Water collecting stand for preventing solidification of isogas or butane gas

KR103023154B1Active Publication Date: 2026-09-21김주학
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Patent Information

Application Number
KR1020250214791
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-12-30
Publication Date
2026-09-21
Estimated Expiration
2045-12-30

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Abstract

The present invention relates to a water receiving base for preventing solidification of isobutane gas or butane gas. In order to prevent solidification of isobutane gas or butane gas by preventing a temperature drop of the isobutane gas or butane gas inside the gas container through frictional maintenance of water on the outer surface of the gas container while a cylindrical gas container filled with isobutane gas or butane gas is placed in a water receiving base having a filling space, the water receiving base (A) for preventing solidification of isobutane gas or butane gas is configured such that the water receiving base (A) comprises a disc-shaped bottom part (10) having a circular top surface (11), a rim side wall part (30) formed to protrude upwardly to have height on the rim side of the bottom part (10), and a filling space part (19) formed between the bottom part (10) and the rim side wall part (30) to be filled with water (2). A plurality of guiding grooves (15) are formed radially from the center toward the edge side wall (30), and the bottom upper surface (11) and the guiding grooves (15) are arranged repeatedly in the circumferential direction. When a gas cylinder (85) having a cylindrical shape filled with isobutane gas or butane gas is placed on the bottom part (10), water (2) is filled into the filling space (19) so that the outer surface (86) and part of the curved bottom surface (88) of the gas cylinder (85) are maintained in friction with the water (2), and the flow of water (2) is induced by the repeated arrangement of the bottom upper surface (11) and the guiding grooves (15), thereby preventing the solidification of the isobutane gas or butane gas inside the gas cylinder (85).
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Description

Technology Field

[0001] The present invention relates to a water tray for preventing solidification of isobutane gas or butane gas, and more specifically, to a water tray for preventing solidification of isobutane gas or butane gas by preventing a drop in the temperature of the isobutane gas or butane gas inside the gas container by filling the filling space with water while the cylindrical gas container filled with isobutane gas or butane gas is seated within a water tray having a filling space, thereby preventing the isobutane gas or butane gas from solidifying by maintaining friction of water on the outer surface of the gas container. Background Technology

[0003] Recently, camping and outdoor camping by family have become increasingly common. In such cases, butane gas (or isobutane gas) is frequently used for cooking, and this gas is commonly stored in cylindrical portable containers designed for convenient use and portability.

[0004] A portable butane gas container is formed with a sealed end and is equipped with a valve at the other end to release butane gas. This portable butane gas container is used by attaching the valved end to a portable gas stove or connecting it to a portable burner.

[0005] However, conventional butane gas containers presented a problem of inconvenience during use when used in extreme cold weather, such as winter, or at high altitudes like mountain peaks. Due to the low ambient temperature, the butane gas did not diffuse well, causing the surface of the container to freeze. Consequently, the butane gas did not spray properly. (Butane gas freezing point: approximately -0.5℃)

[0006] Recently, isobutane gas (freezing point: approximately -12°C) has been widely used as a solution to this, but it also has the same problems. Prior art literature

[0008] Registered Utility Model No. 20-0238723 The problem to be solved

[0009] Accordingly, the present invention was devised to eliminate the aforementioned problems, and focuses on a water tray for preventing solidification of isobutane gas or butane gas, which prevents solidification of isobutane gas or butane gas by preventing a temperature drop inside the gas tray through frictional maintenance of water on the outer surface of the gas tray, while a cylindrical gas container filled with isobutane gas or butane gas is seated within a water tray having a filling space. means of solving the problem

