A mobile modular container house with a moisture-removing structure on the ceiling and walls

KR103014652B1Active Publication Date: 2026-09-04CORPD HUMAN C&D
View PDF 4 Cites 0 Cited by

Patent Information

Application Number
KR1020260000241
Authority / Receiving Office
KR · KR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2026-01-02
Publication Date
2026-09-04
Estimated Expiration
2046-01-02

Smart Images

  • Figure 112026000283353-PAT00001_ABST
    Figure 112026000283353-PAT00001_ABST
Patent Text Reader

Abstract

The present invention relates to a movable modular container house having a moisture removal structure for the ceiling and walls. Accordingly, the technical gist of the present invention is characterized by installing a dehumidifying duct connected to a drain hose in the wall and ceiling sections of a mobile modular container house (container box) manufactured for various residential facilities (household and industrial use), and then collecting and dehumidifying the moisture generated in the wall and ceiling sections through a dehumidifier.
Need to check novelty before this filing date? Find Prior Art

Description

Technology Field

[0001] The present invention relates to a mobile modular container house having a moisture removal structure for the ceiling and walls, characterized by installing a dehumidifying duct connected to a drain hose in the wall and ceiling sections of a mobile modular container house (container box) manufactured as various residential facilities (household and industrial use), and then collecting and dehumidifying moisture generated in the wall and ceiling sections through a dehumidifier.

[0002] The present invention is characterized by facilitating smooth and rapid dehumidification and collection of moisture in wall and ceiling sections composed of inner and outer insulation layers, thereby improving the living environment, as well as preventing damage and contamination of interior and exterior materials, and enhancing thermal insulation and heating / cooling performance. Background Technology

[0003] Generally, a modular house (mobile modular container house) refers to a mobile home constructed using a pre-fabricated, custom-made method rather than on-site construction. In this system, the house style is determined and manufactured in a factory according to the client's requirements, and after installing various interior materials and wiring, additional facilities are installed before being transported to the site for assembly and final installation.

[0004] In other words, these modular homes are a type of housing used not only for general residential purposes but also to rapidly supply homes during disasters, and are constructed as temporary housing facilities or other industrial facilities (schools, hospitals, military bases, etc.).

[0005] To elaborate, conventional modular housing is a construction method that proceeds rapidly by building structures and building materials one by one like stacking blocks, so almost all of the construction is prefabricated in a factory, transported to the site using cargo trucks or forklifts, and then installed and assembled on-site.

[0006] Therefore, instead of constructing modular houses directly on-site using reinforced concrete, they are often built in the form of containers or wood, which are advantageous for transportation and assembly.

[0007] From the manufacturer's perspective, these modular houses can significantly reduce construction costs because they are transported from the factory where production is completed and simply installed at the construction site. Additionally, they have the advantage of minimizing noise generated at the construction site, thereby protecting the environment and minimizing complaints.

[0008] For reference, modular houses are constructed using shipping containers, as well as wood or panels.

[0009] Since the materials used to construct the house can be selected from a wide variety of options, such as wood, steel, composite materials, glass, and clay, and the forms are also diverse, it is relatively easy to reflect the design philosophy of the homeowner or builder in the production process.

[0010] As such, modular houses (mobile homes) designed with various models and designs are manufactured for diverse purposes, such as commercial facilities, recreational facilities, barracks, pensions, and leisure sports facilities. Therefore, by designating groups suitable for specific purposes and constructing them using the same method, users can choose according to their preferences and own a home through custom orders as desired.

[0011] However, conventional modular houses construct walls and ceilings using a combination of metal panels and interior / exterior materials (such as insulation); when a temperature difference occurs between the inside and outside, moisture, condensation, and odors easily develop, causing problems that degrade the living environment of the indoor space.

[0012] In other words, such moisture, condensation, and odors cause mold growth on walls and ceilings, and lead to contamination and damage to insulation materials, thereby threatening the health of residents and significantly reducing the thermal insulation effect for heating and cooling; thus, there is an urgent need for measures to resolve this issue. Prior art literature

[0013] 1. Korean Patent Publication No. 10-2017-0024901 (Published March 8, 2017) The problem to be solved

[0014] The present invention aims to solve the aforementioned problems, and its technical gist is to provide a method for removing moisture by installing a dehumidifying duct connected to a drain hose on the wall and ceiling of a mobile modular container house (container box) manufactured for various residential facilities (household and industrial use), and then collecting and dehumidifying the moisture generated from the wall and ceiling through a dehumidifier.

