WO2022131385A1 - Stamp-type fluid discharge apparatus - Google Patents

Stamp-type fluid discharge apparatus Download PDF

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Publication number
WO2022131385A1
WO2022131385A1 PCT/KR2020/018281 KR2020018281W WO2022131385A1 WO 2022131385 A1 WO2022131385 A1 WO 2022131385A1 KR 2020018281 W KR2020018281 W KR 2020018281W WO 2022131385 A1 WO2022131385 A1 WO 2022131385A1
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WO
WIPO (PCT)
Prior art keywords
discharge
fluid
container
hole
discharging
Prior art date
Application number
PCT/KR2020/018281
Other languages
French (fr)
Korean (ko)
Inventor
김회숙
이정민
Original Assignee
(주)우리아이들플러스
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by (주)우리아이들플러스 filed Critical (주)우리아이들플러스
Priority to PCT/KR2020/018281 priority Critical patent/WO2022131385A1/en
Priority to EP20214233.7A priority patent/EP4011502A1/en
Publication of WO2022131385A1 publication Critical patent/WO2022131385A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/0005Components or details
    • B05B11/0037Containers
    • B05B11/0038Inner container disposed in an outer shell or outer casing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B1/00Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means
    • B05B1/14Nozzles, spray heads or other outlets, with or without auxiliary devices such as valves, heating means with multiple outlet openings; with strainers in or outside the outlet opening
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B11/00Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use
    • B05B11/01Single-unit hand-held apparatus in which flow of contents is produced by the muscular force of the operator at the moment of use characterised by the means producing the flow
    • B05B11/10Pump arrangements for transferring the contents from the container to a pump chamber by a sucking effect and forcing the contents out through the dispensing nozzle
    • B05B11/1001Piston pumps
    • B05B11/1016Piston pumps the outlet valve having a valve seat located downstream a movable valve element controlled by a pressure actuated controlling element
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B12/00Arrangements for controlling delivery; Arrangements for controlling the spray area
    • B05B12/16Arrangements for controlling delivery; Arrangements for controlling the spray area for controlling the spray area
    • B05B12/20Masking elements, i.e. elements defining uncoated areas on an object to be coated
    • B05B12/28Masking elements, i.e. elements defining uncoated areas on an object to be coated for defining uncoated areas that are not enclosed within coated areas or vice versa, e.g. for defining U-shaped border lines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05BSPRAYING APPARATUS; ATOMISING APPARATUS; NOZZLES
    • B05B15/00Details of spraying plant or spraying apparatus not otherwise provided for; Accessories
    • B05B15/14Arrangements for preventing or controlling structural damage to spraying apparatus or its outlets, e.g. for breaking at desired places; Arrangements for handling or replacing damaged parts

Definitions

  • a stamp-type fluid dispensing device is disclosed. Specifically, a stamp-type fluid discharging device capable of discharging a fluid including a fragrance and a color to an object is disclosed.
  • the discharge port is used to press the spray button with the thumb or index finger protrude in one direction.
  • the user aims the discharge port in the direction of the desired object and presses the spraying button with his thumb or index finger.
  • the discharge port is mainly located in the lateral direction of the button so that the discharge is not disturbed by the thumb and index finger.
  • the cosmetic may be scattered in a direction that the user does not want, or the cosmetic may be sprayed in a lump on a part to form droplets.
  • this type of cosmetic container has a problem in that the advantages of the spray method are also removed by removing the spray method.
  • SUMMARY According to an exemplary embodiment, it is an object to provide a stamp-type fluid discharging device for transferring a fluid pattern to an object.
  • Another object according to an exemplary embodiment is to provide a stamp-type fluid discharging device that prevents a fluid pattern transferred to an object from spreading.
  • Another object according to an exemplary embodiment is to provide a stamp-type fluid discharging device that prevents a fluid pattern from being non-uniformly transferred to an object.
  • Another object according to an exemplary embodiment is to provide a stamp-type fluid discharging device that prevents a total amount of fluid from being discharged irregularly.
  • Another object according to an embodiment is to provide a stamp-type fluid discharging device that can be recycled.
  • Another object according to an embodiment is to provide a stamp-type fluid discharging device capable of discharging fluid in various directions.
  • Another object according to an embodiment is to provide a stamp-type fluid discharging device capable of changing an appearance.
  • Another object according to an embodiment is to provide a stamp-type fluid discharging device capable of preventing leakage of stored fluid.
  • Another object according to an embodiment is to provide a stamp-type fluid discharging device that reduces the possibility of being damaged by an external impact.
  • Another object according to one embodiment is to provide a stamp-type fluid discharging device for preventing the deterioration of the fluid in the container.
  • a stamp-type fluid discharging device is coupled to a container for storing a fluid, and the fluid stored in the container by a stamping operation that is coupled to the container and is pressurized after contact with an object of the container.
  • the discharge unit may include a discharge unit configured to discharge in a longitudinal direction, wherein a part of the discharge unit is installed in the container to pump a portion of the fluid stored in the container by the stamping operation, and the It may include a discharge unit connected to the pumping unit to discharge the pumped fluid, wherein the discharge unit protrudes in the form of a loop to surround the discharge hole, which is opened along the longitudinal direction of the container, and the discharge hole, and comes into contact with the object It may include a protrusion wall that separates the discharge hole from the object.
  • the discharge hole of the stamp-type fluid discharge device may be formed in a tapered shape in which the hole width becomes narrower toward the outside.
  • the discharge hole of the stamp-type fluid discharging device may be configured in plurality to form a predetermined pattern as a whole, and the discharging wall is supported by the object.
  • the fluid in the container may be transferred in a predetermined pattern onto the object through the discharge hole.
  • the discharging unit of the stamp-type fluid discharging device is connected to the pumping unit and overlaps with a conveying member for transferring the fluid pumped by the pumping unit, and the conveying member , a discharge body having at least one hole disposed to correspond to the preset pattern, and a discharge member overlapping the discharge body and having the discharge hole, wherein the hole is the flow rate of the fluid passing through It may have a tapered shape in which the hole width becomes narrower toward the discharge hole to increase the .
  • the pumped fluid is transferred to the discharging hole.
  • a fluid distribution hole formed to disperse before being discharged may be formed.
  • the fluid distribution hole of the stamp-type fluid discharge device is formed between the discharge member and the discharge body, and when overlapped in the longitudinal direction, the discharge hole is inside It may include a first cavity having a shape to be positioned, a second cavity formed between the discharge body and the transfer member, and having a shape in which the hole is positioned inside when overlapped in the longitudinal direction.
  • the stamp-type fluid discharging device is connected to the pumping part and disposed inside the container, and having a communication hole so that a part of the fluid stored in the container is introduced and stored. It may further include a storage tank, the pumping unit may have an opening located inside the container so that the fluid is introduced, the communication hole so that the fluid stored in the storage tank flows into the pumping unit through the opening may be located closer to the discharge unit than the opening.
  • the discharging unit of the stamp-type fluid discharging device further includes a slide wall protruding in a direction opposite to the protruding wall,
  • the discharge unit may further include a first fixing member coupled to the container in a state coupled to the pumping part so that a part of the pumping part is located inside the container, wherein the first fixing member pressurizes the discharge part may be formed to guide movement and return according to It may include a recess that connects the guide and the second guide, and is formed to come into contact with an end of the slide wall when the slide wall moves by a predetermined length.
  • the protruding wall of the stamp-type fluid discharging device is a protruding ring protruding in a loop shape to surround the discharging hole in the discharging body, and is detachably fastened to the protruding ring. It may include a fastening ring that is formed, the fastening ring may cover the upper end of the discharge member seated on the discharge body when fastened to the protruding ring to prevent separation.
  • the pumping unit of the stamp-type fluid discharging device has a space in which the fluid is stored, and a pump body having an opening opened in communication with the container, in the opening A ball that opens and closes the opening so that the fluid in the container is introduced or blocked to the pump body according to a stamping operation, a tube-shaped pump plug protruding from the inner wall of the pump body, and is positioned to pass through the pump body , A first piston rod connected to the discharge unit moving in the longitudinal direction, a first spring in contact with the pump plug and the first piston rod to provide elasticity for pushing the first piston rod in the direction of the discharge unit, a second piston rod positioned in the pump body and moved in the longitudinal direction to cross and open and close a flow path formed by the pipe of the first piston rod and the pump plug or an opening of the pump body, and the pump plug and the second A second spring, which is in contact with the piston rod and provides elasticity to push the second piston rod in a direction opposite to the first piston rod
  • the stamp-type fluid discharging device may include a fluid discharging hole forming a pattern. Accordingly, the stamp-type fluid discharge device according to an embodiment may discharge the fluid in a pattern corresponding to the pattern of the discharge hole.
  • the discharge hole of the stamp-type fluid discharging device has a tapered cross-section that is gradually narrowed to the outside, so that the flow rate is increased when discharging, and a protruding wall surrounding the target portion of the object is provided to the outside of the target portion. can be prevented from scattering. Accordingly, the stamp-type fluid discharging device according to an embodiment may prevent the fluid pattern transferred to the object from spreading.
  • the stamp-type fluid discharging device may have a cavity structure for doubly dispersing the fluid before the fluid is discharged to the discharging hole. Accordingly, all of the discharge holes of the stamp-type fluid discharging device according to an embodiment discharge the fluid at a uniform flow rate, thereby preventing the fluid pattern from being non-uniformly transferred to the target portion of the object.
  • the stamp-type fluid discharging device may include a pumping unit in which the fluid is temporarily stored. Accordingly, the stamp-type fluid discharging device according to an embodiment discharges a predetermined amount of fluid stored in the pumping unit, thereby preventing the total amount of the fluid from being discharged irregularly.
  • the vial is replaceable. Accordingly, the stamp-type fluid discharging device according to an embodiment can be recycled.
  • the stamp-type fluid discharging device may include a storage tank for storing the fluid so as to supply the fluid to the pumping unit in various directions. Accordingly, the stamp-type fluid discharging device according to an embodiment may discharge the fluid even when the object is positioned above or below the stamp-type fluid discharging device.
  • the stamp-type fluid discharging device may include a separate and replaceable inner container, decor, discharging member and replacement. Accordingly, the appearance of the stamp-type fluid discharging device according to an embodiment can be easily changed.
  • the stamp-type fluid discharging device may include a plurality of sealing members at parts to be replaced. Accordingly, the stamp-type fluid discharging device according to an embodiment may prevent leakage of fluid.
  • the stamp-type fluid discharging device includes a vial, and may include an inner container and an outer container that double-enclose the vial. Accordingly, the stamp-type fluid discharging device according to an embodiment may buffer an external shock applied to the vial.
  • the object and the discharging hole are spaced apart to prevent contact with each other, and the pumping unit of the stamp-type fluid discharging device may block the container and the discharging unit. Accordingly, the stamp-type fluid discharging device according to an embodiment may prevent deterioration of the fluid in the container.
  • FIG. 1 is a perspective view of a stamp-type fluid discharging device according to an embodiment.
  • FIG. 2 is a cross-sectional view of a stamp-type fluid discharging device according to an embodiment.
  • FIG. 3 is an exploded perspective view of a discharging unit of a stamp-type fluid discharging device according to an exemplary embodiment.
  • FIG. 4 is an exploded perspective view from another direction of a discharging unit of a stamp-type fluid discharging device according to an embodiment.
  • FIG. 5 is a cross-sectional view of a state in which a cap is removed from the stamp-type fluid discharging device according to an embodiment.
  • FIG. 6 is a cross-sectional view of a stamped fluid discharging device according to an exemplary embodiment.
  • FIG. 7 is a cross-sectional view illustrating a state in which the stamp-type fluid discharging device is returned after stamping according to an embodiment.
  • FIG. 8 is a cross-sectional enlarged perspective view of a discharging unit of a stamp-type fluid discharging device according to an exemplary embodiment.
  • FIG. 1 is a perspective view of a stamp-type fluid discharging device according to an embodiment
  • FIG. 2 is a cross-sectional view of a stamp-type fluid discharging device according to an embodiment
  • FIG. 3 is a discharging unit of a stamp-type fluid discharging device according to an embodiment (300) is an exploded perspective view.
  • FIG. 4 is an exploded perspective view from another direction of the discharge unit 300 of the stamp-type fluid discharge device according to an embodiment
  • FIG. 5 is the cap 400 is removed from the stamp-type fluid discharge device according to an embodiment
  • 6 is a cross-sectional view of a stamped state in which the stamp-type fluid discharging device according to an embodiment is stamped.
  • FIG. 7 is a cross-sectional view of a state in which the stamp-type fluid discharging device according to an embodiment is returned after stamping
  • FIG. 8 is an enlarged cross-sectional perspective view of the discharging unit of the stamp-type fluid discharging device according to an exemplary embodiment.
  • the stamp-type fluid discharging device may include a cap 400 , a container 100 , a storage tank 200 , and a discharging unit 300 .
  • the cap 400 may be detachably coupled to the discharge unit 300 , or may be coupled to the container 100 . Accordingly, the cap 400 can block the discharging unit 300 from the outside so that the discharging unit 300 is not exposed to the outside when the user stores the stamp-type fluid discharging device. When using, the cap 400 may be separated from the discharge unit 300 or the container 100 to expose the discharge unit 300 .
  • the cap 400 may be formed in a cup shape to correspond to the protruding shape of the discharge unit 300 .
  • the container 100 may store a fluid, for example, a liquid perfume, a liquid cosmetic, a liquid dye, a liquid disinfectant, and the like therein.
  • the container 100 may include an outer container 110 , an inner container 120 and a vial 130 , and the fluid may be stored in the vial 130 .
  • the vial 130 may be in the form of a bottle as shown in FIG. 2 .
  • the vial 130 may have a spiral that can be combined with the discharging unit 300 or other components of the container 100 at the inlet portion of the bottle.
  • the vial 130 is illustrated and described in the form of a bottle having a fixed shape, but is not necessarily limited thereto.
  • the vial may be in the form of a plastic pack that can be flexibly changed or in the form of a syringe cylinder in which one side moves.
  • a rigid member is provided in the open part of the plastic pack, so that it may be combined with the discharging unit 300 or other components of the container 100 .
  • the inner container 120 may be in the form of a bottle having a larger diameter than the vial to surround the vial 130, or may be a thin printed material in the form of paper or a small elastic body.
  • the outer container 110 may be in the form of a bottle larger than the diameter of the vial 130 and the inner container 120 so as to surround the inner container 120 . Therefore, the inner container 120 may be located between the outer container 110 and the vial 130, and the outer container 110 and the vial 130 are spaced apart so that the user's carelessness causes an impact to the stamp-type fluid discharging device. When applied, the shock applied to the outer container 110 may be buffered from being transmitted to the vial 130 .
  • the vial 130 is made of a hard material, an impact is transmitted to the bottle inlet portion of the vial 130 by the user's carelessness and the vial 130 may be damaged, the inner container 120 is the outer container 110 ) by preventing the vial 130 from moving in the vial 130, it is possible to prevent the concentration of the impact on the bottle inlet portion of the vial (130).
  • the storage tank 200 may be located in the inner space of the container 100 .
  • the storage tank 200 may be located inside the vial 130 .
  • the storage tank 200 may include a storage 210 , a decor 220 , and a decor connection wall 230 .
  • the reservoir 210 may have an internal space, and the internal space may be stored inside the vial 130 .
  • the storage 210 may have one side open, and for example, with reference to FIGS. 3 and 4 , the deco connection wall 230 is connected to the open side of the storage 210 with reference to the interior of the vial 130 . It is also possible to form a space separated from the space.
  • the decor connection wall 230 may be detachably screwed with the storage 210 .
  • the decor 220 may be located in the direction opposite to the storage 210 of the decor connection wall 230.
  • the decor 220 can be observed from the outside of the container 100 when the container 100 is made of a transparent material, thereby giving an aesthetic effect. That is, the deco 220 may be a shape that gives an aesthetic effect or a structure such as a logo.
  • the deco 220 may be connected to the storage 210 by the deco connection wall 230 .
  • the reservoir 210 may have an open communication hole 2122 on one side so that the fluid in the vial 130 can be introduced into the space in the reservoir 210 .
  • the communication hole 2122 may be preferably formed in the direction of the bottle inlet of the vial 130 when the reservoir 210 is located in the inner space of the vial 130 .
  • the fluid inside the vial 130 descends in the direction of the bottle inlet of the vial 130 so that the reservoir 210 is fully or partially in the vial 130. It is immersed in the fluid, and when the bottle inlet of the vial 130 rotates in a direction opposite to the direction in which gravity acts, the fluid that has moved to the bottle inlet of the vial 130 faces the bottle inlet of the vial 130 can be directed in the direction At this time, the fluid moves and can be introduced into the communication hole 2122 , and accordingly, when the bottle inlet of the vial 130 is located in a direction opposite to the direction in which gravity acts, the fluid is stored in the reservoir 210 . may remain stagnant.
  • the partition wall 212 constituting the surface of the storage 210 formed in the vicinity of the communication hole 2122 , that is, in the direction in which the communication hole 2122 is located, may be inclined in the direction of the sidewall of the storage 210 . This may be described in detail together with the discharge unit 300 below.
  • the discharge unit 300 is coupled to the container 100 and, for example, may discharge the fluid stored in the container 100 by a stamping operation that is pressed after being in contact with an object such as a body or clothes.
  • the discharge unit 300 includes a passage through which the fluid flows and a pumping unit 310 for generating a flow in the passage, and one side of the discharge unit 300 may be coupled to the container 100, and accordingly, the container ( The fluid in the 100 may be discharged in the direction of the object through the discharge unit 300 . At this time, the discharge unit 300 may discharge the fluid to be sprayed along the longitudinal direction of the container 100 .
  • the discharging unit 300 may include a pumping unit 310 , a discharging unit 320 , and a body 330 .
  • the pumping unit 310 may be partially installed in the vial 130 in the container 100 or disposed on a structure in communication with the container 100 so that the fluid in the container 100 can reach.
  • the discharge unit 320 may be connected to the pumping unit 310 , and the pumping unit 310 may pump the fluid in the discharge unit 320 direction.
  • the body 330 may be fixed to be moved or detached so as to connect all of the pumping unit 310 , the discharging unit 320 , and the container 100 .
  • the pumping unit 310 includes a pump body 316, a protruding ring 318, a pump plug 317, a ball 311, a first piston rod 315, a second piston rod 313 , a first spring 314 and a second spring 132 may be included.
  • the pump body 316 may be formed in a cylindrical shape, preferably a cylindrical shape, and may have a space in which the fluid is stored. Preferably, some or all of the components of the pumping unit 310 may be located in the space inside the pump body 316 , and fluid may be stored in a space other than the components of the pumping unit 310 . Such a fluid may be a fluid transferred from the container 100 through the storage tank 200 described above.
  • the pump body 316 is opened to communicate with the storage tank 200 so that the fluid passing through the storage tank 200 can be introduced into the inner space of the pump body 316, or a diesel container in which the storage tank 200 is omitted (
  • An opening 3102 opened in communication with the container 100 that is, the vial may be provided so that the fluid in the 100 ) can be introduced into the inner space of the pump body 316 .
  • the opening may be formed in a direction opposite to the discharge part with respect to the pump body 316 .
  • the pump plug 317 may be provided in the inner space of the pump body 316 and may be in the form of a tube.
  • the pump plug 317 may be fixedly disposed on the inner surface near the longitudinal central portion of the pump body 316 , for example, the pump plug 317 may be an independent member attached to the inner side of the pump body 316 . Alternatively, it may be a member formed integrally with the pump body 316 protruding inward from the pump body 316 .
  • the pump plug 317 may be in the form of a tube or annular formed to reduce the width of the pump body 316 at one point in the longitudinal direction.
  • a first spring 314 may be disposed on one side of the pump plug 317 and a second spring 312 may be disposed on the other side of the pump plug 317 .
