Liquid dispensing container and liquid dispensing container package comprising same
The liquid dispensing container with a pressurizing member and support system addresses the issues of spillage and handling difficulties for viscous liquids, ensuring precise dispensing and stability during use and storage.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-22
- Publication Date
- 2026-04-02
AI Technical Summary
Viscous liquids such as sesame oil, perilla oil, and olive oil spill easily and dispense in undesired amounts due to their viscosity, and existing containers are difficult for women with small hands to grip and are prone to leakage and crushing during storage.
A liquid dispensing container with a pressurizing member and a support system that allows precise dispensing, stable gripping, and prevents leakage, featuring a pressurizing shaft with alternating steps and a residual pressure removal mechanism.
Enables accurate dispensing of desired liquid amounts, stable handling for users with small hands, and prevents leakage during storage and transport, while maintaining container integrity.
Smart Images

Figure KR2025014782_02042026_PF_FP_ABST
Abstract
Description
Liquid dispensing container and liquid dispensing container package including the same
[0001] The present invention relates to a liquid dispensing container, and more specifically, to a liquid dispensing container capable of dispensing a liquid, such as perilla oil or sesame oil, in a quantity desired by the user, and a liquid dispensing container package including the same.
[0002]
[0003] Various types of liquids are used in daily life, and liquid storage containers are used to hold them. Among these, viscous liquids such as sesame oil, perilla oil, avocado oil, and olive oil pose a problem where they spill outwards due to their viscosity when dispensed for use, making it difficult to keep the container clean.
[0004] In addition, since general oil containers are provided in the form of bottles, there is a problem where a larger amount than desired is discharged at once when the user tilts the bottle to pour out the liquid inside.
[0005]
[0006] The objective of the present invention is to solve the aforementioned problem by providing a liquid dispensing container capable of neatly dispensing various types of liquids in desired amounts, and a liquid dispensing container package including the same.
[0007] Another objective of the present invention is to provide a liquid dispensing container and a liquid dispensing container package including the same, which allows female users with small hands to position their hands in a position that is easy to grip and use.
[0008] Another objective of the present invention is to provide a liquid dispensing container that can be stably packaged without being crushed when packaged in a packaging box, and a liquid dispensing container package including the same.
[0009] Another objective of the present invention is to provide a liquid dispensing container and a liquid dispensing container package including the same, which can be used so that when a user presses a pressurizing member by hand to discharge liquid, it moves in the correct direction without leaning to one side and does not leak liquid.
[0010] The above-mentioned objectives and various advantages of the present invention will become more apparent to those skilled in the art from the preferred embodiments of the present invention.
[0011]
[0012] The objective of the present invention can be achieved by a dispensing container that dispenses a desired amount of liquid. The dispensing container of the present invention comprises: a cylindrical container body (110) having a liquid discharge port (111) formed therein for receiving liquid and discharging liquid at the front; and a pressurizing member (120) coupled to the rear of the container body (110), advancing by an external force, and pressurizing the liquid so that the liquid inside the container body (110) is discharged through the liquid discharge port (111). The pressurizing member (120) comprises: a pressurizing shaft (125) having a width corresponding to the inner diameter of the container body (110); and a front pressurizing plate (121) provided in front of the pressurizing shaft (125) with an area corresponding to the inner diameter of the container body (110) to pressurize the liquid when the pressurizing member (120) advances. A front pressure ring (121a) provided in front of the front pressure plate (121) and in contact with the inner wall surface of the container body (110) to support the pressure member (120) so that it can move smoothly; The above-mentioned pressure shaft (125) is provided with a plurality of pressure steps (127, 127-1, 127-2) that are alternately protruded on the left and right sides along the longitudinal direction of the pressure shaft (125) in a semicircular shape, with an outer diameter corresponding to the inner diameter of the container body (110), and which contact and support the entire inner wall surface of the container body (110) when the pressure member (120) advances; a finger insertion space (128) is formed between the plurality of pressure steps (127, 127-1, 127-2) for inserting a finger to press the pressure steps (127, 127-1, 127-2), and an inclined guide shaft (124) is formed between the front pressure ring (121a) and the front pressure plate (121), and a residual pressure removal ring (122) is coupled to the outer surface of the guide shaft (124), and the The residual pressure removal ring (122) is characterized by moving back and forth along the guide axis (124) in conjunction with the back-and-forth movement caused by the pressure of the pressure member (120) and being elastically deformed.
