Cream bottle

By incorporating a power supply component and an electromagnetic induction generator into the cream bottle, the electroactive gel can be effectively activated by electricity, solving the problem of unstable activation effect in existing containers and improving user experience and product quality.

CN224038664UActive Publication Date: 2026-03-27SHENG AILI CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing cosmetic containers cannot effectively activate the active ingredients in electroactive gels, and the activation effect is greatly affected by the user's massage intensity and duration.

Method used

Design a cream bottle with a built-in power supply component and an electromagnetic induction power generation device. The electroactive gel in the storage chamber is activated by electricity through the material electrode. Combined with a pressing and rotating dispensing structure, the electroactive gel can be fully activated and used.

Benefits of technology

It improves the utilization rate of electroactive gel, enhances the user experience, extends battery life, and improves the product's texture by interacting with the user through light-emitting components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cream bottle which comprises a bottle body, a power supply assembly, an inner container and a discharging assembly. The bottle body comprises a mounting cavity, and the power supply assembly and the inner container are arranged in the mounting cavity. The power supply assembly comprises a power source and a material body electrode, the power source is electrically connected with the material body electrode, the inner container comprises a material storage cavity, and the material body electrode communicates with the interior of the material storage cavity; the discharging assembly covers the material storage cavity and comprises a discharging piece, the discharging piece comprises a discharging port, and the discharging port communicates with the material storage cavity. Through the arrangement of the power supply assembly, the material body in the material storage cavity can be electrified during use, so that the active ingredients of the electroactive gel can be more fully activated, and the utilization rate of the electroactive gel is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a container technology field more specifically, relate to a cream bottle. BACKGROUND

[0002] Biological material is a kind of natural or artificially synthesized special functional material for contacting and interacting with life system, and can repair or induce regeneration of its cells, tissues and organs, and biological material application has involved medical devices, daily chemical and other industries;

[0003] At present, the new generation of biological material is mainly based on electroactive biological technology, and it is found in the research process that after adding electroactive gel in skin care product material body, the cosmetic material body can be better absorbed by the skin, so that the activity of the skin can be better improved, and the effect of skin care is improved, it is a new generation of biological material that can be applied to daily chemical industry, but since the active ingredients in electroactive gel can only be "activated" and released under the condition of massage or power supply, the existing cosmetic container does not have the function of power supply for electroactive gel, and can only be activated by massaging the skin, but the activation effect is influenced by the massaging force and time of the user, so it is urgent to design a container that can power the electroactive gel material. UTILITY MODEL CONTENT

[0004] The utility model aims at overcoming the insufficient of prior art, provide a cream bottle, through setting up power supply component, can power the material body in the storage cavity when using, so that the active ingredients of electroactive gel can be more fully activated, and the utilization rate of electroactive gel is improved.

[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: a cream bottle, including bottle body, power supply component, inner container and discharge assembly;

[0006] The bottle body includes a mounting cavity, and the power supply component and the inner container are arranged in the mounting cavity;

[0007] The power supply component includes a power supply and a material body electrode, the power supply is connected with the material body electrode by electricity, the inner container includes a storage cavity, and the material body electrode is communicated with the inside of the storage cavity;

[0008] The discharge assembly covers the storage cavity, the discharge assembly includes a discharge part, the discharge part includes a discharge port, and the discharge port is communicated with the storage cavity.

[0009] Further, the power supply component includes a control panel, the power supply is connected with the control panel by electricity, and the material body electrode is connected with the control panel by electricity

[0010] Further, the power supply includes a battery, and the battery is connected with the control panel by electricity.

[0011] Further, the power supply comprises an electromagnetic induction power generation device, the electromagnetic induction power generation device comprises a coil holder, a coil and a magnet, the coil is wound outside the coil holder, the coil is electrically connected with the control panel, the coil holder is internally provided with a mounting groove, the magnet is movably mounted in the mounting groove, the magnet side wall is in clearance fit with the mounting groove inner wall, and the magnet can move along the height direction of the mounting groove.

[0012] Further, the inner container is internally provided with a piston, the piston outer side is in sealing fit with the inner container inner wall, the piston bottom surface is provided with a second through hole, the material body electrode upper end penetrates through the second through hole and is inserted into the material storage cavity located above the piston, and the material body electrode is fixedly and sealingly connected with the second through hole.

[0013] The discharging assembly comprises an inner liner, the inner liner is fixedly connected with the bottle body, the inner liner is internally fixedly connected with a vacuum pump, and the vacuum pump lower end is inserted into the material storage cavity and the upper end is fixedly connected with the discharging piece.

[0014] Further, the discharging port is internally connected with a discharging nozzle, the discharging nozzle can open or close the discharging port, the discharging port inner wall is provided with a plurality of limiting ribs, a discharging channel is arranged between adjacent two limiting ribs, the discharging nozzle is made of flexible material, the discharging nozzle comprises an annular piece arranged on the upper portion of the discharging port, the annular piece lower portion is provided with a convex column, the convex column penetrates through the discharging port, the convex column outer side is provided with a third convex rib, the third convex rib upper portion abuts against the limiting rib lower portion, and the annular piece can be deformed to make the discharging channel communicate with the discharging port outside.