[0015] The purpose of the present invention is to provide a method for improving the living environment by facilitating smooth and rapid dehumidification and collection of moisture in wall and ceiling sections composed of inner and outer insulation layers, as well as preventing damage and contamination (prevention of mold growth) of interior and exterior materials, thereby enhancing thermal insulation and heating / cooling performance.

[0016] Meanwhile, as an additional embodiment, the present invention aims to provide an air pocket in the bottom portion of a container box manufactured for residential use to minimize moisture rising from the floor (ground) and to reduce the transmission of cold air (cold air) into the interior through the floor surface.

[0017] The purpose of this invention is to provide a structure in which an air pocket (a structure forming an air layer by a base frame) allows for simple work on multiple member beams and lower finishing materials based on the outer frame (ensuring safe work by allowing downward floor work to proceed sequentially without lifting the container box), and also ensures a sealed space by caulking (applying) silicone adhesive between the joint connections between the member beams and the lower finishing materials, thereby ensuring a sealed air pocket structure and enabling quick and easy floor work, while significantly improving the quality of the mobile modular container house.

[0018] In addition, the purpose of the present invention is to provide a way to drastically reduce cold air or noise conducted (transmitted) from the floor or ground by combining a non-conductive stick and an insulating panel (urethane panel) on the upper part (upper end) of the member beam.

[0019] In addition, the purpose of the present invention is to provide a lower finishing material in which a folded portion is formed on the surface, thereby enabling easy fitting and joining work even if a horizontal step difference occurs between member beams.

[0020] Accordingly, the present invention arranges member beams in parallel at regular intervals within an outer frame for flooring (inside the space of a square frame) and then sequentially joins them with lower finishing materials, wherein the lower finishing materials have an 'L'-shaped structure and individual connecting joints are performed between each member beam section, thereby aiming to reduce the size or weight of the floor construction member and provide a product that is easy to handle and assemble / install. means of solving the problem

[0021] To achieve this purpose, the present invention relates to a movable modular container house composed of a floor section (10), a wall section (20), and a ceiling section (30), wherein a drain hose (40) is installed around the four sides of the floor section (10), and a dehumidification duct (50) is installed between the inner insulation material and the outer insulation material of the wall section (20) and the ceiling section (30) so as to be directly connected to one side and the other side of the longitudinal line of the drain hose (40) (the dehumidification duct installed upright toward the wall section or the ceiling section is connected in a direction perpendicular to the drain hose), and a dehumidifier (70) having a suction device (60) is connected to the drainage end of the drain hose (40) so that the collected moisture or water (absorbing moisture from the air or collecting it in the form of water droplets) is drained into a drainage channel within the toilet area.

[0022] Accordingly, the dehumidification duct (50) is provided with a main passage (51) in the shape of a '∪' having a horizontal plate (511) and a vertical plate (512), wherein the horizontal plate (511) of the main passage (51) is formed to have an elongated groove (513) for assembly, and the vertical plate (512) having a sliding groove (514) is formed to stand up at both ends of the horizontal plate (511), and the cover (52) having a fitting projection (521) is formed to be assembled and connected in a sliding manner in the opening (516) between the plurality of vertical plates (512).

[0023] At this time, the vertical plate (512) is formed with a plurality of grill grooves (53: the wing ribs (54) formed by the grill grooves are in a form in which the upper free end (542) is cut based on the lower joint (541) of the vertical plate (512), and the opening space of the grill grooves (53) can be expanded by cutting the lower joint (541) of the wing ribs (54) as needed / moisture removal space expansion) so as to perform moisture collection for the entire side space of the wall part (20) and the entire space of the ceiling part (30).

[0024] Additionally, the dehumidifying duct (50) is formed such that the branch section (55) positioned toward the ceiling section (30) is installed in a manner corresponding to the roof angle (forming an inclined angle so that the collected moisture and water can be smoothly drained downward).