[0013] According to one embodiment, the liquid discharge port (111) is provided at an angle to the front outer periphery of the container body (110), and a detachable cap (113) may be attached to the liquid discharge port (111).
[0014] According to one embodiment, the guide shaft (124) may be provided with expansion wings (124a) in four directions of the guide shaft (124), the width and thickness of which gradually increase from the front to the rear of the guide shaft (124).
[0015] According to one embodiment, the container body (110) may further include a cap fixing projection (115) that is provided to protrude from the front center area of the container body (110) and to which a cap (113) separated from the liquid discharge port (111) is coupled.
[0016] Meanwhile, the objective of the present invention can be achieved by a liquid dispensing container package. The liquid dispensing container package of the present invention comprises a dispensing container (100); and a support (200, 200a) that supports the dispensing container (100) so that it stands on its own. The support (200, 200a) is characterized by comprising a mounting plate (210) having a certain surface area and having an insertion hole (220) formed through the plate surface into which the container body (110) is inserted; and a plurality of legs (230) extending downward from the corner area of the support plate (210).
[0017] According to one embodiment, the mounting bracket (200, 200a) is provided with a pair of upper mounting brackets (200a) and lower mounting brackets (200), and the legs (230) of the upper mounting bracket (200a) and the lower mounting bracket (200) may be provided to be in contact with and supported on the inner wall surface, bottom surface, and upper surface of the packaging box (300), respectively.
[0018]
[0019] The liquid dispensing container package according to the present invention has the advantage of easily dispensing only a desired amount of liquid because the user applies pressure to the pressurizing member coupled to the container body.
[0020] In addition, women with small hands can stably grip and use the device through multiple pressure steps formed in the pressure member and finger insertion holes formed between them.
[0021] In addition, multiple pressure steps are positioned alternately left and right, and the inner wall surface of the container body is contacted and supported from all directions, so that when a user presses the pressure member, it can move in a straight line without leaning in one direction.
[0022] In addition, the liquid dispensing container package includes a lower support and an upper support to prevent the pressurizing member of the dispensing container from being pressed during storage or transport.
[0023] In addition, the lower and upper stands can be used to support the dispensing container independently when using it in daily life.
[0024]
[0025] FIG. 1 is an exemplary diagram illustrating a state in which a liquid dispensing container according to the present invention is packaged in a packaging box.
[0026] FIG. 2 is an exemplary diagram illustrating the process of packaging a liquid dispensing container according to the present invention using a stand.
[0027] FIG. 3 is an exemplary diagram illustrating the process of using a liquid dispensing container according to the present invention with a stand.
[0028] FIG. 4 is an exemplary diagram illustrating the state of holding a liquid dispensing container according to the present invention by hand.
[0029] FIG. 5 is an exploded perspective view illustrating the configuration of a liquid dispensing container according to the present invention.
[0030] FIGS. 6 and FIGS. 7 are cross-sectional examples illustrating the process of discharging liquid through a liquid dispensing container according to the present invention.
[0031] FIGS. 8 and 9 are cross-sectional examples illustrating the operation process of a pressurizing step when a liquid is discharged through a liquid dispensing container according to the present invention, and
[0032] FIGS. 10 to 12 are drawings illustrating the residual pressure removal process of a liquid dispensing container according to the present invention.
