WO2010095829A2 - Portable boiler for a hot mat - Google Patents

Portable boiler for a hot mat Download PDF

Info

Publication number
WO2010095829A2
WO2010095829A2 PCT/KR2010/000845 KR2010000845W WO2010095829A2 WO 2010095829 A2 WO2010095829 A2 WO 2010095829A2 KR 2010000845 W KR2010000845 W KR 2010000845W WO 2010095829 A2 WO2010095829 A2 WO 2010095829A2
Authority
WO
WIPO (PCT)
Prior art keywords
fuel
cylinder assembly
circulating water
water
fuel discharge
Prior art date
Application number
PCT/KR2010/000845
Other languages
French (fr)
Korean (ko)
Other versions
WO2010095829A3 (en
Inventor
조호용
Original Assignee
주식회사 유로하우징
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 주식회사 유로하우징 filed Critical 주식회사 유로하우징
Publication of WO2010095829A2 publication Critical patent/WO2010095829A2/en
Publication of WO2010095829A3 publication Critical patent/WO2010095829A3/en

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • F24H1/06Portable or mobile, e.g. collapsible
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H9/00Details
    • F24H9/20Arrangement or mounting of control or safety devices
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24DDOMESTIC- OR SPACE-HEATING SYSTEMS, e.g. CENTRAL HEATING SYSTEMS; DOMESTIC HOT-WATER SUPPLY SYSTEMS; ELEMENTS OR COMPONENTS THEREFOR
    • F24D3/00Hot-water central heating systems
    • F24D3/12Tube and panel arrangements for ceiling, wall, or underfloor heating
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • F24H1/10Continuous-flow heaters, i.e. heaters in which heat is generated only while the water is flowing, e.g. with direct contact of the water with the heating medium
    • F24H1/12Continuous-flow heaters, i.e. heaters in which heat is generated only while the water is flowing, e.g. with direct contact of the water with the heating medium in which the water is kept separate from the heating medium
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24HFLUID HEATERS, e.g. WATER OR AIR HEATERS, HAVING HEAT-GENERATING MEANS, e.g. HEAT PUMPS, IN GENERAL
    • F24H1/00Water heaters, e.g. boilers, continuous-flow heaters or water-storage heaters
    • F24H1/10Continuous-flow heaters, i.e. heaters in which heat is generated only while the water is flowing, e.g. with direct contact of the water with the heating medium
    • F24H1/12Continuous-flow heaters, i.e. heaters in which heat is generated only while the water is flowing, e.g. with direct contact of the water with the heating medium in which the water is kept separate from the heating medium
    • F24H1/124Continuous-flow heaters, i.e. heaters in which heat is generated only while the water is flowing, e.g. with direct contact of the water with the heating medium in which the water is kept separate from the heating medium using fluid fuel
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]

Definitions

  • the present invention relates to a mobile boiler for a thermal mat, and more particularly, when camping outdoors such as mountains, rivers, or the sea for fishing or hiking, the thermal mat used for covering or laying on the floor
  • the present invention relates to a mobile boiler for a thermal mat for warming circulating water circulating therein.
  • tents and sleeping bags are typically used when camping on a mountain, river, or sea for hiking or fishing.
  • the ground is laid with a mat or vinyl for the purpose of blocking the cold and moisture coming from the ground.
  • the high-pressure bubbles generated during the heating of the circulating water are not discharged, and the pipes and hot water hoses circulate with the circulating water, thereby causing a noise as they collide with the inner surfaces of the pipes and the hot water hoses.
  • the present invention has been made in order to solve the problems and technical bias as described above, to prevent the noise is generated in the process of circulating the circulating water thermal mat, a portable boiler for a thermal mat that can selectively control the temperature of the circulating water
  • the purpose is to provide.
  • the mobile boiler for the thermal mat of the present invention has been made in order to achieve the above object, the mobile boiler for the thermal mat of the present invention, the inlet pipe is formed on one side so that the circulating water circulating the thermal mat, and the storage unit for storing the circulating water and ; A heat transfer part in which the circulating water discharged from the water storage part flows along a predetermined flow path tube, and the circulation water is discharged to the thermal mat through an outlet pipe formed on one side; A heating unit for burning the fuel gas supplied from the fuel tank to heat the circulating water in the heat transfer unit; And a housing forming an external appearance, the structure of a heating mat provided with a portable boiler comprising: an inlet pipe connected to one end of a circulation pipe embedded in one side of the heating mat; A fixing bracket having a plurality of holes formed therein to allow the circulation water to flow into the heat transfer part; A thin film check valve for opening and closing the hole according to the water pressure by the circulating water; A temperature sensor which senses the temperature of the circulating water and generates
  • a first piston mounted to the opening and closing of the first fuel discharge pipe by moving the inside of the cylinder by the rotation of the adjustment knob screwed to the adjustment screw portion formed in the control screw and formed on the support block so as to communicate with the first fuel discharge pipe.
  • a first cylinder assembly and a second piston for opening and closing the second fuel discharge pipe by sliding the inside thereof are mounted and formed on the support block so as to communicate with the first cylinder assembly, and the fuel introduced through the second fuel discharge pipe.
  • a gas regulator having a second cylinder assembly having a second fuel discharge hole for discharging the gas; And a movable member for moving the second piston by being in contact with an end of the second piston of the second cylinder assembly and being expanded or contracted by receiving a physical signal generated from the temperature sensor, and changing the position of the movable member.
  • a controller having a position adjuster; And a combustor configured to combust the fuel gas introduced through the second fuel discharge hole of the second cylinder assembly, and an ignition plug to generate an electric spark in the combustor. It is configured to include.
  • the temperature sensor is submerged in the reservoir to sense the temperature of the circulating water, and when the temperature of the circulating water introduced into the reservoir by the fluid filled therein reaches a specific temperature expansion or contraction
  • the signal generation unit for generating a physical signal and the signal transmission unit consisting of a capillary filled with the fluid to transfer the physical signal to the moving member.
  • a concave groove is formed at the tip of the second piston of the second cylinder assembly so that the fine fuel flows into the second cylinder assembly even when the fuel discharge pipe of the second cylinder assembly is closed.
  • the recess groove may be formed at the distal end of the second piston, and the second cylinder assembly may be formed on the inner circumferential surface of the second fuel discharge pipe of the second cylinder assembly even if the fuel discharge pipe of the second cylinder assembly is closed. Concave groove may be formed so that the fine fuel flows into the interior.
  • the position adjuster, and the elastic frame for supporting the moving member in a fixed state on one side of the support block;
  • a fixed frame coupled to the other side of the support block;
  • a adjusting bolt penetrating the fixed frame and screwed to the elastic frame at one end thereof, and having a handle for rotating the adjusting bolt at the other end thereof.
  • the adjustment bolt is screwed with the adjustment bolt may be further provided with a fixing nut fixed to the elastic frame.