[0025] Accordingly, the dehumidifier (70) having a suction device (60) is formed such that the drain hose (40) is positioned 200 to 300 mm above the horizontal installation standard height (formed to prevent electrical leakage of electrical components when cleaning the bathroom floor and connected through a separate suction pipe). Effects of the invention

[0026] In this way, the present invention has the effect of removing moisture by installing a dehumidifying duct connected to a drain hose on the wall and ceiling of a mobile modular container house (container box) manufactured for various residential facilities (household and industrial use in general), and then collecting and dehumidifying the moisture generated from the wall and ceiling through a dehumidifier equipped with a suction device.

[0027] The present invention has the effect of improving the living environment by facilitating smooth and rapid dehumidification and collection of wall and ceiling sections composed of inner and outer insulation layers, as well as preventing damage and contamination of interior and exterior materials, thereby enhancing thermal insulation and heating and cooling performance.

[0028] Meanwhile, as an additional embodiment, the present invention has the effect of creating an air pocket in the bottom of a container box manufactured for residential use to minimize moisture rising from the floor (ground) and to reduce the transmission of cold air or chill into the interior through the floor surface (ground).

[0029] The air pocket of the present invention (a structure forming an air layer by the base frame) allows multiple member beams and lower finishing materials to be worked on simply based on the outer frame (ensuring safe work by allowing downward floor work to proceed sequentially without lifting the container box), and also ensures a sealed space by caulking (applying) silicone adhesive between the joint connections between the member beams and the lower finishing materials, thereby ensuring a sealed air pocket structure and enabling quick and easy floor work, which has the effect of significantly improving the quality of the mobile modular container house.

[0030] In addition, the present invention has the effect of significantly reducing cold air or noise conducted (transmitted) from the floor or ground by combining a non-conductive stick and an insulating panel (urethane panel) on the upper part (upper end) of the member beam.

[0031] In addition, the present invention has the effect of enabling easy fitting and joining work even when a horizontal step difference occurs between member beams, as a folded portion is formed on the surface of the lower finishing material.

[0032] Accordingly, the present invention arranges member beams in parallel at regular intervals within an outer frame for flooring (inside the space of a square frame) and then sequentially joins them with lower finishing materials, wherein the lower finishing materials have an 'L'-shaped structure and individual connecting joints are performed between each member beam section, thereby promoting the miniaturization or weight reduction of floor construction materials, which has the effect of making handling and assembly installation easy. Brief explanation of the drawing

[0033] FIG. 1 is an example side cross-sectional view showing a movable modular container house having a moisture removal structure for the ceiling and walls according to the present invention. Figure 2 is an example of a longitudinal section of Figure 1. FIGS. 4 and 5 are plan view examples of a movable modular container house having a moisture removal structure for the ceiling and walls according to the present invention. FIG. 5 is an exemplary diagram showing a dehumidification duct according to the present invention. FIG. 6 is a side view of a movable modular container house having an air pocket floor structure according to the present invention. Figure 7 is an example of a plan and detailed side cross-section of the bottom portion according to Figure 6. FIG. 8 is an example diagram showing a non-conductive stick mounted on a member beam as another embodiment of FIG. 7. FIG. 9 is an example diagram showing another embodiment of FIG. 8 in which a reinforcing beam is further added to the member beam. FIGS. 10 to 13 are exemplary diagrams showing, as additional embodiments of the present invention, that a lower finishing material is temporarily fastened to a member beam by a one-hand locker. FIGS. 14 and 15 are exemplary diagrams showing an optional embodiment of the present invention in which a non-conductive stick forms a double air pocket and is fastened and assembled by a one-hand locker. Specific details for implementing the invention

[0034] The present invention will be described in more detail below with reference to the attached drawings.

[0035] First, as illustrated in FIGS. 1 to 5, the present invention is a movable modular container house composed of a floor portion (10), a wall portion (20), and a ceiling portion (30), wherein a drain hose (40) is formed to be installed around four sides of the floor portion (10).

[0036] Accordingly, a dehumidification duct (50) is installed between the inner insulation material and the outer insulation material of the wall part (20) and the ceiling part (30) and is formed to be directly connected to one side and the other side of the longitudinal line of the drain hose (40) (the dehumidification duct installed upright toward the wall part or the ceiling part is connected in a direction perpendicular to the drain hose).