[0033]
[0034] To fully understand the present invention, preferred embodiments of the invention are described with reference to the accompanying drawings. Embodiments of the present invention may be modified in various forms, and the scope of the present invention should not be interpreted as being limited to the embodiments described in detail below. These embodiments are provided to more completely explain the present invention to those with average knowledge in the art. Accordingly, the shapes of elements in the drawings may be exaggerated to emphasize clearer explanations. It should be noted that in each drawing, identical components may be depicted with the same reference numeral. Detailed descriptions of known functions and configurations that are deemed to unnecessarily obscure the essence of the present invention are omitted.
[0035]
[0036] FIG. 1 is an exemplary illustration showing a packaged state of a liquid dispensing container package (1) according to the present invention, FIG. 2 is an exemplary illustration showing the process of packaging a liquid dispensing container (100) using a stand (200, 200a), FIG. 3 is an exemplary illustration showing the process of using a liquid dispensing container (100) in real life using a stand, and FIG. 4 is an exemplary illustration showing the process of a user holding and using a liquid dispensing container (100) with their hand.
[0037] A liquid dispensing container package (1) according to the present invention comprises a liquid dispensing container (100) containing a liquid (A) and a pair of supports (200, 200a) that support the liquid dispensing container (100) so that it is mounted independently inside a packaging box (300).
[0038] Here, the liquid (A) contained in the liquid dispensing container (100) can be various types of liquid used in daily life, such as sesame oil, perilla oil, avocado oil, olive oil, soy sauce, vinegar, etc.
[0039] As shown in FIG. 4, the liquid dispensing container (100) includes a container body (110) in which a liquid (A) is received, and a pressurizing member (120) coupled to the rear end of the container body (110) and advanced by pressure applied by the user's hand to discharge the liquid inside the container body (110). The liquid dispensing container (100) is provided in the form of a syringe so that the liquid is discharged to the outside and dispensed in proportion to the amount of pressure applied by the user. This provides the advantage of being able to dispense a precise amount compared to conventional liquid storage containers in which the user tilts the bottle to pour the liquid inside.
[0040]
[0041] FIG. 5 is an exploded perspective view illustrating the configuration of a liquid dispensing container (100). As shown in FIG. 4 and FIG. 5, the liquid dispensing container (100) includes a container body (110) in which liquid is received, and a pressurizing member (120) coupled to the rear of the container body (110) and pressurized by a user to advance and discharge liquid out of the container body (110).
[0042] The container body (110) is provided in a cylindrical shape having a certain length and contains a liquid (A) inside. A liquid discharge port (111) for discharging the liquid (A) to the outside is formed at the front of the container body (110), and a flange (117) supporting a pressurizing member (120) is formed extending horizontally over a certain area at the rear.
[0043] Here, as shown in FIG. 4, the liquid discharge port (111) is provided on the front outer periphery of the container body (110). That is, the liquid discharge port (111) is positioned so as to be biased toward the outer periphery rather than at the center of the container body (110). This biased design of the liquid discharge port (111) is because when a user discharges liquid to the outside, if the liquid discharge port (111) is at the center, the liquid discharge port (111) is obscured by the front surface of the container body (110), making it impossible to accurately check the amount of liquid discharged visually.
[0044] A cap (113) is detachably connected to the liquid outlet (111), and a cap fixing projection (115) for storing the cap (113) is provided in the front center area of the container body (110). When storing the liquid (A), the liquid outlet (111) is blocked with the cap (113) to prevent the liquid from being discharged, as shown in FIG. 4 and FIG. 6. On the other hand, when a desired amount of liquid (A) needs to be discharged to the outside, the cap (113) is separated from the liquid outlet (111) and then inserted into the cap fixing projection (115) for storage, as shown in FIG. 7.
[0045] The cap fixing projection (115) is provided to store the cap (113) when discharging liquid to prevent the loss of the cap (113). The liquid discharge port (111) is provided in the form of a tube having a certain length so that the liquid (A) can be discharged to a desired location, and the cap fixing projection (115) is provided in the form of a low projection to accommodate the cap (113).
