FLUID DISCHARGER AND APPLICATOR DEVICE, METHOD FOR ASSEMBLING AND MANUFACTURING THE SAME AND ASSEMBLING SYSTEM
20220408899 ยท 2022-12-29
Assignee
Inventors
Cpc classification
A45D2200/1036
HUMAN NECESSITIES
A45D34/04
HUMAN NECESSITIES
A45D2200/1018
HUMAN NECESSITIES
A45D40/26
HUMAN NECESSITIES
International classification
Abstract
A fluid discharger and applicator device for uniform distribution or application of the fluid for treating the skin or any surface is disclosed. The fluid discharger and applicator device comprises a handle and an applicator comprising a flexible application head able to absorb fluid and an application head holder for holding the application head. The handle of the fluid discharger and applicator device is defined with a cavity to store a fluid, and the application fluid is able to enter the application head so as to be applied (or application) on skin of a user.
Claims
1. A fluid discharger and applicator device, comprising: a casing with a handle, and an applicator connected to one end of the handle, the applicator comprising: a flexible application head which is able to absorb fluid, and an application head holder for holding the application head, wherein the handle defines a cavity therein, the cavity is used for storing application fluid, and the application fluid is able to enter the application head, wherein the application fluid is absorbed in an application fluid core, which is flexible and able to be arranged in the cavity, a pressing part is provided on the handle for squeezing the application fluid core.
2. The fluid discharger and applicator device according to claim 1, wherein a knob is provided on the pressing part.
3. The fluid discharger and applicator device according to claim 1, wherein the cavity is in fluid communication with the application head by a channel.
4. The fluid discharger and applicator device according to claim 3, wherein a check valve is provided in the channel.
5. A fluid discharger and applicator device, comprising: a casing with a handle, and an applicator connected to one end of the handle, the applicator comprising: a flexible application head which is able to absorb fluid, and an application head holder for holding the application head, wherein the handle defines a cavity therein, the cavity is used for storing application fluid, and the application fluid is able to enter the application head; wherein a pressing part is provided on the portion of the application head holder opposite to an application side, which is able to press out the fluid in the application head, the pressing part provided on the portion of the application head holder is formed of flexible material.
6. The fluid discharger and applicator device according to claim 5, wherein the application fluid is absorbed in an application fluid core, which is flexible and able to be arranged in the cavity, a pressing part is provided on the handle for squeezing the application fluid core.
7. The fluid discharger and applicator device according to claim 6, wherein a knob is provided on the pressing part.
8. The fluid discharger and applicator device according to claim 6, wherein the cavity is in fluid communication with the application head by a channel.
9. The fluid discharger and applicator device according to claim 8, wherein a check valve is provided in the channel.
10. The fluid discharger and applicator device according to claim 5, wherein the application fluid is filled in a cassette, a body of which is flexible and able to be loaded in the cavity of the handle, the handle is provided with a pressing part for squeezing the cassette.
11. The fluid discharger and applicator device according to claim 10, wherein a knob is provided on the pressing part.
12. The fluid discharger and applicator device according to claim 10, wherein the cavity is communicated with the application head through a pipeline which is able to puncture the cassette.
13. The fluid discharger and applicator device according to claim 5, wherein the portion of the handle corresponding to the cavity is made of flexible material.
14. The fluid discharger and applicator device according to claim 5, wherein the handle and the applicator are of integrated structure.
15. The fluid discharger and applicator device according to claim 5, wherein the application head holder is a shell including an open end, with the application head partially arranged in the shell to expose an application side there from, and the end of the shell opposite to the open end is provided with an orifice for fluid communication with the cavity of the handle, the open end of the shell is releasably sealed by an airtight cover.
16. The fluid discharger and applicator device according to claim 15, wherein at least one of the handle and the shell is manufactured with one or more of plastic, eco-friendly material, paper-type material, saw dust type material, acrylic, even glass, bio-degradable materials, recyclable material.
17. The fluid discharger and applicator device according to claim 5, wherein the handle is detachably connected with the applicator.
18. The fluid discharger and applicator device according to claim 5, wherein the handle is elastically and fixedly connected with the applicator, so that the fluid discharger and applicator device can be slightly bent during use.
19. The fluid discharger and applicator device according to claim 5, wherein an application side is at an angle from 45 degrees to 135 degrees with an applicator surface to be applied.
20. A fluid discharger and applicator device, comprising: a casing with a handle, and an applicator connected to one end of the handle, the handle comprising: a cover enclosing a notch, a casing recess shaped so as to allow flush placement, a fluid cassette disposed between the cover and the casing recess, a resilient mesa in the fluid cassette configured to protrude through the notch, and a cavity formed in the handle for storing an application fluid and loading application fluid in the fluid cassette.