[0015] Further, the light emitting assembly comprises a first light emitting plate and a second light emitting plate, the first light emitting plate is fixedly connected to the upper portion of the bottle body, the second light emitting plate is mounted in the discharging assembly, the first light emitting plate and the power supply are electrically connected, and the second light emitting plate and the first light emitting plate are electrically connected.

[0016] Further, the first light emitting plate and the second light emitting plate are connected through conductive elastic pins, the conductive elastic pins comprise a first conductive elastic pin connected with the first light emitting plate and a second conductive elastic pin connected with the second light emitting plate, and the second conductive elastic pin lower end is in contact connection with the first conductive elastic pin.

[0017] Further, the first light emitting plate is sleeved outside the inner container, the light source of the first light emitting plate is arranged on the lower portion thereof and the light source can penetrate through the bottle body;

[0018] The discharging assembly further comprises a shoulder sleeve fixedly connected to the inner liner outer portion and a rotating cover located on the upper portion of the shoulder sleeve, the shoulder sleeve and the rotating cover are both sleeved outside the discharging piece, the second light emitting plate is fixedly connected to the upper portion of the shoulder sleeve, the rotating cover can transmit light, and the light source of the second light emitting plate can penetrate through the rotating cover.

[0019] Further, the discharging assembly comprises a shoulder sleeve, an inner liner and a rotating cover, the inner liner covers the upper end opening of the bottle body and is fixedly connected with the bottle body, the shoulder sleeve is fixedly connected outside the inner liner, the shoulder sleeve is sleeved outside the discharging element, the rotating cover is movably connected outside the discharging element, rotating the rotating cover can drive the discharging element to lift, the discharging element is connected with the rotating cover through a rotating support, the outer side of the rotating support is fixedly connected with the rotating cover and movably connected with the shoulder sleeve, the inner side of the rotating support is movably connected with the discharging element, the discharging element can move up and down on the rotating support, the inner wall of the rotating support is provided with a guide portion, the discharging element comprises a second annular rib, the outer side of the second annular rib is provided with a first protrusion, the first protrusion is movably connected with the guide portion, the first protrusion can move along the guide portion, the upper part of the first protrusion abuts against the lower part of the guide portion, the guide portion comprises a plurality of guide units connected in head-to-tail mode, the guide unit comprises a first track surface, a second track surface, a third track surface and a fourth track surface, the first track surface and the second track surface in the same guide unit are connected through the third track surface, and the side, away from the first track surface, of the second track surface is connected with the fourth track surface, the side, away from the second track surface, of the fourth track surface is connected with the first track surface of the adjacent guide unit, the position of the first track surface is lower than that of the second track surface, the third track surface is an inclined surface, and the fourth track surface is a vertical surface, when the upper part of the first protrusion abuts against the lower part of the first track surface, the discharging element is at the lowest position, and when the upper part of the first protrusion abuts against the lower part of the second track surface, the discharging element is at the highest position, the inner liner comprises a third support surface, the upper part of the third support surface is provided with a first annular rib, the periphery of the first annular rib is provided with a plurality of first limiting grooves, the inner wall of the second annular rib is provided with a plurality of second protrusions, the second protrusions are inserted into the corresponding first limiting grooves for limiting, the shoulder sleeve comprises an annular table, the inner wall of the annular table is provided with a second support surface, the inner wall of the second support surface is provided with a second protruding rib, the second protruding rib is sleeved outside the rotating support, the outer side of the rotating support is provided with a supporting rib, the lower part of the supporting rib abuts against the upper part of the second support surface, the lower part of the rotating support is provided with a protruding buckle, the upper part of the protruding buckle is buckled and connected with the lower part of the second protruding rib, the rotating cover comprises a third annular rib, the lower end of the third annular rib is located at the upper part of the supporting rib and is buckled and fixed with the rotating support, the inner liner covers the storage cavity, the lower part of the inner liner is provided with a first through hole, the first through hole is communicated with the mounting cavity, the upper part of the bottle body is provided with a first protruding rib, the upper part of the inner liner is provided with a first support surface, the lower part of the first support surface abuts against the upper part of the first protruding rib, the inner liner comprises a third support surface, the lower part of the third support surface abuts against the upper part of the first support surface, the inner wall of the inner liner and the outer wall of the first protruding rib are fixedly connected through threads, the upper part of the discharging assembly is covered with a bottle cap, the shoulder sleeve comprises an annular table, and the bottle cap is sleeved outside the annular table and is buckled and connected with the annular table.

