Container bottle with extrusion type pump head
By designing a container bottle with a squeeze pump head, and utilizing a built-in piston and multi-channel structure, soluble particles are repeatedly crushed and blended with the essence during the pumping process. This solves the problem of incomplete integration of soluble particles in existing containers, improving the user experience and makeup effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-03-27
AI Technical Summary
Existing serum containers containing soluble particles cannot effectively integrate the particles completely into the serum during use, causing some intact soluble particles to be pumped out with the liquid, affecting the user experience and makeup effect.
Design a container bottle with a squeeze pump head. By squeezing and resetting the pump head, the soluble particles are crushed multiple times during the pumping process and completely blended with the essence to form the finished essence.
This ensures that the soluble particles are completely integrated with the serum, preventing intact particles from being pumped out with the liquid, thus improving the user experience and maximizing the makeup effect.
Smart Images

Figure CN224038656U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of container bottle technology, specifically relating to a container bottle with a squeeze pump head. Background Technology
[0002] Cosmetics are chemical industrial products or fine chemical products applied to the surface of the human body through methods such as smearing or spraying. They aim to cleanse, maintain, beautify, or modify appearance or odor to maintain the user's good image. Cosmetics generally consist of a container and the cosmetic materials inside. These materials are typically liquid, powder, cream, or serum containing soluble particles. The soluble particles dissolve in the serum and integrate with it, thus achieving a better makeup effect.
[0003] However, existing containers for serums containing soluble particles have some drawbacks and require improvement in certain practical functions. For example, when using these containers, the soluble particles are typically dissolved in the serum before being pumped out. However, since these containers lack a structure to crush the soluble particles, the particles can only be allowed to dissolve in the serum over time or by shaking the container. Neither of these methods ensures complete integration, and sometimes intact particles are pumped out along with the serum, significantly impacting the user experience and failing to achieve the desired cosmetic effect. Therefore, there is an urgent need for a container that can completely crush the soluble particles and integrate them with the serum to solve these problems. Utility Model Content
[0004] In order to solve the problems mentioned in the background art, the purpose of this utility model is to provide a container bottle with a squeeze pump head, which aims to overcome the shortcomings of the prior art. The squeeze pump head completely crushes the soluble particles inside the container bottle and integrates them with the essence before pumping them out for use, thereby achieving the best cosmetic effect.
[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows:
[0006] A container bottle with a squeeze pump head, the container bottle comprising:
[0007] The main bottle has a movable built-in piston inside, which stores the essence containing soluble particles. The essence containing soluble particles is sealed above the built-in piston.
[0008] The extrusion pump head is located above and connected to the main bottle body, and includes a main pump body, a main column, a secondary column, a main piston, a flow channel column, a pulverizing nozzle, and a main pump head;
[0009] The upper end of the main pump body is provided with a collar, a spring is arranged between the main column and the collar, the main column and the auxiliary column are in contact and abutment, and the main piston is movably arranged between the main column and the auxiliary column.
[0010] The upper end of the main column is communicated with a flow channel column, the flow channel column is communicated with the crushing nozzle, the upper end of the flow channel column is communicated with the main pump head through the crushing nozzle, and one end of the main pump head is in contact and abutment with the upper end of the main column.
[0011] By pressing and releasing the main pump head, the built-in piston is translated upward, and the soluble particles are crushed once.
[0012] By releasing the main pump head, the auxiliary column and the main piston are in an open and close state, a gap between the auxiliary column and the main piston forms a first flow channel, a gap between the main column and the auxiliary column forms a second flow channel, and a third flow channel is arranged between the crushing nozzle and the flow channel column, and the soluble particles crushed once are sequentially passed through the first flow channel, the second flow channel and the third flow channel and are repeatedly crushed to be completely mixed with the essence liquid.
[0013] Further, the container bottle further comprises an upper bottle body, an outer sleeve, a gasket, a sealing bottom piece, the upper bottle body is screwedly connected to the upper end of the main bottle body, the outer sleeve is fixedly sleeved on the outer side of the upper bottle body, the gasket is fixedly clamped between the squeeze type pump head and the main bottle body, the sealing bottom piece is sealingly arranged at the bottom of the main bottle body, and the built-in piston is arranged above the sealing bottom piece.
[0014] Further, the squeeze type pump head is communicated with the main bottle body through the main pump body, a material through hole is formed in the bottom end of the main pump body, a one-way valve is coveringly arranged above the material through hole, and the main pump body is communicated with the main bottle body through cooperation of the material through hole and the one-way valve.
[0015] Further, the inner side of the upper bottle body is provided with an internal thread, the upper end of the main bottle body is provided with an external thread, and the upper bottle body and the main bottle body are screwedly connected through cooperation of the internal thread and the external thread.
