Heat-Emitting Building Finishing Materials Using Water Membrane and Evaporation
Patent Information
- Authority / Receiving Office
- KR · KR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-02-05
- Publication Date
- 2026-08-12
Smart Images

Figure P1020250014189_ABST
Abstract
Description
Technology Field
[0001] The present invention relates to a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon, and more specifically, to a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon capable of forming a water film on an architectural finishing material used to finish a building, vaporizing it, and dissipating heat. Background Technology
[0002] Generally, finishing materials are used to finish the walls of buildings, such as officetels, to enhance the aesthetic appearance and provide a pleasant environment for occupants.
[0003] However, there is a problem in that buildings receive heat generated from the outside and affect the interior through finishing materials, leading to increased energy consumption to provide a comfortable environment for occupants.
[0004] Therefore, there is a need for finishing materials that can cool the temperature of the building during the hot summer and protect the temperature of the building during the cold winter, thereby minimizing the impact of the external temperature. Prior art literature
[0005] Korean Registered Patent Publication No. 10-1838527 (March 8, 2018) The problem to be solved
[0006] The objective of the present invention is to provide a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon capable of dissipating heat by vaporizing moisture in the finishing material.
[0007] Another objective of the present invention is to provide a heat-dissipating architectural finishing material that utilizes a water film and vaporization phenomenon to dissipate heat by artificially generating moisture in the finishing material. means of solving the problem
[0008] A heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one aspect of the present invention for achieving the above-mentioned purpose may comprise a panel body fixed to a building structure, a plurality of panel protrusions protruding from the outer surface of the panel body at a certain distance apart, and a heat dissipation part in which a plurality of pins are irregularly formed on the panel protrusions to deposit moisture and dissipate heat as the moisture vaporizes.
[0009] The above panel protrusion may be provided with a protrusion hole that is perforated internally to secure a heat dissipation area, and a protrusion exposure surface on which one side of the panel protrusion is exposed to the outside to make the appearance aesthetically pleasing.
[0010] The above heat dissipation unit may be equipped with an internal heat dissipation fin that dissipates heat from the panel body by having a plurality of fins protruding in the raised hole, and an external heat dissipation fin that dissipates heat by having a plurality of fins protruding on both sides of the panel raised.
[0011] A water supply device may be further provided to form a water film on the inner heat dissipation fins and the outer heat dissipation fins by spraying water between a pair of the panel protrusions and into the protrusion holes.
[0013] In addition, a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to another aspect of the present invention for achieving the above-mentioned purpose may comprise a panel body fixed to a building structure, a plurality of circular panel protrusions protruding from the outer surface of the panel body at a certain distance apart, and a circular heat dissipation part in which a plurality of pins are irregularly formed on the circular panel protrusions to deposit moisture and dissipate heat as the moisture vaporizes.
[0014] The above circular panel protrusion may have a circular protrusion hole that is perforated internally to secure a heat dissipation area, a protrusion exposure surface on which one side of the above circular panel protrusion is exposed to the outside to make the appearance aesthetically pleasing, and a protrusion cut surface that is cut so as to penetrate from the protrusion exposure surface to the above circular protrusion hole.
[0015] The above-described circular heat dissipation member comprises a first heat dissipation fin having a plurality of pins protruding in the circular raised hole to dissipate heat, and a second heat dissipation fin having a plurality of pins protruding at a lower height than the first heat dissipation fin to dissipate heat, wherein the first heat dissipation fin and the second heat dissipation fin may have protrusions toward the center point of the circular raised hole.
[0016] A water supply device may be further provided to form a water film on the first heat dissipation fin and the second heat dissipation fin by spraying water between a pair of circular panel containers and into the circular raised holes. Effects of the invention
[0017] According to the heat-dissipating building finishing material utilizing a water film and vaporization phenomenon according to the present invention, moisture is deposited by a heat-dissipating part protruding from the panel ridge, and the moisture is vaporized during the day to dissipate heat from the building.