21. The fluid discharger and applicator device according to claim 20, wherein the fluid cassette including a resilient mesa and a perimeter tab.
22. The fluid discharger and applicator device according to claim 20, wherein the resilient mesa sized and shaped so as to protrude through the notch so a user is enabled to dispense the fluid through a grated opening by applying pressure to the resilient mesa.
23. The fluid discharger and applicator device according to claim 22, wherein the grated opening is substantially coplanar with an open applicator face and disposed of adjacent to the open applicator face.
24. The fluid discharger and applicator device according to claim 20, wherein the cavity is in fluid communicating with the application head through a channel between the cavity and the fluid cassette.
25. The fluid discharger and applicator device according to claim 20, wherein the fluid cassette is flexible, and wherein a pressing part is provided on the handle for squeezing the fluid cassette.
26. The fluid discharger and applicator device according to claim 20, wherein the applicator is unitary with the handle.
27. The fluid discharger and applicator device according to claim 20, wherein at least one of the handle and the applicator is manufactured with one or more of plastic, eco-friendly material, paper-type material, saw dust type material, acrylic, even glass, bio-degradable materials, recyclable material.
28. A method of manufacturing a fluid discharger and applicator device, including: Processing molds by molding, Producing various components of the fluid discharger and applicator device using molds, Producing application head and application fluid core or application fluid cassette, and Assembling components with the application heads and the application fluid cores or the application fluid cassettes to form the fluid discharger and applicator device, wherein the various components of the fluid discharger and applicator device includes an application head holder and a handle, a pressing part is provided on the portion of the application head holder opposite to an application side, which is able to press out fluid in the application head, and the pressing part provided on the portion of the application head holder is formed of flexible material.
29. The method according to claim 28, wherein producing application heads and application fluid cores includes producing uniform specifications of the application heads and application fluid cores by cutting a flexible material which can absorb fluid.
30. The method according to claim 28, wherein the application fluid cassettes are uniform specifications of fluid pouches.
31. The method according to claim 28, further includes injecting application fluid into the application head and application fluid core, or enclosing application fluid into the application fluid cassettes.
32. The method according to claim 28, wherein the application head holder and the handle are produced separately by molds.
33. A method of assembling a fluid discharger and applicator device, wherein the method comprises the steps of: a) conveying a first shell, b) Installing a bottom sealing cover on an application side of the first shell; c) installing an application head into the first shell and onto the bottom sealing cover; d) Installing a top sealing cover onto the application head; e) Install a second shell onto the first shell to form the fluid discharger and applicator device, wherein a pressing part is provided on the portion of the second shell, which is able to press out fluid in the application head, and the pressing part provided on the portion of the second shell is formed of flexible material.
34. The method according to claim 33, between a) and b), further includes: f) Installing a sealing plate onto the bottom of a cavity in the first shell, and g) Installing application fluid core or application fluid cassette on the sealing plate.
35. The method according to claim 34, when the application fluid cassette was installed on the sealing plate, between g) and b), further includes: h) Installing a pressing part on the application fluid core or application fluid cassette.
36. The method according to claim 35, between h) and b) further includes: i) Installing a check valve into the channel.
37. The method according to claim 33, further includes: j) Installing a knob on the pressing part.
38. The method according to claim 33, wherein the second shell is installed onto the first shell in a detachable way or in none detachable way.
39. The method according to claim 33, wherein the first shell and the second shell form a handle.
40. A system for assembling a fluid discharger and applicator device, comprising: a first flow line, for conveying a first shell; a second flow line, for conveying a second shell; a third flow line, for conveying a bottom sealing cover; a fourth flow line, for conveying an application head; and a fifth flow line, for conveying a top sealing cover; wherein, the first flow line and the third flow line meet in a first station, for installing the bottom sealing cover on the application side of the first shell; the first flow line and the fourth flow line meet in a second station following the first station, for installing the application head into the first shell and onto the sealing cover; the first flow line and the fifth flow line meet in the third station following the second station, for installing the top sealing cover onto the application head; and the first flow line meet the second flow line in the fourth station following the third station, for install the second shell onto the first shell to form the fluid discharger and applicator device, and wherein a pressing part is provided on the portion of the second shell, which is able to press out fluid in the application head, and the pressing part provided on the portion of the second shell is formed of flexible material.
41. The system of according to claim 40, wherein the system further comprises: a sixth flow line for conveying a sealing plate; a seventh flow line for conveying an application fluid core or an application fluid cassette; wherein the first flow line and the sixth flow line meet in the fifth station preceding the first station, for installing the sealing plate onto the bottom of a cavity in the first shell; and the first flow line and the seventh flow line meet in the sixth station following the fifth station preceding the first station, for installing application fluid core or application fluid cassette on the sealing plate.
