a spiral manner. The bottle reinforcement component includes annular reinforcing ribs and vertical reinforcing ribs. The annular reinforcing ribs are provided in a plurality of equidistant welds to the inner wall of the bottle. The vertical reinforcing ribs are provided in a plurality of perpendicular staggers with the annular reinforcing ribs and are arranged equidistantly along the circumferential direction of the inner wall of the bottle. The bottle body is made of high-strength aluminum alloy in one piece. When subjected to external impact, the vertical reinforcing ribs on the inner wall of the bottle, together with the ring reinforcing ribs, greatly improve the bottle body's resistance to compression and deformation, avoiding the usage problems caused by the easy deformation of traditional pressure bottles.
[0005] The bottle bottom support assembly includes a rubber base, a central control column, a vertical return spring, a control barb, a movable barb, a support column, and a support column ejector. The bottom of the rubber base is provided with a funnel groove, and the central control column is fitted into the bottom of the rubber base and slides in cooperation.
[0006] In a preferred embodiment of this invention, the vertical return spring is nested on the outer side of the top of the central control column, the vertical return spring abuts against the rubber base and the central control column, and the rubber base is attached to the bottom of the bottle.
[0007] As a preferred embodiment of this utility model, the control hooks are symmetrically welded to the four outer sides of the central control column, one end of the movable hook is connected to one end of the control hook through an interlocking connection, the other end of the movable hook is welded to the support column, and the movable hooks are fitted into the side of the rubber chassis and slide in a sliding fit.
[0008] The vertical return spring is compressed when the central control column is lifted. When the pressure bottle is picked up again, the vertical return spring rebounds to reset the central control column, preventing the central control column from shaking and causing abnormal noise. At the same time, it improves the engagement stability between the control hook and the movable hook when the support column is retracted.
[0009] As a preferred technical solution of this utility model, the support column pop-out component includes a limiting column and a horizontal return spring. One end of the limiting column is glued and fixed in the rubber base, and the other end is fitted with a movable barb and slidably engaged. The horizontal return spring is nested on the outside of the limiting column.
[0010] As a preferred technical solution of this utility model, the straw assembly includes a pressure tube body, the top of the pressure tube body is provided with a pressure edge, the bottom is connected to a funnel tube, the bottom of the funnel tube is connected to the straw, and the bottom of the pressure cap abuts against the pressure edge.
[0011] As a preferred technical solution of this utility model, the pressing component includes a pressing head, the side of which is connected to a nozzle, and the bottom is connected to a through pipe. The top of the through pipe is provided with a funnel-shaped groove, and a top air pressure ball is embedded in the groove.
[0012] As a preferred technical solution of this utility model, a piston is attached to the bottom of the tube, the piston has a through hole in the center and is connected to the tube, the bottom of the piston abuts against a pressing spring, and a bottom air pressure ball is provided below the pressing spring, the bottom air pressure ball being fitted into the bottom inlet of the funnel tube.
[0013] The bottom air pressure ball fits into the funnel tube, forming a seal when the piston moves downward, preventing gas from overflowing into the bottle and disrupting the pressure difference, thus causing the pressing action to fail.
[0014] Compared with existing technologies, this utility model provides a high-strength aluminum cosmetic pressure bottle with the following advantages: This utility model adopts a one-piece molding design of high-strength aluminum alloy, and through a combination of vertical and annular reinforcing ribs on the inner wall, it significantly enhances the bottle's resistance to compression and deformation, effectively avoiding the problems of bottle deformation, breakage, and leakage caused by external impacts and compression in traditional pressure bottles, ensuring pressure balance and normal use. This cosmetic pressure bottle features an automatically deployable support structure and an adsorption rubber base at the bottom. When placed, the support columns automatically extend to the sides of the bottle to form stable support, while the rubber base creates adsorption by expelling air. This solves the problem of traditional pressure bottles having simple bottom support and being prone to tipping over on tilted surfaces or under slight impacts, improving storage and placement safety. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a diagram of the internal structure of this utility model; Figure 3 This is a schematic diagram of the cap structure of this utility model; Figure 4 This is a structural diagram of the bottle reinforcement component of this utility model; Figure 5 This is a diagram showing the external structure of the rubber chassis of this utility model; Figure 6 This is a diagram showing the internal structure of the rubber chassis of this utility model; Figure 7 This is a partial structural diagram of the bottle bottom support component of this utility model; Figure 8 This is a diagram showing the external structure of the pressing component of this utility model; Figure 9 This is a structural diagram of the straw assembly of this utility model; Figure 10 This is a schematic diagram of the internal structure of the pressing component of this utility model.