[0037] At this time, a dehumidifier (70) is connected to the drainage end of the drain hose (40) so that the collected moisture or water (absorbing moisture from the air or collecting it in the form of water droplets) is drained into the drainage channel within the toilet area.

[0038] For reference, it is preferable to combine a separate suction device (60) with the dehumidifier to enhance the moisture collection capability.

[0039] Accordingly, the dehumidification duct (50) is formed to be assembled and combined with a main passage (51) and a cover (52).

[0040] At this time, the main passage (51) has a cross-section in the shape of a '∪', with a horizontal plate (511) formed on one side and a vertical plate (512) provided on the other side, and the horizontal plate (511) of the main passage (51) is formed to have an elongated groove for assembly (513: formed to be assembled and connected within the wall through a fastening bolt, a fastening piece, or an equivalent fastener).

[0041] Here, a vertical plate (512) having a sliding groove (514) is formed to stand upright at both ends of the horizontal plate (511), and a cover (52) having a fitting projection (521) is formed to be assembled and connected in a sliding manner at the opening (516) between the plurality of vertical plates (512).

[0042] This is intended to allow the degree of opening between the openings of the main clearance to be adjusted when the cover is fitted and assembled to the main clearance.

[0043] Additionally, the vertical plate (512) is formed with a plurality of grill grooves (53) on the longitudinal plane (the section extending from the lower connecting part connected to the drain hose side to the upper opening facing the ceiling part) to perform moisture collection in the form of a mesh or grill net over the entire side space of the wall part (20) and the entire space of the ceiling part (30). (It is formed so that if the entire area is open rather than the grill grooves, suction through the dehumidifier is weak, and if the grill grooves are completely blocked, the amount of moisture collected is reduced.)

[0044] For reference, the wing rib (54) formed by the grill groove is formed such that the upper free end (542) is cut based on the lower joint (541) of the vertical plate (512), and the lower joint (541) of the wing rib (54) can be cut to expand the opening space of the grill groove (53) as needed. (The moisture removal suction port can be variably adjusted or expanded.)

[0045] At this time, the dehumidification duct (50) is formed such that the branch section (55) positioned toward the ceiling section (30) is installed in a manner corresponding to the roof angle (forming an inclined angle so that the collected moisture and water can be smoothly drained downward).

[0046] Accordingly, the dehumidifier (70) having a suction device (60) is formed such that the drain hose (40) is positioned 200 to 300 mm above the horizontal installation standard height (formed to prevent electrical leakage of electrical components when cleaning the bathroom floor and connected through a separate suction pipe).

[0047] Meanwhile, as an additional embodiment of the present invention, as shown in FIGS. 6 to 9, the floor portion (10) of a movable modular container house is provided with an outer frame for the floor (100: provided in the form of a C-channel or a square tube), and the inner space of the outer frame (100) is provided with a base frame (200) having an air pocket (G).

[0048] Accordingly, the base frame (200) is formed such that a plurality of member beams (210) are arranged continuously at regular intervals along one direction (continuously arranged in a lattice shape), and a lower finishing material (220) is joined to the lower side between adjacent member beams (210).

[0049] For reference, the member beam (210) is, in one embodiment, a profile (formed from plastic or metal material) having a side cross-sectional shape in the shape of a U, and a vertical end (211) is formed on one side, and a bottom end (212) and an upper end (213) are provided at the upper and lower ends of the vertical end (211). This member beam is formed so that both ends in the longitudinal direction are joined and fixed to the inner circumference of the outer frame.

[0050] And, the lower finishing material (220) is a thin, wide rectangular panel having a length in one direction, and is formed such that a vertically bent joining end (221) is provided at one end so as to be joined to one side of the vertical end (211) of an adjacent member beam, and a seating end (222) is provided on the other side opposite to the joining plate (221) so as to be joined to the upper surface of the bottom end (212) of an adjacent member beam.

[0051] In other words, the installation method for the lower finishing material is designed to allow for easy joining work from top to bottom without lifting the container (ensuring welding stability / bent steel plate / enabling work from top to bottom without lifting the container).

[0052] Meanwhile, the lower finishing material (220) is formed with a '∧' shaped bend (223) in the center of the surface so that even if a horizontal step difference occurs between member beams, the joining position can be easily adjusted by the bend (223).