[0020] In summary, the utility model has the following beneficial effects:

[0021] 1, through the cooperation of the discharge part and the vacuum pump, the discharge part can be directly pressed, the material body is discharged, through the cooperation of the shoulder sleeve, the inner lining, the discharge part, the rotating support and the rotating cover, when the rotating cover is rotated, the material body is also discharged, so that the pressing and rotating double mode discharge is realized, and the user experience is good;

[0022] 2, when in use, the battery passes electricity to the material body containing the electroactive gel in the storage cavity through the material body electrode, so that the active ingredients in the electroactive gel are activated and released, thereby effectively improving the use effect of the material body, by setting the electromagnetic induction power generation device, when the bottle body is shaken, electricity can be generated and current can be generated, thereby supplying power to the material body, not only can improve the service life of the battery, but also can pass electricity to activate the material body when the battery is out of power;

[0023] 3, when the Hall switch is opened, the battery can not only supply power to the material body, but also supply power to the first light-emitting plate and the second light-emitting plate, so that the first light-emitting plate and the second light-emitting plate are electrified and lighted up, thereby realizing the light-emitting of the bottle body and the rotating cover, the light can interact with the user, not only can improve the quality of the cream bottle, but also can improve the user experience, and by burning the delay program into the single-chip microcomputer of the control board, the first light-emitting plate and the second light-emitting plate can also be powered off and extinguished after being lighted up for 30S. BRIEF DESCRIPTION OF DRAWINGS

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

[0025] Figure 2 It is Figure 1 It is an enlarged view at A;

[0026] Figure 3 It is Figure 1 It is an enlarged view at B;

[0027] Figure 4 It is Figure 1 It is a partial schematic view;

[0028] Figure 5 It is an explosion view of the utility model;

[0029] Figure 6 It is an explosion view of the discharge assembly;

[0030] Figure 7 It is a sectional view of the discharge assembly top view;

[0031] Figure 8 It is a structural schematic view of the rotating support;

[0032] Figure 9An exploded view of the power supply assembly.

[0033] Fig. 1 is a bottle body; 101 is a mounting cavity; 102 is a first protruding rib; 2 is an inner container; 201 is a first supporting surface; 202 is a storage cavity; 203 is a first through hole; 3 is a piston; 301 is a second through hole; 4 is a shoulder sleeve; 401 is an annular table; 402 is a second supporting surface; 403 is a second protruding rib; 5 is an inner liner; 501 is a third supporting surface; 502 is a first annular rib; 503 is a first limiting groove; 6 is a discharging member; 601 is a second annular rib; 602 is a discharging opening; 603 is a limiting rib; 604 is a discharging channel; 605 is a first protruding block; 606 is a second protruding block; 7 is a rotating support; 701 is a supporting rib; 702 is a protruding buckle; 703 is a guide part; 704 is a guide unit; 705 is a first track surface; 706 is a second track surface; 707 is a third track surface; 708 is a fourth track surface; 8 is a rotating cover; 801 is a third annular rib; 9 is a bottle cap; 10 is a discharging nozzle; 1001 is an annular sheet; 1002 is a protruding column; 1003 is a third protruding rib; 11 is a shell; 1101 is a battery compartment; 12 is an electromagnetic induction power generation device; 1201 is a coil holder; 1202 is a mounting groove; 13 is a control board; 14 is a battery; 15 is a material body electrode; 16 is a first light-emitting plate; 17 is a second light-emitting plate; 18 is a first conductive elastic needle; 19 is a second conductive elastic needle; 20 is a vacuum pump; 21 is a magnet; 22 is a coil; 1000 is a power supply assembly; 2000 is a discharging assembly; 3000 is a power supply. DETAILED DESCRIPTION

[0034] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0035] Embodiment one:

[0036] As shown in the drawings, Figures 1 to 9 The present embodiment discloses a cream bottle, which comprises a bottle body 1 and a discharging assembly 2000, wherein the discharging assembly 2000 comprises a shoulder sleeve 4, an inner liner 5, a discharging member 6, a rotating cover 8 and a vacuum pump 20.

[0037] The inner liner 5 covers the upper end opening of the bottle body 1 and is fixedly connected with the bottle body 1, the shoulder sleeve 4 is fixedly connected to the outside of the inner liner 5, the discharging element 6 comprises a discharging port 602, the discharging port 602 communicates with the inside of the bottle body 1, the vacuum pump 20 is fixedly connected to the inside of the inner liner 5, the lower end of the vacuum pump 20 is inserted into the bottle body 1 and the upper end is fixedly connected with the discharging element 6, specifically, the inside of the bottle body 1 is provided with a mounting cavity 101, the inner container 2 is installed in the mounting cavity 101, the inner container 2 can store material, there is a gap between the outer wall of the inner container 2 and the inner wall of the bottle body 1, the inside of the inner container 2 is provided with a piston 3, the outer side of the piston 3 is sealingly matched with the inner wall of the inner container 2, the lower part of the inner container 2 is provided with a first through hole 203, the first through hole 203 communicates with the mounting cavity 101, the inside of the inner container 2 is provided with a material storage cavity 202, the material is contained in the material storage cavity 202, the material discharging assembly 2000 covers the material storage cavity 202, the material storage cavity 202 is located above the piston 3, the inner liner 5 covers the material storage cavity 202, the lower end of the vacuum pump 20 is inserted into the material storage cavity 202, the discharging port 602 communicates with the vacuum pump 20, the vacuum pump 20 communicates with or blocks the material storage cavity 202.