[0016] In the diagram: 1. Bottle body; 2. Cap; 3. Bottle body reinforcement assembly; 4. Bottle bottom support assembly; 5. Straw assembly; 6. Pressing assembly; 11. Bottle mouth; 21. Through hole; 31. Annular reinforcing ridge; 32. Vertical reinforcing ridge; 41. Rubber base; 42. Central control post; 43. Vertical return spring; 44. Control barb; 45. Movable barb; 46. Support post; 47. Limiting post; 48. Horizontal return spring; 411. Funnel groove; 51. Pressure tube; 52. Pressing edge; 53. Funnel tube; 54. Straw; 61. Pressing head; 62. Nozzle; 63. Through tube; 64. Top air pressure ball; 65. Piston; 66. Pressing spring; 67. Bottom air pressure ball; 631. Groove; 651. Perforation. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example 1
[0018] Please see Figures 1-10 This utility model discloses a high-strength aluminum cosmetic pressure bottle, including a bottle body 1 and a pressure cap 2 disposed on the bottle body 1, as well as a bottle body reinforcing component 3, a bottle bottom support component 4, a straw component 5, and a pressing component 6, wherein: The bottle body 1 has a bottle mouth 11 at the top, and the cap 2 has a through hole 21 at the top. The bottle mouth 11 and the cap 2 are fitted together and rotated in a spiral manner.
[0019] Please refer to the appendix. Figure 4 The bottle body reinforcement component 3 includes annular reinforcing ribs 31 and vertical reinforcing ribs 32. The annular reinforcing ribs 31 are provided in several and are welded to the inner wall of the bottle body 1 at equal intervals. The vertical reinforcing ribs 32 are provided in several and are perpendicular to the annular reinforcing ribs 31 and are arranged at equal intervals along the circumferential direction of the inner wall of the bottle body 1.
[0020] The bottle body 1 is integrally formed from high-strength aluminum alloy material. When subjected to external impact, the vertical reinforcing ribs 32 and the annular reinforcing ribs 31 on the inner wall of the bottle body 1 greatly improve the bottle body 1's resistance to compression and deformation, avoiding the usage problems caused by the easy deformation of traditional pressure bottles.
[0021] Please refer to the appendix. Figure 5 , Figure 6 as well as Figure 7 The bottle bottom support assembly 4 includes a rubber base 41, a central control column 42, a vertical return spring 43, a control hook 44, a movable hook 45, a support column 46, and a support column ejector. The bottom of the rubber base 41 is provided with a funnel groove 411, and the central control column 42 is fitted into the bottom of the rubber base 41 and slides in cooperation.
[0022] The vertical return spring 43 is nested on the outer side of the top of the central control column 42. The vertical return spring 43 abuts between the rubber base 41 and the central control column 42. The rubber base 41 is attached to the bottom of the bottle body 1.
[0023] Control hooks 44 are symmetrically welded to the four outer sides of the central control column 42. One end of the movable hook 45 is connected to one end of the control hook 44 through an interlocking hook. The other end of the movable hook 45 is welded to the support column 46. The movable hook 45 is fitted into the side of the rubber base 41 and slides.
[0024] The vertical return spring 43 is compressed when the central control column 42 is lifted. When the pressure bottle is picked up again, the vertical return spring 43 rebounds to reset the central control column 42, preventing the central control column 42 from shaking and causing abnormal noise. At the same time, it improves the engagement stability between the control hook 44 and the movable hook 45 when the support column 46 is retracted.
[0025] The support column pop-out component includes a limiting column 47 and a horizontal return spring 48. One end of the limiting column 47 is glued and fixed in the rubber base 41, and the other end is fitted with a movable barb 45 and slidably engaged. The horizontal return spring 48 is nested on the outside of the limiting column 47.
