Powder Mixing Container with Powder Mixing Device
Patent Information
- Application Number
- KR1020240045180
- Authority / Receiving Office
- KR · KR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-04-03
- Publication Date
- 2026-08-03
- Estimated Expiration
- 2044-04-03
Smart Images

Figure 112024037031486-PAT00001_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a mixing container equipped with a powder mixing device that operates to mix stored powder with a liquid, such as water, at a time desired by the user. Background Technology
[0003] Generally, people prefer healthy food for their health, but since it is difficult to prepare healthy food every time amidst a busy lifestyle, they make nutritious oatmeal, brown rice, nuts, etc. into powder form and consume them with water or milk.
[0004] Furthermore, to make consuming powders more convenient, products are being released based on extensive research that feature a lid-sealed container for the powder. In this case, convenience is enhanced as users can remove the sealed lid, add water or milk according to their preference, close the lid again to seal it, and shake to consume the mixed beverage.
[0005] However, in the case of this method of consumption, the powder is not fully broken down in liquids such as water or milk, and some of the powder clumps together. Consequently, there is a problem that causes inconvenience to the user, as they frequently have to swallow or chew the clumped powder while consuming it. Prior art literature
[0007] 1. Republic of Korea Registered Patent No. 10-1401005 (May 22, 2014) The problem to be solved
[0008] The present invention aims to provide a powder mixing container including a powder mixing device capable of mixing powder with a liquid when necessary and completely decomposing the powder during the process of mixing the powder and the liquid. means of solving the problem
[0010] The present invention relates to a powder mixing container including a powder mixing device. The powder mixing container including the powder mixing device comprises: a container having a receiving portion for containing liquid inside; a cap covering the container to seal the receiving portion; a body having several blades arranged to intersect each other, which are provided in the container between the container and the cap to partition the cap and the receiving portion to form a powder storage chamber for storing powder in the direction of the cap; and an operating knob having one side facing one of the blades and the other side partially exposed to the upper outside of the powder storage chamber and the cap, and which moves up and down. When the user presses the other side of the operating knob at a time desired by the user, the mixing means presses one of the blades to move in close contact with the bottom surface so as to overlap with another blade, thereby forming a powder hole that communicates the receiving portion and the powder storage chamber, and drops the powder inside the powder storage chamber into the receiving portion to mix the separated powder and liquid.
[0011] Additionally, the blade may include a cutting portion that is detached from the body and the first blade by pressing the second blade when the operating knob is pressed with a predetermined pressure, wherein the wings of the first blade and the second blade are integrally formed such that they intersect each other in a spiral shape in the circumferential direction, on a body integrally formed in the cap.
[0012] Additionally, the mixing means has one side facing the second blade as the operating knob passes through the cap and the other side exposed to the outside of the cap, and the body has a guide groove that guides the second blade so that one side of the operating knob presses the second blade and rotates the second blade, which is cut along the cutting portion, toward the bottom surface of the first blade, thereby allowing the second blade to be moved toward the bottom surface of the first blade to form a powder hole.
[0013] Additionally, the mixing means may have an operating knob with one side passing through the cap and facing the second blade, and the other side exposed to the outside of the cap, and a rotating part provided to be rotatably connected to the other side of the operating knob by a hinge so as to pull one side of the operating knob in the opposite direction of the cap, so that the other side of the rotating part presses the operating knob and presses the second blade. Effects of the invention
[0015] The present invention relates to a powder mixing container including a powder mixing device, and can exhibit the following effects.
[0016] First, according to the powder mixing container including the powder mixing device of the present invention, when mixing powder and liquid, the powder is broken down by the alternating current generated by the blade inside the cap so that the powder does not clump together, thereby allowing for more effective melting.
[0017] Secondly, according to the powder mixing container including the powder mixing device of the present invention, the user can mix powders such as powder for health food or protein into the liquid inside the container at a desired time and consume it, thereby improving portability.