[0038] The discharging element 6 is pressed to discharge the material absorbed by the vacuum pump 20 from the discharging port 602, specifically, when the discharging element 6 is pressed downward, the liquid outlet pipe of the vacuum pump 20 is driven to move downward, so that the material absorbed by the vacuum pump 20 from the material storage cavity 202 is discharged from the discharging port 602, realizing the pressing of the material, wherein the vacuum pump 20 is a conventional pump, and its specific structure and principle are not described in detail in the specification.

[0039] As shown in Figure 1 and Figure 3 , the upper part of the bottle body 1 is provided with a first convex rib 102, the upper part of the inner container 2 is provided with a first supporting surface 201, the lower part of the first supporting surface 201 abuts against the upper part of the first convex rib 102, the inner liner 5 comprises a third supporting surface 501, the lower part of the third supporting surface 501 abuts against the upper part of the first supporting surface 201, the inner wall of the inner liner 5 is fixedly connected with the outer wall of the first convex rib 102 through threads, through the cooperation of the bottle body 1, the inner container 2 and the inner liner 5, the inner container 2 can be fixed in the mounting cavity 101.

[0040] The rotating cover 8 is movably connected to the outside of the discharging element 6, specifically, the discharging element 6 is connected with the rotating cover 8 through the rotating support 7, the outer side of the rotating support 7 is fixedly connected with the rotating cover 8 and movably connected with the shoulder sleeve 4, the inner side of the rotating support 7 is movably connected with the discharging element 6, the shoulder sleeve 4 is sleeved on the outer side of the discharging element 6, the shoulder sleeve 4 comprises an annular table 401, the inner wall of the annular table 401 is provided with a second supporting surface 402, the inner wall of the second supporting surface 402 is provided with a second convex rib 403, the second convex rib 403 is an annular structure, the second convex rib 403 is sleeved on the outer side of the rotating support 7, the outer side of the rotating support 7 is provided with a supporting rib 701, the lower part of the supporting rib 701 abuts against the upper part of the second supporting surface 402, the lower part of the rotating support 7 is provided with a convex buckle 702, the upper part of the convex buckle 702 is buckled and connected with the lower part of the second convex rib 403, the rotating cover 8 comprises a third annular rib 801, the lower end of the third annular rib 801 is located on the upper part of the supporting rib 701 and is buckled and fixed with the rotating support 7, through the cooperation of the third annular rib 801 and the rotating support 7, the fixed connection of the rotating support 7 and the rotating cover 8 can be realized, so that the rotating support 7 can be synchronously driven to rotate when the rotating cover 8 is rotated, through the cooperation of the convex buckle 702 and the second convex rib 403, the connection of the rotating support 7 and the shoulder sleeve 4 can be realized, and the rotating support 7 is prevented from being pulled out upward.

[0041] As shown in Figure 1 , Figure 3 , Figures 6 to 8 , rotating the rotating cover 8 can drive the discharging element 6 to ascend and descend, the discharging element 6 can move up and down on the rotating support 7, specifically, the inner lining 5 comprises a third supporting surface 501, the upper part of the third supporting surface 501 is provided with a first annular rib 502, the circumferential side of the first annular rib 502 is provided with a plurality of first limiting grooves 503, the inner wall of the second annular rib 601 is provided with a plurality of second convex blocks 606, the second convex blocks 606 are inserted into the corresponding first limiting grooves 503 for limiting, through the cooperation of the second convex blocks 606 and the first limiting grooves 503, the rotating limiting effect of the discharging element 6 can be achieved, so as to avoid driving the discharging element 6 to rotate when the rotating cover 8 is rotated, and the inner wall of the rotating support 7 is provided with a guide portion 703, the discharging element 6 comprises a second annular rib 601, the outer side of the second annular rib 601 is provided with a first convex block 605, the first convex block 605 is connected with the guide portion 703, the first convex block 605 can move along the guide portion 703, the guide portion 703 is a plane with height difference, when the rotating cover 8 drives the rotating support 7 to rotate, since the discharging element 6 is limited to rotate, the discharging element 6 can move up and down along the track of the guide portion 703, realizing the discharging of the material body during the rotating operation.

[0042] Specifically, the upper part of the first protrusion 605 abuts against the lower part of the guide part 703, the guide part 703 comprises a plurality of guide units 704 connected in a head-to-tail manner, the guide unit 704 comprises a first track surface 705, a second track surface 706, a third track surface 707 and a fourth track surface 708, the first track surface 705 and the second track surface 706 in the same guide unit 704 are connected through the third track surface 707, and the side of the second track surface 706 away from the first track surface 705 is connected with the fourth track surface 708, the side of the fourth track surface 708 away from the second track surface 706 is connected with the first track surface 705 of the adjacent guide unit 704, the position of the first track surface 705 is lower than that of the second track surface 706, the third track surface 707 is an inclined surface, and the fourth track surface 708 is a vertical surface, the first track surface 705 and the second track surface 706 are connected through the third track surface 707 which is an inclined surface, so that when the rotating support 7 rotates, the first protrusion 605 located at the second track surface 706 can move to the first track surface 705 along the third track surface 707, and since the fourth track surface 708 is a vertical surface, the first protrusion 605 cannot move from the second track surface 706 to the first track surface 705 of the next guide unit 704 through the fourth track surface 708, that is, the rotating support 7 can only rotate in one direction, and the rotating direction is consistent with the screwing direction of the bottle body 1 and the discharging assembly 2000, through this design, it can effectively avoid that the discharging assembly 2000 is loosened by mistake when the liquid is rotated to be discharged, and the structure has good reliability.