[0046]
[0047] The pressurizing member (120) is inserted through the rear of the container body (110) to pressurize the liquid and discharge the liquid. The pressurizing member (120) includes a front pressurizing plate (121) having an area corresponding to the cross-sectional shape of the container body (110), a rear pressurizing plate (123) that is pressed by a user's hand, a pressurizing shaft (125) connecting the front pressurizing plate (121) and the rear pressurizing plate (123), and a plurality of pressurizing steps (127, 127-1, 127-2) arranged to alternately protrude left and right along the longitudinal direction of the pressurizing shaft (125).
[0048] The front pressure plate (121) pressurizes the liquid (A) when the pressure member (120) advances inside the container body (110) by the user's pressure, causing the liquid (A) to be discharged through the liquid discharge port (111). The front pressure plate (121) is provided as a disc having an outer diameter corresponding to the inner diameter of the container body (110).
[0049] A front pressure ring (121a) is provided at the front of the front pressure plate (121) to support the pressure member (120) so that it can move smoothly by contacting the inner wall surface of the container body (110). Additionally, a guide shaft (124) is provided between the front pressure ring (121a) and the front pressure plate (121), connected at a certain angle of inclination to which a residual pressure removal ring (122) is coupled. The rear pressure plate (123) is provided as a plate-shaped member with the same surface area as the front pressure plate (121).
[0050] The pressure shaft (125) connects the front pressure plate (121) and the rear pressure plate (123) and supports the transmission of pressure applied by the user to the front pressure plate (121). As shown in FIG. 6, the pressure shaft (125) is provided in the form of a plate having a width corresponding to the inner diameter of the container body (110). The pressure shaft (125) supports the transmission of pressure to the front pressure plate (121) and contacts and supports the inner wall surface of the container body (110) to prevent leakage of the liquid (A).
[0051]
[0052] As shown in FIGS. 5 and 8, a plurality of pressure steps (127, 127-1, 127-2) are alternately provided on the left and right sides around the pressure axis (125) and support the user to advance stably without tilting in any direction when the user presses the pressure member (120), while uniformly contacting the inner wall surface of the container body (110). Each pressure step (127, 127-1, 127-2) is provided to have a semicircular cross-section having an outer diameter corresponding to the inner diameter of the container body (110).
[0053] A finger insertion space (128) is formed between adjacent pressure steps (127, 127-1, 127-2) in which a user can insert a finger. As shown in FIG. 4, when a user pushes the pressure member (120) to discharge liquid (A) to the outside, the total length (L) of the pressure member (120) is long, making it difficult for a woman's hand to press the flange (117) and the rear pressure plate (123).
[0054] Accordingly, a finger insertion space (128) is formed between the pressure steps (127, 127-1, 127-2) so that the user's finger (f1) can be inserted. As shown in FIG. 4, the user's thumb (f1) is inserted into the finger insertion space (128) at a desired position, and while the remaining fingers are holding the flange (117), the thumb (f1) can be pushed to advance the pressure member (120).
[0055] At this time, the user can estimate the discharge amount of liquid (A) through the depth to which the pressurized step (127, 127-1, 127-2) is inserted into the interior.
[0056] Here, the lower pressure step (127) located at the bottom has a horizontal upper surface (127a), and the remaining pressure steps (127-1, 127-2) have an inclined upper surface (127b). As shown in FIG. 8, when the liquid (A) is filled into the container body (110) in the initial state, the pressure member (120) is maintained in a state where the lower pressure step (127) and a part of the next pressure step (127-1) are inserted into the flange (117).
[0057] The lower pressure step (127) and the next pressure step (127-1), located in opposite directions, each contact and support the inner wall surface of the container body (110). In this state, as shown in FIG. 9, when the pressure member (120) advances due to the user's pressure, the pressure member (120) moves while maintaining contact with the inner wall surface of the container body (110) in all directions, so the pressure member (120) moves in a stable straight line without leaning to one side.
[0058] If the pressurizing member (120) shifts to one side, the liquid inside the container body (110) moves toward the pressurizing member (120), and leakage may occur. In the present invention, this problem can be solved by pressurizing steps (127, 127-1, 127-2) formed alternately on both sides so that the user can easily grasp them with their hands and move them stably without shifting.