[0016] Further, the flow channel column is provided with an internal flow channel, the flow channel column is communicated with the crushing nozzle through the internal flow channel, and a gap between the internal flow channel and the crushing nozzle forms the third flow channel.
[0017] Further, the upper end of the crushing nozzle is provided with a spray opening, and the crushing nozzle is communicated with the main pump head through the spray opening.
[0018] Further, one side of the main pump head is provided with a discharging channel, and the main pump head is communicated with the outside through the discharging channel.
[0019] Further, the container bottle further comprises a top cover, and the top cover is coveringly arranged on the upper end of the main bottle body.
[0020] The beneficial effects of the utility model lie in:
[0021] (1)The utility model discloses a press extrusion formula pump head's main pump head is pressed again and is loosened, and the built-in piston is made to go up translation in combination vacuum atmospheric pressure's effect to one -time crushing soluble particle, in the process of loosening the main pump head, the gap between the vice column and the main piston is in the open -and -shut state, and the gap between the two forms the first flow channel, the gap between the main column and the vice column forms the second flow channel, and the third flow channel is arranged between the flow channel column and the crushing nozzle, and the soluble particle of one -time crushing is followed with essence liquid and is pressed repeatedly in the narrow first flow channel, the second flow channel and the third flow channel to be completely fused into an organic whole with essence liquid, and is finally pumped out and used with the main pump head, to replace the traditional way of letting soluble particle melt into essence liquid with time or shaking the container bottle whole to let it melt into essence liquid, effectively avoid the situation that the complete soluble particle is pumped out with essence liquid, to guarantee people's use experience, and the original cosmetic effect can be played to the maximum extent. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 It is the internal section view schematic drawing of the container bottle with extrusion formula pump head of the utility model;
[0023] Figure 2 It is the liquid flow direction schematic drawing of the container bottle when the extrusion formula pump head of the utility model is pressed;
[0024] Figure 3 It is the liquid flow direction partial enlarged schematic drawing of the container bottle when the extrusion formula pump head of the utility model is pressed;
[0025] Figure 4 It is the split structure schematic drawing of the container bottle with extrusion formula pump head of the utility model;
[0026] Figure 5 It is the internal section view schematic drawing of the extrusion formula pump head of the utility model;
[0027] Figure 6 It is the split structure schematic drawing of the extrusion formula pump head of the utility model;
[0028] Figure 7 It is the plan view (left) of flow channel column, the internal section view schematic drawing (right) of flow channel column of the utility model.
[0029] In the diagram, 1 is the main bottle body, 101 is the essence, 1011 is the soluble particles, 102 is the external thread, 2 is the internal piston, 3 is the extrusion pump head, 301 is the main pump body, 3011 is the material passage, 3012 is the one-way valve, 302 is the main column, 303 is the secondary column, 304 is the main piston, 305 is the flow channel column, 3051 is the inner flow channel, 306 is the pulverizing nozzle, 3061 is the spray nozzle, 307 is the main pump head, 3071 is the discharge channel, 4 is the collar plate, 5 is the spring, 6 is the first flow channel, 7 is the second flow channel, 8 is the third flow channel, 9 is the upper bottle body, 901 is the internal thread, 10 is the outer shell, 11 is the gasket, 12 is the sealing bottom, and 13 is the top cap. Detailed Implementation
[0030] 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.
[0031] like Figures 1-7 As shown, this embodiment of the invention provides a container bottle with a squeeze pump head, the container bottle comprising:
[0032] The main bottle 1 has a movable built-in piston 2 inside, and stores an essence 101 containing soluble particles 1011. The essence 101 containing soluble particles 1011 is sealed above the built-in piston 2.
[0033] The extrusion pump head 3 is located above and connected to the main bottle body 1, and includes a main pump body 301, a main column 302, a secondary column 303, a main piston 304, a flow channel column 305, a pulverizing nozzle 306, and a main pump head 307.
[0034] The upper end of the main pump body 301 is provided with a collar plate 4, and a spring 5 is provided between the main column 302 and the collar plate 4. The main column 302 and the auxiliary column 303 are in contact and abut against each other, and the main piston 304 is movably disposed between the main column 302 and the auxiliary column 303.
[0035] The upper end of the main column 302 is connected to the flow channel column 305, the flow channel column 305 is connected to the pulverizing nozzle 306, the upper end of the flow channel column 305 is connected to the main pump head 307 through the pulverizing nozzle 306, and one end of the main pump head 307 is in contact with and abuts against the upper end of the main column 302.
[0036] By pressing and releasing the main pump head 307, the built-in piston 2 moves upward, crushing the soluble particles 1011 once.