[0043] When the upper part of the first protrusion 605 abuts against the lower part of the first track surface 705, the discharging piece 6 is located at the lowest position, when the upper part of the first protrusion 605 abuts against the lower part of the second track surface 706, the discharging piece 6 is located at the highest position, that is, when the first protrusion 605 moves from the second track surface 706 to the first track surface 705, and then moves from the first track surface 705 to the second track surface 706 of the adjacent guide unit 704, it is equivalent to that the discharging piece 6 completes one pressing, so as to realize the discharging of the material body.

[0044] More specifically, the number of the first protrusions 605 is four, and the four first protrusions 605 are located in the same track surface of different guide units 704, specifically, when one first protrusion 605 is located at the lower part of the first track surface 705, the other three first protrusions 605 are respectively located at the lower part of the first track surface 705 of the corresponding guide unit 704, through the above design, the stability of the movement of the discharging piece 6 can be improved, and the structure has good reliability.

[0045] Therefore, in the embodiment, the cooperation of the discharging element 6 and the vacuum pump 20 enables the discharging element 6 to be directly pressed, and the discharging of the material body is realized. The cooperation of the shoulder sleeve 4, the inner liner 5, the discharging element 6, the rotating support 7 and the rotating cover 8 enables the discharging of the material body to be realized when the rotating cover 8 is rotated, thereby realizing the dual-mode discharging of pressing and rotating, and the user experience is good.

[0046] As shown in Figure 1 , Figure 2 and Figure 6 , the discharging outlet 602 is internally connected with a discharging nozzle 10, and the discharging nozzle 10 can open or close the discharging outlet 602. Specifically, a plurality of limiting ribs 603 are arranged on the inner wall of the discharging outlet 602, and a discharging channel 604 is arranged between adjacent two limiting ribs 603. The discharging nozzle 10 includes an annular sheet 1001 arranged on the upper portion of the discharging outlet 602. The lower portion of the annular sheet 1001 is provided with a convex column 1002, and the convex column 1002 penetrates through the discharging outlet 602. The outer side of the convex column 1002 is provided with a third convex rib 1003, and the upper portion of the third convex rib 1003 abuts against the lower portion of the limiting rib 603. Through the cooperation of the third convex rib 1003 and the limiting rib 603, the connection of the discharging nozzle 10 and the discharging outlet 602 can be realized. In addition, the discharging nozzle 10 is made of flexible material, preferably silicone material. The annular sheet 1001 can be deformed to make the discharging channel 604 communicate with the outside of the discharging outlet 602. Specifically, when the discharging element 6 is pressed, the material body in the vacuum pump 20 can enter the discharging channel 604. Since the annular sheet 1001 is made of thin silicone material, when the discharging element 6 is pressed, the material body can push the annular sheet 1001 to deform outward, so that the discharging channel 604 communicates with the outer surface of the discharging element 6, and the material body can flow out of the surface of the discharging element 6 to realize discharging. When the discharging is completed, the discharging element 6 rises, and at this time, the annular sheet 1001 returns to deformation and re-covers the discharging outlet 602, thereby preventing the material body from flowing back.

[0047] The discharging assembly 2000 is covered with a bottle cap 9, and the bottle cap 9 is sleeved on the outer side of the annular table 401 and is connected with the annular table 401 by buckling. By arranging the bottle cap 9, the discharging element 6 can be covered, thereby protecting the discharging element 6 and preventing the discharging element 6 from being pressed by mistake.

[0048] Embodiment Two:

[0049] As shown in Figures 1 to 9 , on the basis of embodiment one, a power supply assembly 1000 is further included, and the power supply assembly 1000 is arranged in the mounting cavity 101.

[0050] As shown in Figure 9As shown, the dashed part is a wire harness, the power supply assembly 1000 includes a power supply 3000, a control panel 13, a magnet 21 and a material electrode 15, the power supply 3000 is electrically connected with the material electrode 15, specifically, the power supply 3000 is electrically connected with the control panel 13, the material electrode 15 is electrically connected with the control panel 13, the power supply 3000 is a battery 14, the battery 14 is electrically connected with the control panel 13, the material electrode 15 is communicated with the inside of the storage cavity 202, the upper end of the material electrode 15 penetrates through the second through hole 301 and is inserted into the storage cavity 202 above the piston 3, the material electrode 15 is fixedly and sealingly connected with the second through hole 301, the piston 3 can move upward and synchronously drive the material electrode 15 to move upward, in use, the battery 14 energizes the material containing electroactive gel in the storage cavity 202 through the material electrode 15, so that the active ingredients in the electroactive gel are activated and released, thereby effectively improving the use effect of the material.