[0059]
[0060] Meanwhile, the lower support (200) and the upper support (200a) support the dispensing container (100) so that the pressurizing member (120) is not pressed by an external force during storage when the dispensing container (100) is packaged in the packaging box (300). The lower support (200) and the upper support (200a) are formed with the same configuration.
[0061] The lower support (200) is formed horizontally as shown in FIG. 2 and includes a mounting plate (210) having a plurality of insertion holes (220) formed on the plate surface, and a plurality of legs (230) extending downward from the corner area of the mounting plate (210).
[0062] Here, a mounting projection (221) is formed at an angle in the edge area of the insertion hole (220) to guide the user to easily insert the dispensing container (100) into the insertion hole (220).
[0063] The width (W2) of the lower support (200) is formed to correspond to the width (W1) of the packaging box (300), and the height (h2) of the leg (230) is formed to correspond to half the height (h1) of the packaging box (300). The height (h2) of the lower support (200) is provided at a height such that when the dispensing container (100) is inserted into the insertion hole (220), the bottom of the dispensing container (100) does not touch the floor as shown in FIG. 1.
[0064] When packaging in a packaging box (300), as shown in FIG. 2, the lower support (200) is positioned facing upward, and the upper support (200a) is flipped downward and positioned to face the lower support (200).
[0065] When placed in the packaging box (300) in this state, the legs (230) of the lower support (200) and the upper support (200a) are supported in contact with the inner wall surface of the packaging box (300), and the dispensing containers (100) inserted into each insertion hole (220) are maintained in a self-standing state. Additionally, the liquid discharge port (111) and the rear pressure plate (123) of the dispensing container (100) are positioned spaced apart from the bottom surface and the top surface of the packaging box (300).
[0066] Accordingly, even if an external force is applied during transportation or storage, the upper surface of the packaging box (300) and the pressure member (120) are separated, so the pressure member (120) is not pressed and can maintain its initial state.
[0067]
[0068] Meanwhile, when a user purchases a packaged liquid dispensing container package (1) as shown in FIG. 1, the upper stand (200a) is detached and the dispensing container (100) is used in a state where it is attached to the lower stand (200). Then, as shown in FIG. 3, the upper stand (200a) can be used to support the dispensing container (100) to be used after being placed on the ground in an upward direction, just like the lower stand (200).
[0069] For example, the lower stand (200) is placed in a refrigerator and used to hold unused dispensing containers (100), and the upper stand (200a) is placed on a sink or countertop and used to stand dispensing containers (100a) upright. The user can use the dispensing containers (100) on the sink or countertop upright without having to place them lying down, thereby enhancing convenience during use.
[0070]
[0071] Meanwhile, the liquid dispensing container package (1) of the present invention has a residual pressure removal function to solve the problem in which a larger amount of liquid (A) contained inside is discharged than the desired capacity due to residual pressure remaining inside the container body (110) caused by the pressure of the pressurizing member (120).
[0072] As shown in FIG. 10, an inclined guide shaft (124) is formed between the front pressure ring (121a) and the front pressure plate (121), and a residual pressure removal ring (122) is coupled to the outer surface of the guide shaft (124).
[0073]
[0074] Here, the guide shaft (124) is provided such that its outer diameter gradually increases from the front to the rear. The guide shaft (124) moves forward by the pressure of the pressure member (120), and supports the residual pressure removal ring (122) coupled to the outer surface to move backward and elastically extend.
[0075] FIG. 11 is a cross-sectional view illustrating the cross-sectional configuration of a guide shaft (124). As illustrated, expansion wings (124a) are provided in four directions of the guide shaft (124). The expansion wings (124a) are provided such that their width and thickness gradually increase from the front to the rear of the guide shaft (124). The foremost cross-sectional shape of the guide shaft (124) that contacts the front pressure ring (121a) is provided as a circle having an outer diameter corresponding to the inner diameter of the residual pressure removal ring (122). At this time, the residual pressure removal ring (122) coupled to the front of the guide shaft (124) is positioned in an initial state without elastic deformation, as illustrated in FIG. 12.