[0037] The gap between the secondary column 303 and the main piston 304 forms a first flow channel 6 by loosening the main pump head 307, the gap between the main column 302 and the secondary column 303 forms a second flow channel 7, and the third flow channel 8 is arranged between the crushing nozzle 306 and the flow channel column 305, and the once crushed soluble particles 1011 are repeatedly compressed in the first flow channel 6, the second flow channel 7 and the third flow channel 8 in turn, and then fully mixed with the essence liquid 101.
[0038] Specifically, the soluble particles 1011 are spherical color particles containing various vitamins, moisturizing ingredients and nutrient ingredients, which are soft in the aqueous system through the conductivity reaction, easy to apply, easy to be absorbed by the skin, and the soluble particles 1011 wrap various solid or liquid nutrient ingredients, which can maintain the original color and round state in the essence liquid 101, release active substances when broken, and after use, can modify skin color, moisturize, make skin shiny and moist, increase skin elasticity, improve skin moisture and effectively prolong and strengthen skin care effect.
[0039] The container bottle of the utility model further includes an upper bottle body 9, an outer sleeve 10, a gasket 11, a sealing bottom part 12, the upper bottle body 9 is screw-jointed at the upper end of the main bottle body 1, the outer sleeve 10 is fixedly sleeved on the outer side of the upper bottle body 9, the gasket 11 is fixedly clamped between the extrusion type pump head 3 and the main bottle body 1, the sealing bottom part 12 is sealingly arranged at the bottom of the main bottle body 1, and the built-in piston 2 is arranged above the sealing bottom part 12.
[0040] Specifically, the sealing bottom part 12 is sealingly connected to the bottom of the main bottle body 1, and the essence liquid 101 can be completely sealed in the container bottle by the sealing bottom part 12, so that the essence liquid 101 is prevented from leaking to the outside.
[0041] Specifically, the gasket 11 reduces the friction and vibration between the extrusion type pump head 3 and the main bottle body 1, prevents the extrusion type pump head 3 from loosening or being damaged, and also fills the gap between the extrusion type pump head 3 and the main bottle body 1, so as to prevent fluid leakage.
[0042] The extrusion type pump head 3 of the utility model is connected with the main bottle body 1 through the main pump body 301, the bottom end of the main pump body 301 is provided with a material through hole 3011, a one-way valve 3012 is cover-connected above the material through hole 3011, and the main pump body 301 is connected with the main bottle body 1 through cooperation of the material through hole 3011 and the one-way valve 3012.
[0043] Specifically, the one-way valve 3012 can control the one-way flow of the essence liquid 101, thereby preventing backflow, and also has the advantages of stabilizing the internal pressure of the container bottle and stabilizing fluid delivery.
[0044] The upper bottle body 9 of this utility model is provided with an internal thread 901 on the inner side, and the upper outer edge of the main bottle body 1 is provided with an external thread 102. The upper bottle body 9 and the main bottle body 1 are connected by a screw thread through the cooperation of the internal thread 901 and the external thread 102.
[0045] The flow channel column 305 of this utility model is provided with an inner flow channel 3051. The flow channel column 305 is connected to the pulverizing nozzle 306 through the inner flow channel 3051. The gap between the inner flow channel 3051 and the pulverizing nozzle 306 forms a third flow channel 8.
[0046] The upper end of the pulverizing nozzle 306 of this utility model is provided with a nozzle 3061, and the pulverizing nozzle 306 is connected to the main pump head 307 through the nozzle 3061.
[0047] The main pump head 307 of this utility model has a discharge channel 3071 on one side, and the main pump head 307 is connected to the outside through the discharge channel 3071.
[0048] Specifically, the essence 101 is pumped to the outside through the discharge channel 3071.
[0049] The container bottle of this utility model also includes a top cap 13, which is attached to the upper end of the main bottle body 1.
[0050] Specifically, the top cover 13 can isolate the main pump head 307 from the external environment to prevent the external environment from contaminating the main pump head 307.
[0051] Combined with appendix Figures 1-7 The working principle of this utility model of a container bottle with a squeeze pump head is as follows:
[0052] In use, the user first lifts the top cover 13 and presses the upper end of the main pump head 307 with their finger. The main pump head 307 pushes the main column 302 downward, while the main column 302 pushes the auxiliary column 303 downward. At the same time, the auxiliary column 303 moves the main piston 304 downward. Then the user stops pressing the main pump head 307 and releases it. The main pump head 307, main column 302, auxiliary column 303, and main piston 304 all return to their original positions and move upward.