  • the pump plug 317 has a tube or annular shape in which a passage is formed in the middle, that is, it may have a smaller diameter than the pump body 316 .
  • the first spring 314 and the second spring 312 may be coil springs, and one end (a portion in which the coil springs are gathered in a circle) may be located in a width portion of the pump plug 317 .
  • both sides of the pump plug 317 may be grooved as shown in FIG. 5 , and one end of each of the first spring 314 and the second spring 312 provided in the form of a coil spring.
  • the pump plugs 317 may be fitted into grooves formed on both sides of the pump plug 317, respectively.
  • the first spring 314 may be positioned in the direction of the discharge unit 320 with respect to the pump plug 317
  • the second spring 312 is opposite to the discharge unit 320 with respect to the pump plug 317 . direction can be located.
  • the second piston rod 313 may be located inside the pump body 316 . As shown in FIG. 6 , the second piston rod 313 protrudes in the direction of the inner circumferential surface of the pump body 316 at the peripheral portion of the inlet element 3134 and the inlet element 3134 protruding in the direction of the outlet 320 as shown in FIG. It may include a first jaw 3132 .
  • the second spring 312 may be disposed between the first jaw 3132 and the pump plug 317 .
  • the second spring 312 may be compressed, and at this time, the second piston rod 313 moves toward the discharge part 320 so that the first jaw 3132 reduces the gap with the pump plug 317 . can move Accordingly, the opening 3102 of the pump body 316 may be opened and closed by the moving first jaw 3132 .
  • the inlet element 3134 of the second piston rod 313 may be formed to gradually decrease in width so as to go in the direction of the discharge portion 320 , and accordingly, as the second piston rod 313 moves, the inlet element 313 . 3134 may pass through the hole of the pump plug 317, and after passing a certain level, the cross-sectional width of the inlet element 3134 and the circumference of the hole of the pump plug 317 correspond to the hole of the pump plug 317 can be blocked
  • the first piston rod 315 is positioned so that a part passes through the pump body 316, and the end of the part protruding through the pump body 316 to the outside of the pump body 316 is It may be connected to the discharge unit 320 . Accordingly, the first piston rod 315 may move in the longitudinal direction together with the discharge part 320 by a stamping operation.
  • the first piston rod 315 is formed in a tubular shape, and includes a second jaw 3152 protruding from a portion of the outer circumferential surface of the tube of the first piston rod 315 in the direction of the inner circumferential surface of the pump body 316.
  • the first spring 314 may be disposed between the pump plug 317 and the second jaw 3152 , and the second jaw may move in the direction of the pump plug 317 according to the stamping operation.
  • the conduit of the first piston rod 315 may be preferably formed to be gradually narrower in the direction of the discharge portion 320 , and more preferably may be formed to correspond to the inlet element 3134 of the second piston rod 313 . .
  • the inlet element 3134 When the inlet element 3134 is moved in the direction of the discharge part 320 by the stamping operation, the inlet element 3134 of the second piston rod 313 is inserted into the tube of the first piston rod 315 and the first piston rod The tube of (315) can be blocked.
  • the first spring 314 and the second spring 132 may generate elastic force in different directions, specifically, the first spring 314 and the first spring 314 Two springs 132 may provide an elastic force in directions opposite to each other with respect to the pump plug 317 .
  • the first spring 314 may provide elasticity for pushing the first piston rod 315 in the direction of the discharge part 320
  • the second spring may push the second piston rod 313 to the first piston rod.
  • elasticity may be provided to push toward an end in a direction opposite to the inlet-side end of the vial 130 .
  • the first piston rod 315 and the second piston rod 313 may flow during the stamping operation.
  • the opening 3102 formed during the stamping operation can be blocked, and the discharge part 320 along the pipe of the first piston rod 315 in the pump body 316 after the stamping operation is finished. ), the opening 3102 may be opened to correct the negative pressure formed therein formed by the amount of the pumped fluid to allow the introduction of the fluid into the pump body 316 .
  • stamp-type fluid discharging device can discharge as much fluid as the fluid flowing into the inside of the pump body 316 at a time to the object, thereby preventing the fluid from being over-supplied. .
  • Ball 311 may be disposed in opening 3102 .
  • the opening 3102 may be a tubular hole protruding from one side of the pump body 316 , and the ball 311 may be disposed in the tubular form of the opening 3102 .
  • the hole of the pump body 316 part may be formed smaller than the hole in the container 100 direction, and the ball 311 dispatched to the opening 3102 may be formed larger than the hole in the container 100 direction. have. Accordingly, the ball 311 may be prevented from passing through the opening 3102 in the direction of the container 100 .
  • the ball 311 is illustrated and described as a spherical structure, but is not necessarily limited thereto.
  • the ball 311 may be a stopper or a valve that allows flow in only one direction.
  • the ball 311 may open and close the opening 3102 to introduce or block the fluid in the container into the pump body 316 according to the stamping operation.
  • the communication hole 2122 of the storage tank 200 is closer to the discharge part 320 than the opening 3106 of the pump body 316 . can be formed. This is because when the stamp-type fluid discharging device is placed with the discharging unit 320 facing up (the direction opposite to the direction in which gravity acts), a portion of the fluid stored in the reservoir 210 of the storage tank 200 is selectively returned again. It can be moved to the vial 130 , in which case the opening 3102 by the reservoir 210 is sufficiently large in order to receive a sufficient fluid supply because less fluid than the quantity can be introduced into the pump body 316 in this case. should be locked
  • the communication hole 2122 should be disposed higher than the opening 3106 (when the discharge part is placed upward), and the fluid with a capacity corresponding to the head difference may be introduced into the pump body 316 through the opening 3106. . That is, it is preferable that the capacity corresponding to the head difference (the height difference between the opening and the communication hole) is greater than the capacity that can be introduced into the pump body 316 at once.
  • the stamp-type fluid discharging device may be inclined to reduce the space in the reservoir 210 occupied by the fluid when the discharging unit 320 is inclined upward.
  • the partition wall 212 is formed to be inclined, and when the stamp-type fluid discharge device is inclined, the space on one side of the reservoir 210 can be reduced to increase the overall fluid head, so that the fluid in the pump body 316 is It can be easy to supply.
  • the stamp-type fluid discharging device Through this structure of the storage tank 200, a user can use the stamp-type fluid discharging device in various directions, and the stamp type can discharge a certain amount of fluid regardless of the direction.
  • the protrusion ring 318 will be described together with the body portion 330 below.
  • the fluid stored in the container 100 may be pumped and delivered to the discharge unit 320 .
  • the discharge unit 320 may be connected to the pumping unit 310 to discharge the pumped fluid in the direction of the object.
  • the discharge unit 320 may include a transfer member 321 , a discharge body 322 , a discharge member 323 , a protruding wall 324 , a slide wall 325 , and a sealing 326 .
  • the transfer member 321 may communicate with the pipe of the first piston rod 315 .
  • the transfer member 321 may include a conduit 3212 , and this conduit 3212 may communicate with the pipe of the first piston rod 315 .
  • the inner diameter of the conduit 3212 may be the same as the outer diameter of the end of the first piston rod 315 (the end in the direction opposite to the pump body), that is, the end of the first piston rod 315 is the conduit 3212 may be fitted.
  • a protrusion may be formed in the inner diameter of the conduit 3212
  • a groove may be formed in the outer diameter of the first piston rod 315 , and the protrusion of the conduit 3212 and the first piston rod 315 .
  • the grooves may be fixed by interlocking with each other, and may be separated as needed.
  • the transfer member 321 may include a member in the form of a wide plate in addition to the conduit 3212 , and a first pattern groove 3214 may be formed on the plate.
  • the first pattern groove 3214 may be described in more detail together with the second pattern groove 3224 and the third pattern groove 3226 below.
  • the first pattern groove 3214 formed in the transfer member 321 communicates with the pipeline 3212 , and the fluid transferred to the pipeline 3212 through the pumping unit 310 is widely dispersed in the first pattern groove 3214 .
  • the discharge body 322 is disposed to overlap with the transfer member 321 , and specifically may have a plate shape that is in contact with the plate shape of the transfer member 321 .
  • the transfer member 321 is relatively positioned in the direction of the container 100 , and the discharge body 322 may be positioned relatively farther from the container 100 than the transfer member 321 . That is, the container 100, the transfer member 321, and the discharge body 322 may overlap in the order on the plan view.
  • the discharge body 322 may include at least one hole 3222 , and the hole 3222 may be formed in a direction parallel to the longitudinal direction of the container 100 as shown in FIG. 8 .
  • each hole 3222 may be preferably formed in a parallel direction.
  • the discharge body 322 may include a hole 3222 as well as a second pattern groove 3224 concavely formed on the surface in the direction facing the transfer member 321, and formed concavely on the surface in the opposite direction.
  • a third pattern groove 3226 may be provided.
  • the discharge member 323 is disposed to overlap the discharge body 322 , and in particular, may have a plate shape that is in contact with the plate shape of the discharge body 322 .
  • the discharge body 322 is relatively located in the direction of the conveying member 321 , and the discharge member 323 may be located relatively farther from the conveying member 321 than the discharge body 322 . That is, on a plan view, the transfer member 321 , the discharge body 322 , and the discharge member 323 may overlap in that order.
  • the discharging member 323 may include at least one discharging hole 3232 , and the discharging hong 3232 is preferably formed in a direction parallel to the longitudinal direction of the container 100 as shown in FIG. 8 . can When a plurality of discharge holes 3232 are provided, each of the discharge holes 3232 may be preferably formed in a parallel direction.
  • the discharge hole 3232 may be formed in a tapered shape in which the width of the hole becomes narrower toward the outside. Specifically, the discharge hole 3232 may be formed to have a smaller hole in the outer direction than in the direction of the discharge member 323 . Accordingly, the fluid supplied to the discharge hole 3232 passes through the discharge hole 3232 and the flow rate is higher. can increase
  • the hole 3222 may also be formed in a tapered shape in which the width of the hole is gradually narrowed from the surface of the transfer member 321 to the surface of the discharge member 323 .
  • These discharge holes 3232 may be configured as one or a plurality of them.
  • the configuration of the first pattern groove 3214, the second pattern groove 3224, and the third pattern groove 3226 having the purpose of dispersing the fluid may be omitted.
  • the configuration of at least one of the first pattern groove 3214 , the second pattern groove 3224 , and the third pattern groove 3226 may be omitted.
  • the plurality of discharge holes 3232 may be arranged in a predetermined pattern according to the intention of the manufacturer.
  • a pattern may be a straight line or curved line, or a picture, logo, text, etc. having a straight line or curve.
  • the plurality of discharge holes 3232 may be in the form of fine dots or dots, or may be in the form of lines.
  • the fluid in the pumping unit 310 may pass through the discharge hole 3232 and be transferred to the object in the predetermined pattern.
  • a plurality of holes may be provided as well, may be arranged in a pattern corresponding to a preset pattern formed of the discharge hole 3232 , and the fluid pumped by the pumping unit 310 may be discharged through the discharge hole 3232 . ) direction is acceptable.
  • the discharge hole 3232 and the hole 3222 may be disposed at positions coincident with each other in the longitudinal direction, or may be alternately disposed on the pattern.
  • the fluid When positioned to coincide in the longitudinal direction, the fluid may be accelerated through the hole 3222 and accelerated again through the discharge hole 3232 .
  • the fluid passes through the hole 3222 and collides with the rear surface of the discharge member 323 in the space formed by the third pattern groove 3226 to be dispersed, and then passed through the discharge hole 3232 after being dispersed. may be discharged to the object.
  • a fluid distribution hole may be formed between the discharge member 323 and the discharge body 322 or between the discharge body 322 and the transfer member 321 .
  • a fluid distribution hole may be formed between the discharge member 323 and the discharge body 322 and between the discharge body 322 and the transfer member 321 .
  • the fluid distribution hole may form a space in which the fluid is spread so that the fluid pumped from the pumping unit 310 can be uniformly distributed to each of the plurality of discharge grooves 3232 and provided.
  • the fluid distribution hole includes a first cavity and a second cavity, the first cavity is formed between the discharge member 323 and the discharge body 322 , and the second cavity is the discharge body 322 and the transfer member 321 .
  • This first cavity has a first pattern groove 3214 concavely formed on one surface of the transfer member 321 and a second pattern groove 3224 formed concavely on one surface of the discharge body 322, the transfer member 321 . and the discharging body 322 are joined together, and the second cavity has a third pattern groove 3226 concavely formed on the other surface of the discharging body 322, the discharging body 322 and the discharging member 323.
  • This first cavity has a first pattern groove 3214 concavely formed on one surface of the transfer member 321 and a second pattern groove 3224 formed concavely on one surface of the discharge body 322, the transfer member 321 . and the discharging body 322 are joined together, and the second cavity has a third pattern groove 3226 concavely formed on the other surface of
  • the first pattern groove 3214 may be formed on one surface of the transfer member 321 , and may be formed on both surfaces of the second pattern groove 3224 and the third pattern groove 3226 .
  • the discharging hole 3232 of the discharging member 323 is the first of the discharging body 322.
  • 3 It may be formed to have a shape positioned inside the pattern groove (3226). That is, for example, if the plurality of discharge holes 3232 are arranged linearly, the first cavity has a width greater than the width of the discharge hole 3232 , and the linearity of the discharge hole 3232 in a perspective plan view is the first cavity It can be formed to fit within the linearity of . Accordingly, the third pattern groove 3226 may also be formed to have a width greater than the width of the discharge hole 3232 .
  • the hole 3222 of the discharge body 322 is the second pattern of the discharge body 322. It may be formed to have a shape positioned inside the groove 3224 or the first pattern groove 3214 of the transfer member 321 . That is, for example, if the first cavity is arranged linearly the second cavity has a width greater than the width of the first cavity, and in a perspective plan view the linearity of the first cavity can be formed to fit within the alignment of the second cavity. . Accordingly, the first pattern groove 3214 or the second pattern groove 3224 may also be formed to have an area greater than that of the third pattern groove 3226 .
  • the second pattern groove 3224 or the third pattern groove 3226 may be omitted.
  • the protruding wall 324 surrounds the side of the outer surface of the discharge member 323 having the discharge hole 3232 (the edge boundary of the plate, the direction opposite to the discharge body 322) It may protrude in the longitudinal direction of the container 100 in the form of a loop. Specifically, it may protrude in the direction in which the fluid is discharged through the discharge hole 3232 in the longitudinal direction of the container 100 . Accordingly, when such a stamp-type fluid discharging device is stamped, the protruding wall 324 may come into contact with the object, and as it comes into contact with the object, the discharging member 323, that is, the discharge hole 3232, may be spaced apart from the object. have.
  • the protruding wall 324 may be formed integrally with the discharging body 322 so as to preferably protrude from the discharging body 322 , and more preferably the protruding wall 324 is a discharging member 323 from the discharging body 322 . It may include a protruding ring 3242 protruding in a loop shape so as to surround the thickness direction of the surface and a fastening ring 3244 that is detachably fastened to the protruding ring 3242 .
  • the fastening ring 3244 may have a thread on the outer surface, and the protruding ring 3242 may have a thread on the inner surface, so that the fastening ring 3244 and the protruding ring 3242 can be screwed to each other.
  • the fastening ring 3244 may have a groove or protrusion on the outer surface, and the protruding ring 3242 may have a protrusion or groove corresponding to the groove or protrusion of the fastening ring 3244 on the inner surface, so that the groove and It may be fixed by fastening the protrusion.
  • the fastening ring 3244 may preferably cover the protruding ring 3242 .
  • This protrusion ring 3242 can be replaced by being separated from the fastening ring 3244 according to the user's choice when contamination, and the fastening ring 3244 can be provided with various aesthetic structures or drawings, so that according to the user's selection It may be replaced with a fastening ring 3244 having a desired shape or picture.
  • the fastening ring 3244 covers the upper end of the discharge member 323 seated on the discharge body 322 when it is fastened to the protrusion ring 3242 to prevent separation.
  • the circumference of the discharge member 323 may be the same as that of the protrusion ring 3242 , and the inner diameter of the fastening ring 3244 may be smaller than that of the discharge member 323 . Accordingly, the fastening ring 3244 may fix the discharge member 323 so that the discharge member 323 does not move as it is coupled to the protruding ring 3242 . Conversely, as the coupling ring 3244 is released from the protrusion ring 3242 , the discharge member 323 may be separated from the discharge body 322 and replaced.
  • the fastening ring 3244 and the discharging member 323 may be bonded or integrally formed, and the discharging member 323 may also be replaced according to the replacement of the fastening ring 3244 .
  • the discharge member 323 may be a metal plate.
  • a seal 326 may be disposed on the discharge body 322 .
  • the plurality of discharge grooves 3232 on the outside of the discharge grooves 3232 formed in the discharge member 323 on a plane are formed in an annular shape surrounding all at once, so that the sealing 326 is formed with the discharge member 323 and It is possible to prevent the fluid from leaking through the gap formed between the discharge bodies 322 .
  • the slide wall 325 may protrude from the discharge body 322 in a direction opposite to the protruding wall 324 .
  • the body 330 may selectively include a first fixing member 332 , a second fixing member 334 , and a third fixing member 336 .
  • the first fixing member 332 can selectively fix the discharge part 320 and the cap 400
  • the second fixing member 334 is the cap 400 , the inner container 120 and the outer container 110 ).
  • the third fixing member 336 can selectively fix the pumping unit 310 and the vial 130 .
  • the first fixing member 332 may include a first guide 3322 , a second guide 3324 , and a recess 3326 .
  • the first guide 3322 may be formed to surround the outer periphery of the slide wall 325
  • the second guide 3324 may be formed to surround the inner periphery of the slide wall 325
  • the recess 3326 is It may be formed to connect the first guide 3322 and the second guide 3324 .
  • the depth of the recess 3326 may be set so that the slide wall 325 can move only by a predetermined length. That is, the distance between the end of the slide wall 325 before being stamped and the end of the recess 3326 in the depth direction may be a distance at which the discharge unit 320 translates. That is, since the end of the slide wall 325 abuts against the depth direction end of the recess 3326 when the discharge unit 320 moves, the depth of the recess 3326 may limit the translational movement distance of the discharge unit 320 . have.
  • the first fixing member 332 surrounds both the outer and inner circumferences of the slide wall 325 to guide the slide wall 325 , that is, the discharge unit including the slide wall 325 and the discharge body 322 fixed to it. The movement of 320 may be guided.
  • a groove or protrusion may be formed on the outside of the first fixing member 332 , and a corresponding projection or groove may be formed on the inside of the cup-shaped cap 400 , so that the cap 400 and the first fixing member 332 may be formed. ) may be removable.
  • the second fixing member 334 may preferably be formed integrally with the first fixing member 332 , and the second fixing member 334 is formed to protrude from the first fixing member 332 toward the container 100 . can be
  • the first fixing member 332 may have grooves, protrusions or threads formed on the inner circumferential surface, and similarly, the inner container 120 and the outer container 110 have grooves, protrusions, or threads of the first fixing member 332 formed thereon.
  • the first fixing member 332 and the outer container 110 or the inner container 120 may be fixedly coupled.
  • the first fixing member 332 may also be fixedly coupled to the vial 130 .
  • the third fixing member 336 may be formed integrally with the second fixing member 334 and the third fixing member 332 , and may be provided with a screw thread or a groove or protrusion to fix the vial 130 .
  • the third fixing member 336 may also be coupled to the pumping unit 310 through adhesive or screw thread.
  • the third fixing member 336 and the vial 130 may be detachably screwed together, and the protruding ring 318 of the pumping unit 310 may be disposed at the bottle inlet side of the vial 130 .
  • the protrusion ring 318 may be formed of a material having elasticity that protrudes from the outer circumferential surface of the pump body 316, and according to the combination of the vial 130 and the third fixing member 336, at the bottle inlet of the vial 130. The position may be fixed by being depressed.