[0051] Specifically, the control panel 13 is a conventional PLC circuit board, which further integrates a single-chip microcomputer (not shown in the figure), the power supply 3000 supplies power to the control panel 13, the control panel 13 is provided with a Hall switch (not shown in the figure), when the user shakes the bottle body 1, the magnet 21 moves, and when the Hall switch detects that the magnetic field strength generated by the movement of the magnet 21 is greater than the threshold value set in the single-chip microcomputer, the single-chip microcomputer triggers the circuit of the battery 14 power supply part to be opened, and supplies power to the control panel 13 and the material electrode 15, and energizes and activates the material through the material electrode 15;

[0052] A timing program is recorded in the single-chip microcomputer, which can realize the delay closing of the circuit, preferably 30S after power-on, the power is turned off to stop supplying power to the material, specifically, after the control panel 13 is powered on, if the bottle body 1 is not shaken, i.e. the magnet 21 does not displace, the Hall switch stops working, then the power is turned off after 30S, if the bottle body 1 is shaken again to move the magnet 21, the power-off time is recalculated, i.e. if the bottle body 1 is not shaken after 20S of static, the power is turned off after 10S, if the bottle body 1 is shaken again, the power is turned off again after 30S, wherein the Hall switch is preferably a KTH1701 series high-performance, low-power, full-pole magnetic field detection Hall switch sensor.

[0053] Specifically, the power supply assembly 1000 is located below the inner container 2, the power supply assembly 1000 further includes a shell 11, the power supply 3000 and the control panel 13 are fixedly installed in the shell 11, the magnet 21 is movably installed in the shell 11, the shell 11 is fixedly connected with the bottom surface of the installation cavity 101 through screws, and the shell 11 includes a battery compartment 1101, the battery 14 is fixedly installed in the battery compartment 1101.

[0054] Embodiment three:

[0055] As Figures 1 to 9As shown, on the basis of the embodiment two, another power supply 3000, i.e. electromagnetic induction power generation device 12 is further arranged, power generation is carried out through the electromagnetic induction power generation device 12, and the material body can also be charged, thereby improving the service life of the battery 14. Specifically, the electromagnetic induction power generation device 12 comprises a coil holder 1201, a coil 22 and a magnet 21. The coil holder 1201 is fixedly connected in the shell 11. The coil 22 is wound outside the coil holder 1201. The coil 22 is electrically connected with the control panel 13. The coil holder 1201 is provided with a mounting groove 1202. The magnet 21 is movably mounted in the mounting groove 1202. The side wall of the magnet 21 is in clearance fit with the inner wall of the mounting groove 1202. The magnet 21 can move along the height direction of the mounting groove 1202. When power generation is needed, the bottle body 1 can be shaken up and down. The magnet 21 can reciprocatingly move up and down in the mounting groove 1202, thereby cutting the magnetic induction lines generated by the coil 22, generating a current of 4mA-10mA. The current is transmitted to the material body electrode 15 through the control panel 13. The material body is electrified through the material body electrode 15. Through the arrangement of the electromagnetic induction power generation device 12, when the bottle body 1 is shaken, power generation and current generation can be carried out, thereby supplying power for the material body. Not only the service life of the battery 14 can be improved, but also the material body can be electrified and activated when the battery 14 is out of power.

[0056] Embodiment four:

[0057] As Figures 1 to 9As shown, on the basis of embodiment three, further comprising a light-emitting assembly, the light-emitting assembly comprising a first light-emitting plate 16 and a second light-emitting plate 17, the first light-emitting plate 16 being fixedly connected to the upper portion of the bottle body 1, the second light-emitting plate 17 being installed in the discharging assembly 2000, the first light-emitting plate 16 and the power supply 3000 being electrically connected, the first light-emitting plate 16 and the control board 13 being connected through a wire harness, the second light-emitting plate 17 and the first light-emitting plate 16 being electrically connected, the first light-emitting plate 16 being sleeved outside the inner container 2, the light source of the first light-emitting plate 16 being arranged at the lower portion thereof and being capable of penetrating through the bottle body 1, the second light-emitting plate 17 being fixedly connected to the upper portion of the shoulder sleeve 4, the rotating cover 8 being capable of transmitting light, the light source of the second light-emitting plate 17 being capable of penetrating through the rotating cover 8, the rotating cover 8 being made of transparent PET material, the bottle body 1 being made of transparent acrylic material, and the inner wall of the mounting cavity 101 being sprayed with light-proof ink, when the Hall switch is opened, the current generated by the coil 22 and the current generated by the battery 14 jointly supply power to the material body and the light-emitting assembly, so that not only the material body can be powered and activated, but also the first light-emitting plate 16 and the second light-emitting plate 17 can be electrified and lit, the bottle body 1 and the rotating cover 8 are made to emit light, the light can be used to interact with the user, the quality of the cream bottle can be improved, the user experience can be improved, and by burning a delay program into the single-chip microcomputer like the control board 13, the first light-emitting plate 16 and the second light-emitting plate 17 can be powered off and extinguished after being lit for 30S.