[0026] In this embodiment, when the bottle body 1 is held and pressed down in the placement position, the central control column 42 at the bottom of the bottle body 1 is lifted upward, causing the control hooks 44 around it to move upward, thereby causing the hooks of the control hooks 44 to disengage from the hooks of the movable hooks 45. Under the elastic force of the horizontal return spring 48, the movable hooks 45 extend out of the rubber base 41, causing the support columns 46 to be arranged around the bottle body 1 to form a stable support. At the same time, the funnel groove 41 on the bottom surface of the rubber base 41 discharges air when squeezed, forming an adsorption at the placement position, further improving the placement stability of the pressure bottle and avoiding the problem of the pressure bottle easily tipping over. Example 2
[0027] Based on the above embodiment 1, please refer to the appendix. Figures 8-10 The straw assembly 5 includes a pressure tube body 51, with a pressure edge 52 at the top and a funnel tube 53 at the bottom. The bottom of the funnel tube 53 is connected to the straw 54, and the bottom of the cap 2 abuts against the pressure edge 52.
[0028] The pressing component 6 includes a pressing head 61, which is connected to a nozzle 62 on its side and a connecting pipe 63 at its bottom. The top of the connecting pipe 63 is provided with a funnel-shaped groove 631, and a top air pressure ball 64 is fitted into the groove 631.
[0029] A piston 65 is attached to the bottom of the tube 63. The piston 65 has a through hole 651 in the center and is connected to the tube 63. The bottom of the piston 65 abuts against the pressing spring 66. Below the pressing spring 66 is a bottom air pressure ball 67, which fits into the bottom inlet of the funnel tube 53.
[0030] The bottom air pressure ball 67 is fitted into the funnel tube 53, forming a seal when the piston 65 moves downward, preventing gas from overflowing into the bottle 1 and disrupting the pressure difference, thus causing the pressing action to fail.
[0031] In this embodiment, the pressure head 61 drives the piston 65 to slide downward in the pressure tube 51 through the through tube 63 and compresses the pressing spring 66. The gas in the pressure tube 51 overflows from the nozzle 62 under the squeezing action. When the pressure head 61 is released, the pressing spring 66 rebounds and pushes the piston 65 upward. Since the amount of gas in the pressure tube 51 does not change but the internal space increases, a pressure difference is created between the inside and outside of the pressure tube 51. The pressure in the bottle 1 squeezes the cosmetic into the straw 54. After multiple presses, the cosmetic continues to rise under this pressure difference and is finally sprayed out from the nozzle 62 of the pressure head 61.
[0032] The working principle and usage process of this utility model are as follows: First, after adding cosmetics into the bottle body 1, insert the straw assembly 5 into the bottle body 1, with the pressure edge 52 just abutting against the bottle mouth 11. Then, cover the bottle mouth 11 with the pressure cap 2 and lock it by rotating the screw thread, thereby fixing the straw assembly 5 in the bottle body 1. Then, the pressing assembly 6 can be assembled to start using the cosmetics.
[0033] When using this pressure bottle, pressing down on the pressure head 61 causes the piston 65 to slide downwards within the pressure tube 51 via the through-tube 63, compressing the pressing spring 66. Under this pressure, the gas in the pressure tube 51 enters the through-tube 63 through the perforation 651 on the piston 65. The airflow pushes open the top pressure ball 64 and overflows from the nozzle 62 of the pressure head 61. Releasing the pressure head 61 causes the pressing spring 66 to rebound, pushing the piston 65 upwards. Because the amount of gas in the pressure tube 51 remains unchanged due to the seal between the top and bottom pressure balls 64 and 67, the internal space increases, causing a sharp drop in pressure within the pressure tube 51. Both the external atmospheric pressure and the pressure inside the bottle 1 are greater than the pressure inside the pressure tube 51. External atmospheric pressure squeezes the top air pressure ball 64 from top to bottom to seal the funnel-shaped groove 631 of the tube 63 to prevent gas leakage, while the pressure in the bottle 1 squeezes the cosmetic into the straw 54. After repeated pressing, the cosmetic continues to rise under this pressure difference and is finally sprayed out from the nozzle 62 of the pressure head 61.
[0034] The bottle body 1 is integrally formed from high-strength aluminum alloy material. When subjected to external impact, the vertical reinforcing ribs 32 and the annular reinforcing ribs 31 on the inner wall of the bottle body 1 greatly improve the bottle body 1's resistance to compression and deformation, avoiding the usage problems caused by the easy deformation of traditional pressure bottles.