[0053] That is, the '∧' shaped bending part (223) is an elastic part capable of spreading and closing, and is formed to allow for easy horizontal variation when joining (or including when fastening) adjacent member beams.

[0054] Accordingly, the base frame (200) is provided with a lift pocket (240) on one side and the other side of the central part, and the lift pocket (240) is formed to have a square frame (241) with an open top.

[0055] For reference, the lift pocket is a tube into which the forks of a forklift are inserted, and this part is also formed to form a second air pocket.

[0056] That is, a bridge panel (242) is joined to the open upper part of the square frame (241) to provide a second air pocket (243) in the internal space, and square pipes (244) are formed to be joined to the sides of both ends in the width direction of the square frame (241).

[0057] Here, the square pipe forms the lateral reinforcement of the square frame, and is formed so that downward rigidity is ensured when the forklift's forks are inserted into the square frame and lift the container box.

[0058] At this time, a unit insulation panel (230: urethane panel) is seated and joined on the upper side between adjacent member beams (210), and an air pocket (G) is formed in the space between the lower finishing material (220) and the insulation panel (230).

[0059] Here, the insulation panel (230: urethane panel) is formed such that it is assembled and joined horizontally by having a protrusion (215) having an insertion groove (214) and a fitting part (217) having a storage groove (216) at the widthwise end (the insulation panel (230) is formed as a sandwich-type structure, with outer panels made of synthetic resin or metal material joined to both sides based on the urethane block / the member beam (210) may be provided in the form of a square tube).

[0060] And, the member beam (210) is provided with reinforcing beams (250: joined and connected on the lower finishing material) that are inserted at equal intervals in a direction orthogonal to the direction in which they are arranged parallel in one direction, and the reinforcing beams (250) are formed to form a planar grid structure or a floor plate structure together with the member beam (210) (a non-conductive stick is also formed to be fitted and connected to the upper surface of the reinforcing beam).

[0061] Additionally, silicone adhesive (260) is applied to the joint connection gap between the member beam (210) and the lower finishing material (220), or between the member beam (210), the lower finishing material (220), and the reinforcing beam (250), or between the square frame (241) and the bridge panel (242), thereby forming an air pocket or a second air pocket with a sealed seal.

[0062] Additionally, it is desirable to attach a gasket pad (500) to the bottom surface of the insulation panel (230) so as to further strengthen the air pocket (including the second air pocket) structure when in contact (close contact) with the upper end (213: including the non-conductive stick) of the member beam (210) and the bridge panel (242).

[0063] Also, it is preferable that a non-conductive stick (300) made of synthetic resin or plastic material (a non-conductive material profile shape, a tunnel-shaped strip structure with an open bottom) be fitted and coupled to the upper end (213) of the member beam (210).

[0064] Meanwhile, as an additional embodiment of the present invention, as shown in FIGS. 10 to 13, a protruding shaft (224) having a fitting groove (225) is provided at the joint end (221) of the lower finishing material, wherein the protruding shaft (224) is formed to pass through a through groove (218) provided at the vertical end (211) of the member beam and then be temporarily fastened by a one-hand locker (400). (A form in which the member beam and the lower finishing material are temporarily assembled in advance before attaching the lower finishing material, which is a heavy member, to the vertical end of the member beam and sealing (applying silicone)_the other end of the lower finishing material is placed and rests over the bottom end of the member beam.)

[0065] That is, the one-hand locker (400) is provided on one side of the through-groove (218) of the vertical section (211), and is formed to enable one-touch unlocking for the protruding shaft (224) branched through the through-groove (218).

[0066] At this time, the one-hand locker (400) is formed such that a plurality of push buttons (420) facing each other are provided with respect to a central axis (based on the axis line of the protrusion axis) inside a holder case (410) having a communication groove (411), and each push button (420) is provided with a pressing part (421) on one side and a pressing part (422) on the other side, and the pressing part (422) is formed such that a restraining body (425) having a hook groove (423) and a guide rib (424) is provided.

[0067] Accordingly, the restraint body (425) is formed such that it is arranged so as to be opposite to each other vertically based on a horizontal axis between a plurality of push buttons (420), and when the insertion groove (225) of the protrusion shaft is placed in the center between a plurality of hook grooves (423) facing each other, the hook grooves (423) waiting on both sides based on the insertion groove (225) are compressed and inserted in the form of a latch to prevent the protrusion shaft from escaping (detachment).