[0058] Specifically, as shown in the drawings, Figure 3 The first light-emitting plate 16 and the second light-emitting plate 17 are connected through conductive elastic pins, the conductive elastic pins comprising a first conductive elastic pin 18 connected with the first light-emitting plate 16 and a second conductive elastic pin 19 connected with the second light-emitting plate 17, the lower end of the second conductive elastic pin 19 being in contact with the first conductive elastic pin 18, the first conductive elastic pin 18 being fixed in the first supporting surface 201, and the second conductive elastic pin 19 being fixed in the discharging assembly 2000, the cooperation of the first conductive elastic pin 18 and the second conductive elastic pin 19 enabling the electrical connection of the first light-emitting plate 16 and the second light-emitting plate 17.

[0059] The above only describes preferred embodiments of the present application, and the protection scope of the present application is not limited to the above-described embodiments. Any technical solutions falling within the concept of the present application shall fall within the protection scope of the present application. It should be noted that, for ordinary technical personnel in the technical field, some improvements and decorations without departing from the principles of the present application shall also be considered as falling within the protection scope of the present application.

Claims

1. A cream jar, characterized in that, It includes a bottle body (1), a power supply assembly (1000), an inner liner (2), and a discharge assembly (2000); The bottle body (1) includes a mounting cavity (101), and the power supply assembly (1000) and the inner liner (2) are disposed in the mounting cavity (101); The power supply component (1000) includes a power supply (3000) and a material electrode (15). The power supply (3000) and the material electrode (15) are electrically connected. The inner liner (2) includes a storage cavity (202). The material electrode (15) is connected to the inside of the storage cavity (202). The discharge assembly (2000) covers the storage cavity (202). The discharge assembly (2000) includes a discharge component (6), which includes a discharge port (602) and is connected to the storage cavity (202).

2. A cream jar according to claim 1, characterized in that, The power supply component (1000) includes a control board (13), the power supply (3000) is electrically connected to the control board (13), and the material electrode (15) is electrically connected to the control board (13).

3. A cream jar according to claim 2, characterized in that, The power supply (3000) includes a battery (14), which is electrically connected to the control board (13).

4. A cream jar according to claim 2, characterized in that, The power supply (3000) includes an electromagnetic induction power generation device (12), which includes a coil frame (1201), a coil (22), and a magnet (21). The coil (22) is wound around the outside of the coil frame (1201) and is electrically connected to the control board (13). The coil frame (1201) is provided with a mounting groove (1202). The magnet (21) is movably installed in the mounting groove (1202). The side wall of the magnet (21) is clearance-fitted with the inner wall of the mounting groove (1202). The magnet (21) can move along the height direction of the mounting groove (1202).

5. A cream jar according to claim 1, characterized in that, The inner liner (2) is provided with a piston (3), the outer side of the piston (3) is sealed to the inner wall of the inner liner (2), the bottom surface of the piston (3) is provided with a second through hole (301), the upper end of the material electrode (15) passes through the second through hole (301) and is inserted into the storage cavity (202) located above the piston (3), the material electrode (15) is fixed and sealed to the second through hole (301); The discharge assembly (2000) includes a liner (5), which is fixedly connected to the bottle body (1). A vacuum pump (20) is fixedly connected inside the liner (5). The lower end of the vacuum pump (20) is inserted into the storage chamber (202) and the upper end is fixedly connected to the discharge component (6).

6. A cream jar according to claim 5, characterized in that, The discharge port (602) is internally connected to a discharge nozzle (10), which can open or close the discharge port (602). The inner wall of the discharge port (602) is provided with multiple limiting ribs (603), and a discharge channel (604) is provided between two adjacent limiting ribs (603). The discharge nozzle (10) is made of flexible material and includes an annular plate located at the upper part of the discharge port (602). 1001), the lower part of the annular plate (1001) is provided with a protruding post (1002), the protruding post (1002) penetrates the discharge port (602), the outer side of the protruding post (1002) is provided with a third protruding rib (1003), the upper part of the third protruding rib (1003) abuts against the lower part of the limiting rib (603), the annular plate (1001) can deform so that the discharge channel (604) communicates with the outside of the discharge port (602).

7. A cream jar according to claim 5, characterized in that, It also includes a light-emitting component, which includes a first light-emitting plate (16) and a second light-emitting plate (17). The first light-emitting plate (16) is fixedly connected to the upper part of the bottle body (1), and the second light-emitting plate (17) is installed in the discharge component (2000). The first light-emitting plate (16) and the power supply (3000) are electrically connected, and the second light-emitting plate (17) and the first light-emitting plate (16) are electrically connected.