  • the protrusion ring 318 Since the protrusion ring 318 has elasticity, it can contact to seal the bottle inlet of the vial 130, so that the fluid inside the vial 130 leaks in the direction of the inner container 120 or the outer container 110 can prevent
  • FIG. 5 shows a state in which the container 100 of the stamp-type fluid discharging device according to an embodiment is placed upward
  • FIG. 6 is the discharging unit 320 of the stamp-type fluid discharging device according to the embodiment is pressurized. show the status
  • FIG. 7 shows a state in which the pressure acting on the discharge unit 320 of the stamp-type fluid discharge device according to an embodiment is released
  • FIG. 8 is a stamp-type fluid discharge device according to an embodiment while the pressure is applied. The path through which the fluid is discharged is shown.
  • the discharge unit 320 may move in the direction of the container unit 100 and the pumping unit 310 .
  • the fluid in the pumping unit 310 is the pump body 316, the pipe of the first piston rod 315, the pipe 3212 of the transfer member 321, the first cavity, the discharge body with reference to FIG. It may be discharged through the hole 3222 of the 322 , the second cavity, and the discharge hole 3232 of the discharge member 323 .
  • the first piston rod 315 may move in the direction of the container 100 together with the discharge unit 320 , and accordingly, the inlet element 3134 of the second piston rod 313 is It blocks the pipeline of the first piston rod 315 and may push the fluid in the pipeline in the direction of the discharge unit 320 .
  • the first piston rod 315 and the discharge unit 320 can be restored to the object direction by the spring, and the internal space of the pump body 316 by the amount of the discharged fluid A negative pressure may be established, and thus fluid in the vial 130 or reservoir 210 may be introduced into the internal space of the pump body 316 through the opening 3102 .
  • the fluid may push the ball 311 in the direction of the discharge unit 320 , and similarly push the second piston rod 313 in the direction of the discharge unit 320 .
  • the stamp-type fluid discharging device may discharge the fluid in a pattern corresponding to the pattern of the discharge hole 3232, prevent the fluid pattern transferred to the object from spreading, and uniformly distribute the fluid. By discharging at a single flow rate, it is possible to prevent the fluid pattern from being non-uniformly transferred to the target part of the object.
  • the stamp-type fluid discharging device discharges a certain amount of the fluid stored in the pumping unit 310, thereby preventing the total amount of the fluid from being discharged irregularly, recycling is possible, and the object is stamped Fluid can be discharged even when it is located above or below the type fluid discharging device.
  • stamp-type fluid discharging device can easily change the appearance, prevent leakage of fluid, and buffer external shocks added to the vial 130 .
  • the stamp-type fluid discharging device may prevent deterioration of the fluid in the container 100 .
  • stamp-type fluid discharging device is not limited to the configuration and method of the above-described embodiments, and the embodiments may be configured by selectively combining all or part of each embodiment so that various modifications can be made. have.

Abstract

A stamp-type fluid discharge apparatus according to one embodiment may comprise: a container for storing a fluid; and a discharge unit coupled to the container and configured to discharge the fluid stored in the container in the longitudinal direction of the container by means of a stamping operation that takes place once the discharge unit comes in contact with an object, wherein the discharge unit may include: a pumping part having a portion installed in the container and configured to pump a part of the fluid stored in the container by means of the stamping operation; and a discharge part connected to the pumping part to discharge the pumped fluid, wherein the discharge part may include: a discharge hole which is opened along the longitudinal direction of the container; and a protrusion wall which protrudes in a loop shape so as to surround the discharge hole, and separates the discharge hole from the object when contacting the object.

Description

스탬프형 유체 토출장치Stamp-type fluid dispensing device
스탬프형 유체 토출장치가 개시된다. 구체적으로, 대상에 향과 색을 포함하는 유체를 토출할 수 있는 스탬프형 유체 토출장치가 개시된다. A stamp-type fluid dispensing device is disclosed. Specifically, a stamp-type fluid discharging device capable of discharging a fluid including a fragrance and a color to an object is disclosed.
일반적으로 유체로 이루어진 화장료의 경우에 스프레이 방식을 이용하여 대상에 토출된다. In general, in the case of a cosmetic made of a fluid, it is discharged to the target using a spray method.
이러한 화장료를 대상으로 토출할 수 있는 스프레이형 화장품 용기의 경우에는 대부분 인간이 화장품 용기를 파지하기 편하게 한 손에 잡히는 크기의 용기를 이용하며, 구체적으로, 엄지나 검지로 스프레잉 버튼을 누르기 위해 토출구를 일 방향으로 돌출시킨다.In the case of spray-type cosmetic containers that can be discharged for these cosmetics, most use a container of a size that can be easily gripped by humans in one hand. Specifically, the discharge port is used to press the spray button with the thumb or index finger protrude in one direction.
사용자는 자기가 원하는 대상의 방향으로 토출구를 겨누고, 엄지나 검지로 스프레잉 버튼을 누르게 되는데, 이 때, 토출구는 엄지와 검지에 의해 토출이 방해되지 않도록, 버튼의 측 방향에 주로 위치되게 된다.The user aims the discharge port in the direction of the desired object and presses the spraying button with his thumb or index finger. At this time, the discharge port is mainly located in the lateral direction of the button so that the discharge is not disturbed by the thumb and index finger.
그러나 이러한 스프레이형 화장품 용기로 화장료를 토출하는 경우에 사용자가 원치 않는 방향으로 화장료가 비산하거나, 화장료가 일 부분에 뭉치게 분사되어서 방울을 형성할 수도 있다.However, in the case of discharging the cosmetic to the spray-type cosmetic container, the cosmetic may be scattered in a direction that the user does not want, or the cosmetic may be sprayed in a lump on a part to form droplets.
이러한 문제점을 해결하기 위해, 이러한 화장료의 사용시 화장료의 비산을 피하고 일 부분에 뭉치지 않게 하기 위한 기술들이 소개된 바 있으며, 구체적으로 일본특허출원번호 제 2016-001779호 "향수 용기"에 잘 개시되어 있다. In order to solve this problem, techniques for avoiding the scattering of the cosmetics and preventing them from clumping in one part when using these cosmetics have been introduced, and specifically, Japanese Patent Application No. 2016-001779 "Perfume container" is well disclosed. .
그런데 이러한 유형의 화장료 용기는 스프레이의 방식을 제거함으로써 스프레이 방식의 장점을 함께 제거한다는 문제점이 있다. However, this type of cosmetic container has a problem in that the advantages of the spray method are also removed by removing the spray method.
일 실시예에 따른 목적은 대상체에 유체 패턴을 전사하는 스탬프형 유체 토출장치를 제공하는 것이다.SUMMARY According to an exemplary embodiment, it is an object to provide a stamp-type fluid discharging device for transferring a fluid pattern to an object.
일 실시예에 따른 다른 목적은 대상체에 전사되는 유체 패턴의 번짐을 방지하는 스탬프형 유체 토출장치를 제공하는 것이다. Another object according to an exemplary embodiment is to provide a stamp-type fluid discharging device that prevents a fluid pattern transferred to an object from spreading.
일 실시예에 따른 다른 목적은 대상체에 유체 패턴이 불균일하게 전사되는 것을 방지하는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an exemplary embodiment is to provide a stamp-type fluid discharging device that prevents a fluid pattern from being non-uniformly transferred to an object.
일 실시예에 따른 다른 목적은 유체의 총량이 불규칙하게 토출되는 것을 방지하는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an exemplary embodiment is to provide a stamp-type fluid discharging device that prevents a total amount of fluid from being discharged irregularly.
일 실시예에 따른 다른 목적은 재활용이 가능한 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an embodiment is to provide a stamp-type fluid discharging device that can be recycled.
일 실시예에 따른 다른 목적은 다양한 방향에서 유체를 토출할 수 있는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an embodiment is to provide a stamp-type fluid discharging device capable of discharging fluid in various directions.
일 실시예에 따른 다른 목적은 외관을 변경할 수 있는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an embodiment is to provide a stamp-type fluid discharging device capable of changing an appearance.
일 실시예에 따른 다른 목적은 저장된 유체의 누출을 방지할 수 있는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an embodiment is to provide a stamp-type fluid discharging device capable of preventing leakage of stored fluid.
일 실시예에 따른 다른 목적은 외부 충격에 파손을 가능성을 저감하는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to an embodiment is to provide a stamp-type fluid discharging device that reduces the possibility of being damaged by an external impact.
일 실시예에 따른 다른 목적은 용기 내 유체의 변질을 방지하는 스탬프형 유체 토출장치를 제공하는 것이다.Another object according to one embodiment is to provide a stamp-type fluid discharging device for preventing the deterioration of the fluid in the container.
상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치는 유체를 저장하는 용기, 및 상기 용기에 결합되고, 대상체에 접촉된 후 가압되는 스탬핑 동작에 의해 상기 용기에 저장된 유체를 상기 용기의 길이방향 상으로 토출하도록 형성되는 토출유닛을 포함할 수 있고, 상기 토출유닛은 일부가 상기 용기 내에 설치되어, 상기 스탬핑 동작에 의해 상기 용기 내에 저장된 유체의 일부를 펌핑하도록 형성되는 펌핑부, 및 상기 펌핑부에 연결되어, 펌핑된 유체를 토출하는 토출부를 포함할 수 있으며, 상기 토출부는 상기 용기의 길이방향을 따라 개구되는 토출홀, 및 상기 토출홀을 감싸도록 루프 형태로 돌출되어, 대상체에 접촉시 상기 토출홀과 상기 대상체를 이격시키는 돌출벽을 포함할 수 있다. A stamp-type fluid discharging device according to an embodiment for achieving the above object is coupled to a container for storing a fluid, and the fluid stored in the container by a stamping operation that is coupled to the container and is pressurized after contact with an object of the container. may include a discharge unit configured to discharge in a longitudinal direction, wherein a part of the discharge unit is installed in the container to pump a portion of the fluid stored in the container by the stamping operation, and the It may include a discharge unit connected to the pumping unit to discharge the pumped fluid, wherein the discharge unit protrudes in the form of a loop to surround the discharge hole, which is opened along the longitudinal direction of the container, and the discharge hole, and comes into contact with the object It may include a protrusion wall that separates the discharge hole from the object.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 토출홀은 외부로 갈수록 구멍 폭이 좁아지는 테이퍼진 형태로 형성될 수 있다. In addition, the discharge hole of the stamp-type fluid discharge device according to an embodiment for achieving the above object may be formed in a tapered shape in which the hole width becomes narrower toward the outside.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 토출홀은 복수 개로 구성되어 전체로서 기설정된 패턴을 형성할 수 있으며, 상기 돌출벽이 대상체에 지지된 상태로 상기 토출유닛이 상기 길이방향을 따라 가압되면, 상기 용기 내의 유체는 상기 토출홀을 통하여 대상체 상에 기설정된 패턴으로 전사될 수 있다.In addition, the discharge hole of the stamp-type fluid discharging device according to an embodiment for achieving the above object may be configured in plurality to form a predetermined pattern as a whole, and the discharging wall is supported by the object. When the unit is pressurized along the longitudinal direction, the fluid in the container may be transferred in a predetermined pattern onto the object through the discharge hole.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 토출부는, 상기 펌핑부에 연결되어, 상기 펌핑부에 의해 펌핑된 유체를 이송하는 이송부재, 상기 이송부재와 오버랩되고, 상기 기설정된 패턴에 대응되게 배치되는 적어도 하나의 홀을 구비하는 토출바디, 상기 토출바디와 오버랩되며, 상기 토출홀을 구비하는 토출부재를 더 포함할 수 있으며, 상기 홀은 통과하는 유체의 유속을 증가시키도록 상기 토출홀 방향으로 갈수록 구멍 폭이 좁아지는 테이퍼진 형태를 구비할 수 있다. In addition, the discharging unit of the stamp-type fluid discharging device according to an embodiment for achieving the above object is connected to the pumping unit and overlaps with a conveying member for transferring the fluid pumped by the pumping unit, and the conveying member , a discharge body having at least one hole disposed to correspond to the preset pattern, and a discharge member overlapping the discharge body and having the discharge hole, wherein the hole is the flow rate of the fluid passing through It may have a tapered shape in which the hole width becomes narrower toward the discharge hole to increase the .
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 토출부재와 상기 토출바디 사이, 또는 상기 토출바디와 상기 이송부재 사이 중 적어도 하나에는, 상기 펌핑된 유체를 상기 토출홀로 토출되기 전에 분산시키도록 형성되는 유체분산공이 형성될 수 있다. In addition, in at least one of between the discharging member and the discharging body of the stamp-type fluid discharging device according to an embodiment for achieving the above object, or between the discharging body and the transfer member, the pumped fluid is transferred to the discharging hole. A fluid distribution hole formed to disperse before being discharged may be formed.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 유체분산공은, 상기 토출부재와 상기 토출바디 사이에 형성되고, 상기 길이방향으로 오버랩시켰을 때 상기 토출홀이 내부에 위치하는 형태를 가지는 제1 공동, 상기 토출바디와 상기 이송부재 사이에 형성되며, 상기 길이방향으로 오버랩시켰을 때 상기 홀이 내부에 위치하는 형태를 가지는 제2 공동을 포함할 수 있다.In addition, the fluid distribution hole of the stamp-type fluid discharge device according to an embodiment for achieving the above object is formed between the discharge member and the discharge body, and when overlapped in the longitudinal direction, the discharge hole is inside It may include a first cavity having a shape to be positioned, a second cavity formed between the discharge body and the transfer member, and having a shape in which the hole is positioned inside when overlapped in the longitudinal direction.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치는 상기 펌핑부에 연결되어 상기 용기의 내부에 배치되고, 상기 용기에 저장된 유체의 일부가 유입되어 저장되도록 연통홀을 구비하는 저장탱크를 더 포함할 수 있고, 상기 펌핑부는 유체가 유입되도록 상기 용기의 내부에 위치하는 개구를 구비할 수 있으며, 상기 저장탱크에 저장된 유체가 상기 개구를 통하여 상기 펌핑부로 유입되도록, 상기 연통홀은 상기 개구보다 상기 토출부에 가깝게 위치할 수 있다. In addition, the stamp-type fluid discharging device according to an embodiment for achieving the above object is connected to the pumping part and disposed inside the container, and having a communication hole so that a part of the fluid stored in the container is introduced and stored. It may further include a storage tank, the pumping unit may have an opening located inside the container so that the fluid is introduced, the communication hole so that the fluid stored in the storage tank flows into the pumping unit through the opening may be located closer to the discharge unit than the opening.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 토출부는 상기 돌출벽의 반대방향으로 돌출되는 슬라이드벽을 더 포함하며,In addition, the discharging unit of the stamp-type fluid discharging device according to an embodiment for achieving the above object further includes a slide wall protruding in a direction opposite to the protruding wall,
상기 토출유닛은 상기 펌핑부의 일부가 상기 용기의 내부에 위치하도록 상기 펌핑부와 결합된 상태로 상기 용기에 결합되는 제1 고정부재를 더 포함할 수 있고, 상기 제1 고정부재는 상기 토출부의 가압에 따른 이동과 원복을 가이드하도록 형성될 수 있으며, 상기 제1 고정부재는 상기 슬라이드벽의 외주를 감싸도록 형성되는 제1 가이드, 상기 슬라이드벽의 내주를 감싸도록 형성되는 제2 가이드 및 상기 제1 가이드와 제2 가이드를 연결하고, 상기 슬라이드벽이 기설정된 길이만큼 이동시에 상기 슬라이드벽의 단부와 맞닿도록 형성되는 리세스를 포함할 수 있다. The discharge unit may further include a first fixing member coupled to the container in a state coupled to the pumping part so that a part of the pumping part is located inside the container, wherein the first fixing member pressurizes the discharge part may be formed to guide movement and return according to It may include a recess that connects the guide and the second guide, and is formed to come into contact with an end of the slide wall when the slide wall moves by a predetermined length.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 돌출벽은 상기 토출바디에서 상기 토출홀을 감싸도록 루프 형태로 돌출되는 돌출링, 및 상기 돌출링에 착탈 가능하게 체결되는 체결링을 포함할 수 있으며, 상기 체결링은 상기 돌출링에 체결시 상기 토출바디에 안착된 상기 토출부재의 상측 단부를 덮어 이탈을 방지할 수 있다. In addition, the protruding wall of the stamp-type fluid discharging device according to an embodiment for achieving the above object is a protruding ring protruding in a loop shape to surround the discharging hole in the discharging body, and is detachably fastened to the protruding ring. It may include a fastening ring that is formed, the fastening ring may cover the upper end of the discharge member seated on the discharge body when fastened to the protruding ring to prevent separation.
또한, 상기 목적을 달성하기 위한 일 실시예에 따른 스탬프형 유체 토출장치의 상기 펌핑부는 내부에 유체가 저류되는 공간을 구비하며, 상기 용기와 연통되게 개방되는 개구를 구비하는 펌프바디, 상기 개구에 배치되며, 스탬핑 동작에 따라 상기 용기 내의 유체를 상기 펌프바디로 유입 또는 차단되게 상기 개구를 개폐하는 볼, 상기 펌프바디의 내측 벽면에서 돌출되는 관 형태의 펌프플러그, 상기 펌프바디를 관통하도록 위치되며, 상기 토출부와 연결되어서 길이방향으로 이동하는 제1 피스톤 로드, 상기 펌프플러그 및 상기 제1 피스톤 로드와 접촉되어서 상기 제1 피스톤 로드를 상기 토출부 방향으로 밀어내는 탄성을 제공하는 제1 스프링, 상기 펌프바디 내에 위치되며 상기 제1 피스톤 로드의 관 및 상기 펌프플러그로 형성되는 유로 또는 펌프바디의 개구를 교차하여 개폐하도록 상기 길이 방향으로 이동되는 제2 피스톤 로드, 및 상기 펌프플러그 및 상기 제2 피스톤 로드와 접촉되어서 상기 제2 피스톤 로드를 상기 제1 피스톤 로드에 대향하는 방향으로 밀어내는 탄성을 제공하는 제2 스프링, 을 포함할 수 있고, 상기 개구로 상기 볼을 지나 유입되는 유체는 상기 펌프바디를 지나 상기 제1 피스톤 로드를 통해 상기 토출부로 펌핑될 수 있다. In addition, the pumping unit of the stamp-type fluid discharging device according to an embodiment for achieving the above object has a space in which the fluid is stored, and a pump body having an opening opened in communication with the container, in the opening A ball that opens and closes the opening so that the fluid in the container is introduced or blocked to the pump body according to a stamping operation, a tube-shaped pump plug protruding from the inner wall of the pump body, and is positioned to pass through the pump body , A first piston rod connected to the discharge unit moving in the longitudinal direction, a first spring in contact with the pump plug and the first piston rod to provide elasticity for pushing the first piston rod in the direction of the discharge unit, a second piston rod positioned in the pump body and moved in the longitudinal direction to cross and open and close a flow path formed by the pipe of the first piston rod and the pump plug or an opening of the pump body, and the pump plug and the second A second spring, which is in contact with the piston rod and provides elasticity to push the second piston rod in a direction opposite to the first piston rod, may be included, and the fluid flowing through the ball into the opening is the pump. It may be pumped to the discharge unit through the first piston rod past the body.
일 실시예에 따른 스탬프형 유체 토출장치는 패턴을 형성하는 유체 토출홀을 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 토출홀의 패턴과 대응되는 패턴으로 유체를 토출할 수 있다.The stamp-type fluid discharging device according to an embodiment may include a fluid discharging hole forming a pattern. Accordingly, the stamp-type fluid discharge device according to an embodiment may discharge the fluid in a pattern corresponding to the pattern of the discharge hole.