[0068] Additionally, a slit groove (430) is formed in the horizontal direction of the compression part (422) based on the insertion groove (225) and the hook groove (423), so that mutually opposing guide ribs (424) are guided without movement along the open section of the slit groove (430) and are guided to each other during compression. On both ends of the outer width direction of the compression part (422), protruding ledges (440) are provided, and a coil spring (450) is inserted between the multiple protruding ledges (440) facing each other to promote constant outward pushing towards each other (providing elasticity that causes the multiple push buttons to spread toward each other's respective pressing directions). The compression part (422) is formed with a stepped wing (460) in a direction perpendicular to the axis direction so that the push button (420) is connected through the connecting groove (411) without slipping out.

[0069] That is, when the protrusion shaft branches laterally through the through hole of the vertical section, it is formed so that the protrusion shaft is exposed (branched) into the interior of the holder case along the opening of the one-hand locker's holder case; normally, the push button pushes the symmetrical protrusion jaw and the compression part apart by a coil spring, and at the same time, the restraint body spreads the space between the multiple hook grooves toward the center of the protrusion shaft axis, and the arc-shaped inner surface of the hook groove is inserted into the fitting groove of the protrusion shaft that has entered through the space, thereby achieving one-touch compression fixation.

[0070] For reference, when separating the vertical end of the member beam and the joint end of the lower finishing material, pressing the pressing part of the push button causes the coil spring to compress the protruding part, thereby narrowing the gap (restoring by elasticity when the pressing part is released), and the guide rib is guided and transported along the slit space (stroke section) of the slit groove (anti-movement / the guide rib guides without mutual movement through the slit groove), thereby forming the restraints to be separated from each other.

[0071] Ultimately, this is formed so that the hanging groove is separated from the insertion groove, allowing the protruding shaft to be freely released, and the vertical end of the member beam and the joint end of the lower finishing material are formed to be easily and conveniently assembled or separated.

[0072] In other words, when a push button is pressed to release, multiple hook grooves facing each other are separated and detached from the insertion groove, and as the locking of the hook groove is released, the protrusion axis becomes free, so that the vertical end of the member beam and the joint end of the lower finishing material can be easily separated and released (convenient for replacement and maintenance).

[0073] For reference, the holder case (410) is provided with a separate through hole (470) so that the branched protrusion shaft can branch out of the holder case without interference.

[0074] Meanwhile, as another embodiment of the present invention, as shown in FIGS. 14 and 15, the non-conductive stick (300) is formed such that an insertion cone (310) having a plurality of guide ribs (311) on one side is provided, and a support plate (320) having a protruding pin (321) having a fitting gap (322) is extended and connected to one of the guide ribs (311), and a connecting plate (330) having an insertion hole (331) is extended and connected to the other guide rib (311).

[0075] This is formed so that the upper and lower air pockets (G1, G2) of the double structure are formed by interconnecting adjacent non-conductive sticks, and when continuously joining and assembling adjacent non-conductive sticks, the end of the joining plate (330) is placed on the base plate (320), and after the protruding pin (321) is inserted into the insertion hole (331), the one-hand locker described above is formed to be fastened and assembled.

[0076] For reference, the insertion cone (310) is formed to be fitted into the upper end of the member beam through a plurality of guide ribs (311) (structured to be inserted in a tunnel shape), and each of the plurality of guide ribs is provided with a support plate and a connecting plate so as to be continuously connected in one direction (a form in which the upper and lower layers are separated and an air pocket is formed in a double structure so as to enhance thermal insulation, sound absorption, and moisture resistance).

[0077] At this time, the one-hand locker (400) is formed such that, as described above, a plurality of push buttons (420) facing each other with respect to the central axis (based on the axis of the protrusion pin) are provided inside a holder case (410) having a communication groove (411).

[0078] And, the push button (420) is provided with a pressing part (421) on one side and a pressing part (422) on the other side, and the pressing part (422) is formed to have a restraining body (425) having a hook groove (423) and a guide rib (424).