[0076] The rear cross-sectional shape of the guide shaft (124) connected to the front pressure plate (121) is provided in the form of a horn protruding in four directions by expansion wings (124a) as shown in FIG. 11. Due to the shape of the expansion wings (124a), which gradually increase in width and thickness as they move toward the rear of the guide shaft (124), the degree of elastic deformation of the residual pressure removal ring (122) coupled to the outer surface of the guide shaft (124) increases. As a result, as shown in FIG. 9, the shape of the residual pressure removal ring (122) is elastically deformed to correspond to the shape of the guide shaft (124).
[0077]
[0078] The residual pressure removal ring (122) is coupled to the outer surface of the guide shaft (124) and moves back and forth along the guide shaft (124) in conjunction with the back and forth movement caused by the pressure of the pressure member (120), and is elastically deformed, so that the residual pressure inside the container body (110) is removed as the pressure member (120) moves backward.
[0079] The residual pressure removal ring (122) is provided in the form of an elastic ring as shown in FIG. 10. The residual pressure removal ring (122) is provided in the form of a ring having a thickness corresponding to the front of the guide shaft (124) and the inner diameter of the container body (110) in the initial state as shown in FIG. 8.
[0080] As illustrated in FIG. 9, when the pressurizing member (120) is pressurized by a user, the pressurizing member (120) moves forward along the inner diameter of the container body (110) and the liquid (A) is discharged through the liquid outlet (111) of the container body (110).
[0081] At this time, the residual pressure removal ring (122) is pushed to the rear of the guide shaft (124) by the moving pressure of the pressurizing member (120) and the frictional force with the inner wall surface of the container body (110), and moves forward together with the pressurizing member (120) while in contact with the front pressurizing plate (121), thereby allowing the liquid (A) to be discharged.
[0082] When the residual pressure removal ring (122) is moved backward, if there is a large difference in width with the expansion wings (124a) formed in four directions of the guide shaft (124), the amount of backward movement of the residual pressure removal ring (122) in four directions surrounding the expansion wings (124a) is not large, and only the portion of the residual pressure removal ring (122) where the expansion wings (124a) are not formed is pushed backward. That is, the amount of backward movement of the residual pressure removal ring (122) in the remaining area becomes larger than the amount of backward movement of the area of the residual pressure removal ring (122) surrounding the expansion wings (124a), thereby making the amount of deformation of the residual pressure removal ring (122) even greater.
[0083] Accordingly, the residual pressure removal ring (122) is elastically extended and thinned, and is maintained in a state of being elastically deformed into a wave shape between the guide shaft (124) and the container body (110).
[0084] In this state, the residual pressure removal ring (122) advances together with the pressurizing member (120) and supports the discharge of liquid (A).
[0085] When the user completes pressurizing the pressurizing member (120) to a position where the desired amount of liquid (A) is discharged, the user stops pressurizing the pressurizing member (120). When the user releases the pressurization of the pressurizing member (120), the residual pressure removal ring (122), which is elastically extended and deformed at the rear end of the guide shaft (124), applies an elastic force toward the guide shaft (124) so that it can be moved forward of the guide shaft (124) to be compressed to its initial inner diameter.
[0086] As a result, as shown in FIG. 12, the pressurizing member (120) moves backward by the elastic force of the residual pressure removal ring (122), and the residual pressure removal ring (122) is positioned in front of the guide shaft (124).
[0087] In this way, as the pressure member (120) is retracted by the length of the guide shaft (124) by the elastic force of the residual pressure removal ring (122), the residual pressure applied to the pressure member (120) is removed, preventing additional discharge of liquid through the container body (110) and allowing only an accurate amount of liquid (A) to be discharged.
[0088] Here, as the thickness and width of the expansion wing (124a) of the guide shaft (124) increase, the degree to which the residual pressure removal ring (122) is elastically deformed increases, and the residual pressure removal effect can also be improved.