42. The system of according to claim 41, wherein when the application fluid cassette was installed on the sealing plate, the system further comprises: an eighth flow line for conveying a pressing part, wherein the first flow line and the eighth flow line meet in a seventh station following the sixth station preceding the first station, for installing the pressing part on the application fluid core or application fluid cassette.
43. The system of according to claim 42, wherein the system further comprises: a ninth flow line for conveying a check vale, wherein the first flow line and the ninth flow line meet in an eighth station following the seventh station preceding the first station, for installing the check valve into the channel.
44. The system of according to claim 43, wherein the system further comprises: a tenth flow line for conveying a knob, wherein the first flow line and the tenth flow line meet in a ninth station following the eighth station preceding the first station, for installing the knob on the pressing part.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
[0054]
DETAILED DESCRIPTION OF EMBODIMENTS
[0055] A description of embodiments of the present invention will now be given with reference to the Figures. It is expected that the present invention may be embodied in other specific forms without departing from its spirit or essential characteristics. The described embodiments are to be considered in all respects only as illustrative and not restrictive. The scope of the invention is, therefore, indicated by the appended claims rather than by the foregoing description. All changes that evolve within the meaning and range of equivalency of the claims are to be embraced within their scope.
[0056]
[0057] In this embodiment, the device140 comprises a handle 145 and an applicator 142 connected to one end of the handle 145. The applicator 142 comprises a flexible application head 143 which is able to absorb fluid and an application head holder 1404 for holding the application head 143. The application head 143 may be a sponge. Alternatively, the application head 143 may be made up of materials like rubber, as long as it can absorb the application fluid and be pressed out the fluid. The application head 143 comprises an application side147. The handle 145 is defined a cavity 148 therein.
[0058] The application fluid may be any viscous material, including liquid or semi-solid, which has a flowing viscosity. For example, the application fluid may be oil, lotion, cream, serum. In this embodiment, the cavity 148 may be used for storing the application fluid. Optionally, the application head also may be prefilled with fluid to be applied. The cavity may be in fluid communication with the application head by a channel or a duct. In the embodiment as shown in
[0059] As shown in
[0060] During using the device, the user may depress the pressing part 146 to press out an amount of the fluid to be applied onto a surface, for example, the skin of the user. As the device is used, the application fluid in the cavity may flow to the application head through the duct and thus is absorbed by the application head, and then applied on the skin of a user, as needed.
[0061] A knob 149 is provided on the handle 145, which is used to pressing an application fluid core (not shown) in the cavity.
[0062]
[0063] In particular, the first component 1501 may be assembled with the second component 1502, so as to form the handle 155 and the application head holder152. The handle includes a cavity 158. The application head holder 152 includes a notch in the first component and an open end in the second component. The open end is releasably sealed by an airtight cover 151, in order to prevent the application head 153 from drying out. A pressing part 1561 may be provided on the application head 153 to press out the application fluid. In one embodiment, a knob 1591 is provided on the pressing part 1561 to facilitate the user to press the application head 153. A sealer 1562 is provided on the bottom plate 1563 of the cavity 158. A pressing part 156 is provided in the handle for squeezing the application fluid core 1531. In one embodiment, a knob 159 is provided on the pressing part 156 to facilitate the user to press the application fluid core 1531.
[0064] In this embodiment, the application fluid stored in the cavity 158 may be stored in an application fluid core 1531. The application fluid core1531 is arranged in the cavity. The application fluid core 1531 may be a flexible body, which may be formed from any material that is able to absorb the application fluid. The application fluid core 1531 may be produced from the same material as that of the application head 153. Of course, the application fluid core 1531 may be produced from different material from that of the application head153. The application fluid from the cavity 158 is able to enter the application head 153 through a channel or a duct. In this embodiment, the application fluid from the cavity enters the application head through two ducts 1510. The knob 159 may be disposed outside of the handle 155 such that the user may depress the knob 159 and thus the pressing part to press out the application fluid for entering the application head 153 through the ducts 1510.
[0065] In one embodiment, the cavity is in fluid communication with the application head 153 by a channel (not shown). In one embodiment, a check valve may be provided in the channel to prevent the application fluid from flowing back to the application core 1531.
[0066]
[0067] As shown in
[0068] In one embodiment, the handle corresponding to the cavity 168 may be made of flexible material. The user may depress the portion for squeezing the cassette 1613.
[0069] In one embodiment, the cavity 168 is in fluid communicated with the application head 163 through a pipeline (not shown) which is able to puncture the cassette 1613 exposed to facilitate the user pressing the cassette 1613 to transfer the fluid into the application head 163.
[0070] In one embodiment, the application head holder is a shell including an open end, with an application head 163 partially arranged in the shell to appropriately expose an application side there from. The end of the shell opposite to the open end is provided with an orifice for fluid communication with the cavity of the handle. The open end of the shell is releasably sealed by an airtight cover 1621.