[0018] Thirdly, according to the powder mixing container including the powder mixing device of the present invention, the powder can be stored separately without being mixed with liquid, so it can be mixed only when desired for consumption, allowing for long-term storage at room temperature and thus improving ease of storage.
[0019] The effects of the present invention are not limited to those mentioned above, and other unmentioned effects will be clearly understood by those skilled in the art from the description in the claims. Brief explanation of the drawing
[0021] FIG. 1 is a perspective view showing a first embodiment according to a powder mixing container including a powder mixing device of the present invention. Figure 2 is an exploded perspective view of Figure 1. FIG. 3a is a cross-sectional view showing “A-A'” of FIG. 1. FIG. 3b is a bottom view showing the blade of FIG. 3a. FIGS. 4a to 5b are diagrams illustrating the operation of the mixing means. FIGS. 6a and 6b are drawings showing a second embodiment according to a powder mixing container including a powder mixing device of the present invention. FIGS. 7a and 7b are drawings showing a third embodiment according to a powder mixing container including a powder mixing device of the present invention. Specific details for implementing the invention
[0022] Hereinafter, embodiments of the present invention are described in detail with reference to the attached drawings so that those skilled in the art can easily implement the present invention. The present invention may be embodied in various different forms and is not limited to the embodiments described herein. In the drawings, parts unrelated to the explanation have been omitted to clearly explain the present invention, and the same reference numerals have been used for identical or similar components throughout the specification.
[0023] In addition, the size and thickness of each component shown in the drawings are depicted arbitrarily for convenience of explanation, so the present invention is not necessarily limited to what is illustrated.
[0024] In the present invention, the term "on" means being located above or below the target member, and does not necessarily mean being located above with respect to the direction of gravity. Furthermore, throughout the specification, when a part is described as "including" a certain component, this means that, unless specifically stated otherwise, it does not exclude other components but may include additional components.
[0025] Furthermore, throughout the specification, when a part is described as being "connected" to another part, this includes not only cases where they are "directly connected," but also cases where they are "indirectly connected" with other members in between.
[0026] FIG. 1 is a perspective view showing a first embodiment according to a powder mixing container including a powder mixing device of the present invention, FIG. 2 is an exploded perspective view of FIG. 1, FIG. 3a is a cross-sectional view showing “A-A'” of FIG. 1, FIG. 3b is a bottom view showing the blade of FIG. 3a, and FIG. 4a to 5b are drawings showing the operation of the mixing means.
[0027] Hereinafter, a first embodiment of a powder mixing container including a powder mixing device of the present invention will be described with reference to the attached drawings.
[0028] Referring to FIGS. 1 to 3, a first embodiment according to a powder mixing container including a powder mixing device of the present invention is described. The powder mixing container including the powder mixing device comprises: a container (10) having a receiving portion (101) for containing a liquid (L) inside; a cap (20) covering the container (10) to seal the receiving portion; a body (31) having several blades (311, 312) arranged to intersect each other, which are provided on the container (10) between the container (10) and the cap (20) to form a powder storage chamber (21) that partitions the cap (20) and the receiving portion (101) and stores powder (P) in the direction of the cap (20); and one side facing one of the blades (311, 312) and the other side of the powder storage chamber (21) and the cap (20). The mixing means (30) includes an operating knob (33) partially exposed to the upper outside, and when the user rotates the other side of the operating knob (33) at a desired time, the separated powder (P) and liquid (L) are moved so that one side presses against one of the blades and overlaps with the other blade, thereby moving to form a powder hole (PH) that communicates with the receiving portion (101) and the powder storage chamber (21), and the powder (P) inside the powder storage chamber (21) is dropped into the receiving portion (101) to be mixed.
[0029] One side of the container (10) may be open to form a receiving portion (101) inside. A liquid (L), such as water or milk, may be stored in the receiving portion (101) of the container (10) from the outside through the open side. The container (10) may be provided with a cap (20) that covers the open side to seal the receiving portion (101).