  • the high-pressure bubble is discharged through the air discharger, there is no noise generated, there is an effect that can significantly reduce the risk of explosion due to the high-pressure gas. .
  • FIG. 1 is a schematic view showing the appearance of a movable boiler and a thermal mat for a thermal mat according to a preferred embodiment of the present invention.
  • Figure 2 is a cross-sectional view showing the overall structure of a mobile boiler for a thermal mat according to a preferred embodiment of the present invention.
  • Figure 3 is an exploded perspective view of the fixing bracket, the lifting rod, the check valve and the air discharger mounted on the reservoir in the configuration according to a preferred embodiment of the present invention.
  • Figure 4 is a perspective view showing the configuration of the heat transfer portion of the configuration according to a preferred embodiment of the present invention.
  • FIG. 5 is a front view showing the appearance of the heating unit in the configuration according to a preferred embodiment of the present invention.
  • FIG. 6 is a cross-sectional view taken along line I-I of FIG. 5 showing an interaction between a temperature sensor and a heating unit during construction according to a preferred embodiment of the present invention.
  • FIG. 7 and 8 are schematic views showing a state in which the recess groove is formed in the second piston and the second fuel discharge pipe of the configuration according to an embodiment of the present invention.
  • FIG. 1 is a schematic view showing the appearance of the movable boiler and the thermal mat for a thermal mat according to a preferred embodiment of the present invention.
  • the inlet pipe 110 is formed so that the circulating water circulating the thermal mat 10 in the upper portion of one side, the reservoir 100, the circulation water is stored;
  • the circulating water discharged from the water storage part 100 is heat-exchanged while flowing along a predetermined flow path tube 220, and the heat transfer part through which the circulating water is discharged to the thermal mat 10 through an outlet pipe 210 formed at one side ( 200);
  • a housing 700 forming an appearance: circulating water circulating through the thermal mat 10 and exiting the circulating water 10 is introduced through the inlet pipe 110 of the mobile boiler 1000, and a flow path of the heat transfer part 200 is formed. It is heated to flow and flows back into the heating mat 10 through the outlet pipe 210.
  • the temperature sensor 140 for generating a physical signal by sensing the temperature of the inflow water by expanding or contracting the liquid filled therein;
  • a gas regulator 400 for controlling the ejection amount of the fuel gas supplied from the fuel tank;
  • a controller 500 that receives the physical signal generated from the temperature sensor 140 and controls the gas regulator 400.
  • the housing 700 corresponding to the reservoir 100 is formed with a corrugation 760 for reinforcing strength while promoting cooling of the circulating water introduced into the reservoir 100.
  • a plurality of first vent holes 710 are formed at a position corresponding to the bypass flow path 205 of the heat transfer part 200, which is the temperature of the outside air.
  • the bypass flow path 205 and the vertical flow path 203 of the heat transfer unit 200 is to be cooled by the air so as not to be overheated by the heat transferred from the inclined flow path pipe (207).
  • a plurality of second vent holes 720 are formed at a position corresponding to the heat collecting plate 250, which is a gas and heat generated during the combustion of fuel gas when the igniter 600 to be described below operates. To discharge them.
  • the windshield 750 is further formed to prevent this. It is.
  • the auxiliary cover 740 is formed in the housing 700 corresponding to the first vent hole 710, the plurality of auxiliary vent holes 743 for selectively opening and closing the first vent hole 710 is formed.
  • the temperature of the outside air is significantly lower, this is to prevent the temperature of the heat transfer part 200 from being supercooled by the outside air introduced through the first air hole 710, thereby preventing the thermal efficiency from being lowered.
  • the auxiliary cover 740 having the above auxiliary ventilation hole 743 may be used by the user appropriately adjusting the position of the first ventilation hole 710 according to the surrounding environment.
  • FIG. 2 is a cross-sectional view showing the overall structure of a mobile boiler for a thermal mat according to a preferred embodiment of the present invention.
  • the inside of the housing 700 which forms an external appearance is comprised from the water storage part 100, the heat-transfer part 200, and the heating part 300 from the top.
  • the housing 700 is illustrated as being divided into three parts, each of them may be made of one member as a whole.
  • An inlet pipe 110 connected to one end of the circulation pipe 20 embedded in the upper heating mat 10 at the upper right side of the reservoir 100;
  • a fixing bracket 120 having a plurality of holes 123 formed therein to allow the circulation water to flow into the heat transfer part 200;
  • a check valve 130 made of a soft silicon thin film for opening and closing the upper hole 123 according to the water pressure by the upper circulation water; It includes a temperature sensor 140 for sensing the temperature of the inflow water to generate a physical signal by expanding or contracting the liquid filled therein, the check valve 130, through the center of the fixing bracket 120 It is coupled to one end of the elevating rod 124, the outer circumferential surface of the elevating rod 124 is provided with the other end of the elevating rod 124 and the spring 125 supported by the fixing bracket 120.
  • the spring is used, but is not necessarily limited to the elastic member that is restored when the compression force is removed after compression.
  • the check valve 130 When the top cover constituting a part of the housing 700 is opened and the circulating water is introduced, the check valve 130 should be opened so that the circulating water may be introduced into the thermal mat 10 through the outlet pipe 210. Since the check valve 130 is made of a thin film of silicon, it is closed until the circulating water introduced into the water storage part 100 forms a constant water pressure, and thus the lowering rod 124 must be artificially lowered.
  • the spring 125 is wound around the outer circumferential surface of the elevating rod 124, and both ends thereof are supported by one end of the elevating rod 124 and the fixing bracket 120, and then lifted again when the pressing force is removed. 130 will be closed.
  • the gas fuel supplied from the fuel tank T need not be in the ignited state.
  • the check valve 130 is forcibly opened for a predetermined time, and the circulating water is introduced into the upper warming mat, and then the lifting bar 124 is placed and purely by the water pressure of the circulating water contained in the reservoir 100.
  • the check valve 130 will be opened or closed, and the circulating water flowing out through the holes 123 formed in the fixing bracket 120 flows into the heat transfer part 200 when the check valve 130 is opened.
  • FIG 3 is an exploded perspective view of the fixing bracket 120, the lifting rod 124, the check valve 130, and the air discharger 127 mounted to the water storage part 100.
  • the fixing bracket 120 has a hole 123 having a predetermined depth in a radial shape, and an empty space is formed therein so that the circulation water can flow when the check valve 130 is opened.
  • the lower part has a female screw formed to be coupled to the vertical flow path 203 of the heat transfer part 200.
  • the upper check valve 130 is installed on the lower surface of the hole 123 of the upper fixing bracket 120, and when the check valve 130 is struck downward by the hydraulic pressure of the circulating water included in the reservoir 100, the upper hole 123 is configured to be open.
  • the lower surface of the fixing bracket 120 is provided with a rubber packing 128 to prevent leakage between the fixing bracket 120 and the heat transfer part 200.
  • a stepped hole is formed in the center of the fixing bracket 120 through which the lifting rod 124 can pass, and one end of the spring 125 wound around the outer circumferential surface of the lifting rod 124 is the stepped portion. Is supported.