또한, 일 실시예에 따른 스탬프형 유체 토출장치의 토출홀은 외측으로 점점 좁아지는 테이퍼진 단면을 구비하여서 토출시 유속이 상승되며, 대상체의 대상부위를 감싸는 돌출벽을 구비하여서 대상부위 외측으로 유체가 비산되는 것을 방지할 수 있다. 이에 따라, 일 실시예에 따른스탬프형 유체 토출장치는 대상체에 전사되는 유체 패턴의 번짐을 방지할 수 있다. In addition, the discharge hole of the stamp-type fluid discharging device according to an embodiment has a tapered cross-section that is gradually narrowed to the outside, so that the flow rate is increased when discharging, and a protruding wall surrounding the target portion of the object is provided to the outside of the target portion. can be prevented from scattering. Accordingly, the stamp-type fluid discharging device according to an embodiment may prevent the fluid pattern transferred to the object from spreading.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 토출홀로 유체가 토출되기 전에 유체를 이중으로 분산시키는 공동구조를 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치의 모든 토출홀은 유체를 균일한 유속으로 토출하여서 대상체의 대상부위에 유체 패턴이 불균일하게 전사되는 것을 방지할 수 있다. In addition, the stamp-type fluid discharging device according to an embodiment may have a cavity structure for doubly dispersing the fluid before the fluid is discharged to the discharging hole. Accordingly, all of the discharge holes of the stamp-type fluid discharging device according to an embodiment discharge the fluid at a uniform flow rate, thereby preventing the fluid pattern from being non-uniformly transferred to the target portion of the object.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 내부에 유체가 임시 저장되는 펌핑부를 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 펌핑부에 저장된 일정한 양의 유체를 토출하여서, 유체의 총량이 불규칙하게 토출되는 것을 방지할 수 있다.In addition, the stamp-type fluid discharging device according to an embodiment may include a pumping unit in which the fluid is temporarily stored. Accordingly, the stamp-type fluid discharging device according to an embodiment discharges a predetermined amount of fluid stored in the pumping unit, thereby preventing the total amount of the fluid from being discharged irregularly.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 바이알이 교체가능하다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 재활용이 가능하다.In addition, in the stamp-type fluid discharging device according to an embodiment, the vial is replaceable. Accordingly, the stamp-type fluid discharging device according to an embodiment can be recycled.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 다양한 방향에서도 펌핑부에 유체를 공급할 수 있게, 유체를 저류시키는 저장탱크를 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 대상체가 스탬프형 유체 토출장치의 상방이나 하방에 위치될 때에도 유체를 토출할 수 있다.In addition, the stamp-type fluid discharging device according to an embodiment may include a storage tank for storing the fluid so as to supply the fluid to the pumping unit in various directions. Accordingly, the stamp-type fluid discharging device according to an embodiment may discharge the fluid even when the object is positioned above or below the stamp-type fluid discharging device.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 분리되는 교체 가능한 내측용기, 데코, 토출부재 및 교체적을 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 외관을 용이하게 변경할 수 있다. In addition, the stamp-type fluid discharging device according to an embodiment may include a separate and replaceable inner container, decor, discharging member and replacement. Accordingly, the appearance of the stamp-type fluid discharging device according to an embodiment can be easily changed.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 교체가 이루어지는 부분들에, 복수 개의 밀봉을 위한 부재들을 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 유체의 누출을 방지할 수 있다.In addition, the stamp-type fluid discharging device according to an embodiment may include a plurality of sealing members at parts to be replaced. Accordingly, the stamp-type fluid discharging device according to an embodiment may prevent leakage of fluid.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 바이알을 구비하며, 이러한 바이일을 2중으로 감싸는 내측용기와 외측용기를 구비할 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 바이알에 부가되는 외부충격을 완충할 수 있다. In addition, the stamp-type fluid discharging device according to an embodiment includes a vial, and may include an inner container and an outer container that double-enclose the vial. Accordingly, the stamp-type fluid discharging device according to an embodiment may buffer an external shock applied to the vial.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 대상체와 토출홀 사이를 이격시켜 서로 접촉하는 것을 방지하고, 스탬프형 유체 토출장치의 펌핑부는 용기와 토출부를 차단시킬 수 있다. 이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 용기 내 유체의 변질을 방지할 수 있다. In addition, in the stamp-type fluid discharging device according to an embodiment, the object and the discharging hole are spaced apart to prevent contact with each other, and the pumping unit of the stamp-type fluid discharging device may block the container and the discharging unit. Accordingly, the stamp-type fluid discharging device according to an embodiment may prevent deterioration of the fluid in the container.
도 1은 일 실시예에 따른 스탬프형 유체 토출장치의 사시도이다.1 is a perspective view of a stamp-type fluid discharging device according to an embodiment.
도 2는 일 실시예에 따른 스탬프형 유체 토출장치의 단면도이다.2 is a cross-sectional view of a stamp-type fluid discharging device according to an embodiment.
도 3은 일 실시예에 따른 스탬프형 유체 토출장치의 토출유닛의 분해사시도이다.3 is an exploded perspective view of a discharging unit of a stamp-type fluid discharging device according to an exemplary embodiment.
도 4는 일 실시예에 따른 스탬프형 유체 토출장치의 토출유닛의 다른 방향에서의 분해사시도이다.4 is an exploded perspective view from another direction of a discharging unit of a stamp-type fluid discharging device according to an embodiment.
도 5는 일 실시예에 따른 스탬프형 유체 토출장치에서 캡이 제거된 상태의 단면도이다.5 is a cross-sectional view of a state in which a cap is removed from the stamp-type fluid discharging device according to an embodiment.
도 6은 일 실시예에 따른 스탬프형 유체 토출장치가 스탬핑된 상태의 단면도이다.6 is a cross-sectional view of a stamped fluid discharging device according to an exemplary embodiment.
도 7은 일 실시예에 따른 스탬프형 유체 토출장치가 스탬핑 후 복귀되는 상태의 단면도이다.7 is a cross-sectional view illustrating a state in which the stamp-type fluid discharging device is returned after stamping according to an embodiment.
도 8은 일 실시예에 따른 스탬프형 유체 토출장치의 토출부의 단면확대사시도이다.8 is a cross-sectional enlarged perspective view of a discharging unit of a stamp-type fluid discharging device according to an exemplary embodiment.
이하, 본 발명에 관련된 스탬프형 유체 토출장치에 대하여 도면을 참조하여 보다 상세하게 설명한다. 첨부된 도면은 본 명세서에 개시된 실시 예를 쉽게 이해할 수 있도록 하기 위한 것일 뿐, 첨부된 도면에 의해 본 명세서에 개시된 기술적 사상이 제한되지 않으며, 본 발명의 사상 및 기술 범위에 포함되는 모든 변경, 균등물 내지 대체물을 포함하는 것으로 이해되어야 한다.Hereinafter, a stamp-type fluid discharging device according to the present invention will be described in more detail with reference to the drawings. The accompanying drawings are only for easy understanding of the embodiments disclosed in this specification, and the technical idea disclosed herein is not limited by the accompanying drawings, and all changes and equivalents included in the spirit and scope of the present invention It should be understood to include water or substitutes.
본 명세서에서 사용되는 단수의 표현은 문맥상 명백하게 다르게 뜻하지 않는 한, 복수의 표현을 포함한다.As used herein, the singular expression includes the plural expression unless the context clearly dictates otherwise.
본 명세서에서 어떤 구성요소가 다른 구성요소에 "연결되어" 있다거나 "접속되어" 있다고 언급된 때에는, 그 다른 구성요소에 직접적으로 연결되어 있거나 또는 접속되어 있을 수도 있지만, 중간에 다른 구성요소가 존재할 수도 있다고 이해되어야 할 것이다. 반면에, 어떤 구성요소가 다른 구성요소에 "직접 연결되어" 있다거나 "직접 접속되어" 있다고 언급된 때에는, 중간에 다른 구성요소가 존재하지 않는 것으로 이해되어야 할 것이다.When a component is referred to as being “connected” or “connected” to another component in the present specification, it may be directly connected or connected to the other component, but other components may exist in between. It should be understood that there may be On the other hand, when it is said that a certain element is "directly connected" or "directly connected" to another element, it should be understood that the other element does not exist in the middle.
또한, "포함한다" 또는 "가지다" 등의 용어는 명세서상에 기재된 특징, 숫자, 단계, 동작, 구성요소, 부품 또는 이들을 조합한 것이 존재함을 지정하려는 것이지, 하나 또는 그 이상의 다른 특징들이나 숫자, 단계, 동작, 구성요소, 부품 또는 이들을 조합한 것들의 존재 또는 부가 가능성을 미리 배제하지 않는 것으로 이해되어야 한다.In addition, terms such as "comprises" or "have" are intended to designate that a feature, number, step, operation, component, part, or combination thereof described in the specification exists, and includes one or more other features or numbers. , it should be understood that it does not preclude the possibility of the presence or addition of steps, operations, components, parts, or combinations thereof.
또한, 실시예의 구성 요소를 설명하는 데 있어서, 제 1, 제 2, A, B, (a), (b) 등의 용어를 사용할 수 있다. 이러한 용어는 그 구성 요소를 다른 구성 요소와 구별하기 위한 것일 뿐, 그 용어에 의해 해당 구성 요소의 본질이나 차례 또는 순서 등이 한정되지 않는다. 어떤 구성 요소가 다른 구성요소에 "연결", "결합" 또는 "접속"된다고 기재된 경우, 그 구성 요소는 그 다른 구성요소에 직접적으로 연결되거나 접속될 수 있지만, 각 구성 요소 사이에 또 다른 구성 요소가 "연결", "결합" 또는 "접속"될 수도 있다고 이해되어야 할 것이다.In addition, in describing the components of the embodiment, terms such as first, second, A, B, (a), (b), etc. may be used. These terms are only for distinguishing the elements from other elements, and the essence, order, or order of the elements are not limited by the terms. When it is described that a component is "connected", "coupled" or "connected" to another component, the component may be directly connected or connected to the other component, but another component is between each component. It will be understood that may also be "connected", "coupled" or "connected".
어느 하나의 실시 예에 포함된 구성요소와, 공통적인 기능을 포함하는 구성요소는, 다른 실시 예에서 동일한 명칭을 사용하여 설명하기로 한다. 반대되는 기재가 없는 이상, 어느 하나의 실시 예에 기재한 설명은 다른 실시 예에도 적용될 수 있으며, 중복되는 범위에서 구체적인 설명은 생략하기로 한다. Components included in one embodiment and components having a common function will be described using the same names in other embodiments. Unless otherwise stated, descriptions described in one embodiment may be applied to other embodiments as well, and detailed descriptions within the overlapping range will be omitted.
도 1은 일 실시예에 따른 스탬프형 유체 토출장치의 사시도이고, 도 2는 일 실시예에 따른 스탬프형 유체 토출장치의 단면도이며, 도 3은 일 실시예에 따른 스탬프형 유체 토출장치의 토출유닛(300)의 분해사시도이다. 1 is a perspective view of a stamp-type fluid discharging device according to an embodiment, FIG. 2 is a cross-sectional view of a stamp-type fluid discharging device according to an embodiment, and FIG. 3 is a discharging unit of a stamp-type fluid discharging device according to an embodiment (300) is an exploded perspective view.
또한, 도 4는 일 실시예에 따른 스탬프형 유체 토출장치의 토출유닛(300)의 다른 방향에서의 분해사시도이고, 도 5는 일 실시예에 따른 스탬프형 유체 토출장치에서 캡(400)이 제거된 상태의 단면도이며, 도 6은 일 실시예에 따른 스탬프형 유체 토출장치가 스탬핑된 상태의 단면도이다.4 is an exploded perspective view from another direction of the discharge unit 300 of the stamp-type fluid discharge device according to an embodiment, and FIG. 5 is the cap 400 is removed from the stamp-type fluid discharge device according to an embodiment 6 is a cross-sectional view of a stamped state in which the stamp-type fluid discharging device according to an embodiment is stamped.
또한, 도 7은 일 실시예에 따른 스탬프형 유체 토출장치가 스탬핑 후 복귀되는 상태의 단면도이고, 도 8은 일 실시예에 따른 스탬프형 유체 토출장치의 토출부의 단면확대사시도이다.7 is a cross-sectional view of a state in which the stamp-type fluid discharging device according to an embodiment is returned after stamping, and FIG. 8 is an enlarged cross-sectional perspective view of the discharging unit of the stamp-type fluid discharging device according to an exemplary embodiment.
이러한 도 1 내지 도 8을 참조하여, 일 실시예에 따른 스탬프형 유체 토출장치는 캡(400), 용기(100), 저장탱크(200) 및 토출유닛(300)을 포함할 수 있다.1 to 8 , the stamp-type fluid discharging device according to an embodiment may include a cap 400 , a container 100 , a storage tank 200 , and a discharging unit 300 .
캡(400)은 토출유닛(300)에 탈착되게 결합될 수 있으며, 또는 용기(100)에 결합될 수도 있다. 이에 따라, 캡(400)은 사용자가 스탬프형 유체 토출장치를 보관시 토출유닛(300)이 외부로 노출되지 않도록 토출유닛(300)을 외부와 차단할 수 있고, 또한, 사용자가 스탬프형 유체 토출장치를 사용시 캡(400)은 토출유닛(300) 또는 용기(100)와 분리되어서 토출유닛(300)을 노출시킬 수 있다. The cap 400 may be detachably coupled to the discharge unit 300 , or may be coupled to the container 100 . Accordingly, the cap 400 can block the discharging unit 300 from the outside so that the discharging unit 300 is not exposed to the outside when the user stores the stamp-type fluid discharging device. When using, the cap 400 may be separated from the discharge unit 300 or the container 100 to expose the discharge unit 300 .
이러한 캡(400)은 토출유닛(300)의 돌출된 형상에 대응되게 컵형태로 형성될 수 있다. The cap 400 may be formed in a cup shape to correspond to the protruding shape of the discharge unit 300 .
도 2를 참조하여, 용기(100)는 내부에 유체, 예를 들어 액상형 향수, 액상형 화장료, 액상형 염색제, 액상형 살균제 등을 저장할 수 있다. 구체적으로 용기(100)는 외측용기(110), 내측용기(120) 및 바이알(130)을 포함할 수 있으며, 상기의 유체는 바이알(130)내에 저장될 수 있다. 이러한 바이알(130)은 도 2에서 도시되는 바와 같이 병형태일 수 있다. Referring to FIG. 2 , the container 100 may store a fluid, for example, a liquid perfume, a liquid cosmetic, a liquid dye, a liquid disinfectant, and the like therein. Specifically, the container 100 may include an outer container 110 , an inner container 120 and a vial 130 , and the fluid may be stored in the vial 130 . The vial 130 may be in the form of a bottle as shown in FIG. 2 .
이러한 바이알(130)은 도 2에서 도시되는 바와 같이 병의 입구 부분에 토출유닛(300) 또는 다른 용기(100)의 구성들과 결합될 수 있는 나선을 구비할 수 있다. As shown in FIG. 2 , the vial 130 may have a spiral that can be combined with the discharging unit 300 or other components of the container 100 at the inlet portion of the bottle.
본원의 상세한 설명과 도면에서 바이알(130)은 모양이 고정되는 병형태로 도시되고 설명되지만, 반드시 이에 한정되는 것은 아니다. 예를 들어, 바이알은 유연하게 모양이 변할 수 있는 비닐팩 형태 또는 일 측이 이동하는 주사기 실린더 형태일 수도 있다. 바이알이 유연한 피닐팩 형태일 경우에는 비닐팩의 개방된 부분에는 단단한 부재가 구비되어서 토출유닛(300) 또는 다른 용기(100)의 구성들과 결합될 수도 있다. In the detailed description and drawings of the present application, the vial 130 is illustrated and described in the form of a bottle having a fixed shape, but is not necessarily limited thereto. For example, the vial may be in the form of a plastic pack that can be flexibly changed or in the form of a syringe cylinder in which one side moves. When the vial is in the form of a flexible plastic pack, a rigid member is provided in the open part of the plastic pack, so that it may be combined with the discharging unit 300 or other components of the container 100 .
내측용기(120)는 이러한 바이알(130)을 감싸도록 바이알보다 직경이 큰 병 형태일 수 있고, 또는 종이 형태의 얇은 인쇄물이나 작은 탄성체일 수도 있다. The inner container 120 may be in the form of a bottle having a larger diameter than the vial to surround the vial 130, or may be a thin printed material in the form of paper or a small elastic body.
외측용기(110)는 이러한 내측용기(120)를 감싸도록 바이알(130) 및 내측용기(120)의 직경보다 큰 병 형태일 수 있다. 따라서 내측용기(120)는 외측용기(110)와 바이알(130)의 사이에 위치할 수 있으며, 외측용기(110)와 바이알(130)을 이격시켜서 사용자의 부주의로 스탬프형 유체 토출장치에 충격이 가해지는 경우, 외측용기(110)에 부가되는 충격이 바이알(130)에 전달되는 것을 완충할 수 있다. The outer container 110 may be in the form of a bottle larger than the diameter of the vial 130 and the inner container 120 so as to surround the inner container 120 . Therefore, the inner container 120 may be located between the outer container 110 and the vial 130, and the outer container 110 and the vial 130 are spaced apart so that the user's carelessness causes an impact to the stamp-type fluid discharging device. When applied, the shock applied to the outer container 110 may be buffered from being transmitted to the vial 130 .
또한, 바이알(130)이 단단한 소재로 구성되는 경우, 사용자의 부주의에 의해 바이알(130)의 병 입구 부분에 충격이 전해져 바이알(130)이 파손될 수 있는데, 내측용기(120)는 외측용기(110) 내에서 바이알(130)이 움직이는 것을 방지하여, 바이알(130)의 병 입구부분에 충격이 집중되는 것을 방지할 수 있다. In addition, when the vial 130 is made of a hard material, an impact is transmitted to the bottle inlet portion of the vial 130 by the user's carelessness and the vial 130 may be damaged, the inner container 120 is the outer container 110 ) by preventing the vial 130 from moving in the vial 130, it is possible to prevent the concentration of the impact on the bottle inlet portion of the vial (130).
저장탱크(200)는 이러한 용기(100)의 내측 공간에 위치될 수 있다. 바람직하게, 저장탱크(200)는 바이알(130)의 내측에 위치될 수 있다.The storage tank 200 may be located in the inner space of the container 100 . Preferably, the storage tank 200 may be located inside the vial 130 .
도 2를 다시 참조하여, 저장탱크(200)는 저장소(210), 데코(220) 및 데코연결벽(230)을 포함할 수 있다. Referring back to FIG. 2 , the storage tank 200 may include a storage 210 , a decor 220 , and a decor connection wall 230 .
저장소(210)는 내부 공간을 구비할 수 있으며, 내부 공간에는 바이알(130)의 내부에 저류될 수 있다. 또한, 저장소(210)는 일측이 개방되어 있을 수 있으며 예를 들어, 도 3 및 도 4를 참조하여 저장소(210)의 개방된 일 측에는 데코연결벽(230)이 연결되어서 바이알(130)의 내부 공간과 분리되는 공간을 형성할 수도 있다. The reservoir 210 may have an internal space, and the internal space may be stored inside the vial 130 . In addition, the storage 210 may have one side open, and for example, with reference to FIGS. 3 and 4 , the deco connection wall 230 is connected to the open side of the storage 210 with reference to the interior of the vial 130 . It is also possible to form a space separated from the space.
이때, 데코연결벽(230)은 저장소(210)와 분리가능하게 나사결합될 수 있다. At this time, the decor connection wall 230 may be detachably screwed with the storage 210 .
이러한 데코연결벽(230)의 저장소(210)에 대향하는 방향에는 데코(220)가 위치될 수 있다. 이러한 데코(220)는 용기(100)가 투명한 물질로 구성되었을 때, 용기(100)의 외부에서 관찰할 수 있어, 심미적인 효과를 줄 수 있다. 즉, 데코(220)는 심미적인 효과를 주는 모양이나, 로고 등의 구조물일 수 있다. In the direction opposite to the storage 210 of the decor connection wall 230, the decor 220 may be located. The decor 220 can be observed from the outside of the container 100 when the container 100 is made of a transparent material, thereby giving an aesthetic effect. That is, the deco 220 may be a shape that gives an aesthetic effect or a structure such as a logo.