[0011] The present invention, for achieving the above technical objective, comprises a water receiving base (A) for preventing solidification of isobutane gas or butane gas, wherein the water receiving base (A) comprises a disc-shaped bottom portion (10) having a circular top surface (11), a rim side wall portion (30) formed to protrude upwardly at the rim side of the bottom portion (10) to have height, and a filling space portion (19) formed between the bottom portion (10) and the rim side wall portion (30) to be filled with water (2), wherein a plurality of guiding groove portions (15) are formed radially from the center of the top surface (11) toward the rim side wall portion (30) so that the top surface (11) and the guiding groove portions (15) are repeatedly arranged in a circumferential direction, and when a cylindrical gas canister (85) filled with isobutane gas or butane gas is placed on the bottom portion (10), in the filling space portion (19) Water (2) is filled so that a portion of the outer surface (86) and the curved bottom surface (88) of the gas cylinder (85) is maintained in friction with the water (2), and the flow of water (2) is induced by the repeated arrangement of the bottom upper surface (11) and the guiding groove (15), thereby preventing solidification of isobutane gas or butane gas inside the gas cylinder (85). A plurality of anti-detachment protrusions (21) in the shape of an arc are formed protruding at regular intervals to form a circular band-shaped boundary on the edge side of the bottom upper surface (11), spaced apart from the inner surface of the rim side wall (30). The outer surface of the bottom rim frame (87) of the gas cylinder (85) is coupled to the inner surface of the plurality of anti-detachment protrusions (21) so as to be frictionally supported, thereby preventing the gas cylinder (85) from detaching. The anti-detachment protrusions (21) are positioned between the radially arranged guiding grooves (15). And, by extending the outer end of the guide groove (15) further outward than the outer surface of the anti-detachment projection (21), the fluidity of the water (2) is secured, and a plurality of magnets (53) are spaced apart and provided on the edge side of the bottom lower surface (17) located on the lower side of the bottom part (10), so as to be seated on the bottom upper surface (11) of the bottom part (10),In a state where the outer surface of the bottom edge frame (87) of the gas cylinder (85) is frictionally supported on the inner surface of the plurality of anti-detachment protrusions (21), the bottom edge frame (87) of the gas cylinder (85) is configured to be magnetically fixed by the magnet (53), and the magnet (53) is configured to form a plurality of height-maintaining members (51) protruding downward on the edge side of the bottom lower surface (17), and to form a cover body (54) on the inner side of the height-maintaining members (51) so that the magnet (53) is inserted into the cover body (54), and the bottom edge frame (87) is configured to be formed of a metal material that is magnetically fixed, and a plurality of protrusions (61) are formed on the bottom upper surface (11) of the bottom part (10) of the water (2) within the filling space (19), and a protrusion (15a) and in the guiding groove (15) A water receiving base for preventing solidification of isobutane gas or butane gas is provided, characterized by being configured such that the groove (15b) is continuously formed in a wavy shape to increase friction and fluidity of water (2).

[0012] delete

[0013] delete

[0014] In addition, a fastening protrusion (40) having a vertical female screw portion (42) extending upward from the center of the upper surface (11) is provided, and a vertical member (72) having an upper horizontal support plate (70) is screw-coupled to the fastening protrusion (40). Effects of the invention

[0016] According to the present invention described above, when a cylindrical gas canister filled with isobutane gas or butane gas is placed in a water-receiving base having a filling space, water is filled into the filling space, and the water maintains friction with the outer surface of the gas canister, thereby preventing a drop in the temperature of the isobutane gas or butane gas inside the canister and thus preventing the solidification of the isobutane gas or butane gas, etc., such effects are achieved. Brief explanation of the drawing

[0018] FIGS. 1 to 11 are exemplary embodiments of a water tray base for preventing solidification of isobutane gas or butane gas according to the present invention. Specific details for implementing the invention

[0019] The specific details for implementing the present invention will be explained in more detail below with reference to the attached drawings.

[0020] The present invention relates to a water receiving base for preventing solidification of isobutane gas or butane gas, wherein a cylindrical gas cylinder filled with isobutane gas or butane gas is placed within a water receiving base having a filling space, and water is filled into the filling space so that the temperature of the isobutane gas or butane gas inside the gas cylinder is prevented from dropping due to friction of water on the outer surface of the gas cylinder. Referring to FIGS. 1 to 11, the water receiving base (A) of the present invention comprises a bottom part (10) having a guiding groove part (15), a rim side wall part (30), and a filling space part (19) into which water (2) is filled.

[0021] For the implementation of the present invention, first, as shown in FIG. 1, the water receiving base (A) is provided with a disc-shaped bottom part (10) having a circular bottom upper surface (11) and a rim side wall part (30) formed to protrude upwardly at the rim side of the bottom part (10) to have height, and as shown in FIG. 7 and FIG. 8, a filling space part (19) is provided between the bottom part (10) and the rim side wall part (30) to be filled with water (2).

[0022] As shown in FIGS. 1 and 2, the bottom portion (10) has a plurality of guiding grooves (15) formed radially from the center of the bottom upper surface (11) toward the edge side wall portion (30), and the bottom upper surface (11) and the guiding grooves (15) are arranged repeatedly in the circumferential direction.