  • the lifting bar 124 is used to inject the circulating water at the beginning of operation.
  • the check valve 130 coupled to the distal end of the lifting bar 124 is forced. Opening and removing the pressing force is closing again by the restoring force of the spring 125.
  • the outermost portion of the fixing bracket 120 is further formed with a blowout hole 126 is screwed with the air discharge 127.
  • the ejection hole 126 of the upper air discharger 127 is for discharging steam generated while the circulating water flows inside the heat transfer part 200.
  • the ejection hole 126 is blocked. The ball is pushed up and the steam is discharged to the reservoir 100 through the air outlet 127a.
  • the steam generated from the heat transfer part 200 is a compressible material unlike water, since the volume is small, but high pressure, if the steam is not removed, noise may be generated or an explosion may occur while circulating the thermal mat.
  • a rod-shaped pressing member contacting the head of the elevating rod may be further provided to artificially press the elevating rod 124 externally.
  • the configuration of the heat transfer part 200 will be described in more detail with reference to FIG. 4.
  • FIG. 4 is a perspective view illustrating a configuration of the heat transfer part 200.
  • the heat transfer part 200 includes: a flow path tube 220 which absorbs heat while the circulating water flows in and flows when the check valve 130 of the water storage part 100 is opened; Is formed.
  • the upper flow pipe 220 the circulation water is first introduced through the check valve 130 of the reservoir 100, the male thread is formed to be screwed to the lower end of the fixing bracket 120 of the reservoir 100
  • a downward vertical channel 203 A bypass flow passage 205 communicating with the vertical flow passage 203 and bypassing the circulating water introduced through the vertical flow passage 203 to one side;
  • an inclined flow pipe 207 in communication with the bypass flow pipe 205 and having an inclined flow path inclined toward the outlet pipe 210.
  • the bypass flow path 205 is provided because, when the circulating water introduced through the vertical flow path 203 falls vertically to the bottom of the high temperature, sudden vaporization may occur and there is a concern that bubbles may occur due to the rapid vaporization. Because there is.
  • the flow path toward the outflow pipe 210 is also constituted by the inclined flow path pipe 207 to increase the heat transfer area and to prevent sudden vaporization of the circulating water and facilitate the circulation of the circulating water.
  • the lower surface of the heat transfer unit 200 is attached to the circular heat collecting plate 250 for improving the thermal conductivity transmitted from the heating unit 300 to the flow path tube 220, the heat collecting plate 250, the outer side from the center of the circle A plurality of heat collecting pins 255 formed in the direction are further provided.
  • Support brackets 230 are formed to support between the 250, which is to form the space 240 between the heat collecting plate 250 and the flow pipe 220 by the support bracket 230. Therefore, heat transfer from the heat collecting plate 250 to the flow path tube 220 becomes convection through the space portion 240, and heat transfer from the heat collecting plate 250 to the inclined flow path tube 207 is performed by the support bracket 230. Through evangelism.
  • the support bracket 230 extends from the upper portion of the inclined flow path tube 207, the bottom surface of the inclined flow path tube 207 generates heat transfer only by convection through the space portion 240, and thus, the inclined flow path tube 207. Sudden evaporation that can occur on the bottom surface of the can be prevented in advance.
  • the reservoir 100 A shielding plate 260 is formed to prevent heat from being transferred to the heat sink, which is a temperature of the circulating water entering the heating mat 10 when the temperature of the circulating water in the reservoir 100 is heated by the heat transfer part 200. Is because it can rise more than necessary.
  • FIGS. 5 and 6 a mechanism for sensing the temperature of the circulating water introduced into the reservoir 100 and adjusting the amount of fuel gas supplied from the fuel tank T according to the temperature of the circulating water Explain.
  • FIG. 5 is a front view showing the appearance of the heating unit 300.
  • the heating unit 300 includes a gas regulator 400 for controlling the ejection amount of the fuel gas supplied from the fuel tank T; A controller 500 for controlling the gas regulator 400 by receiving a physical signal of expansion or contraction generated from the temperature sensor 140; And a combustor 610 for combusting fuel gas introduced through the second fuel discharge hole 414a of the second cylinder assembly 430, and a spark plug 620 for generating an electric spark in the combustor 610. Consists of igniter 600 consisting of.
  • FIG. 6 is a cross-sectional view taken along line I-I of FIG. 5 showing the interaction between the temperature sensor 140 and the heating part 300.
  • the temperature sensor 140 is mounted on the reservoir 100 to detect the temperature of the circulating water introduced into the reservoir 100 so that the liquid filled therein according to the temperature of the circulated water
  • Signal generation unit 143 for generating a physical signal by expanding or contracting, and transmits the physical signal generated by the signal generation unit 143 to the controller 500 (exactly the moving member 510) of the heating unit 300 It consists of a signal transmission unit 145 of the capillary for delivery.
  • the physical signal generated by the signal generator 143 refers to the expansion force or contraction force of the liquid filled in the signal generator 143. Therefore, when the temperature of the circulating water in the reservoir 100 reaches a predetermined temperature or more, the liquid filled therein expands and transmits an expansion force to the stomach moving member 510, and the stomach is expanded by the expansion of the movable member 510. The second piston 431 is moved to the left in the drawing to eventually close the second fuel discharge pipe 414.
  • the second fuel discharge pipe 414 is opened based on the principle that the specific volume of the liquid is reduced, which is the first cylinder assembly 420. This is possible because the second piston 431 is always pushed to the right in the drawing due to the pressure of the fuel gas flowing into the second fuel discharge pipe 414 from.
  • the signal transmission unit 145 is made of a capillary tube, even if the specific volume of the filling liquid changes minutely, the specific volume change can be converted into a change in pressure and transmitted to the upper moving member 510.
  • the liquid filled in the temperature sensor 140 is not limited to a specific material as long as there is a change in specific volume depending on temperature.
  • the gas regulator 400, the coupling portion 411 and the fuel gas supplied from the fuel tank (T) coupled to the fuel tank (T) the first fuel is ejected through the first fuel discharge hole (413a)
  • the first piston 421 for opening and closing the first fuel discharge pipe 413 is mounted by moving the inside of the cylinder by the rotation of the adjustment knob 440 screwed to the adjustment screw part 422 formed inside the cylinder and the first A first cylinder assembly 420 formed on the support block 410 to communicate with the fuel discharge pipe 413;
  • the second piston 431 for opening and closing the second fuel discharge pipe 414 by sliding the inside is mounted and formed on the support block 410 so as to communicate with the first cylinder assembly 420 and the second fuel discharge And a second cylinder assembly 430 having a second fuel discharge hole 414a for discharging the fuel gas introduced through the pipe 414.
  • First and second cylinder assemblies 420 and 430 are formed on the support block 410.
  • the cylinder assemblies 420 and 430 are provided with fuel discharge pipes 413 and 414, fuel discharge holes 413a and 414a and pistons 421 and 431 in each cylinder.