[0035] When storing the pressure bottle after use, hold the bottle body 1 and press it down in the placement position. The central control column 42 at the bottom of the bottle body 1 is pushed upward and compresses the vertical return spring 43. The central control column 42 drives the control hooks 44 around it to move upward, thereby causing the hooks of the control hooks 44 to disengage from the hooks of the movable hooks 45. Under the elastic force of the horizontal return spring 48, the movable hooks 45 move outward on the limit column 47 and extend out of the rubber base 41, driving the support columns 46 to arrange around the bottle body 1 to form a stable support.
[0036] Meanwhile, the funnel groove 41 on the bottom surface of the rubber base 41 discharges air during compression, forming an adsorption on the placement position, further improving the placement stability of the pressure bottle and avoiding the problem of the pressure bottle easily tipping over.
Claims
1. A high-strength aluminum cosmetic pressure bottle, comprising a bottle body (1) and a pressure cap (2) disposed on the bottle body (1), characterized in that, It also includes a bottle reinforcement assembly (3), a bottle bottom support assembly (4), a straw assembly (5), and a pressing assembly (6), wherein: The bottle body (1) has a bottle mouth (11) at the top, and the cap (2) has a through hole (21) at the top. The bottle mouth (11) and the cap (2) are fitted together and rotated in a spiral manner. The bottle reinforcement component (3) includes annular reinforcing ribs (31) and vertical reinforcing ribs (32). The annular reinforcing ribs (31) are provided in a plurality of places and are welded to the inner wall of the bottle body (1) at equal intervals. The vertical reinforcing ribs (32) are provided in a plurality of places. The vertical reinforcing ribs (32) and the annular reinforcing ribs (31) are perpendicularly intersecting and are arranged at equal intervals along the circumferential direction of the inner wall of the bottle body (1). The bottle bottom support assembly (4) includes a rubber base (41), a central control column (42), a vertical return spring (43), a control barb (44), a movable barb (45), a support column (46), and a support column pop-out part. The bottom of the rubber base (41) is provided with a funnel groove (411), and the central control column (42) is fitted into the bottom of the rubber base (41) and slides.
2. The high-strength aluminum cosmetic pressure bottle according to claim 1, characterized in that: The vertical return spring (43) is nested on the outside of the top of the central control column (42). The vertical return spring (43) abuts between the rubber base (41) and the central control column (42). The rubber base (41) is attached to the bottom of the bottle body (1).
3. A high-strength aluminum cosmetic pressure bottle according to claim 2, characterized in that: The control hook (44) is symmetrically welded to the four outer sides of the central control column (42). One end of the movable hook (45) is connected to one end of the control hook (44) through the hooks. The other end of the movable hook (45) is welded to the support column (46). The movable hook (45) is fitted into the side of the rubber base (41) and slides.
4. A high-strength aluminum cosmetic pressure bottle according to claim 3, characterized in that: The support column pop-out component includes a limiting column (47) and a horizontal return spring (48). One end of the limiting column (47) is glued and fixed in the rubber base (41), and the other end is fitted with a movable barb (45) and slidably engaged. The horizontal return spring (48) is nested on the outside of the limiting column (47).
5. A high-strength aluminum cosmetic pressure bottle according to claim 1, characterized in that: The straw assembly (5) includes a pressure tube body (51), the top of the pressure tube body (51) is provided with a pressure edge (52), the bottom is connected to a funnel tube (53), the bottom of the funnel tube (53) is connected to a straw (54), and the bottom of the cap (2) abuts against the pressure edge (52).
6. A high-strength aluminum cosmetic pressure bottle according to claim 1, characterized in that: The pressing assembly (6) includes a pressing head (61), the side of which is connected to a nozzle (62), and the bottom is connected to a through pipe (63). The top of the through pipe (63) is provided with a funnel-shaped groove (631), and a top air pressure ball (64) is fitted into the groove (631).
7. A high-strength aluminum cosmetic pressure bottle according to claim 6, characterized in that: A piston (65) is attached to the bottom of the tube (63). The piston (65) has a perforation (651) in the center and is connected to the tube (63). The bottom of the piston (65) abuts against a pressing spring (66). A bottom air pressure ball (67) is provided below the pressing spring (66). The bottom air pressure ball (67) fits into the bottom inlet of the funnel tube (53).