데코(220)는 데코연결벽(230)에 의해 저장소(210)와 연결될 수 있다. The deco 220 may be connected to the storage 210 by the deco connection wall 230 .
도 3을 다시 참조하여, 저장소(210)는 일측에 바이알(130) 내의 유체가 저장소(210) 내의 공간으로 유입될 수 있도록 개방된 연통홀(2122)을 구비할 수 있다. 이러한 연통홀(2122)은 바람직하게 저장소(210)가 바이알(130)의 내부 공간에 위치할 경우, 바이알(130)의 병 입구 방향으로 형성될 수 있다. Referring back to FIG. 3 , the reservoir 210 may have an open communication hole 2122 on one side so that the fluid in the vial 130 can be introduced into the space in the reservoir 210 . The communication hole 2122 may be preferably formed in the direction of the bottle inlet of the vial 130 when the reservoir 210 is located in the inner space of the vial 130 .
바이알(130)의 병 입구가 중력이 작용하는 방향에 놓이는 경우, 바이알(130) 내부의 유체는 바이알(130)의 병 입구 방향으로 하강하여 저장소(210)는 전부 또는 일부가 바이알(130) 내의 유체에 잠기게 되며, 바이알(130)의 병 입구가 중력이 작용하는 방향에 대향하는 방향으로 회전하는 경우, 바이알(130)의 병 입구 부분으로 이동되었던 유체는 바이알(130)의 병 입구에 대향하는 방향을 향할 수 있다. 이 때, 유체는 이동하며 연통홀(2122)로 유입될 수 있고, 이에따라 바이알(130)의 병 입구가 중력이 작용하는 방향에 대향하는 방향에 위치할 경우에 저장소(210)의 내부에는 유체가 저류되게 남아있을 수 있다.When the bottle inlet of the vial 130 is placed in the direction in which gravity acts, the fluid inside the vial 130 descends in the direction of the bottle inlet of the vial 130 so that the reservoir 210 is fully or partially in the vial 130. It is immersed in the fluid, and when the bottle inlet of the vial 130 rotates in a direction opposite to the direction in which gravity acts, the fluid that has moved to the bottle inlet of the vial 130 faces the bottle inlet of the vial 130 can be directed in the direction At this time, the fluid moves and can be introduced into the communication hole 2122 , and accordingly, when the bottle inlet of the vial 130 is located in a direction opposite to the direction in which gravity acts, the fluid is stored in the reservoir 210 . may remain stagnant.
연통홀(2122)이 바이알(130)의 병 입구 방향으로 개방됨에 따라, 바이알(130)의 롤링 등 움직임에도 유체는 저장소(210) 내에 상당수 저장될 수 있다.As the communication hole 2122 is opened in the direction of the bottle inlet of the vial 130 , a significant amount of fluid may be stored in the reservoir 210 even when the vial 130 moves, such as rolling.
이러한 연통홀(2122) 근처, 즉 연통홀(2122)이 위치된 방향에 형성되는 저장소(210)의 면을 구성하는 격벽(212)은 저장소(210)의 측벽 방향으로 경사지게 형성될 수 있다. 이는 아래에서 토출유닛(300)과 함께 상세하게 설명될 수 있다. The partition wall 212 constituting the surface of the storage 210 formed in the vicinity of the communication hole 2122 , that is, in the direction in which the communication hole 2122 is located, may be inclined in the direction of the sidewall of the storage 210 . This may be described in detail together with the discharge unit 300 below.
토출유닛(300)은 용기(100)에 결합되고, 예를 들어 신체나 의류 등의 대상체에 접촉된 후 가압되는 스탬핑 동작에 의해 용기(100) 내에 저장된 유체를 토출할 수 있다. The discharge unit 300 is coupled to the container 100 and, for example, may discharge the fluid stored in the container 100 by a stamping operation that is pressed after being in contact with an object such as a body or clothes.
구체적으로, 토출유닛(300)은 유체가 흐르는 통로와 통로 내에 유동을 생성하는 펌핑부(310)를 구비하고 토출유닛(300)의 일측이 용기(100)에 결합될 수 있으며, 이에 따라 용기(100) 내의 유체는 토출유닛(300)을 통해 대상체 방향으로 토출될 수 있다. 이때 토출유닛(300)은 유체를 용기(100)의 길이방향을 따라서 분사되게 토출시킬 수 있다. Specifically, the discharge unit 300 includes a passage through which the fluid flows and a pumping unit 310 for generating a flow in the passage, and one side of the discharge unit 300 may be coupled to the container 100, and accordingly, the container ( The fluid in the 100 may be discharged in the direction of the object through the discharge unit 300 . At this time, the discharge unit 300 may discharge the fluid to be sprayed along the longitudinal direction of the container 100 .
도 2를 다시 참조하여, 토출유닛(300)은 펌핑부(310), 토출부(320) 및 몸체부(330)를 포함할 수 있다. Referring back to FIG. 2 , the discharging unit 300 may include a pumping unit 310 , a discharging unit 320 , and a body 330 .
펌핑부(310)는 일부가 용기(100) 내에 바람직하게 바이알(130) 내에 설치되거나 용기(100) 내의 유체가 도달할 수 있도록 용기(100)와 연통되는 구조 상에 배치될 수 있다. The pumping unit 310 may be partially installed in the vial 130 in the container 100 or disposed on a structure in communication with the container 100 so that the fluid in the container 100 can reach.
토출부(320)는 펌핑부(310)에 연결될 수 있으며, 펌핑부(310)는 토출부(320) 방향으로 유체를 펌핑할 수 있다. 또한, 몸체부(330)는 펌핑부(310)와 토출부(320), 그리고 용기(100)를 모두 연결하도록 이동 또는 탈착되게 고정시킬 수 있다.The discharge unit 320 may be connected to the pumping unit 310 , and the pumping unit 310 may pump the fluid in the discharge unit 320 direction. In addition, the body 330 may be fixed to be moved or detached so as to connect all of the pumping unit 310 , the discharging unit 320 , and the container 100 .
도 5 내지 도 7을 참조하여, 펌핑부(310)는 펌프바디(316), 돌출환(318), 펌프플러그(317), 볼(311), 제1 피스톤 로드(315), 제2 피스톤 로드(313), 제1 스프링(314) 및 제2 스프링(132)을 포함할 수 있다. 5 to 7, the pumping unit 310 includes a pump body 316, a protruding ring 318, a pump plug 317, a ball 311, a first piston rod 315, a second piston rod 313 , a first spring 314 and a second spring 132 may be included.
펌프바디(316)는 통 형태, 바람직하게는 원통의 형상으로 형성될 수 있으며, 내부에 유체가 저류되는 공간을 구비할 수 있다. 바람직하게 펌프바디(316) 내부의 공간에는 펌핑부(310)의 구성요소들이 일부 또는 전체가 위치될 수 있으며, 또한 펌핑부(310)의 구성요소들 이외의 공간에는 유체가 저류될 수 있다. 이러한 유체는 용기(100)에서 위에서 설명한 저장탱크(200)를 통과하여 이송된 유체일 수 있다. 펌프바디(316)는 이러한 저장탱크(200)를 지나는 유체가 펌프바디(316)의 내측 공간에 유입될 수 있도록 저장탱크(200) 연통되게 개방되거나, 저장탱크(200)가 생략되는 경유 용기(100) 내의 유체가 펌프바디(316)의 내측공간에 유입될 수 있도록 용기(100) 즉, 바이알과 연통되게 개방되는 개구(3102)를 구비할 수 있다. 바람직하게 개구는 펌프바디(316)를 기준으로 토출부와 대향하는 방향에 형성될 수 있다.The pump body 316 may be formed in a cylindrical shape, preferably a cylindrical shape, and may have a space in which the fluid is stored. Preferably, some or all of the components of the pumping unit 310 may be located in the space inside the pump body 316 , and fluid may be stored in a space other than the components of the pumping unit 310 . Such a fluid may be a fluid transferred from the container 100 through the storage tank 200 described above. The pump body 316 is opened to communicate with the storage tank 200 so that the fluid passing through the storage tank 200 can be introduced into the inner space of the pump body 316, or a diesel container in which the storage tank 200 is omitted ( An opening 3102 opened in communication with the container 100 , that is, the vial may be provided so that the fluid in the 100 ) can be introduced into the inner space of the pump body 316 . Preferably, the opening may be formed in a direction opposite to the discharge part with respect to the pump body 316 .
펌프플러그(317)는 펌프바디(316)의 내측 공간에 구비될 수 있으며, 관 형태일 수 있다. 펌프플러그(317)는 펌프바디(316)의 길이방향 중앙부분 근처 내측면에 고정되게 배치될 수 있으며, 예를 들어 펌프플러그(317)는 펌프바디(316)의 내측에 부착되는 독립적인 부재일 수 있고 또는 펌프바디(316)에서 내측으로 돌출되는 펌프바디(316)와 일체형으로 형성되는 부재일 수도 있다. The pump plug 317 may be provided in the inner space of the pump body 316 and may be in the form of a tube. The pump plug 317 may be fixedly disposed on the inner surface near the longitudinal central portion of the pump body 316 , for example, the pump plug 317 may be an independent member attached to the inner side of the pump body 316 . Alternatively, it may be a member formed integrally with the pump body 316 protruding inward from the pump body 316 .
이러한 펌프플러그(317)는 길이방향 일 지점에서 펌프바디(316)의 폭을 줄이도록 형성되는 관이나 환 형태일 수 있다. The pump plug 317 may be in the form of a tube or annular formed to reduce the width of the pump body 316 at one point in the longitudinal direction.
이러한 펌프플러그(317)의 일측에는 제1 스프링(314)이 배치될 수 있고 다른 일 측에는 제2 스프링(312)이 배치될 수 있다. 보다 상세하게 펌프플러그(317)는 중간에 통로가 형성되는 관이나 환형태를 구비하며, 즉 펌프바디(316)보다 작은 직경을 가질 수 있다. 제1 스프링(314)과 제2 스프링(312)은 코일 스프링일 수 있으며 일단(코일 스프링이 원형으로 모이는 부분)이 이러한 펌프플러그(317)의 폭부분에 위치될 수 있다. A first spring 314 may be disposed on one side of the pump plug 317 and a second spring 312 may be disposed on the other side of the pump plug 317 . In more detail, the pump plug 317 has a tube or annular shape in which a passage is formed in the middle, that is, it may have a smaller diameter than the pump body 316 . The first spring 314 and the second spring 312 may be coil springs, and one end (a portion in which the coil springs are gathered in a circle) may be located in a width portion of the pump plug 317 .
예를 들어, 펌프플러그(317)의 양 측면은 도 5에서 도시되는 바와 같이 홈이 형성될 수 있으며, 코일 스프링의 형태로 제공되는 제1 스프링(314) 및 제2 스프링(312) 각각의 일단들은 펌프플러그(317) 양 측면에 각각 형성된 홈에 끼워질 수 있다. 제1 스프링(314)은 펌프플러그(317)를 기준으로 토출부(320) 방향에 위치될 수 있고, 제2 스프링(312)은 펌프플러그(317)를 기준으로 토출부(320)에 대향하는 방향에 위치될 수 있다. For example, both sides of the pump plug 317 may be grooved as shown in FIG. 5 , and one end of each of the first spring 314 and the second spring 312 provided in the form of a coil spring. The pump plugs 317 may be fitted into grooves formed on both sides of the pump plug 317, respectively. The first spring 314 may be positioned in the direction of the discharge unit 320 with respect to the pump plug 317 , and the second spring 312 is opposite to the discharge unit 320 with respect to the pump plug 317 . direction can be located.
제2 피스톤 로드(313)는 펌프바디(316)의 내측에 위치될 수 있다. 제2 피스톤 로드(313)는 도 6에서 도시되는 바와 같이 토출부(320) 방향으로 돌출되는 인입요소(3134)와 인입요소(3134)의 둘레부분에서 펌프바디(316)의 내주면 방향으로 돌출되는 제1 턱(3132)을 포함할 수 있다. The second piston rod 313 may be located inside the pump body 316 . As shown in FIG. 6 , the second piston rod 313 protrudes in the direction of the inner circumferential surface of the pump body 316 at the peripheral portion of the inlet element 3134 and the inlet element 3134 protruding in the direction of the outlet 320 as shown in FIG. It may include a first jaw 3132 .
제2 스프링(312)은 이러한 제1 턱(3132)과 펌프플러그(317) 사이에 배치될 수 있다. The second spring 312 may be disposed between the first jaw 3132 and the pump plug 317 .
스탬핑 동작에 따라 제2 스프링(312)은 압축될 수 있으며, 이 때 제2 피스톤 로드(313)는 제1 턱(3132)이 펌프플러그(317)와의 간격을 줄이도록 토출부(320) 방향으로 이동할 수 있다. 이에 따라 펌프바디(316)의 개구(3102)는 이동되는 제1 턱(3132)에 의해 개폐될 수도 있다. According to the stamping operation, the second spring 312 may be compressed, and at this time, the second piston rod 313 moves toward the discharge part 320 so that the first jaw 3132 reduces the gap with the pump plug 317 . can move Accordingly, the opening 3102 of the pump body 316 may be opened and closed by the moving first jaw 3132 .
제2 피스톤 로드(313)의 인입요소(3134)는 단면의 폭이 토출부(320) 방향으로 갈 수도록 점점 줄어들게 형성될 수 있으며, 이에 따라 제2 피스톤 로드(313)의 이동에 따라 인입요소(3134)는 펌프플러그(317)의 구멍을 통과할 수 있으며, 일정수준 통과한 이후 인입요소(3134)의 단면 폭과 펌프플러그(317) 구멍의 둘레가 대응되어서 펌프플러그(317)의 구멍은 막힐 수 있다.The inlet element 3134 of the second piston rod 313 may be formed to gradually decrease in width so as to go in the direction of the discharge portion 320 , and accordingly, as the second piston rod 313 moves, the inlet element 313 . 3134 may pass through the hole of the pump plug 317, and after passing a certain level, the cross-sectional width of the inlet element 3134 and the circumference of the hole of the pump plug 317 correspond to the hole of the pump plug 317 can be blocked
다시 도 5를 참조하여, 제1 피스톤 로드(315)는 일부가 펌프바디(316)를 관통하도록 위치되며, 펌프바디(316)를 관통하여 펌프바디(316)의 외측으로 돌출되는 부분의 단부가 토출부(320)와 연결될 수 있다. 이에 따라 제1 피스톤 로드(315)는 토출부(320)와 함께 스탬핑 동작에 의해 길이 방향으로 이동할 수 있다. Referring back to FIG. 5, the first piston rod 315 is positioned so that a part passes through the pump body 316, and the end of the part protruding through the pump body 316 to the outside of the pump body 316 is It may be connected to the discharge unit 320 . Accordingly, the first piston rod 315 may move in the longitudinal direction together with the discharge part 320 by a stamping operation.
구체적으로, 제1 피스톤 로드(315)는 관 형태로 형성되며, 제1 피스톤 로드(315)의 관의 외주면 일부에서 펌프바디(316)의 내주면 방향으로 돌출되는 제2 턱(3152)을 포함할 수 있다. 제1 스프링(314)은 펌프플러그(317)와 이러한 제2 턱(3152) 사이에 배치될 수 있으며, 스탬핑동작에 따라 제2 턱은 펌프플러그(317) 방향으로 이동될 수 있다. Specifically, the first piston rod 315 is formed in a tubular shape, and includes a second jaw 3152 protruding from a portion of the outer circumferential surface of the tube of the first piston rod 315 in the direction of the inner circumferential surface of the pump body 316. can The first spring 314 may be disposed between the pump plug 317 and the second jaw 3152 , and the second jaw may move in the direction of the pump plug 317 according to the stamping operation.
제1 피스톤 로드(315)의 관로는 바람직하게 토출부(320) 방향으로 점점 좁아지게 형성될 수 있으며, 더 바람직하게 제2 피스톤 로드(313)의 인입요소(3134)에 대응되게 형성될 수 있다. The conduit of the first piston rod 315 may be preferably formed to be gradually narrower in the direction of the discharge portion 320 , and more preferably may be formed to correspond to the inlet element 3134 of the second piston rod 313 . .
스탬핑 동작에 의해 인입요소(3134)가 토출부(320) 방향으로 이동되는 경우 제2 피스톤 로드(313)의 인입요소(3134)는 제1 피스톤 로드(315)의 관에 삽입되어서 제1 피스톤 로드(315)의 관을 막을 수 있다. When the inlet element 3134 is moved in the direction of the discharge part 320 by the stamping operation, the inlet element 3134 of the second piston rod 313 is inserted into the tube of the first piston rod 315 and the first piston rod The tube of (315) can be blocked.
스탬핑 동작을 도시하는 도 5 내지 도 7을 참조하여, 제1 스프링(314)과 제2 스프링(132)은 각기 다른 방향으로 탄성력을 생성할 수 있으며, 구체적으로, 제1 스프링(314)과 제2 스프링(132)은 펌프플러그(317)를 기준으로 각기 대향하는 방향으로 탄성력을 제공할 수 있다. 보다 상세하게 제1 스프링(314)은 제1 피스톤 로드(315)를 토출부(320) 방향으로 밀어내는 탄성을 제공할 수 있고, 제2 스프링은 제2 피스톤 로드(313)를 제1 피스톤 로드(315)에 대향하는 방향, 바이알(130)의 입구 쪽 단부에 대향되는 방향의 단부 쪽으로 밀어내는 탄성을 제공할 수 있다.5 to 7 showing the stamping operation, the first spring 314 and the second spring 132 may generate elastic force in different directions, specifically, the first spring 314 and the first spring 314 Two springs 132 may provide an elastic force in directions opposite to each other with respect to the pump plug 317 . In more detail, the first spring 314 may provide elasticity for pushing the first piston rod 315 in the direction of the discharge part 320 , and the second spring may push the second piston rod 313 to the first piston rod. In a direction opposite to 315 , elasticity may be provided to push toward an end in a direction opposite to the inlet-side end of the vial 130 .
이러한 제1 스프링(314)과 제2 스프링(132)의 탄성에 의해 제1 피스톤 로드(315)와 제2 피스톤 로드(313)는 스탬핑 동작시 유동할 수 있다. 제2 피스톤 로드(313)의 경우에는 스탬핑 동작시 형성되는 개구(3102)를 막을 수 있고, 스탬핑 동작이 끝난 후 펌프바디(316)에서 제1 피스톤 로드(315)의 관을 따라 토출부(320)로 펌핑된 유체의 양만큼 형성되는 내부에 형성되는 음압을 보정하도록 개구(3102)를 개방하여 펌프바디(316) 내로 유체의 인입을 허용할 수 있다. Due to the elasticity of the first spring 314 and the second spring 132 , the first piston rod 315 and the second piston rod 313 may flow during the stamping operation. In the case of the second piston rod 313, the opening 3102 formed during the stamping operation can be blocked, and the discharge part 320 along the pipe of the first piston rod 315 in the pump body 316 after the stamping operation is finished. ), the opening 3102 may be opened to correct the negative pressure formed therein formed by the amount of the pumped fluid to allow the introduction of the fluid into the pump body 316 .
이러한 동작은 반복될 수 있으며, 따라서 스탬프형 유체 토출장치는 한 번에 펌프바디(316)의 내측으로 유입되는 유체만큼의 유체를 대상체로 토출할 수 있어, 유체가 과잉 공급되는 것을 방지할 수 있다. This operation can be repeated, and therefore, the stamp-type fluid discharging device can discharge as much fluid as the fluid flowing into the inside of the pump body 316 at a time to the object, thereby preventing the fluid from being over-supplied. .