  • the first cylinder assembly 420 is for manually controlling the amount of fuel gas ejected from the fuel tank T directly, and rotating the adjusting knob 440 screwed to the adjusting screw part 422 formed inside the cylinder. By controlling the opening of the first fuel discharge pipe 413 to the first piston 421.
  • the second cylinder assembly 430 is a configuration for adjusting the amount of fuel gas required to heat the heat transfer unit 200, and sends the fuel gas to the combustor 610 of the igniter 600.
  • the fuel gas exiting through the first cylinder assembly 420 is the second fuel discharge pipe 414 of the second cylinder assembly 430. And the second fuel discharge hole 414a.
  • the opening degree of the second fuel discharge pipe 414 is determined by the movement of the second piston 431 of the second cylinder assembly 430.
  • the movement of the second piston 431 is moved from the upper temperature sensor 140. It is made by the expansion or contraction of the movable member 510 to expand or contract in response to the generated physical signal.
  • the ends of the moving member 510 and the second piston 431 abut each other, so that when the moving member 510 expands, the second piston 431 closes the second fuel discharge pipe 414.
  • the moving member 510 contracts, the second piston 431 moves in the direction of opening the second fuel discharge pipe 414 (right in the drawing).
  • the second piston 431 is because the fuel gas discharged from the first cylinder assembly 420 always pushes the second piston 431 to the right in the drawing at a predetermined pressure through the second fuel discharge pipe 414.
  • the end and the moving member 510 is to be moved to the right in the drawing while maintaining a contact state.
  • the controller 500 includes a moving member 510 described above and a position adjuster 540 for manually manipulating the position of the moving member 510.
  • Position adjuster 550 is a configuration for manually setting the opening degree of the second fuel discharge pipe 414 of the second cylinder assembly 430, the upper moving member in a fixed state on one side of the support block 410
  • An elastic frame 520 supporting the 510 A fixed frame 530 coupled to the other side of the support block 410;
  • One end is provided with a control bolt 541 penetrating the fixed frame and screwed to the elastic frame 520, the other end is provided with a handle 542 for rotating the adjustment bolt 541 (position control lever ( 540);
  • the elastic frame 520 is fixed to only one side of the support block 410, and is coupled to the moving member 510, so that the elastic frame 520 moves in the lateral direction. 510 is also moved together.
  • the other side of the support block 410 is fixed to the fixed frame 530 in the form of the L-shape, the fixed frame 530 and the elastic frame 520 in the part facing the most recent distance of the position control lever 540
  • the adjusting bolt 541 is screwed to the elastic frame 520 through the fixing frame 530.
  • the positioning lever 540 When the knob 542 of the positioning lever 540 is rotated in the direction of tightening the screw, the positioning lever 540 cannot be moved forward (rightward in the drawing) by the upper fixing frame 530, so the upper adjusting nut is relatively higher. 521 and the elastic frame 520 fixed thereto are moved to the left in the drawing.
  • the adjustment nut 521 can be selectively used to reinforce the use strength, even if there is no adjustment nut 521 has the same effect.
  • the opening degree of the second fuel discharge pipe 414 of the second cylinder assembly 430 is determined.
  • the moving member 510 is moved by the physical signal of the temperature sensor 140, thereby adjusting the opening degree of the second fuel discharge pipe 414 by the second piston 431.
  • the second cylinder assembly is closed at the tip of the second piston assembly 430 of the second cylinder assembly 430 even if the fuel discharge pipe 414 of the second cylinder assembly 430 is closed.
  • the recess groove 431a is formed so that the fine fuel flows into the inside.
  • a minute amount of fuel gas may flow into the second cylinder assembly 430 through the recess groove 431a, thereby circulating. It is possible to send the fuel gas necessary to maintain the temperature of the water to the igniter 600.
  • the inner discharge surface of the fuel discharge pipe 414 of the second cylinder assembly 430 may be closed even if the fuel discharge pipe 414 of the second cylinder assembly 430 is closed.
  • a recess groove 414b may be formed to allow the microfuel to flow into the second cylinder assembly 430.
  • the mobile boiler 1000 for the thermal mat of the present invention has been described through the preferred embodiment, but this is for the purpose of helping the understanding of the present invention and is not intended to limit the technical scope of the present invention.
  • the type of liquid to be filled in the temperature sensor 140 of the present invention the shape or material of the moving member 510, the coupling structure of each configuration, the shape of the flow path tube 220 included in the heat transfer part 200.
  • materials and the like cannot be used as criteria for determining the technical scope of the present invention, and are determined only by the claims.

Abstract

The present invention relates to a hot mat having a portable boiler, which comprises: a water-reserving unit, one side of which has an inlet pipe for introducing water circulating through the hot mat, and which stores the water; a heat transfer unit, in which the water discharged from the water-reserving unit flows along a flow channel pipe to be heat exchanged, and the water is discharged to the hot mat via an outlet pipe formed at one side thereof; a heating unit which burns the fuel gas fed from a fuel tank to heat the water in the heat transfer unit; and a housing which forms the outer appearance of the boiler.

Description

온열매트용 이동식 보일러Portable boiler for thermal mat
본 발명은 온열매트용 이동식 보일러에 관한 것으로서, 더욱 상세하게는 낚시나 등산 등을 위해 산이나 강 또는 바다 등과 같이 야외에서 야영을 하고자 할 때, 보온을 위해 덮거나 바닥에 깔아 사용되는 온열매트의 내부를 순환하는 순환수를 데우기 위한 온열매트용 이동식 보일러에 관한 것이다.The present invention relates to a mobile boiler for a thermal mat, and more particularly, when camping outdoors such as mountains, rivers, or the sea for fishing or hiking, the thermal mat used for covering or laying on the floor The present invention relates to a mobile boiler for a thermal mat for warming circulating water circulating therein.
일반적으로 등산이나 낚시를 위하여 산이나 강 또는 바다와 같은 곳에서 야영을 하게 되는 경우 통상적으로 텐트와 침낭을 사용하게 된다.In general, tents and sleeping bags are typically used when camping on a mountain, river, or sea for hiking or fishing.
이때, 지면에는 지면으로부터 올라오는 냉기와 습기를 차단하기 위한 목적으로 돗자리 내지는 비닐 등을 깔게 된다. At this time, the ground is laid with a mat or vinyl for the purpose of blocking the cold and moisture coming from the ground.
그러나, 겨울 산행이나 고산지대의 산악과 같이 혹한의 상황에서는 체온을 유지하기가 매우 곤란하다. 만약 야영시에 체온이 적절히 유지되지 못하면 산악등반에 필요한 판단력이나 위기대처능력에도 영향을 주게 되어 자칫 큰 사고로 이어질 수 있다.However, it is very difficult to maintain body temperature in extreme conditions such as winter hiking or high mountains. If the body temperature is not properly maintained during camping, it can affect the judgment and the ability to deal with the crisis, which can lead to big accidents.