[0071] Referring to
[0072] In one embodiment, at least one of the handle and the shell is manufactured with one or more of plastic, eco-friendly material, paper-type material, saw dust type material, acrylic, even glass, bio-degradable materials, recyclable material.
[0073] In one embodiment, a pressing part is provided on the portion of the application head holder opposite to the application side, which is able to press out the fluid in the application head. The pressing part provided on the portion of the application head holder is formed of flexible material.
[0074] In one embodiment, the connection portion between the handle portion and the application portion is elastic and fixable, so that the fluid discharger and applicator device can be slightly bent during use. In one embodiment, the pressing part provided on the portion of the application head holder is formed of flexible material. This attribute will make the user feel comfortable.
[0075]
[0076] At step 1701, the molds are processed by molding. The type and shape of the mold depend on those of component consisting of the fluid discharger and applicator device as needed
[0077] At step 1702, various components of the fluid discharger and applicator device are produced using respective mold. In one embodiment, the various components of the fluid discharger and applicator device may include an applicator, a handle, a pressing part, an airtight cover and other accessory parts, for example. The handle portion and the applicator portion may be separate parts or a single part, depending on the type of the fluid discharger and applicator device.
[0078] At step 1703, the application head and application fluid core or application fluid cassette are produced. In one embodiment, the step of producing application heads and application fluid cores includes producing uniform specifications of the application heads and application fluid cores by cutting a flexible material which can absorb fluid. In one embodiment, the application fluid cassettes are produced as uniform specifications of fluid pouches.
[0079] At step 1704, the components as produced in step 1702 are assembled with the application heads and the application fluid cores or the application fluid cassettes as produced in step 1703 to form a finished fluid discharger and applicator device.
[0080] In one embodiment, the method further includes a step of injecting application fluid into the application head and application fluid core, or enclosing application fluid into the application fluid cassettes.
[0081] The present invention further relates to a method of assembling a fluid discharger and applicator device, as shown in
[0087] In one embodiment, the method further includes steps between a) and b): [0088] f) Installing sealing plate onto the bottom of a cavity in the first shell, and [0089] g) Installing application fluid core or application fluid cassette on the sealing plate.
[0090] In one embodiment, the method, when the application fluid cassette was installed on the sealing plate, between g) and b), further includes: [0091] h) Installing a pressing part on the application fluid core or application fluid cassette.
[0092] In one embodiment, the method, between h) and b), further includes: i) installing a check valve into the channel.
[0093] In one embodiment, the method further includes: j) installing a knob on the pressing part.
[0094] In one embodiment, the second shell is installed onto the first shell in a detachable way or in none detachable way.
[0095] In one embodiment, the first shell and the second shell form a handle.
[0096] The present invention further relates to a system for assembling a fluid discharger and applicator device, as shown in Fig.6. The system190 comprise a first flow line, for conveying a first shell; a second flow line, for conveying a second shell; a third flow line, for conveying a bottom sealing cover; a fourth flow line, for conveying an application head; and a fifth flow line, for conveying a top sealing cover. The first flow line and the third flow line meet in a first station, for installing the bottom sealing cover on the application side of the first shell. The first flow line and the fourth flow line meet in a second station following the first station, for installing the application head into the first shell and onto the sealing cover. The first flow line and the fifth flow line meet in the third station following the second station, for installing the top sealing cover onto the application head. The first flow line meets the second flow line in the fourth station following the third station, for install the second shell onto the first shell to form the fluid discharger and applicator device.
[0097]
[0098] When the application fluid cassette was installed on the sealing plate, the system 200 further comprises an eighth flow line for conveying a pressing part. The first flow line and the eighth flow line meet in a seventh station following the sixth station preceding the first station, for installing the pressing part on the application fluid core or application fluid cassette.
[0099] The system 200 further comprises a ninth flow line for conveying a check vale. The first flow line and the ninth flow line meet in an eighth station following the seventh station preceding the first station, for installing the check valve into the channel.
[0100] The system 200 further comprises tenth flow line for conveying a knob. The first flow line and the tenth flow line meet in a ninth station following the eighth station preceding the first station, for installing the knob on the pressing part.
[0101] The foregoing descriptions comprise illustrative embodiments of the present invention. Having thus described exemplary embodiments of the present invention, it should be noted by those skilled in the art that the within disclosures are exemplary only, and that various other alternatives, adaptations, and modifications may be made within the scope of the present invention. Merely listing or numbering the steps of a method in a certain order does not constitute any limitation on the order of the steps of that method. Although specific terms may be employed herein, they are used only in generic and descriptive sense and not for purposes of limitation. Accordingly, the present invention is not limited to the specific embodiments illustrated herein.