[0030] The cap (20) can cover the container (10) to seal the receiving portion (101). The cap (20) can be attached to the container by means of fastening, etc., to prevent the liquid (L) inside the receiving portion (101) from leaking out.
[0031] The cap (20) may have a through hole (22) through which an operating knob (33) passes or through which powder (P) is stored into a powder storage chamber (21).
[0032] The through hole (22) may be provided so that the operating knob (33) passes through vertically, and the powder (P) is injected through the through hole (22) to store the powder (P) in the powder storage chamber (21), and the operating knob (33) that seals the through hole (22) and presses the second blade (312) described later may be inserted.
[0033] The cap (20) may be integrally formed with a body (31) that partitions a powder storage chamber (21) for storing powder (P) on one side covering the container (10), and may be provided with a mixing means (30) that connects the powder storage chamber (21) and the receiving portion (101) so that the user can drop the powder (P) into the receiving portion (101).
[0034] The mixing means (30) may include a body (31), blades (311, 312), a cutting part (32), and an operating knob (33).
[0035] The mixing means (30) may include a body (301) having several blades (311, 312) arranged to intersect each other, which are provided in the container (10) between the container (10) and the cap (20) to form a powder storage chamber (21) that stores powder (P) in the direction of the cap (20) by partitioning the cap (20) and the receiving portion (101), and an operating knob (33) that pressurizes a portion exposed outside the cap (20) at a time desired by the user.
[0036] When the operating knob (33) is operated, the mixing means (30) presses one of the blades (312) among the blades (311, 312) and moves it in close contact with the bottom surface so that it overlaps with another blade (311), causing the powder (P) in the powder storage chamber (21) to fall into the receiving portion (101) so that the powder (P) and liquid (L) can be mixed and consumed.
[0037] The body (1331) can be integrally injection-molded with the cap (20) or provided by a method such as double injection molding, and the inner and outer parts of the cap (20) can be partitioned to form a powder storage chamber (21) capable of storing powder (P).
[0038] The body (1331) may be provided with several spiral-shaped blades (1311, 1312) cut so as to intersect.
[0039] The blades (311, 312) may include a first blade (311) and a second blade (312) that are integrally formed with a body (31) formed integrally with the cap (20), wherein the wings of the first blade (311) and the second blade (312) are provided in a spiral shape and spaced apart from each other in the circumferential direction at a predetermined distance, and the wings of the second blade (312) are spaced apart from each other and the blade (32) is pressed when the operating knob (33) is pressed with a predetermined pressure, thereby including a cutting part (32) that is torn off from the body (31) and the first blade (311).
[0040] The operating knob (33) is shaped like a round bar, with one side having a thread formed thereon that passes through the through hole (22) of the cap (20) and faces the second blade (312), and the other side is partially exposed outside the through hole (22) of the cap (20) so that the user can rotate the other side.
[0041] The body (31) may include a fastening groove (313) with internal threads formed so that the threads of the operating knob (33) are inserted into the central axis.
[0042] Following this The mixing means (30) is When the user rotates the other side of the operating knob (33), one side of the operating knob (33) is connected to the fastening groove (313), and the rotational force of the operating knob (33) is transmitted to the second blade (312), and the second blade is rotated so that the cutting part (32) can be torn off.
[0043] When the operating knob (33) is rotated further, the second blade (312) moves toward the bottom surface of the first blade (311) A powder hole (PH) is formed at the location of the second blade (312) so that the powder storage chamber (21) and the receiving portion (101) are connected, and the powder (P) inside the powder storage chamber (21) can fall into the receiving portion (101) through the powder hole (PH).
[0044] Therefore, when the user shakes the container (10), the powder (P) and liquid (L) pass through the powder hole (PH) during the mixing process, and the powder (P) is prevented from clumping due to the alternating current generated by the blades (1311, 1312), so that the powder can be dissolved better into the liquid (L).