볼(311)은 개구(3102)에 배치될 수 있다. 바람직하게, 개구(3102)는 펌프바디(316)의 일 측에서 돌출되는 관 형태의 구멍일 수 있고, 개구(3102)의 관형태에는 볼(311)이 배치될 수 있다. 개구(3102)는 펌프바디(316)부분의 구멍이 용기(100) 방향 구멍보다 작게 형성될 수 있으며, 개구(3102)에 배차되는 볼(311)은 용기(100) 방향 구멍 보다 크게 형성될 수 있다. 따라 볼(311)은 용기(100) 방향으로 개구(3102)를 통과하는 것이 방지될 수 있다. Ball 311 may be disposed in opening 3102 . Preferably, the opening 3102 may be a tubular hole protruding from one side of the pump body 316 , and the ball 311 may be disposed in the tubular form of the opening 3102 . In the opening 3102, the hole of the pump body 316 part may be formed smaller than the hole in the container 100 direction, and the ball 311 dispatched to the opening 3102 may be formed larger than the hole in the container 100 direction. have. Accordingly, the ball 311 may be prevented from passing through the opening 3102 in the direction of the container 100 .
본 발명의 설명 또는 도면에서 볼(311)은 구형의 구조물로 도시되고 설명되지만 반드시 이에 한정되는 것은 아니다. 예를 들어 볼(311)은 일 방향으로만 유동을 허용하는 마개, 판막 등 일수 있다. In the description or drawings of the present invention, the ball 311 is illustrated and described as a spherical structure, but is not necessarily limited thereto. For example, the ball 311 may be a stopper or a valve that allows flow in only one direction.
이러한 볼(311)은 스탬핑 동작에 따라 용기 내의 유체를 펌프바디(316) 내로 유입 또는 차단되게 개구(3102)를 개폐할 수 있다. The ball 311 may open and close the opening 3102 to introduce or block the fluid in the container into the pump body 316 according to the stamping operation.
위에서 기재된 저장탱크(200)의 설명에 연속하여, 도 7을 참조하여, 저장탱크(200)의 연통홀(2122)은 펌프바디(316)의 개구(3106)보다 토출부(320)에 더 가깝게 형성될 수 있다. 이는 스탬프형 유체 토출장치가, 토출부(320)가 위로가게(중력이 작용하는 방향에 대향하는 방향)으로 놓일 때, 저장탱크(200)의 저장소(210)에 저장된 유체의 일부가 선택적으로 다시 바이알(130)로 이동될 수 있는데, 이러한 경우에, 펌프바디(316)내로 정량보다 적은 유체가 유입될 수 있기 때문에, 충분한 유체를 공급받기 위해서는, 저장소(210)에 의해 개구(3102)가 충분히 잠겨야 한다. Continuing the description of the storage tank 200 described above, with reference to FIG. 7 , the communication hole 2122 of the storage tank 200 is closer to the discharge part 320 than the opening 3106 of the pump body 316 . can be formed. This is because when the stamp-type fluid discharging device is placed with the discharging unit 320 facing up (the direction opposite to the direction in which gravity acts), a portion of the fluid stored in the reservoir 210 of the storage tank 200 is selectively returned again. It can be moved to the vial 130 , in which case the opening 3102 by the reservoir 210 is sufficiently large in order to receive a sufficient fluid supply because less fluid than the quantity can be introduced into the pump body 316 in this case. should be locked
따라서, 연통홀(2122)은 개구(3106)보다 높게(토출부가 위로 가게 놓이는 경우) 배치되어야 하며 그 수두차이 만큼의 용량의 유체는 개구(3106)를 통해 펌프바디(316)로 유입될 수 있다. 즉, 상기 수두차이(개구와 연통홀의 높이차이) 만큼의 용량은 펌프바디(316)로 한 번에 유입될 수 있는 용량보다 많은 것이 바람직하다.Therefore, the communication hole 2122 should be disposed higher than the opening 3106 (when the discharge part is placed upward), and the fluid with a capacity corresponding to the head difference may be introduced into the pump body 316 through the opening 3106. . That is, it is preferable that the capacity corresponding to the head difference (the height difference between the opening and the communication hole) is greater than the capacity that can be introduced into the pump body 316 at once.
위에서 설명된 격벽(212)의 경우도 이와 마찬가지로 스탬프형 유체 토출장치가 토출부(320)가 위로 향하게 기울어지는 경우 유체가 차지하는 저장소(210) 내의 공간을 줄이도록 경사지게 형성될 수 있다. 구체적으로, 격벽(212)이 경사지게 형성되는 경우, 및 스탬프형 유체 토출장치가 기울어지는 경우 저장소(210) 일측의 공간을 줄여 전체적인 유체의 수두를 증가시킬 수 있으므로, 펌프바디(316)에 유체를 공급하기 용이할 수 있다.Similarly, in the case of the partition wall 212 described above, the stamp-type fluid discharging device may be inclined to reduce the space in the reservoir 210 occupied by the fluid when the discharging unit 320 is inclined upward. Specifically, when the partition wall 212 is formed to be inclined, and when the stamp-type fluid discharge device is inclined, the space on one side of the reservoir 210 can be reduced to increase the overall fluid head, so that the fluid in the pump body 316 is It can be easy to supply.
이러한 저장탱크(200) 구조를 통해 사용자는 다양한 방향에서 스탬프형 유체 토출장치를 사용할 수 있으며, 스탬프형은 방향과 상관없이 일정한 양의 유체를 토출할 수 있다. Through this structure of the storage tank 200, a user can use the stamp-type fluid discharging device in various directions, and the stamp type can discharge a certain amount of fluid regardless of the direction.
돌출환(318)은 아래서 몸체부(330)와 함께 설명한다.The protrusion ring 318 will be described together with the body portion 330 below.
도 5 내지 도 7을 참조하여, 이러한 상기 펌핑부(310)의 구조에 의해 용기(100) 내에 저장된 유체는 펌핑되어서 토출부(320)로 전달될 수 있다.5 to 7 , by the structure of the pumping unit 310 , the fluid stored in the container 100 may be pumped and delivered to the discharge unit 320 .
토출부(320)는 펌핑부(310)와 연결되어서 펌핑된 유체를 대상체 방향으로 토출할 수 있다. 이러한 토출부(320)는 이송부재(321), 토출바디(322), 토출부재(323), 돌출벽(324), 슬라이드벽(325), 실링(326)을 포함할 수 있다. The discharge unit 320 may be connected to the pumping unit 310 to discharge the pumped fluid in the direction of the object. The discharge unit 320 may include a transfer member 321 , a discharge body 322 , a discharge member 323 , a protruding wall 324 , a slide wall 325 , and a sealing 326 .
구체적으로, 이송부재(321)는 제1 피스톤 로드(315)의 관과 연통될 수 있다. 바람직하게 이송부재(321)는 관로(3212)를 구비할 수 있으며, 이러한 관로(3212)는 제1 피스톤 로드(315)의 관과 연통될 수 있다. 예를 들어, 관로(3212)의 내경은 제1 피스톤 로드(315)의 단부(펌프바디에 대향하 방향의 단부)의 외경과 동일할 수 있으며, 즉 제1 피스톤 로드(315)의 단부는 관로(3212)에 끼워질 수 있다. 도 8을 참조하여, 관로(3212)의 내경에는 돌기가 형성될 수 있고, 제1 피스톤 로드 (315)의 외경에는 홈이 형성될수 있으며, 관로(3212)의 돌기와 제1 피스톤 로드(315)의 홈은 서로 맞물려서 고정될 수 있고, 필요에 따라 분리될 수도 있다. Specifically, the transfer member 321 may communicate with the pipe of the first piston rod 315 . Preferably, the transfer member 321 may include a conduit 3212 , and this conduit 3212 may communicate with the pipe of the first piston rod 315 . For example, the inner diameter of the conduit 3212 may be the same as the outer diameter of the end of the first piston rod 315 (the end in the direction opposite to the pump body), that is, the end of the first piston rod 315 is the conduit 3212 may be fitted. Referring to FIG. 8 , a protrusion may be formed in the inner diameter of the conduit 3212 , and a groove may be formed in the outer diameter of the first piston rod 315 , and the protrusion of the conduit 3212 and the first piston rod 315 . The grooves may be fixed by interlocking with each other, and may be separated as needed.
바람직하게 이송부재(321)는 관로(3212) 이외에 넓은 판 형태의 부재를 구비할 수 있으며, 판 상에는 제1 패턴홈(3214)이 형성될 수 있다. 이러한 제1 패턴홈(3214)은 아래에서 제2 패턴홈(3224), 제3 패턴홈(3226)들과 함께 더 구체적으로 설명될 수 있다. Preferably, the transfer member 321 may include a member in the form of a wide plate in addition to the conduit 3212 , and a first pattern groove 3214 may be formed on the plate. The first pattern groove 3214 may be described in more detail together with the second pattern groove 3224 and the third pattern groove 3226 below.
이송부재(321)에 형성되는 제1 패턴홈(3214)은 관로(3212)와 연통되며, 펌핑부(310)를 통해 관로(3212)로 전달된 유체는 제1 패턴홈(3214)에서 넓게 분산될 수 있다.The first pattern groove 3214 formed in the transfer member 321 communicates with the pipeline 3212 , and the fluid transferred to the pipeline 3212 through the pumping unit 310 is widely dispersed in the first pattern groove 3214 . can be
토출바디(322)는 이송부재(321)와 오버랩되도록 배치되며, 구체적으로 이송부재(321)의 판형과 맞붙는 판형을 구비할 수 있다. 이송부재(321)는 상대적으로 용기(100) 방향에 위치하며, 토출바디(322)는 상대적으로 이송부재(321)보다 용기(100)와 더 멀게 위치될 수 있다. 즉, 평면도 상에서 용기(100), 이송부재(321) 및 토출바디(322) 순으로 오버랩될 수 있다.The discharge body 322 is disposed to overlap with the transfer member 321 , and specifically may have a plate shape that is in contact with the plate shape of the transfer member 321 . The transfer member 321 is relatively positioned in the direction of the container 100 , and the discharge body 322 may be positioned relatively farther from the container 100 than the transfer member 321 . That is, the container 100, the transfer member 321, and the discharge body 322 may overlap in the order on the plan view.
토출바디(322)는 적어도 하나의 홀(3222)을 구비할 수 있으며, 이러한 홀(3222)은 도 8에서 도시되는 바와 같이 용기(100)의 길이방향과 평행한 방향으로 형성될 수 있다. 홀(3222)이 복수개가 구비되는 경우 각각의 홀(3222)은 바람직하게 평행한 방향으로 형성될 수 있다. The discharge body 322 may include at least one hole 3222 , and the hole 3222 may be formed in a direction parallel to the longitudinal direction of the container 100 as shown in FIG. 8 . When a plurality of holes 3222 are provided, each hole 3222 may be preferably formed in a parallel direction.
토출바디(322)는 홀(3222) 뿐만 아니라 이송부재(321)와 맞붙는 방향의 면에 오목하게 형성되는 제2 패턴홈(3224)을 구비할 수 있고, 이와 대향하는 방향의 면에 오목하게 형성되는 제3 패턴홈(3226)을 구비할 수도 있다. The discharge body 322 may include a hole 3222 as well as a second pattern groove 3224 concavely formed on the surface in the direction facing the transfer member 321, and formed concavely on the surface in the opposite direction. A third pattern groove 3226 may be provided.
토출부재(323)는 토출바디(322)와 오버랩되도록 배치되며, 구체적으로 토출바디(322)의 판형과 맞붙는 판형을 구비할 수 있다. 토출바디(322)는 상대적으로 이송부재(321)의 방향에 위치하며, 토출부재(323)는 상대적으로 토출바디(322) 보다 이송부재(321)와 더 멀게 위치될 수 있다. 즉, 평면도 상에서 이송부재(321), 토출바디(322) 및 토출부재(323) 순으로 오버랩 될 수 있다. The discharge member 323 is disposed to overlap the discharge body 322 , and in particular, may have a plate shape that is in contact with the plate shape of the discharge body 322 . The discharge body 322 is relatively located in the direction of the conveying member 321 , and the discharge member 323 may be located relatively farther from the conveying member 321 than the discharge body 322 . That is, on a plan view, the transfer member 321 , the discharge body 322 , and the discharge member 323 may overlap in that order.
토출부재(323)는 적어도 하나의 토출홀(3232)을 구비할 수 있으며, 이러한 토출홍(3232)은 도 8에서 도시되는 바와 같이 바람직하게 용기(100)의 길이방향과 평행한 방향으로 형성될 수 있다. 토출홀(3232)이 복수개가 구비되는 경우에 각각의 토출홀(3232)은 바람직하게 평행한 방향으로 형성될 수 있다. The discharging member 323 may include at least one discharging hole 3232 , and the discharging hong 3232 is preferably formed in a direction parallel to the longitudinal direction of the container 100 as shown in FIG. 8 . can When a plurality of discharge holes 3232 are provided, each of the discharge holes 3232 may be preferably formed in a parallel direction.
도 8을 다시 참조하여, 토출홀(3232)은 외부로 갈수록 구멍의 폭이 점점 좁아지는 테이퍼진 형태로 형성될 수 있다. 구체적으로, 토출홀(3232)은 토출부재(323) 방향보다 외측방향의 구멍이 더 작게 형성될 수 있으며, 이에 따라 토출홀(3232)로 공급되는 유체들은 토출홀(3232)을 지나며 유속이 더 증가할 수 있다. Referring back to FIG. 8 , the discharge hole 3232 may be formed in a tapered shape in which the width of the hole becomes narrower toward the outside. Specifically, the discharge hole 3232 may be formed to have a smaller hole in the outer direction than in the direction of the discharge member 323 . Accordingly, the fluid supplied to the discharge hole 3232 passes through the discharge hole 3232 and the flow rate is higher. can increase
따라서, 보다 선명하게 유체를 토출할 수 있다. Accordingly, it is possible to more clearly discharge the fluid.
마찬가지로 도 8을 다시 참조하여, 홀(3222)도 이송부재(321) 쪽 면에서 토출부재(323) 쪽 면의 방향으로 향할수록 구멍의 폭이 점점 좁아지는 테이퍼진 형태로 형성될 수 있다. Similarly, referring again to FIG. 8 , the hole 3222 may also be formed in a tapered shape in which the width of the hole is gradually narrowed from the surface of the transfer member 321 to the surface of the discharge member 323 .
이러한 토출홀(3232)은 하나로 구성될 수도 있고, 복수 개로 구성될 수도 있다. 토출홀(3232)이 하나로 구성되는 경우에는 유체를 분산하는 목적을 구비하는 제1 패턴홈(3214), 제2 패턴홈(3224) 및 제3 패턴홈(3226) 등의 구성이 생략될 수 있으며, 토출홀(3232)이 복수개가 구비되는 경우에도, 제1 패턴홈(3214), 제2 패턴홈(3224) 및 제3 패턴홈(3226) 중 하나 이상의 구성이 생략될 수 있다. These discharge holes 3232 may be configured as one or a plurality of them. When the discharge hole 3232 is configured as one, the configuration of the first pattern groove 3214, the second pattern groove 3224, and the third pattern groove 3226 having the purpose of dispersing the fluid may be omitted. , even when a plurality of discharge holes 3232 are provided, the configuration of at least one of the first pattern groove 3214 , the second pattern groove 3224 , and the third pattern groove 3226 may be omitted.
복수 개의 토출홀(3232)이 구비되는 경우, 제작자의 의도에 따라 복수 개의 토출홀(3232)들은 기설정된 패턴으로 배치될 수 있다. 예를 들어서, 이런 패턴은 직선이나 곡선, 또는 직선이나 곡선을 구비하는 그림, 로고, 텍스트 등일 수 있다.When the plurality of discharge holes 3232 are provided, the plurality of discharge holes 3232 may be arranged in a predetermined pattern according to the intention of the manufacturer. For example, such a pattern may be a straight line or curved line, or a picture, logo, text, etc. having a straight line or curve.
이러한 복수 개의 토출홀(3232)들은 미세한 점, 형상을 가진 점 형태일 수도 있으며, 선 형태 등일 수도 있다.The plurality of discharge holes 3232 may be in the form of fine dots or dots, or may be in the form of lines.
스탬핑 동작에 따라 펌핑부(310)가 길이방향으로 가압되면 펌핑부(310) 내의 유체는 토출홀(3232)을 지나 대상체에 기설정된 상기 패턴으로 전사될 수 있다. 홀(3222)의 경우에도 마찬가지로 복수 개가 구비될 수 있으며, 토출홀(3232)으로 형성되는 기설정된 패턴에 대응되는 패턴으로 배치될 수 있고, 펌핑부(310)로 펌핑되는 유체를 토출홀(3232) 방향으로 허용할 수 있다.When the pumping unit 310 is pressed in the longitudinal direction according to the stamping operation, the fluid in the pumping unit 310 may pass through the discharge hole 3232 and be transferred to the object in the predetermined pattern. In the case of the hole 3222 , a plurality of holes may be provided as well, may be arranged in a pattern corresponding to a preset pattern formed of the discharge hole 3232 , and the fluid pumped by the pumping unit 310 may be discharged through the discharge hole 3232 . ) direction is acceptable.
이 때 토출홀(3232)과 홀(3222)은 서로 길이방향으로 일치하는 위치에 배치될 수 있고, 패턴상에서 엇갈리게 배치될 수도 있다. 길이방향으로 일치하게 위치되는 경우 유체는 홀(3222)을 지나며 가속되고, 토출홀(3232)을 지나며 재차 가속될 수 있다. 또한, 엇갈리게 배치되는 경우, 유체는 홀(3222)을 지나 제3 패턴홈(3226)에 의해 형성되는 공간에서 토출부재(323)의 후면에 부딪혀 분산되고, 분산된 이후 토출홀(3232)을 지나 대상체로 토출될 수 있다. In this case, the discharge hole 3232 and the hole 3222 may be disposed at positions coincident with each other in the longitudinal direction, or may be alternately disposed on the pattern. When positioned to coincide in the longitudinal direction, the fluid may be accelerated through the hole 3222 and accelerated again through the discharge hole 3232 . In addition, in the case of staggered arrangement, the fluid passes through the hole 3222 and collides with the rear surface of the discharge member 323 in the space formed by the third pattern groove 3226 to be dispersed, and then passed through the discharge hole 3232 after being dispersed. may be discharged to the object.
구체적으로, 토출부재(323)와 토출바디(322) 사이 또는 토출바디(322)와 이송부재(321) 사이에는 유체분산공이 형성될 수 있다. 바람직하게는 토출부재(323)와 토출바디(322) 사이 및 토출바디(322)와 이송부재(321) 사이 각각에 유체분산공이 형성될 수 있다. 이러한 유체분산공은 펌핑부(310)로부터 펌핑되는 유체를 복수 개의 토출홈(3232) 각각에 일정하게 분산시켜 제공할 수 있도록 유체가 퍼지는 공간을 형성할 수 있다.Specifically, a fluid distribution hole may be formed between the discharge member 323 and the discharge body 322 or between the discharge body 322 and the transfer member 321 . Preferably, a fluid distribution hole may be formed between the discharge member 323 and the discharge body 322 and between the discharge body 322 and the transfer member 321 . The fluid distribution hole may form a space in which the fluid is spread so that the fluid pumped from the pumping unit 310 can be uniformly distributed to each of the plurality of discharge grooves 3232 and provided.