[0089]
[0090] The process of using the liquid dispensing container package (1) according to the present invention having such a configuration is explained with reference to FIGS. 1 to 9.
[0091] When the manufacturing of the dispensing container (100) is completed at the manufacturer, the lower support (200) and the upper support (200a) are arranged facing each other as shown in FIG. 1, and a plurality of dispensing containers (100) are inserted into each insertion hole (220) and then packaged in a packaging box (300).
[0092] By this, the dispensing container (100) is packaged so as not to move inside the packaging box (300), and is positioned spaced apart from the bottom and top surfaces of the packaging box (300), so that the pressure member (120) is pressed and the liquid (A) leaks out even with shock or vibration that occurs during storage or transportation.
[0093] After the user purchases it, the packaging box (300) is removed as shown in FIG. 3, and the upper stand (200a) is separated and the direction is changed to face upward for use. The lower stand (200) is used for storing unused dispensing containers (100), and the upper stand (200a) can be used for holding dispensing containers (100) in use.
[0094] As illustrated in FIG. 4, the user can hold the pressure member (120) with one hand and press the pressure member (120) to discharge the liquid (A) to the outside. At this time, the user can insert a finger (f1) into the finger insertion hole (220) formed between the plurality of pressure steps (127, 127-1, 127-2) of the pressure member (120) and press the pressure member (120) while holding the flange (117) with the hand to advance the pressure member (120).
[0095] The user separates the cap (113) attached to the liquid outlet (111) as shown in FIG. 6 and fixes the cap (113) to the cap fixing projection (115), and then presses the pressurizing member (120) as shown in FIG. 6 so that the liquid (A) is discharged through the liquid outlet (111).
[0096] In this process, as shown in FIGS. 8 and 9, when the pressurizing member (120) advances, the outer surface of the plurality of pressurizing steps (127, 127-1, 127-2) contacts and supports the inner wall surface of the container body (110), so that the pressurizing member (120) moves stably in a straight line without leaning in one direction and leakage of the liquid (A) is prevented.
[0097] The user visually checks the amount of liquid (A) discharged through the liquid discharge port (111) formed on the front outer periphery of the container body (110) and pressurizes the pressurizing member (120) until the desired amount is discharged. When the desired amount is discharged, the user releases the pressurization of the pressurizing member (120), reattaches the cap (113) to the liquid discharge port (111), and then stores it by placing it on the upper stand (200a) or the lower stand (200).
[0098]
[0099] As described above, the liquid dispensing container package according to the present invention has the advantage of easily dispensing only a desired amount of liquid because the user applies pressure to the pressurizing member coupled to the container body.
[0100] In addition, women with small hands can stably grip and use the device through multiple pressure steps formed in the pressure member and finger insertion holes formed between them.
[0101] In addition, multiple pressure steps are positioned alternately left and right, and the inner wall surface of the container body is contacted and supported from all directions, so that when a user presses the pressure member, it can move in a straight line without leaning in one direction.
[0102] In addition, the liquid dispensing container package includes a lower support and an upper support to prevent the pressurizing member of the dispensing container from being pressed during storage or transport.
[0103] In addition, the lower and upper stands can be used to support the dispensing container independently when using it in daily life.
[0104] In addition, the pressurizing member retracts due to the elastic force of the residual pressure removal ring, thereby removing internal residual pressure and having the advantage of discharging only the precise amount of liquid desired by the user.
[0105]
[0106] The embodiments of the liquid dispensing container package of the present invention described above are merely illustrative, and those skilled in the art will readily understand that various modifications and equivalent alternative embodiments are possible therefrom. Therefore, it will be well understood that the present invention is not limited only to the forms mentioned in the detailed description above. Accordingly, the true technical scope of protection of the present invention should be determined by the technical spirit of the appended claims. Furthermore, the present invention should be understood to include all modifications, equivalents, and substitutions within the spirit and scope of the present invention as defined by the appended claims.
[0107]
[0108] [Explanation of the symbol]
[0109] 1 : Liquid dispensing container package, 100 : Dispensing container.