[0023] Water (2) is filled into the filling space (19) to be described later, which is formed on the upper bottom surface (11), and a gas cylinder (85) having a cylindrical shape filled with isogas or butane gas in liquid form (89) is placed thereon. At this time, water is maintained by friction between the gas cylinder (85) and the outer surface and curved bottom surface (88) of the gas cylinder (85) within the water receiving base (A), thereby preventing the temperature of the isogas or butane gas inside the gas cylinder (85) from dropping and thus preventing the solidification of the isogas or butane gas.

[0024] At this time, since the friction of the water (2) against the gas cylinder (85) increases and the temperature transferability increases when the water (2) is in a flowing state rather than a stationary state within the water receiving base (A), in order to implement this, the present invention implements the flow of the water (2) by repeatedly forming induction grooves (15) on the upper surface of the bottom (11), and this enables the magnitude of the flow to be increased when the flow of the water (2) occurs due to fine vibrations, external forces, wind, etc.

[0025] Through the above configuration, as shown in FIG. 3, a gas cylinder (85) having a cylindrical shape filled with isobutane gas or butane gas is placed on the bottom part (10), and as shown in FIG. 4, water (2) is filled into the filling space part (19), so that as shown in FIG. 5 and FIG. 8, the outer surface (86) and part of the curved bottom surface (88) of the gas cylinder (85) are maintained in friction with the water (2), and the flow of water (2) is induced by the repeated arrangement of the bottom upper surface (11) and the guiding groove part (15), thereby preventing the solidification of the isobutane gas or butane gas inside the gas cylinder (85).

[0026] In addition, as shown in FIGS. 1 and 2, a plurality of anti-detachment protrusions (21) in the shape of arcs are formed protruding at regular intervals on the edge side of the bottom upper surface (11) at a distance from the inner surface of the edge side wall (30) to form a circular band-shaped boundary.

[0027] According to the above structure, as shown in FIG. 3, the outer surface of the bottom edge frame (87) of the gas cylinder (85) is frictionally supported on the inner surface of the plurality of anti-detachment protrusions (21) so as to prevent the gas cylinder (85) from detaching.

[0028] At this time, as shown in FIGS. 2 and 4, the anti-detachment protrusion (21) is positioned between the radially arranged guide grooves (15), and the outer end of the guide groove (15) is formed to extend further outward than the outer surface of the anti-detachment protrusion (21), thereby further securing the fluidity of the water (2).

[0029] In addition, to increase the anti-detachment force of the gas cylinder (85), as shown in FIGS. 6 and 8, a plurality of magnets (53) are spaced apart on the edge side of the bottom lower surface (17) located on the lower side of the bottom part (10), and are configured so that the bottom edge frame (87) of the gas cylinder (85) is magnetically fixed by the magnets (53) while the outer surface of the bottom edge frame (87) of the gas cylinder (85) is frictionally supported on the inner surface of the plurality of anti-detachment protrusions (21).

[0030] At this time, the magnet (53) is configured such that a plurality of height-maintaining members (51) are formed protruding downward on the edge side of the bottom lower surface (17), and a cover body (54) is formed on the inner side of the height-maintaining members (51) so that the magnet (53) is inserted into the cover body (54), and the bottom edge frame (87) is formed of a metal material that is magnetically fixed.

[0031] And, as shown in FIGS. 1 and 10, a fastening protrusion (40) having a vertical female screw portion (42) extending upward from the center of the bottom upper surface (11) is provided, and if necessary, a vertical bar (72) having an upper horizontal support plate (70) is screw-coupled to the fastening protrusion (40), and configured so that a lantern (78), etc. can be placed on the upper horizontal support plate (70) for use.

[0032] As a modified embodiment of the present invention, as shown in FIG. 9, to further increase the fluidity of water (2) within the filling space (19), a plurality of protrusions (61) are formed on the bottom upper surface (11) of the bottom part (10), thereby increasing the friction and flow of water (2).

[0033] As another modified embodiment, as shown in FIG. 11, if the protrusion (15a) and the groove (15b) are configured to be continuously formed in a wave shape in the induction groove (15), the friction and flow of the water (2) can be further greatly increased.