이러한 문제점을 해결하기 위한 기술로서, 실용신안등록 제207192호 및 특허등록 제604405호 등이 있으나, 실용신안등록 제207192호에 개시된 상기의 온열매트용 온수가열기 및 특허등록 제604405호에 개시된 이동식 보일러장치에서는, 온열매트 및 온수장판으로 순환하는 순환수의 온도를 제어할 수 있는 별도의 온도조절장치가 구비되지 않아 순환수의 온도가 계속 상승하는 경우 사용자가 화상을 입게 되는 치명적인 문제가 있다. As a technique for solving such a problem, there is utility model registration No. 207192 and patent registration No. 604405, but the hot water heater for the thermal mat disclosed in Utility Model Registration No. 207192 and the mobile type disclosed in Patent Registration No. 604405. In the boiler apparatus, there is a fatal problem that the user is burned when the temperature of the circulating water continues to rise because there is no separate temperature controller for controlling the temperature of the circulating water circulating to the hot mat and the hot water plate.
또한, 순환수를 가열하는 도중에 발생되는 고압의 기포가 배출되지 못하고, 순환수와 함께 파이프 및 온수호스를 순환하기 때문에 파이프 및 온수호스의 내측면과 부딛쳐 터지게 되면서 소음을 유발시키는 문제가 있다.In addition, the high-pressure bubbles generated during the heating of the circulating water are not discharged, and the pipes and hot water hoses circulate with the circulating water, thereby causing a noise as they collide with the inner surfaces of the pipes and the hot water hoses.
본 발명은 상기와 같은 문제점 및 기술적 편견을 해소하기 위해 안출된 것으로서, 순환수가 온열매트를 순환하는 과정에서 소음이 발생되지 않도록 하고, 순환수의 온도를 선택적으로 제어할 수 있는 온열매트용 이동식 보일러를 제공하는데 그 목적이 있다.The present invention has been made in order to solve the problems and technical bias as described above, to prevent the noise is generated in the process of circulating the circulating water thermal mat, a portable boiler for a thermal mat that can selectively control the temperature of the circulating water The purpose is to provide.
또한, 등산 등의 야영시에 지참할 수 있는 일회용 연료가스통을 이용할 수 있도록 하는 안정된 구조의 보일러를 제공하는데 또 다른 목적이 있다.In addition, there is another object to provide a boiler of a stable structure that makes it possible to use a disposable fuel gas cylinder that can be carried when camping, such as climbing.
본 발명은 상기와 같은 목적을 달성하기 위해 안출된 것으로서, 본 발명의 온열매트용 이동식 보일러는, 일측에는 온열매트를 순환하는 순환수가 유입되도록 유입관이 형성되고, 상기 순환수가 저장되는 저수부와; 상기 저수부로부터 배출되는 상기 순환수가 일정한 유로관를 따라 유동하면서 열교환 되고, 일측에 형성된 유출관을 통해 상기 온열매트로 상기 순환수가 배출되는 전열부와; 연료탱크로부터 공급된 연료가스를 연소시켜 상기 전열부 내부의 상기 순환수를 가열하는 가열부; 및 외관을 형성하는 하우징: 을 포함하는 이동식 보일러가 구비된 온열매트의 구조에 있어서, 상기 저수부는, 일측에는 상기 온열매트의 내부에 매설된 순환관의 일단부와 연결된 유입관과; 상기 순환수가 상기 전열부 내부로 유입되도록 하는 다수개의 구멍이 형성된 고정브라켓과; 상기 순환수에 의한 수압에 따라 상기 구멍을 개폐하는 박막의 체크밸브와; 상기 순환수의 온도를 감지하여 내부에 충진된 액체가 팽창 또는 수축함으로써 물리적신호를 생성하는 온도센서; 를 포함하고, 상기 전열부에는, 상기 저수부의 상기 체크밸브가 개방될 때 상기 순환수가 유입되어 유동하는 동안 열을 흡수하는 유로관; 이 형성되며, 상기 가열부는, 상기 연료탱크와 결합되는 결합부와, 상기 연료탱크로부터 공급된 연료가스가 제1연료토출공을 통해 분출되는 제1연료토출관이 구비된 지지블록과, 실린더 내측에 형성된 조절나사부에 나사결합된 조절노브의 회전에 의해 실린더 내부를 이동함으로써 상기 제1연료토출관을 개폐하는 제1피스톤이 장착되고 상기 제1연료토출관과 연통되도록 상기 지지블록 상에 형성된 제1실린더어셈블리와, 내부를 슬라이딩 이동함으로써 제2연료토출관을 개폐하는 제2피스톤이 장착되고 상기 제1실린더어셈블리와 연통되도록 상기 지지블록 상에 형성되며 상기 제2연료토출관을 통해 유입된 연료가스를 토출시키기 위한 제2연료토출공이 형성된 제2실린더어셈블리가 구비된 가스조절기; 및 상기 제2실린더어셈블리의 상기 제2피스톤의 끝단부와 당접하여 상기 온도센서로부터 생성된 물리적신호를 받아 팽창 또는 수축됨으로써 상기 제2피스톤을 이동시키는 이동부재와, 상기 이동부재의 위치를 가변시키기 위한 위치조절기를 구비한 제어기; 및 상기 제2실린더어셈블리의 상기 제2연료토출공을 통해 유입된 연료가스를 연소시키는 연소기과, 상기 연소기에 전기스파크를 발생시키는 점화플러그로 이루어진 점화기; 를 포함하여 구성된다.The present invention has been made in order to achieve the above object, the mobile boiler for the thermal mat of the present invention, the inlet pipe is formed on one side so that the circulating water circulating the thermal mat, and the storage unit for storing the circulating water and ; A heat transfer part in which the circulating water discharged from the water storage part flows along a predetermined flow path tube, and the circulation water is discharged to the thermal mat through an outlet pipe formed on one side; A heating unit for burning the fuel gas supplied from the fuel tank to heat the circulating water in the heat transfer unit; And a housing forming an external appearance, the structure of a heating mat provided with a portable boiler comprising: an inlet pipe connected to one end of a circulation pipe embedded in one side of the heating mat; A fixing bracket having a plurality of holes formed therein to allow the circulation water to flow into the heat transfer part; A thin film check valve for opening and closing the hole according to the water pressure by the circulating water; A temperature sensor which senses the temperature of the circulating water and generates a physical signal by expanding or contracting the liquid filled therein; It includes, The heat transfer portion, The flow path tube for absorbing heat while the circulating water flows when the check valve of the reservoir is opened; The heating unit includes a support block including a coupling part coupled to the fuel tank, a first fuel discharge pipe through which the fuel gas supplied from the fuel tank is discharged through the first fuel discharge hole, and an inside of the cylinder. A first piston mounted to the opening and closing of the first fuel discharge pipe by moving the inside of the cylinder by the rotation of the adjustment knob screwed to the adjustment screw portion formed in the control screw and formed on the support block so as to communicate with the first fuel discharge pipe. A first cylinder assembly and a second piston for opening and closing the second fuel discharge pipe by sliding the inside thereof are mounted and formed on the support block so as to communicate with the first cylinder assembly, and the fuel introduced through the second fuel discharge pipe. A gas regulator having a second cylinder assembly having a second fuel discharge hole for discharging the gas; And a movable member for moving the second piston by being in contact with an end of the second piston of the second cylinder assembly and being expanded or contracted by receiving a physical signal generated from the temperature sensor, and changing the position of the movable member. A controller having a position adjuster; And a combustor configured to combust the fuel gas introduced through the second fuel discharge hole of the second cylinder assembly, and an ignition plug to generate an electric spark in the combustor. It is configured to include.