8. A cream jar according to claim 7, characterized in that, The first light-emitting plate (16) and the second light-emitting plate (17) are connected by conductive spring pins. The conductive spring pins include a first conductive spring pin (18) connected to the first light-emitting plate (16) and a second conductive spring pin (19) connected to the second light-emitting plate (17). The lower end of the second conductive spring pin (19) is in contact with the first conductive spring pin (18).

9. A cream jar according to claim 8, characterized in that, The first light-emitting plate (16) is sleeved on the outside of the inner liner (2), and the light source of the first light-emitting plate (16) is located at its lower part and the light source can pass through the bottle body (1); The discharge assembly (2000) also includes a shoulder sleeve (4) fixedly connected to the outside of the inner liner (5) and a rotating cover (8) located on the upper part of the shoulder sleeve (4). The shoulder sleeve (4) and the rotating cover (8) are both sleeved on the outside of the discharge component (6). The second light-emitting plate (17) is fixedly connected to the upper part of the shoulder sleeve (4). The rotating cover (8) is light-transmitting, and the light source of the second light-emitting plate (17) can pass through the rotating cover (8).

10. A cream jar according to claim 1, characterized in that, The discharge assembly (2000) includes a shoulder sleeve (4), an inner liner (5), and a rotating cap (8). The inner liner (5) covers the upper opening of the bottle body (1) and is fixedly connected to the bottle body (1). The shoulder sleeve (4) is fixedly connected to the outside of the inner liner (5) and is fitted on the outside of the discharge component (6). The rotating cap (8) is movably connected to the outside of the discharge component (6). Rotating the rotating cap (8) can drive the discharge component (6) to rise and fall. The discharge component (6) and the rotating cap (8) are connected through a rotating bracket (7). The outer side of the rotating bracket (7) is fixedly connected to the rotating cap (8) and movably connected to the shoulder sleeve (4). The inner side of the rotating bracket (7) is movably connected to the discharge component (6). The discharge component (6) can rotate on the rotating bracket. The frame (7) moves up and down. The inner wall of the rotating support (7) is provided with a guide part (703). The discharge part (6) includes a second annular rib (601). The outer side of the second annular rib (601) is provided with a first protrusion (605). The first protrusion (605) is connected to the guide part (703). The first protrusion (605) can move along the guide part (703). The upper part of the first protrusion (605) abuts against the lower part of the guide part (703). The guide part (703) includes a plurality of guide units (704) connected end to end. The guide unit (704) includes a first trajectory surface (705), a second trajectory surface (706), a third trajectory surface (707), and a fourth trajectory surface (708), located on the same guide. The first trajectory surface (705) and the second trajectory surface (706) of the unit (704) are connected by a third trajectory surface (707), and the side of the second trajectory surface (706) away from the first trajectory surface (705) is connected to a fourth trajectory surface (708). The side of the fourth trajectory surface (708) away from the second trajectory surface (706) is connected to the first trajectory surface (705) of the adjacent guide unit (704). The first trajectory surface (705) is lower than the second trajectory surface (706). The third trajectory surface (707) is an inclined surface, and the fourth trajectory surface (708) is a vertical surface. When the upper part of the first protrusion (605) abuts against the lower part of the first trajectory surface (705), the discharge part (6) is at its lowest point. When the upper part of the first protrusion (605) abuts against the lower part of the second trajectory surface (706), the discharge part (6) is at its highest point. The inner liner (5) includes a third support surface (501). The upper part of the third support surface (501) is provided with a first annular rib (502). The periphery of the first annular rib (502) is provided with a plurality of first limiting grooves (503). The inner wall of the second annular rib (601) is provided with a plurality of second protrusions (606). The second protrusions (606) are inserted into the corresponding first limiting grooves (503) for limitation. The shoulder sleeve (4) includes an annular platform (401). The inner wall of the annular platform (401) is provided with a second support surface (402). The inner wall of the second support surface (402) is provided with a second protruding rib (403).The second rib (403) is sleeved on the outside of the rotating bracket (7). The rotating bracket (7) has a support rib (701) on its outside. The lower part of the support rib (701) abuts against the upper part of the second support surface (402). The rotating bracket (7) has a buckle (702) at its lower part. The upper part of the buckle (702) is fastened to the lower part of the second rib (403). The rotating cover (8) includes a third annular rib (801). The lower end of the third annular rib (801) is located above the support rib (701) and is fastened to the rotating bracket (7). The inner liner (5) covers the storage cavity (202). The lower part of the inner liner (2) has a first through hole (203). The first through hole (203) is connected to the safety device. The cavity (101) is connected. The upper part of the bottle body (1) is provided with a first rib (102). The upper part of the inner liner (2) is provided with a first support surface (201). The lower part of the first support surface (201) abuts against the upper part of the first rib (102). The inner liner (5) includes a third support surface (501). The lower part of the third support surface (501) abuts against the upper part of the first support surface (201). The inner wall of the inner liner (5) and the outer wall of the first rib (102) are fixed by threaded connection. The upper part of the discharge assembly (2000) is covered with a bottle cap (9). The shoulder sleeve (4) includes an annular platform (401). The bottle cap (9) is sleeved on the outside of the annular platform (401) and fastened to the annular platform (401).