[0018] In addition, heat from the building can be dissipated by artificially depositing moisture on the heat dissipation part through a water supply device provided between the panel body and the panel ridge. Brief explanation of the drawing
[0019] FIG. 1 is a plan view showing the overall appearance of a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention. FIG. 2 is a plan view showing the detailed appearance of a heat-dissipating architectural finishing material utilizing water film and vaporization phenomena in FIG. 1. FIG. 3 is a plan view showing the water supply device combined in FIG. 1. FIG. 4 is a plan view showing the overall appearance of a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to another embodiment of the present invention. FIG. 5 is a plan view showing the detailed appearance of a heat-dissipating architectural finishing material utilizing the water film and vaporization phenomena in FIG. 4. FIG. 6 is a plan view showing the water supply device combined in FIG. 4. Specific details for implementing the invention
[0020] Hereinafter, an embodiment of the present invention will be described in detail with reference to the attached drawings. However, the present invention is not limited to this embodiment and can be modified in various forms.
[0021] In the drawings, parts unrelated to the description have been omitted to clearly and concisely explain the present invention, and the same reference numerals are used for identical or extremely similar parts throughout the specification. Additionally, in the drawings, thicknesses, widths, etc., are depicted enlarged or reduced to make the description clearer; however, the thicknesses, widths, etc., of the present invention are not limited to those depicted in the drawings.
[0022] And when any part of the specification is described as "including" another part, unless specifically stated otherwise, it does not exclude other parts and may include additional parts.
[0024] FIG. 1 is a plan view showing the overall appearance of a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention.
[0025] As illustrated in FIG. 1, a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention may comprise a panel body (100) fixed to a building structure, a plurality of panel protrusions (200) protruding at a certain distance from the outer surface of the panel body (100), and a heat dissipating part (300) in which a plurality of pins are irregularly formed on the panel protrusions (200) so that moisture is deposited and heat is dissipated as the moisture vaporizes.
[0026] The panel body (100) is the base of the architectural finishing material, and a plurality of panel protrusions (200) may protrude from one surface at regular intervals. Additionally, the panel body (100) may be fixed by a bracket (12) provided on the wall (11).
[0027] A plurality of panel protrusions (200) are formed in a longitudinally extended shape on one surface of the panel body (100), and each panel protrusion (200) can be spaced apart from each other at regular intervals.
[0028] The heat dissipation part (300) is formed on the outer surface of the panel protrusion (200) and on the inner hole of the panel protrusion (200), and the spacing between the protrusions is constant and the height is also constant, so that moisture caused by the temperature difference is deposited on the heat dissipation part (300), and the moisture evaporates during the day, thereby having the function of lowering the ambient temperature.
[0029] The heat dissipation part (300) may have protrusions that are uniformly irregular at regular intervals, and may also have a uniform height. Additionally, the heat dissipation part (300) may increase the heat dissipation surface area to release heat more quickly.
[0030] Through this, the heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention can have the function of lowering the ambient temperature as the moisture evaporates during the day by depositing moisture from the existing vehicle through the heat dissipation part (300) protruding from the panel protrusion (200).
[0031] In addition, heat from the building can be radiated by artificially depositing moisture on the heat dissipation part through a water supply device (400) provided between the panel body (100) and the panel protrusion (200).
[0032] In addition, the uneven shape of the panel protrusion (200) and the heat dissipation part (300) can lower the temperature of the building during hot weather to save energy, and trap heat during cold weather to provide a thermal insulation effect.
[0033] Next, a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention will be described in more detail.
[0035] Figure 2 is a plan view showing the detailed appearance of a heat-dissipating architectural finishing material utilizing the water film and vaporization phenomena in Figure 1.
[0036] Referring to FIG. 2, the panel body (100) is formed in a plate shape and may be provided with a panel body hole (110) that penetrates from the upper surface to the lower surface.
[0037] The panel body (100) may be finished such that parts of both sides protrude further than the heat dissipation part (300).
[0038] Next, the panel protrusion (200) may be provided with a protrusion hole (210) that is perforated internally to secure a heat dissipation area, and a protrusion exposed surface (220) on which one side of the panel protrusion (200) is exposed to the outside to make the appearance aesthetically pleasing.
[0039] The raised hole (210) is perforated inside the panel raised (200), penetrates in a rectangular shape like the shape of the panel raised (200), and may have rounded corners.