한편, 상기 온도센서는, 상기 저수부의 내부에 잠수되어 순환수의 온도를 감지하고, 내부에 충진된 유체에 의해 저수부 내부로 유입된 순환수의 온도가 특정온도에 도달할 때 팽창 또는 수축하는 물리적신호를 생성하는 신호생성부와, 상기 물리적신호를 상기 이동부재로 전달하기 위해 상기 유체가 충진된 모세관으로 이루어진 신호전달부로 구성된 것이 바람직하다.On the other hand, the temperature sensor is submerged in the reservoir to sense the temperature of the circulating water, and when the temperature of the circulating water introduced into the reservoir by the fluid filled therein reaches a specific temperature expansion or contraction Preferably, the signal generation unit for generating a physical signal and the signal transmission unit consisting of a capillary filled with the fluid to transfer the physical signal to the moving member.
또한, 상기 제2실린더어셈블리의 상기 제2피스톤의 선단부에는, 상기 제2실린더어셈블리의 연료토출관이 폐쇄되더라도 상기 제2실린더어셈블리 내부로 미세연료가 유입되도록 요입홈이 형성된 것이 바람직하다.In addition, it is preferable that a concave groove is formed at the tip of the second piston of the second cylinder assembly so that the fine fuel flows into the second cylinder assembly even when the fuel discharge pipe of the second cylinder assembly is closed.
또한, 요입홈을 제2피스톤의 선단부에 형성하는 것과는 선택적으로, 상기 제2실린더어셈블리의 상기 제2연료토출관의 내주면에는, 상기 제2실린더어셈블리의 연료토출관이 폐쇄되더라도 상기 제2실린더어셈블리 내부로 미세연료가 유입되도록 요입홈이 형성될 수도 있다. In addition, the recess groove may be formed at the distal end of the second piston, and the second cylinder assembly may be formed on the inner circumferential surface of the second fuel discharge pipe of the second cylinder assembly even if the fuel discharge pipe of the second cylinder assembly is closed. Concave groove may be formed so that the fine fuel flows into the interior.
한편, 상기 위치조절기는,상기 지지블록의 일측에 고정된 상태로 상기 이동부재를 지지하는 탄성프레임과; 상기 지지블록의 타측에 결합된 고정프레임; 및 일단에는 상기 고정프레임을 관통하고 상기 탄성프레임에 나사결합된 조절볼트가 구비되며, 타단에는 상기 조절볼트를 회전시키기 위한 손잡이가 구비된 위치조절레버;로 구성되는 것이 바람직하다.On the other hand, the position adjuster, and the elastic frame for supporting the moving member in a fixed state on one side of the support block; A fixed frame coupled to the other side of the support block; And a adjusting bolt penetrating the fixed frame and screwed to the elastic frame at one end thereof, and having a handle for rotating the adjusting bolt at the other end thereof.
또한, 상기 고정프레임과 상기 탄성프레임 사이에는, 상기 조절볼트와 나사결합되며 상기 탄성프레임에 고정된 조절너트가 더 구비될 수 있다.In addition, between the fixing frame and the elastic frame, the adjustment bolt is screwed with the adjustment bolt may be further provided with a fixing nut fixed to the elastic frame.
상기와 같은 구성을 가진 본 발명의 온열매트용 이동식 보일러에 의하면, 고압의 기포가 에어배출기를 통해 배출됨으로써, 소음이 발생되지 않으며, 고압의 기체로 인한 폭발성에 대한 위험도 현저히 줄일 수 있는 효과가 있다.According to the mobile boiler for the thermal mat of the present invention having the configuration as described above, the high-pressure bubble is discharged through the air discharger, there is no noise generated, there is an effect that can significantly reduce the risk of explosion due to the high-pressure gas. .
또한, 온열매트를 순환하는 순환수의 온도가 일정하게 유지됨에 따라 과열이 방지됨으로써 화재를 예방하는 효과도 있으며, 휴대가 간편할 뿐 아니라 통상 지참할 수 있는 일회용 연료가스통을 사용할 수 있기 때문에 설치 및 작동이 간편한 효과를 가진다.In addition, as the temperature of the circulating water circulating the thermal mat is kept constant, overheating It is also effective in preventing fire, and it is easy to carry and has a simple effect of installation and operation because a disposable fuel gas cylinder can be used.
도 1은 본 발명의 바람직한 실시예에 의한 온열매트용 이동식보일러 및 온열매트의 외관을 보여주는 개략도.1 is a schematic view showing the appearance of a movable boiler and a thermal mat for a thermal mat according to a preferred embodiment of the present invention.
도 2는 본 발명의 바람직한 실시예에 따른 온열매트용 이동식보일러의 전체구조를 보여주는 단면도.Figure 2 is a cross-sectional view showing the overall structure of a mobile boiler for a thermal mat according to a preferred embodiment of the present invention.
도 3은 본 발명의 바람직한 실시예에 따른 구성 중 저수부에 장착되는 고정브라켓, 승강막대, 체크밸브 및 에어배출기의 분해사시도.Figure 3 is an exploded perspective view of the fixing bracket, the lifting rod, the check valve and the air discharger mounted on the reservoir in the configuration according to a preferred embodiment of the present invention.
도 4는 본 발명의 바람직한 실시예에 따른 구성 중 전열부의 구성을 보여주는 사시도.Figure 4 is a perspective view showing the configuration of the heat transfer portion of the configuration according to a preferred embodiment of the present invention.
도 5는 본 발명의 바람직한 실시예에 따른 구성 중 가열부의 외관을 보여주는 정면도.5 is a front view showing the appearance of the heating unit in the configuration according to a preferred embodiment of the present invention.
도 6은 본 발명의 바람직한 실시예에 따른 구성 중 온도센서와 가열부와의 상호작용을 보여주는 도 5의 I-I선 횡단면도.6 is a cross-sectional view taken along line I-I of FIG. 5 showing an interaction between a temperature sensor and a heating unit during construction according to a preferred embodiment of the present invention.
도 7 및 도 8는 본 발명의 바람직한 실시예에 따른 구성 중 제2피스톤 및 제2연료토출관에 요입홈이 형성된 상태를 보여주는 개략도.7 and 8 are schematic views showing a state in which the recess groove is formed in the second piston and the second fuel discharge pipe of the configuration according to an embodiment of the present invention.