[0034] According to the water receiving base for preventing solidification of isobutane gas or butane gas of the present invention as described above, when a cylindrical gas canister filled with isobutane gas or butane gas is placed within a water receiving base having a filling space, water is filled into the filling space, and the water maintains friction with the outer surface of the gas canister, thereby preventing a drop in the temperature of the isobutane gas or butane gas inside the gas canister and thus preventing solidification of the isobutane gas or butane gas.

[0035] The present invention described above has been explained with reference to an exemplary embodiment illustrated in the drawings, but this is merely illustrative, and it should be made clear to those skilled in the art that various modifications and equivalent alternative embodiments are possible therefrom. Accordingly, the true technical scope of protection of the present invention should be interpreted by the appended claims, and all technical ideas within an equivalent scope should be interpreted as being included within the scope of rights of the present invention. Explanation of the symbols

[0037] A : Drip tray 10 : Bottom part 11 : Bottom upper surface 15 : Guide groove 19: Filling space 30: Edge side wall 85 : Gas canister 86 : Turning away 88 : Curved bottom surface

Claims

Claim 1 In configuring a water receiving base (A) for preventing solidification of isobutane gas or butane gas, the water receiving base (A) is composed of a disc-shaped bottom portion (10) having a circular top surface (11), a rim side wall portion (30) formed to protrude upwardly at the rim side of the bottom portion (10) to have height, and a filling space portion (19) formed between the bottom portion (10) and the rim side wall portion (30) to be filled with water (2), and a plurality of guiding groove portions (15) are formed radially from the center of the top surface (11) toward the rim side wall portion (30) so that the top surface (11) and the guiding groove portions (15) are repeatedly arranged in a circumferential direction, and a gas canister (85) having a cylindrical shape filled with isobutane gas or butane gas is placed on the bottom portion (10), and water (2) is filled into the filling space portion (19). The gas cylinder (85) is configured to prevent solidification of isobutane gas or butane gas inside the gas cylinder (85) by ensuring that a portion of the outer surface (86) and the curved bottom surface (88) of the gas cylinder (85) is maintained in friction with water (2), and by inducing the flow of water (2) through the repeated arrangement of the bottom upper surface (11) and the guiding groove (15). A plurality of anti-detachment protrusions (21) in the shape of an arc are formed protruding at regular intervals to form a circular band-shaped boundary on the edge side of the bottom upper surface (11), spaced apart from the inner surface of the edge side wall (30). The gas cylinder (85) is configured to prevent detachment by ensuring that the outer surface of the bottom edge frame (87) of the gas cylinder (85) is frictionally supported on the inner surface of the plurality of anti-detachment protrusions (21). The anti-detachment protrusions (21) are positioned between the radially arranged guiding grooves (15). The outer end of the guiding groove (15) is formed to extend further outward than the outer surface of the anti-detachment projection (21) to ensure the fluidity of the water (2), and a plurality of magnets (53) are spaced apart and provided on the edge side of the bottom lower surface (17) located on the lower side of the bottom part (10) so as to be seated on the bottom upper surface (11) of the bottom part (10), andIn a state where the outer surface of the bottom edge frame (87) of the gas cylinder (85) is frictionally supported on the inner surface of the plurality of anti-detachment protrusions (21), the bottom edge frame (87) of the gas cylinder (85) is configured to be magnetically fixed by the magnet (53), and the magnet (53) is configured to form a plurality of height-maintaining members (51) protruding downward on the edge side of the bottom lower surface (17), and to form a cover body (54) on the inner side of the height-maintaining members (51) so that the magnet (53) is inserted into the cover body (54), and the bottom edge frame (87) is configured to be formed of a metal material that is magnetically fixed, and a plurality of protrusions (61) are formed on the bottom upper surface (11) of the bottom part (10) of the water (2) within the filling space (19), and a protrusion (15a) and in the guiding groove (15) A water receiving base for preventing solidification of isobutane gas or butane gas, characterized by being configured such that the groove (15b) is continuously formed in a wavy shape to increase friction and fluidity of water (2). Claim 2 delete Claim 3 delete Claim 4 A water catcher for preventing solidification of isogas or butane gas, characterized in that, in the first paragraph, a fastening protrusion (40) having a vertical female screw portion (42) extending upward from the center of the bottom upper surface (11) is provided, and a vertical member (72) having an upper horizontal support plate (70) is screw-coupled to the fastening protrusion (40).

Citation Information

Patent Citations

  • Plant pot prop for accelerating drainage

    KR1020120111527A