[0040] The raised exposed surface (220) is formed on the outer surface of the panel raised surface (200), and due to the externally exposed feature, external moisture evaporates quickly even if it settles, and moisture settled inside the panel raised surface (200) is not visible on the raised exposed surface (220).
[0041] The raised exposed surface (220) may be provided with a raised curved surface (221) with rounded edges on both sides, and a vaporization-promoting gap (222) that forms a gap between the raised curved surfaces (221) of a pair of panel raised surfaces (200) to facilitate vaporization into the interior.
[0042] The raised curved surface (221) has the corners of the external heat dissipation fin (320), which will be described later, rounded, and can promote the rapid vaporization of the external heat dissipation fin (320) through the vaporization promotion gap (222).
[0043] Finally, the heat dissipation part (300) may be equipped with an internal heat dissipation fin (310) in which a plurality of fins are protruded in the raised hole (210) to dissipate heat from the panel body (100), and an external heat dissipation fin (320) in which a plurality of fins are protruded on both sides of the panel raised (200) to dissipate heat.
[0044] The internal heat dissipation fins (310) have multiple fins protruding on the front surface of the raised hole (210), and moisture can be vaporized during the day as it settles on the internal heat dissipation fins (310).
[0045] The external heat dissipation fins (320) have multiple fins protruding on both sides of the panel protrusion (200), excluding the protruding exposed surface (220), and moisture can be vaporized during the day as it settles on the external heat dissipation fins (320).
[0046] Here, the uneven surface located at the outermost side of the external heat dissipation fin (320) is aligned with the raised exposed surface (220) and can be finished with a raised curved surface (221).
[0047] Additionally, a pair of external heat dissipation fins (320) form a vaporization-promoting gap (222) between the raised curved surfaces (221) facing each other, so that moisture can be vaporized more quickly on the external heat dissipation fins (320) facing each other through the vaporization-promoting gap (222).
[0048] Additionally, the external heat dissipation fins (320) protruding from the panel protrusions (200) located on each side can be finished at the ends of the panel body (100) together with the finishing heat dissipation fins (321) provided on the other panel body (100).
[0049] Next, a water supply device for a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention will be described.
[0051] Figure 3 is a plan view showing the water supply device combined in Figure 1.
[0052] Referring to FIG. 3, a water supply device (400) is installed between the panel body (100) and the wall (11) to spray water onto the panel protrusion (200) to artificially create a water film and lower the temperature around the building while controlling the vaporization phenomenon.
[0053] The water supply device (400) is equipped with a first water supply pipe (410) that sprays water onto the internal heat dissipation fin (310) of the raised hole (210) and a second water supply pipe (420) that sprays water onto the external heat dissipation fin (320) between a pair of panel raised holes (200), and the second water supply pipe (420) can be positioned between the finishing heat dissipation fin (321) and the finishing heat dissipation fin (321') provided on another panel body (100) to spray water.
[0054] A water film (S) can be formed on the irregularities of the internal heat dissipation fin (310) and the external heat dissipation fin (320) by the first water supply pipe (410) and the second water supply pipe (420).
[0055] The external heat dissipation fin (320) formed with a water film (S) can promote vaporization through a vaporization-promoting gap (222) formed along a raised curved surface (221) facing another external heat dissipation fin (320).
[0056] Next, a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to another embodiment of the present invention will be described. In the following description, only the parts that differ from the above-described embodiment will be explained in detail, and detailed descriptions of identical or extremely similar parts will be omitted.
[0058] FIG. 4 is a plan view showing the overall appearance of a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to another embodiment of the present invention.
[0059] As illustrated in FIG. 4, a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon may be provided with a panel body (100) fixed to a building structure, a plurality of circular panel protrusions (500) protruding in a cylindrical shape at a certain distance from each other on the outer surface of the panel body (100), and a circular heat dissipation part (600) in which a plurality of pins are irregularly shaped on the circular panel protrusions (500) so that moisture is deposited and heat is dissipated as the moisture vaporizes.
[0060] The circular panel protrusions (500) are formed by a plurality of cylindrical protrusions extending longitudinally on one surface of the panel body (100), and each circular panel protrusion (500) can be spaced apart from each other at regular intervals.