[0053] During the upward translation of the main pump head 307, main column 302, auxiliary column 303, and main piston 304, the auxiliary column 303 and the main piston 304 are in an open and closed state. The gap between the auxiliary column 303 and the main piston 304 forms the first flow channel 6, and the main column 302 and the auxiliary column 303 form the second flow channel 7. At the same time, under the action of vacuum atmospheric pressure, the built-in piston 2 pushes up the essence 101 containing soluble particles 1011 inside the main bottle body 1 and gradually translates upward. At this time, the pressure inside the container gradually increases and crushes the soluble particles 1011 once.
[0054] Subsequently, the once-crushed soluble particles 1011 and the essence 101 pass through the material passage hole 3011 and the one-way valve 3012 in sequence to enter the interior of the main pump body 301, and the once-crushed soluble particles 1011 and the essence 101 pass through the narrow first flow channel 6, the second flow channel 7 and the third flow channel 8 between the flow channel column 305 and the crushing nozzle 306 in sequence to be repeatedly crushed, and the once-crushed soluble particles 1011 and the essence 101 are integrated after being repeatedly crushed and become finished essence, the finished essence flows to the discharge passage 3071 of the main pump head 307 through the spout 3061 on the crushing nozzle 306, and finally the finished essence is pumped out from the discharge passage 3071 to be used.
[0055] The utility model has been described in detail above, the above-mentioned are only the preferred embodiments of the utility model, and cannot limit the utility model implementation range, namely, all equivalent changes and modifications made according to the scope of the application should still belong to the utility model coverage.
Claims
1. A container bottle with a squeeze pump head, characterized in that, The container bottle comprises: a main bottle body, which is internally provided with a movable built-in piston and stores essence liquid containing soluble particles, the essence liquid containing soluble particles being sealed above the built-in piston; a squeeze pump head, which is arranged above the main bottle body and communicates with the main bottle body, and comprises a main pump body, a main column, a secondary column, a main piston, a flow channel column, a crushing nozzle and a main pump head; an upper end of the main pump body is provided with a collar, a spring is arranged between the main column and the collar, the main column and the secondary column are in contact and abutment, and the main piston is movably arranged between the main column and the secondary column; an upper end of the main column communicates with the flow channel column, the flow channel column communicates with the crushing nozzle, the flow channel column communicates with the main pump head through the crushing nozzle, and one end of the main pump head is in contact and abutment with the upper end of the main column; the built-in piston is translated upward by pressing and releasing the main pump head, and the soluble particles are crushed once; the secondary column and the main piston are in an open and close state by releasing the main pump head, a gap between the secondary column and the main piston forms a first flow channel, a gap between the main column and the secondary column forms a second flow channel, and a third flow channel is arranged between the crushing nozzle and the flow channel column, the soluble particles crushed once are repeatedly crushed with the essence liquid in sequence through the first flow channel, the second flow channel and the third flow channel, and then completely mixed with the essence liquid.
2. A container bottle with a pump head according to claim 1, characterized in that The container bottle further comprises an upper bottle body, an outer sleeve, a gasket and a sealing bottom piece, the upper bottle body is screwedly connected to an upper end of the main bottle body, the outer sleeve is fixedly sleeved on an outer side of the upper bottle body, the gasket is fixedly clamped between the squeeze pump head and the main bottle body, and the sealing bottom piece is sealingly arranged at a bottom of the main bottle body, and the built-in piston is arranged above the sealing bottom piece.
3. A container bottle with a pump head according to claim 1, characterized in that The squeeze pump head communicates with the main bottle body through the main pump body, a bottom end of the main pump body is provided with a material through hole, a one-way valve is coveringly arranged above the material through hole, and the main pump body communicates with the main bottle body through cooperation of the material through hole and the one-way valve.
4. A container bottle with a pump head according to claim 2, characterized in that An inner thread is arranged on an inner side of the upper bottle body, an outer thread is arranged on an outer edge of the upper end of the main bottle body, and the upper bottle body and the main bottle body are screwedly connected through cooperation of the inner thread and the outer thread.
5. A container bottle with a pump head according to claim 1, characterized in that The flow channel column is provided with an inner flow channel, and the flow channel column communicates with the crushing nozzle through the inner flow channel.
6. A container bottle with a pump head according to claim 1, characterized in that An upper end of the crushing nozzle is provided with a spout, and the crushing nozzle communicates with the main pump head through the spout.
7. A container bottle with a pump head according to claim 1, characterized in that A discharge channel is arranged on one side of the main pump head, and the main pump head communicates with the outside through the discharge channel.
8. A container bottle with a pump head according to claim 1, characterized in that The container bottle further comprises a top cover, and the top cover is coveringly arranged on the upper end of the main bottle body.