[0110] 110: Container body, 111: Liquid outlet.
[0111] 113 : Cap, 115 : Cap fixing projection.
[0112] 117 : Flange, 120 : Pressure member.
[0113] 121 : Front pressure plate, 121a : Front pressure ring.
[0114] 122: Residual pressure relief ring, 123: Rear pressure plate.
[0115] 124: Guide axis, 124a: Extension wing.
[0116] 125 : Pressure shaft, 127, 127a, 127b : Pressure step.
[0117] 128 : Finger insertion space, 200 : Lower support.
[0118] 200a : Upper mounting bracket, 210 : Mounting plate.
[0119] 220: Insertion hole, 221: Mounting tab.
[0120] 230 : Leg, 300 : Packaging box.
[0121] A: Liquid
Claims
1. In a dispensing container that dispenses a desired amount of liquid, A cylindrical container body (110) having a liquid outlet (111) formed therein for accommodating liquid and discharging liquid at the front; It includes a pressurizing member (120) that is coupled to the rear of the container body (110), moves forward by an external force, and pressurizes the liquid so that the liquid inside the container body (110) is discharged through the liquid discharge port (111). The above-mentioned pressure member (120) is, A compression shaft (125) having a width corresponding to the inner diameter of the above-mentioned container body (110); A front pressure plate (121) provided in front of the pressure shaft (125) with an area corresponding to the inner diameter of the container body (110) to pressurize the liquid when the pressure member (120) advances; A front pressure ring (121a) provided in front of the front pressure plate (121) and in contact with the inner wall surface of the container body (110) to support the pressure member (120) so that it can move smoothly; It includes a plurality of pressure steps (127, 127-1, 127-2) that are alternately provided on the left and right sides along the longitudinal direction of the pressure shaft (125) to protrude in a semicircular shape, with the cross-section having an outer diameter corresponding to the inner diameter of the container body (110), and which contact and support the entire inner wall surface of the container body (110) when the pressure member (120) advances. Between the plurality of pressure steps (127, 127-1, 127-2), a finger insertion space (128) is formed to insert a finger to apply pressure to the pressure steps (127, 127-1, 127-2). An inclined guide shaft (124) is formed between the front pressure ring (121a) and the front pressure plate (121), and a residual pressure removal ring (122) is coupled to the outer surface of the guide shaft (124). The above residual pressure removal ring (122) is characterized by moving back and forth along the guide axis (124) in conjunction with the back and forth movement according to the pressure of the above pressure member (120) and being elastically deformed.
2. In Paragraph 1, The liquid discharge port (111) is provided at an angle to the front outer periphery of the container body (110), and A dispensing container characterized by having a detachable cap (113) attached to the liquid discharge port (111).
3. In Paragraph 1, The above guide shaft (124) is, A dispensing container characterized by having expansion wings (124a) in four directions of the guide shaft (124) that gradually increase in width and thickness from the front to the rear of the guide shaft (124).
4. In Paragraph 2, A dispensing container characterized by further including a cap fixing projection (115) that is provided to protrude from the front center area of the container body (110) and to which a cap (113) separated from the liquid discharge port (111) is coupled.
5. A dispensing container (100) according to any one of paragraphs 1 to 4; It includes a stand (200, 200a) that supports the dispensing container (100) so that it stands on its own, The above mounting bracket (200, 200a) is, A mounting plate (210) having a certain surface area and having an insertion hole (220) formed through the plate surface into which the container body (110) is inserted; A dispensing container package characterized by including a plurality of legs (230) extending downward from the corner area of the mounting plate (210).
6. In Paragraph 5, The above-mentioned mounting bracket (200, 200a) is provided with a pair of upper mounting bracket (200a) and lower mounting bracket (200), and A dispensing container package characterized in that the legs (230) of the upper support (200a) and the lower support (200) are each provided to be in contact with and supported on the inner wall surface, bottom surface, and upper surface of the packaging box (300).
Citation Information
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