[0061] The circular heat dissipation section (600) is formed on the interior of the circular panel protrusion (500), and all of them protrude toward the center point of the circular panel protrusion (500), and some may protrude further to form a step in length. Moisture caused by the temperature difference can be deposited on the circular heat dissipation section (600), and as the moisture evaporates during the day, it can have the function of lowering the ambient temperature. In addition, the circular heat dissipation section (600) can increase the heat dissipation surface area to evaporate heat more quickly.
[0062] Next, a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention will be described in more detail.
[0064] Figure 5 is a plan view showing the detailed appearance of a heat-dissipating architectural finishing material utilizing the water film and vaporization phenomena in Figure 4.
[0065] Referring to FIG. 5, the circular panel protrusion (500) may be provided with a circular protrusion hole (510) that is perforated in a circular shape inside to secure a heat dissipation area, a protrusion exposure surface (520) on which one side of the circular panel protrusion (500) is exposed to the outside to make the appearance aesthetically pleasing, and a protrusion cut surface (530) that is cut so as to penetrate from the protrusion exposure surface (520) to the circular protrusion hole (510).
[0066] The circular raised hole (510) is perforated in a circular shape inside the circular panel raised (500) and can form a space to facilitate the vaporization of accumulated moisture.
[0067] The raised exposed surface (520) is formed on the outer surface of the circular raised hole (510), and due to the externally exposed feature, external moisture evaporates quickly even if it settles, and moisture settled inside the circular panel raised (500) is not visible on the raised exposed surface (520).
[0068] Between a plurality of circular panel protrusions (500) protruding from the panel body (100), a vaporization promoting gap (521) can be provided that is spaced apart by a certain distance and allows moisture to flow in from the protrusion exposure surface (520) and vaporize.
[0069] The raised cut surface (530) can form a passage through which moisture rapidly evaporates into the interior of the circular raised hole (510) by cutting one side of the raised exposed surface (520).
[0070] Next, the circular heat dissipation part (600) is provided with a first heat dissipation fin (610) in which a plurality of pins are protruded in a circular raised hole (510) to dissipate heat, and a second heat dissipation fin (620) in which a plurality of pins are protruded at a lower height than the first heat dissipation fin (610) to dissipate heat, and the first heat dissipation fin (610) and the second heat dissipation fin (620) may have protrusions that protrude toward the center point of the circular raised hole (510).
[0071] A number of first heat dissipation fins (610) are protruding toward the center point on the inner surface of the circular raised hole (510), and can be spaced apart by a certain distance so that the end of the first heat dissipation fin (610) does not come into contact with the end of an adjacent first heat dissipation fin (610).
[0072] The second heat dissipation fin (620) protrudes between each pair of first heat dissipation fins (610), and can protrude lower than the first heat dissipation fin (610) and protrude toward the center point.
[0073] At this time, the second heat dissipation fin (620) may protrude only to a length that does not touch the first heat dissipation fin (610).
[0074] Additionally, when the circular panel protrusion (500) protrudes at each end, a semicircular shape protrudes, and the circular protrusion hole (510) is exposed to the outside, and the first heat dissipation fin (610) and the second heat dissipation fin (620) may be formed in the exposed circular protrusion hole (510).
[0075] Here, the first heat dissipation fin (610) can be protruded into a finishing heat dissipation fin (611) that is finished by protruding at the end of both ends.
[0076] Next, a water supply device for a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to one embodiment of the present invention will be described.
[0078] Figure 6 is a plan view showing the water supply device combined in Figure 4.
[0079] Referring to FIG. 6, a water supply device (400) is installed between the panel body (100) and the wall (11) to spray water onto the circular panel protrusion (500) to artificially create a water film and lower the temperature around the building while controlling the vaporization phenomenon.
[0080] The water supply device (400) is provided with a first water supply pipe (410) that sprays water onto the first heat dissipation fin (610) and the second heat dissipation fin (620) of the circular protrusion hole (510), and a second water supply pipe (420) that sprays water between a pair of circular panel protrusions (500). The second water supply pipe (420) is positioned between the finishing heat dissipation fin (611) and the finishing heat dissipation fin (611') provided on another panel body (100) to spray water.
[0081] A water film (S) can be formed between the first heat dissipation fin (610), the second heat dissipation fin (620), and a pair of circular panel protrusions (500) by means of the first water supply pipe (410) and the second water supply pipe (420).