이러한 유체분산공은 제1 공동 및 제2 공동을 포함하며, 제1 공동은 토출부재(323)와 토출바디(322) 사이에 형성되고, 제2 공동은 토출바디(322)와 이송부재(321) 사이에 형성될 수 있다. 이러한 제1 공동은 이송부재(321)의 일면에 오목하게 형성되는 제1 패턴홈(3214)과 토출바디(322)의 일면에 오목하게 형성되는 제2 패턴홈(3224)이 이송부재(321)와 토출바디(322)가 맞붙음에 따라 형성되고, 제2 공동은 토출바디(322)의 다른 일면에 오목하게 형성되는 제3 패턴홈(3226)이 토출바디(322)와 토출부재(323)가 맞붙음에 따라 형성될 수 있다.The fluid distribution hole includes a first cavity and a second cavity, the first cavity is formed between the discharge member 323 and the discharge body 322 , and the second cavity is the discharge body 322 and the transfer member 321 . ) can be formed between This first cavity has a first pattern groove 3214 concavely formed on one surface of the transfer member 321 and a second pattern groove 3224 formed concavely on one surface of the discharge body 322, the transfer member 321 . and the discharging body 322 are joined together, and the second cavity has a third pattern groove 3226 concavely formed on the other surface of the discharging body 322, the discharging body 322 and the discharging member 323. can be formed by adhering
즉, 제1 패턴홈(3214)은 이송부재(321)의 일면에 형성되고, 제2 패턴홈(3224)과 제3 패턴홈(3226)의 양면에 형성될 수 있다. That is, the first pattern groove 3214 may be formed on one surface of the transfer member 321 , and may be formed on both surfaces of the second pattern groove 3224 and the third pattern groove 3226 .
바람직하게 이러한 제1 공동은 토출부재(323)와 토출바디(322)를 용기(100)의 길이방향으로 오버랩시켰을 때, 토출부재(323)의 토출홀(3232)이 토출바디(322)의 제3 패턴홈(3226) 내부에 위치되는 형태를 가지도록 형성될 수 있다. 즉, 예를 들어, 복수 개의 토출홀(3232)이 선형으로 배치된다면, 제1 공동은 토출홀(3232)의 폭보다 큰 폭을 가지며, 투시 평면도 상에서 토출홀(3232)의 선형이 제1 공동의 선형 내에 들어가도록 형성될 수 있다. 이에 따라, 제3 패턴홈(3226)도 토출홀(3232)의 폭보다 큰 폭을 가지게 형성될 수 있다.Preferably, in this first cavity, when the discharging member 323 and the discharging body 322 are overlapped in the longitudinal direction of the container 100, the discharging hole 3232 of the discharging member 323 is the first of the discharging body 322. 3 It may be formed to have a shape positioned inside the pattern groove (3226). That is, for example, if the plurality of discharge holes 3232 are arranged linearly, the first cavity has a width greater than the width of the discharge hole 3232 , and the linearity of the discharge hole 3232 in a perspective plan view is the first cavity It can be formed to fit within the linearity of . Accordingly, the third pattern groove 3226 may also be formed to have a width greater than the width of the discharge hole 3232 .
마찬가지로, 제2 공동은 토출바디(322)와 이송부재(321)를 용기(100)의 길이방향으로 오버랩시켰을 때, 토출바디(322)의 홀(3222)이 토출바디(322)의 제2 패턴홈(3224) 또는 이송부재(321)의 제1 패턴홈(3214) 내부에 위치되는 형태를 가지도록 형성될 수 있다. 즉, 예를 들어, 제1 공동이 선형으로 배치된다면 제2 공동은 제1 공동의 폭보다 큰 폭을 가지며, 투시 평면도 상에서 제1 공동의 선형이 제2 공동의 선형 내에 들어가도록 형성될 수 있다. 이에 따라, 제1 패턴홈(3214) 또는 제2 패턴홈(3224)도 제3 패턴홈(3226)의 넓이보다 큰 넓이를 가지게 형성될 수 있다. Similarly, when the second cavity overlaps the discharge body 322 and the transfer member 321 in the longitudinal direction of the container 100, the hole 3222 of the discharge body 322 is the second pattern of the discharge body 322. It may be formed to have a shape positioned inside the groove 3224 or the first pattern groove 3214 of the transfer member 321 . That is, for example, if the first cavity is arranged linearly the second cavity has a width greater than the width of the first cavity, and in a perspective plan view the linearity of the first cavity can be formed to fit within the alignment of the second cavity. . Accordingly, the first pattern groove 3214 or the second pattern groove 3224 may also be formed to have an area greater than that of the third pattern groove 3226 .
설계에 따라 제2 패턴홈(3224)이나 제3 패턴홈(3226)은 생략될 수도 있다. Depending on the design, the second pattern groove 3224 or the third pattern groove 3226 may be omitted.
도 1 내지 도 3을 참조하여 돌출벽(324)은 토출홀(3232)을 구비하는 토출부재(323)의 외측 면의 변(판의 모서리 경계부, 토출바디(322)에 대향하는 방향)를 감싸도록 루프형태로, 용기(100)의 길이방향으로 돌출될 수 있다. 구체적으로 용기(100)의 길이방향으로 토출홀(3232)을 통하여 유체가 토출되는 방향으로 돌출될 수 있다. 이에 따라, 이러한 스탬프형 유체 토출장치가 스탬핑 되는 경우, 돌출벽(324)은 대상체와 접촉될 수 있으며, 대상체와 접촉됨에 따라 토출부재(323), 즉 토출홀(3232)과 대상체를 이격시킬 수 있다. 1 to 3, the protruding wall 324 surrounds the side of the outer surface of the discharge member 323 having the discharge hole 3232 (the edge boundary of the plate, the direction opposite to the discharge body 322) It may protrude in the longitudinal direction of the container 100 in the form of a loop. Specifically, it may protrude in the direction in which the fluid is discharged through the discharge hole 3232 in the longitudinal direction of the container 100 . Accordingly, when such a stamp-type fluid discharging device is stamped, the protruding wall 324 may come into contact with the object, and as it comes into contact with the object, the discharging member 323, that is, the discharge hole 3232, may be spaced apart from the object. have.
이에 따라 토출홀(3232)에 저류되는 유체의 오염을 방지할 수 있다. Accordingly, it is possible to prevent contamination of the fluid stored in the discharge hole 3232 .
이러한 돌출벽(324)은 바람직하게 토출바디(322)에서 돌출되도록 토출바디(322)와 일체로 구성될 수 있으며, 더 바람직하게 돌출벽(324)은 토출바디(322)에서 토출부재(323)의 두깨방향 면을 감싸도록 루프형태로 돌출되는 돌출링(3242)과 돌출링(3242)에 착탈가능하게 체결되는 체결링(3244)을 포함할 수 있다. The protruding wall 324 may be formed integrally with the discharging body 322 so as to preferably protrude from the discharging body 322 , and more preferably the protruding wall 324 is a discharging member 323 from the discharging body 322 . It may include a protruding ring 3242 protruding in a loop shape so as to surround the thickness direction of the surface and a fastening ring 3244 that is detachably fastened to the protruding ring 3242 .
예를 들어, 체결링(3244) 외면에 나사산을 구비할 수 있고, 돌출링(3242)은 내면에 나사산을 구비할 수 있어서, 체결링(3244)과 돌출링(3242)은 서로 나사결합할 수 있다. 또한, 체결링(3244)은 외면에 홈 또는 돌기를 구비할 수 있고, 돌출링(3242)은 내면에 체결링(3244)의 홈 또는 돌기에 대응되는 돌기 또는 홈을 구비할 수 있어서, 홈과 돌기의 체결에 의해 고정될 수도 있다. For example, the fastening ring 3244 may have a thread on the outer surface, and the protruding ring 3242 may have a thread on the inner surface, so that the fastening ring 3244 and the protruding ring 3242 can be screwed to each other. have. In addition, the fastening ring 3244 may have a groove or protrusion on the outer surface, and the protruding ring 3242 may have a protrusion or groove corresponding to the groove or protrusion of the fastening ring 3244 on the inner surface, so that the groove and It may be fixed by fastening the protrusion.
체결링(3244)은 바람직하게 돌출링(3242)을 덮을 수도 있다. 이러한 돌출링(3242)은 오염시 사용자의 선택에 따라 체결링(3244)과 분리되어 교체될 수 있고, 또한 체결링(3244)에는 다양한 심미적 구조나 그림이 구비될 수 있어서, 사용자의 선택에 따라 원하는 모양이나 그림을 구비하는 체결링(3244)으로 교체할 수도 있다. The fastening ring 3244 may preferably cover the protruding ring 3242 . This protrusion ring 3242 can be replaced by being separated from the fastening ring 3244 according to the user's choice when contamination, and the fastening ring 3244 can be provided with various aesthetic structures or drawings, so that according to the user's selection It may be replaced with a fastening ring 3244 having a desired shape or picture.
도 1 내지 도 3을 다시 참조하여, 체결링(3244)은 돌출링(3242)에 체결시 토출바디(322)에 안착된 토출부재(323)의 상측 단부를 덮어 이탈을 방지할 수 있다. Referring back to FIGS. 1 to 3 , the fastening ring 3244 covers the upper end of the discharge member 323 seated on the discharge body 322 when it is fastened to the protrusion ring 3242 to prevent separation.
예를 들어, 토출부재(323)의 둘레는 돌출링(3242)과 동일할 수 있고, 체결링(3244)의 내경은 토출부재(323)보다 작을 수 있다. 따라서, 체결링(3244)은 돌출링(3242)과 결합됨에 따라 토출부재(323)가 움직이지 않도록 토출부재(323)를 고정할 수 있다. 반대로 체결링(3244)이 돌출링(3242)과 결합이 해제됨에 따라 토출부재(323)는 토출바디(322)와 분리되어 교체될 수도 있다.For example, the circumference of the discharge member 323 may be the same as that of the protrusion ring 3242 , and the inner diameter of the fastening ring 3244 may be smaller than that of the discharge member 323 . Accordingly, the fastening ring 3244 may fix the discharge member 323 so that the discharge member 323 does not move as it is coupled to the protruding ring 3242 . Conversely, as the coupling ring 3244 is released from the protrusion ring 3242 , the discharge member 323 may be separated from the discharge body 322 and replaced.
또는, 체결링(3244)과 토출부재(323)는 접착 또는 일체형일 수 있으며, 체결링(3244)의 교체에 따라 토출부재(323)도 교체될 수도 있다. Alternatively, the fastening ring 3244 and the discharging member 323 may be bonded or integrally formed, and the discharging member 323 may also be replaced according to the replacement of the fastening ring 3244 .
바람직하게 이러한 토출부재(323)는 금속 플레이트일 수 있다. Preferably, the discharge member 323 may be a metal plate.
추가적으로 토출바디(322)에는 실링(326)이 배치될 수 있다. 바람직하게 평면상에서 토출부재(323)에 형성되는 토출홈(3232)들의 외측에서 복수 개의 토출홈(3232)들을 모두 한 번에 감싸는 고리형으로 형성되어서, 실링(326)은 토출부재(323)와 토출바디(322) 사이에 형성되는 틈에 의해 유체가 새어나오는 것을 방지할 수 있다. Additionally, a seal 326 may be disposed on the discharge body 322 . Preferably, the plurality of discharge grooves 3232 on the outside of the discharge grooves 3232 formed in the discharge member 323 on a plane are formed in an annular shape surrounding all at once, so that the sealing 326 is formed with the discharge member 323 and It is possible to prevent the fluid from leaking through the gap formed between the discharge bodies 322 .
슬라이드벽(325)은 토출바디(322)에서 돌출벽(324)의 반대 방향으로 돌출될 수 있다. The slide wall 325 may protrude from the discharge body 322 in a direction opposite to the protruding wall 324 .
다시 도 1 내지 도 3을 참조하여, 몸체부(330)는 제1 고정부재(332), 제2 고정부재(334) 및 제3 고정부재(336)를 선택적으로 포함할 수 있다.Referring back to FIGS. 1 to 3 , the body 330 may selectively include a first fixing member 332 , a second fixing member 334 , and a third fixing member 336 .
제1 고정부재(332)는 토출부(320)와 캡(400)을 선택적으로 고정할 수 있으며, 제2 고정부재(334)는 캡(400)과 내측용기(120) 및 외측용기(110)를 선택적으로 고정할 수 있고, 제3 고정부재(336)는 펌핑부(310)와 바이알(130)을 선택적으로 고정할 수 있다. The first fixing member 332 can selectively fix the discharge part 320 and the cap 400 , and the second fixing member 334 is the cap 400 , the inner container 120 and the outer container 110 ). can be selectively fixed, and the third fixing member 336 can selectively fix the pumping unit 310 and the vial 130 .
제1 고정부재(332)는 제1 가이드(3322), 제2 가이드(3324) 및 리세스(3326)를 포함할 수 있다. The first fixing member 332 may include a first guide 3322 , a second guide 3324 , and a recess 3326 .
제1 가이드(3322)는 슬라이드벽(325)의 외주를 감싸도록 형성될 수 있고, 제2 가이드(3324)는 슬라이드벽(325)의 내주를 감사도록 형성될 수 있으며, 리세스(3326)는 제1 가이드(3322)와 제2 가이드(3324)를 연결하도록 형성될 수 있다.The first guide 3322 may be formed to surround the outer periphery of the slide wall 325 , and the second guide 3324 may be formed to surround the inner periphery of the slide wall 325 , and the recess 3326 is It may be formed to connect the first guide 3322 and the second guide 3324 .
리세스(3326)는 슬라이드벽(325)이 기설정된 길이만큼만 이동할 수 있도록 깊이가 설정될 수 있다. 즉, 스탬핑 되기 전의 슬라이드벽(325)의 단부와 리세스(3326)의 깊이 방향 끝 사이의 거리는 토출부(320)가 병진운동하는 거리일 수 있다. 즉, 토출부(320)의 이동시 슬라이드벽(325)의 단부가 리세스(3326)의 깊이 방향 끝에 맞닿기 때문에 리세스(3326)의 깊이는 토출부(320)의 병진이동 거리를 한정할 수 있다. The depth of the recess 3326 may be set so that the slide wall 325 can move only by a predetermined length. That is, the distance between the end of the slide wall 325 before being stamped and the end of the recess 3326 in the depth direction may be a distance at which the discharge unit 320 translates. That is, since the end of the slide wall 325 abuts against the depth direction end of the recess 3326 when the discharge unit 320 moves, the depth of the recess 3326 may limit the translational movement distance of the discharge unit 320 . have.
또한, 제1 고정부재(332)는 슬라이드벽(325)의 외주와 내주를 모두 감싸서 슬라이드벽(325)을 가이드하며, 즉, 슬라이드벽(325)과 고정되는 토출바디(322)를 비롯한 토출부(320)의 이동을 가이드할 수 있다. In addition, the first fixing member 332 surrounds both the outer and inner circumferences of the slide wall 325 to guide the slide wall 325 , that is, the discharge unit including the slide wall 325 and the discharge body 322 fixed to it. The movement of 320 may be guided.
제1 고정부재(332)의 외측에는 홈이나 돌기가 형성될 수 있고, 컵형 캡(400)의 내측에도 이에 대응되는 돌기나 홈이 형성될 수 있어서, 캡(400)과 제1 고정부재(332)는 탈착가능할 수 있다. A groove or protrusion may be formed on the outside of the first fixing member 332 , and a corresponding projection or groove may be formed on the inside of the cup-shaped cap 400 , so that the cap 400 and the first fixing member 332 may be formed. ) may be removable.
제2 고정부재(334)는 바람직하게 제1 고정부재(332)와 일체형으로 형성될 수 있으며, 제2 고정부재(334)는 제1 고정부재(332)에서 용기(100) 방향으로 돌출되게 형성될 수 있다.The second fixing member 334 may preferably be formed integrally with the first fixing member 332 , and the second fixing member 334 is formed to protrude from the first fixing member 332 toward the container 100 . can be
제1 고정부재(332)는 내주면에 홈이나 돌기 또는 나사산이 형성될 수 있고, 마찬가지로 내측용기(120)와 외측용기(110)에는 제1 고정부재(332)의 홈이나 돌기 또는 나사산이 형성되어서 제1 고정부재(332)와 외측용기(110) 또는 내측용기(120)는 고정 결합될 수 있다. 이와 마찬가지로 제1 고정부재(332)는 바이알(130)과도 고정 결합될 수 있다. The first fixing member 332 may have grooves, protrusions or threads formed on the inner circumferential surface, and similarly, the inner container 120 and the outer container 110 have grooves, protrusions, or threads of the first fixing member 332 formed thereon. The first fixing member 332 and the outer container 110 or the inner container 120 may be fixedly coupled. Likewise, the first fixing member 332 may also be fixedly coupled to the vial 130 .
제3 고정부재(336)는 제2 고정부재(334) 및 제3 고정부재(332)와 일체형으로 형성될 수 있으며, 나사산 또는 홈이나 돌기를 구비하여 바이알(130)을 고정할 수 있다. 또한, 제3 고정부재(336)는 접착이나 나사산 등을 통해 펌핑부(310)와도 결합될 수 있다. The third fixing member 336 may be formed integrally with the second fixing member 334 and the third fixing member 332 , and may be provided with a screw thread or a groove or protrusion to fix the vial 130 . In addition, the third fixing member 336 may also be coupled to the pumping unit 310 through adhesive or screw thread.
구체적으로, 제3 고정부재(336)와 바이알(130)은 분리 가능하게 나사결합될 수 있으며, 바이알(130)의 병 입구쪽에는 펌핑부(310)의 돌출환(318)이 배치될 수 있다. 돌출환(318)은 펌프바디(316)의 외주면에서 돌출되는 탄성을 가진 재질로 형성될 수 있으며, 바이알(130)과 제3 고정부재(336)의 결합에 따라 바이알(130)의 병 입구에 눌린채로 위치가 고정될 수 있다. Specifically, the third fixing member 336 and the vial 130 may be detachably screwed together, and the protruding ring 318 of the pumping unit 310 may be disposed at the bottle inlet side of the vial 130 . . The protrusion ring 318 may be formed of a material having elasticity that protrudes from the outer circumferential surface of the pump body 316, and according to the combination of the vial 130 and the third fixing member 336, at the bottle inlet of the vial 130. The position may be fixed by being depressed.
돌출환(318)은 탄성을 구비하기 때문에, 바이알(130)의 병 입구를 밀봉하도록 접촉할 수 있어서, 바이알(130) 내부의 유체가 내측용기(120)나 외측용기(110) 방향으로 누출되는 것을 방지할 수 있다. Since the protrusion ring 318 has elasticity, it can contact to seal the bottle inlet of the vial 130, so that the fluid inside the vial 130 leaks in the direction of the inner container 120 or the outer container 110 can prevent
이하에서는 도 5 내지 도 8을 참조하여 일 실시예에 따른 스탬프형 유체 토출장치의 작동 상태에 대해 설명한다.Hereinafter, an operating state of the stamp-type fluid discharging device according to an embodiment will be described with reference to FIGS. 5 to 8 .
도 5는 일 실시예에 따른 스탬프형 유체 토출장치의 용기(100)가 상부로 가게 놓인 상태를 도시하고, 도 6은 일 실시예에 따른 스탬프형 유체 토출장치의 토출부(320)가 가압된 상태를 도시한다.5 shows a state in which the container 100 of the stamp-type fluid discharging device according to an embodiment is placed upward, and FIG. 6 is the discharging unit 320 of the stamp-type fluid discharging device according to the embodiment is pressurized. show the status
또한, 도 7은 일 실시예에 따른 스탬프형 유체 토출장치의 토출부(320)에 작용하는 압력이 해제된 상태를 도시하며, 도 8은 일 실시예에 따른 스탬프형 유체 토출장치가 가압되는 동안 유체가 배출되는 경로를 도시한다.In addition, FIG. 7 shows a state in which the pressure acting on the discharge unit 320 of the stamp-type fluid discharge device according to an embodiment is released, and FIG. 8 is a stamp-type fluid discharge device according to an embodiment while the pressure is applied. The path through which the fluid is discharged is shown.