[0045] Meanwhile, for further user convenience, in situations where the user cannot rotate, the blades can be overlapped by pressing the operating knob and lifting the rotating part for pressing the operating knob, thereby allowing the powder to fall toward the liquid (L).
[0046] FIGS. 6a and 6b are drawings showing a second embodiment according to a powder mixing container including a powder mixing device of the present invention.
[0047] Referring to FIGS. 6a and 6b, a second embodiment according to a powder mixing container including a powder mixing device of the present invention is described. When the mixing means (1300) operates the operating knob (1330), it presses one of the blades (1312) among several blades (1311, 1312) and moves it in close contact with the bottom surface so as to overlap with another blade (1311), thereby dropping the powder (P) in the powder storage chamber (21) into the receiving portion (101) so that the powder (P) and liquid (L) can be mixed and consumed.
[0048] For example, the body (1310) may include a guide groove (1313) that guides the second blade (1312) so that one side of the operating knob (1330) presses the second blade (1312) described later and rotates the second blade (1312), which is cut along the cutting portion described later, toward the bottom surface of the first blade (1311).
[0049] The body (1310) moves the second blade (1312) to the bottom surface of the first blade (1311) by means of the guide groove (1313), thereby forming a powder hole (PH) at the position of the second blade (312) that is connected to the powder storage chamber (21) and the receiving portion (101), so that the powder (P) inside the powder storage chamber (21) can fall into the receiving portion (101) through the powder hole (PH).
[0050] Additionally, the body (1310) may include an over-entry prevention projection (1314) that prevents the second blade (1312) from over-entering and detaching from the body (1310).
[0051] The over-entry prevention projection (1314) is formed at a position where the second blade (1312) moves along the guide groove (1313) so that the second blade (1312) overlaps with the first blade (1311), and even if the user presses the operating knob (1330) more than a predetermined pressure, it is caught on the over-entry prevention projection (1314) to prevent detachment from the body (1310).
[0052] One side of the operating knob (1330) passes through the through hole (22) of the cap (20) and faces the second blade (1312), while the other side is partially exposed outside the through hole (22) of the cap (20) so that the user can apply pressure to the other side.
[0053] One side of the operating knob (1330) is protruded to press the second blade (312), and the second blade (312) can be pressed by being inserted into the powder hole (PH) formed by the second blade (312) being torn by the cut portion.
[0054] Accordingly, when the other side of the operating knob (133) is pressed, it can be pressed toward the container (10) so that the second blade (1312) is torn by the cutting part (32), and the torn second blade (1312) can be moved along the guide groove (1313) to the bottom surface of the first blade (1311).
[0055] Although not shown in the drawing, the second blade (1312) has a projection formed thereon that is inserted into the guide groove (1313) and can be guided along the guide groove (1313).
[0056] Accordingly, when the user shakes the container (10), the powder (P) and liquid (L) pass through the powder hole (PH) during the mixing process, and the powder (P) is prevented from clumping due to the alternating current generated by the blades (1311, 1312), thereby having the effect of allowing the powder to dissolve better into the liquid (L).
[0057] Meanwhile, the blades can be overlapped by pressing the operating knob and lifting the rotating part for pressing the operating knob, thereby causing the powder to fall toward the liquid (L).
[0058] FIGS. 7a and 7b are drawings showing a third embodiment according to a powder mixing container including a powder mixing device of the present invention.
[0059] Referring to FIG. 7a and FIG. 7b, a second embodiment of a powder mixing container including a powder mixing device according to the present invention is described. The mixing means (2300) has an operating knob (2333) with one side passing through the cap (20) and facing the second blade (2312), and the other side exposed to the outside of the cap (20). A rotating part (134) is rotatably connected to the other side of the operating knob (2330) by a hinge so as to pull one side of the operating knob (2330) in the opposite direction of the cap (20), and rotates around the hinge so that the other side of the rotating part (2340) presses the operating knob (2330) and presses the second blade (2312).