[0082] The first heat dissipation fin (610) and the second heat dissipation fin (620) formed by the water film (S) can be vaporized by the gap in the raised cut surface (530), and vaporization can be promoted between a pair of circular panel ridges (500) by the vaporization-promoting gap (521).
[0084] Although a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon according to an embodiment of the present invention has been described above, the concept of the present invention is not limited to the embodiments presented in this specification. Furthermore, a person skilled in the art who understands the concept of the present invention may easily propose other embodiments within the scope of the same concept by adding, changing, deleting, or adding components, and such embodiments shall also be considered to fall within the scope of the concept of the present invention. Explanation of the symbols
[0086] 11 : Wall 12 : Bracket 100 : Panel body 110 : Panel body hole 200 : Panel ridge 210 : Elevation hole 220 : Elevated exposed surface 221 : Raised surface 222 : Vaporization acceleration gap 300 : Heat dissipation part 310 : Internal heat dissipation fins 320 : External heat sink fins 321 : Finishing heat sink fins 400 : Water supply device 410: 1st water supply pipe 420 : Second water supply pipe 500 : Circular panel ridge 510 : Circular raised hole 520 : Elevated exposed surface 521 : Vaporization acceleration gap 530 : Elevated incision surface 600 : Circular heat dissipation part 610: 1st heat dissipation fin 611 : Finishing heat sink fin 620 : 2nd heat dissipation fin
Claims
Claim 1 A heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon, comprising a panel body fixed to a building structure, a plurality of panel protrusions protruding from the outer surface of the panel body at a certain distance apart, and a heat dissipation section in which a plurality of pins are irregularly shaped on the panel protrusions to deposit moisture and dissipate heat as the moisture vaporizes. Claim 2 A heat-dissipating architectural finishing material utilizing water film and vaporization phenomena, characterized in that, in claim 1, the panel protrusion has a protrusion hole with an internal perforation to secure a heat dissipation area, and a protrusion exposure surface on one side of the panel protrusion that is exposed to the outside to provide a beautiful appearance. Claim 3 In claim 2, the heat dissipation portion is characterized by having an internal heat dissipation fin that dissipates heat from the panel body by having a plurality of fins protruding in the raised hole, and an external heat dissipation fin that dissipates heat by having a plurality of fins protruding on both sides of the panel raised. This describes a heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon. Claim 4 A heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon, characterized in that, in claim 3, it further comprises a water supply device that sprays water between a pair of panel protrusions and into the protrusion holes to form a water film on the inner heat dissipation fins and the outer heat dissipation fins. Claim 5 A heat-dissipating architectural finishing material utilizing water film and vaporization phenomena, comprising a panel body fixed to a building structure, a plurality of circular panel protrusions protruding from the outer surface of the panel body at a certain distance apart, and a circular heat dissipation section in which a plurality of pins are irregularly shaped on the circular panel protrusions to deposit moisture and dissipate heat as the moisture vaporizes. Claim 6 A heat-dissipating architectural finishing material utilizing water film and vaporization phenomena, characterized in that, in claim 5, the circular panel protrusion comprises a circular protrusion hole that is perforated internally to secure a heat dissipation area, a protrusion exposure surface on which one side of the circular panel protrusion is exposed to the outside to provide a beautiful appearance, and a protrusion cut surface that is cut to penetrate from the protrusion exposure surface to the circular protrusion hole. Claim 7 In claim 6, the circular heat dissipation member comprises a first heat dissipation fin having a plurality of fins protruding in the circular raised hole to dissipate heat, and a second heat dissipation fin having a plurality of fins protruding at a lower height than the first heat dissipation fin to dissipate heat, wherein the first heat dissipation fin and the second heat dissipation fin are characterized by the protrusion of the protrusions toward the center point of the circular raised hole, thereby forming a heat dissipating architectural finishing material utilizing a water film and vaporization phenomenon. Claim 8 A heat-dissipating architectural finishing material utilizing a water film and vaporization phenomenon, characterized in that, in claim 7, it further comprises a water supply device that sprays water between a pair of circular panel containers and into the circular raised holes to form a water film on the first heat dissipation fin and the second heat dissipation fin.