도 5와 도 6를 비교하여, 돌출벽(324)이 가압되면 토출부(320)는 용기부(100)와 펌핑부(310)의 방향으로 이동될 수 있다. 이 때 펌핑부(310) 내에 있던 유체는 도 8을 참조하여 펌프바디(316), 제1 피스톤 로드(315)의 관, 이송부재(321)의 관로(3212), 제1 공동, 토출바디(322)의 홀(3222), 제2 공동 및 토출부재(323)의 토출홀(3232)을 지나 토출될 수 있다. 5 and 6 , when the protruding wall 324 is pressed, the discharge unit 320 may move in the direction of the container unit 100 and the pumping unit 310 . At this time, the fluid in the pumping unit 310 is the pump body 316, the pipe of the first piston rod 315, the pipe 3212 of the transfer member 321, the first cavity, the discharge body with reference to FIG. It may be discharged through the hole 3222 of the 322 , the second cavity, and the discharge hole 3232 of the discharge member 323 .
구체적으로 펌핑부(310)에서, 제1 피스톤 로드(315)는 토출부(320)와 함께 용기(100) 방향으로 이동할 수 있고, 이에 따라 제2 피스톤 로드(313)의 인입요소(3134)는 제1 피스톤 로드(315)의 관로를 막으며 관로 내의 유체를 토출부(320) 방향으로 밀어낼 수 있다. Specifically, in the pumping unit 310 , the first piston rod 315 may move in the direction of the container 100 together with the discharge unit 320 , and accordingly, the inlet element 3134 of the second piston rod 313 is It blocks the pipeline of the first piston rod 315 and may push the fluid in the pipeline in the direction of the discharge unit 320 .
그 후, 도 7을 참조하여, 스프링에 의해 제1 피스톤 로드(315)와 토출부(320)는 대상체 방향으로 다시 원복될 수 있고, 토출된 유체의 양만큼 펌프바디(316)의 내부공간에는 음압이 형성될 수 있고, 이에 따라 바이알(130) 또는 저장소(210) 내의 유체가 개구(3102)를 통해 펌프바디(316) 내부 공간으로 유입될 수 있다. 이때, 유체는 볼(311)을 토출부(320) 방향으로 밀어낼 수 있고, 마찬가지로 제2 피스톤 로드(313)를 토출부(320) 방향으로 밀어낼 수 있다. Thereafter, with reference to FIG. 7 , the first piston rod 315 and the discharge unit 320 can be restored to the object direction by the spring, and the internal space of the pump body 316 by the amount of the discharged fluid A negative pressure may be established, and thus fluid in the vial 130 or reservoir 210 may be introduced into the internal space of the pump body 316 through the opening 3102 . At this time, the fluid may push the ball 311 in the direction of the discharge unit 320 , and similarly push the second piston rod 313 in the direction of the discharge unit 320 .
이에 따라, 일 실시예에 따른 스탬프형 유체 토출장치는 토출홀(3232)의 패턴과 대응되는 패턴으로 유체를 토출할 수 있고, 대상체에 전사되는 유체 패턴의 번짐을 방지할 수 있으며, 유체를 균일한 유속으로 토출하여서 대상체의 대상부위에 유체 패턴이 불균일하게 전사되는 것을 방지할 수 있다. Accordingly, the stamp-type fluid discharging device according to an embodiment may discharge the fluid in a pattern corresponding to the pattern of the discharge hole 3232, prevent the fluid pattern transferred to the object from spreading, and uniformly distribute the fluid. By discharging at a single flow rate, it is possible to prevent the fluid pattern from being non-uniformly transferred to the target part of the object.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 펌핑부(310)에 저장된 일정한 양의 유체를 토출하여서, 유체의 총량이 불규칙하게 토출되는 것을 방지할 수 있고, 재활용이 가능하며, 대상체가 스탬프형 유체 토출장치의 상방이나 하방에 위치될 때에도 유체를 토출할 수 있다.In addition, the stamp-type fluid discharging device according to an embodiment discharges a certain amount of the fluid stored in the pumping unit 310, thereby preventing the total amount of the fluid from being discharged irregularly, recycling is possible, and the object is stamped Fluid can be discharged even when it is located above or below the type fluid discharging device.
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 외관을 용이하게 변경할 수 있고, 유체의 누출을 방지할 수 있으며, 바이알(130)에 부가되는 외부충격을 완충할 수 있다. In addition, the stamp-type fluid discharging device according to an embodiment can easily change the appearance, prevent leakage of fluid, and buffer external shocks added to the vial 130 .
또한, 일 실시예에 따른 스탬프형 유체 토출장치는 용기(100) 내 유체의 변질을 방지할 수도 있다. In addition, the stamp-type fluid discharging device according to an embodiment may prevent deterioration of the fluid in the container 100 .
이상에서 설명된 스탬프형 유체 토출장치는 상기 설명된 실시예들의 구성과 방법에 한정되는 것이 아니라, 상기 실시예들은 다양한 변형이 이루어질 수 있도록 각 실시예들의 전부 또는 일부가 선택적으로 조합되어 구성될 수도 있다.The above-described stamp-type fluid discharging device is not limited to the configuration and method of the above-described embodiments, and the embodiments may be configured by selectively combining all or part of each embodiment so that various modifications can be made. have.
이상과 같이 본 발명의 실시예에서는 구체적인 구성 요소 등과 같은 특정 사항들과 한정된 실시예 및 도면에 의해 설명되었으나 이는 본 발명의 보다 전반적인 이해를 돕기 위해서 제공된 것일 뿐, 본 발명은 상기의 실시예에 한정되는 것은 아니며, 본 발명이 속하는 분야에서 통상적인 지식을 가진 자라면 이러한 기재로부터 다양한 수정 및 변형이 가능하다. 예를 들어, 설명된 기술들이 설명된 방법과 다른 순서로 수행되거나, 및/또는 설명된 구조, 장치 등의 구성요소들이 설명된 방법과 다른 형태로 결합 또는 조합되거나, 다른 구성요소 또는 균등물에 의하여 대치되거나 치환되더라도 적절한 결과가 달성될 수 있다. 따라서, 본 발명의 사상은 설명된 실시예에 국한되어 정해져서는 아니 되며, 후술하는 청구범위뿐 아니라 이 청구범위와 균등하거나 등가적 변형이 있는 모든 것들은 본 발명 사상의 범주에 속한다고 할 것이다. As described above, in the embodiment of the present invention, specific matters such as specific components, etc., and limited embodiments and drawings have been described, but these are only provided to help a more general understanding of the present invention, and the present invention is limited to the above embodiments Various modifications and variations are possible from these descriptions by those of ordinary skill in the art to which the present invention pertains. For example, the described techniques are performed in an order different from the described method, and/or the described components of structures, devices, etc. are combined or combined in a different form than the described method, or other components or equivalents. Appropriate results can be achieved even if substituted or substituted by Accordingly, the spirit of the present invention should not be limited to the described embodiments, and not only the claims described below, but also all of the claims and all equivalents or equivalent modifications will fall within the scope of the spirit of the present invention.
100 : 용기100: courage
110 : 외측용기110: outer container
120 : 내측용기120: inner container
130 : 바이알130: vial
200 : 저장탱크200: storage tank
210 : 저장소210 : storage
212 : 격벽212: bulkhead
2122 : 연통홀2122: communication hole
220 : 데코220 : Deco
230 : 데코연결벽230: Deco connection wall
300 : 토출유닛300: discharge unit
310 : 펌핑부310: pumping unit
3102 : 개구3102: opening
311 : 볼311 : ball
312 : 제2 스프링312: second spring
313 : 제2 피스톤 로드313: second piston rod
3132 : 제1 턱 3132: first jaw
3134 : 인입요소3134: incoming element
314 : 제1 스프링314: first spring
315 : 제1 피스톤 로드315: first piston rod
3152 : 제2 턱3152: second jaw
316 : 펌프바디316: pump body
317 : 펌프플러그317: pump plug
318 : 돌출환318: protrusion ring
320 : 토출부320: discharge part
321 : 이송부재321: transfer member
3212 : 관로3212: pipeline
3214 : 제1 패턴홈3214: first pattern groove
322 : 토출바디322: discharge body
3222 : 홀3222: Hall
3224 : 제2 패턴홈3224: second pattern groove
3226 : 제3 패턴홈3226: third pattern groove
323 : 토출부재323: discharge member
3232 : 토출홀3232: discharge hole
324 : 돌출벽324: protruding wall
3242 : 돌출링3242: protrusion ring
3244 : 체결링3244: fastening ring
325 : 슬라이드벽325: slide wall
326 : 실링326: sealing
330 : 몸체부330: body part
332 : 제1 고정부재332: first fixing member
3322 : 제1 가이드3322: first guide
3324 : 제2 가이드3324: second guide
3326 : 리세스3326: Recess
334 : 제2 고정부재334: second fixing member
336 : 제3 고정부재336: third fixing member
400 : 캡400 : cap

Claims (10)

  1. 유체를 저장하는 용기; 및a container for storing the fluid; and
    상기 용기에 결합되고, 대상체에 접촉된 후 가압되는 스탬핑 동작에 의해 상기 용기에 저장된 유체를 상기 용기의 길이방향 상으로 토출하도록 형성되는 토출유닛;a discharge unit coupled to the container and configured to discharge the fluid stored in the container in the longitudinal direction of the container by a stamping operation that is pressed after being in contact with the object;
    을 포함하고,including,
    상기 토출유닛은,The discharge unit is
    일부가 상기 용기 내에 설치되어, 상기 스탬핑 동작에 의해 상기 용기 내에 저장된 유체의 일부를 펌핑하도록 형성되는 펌핑부; 및a pumping part which is partly installed in the container and is formed to pump a part of the fluid stored in the container by the stamping operation; and
    상기 펌핑부에 연결되어, 펌핑된 유체를 토출하는 토출부; a discharge unit connected to the pumping unit to discharge the pumped fluid;
    를 포함하며,includes,
    상기 토출부는,The discharge unit,
    상기 용기의 길이방향을 따라 개구되는 토출홀; 및a discharge hole opened along the longitudinal direction of the container; and
    상기 토출홀을 감싸도록 루프 형태로 돌출되어, 대상체에 접촉시 상기 토출홀과 상기 대상체를 이격시키는 돌출벽;a protrusion wall protruding in a loop shape to surround the discharge hole and spaced apart from the discharge hole when in contact with the object;
    을 포함하는, 스탬프형 유체 토출장치.Containing, a stamp-type fluid ejection device.
  2. 제 1항에 있어서, The method of claim 1,
    상기 토출홀은 외부로 갈수록 구멍 폭이 좁아지는 테이퍼진 형태로 형성되는, 스탬프형 유체 토출장치.The discharging hole is formed in a tapered shape in which the width of the hole becomes narrower toward the outside, the stamp-type fluid discharging device.
  3. 제 1항에 있어서, The method of claim 1,
    상기 토출홀은, 복수 개로 구성되어 전체로서 기설정된 패턴을 형성하며, The discharge hole is composed of a plurality to form a predetermined pattern as a whole,
    상기 돌출벽이 대상체에 지지된 상태로 상기 토출유닛이 상기 길이방향을 따라 가압되면, 상기 용기 내의 유체는 상기 토출홀을 통하여 대상체 상에 기설정된 패턴으로 전사되는, 스탬프형 유체 토출장치.When the discharge unit is pressed in the longitudinal direction with the protruding wall supported by the object, the fluid in the container is transferred in a predetermined pattern on the object through the discharge hole.
  4. 제 3항에 있어서, 4. The method of claim 3,
    상기 토출부는, The discharge unit,
    상기 펌핑부에 연결되어, 상기 펌핑부에 의해 펌핑된 유체를 이송하는 이송부재;a transfer member connected to the pumping unit to transfer the fluid pumped by the pumping unit;
    상기 이송부재와 오버랩되고, 상기 기설정된 패턴에 대응되게 배치되는 적어도 하나의 홀을 구비하는 토출바디;a discharge body overlapping the transfer member and having at least one hole disposed to correspond to the preset pattern;
    상기 토출바디와 오버랩되며, 상기 토출홀을 구비하는 토출부재;a discharging member overlapping the discharging body and having the discharging hole;
    를 더 포함하며,further comprising,
    상기 홀은 통과하는 유체의 유속을 증가시키도록 상기 토출홀 방향으로 갈수록 구멍 폭이 좁아지는 테이퍼진 형태를 구비하는, 스탬프형 유체 토출장치.The hole has a tapered shape in which the hole width becomes narrower toward the discharge hole to increase the flow rate of the fluid passing therethrough.
  5. 제 4항에 있어서, 5. The method of claim 4,
    상기 토출부재와 상기 토출바디 사이, 또는 상기 토출바디와 상기 이송부재 사이 중 적어도 하나에는, 상기 펌핑된 유체를 상기 토출홀로 토출되기 전에 분산시키도록 형성되는 유체분산공이 형성되는, 스탬프형 유체 토출장치.At least one of between the discharging member and the discharging body, or between the discharging body and the transfer member, a fluid dispersing hole formed to disperse the pumped fluid before discharging to the discharging hole is formed, a stamp-type fluid discharging device .
  6. 제 5항에 있어서, 6. The method of claim 5,
    상기 유체분산공은,The fluid distribution hole,
    상기 토출부재와 상기 토출바디 사이에 형성되고, 상기 길이방향으로 오버랩시켰을 때 상기 토출홀이 내부에 위치하는 형태를 가지는 제1 공동; a first cavity formed between the discharging member and the discharging body and having a shape in which the discharging hole is located inside when overlapped in the longitudinal direction;
    상기 토출바디와 상기 이송부재 사이에 형성되며, 상기 길이방향으로 오버랩시켰을 때 상기 홀이 내부에 위치하는 형태를 가지는 제2 공동;a second cavity formed between the discharge body and the transfer member and having a shape in which the hole is located inside when overlapped in the longitudinal direction;
    을 포함하는, 스탬프형 유체 토출장치.Containing, a stamp-type fluid ejection device.
  7. 제 1항에 있어서, The method of claim 1,
    상기 펌핑부에 연결되어 상기 용기의 내부에 배치되고, 상기 용기에 저장된 유체의 일부가 유입되어 저장되도록 연통홀을 구비하는 저장탱크를 더 포함하고,A storage tank connected to the pumping part and disposed inside the container, the storage tank having a communication hole so that a part of the fluid stored in the container is introduced and stored,
    상기 펌핑부는 유체가 유입되도록 상기 용기의 내부에 위치하는 개구를 구비하며,The pumping unit has an opening located inside the container so that the fluid is introduced,
    상기 저장탱크에 저장된 유체가 상기 개구를 통하여 상기 펌핑부로 유입되도록, 상기 연통홀은 상기 개구보다 상기 토출부에 가깝게 위치하는, 스탬프형 유체 토출장치.The communication hole is located closer to the discharge unit than to the opening so that the fluid stored in the storage tank flows into the pumping unit through the opening.
  8. 제 1항에 있어서, The method of claim 1,
    상기 토출부는 상기 돌출벽의 반대방향으로 돌출되는 슬라이드벽을 더 포함하며,The discharge unit further includes a slide wall protruding in a direction opposite to the projecting wall,
    상기 토출유닛은 상기 펌핑부의 일부가 상기 용기의 내부에 위치하도록 상기 펌핑부와 결합된 상태로 상기 용기에 결합되는 몸체부를 더 포함하고, The discharge unit further includes a body portion coupled to the container in a state coupled to the pumping portion so that a part of the pumping portion is located inside the container,
    상기 몸체부는 상기 토출부의 가압에 따른 이동과 원복을 가이드하도록 형성되며, The body part is formed to guide the movement and return according to the pressure of the discharge part,
    상기 몸체부는,The body part,
    상기 슬라이드벽의 외주를 감싸도록 형성되는 제1 가이드;a first guide formed to surround the outer periphery of the slide wall;
    상기 슬라이드벽의 내주를 감싸도록 형성되는 제2 가이드; 및a second guide formed to surround the inner periphery of the slide wall; and
    상기 제1 가이드와 제2 가이드를 연결하고, 상기 슬라이드벽이 기설정된 길이만큼 이동시에 상기 슬라이드벽의 단부와 맞닿도록 형성되는 리세스;a recess that connects the first guide and the second guide and is formed to abut against an end of the slide wall when the slide wall moves by a predetermined length;
    를 포함하는, 스탬프형 유체 토출장치.Containing, a stamp-type fluid ejection device.
  9. 제 4항에 있어서, 5. The method of claim 4,
    상기 돌출벽은, The protruding wall,
    상기 토출바디에서 상기 토출홀을 감싸도록 루프 형태로 돌출되는 돌출링; 및a protrusion ring protruding from the discharge body in a loop shape to surround the discharge hole; and
    상기 돌출링에 착탈 가능하게 체결되는 체결링; a fastening ring detachably fastened to the protruding ring;
    을 포함하며, includes,
    상기 체결링은 상기 돌출링에 체결시 상기 토출바디에 안착된 상기 토출부재의 상측 단부를 덮어 이탈을 방지하는, 스탬프형 유체 토출장치.When the fastening ring is fastened to the protruding ring, the stamp-type fluid discharging device covers the upper end of the discharging member seated on the discharging body to prevent separation.
  10. 제 1항에 있어서, The method of claim 1,
    상기 펌핑부는,The pumping unit,
    내부에 유체가 저류되는 공간을 구비하며, 상기 용기와 연통되게 개방되는 개구를 구비하는 펌프바디;a pump body having a space in which a fluid is stored therein and having an opening open to communicate with the container;
    상기 개구에 배치되며, 스탬핑 동작에 따라 상기 용기 내의 유체를 상기 펌프바디로 유입 또는 차단되게 상기 개구를 개폐하는 볼;a ball disposed in the opening and opening and closing the opening so as to introduce or block the fluid in the container into the pump body according to a stamping operation;
    상기 펌프바디의 내측 벽면에서 돌출되는 관 형태의 펌프플러그;a pump plug in the form of a tube protruding from the inner wall of the pump body;
    상기 펌프바디를 관통하도록 위치되며, 상기 토출부와 연결되어서 길이방향으로 이동하는 제1 피스톤 로드;a first piston rod positioned to pass through the pump body and connected to the discharge part to move in the longitudinal direction;
    상기 펌프플러그 및 상기 제1 피스톤 로드와 접촉되어서 상기 제1 피스톤 로드를 상기 토출부 방향으로 밀어내는 탄성을 제공하는 제1 스프링;a first spring in contact with the pump plug and the first piston rod to provide elasticity for pushing the first piston rod toward the discharge part;
    상기 펌프바디 내에 위치되며 상기 제1 피스톤 로드의 관 및 상기 펌프플러그로 형성되는 유로 또는 펌프바디의 개구를 교차하여 개폐하도록 상기 길이 방향으로 이동되는 제2 피스톤 로드; 및a second piston rod positioned in the pump body and moved in the longitudinal direction to cross open and close a passage formed by the pipe of the first piston rod and the pump plug or an opening of the pump body; and
    상기 펌프플러그 및 상기 제2 피스톤 로드와 접촉되어서 상기 제2 피스톤 로드를 상기 제1 피스톤 로드에 대향하는 방향으로 밀어내는 탄성을 제공하는 제2 스프링;a second spring in contact with the pump plug and the second piston rod to provide elasticity for pushing the second piston rod in a direction opposite to the first piston rod;
    을 포함하고, including,
    상기 개구로 상기 볼을 지나 유입되는 유체는 상기 펌프바디를 지나 상기 제1 피스톤 로드를 통해 상기 토출부로 펌핑되는, 스탬프형 유체 토출장치.The fluid flowing through the ball into the opening is pumped to the discharge unit through the first piston rod through the pump body, a stamp-type fluid discharging device.
PCT/KR2020/018281 2020-12-14 2020-12-14 Stamp-type fluid discharge apparatus WO2022131385A1 (en)

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PCT/KR2020/018281 WO2022131385A1 (en) 2020-12-14 2020-12-14 Stamp-type fluid discharge apparatus
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