[0079] Accordingly, the restraint body (425) is formed such that it is arranged so as to be opposite to each other vertically based on the horizontal axis between the plurality of push buttons (420), and when the insertion gap (322) of the protrusion pin is placed in the center between the plurality of hook grooves (423) facing each other, the hook grooves (423) waiting on both sides based on the insertion gap (322) are compressed and inserted in the form of a latch to prevent the protrusion pin from escaping (detachment).

[0080] At this time, a slit groove (430) is formed in the horizontal direction of the compression part (422) based on the insertion groove (322) and the hook groove (423), so that mutually opposing guide ribs (424) are guided without movement along the open section of the slit groove (430) and are mutually guided during compression.

[0081] In addition, protruding ridges (440) are provided on both ends of the outer width direction of the compression part (422), and a coil spring (450) is inserted between the multiple protruding ridges (440) facing each other to promote constant outward pushing toward each other (providing elasticity that causes the multiple push buttons to spread toward their respective pressing directions), and the compression part (422) is formed with a stepped wing (460) formed in a direction perpendicular to the axial direction so that the push button (420) is connected through the connecting groove (411) without falling out to the outside.

[0082] This is formed so that the hook groove is separated from the insertion gap, allowing the projection pin to be freely released, and the base plate and connecting plate are formed to be easily and conveniently assembled or separated.

[0083] In other words, when a push button is pressed to release, multiple hook grooves facing each other are separated and detached from the insertion gap, and the hook grooves are released from locking so that the protruding pins become free, allowing the base plate and the connecting plate to be easily separated and released (making replacement or maintenance convenient).

[0084] For reference, the holder case (410) is provided with a separate through hole (470) so that the branched protrusion pin can branch out of the holder case without interference.

[0085] The present invention is not limited to the specific preferred embodiments described above, and anyone with ordinary knowledge in the art to which the invention pertains can make various modifications without departing from the essence of the invention as claimed in the claims, and such modifications will be within the scope of the claims. Explanation of the symbols

[0086] 10 ... floor part 20 ... wall part 30 ... ceiling part 40 ... drain hose 50 ... Dehumidification duct 51 ... Main customs clearance 511 ... horizontal plate 512 ... vertical plate 513 ... elongated slot 514 ... sliding slot 516 ... opening 52 ... cover 521 ... insert jaw 53 ... grill groove 54 ... wing rib 541 ... lower joint 542 ... upper free section 55 ... branching section 60 ... suction device 70 ... dehumidifier

Claims

Claim 1 In a movable modular container house composed of a floor section (10), a wall section (20), and a ceiling section (30), a drain hose (40) is installed around the four sides of the floor section (10), and a dehumidification duct (50) is installed between the inner insulation material and the outer insulation material of the wall section (20) and the ceiling section (30) and is formed to be directly connected to one side and the other side along the longitudinal line of the drain hose (40), and a dehumidifier (70) is connected to the drainage end of the drain hose (40) so that collected moisture or water is drained into a drainage channel within the toilet area. The dehumidification duct (50) is provided with a main passage (51) in the shape of a '∪' having a horizontal plate (511) and a vertical plate (512), and the horizontal plate (511) of the main passage (51) is formed to have an elongated groove (513) for assembly. A movable modular container house having a moisture removal structure for a ceiling and a wall, characterized in that a vertical plate (512) having a sliding groove (514) is formed to be erected at both ends of a horizontal plate (511), and a cover (52) having a fitting projection (521) is formed to be assembled and connected in a sliding manner at an opening (516) between a plurality of vertical plates (512), and a plurality of grill grooves (53) are formed on the longitudinal surface of the vertical plate (512) to perform moisture collection for the entire side space of the wall part (20) and the entire space of the ceiling part (30), and the wing rib (54) formed by the grill groove (53) is formed such that the upper free end (542) is cut based on the lower joint (541) of the vertical plate (512), so that the opening space of the grill groove (53) can be expanded by cutting the lower joint (541) of the wing rib (54) as needed. Claim 2 delete Claim 3 delete Claim 4 delete Claim 5 delete

Citation Information

Patent Citations

  • Building with moistureproof function

    JP1999051440A

  • Refurbished comfortable house

    JP3026609B2

  • Apparatus for installing insulation panel complex of construction

    KR101518232B1

  • Dehumidifier agent and dehumidifier and repetitive using dehumidifier agent

    KR1020150109741A