이하, 본 발명을 첨부된 도면에 의거하여 바람직한 실시예를 통해 보다 상세히 설명한다. Hereinafter, the present invention will be described in detail with reference to the accompanying drawings.
본 실시예 및 도면은 본 발명의 이해를 돕고자 하는 것일 뿐 발명의 기술적범위를 이에 한정하고자 하는 것은 아니다.The embodiments and drawings are intended to assist in understanding the present invention, but are not intended to limit the technical scope of the invention.
도 1은 본 발명의 바람직한 실시예에 의한 온열매트용 이동식보일러 및 온열매트의 외관을 보여주는 개략도이다.1 is a schematic view showing the appearance of the movable boiler and the thermal mat for a thermal mat according to a preferred embodiment of the present invention.
도 1의 온열매트용 이동식보일러는, 일측의 상부에 온열매트(10)를 순환하는 순환수가 유입되도록 유입관(110)이 형성되고, 상기 순환수가 저장되는 저수부(100)와; 상기 저수부(100)로부터 배출되는 상기 순환수가 일정한 유로관(220)를 따라 유동하면서 열교환 되고, 일측에 형성된 유출관(210)을 통해 상기 온열매트(10)로 상기 순환수가 배출되는 전열부(200)와; 연료탱크(T)로부터 공급된 연료가스를 연소시켜 상기 전열부(200) 내부의 상기 순환수를 가열하는 가열부(300); 및 외관을 형성하는 하우징(700): 을 포함하여, 온열매트(10)를 순환하고 빠져나온 순환수가 이동식 보일러(1000)의 유입관(110)을 통해 유입되고, 전열부(200)의 유로를 유동하는 동안 가열되어 유출관(210)을 통해 다시 온열매트(10)로 흘러 들어가는 구조로 되어 있다.The mobile boiler for the thermal mat of Figure 1, the inlet pipe 110 is formed so that the circulating water circulating the thermal mat 10 in the upper portion of one side, the reservoir 100, the circulation water is stored; The circulating water discharged from the water storage part 100 is heat-exchanged while flowing along a predetermined flow path tube 220, and the heat transfer part through which the circulating water is discharged to the thermal mat 10 through an outlet pipe 210 formed at one side ( 200); A heating unit (300) for burning the fuel gas supplied from the fuel tank (T) to heat the circulating water in the heat transfer unit (200); And a housing 700 forming an appearance: circulating water circulating through the thermal mat 10 and exiting the circulating water 10 is introduced through the inlet pipe 110 of the mobile boiler 1000, and a flow path of the heat transfer part 200 is formed. It is heated to flow and flows back into the heating mat 10 through the outlet pipe 210.
또한, 도 1에는 도시되지 않았으나, 상기 유입수의 온도를 감지하여 그 내부에 충진된 액체가 팽창 또는 수축함으로써 물리적신호를 생성하는 온도센서(140)와; 상기 연료탱크로부터 공급되는 연료가스의 분출량을 조절하는 가스조절기(400); 및, 상기 온도센서(140)로부터 생성된 물리적신호를 받아 상기 가스조절기(400)를 제어하는 제어기(500);가 포함되어 있다.In addition, although not shown in Figure 1, the temperature sensor 140 for generating a physical signal by sensing the temperature of the inflow water by expanding or contracting the liquid filled therein; A gas regulator 400 for controlling the ejection amount of the fuel gas supplied from the fuel tank; And a controller 500 that receives the physical signal generated from the temperature sensor 140 and controls the gas regulator 400.
위 저수부(100)에 대응되는 하우징(700)에는 저수부(100)에 유입된 순환수의 냉각을 촉진시키면서 강도를 보강하기 위한 주름부(760)가 형성되어 있다.The housing 700 corresponding to the reservoir 100 is formed with a corrugation 760 for reinforcing strength while promoting cooling of the circulating water introduced into the reservoir 100.
또한, 상기 하우징(700)의 외측둘레면에는, 위 전열부(200)의 상기 우회유로관(205)과 대응되는 위치에 다수개의 제1통기공(710)이 형성되어 있는데, 이는 외기의 온도가 높을 경우, 전열부(200)의 우회유로관(205)과 수직유로관(203)이 경사유로관(207)으로부터 전달되는 열에 의해 과열되지 않도록 공기에 의해 냉각시키기 위함이다.In addition, on the outer circumferential surface of the housing 700, a plurality of first vent holes 710 are formed at a position corresponding to the bypass flow path 205 of the heat transfer part 200, which is the temperature of the outside air. When is high, the bypass flow path 205 and the vertical flow path 203 of the heat transfer unit 200 is to be cooled by the air so as not to be overheated by the heat transferred from the inclined flow path pipe (207).
또한, 상기 집열판(250)과 대응되는 위치에는 다수개의 제2통기공(720)이 형성되어 있는데, 이는, 후술할 점화기(600)가 동작할 때 연료가스가 연소되는 과정에서 발생되는 가스 및 열기를 배출하기 위함이다.In addition, a plurality of second vent holes 720 are formed at a position corresponding to the heat collecting plate 250, which is a gas and heat generated during the combustion of fuel gas when the igniter 600 to be described below operates. To discharge them.
다만, 위 제2통기공(720)을 통해 유입되는 공기의 유속이 과도하게 빠른 경우에는 불꽃의 방향이 공기의 흐름에 따라 편향될 우려가 있기 때문에 이를 방지하기 위한 바람막이판(750)이 더 형성되어 있다.However, if the flow rate of the air flowing through the second vent hole 720 is excessively fast, the direction of the flame may be deflected according to the flow of air, so the windshield 750 is further formed to prevent this. It is.
또한, 위 제1통기공(710)에 대응되는 하우징(700)의 내부에는, 위 제1통기공(710)을 선택적으로 개폐하는 다수개의 보조통기공(743)이 형성된 보조커버(740)가 장착되어 있는데, 이는, 외기의 온도가 현저히 낮을 경우, 제1통기공(710)을 통해 유입되는 외기에 의해 전열부(200)의 온도가 과냉되어 열효율이 저하되는 것을 방지하기 위함이다.In addition, the auxiliary cover 740 is formed in the housing 700 corresponding to the first vent hole 710, the plurality of auxiliary vent holes 743 for selectively opening and closing the first vent hole 710 is formed. When the temperature of the outside air is significantly lower, this is to prevent the temperature of the heat transfer part 200 from being supercooled by the outside air introduced through the first air hole 710, thereby preventing the thermal efficiency from being lowered.
위 보조통기공(743)이 형성된 보조커버(740)는 사용자가 제1통기공(710)과의 위치를 주변환경에 따라 적절히 조절하여 사용하면 된다.The auxiliary cover 740 having the above auxiliary ventilation hole 743 may be used by the user appropriately adjusting the position of the first ventilation hole 710 according to the surrounding environment.