[0060] Accordingly, when the user wants to mix the powder, if one side of the rotating part (2340) is lifted as if using a can lid, the other side of the rotating part (2340) presses the operating knob (2330) to cut the second blade (2312) as described above and moves it along the guide groove (2313) toward the first blade (2311) so that they can overlap.
[0061] The subsequent operation method is the same as that of the first embodiment, so to briefly explain, one side of the operating knob (2330) presses the second blade (2312) so that the second blade (1312), which is cut along the cutting portion, rotates along the guide groove (2313) toward the bottom surface of the first blade (2311), so that a powder hole (PH) is formed in the place where the second blade (2312) was, and powder (P) can fall into the receiving portion (101) through the powder hole (PH).
[0062] As such, according to the powder mixing container including the powder mixing device of the present invention, when mixing powder and liquid, the powder can be broken down and melted more effectively without clumping due to the alternating current generated by the blade inside the cap, and portability is improved because the powder, such as powder for health food or protein, can be mixed into the liquid inside the container at the time the user wants and consumed. Additionally, since the powder can be stored separately without being mixed into the liquid, it can be mixed only when consumed, allowing for long-term storage at room temperature, thus improving ease of storage.
[0063] The foregoing description of the present invention is for illustrative purposes only, and those skilled in the art will understand that other specific forms can be easily modified without altering the technical spirit or essential features of the present invention. Therefore, the embodiments described above should be understood as illustrative in all respects and not restrictive. For example, each component described as a single unit may be implemented in a distributed manner, and components described as distributed may likewise be implemented in a combined form.
[0064] The scope of the present invention is defined by the claims set forth below, and all modifications or variations derived from the meaning and scope of the claims and their equivalents should be interpreted as being included within the scope of the present invention.
[0065] Although preferred embodiments of the present invention have been described above, the present invention is not limited thereto and can be implemented with various modifications within the scope of the claims, the detailed description of the invention, and the attached drawings, and it is obvious that such modifications also fall within the scope of the present invention. Explanation of the symbols
[0067] 10: Courage 20: Cap 30: Mixed means
Claims
Claim 1 A container having a receiving portion for holding a liquid inside; a cap covering the container to seal the receiving portion; A mixing means comprising: a body having several blades arranged to intersect each other, which are provided in the container between the container and the cap and partition the cap and the receiving portion to form a powder storage chamber for storing powder in the direction of the cap; and an operating knob having one side facing one of the blades and the other side partially exposed to the upper outside of the powder storage chamber and the cap, which moves up and down; wherein, when the user rotates the other side of the operating knob at a time desired by the user, one side presses one of the blades and moves while pressing the bottom surface together to overlap with another blade, thereby forming a powder hole that communicates the receiving portion and the powder storage chamber, and causing the powder inside the powder storage chamber to fall into the receiving portion to mix the separated powder and liquid; wherein the blades are integrally formed such that the wings of a first blade and a second blade are arranged in a spiral shape and spaced apart from each other in the circumferential direction at a predetermined distance on a body integrally formed in the cap, and the wings intersect between the spaced-apart parts of the first blade and the second blade, and the operating knob is applied to a predetermined pressure A powder mixing container comprising a powder mixing device including a cutting portion that is torn off from the body and the first blade by pressing the second blade when pressurized. Claim 2 delete Claim 3 A powder mixing container comprising a powder mixing device, wherein the mixing means has one side facing the second blade as the operating knob passes through the cap and the other side exposed to the outside of the cap, and the body has a guide groove that guides the second blade so that one side of the operating knob presses the second blade and rotates the second blade, which is cut along the cut portion, toward the bottom surface of the first blade. Claim 4 In claim 1, the mixing means comprises a powder mixing container including a powder mixing device in which one side of the operating knob passes through the cap and faces the second blade, and the other side is exposed to the outside of the cap, and a rotating part is rotatably connected to the other side of the operating knob by a hinge to pull one side of the operating knob in the opposite direction of the cap, and rotates around the hinge so that the other side of the rotating part presses the operating knob and presses the second blade.