이하, 도 2 내지 도 6를 참조하여, 도 1의 온열매트용 이동식보일러의 구조 및 작용을 보다 상세하게 설명한다.Hereinafter, the structure and operation of the mobile boiler for the thermal mat of FIG. 1 will be described in more detail with reference to FIGS. 2 to 6.
도 2는 본 발명의 바람직한 실시예에 따른 온열매트용 이동식보일러의 전체구조를 보여주는 단면도이다.2 is a cross-sectional view showing the overall structure of a mobile boiler for a thermal mat according to a preferred embodiment of the present invention.
도 2에 나타낸 바와 같이, 외관을 형성하는 하우징(700) 내부는, 위에서부터 저수부(100), 전열부(200) 및 가열부(300)로 구성되어 있다. 이 하우징(700)은 각각 3개의 부분으로 구획된 것으로 도시하였으나, 전체적으로 하나의 부재로도 이루어질 수 있음은 물론이다.As shown in FIG. 2, the inside of the housing 700 which forms an external appearance is comprised from the water storage part 100, the heat-transfer part 200, and the heating part 300 from the top. Although the housing 700 is illustrated as being divided into three parts, each of them may be made of one member as a whole.
저수부(100)의 우측 상부에는 위 온열매트(10)의 내부에 매설된 순환관(20)의 일단부와 연결된 유입관(110)과; 위 순환수가 전열부(200) 내부로 유입되도록 하는 다수개의 구멍(123)이 형성된 고정브라켓(120)과; 위 순환수에 의한 수압에 따라 위 구멍(123)을 개폐하는 연질의 실리콘박막으로 된 체크밸브(130)와; 위 유입수의 온도를 감지하여 내부에 충진된 액체가 팽창 또는 수축함으로써 물리적신호를 생성하는 온도센서(140);를 포함하되, 위 체크밸브(130)는, 위 고정브라켓(120)의 중심을 관통하는 승강막대(124)의 일단부에 결합되며, 위 승강막대(124)의 외주면에는 위 승강막대(124)의 타단부 및 상기 고정브라켓(120)에 지지된 스프링(125)이 구비되어 있다. 본 실시예에서는 스프링을 사용하였으나, 압축 후 압축력을 제거하면 복원되는 탄성부재이면 반드시 이에 한정되는 것은 아니다.An inlet pipe 110 connected to one end of the circulation pipe 20 embedded in the upper heating mat 10 at the upper right side of the reservoir 100; A fixing bracket 120 having a plurality of holes 123 formed therein to allow the circulation water to flow into the heat transfer part 200; A check valve 130 made of a soft silicon thin film for opening and closing the upper hole 123 according to the water pressure by the upper circulation water; It includes a temperature sensor 140 for sensing the temperature of the inflow water to generate a physical signal by expanding or contracting the liquid filled therein, the check valve 130, through the center of the fixing bracket 120 It is coupled to one end of the elevating rod 124, the outer circumferential surface of the elevating rod 124 is provided with the other end of the elevating rod 124 and the spring 125 supported by the fixing bracket 120. In this embodiment, but the spring is used, but is not necessarily limited to the elastic member that is restored when the compression force is removed after compression.
저수부(100)의 작용을 설명하기 위해, 초기에는 저수부(100) 내부에는 순환수가 전혀 포함되지 않은 상태라고 가정한다.In order to explain the operation of the reservoir 100, it is assumed that initially, the circulation water is not included in the reservoir 100.
하우징(700)의 일부를 이루는 상면커버를 열고, 순환수를 투입하게 되면 이 순환수가 유출관(210)을 통해 온열매트(10)로 유입될 수 있도록 체크밸브(130)를 개방시켜야 한다. 체크밸브(130)는 박막의 실리콘재질로 되어 있기 때문에 저수부(100) 내부에 유입된 순환수가 일정한 수압을 형성하기까지는 닫혀있으므로, 위 승강막대(124)를 인위적으로 하강시켜야 한다. 이 승강막대(124)의 외주면에는 스프링(125)이 감겨져 있고 그 양단은 위 승강막대(124)의 일단부 및 고정브라켓(120)에 지지되어 있기 때문에 누르는 힘을 제거하면 다시 상승하게 되어 체크밸브(130)는 폐쇄될 것이다.When the top cover constituting a part of the housing 700 is opened and the circulating water is introduced, the check valve 130 should be opened so that the circulating water may be introduced into the thermal mat 10 through the outlet pipe 210. Since the check valve 130 is made of a thin film of silicon, it is closed until the circulating water introduced into the water storage part 100 forms a constant water pressure, and thus the lowering rod 124 must be artificially lowered. The spring 125 is wound around the outer circumferential surface of the elevating rod 124, and both ends thereof are supported by one end of the elevating rod 124 and the fixing bracket 120, and then lifted again when the pressing force is removed. 130 will be closed.
이 때, 연료탱크(T)로부터 공급된 가스연료가 점화된 상태일 필요는 없다.At this time, the gas fuel supplied from the fuel tank T need not be in the ignited state.
위와 같이 체크밸브(130)를 일정시간 동안 강제로 개방시켜 위 온열매트 내부로 순환수를 유입한 다음, 승강막대(124)를 놓으면 순수하게 저수부(100)에 포함된 순환수의 수압에 의해서만 체크밸브(130)가 개방 또는 폐쇄될 것이고, 위 체크밸브(130)가 개방될 때 고정브라켓(120)에 형성된 구멍들(123)을 통해 유출되는 순환수는 전열부(200)로 흘러 들어간다.As shown in the above, the check valve 130 is forcibly opened for a predetermined time, and the circulating water is introduced into the upper warming mat, and then the lifting bar 124 is placed and purely by the water pressure of the circulating water contained in the reservoir 100. The check valve 130 will be opened or closed, and the circulating water flowing out through the holes 123 formed in the fixing bracket 120 flows into the heat transfer part 200 when the check valve 130 is opened.
이하, 도 3을 참조하여, 고정브라켓(120), 승강막대(124), 체크밸브(130) 및 에어배출기(127)에 대해 설명한다.Hereinafter, referring to FIG. 3, the fixing bracket 120, the lifting rod 124, the check valve 130, and the air discharge 127 will be described.
도 3은 저수부(100)에 장착되는 고정브라켓(120), 승강막대(124), 체크밸브(130) 및 에어배출기(127)의 분해사시도이다.3 is an exploded perspective view of the fixing bracket 120, the lifting rod 124, the check valve 130, and the air discharger 127 mounted to the water storage part 100.
도 3에 나타낸 바와 같이, 고정브라켓(120)에는 소정깊이의 구멍(123)이 방사형태로 형성되어 있고, 그 내부는 체크밸브(130)가 개방될 때 순환수가 흐를 수 있도록 빈 공간이 형성되어 있으며, 하단부에는 전열부(200)의 수직유로관(203)과 결합되도록 하는 암나사가 형성되어 있다.As shown in FIG. 3, the fixing bracket 120 has a hole 123 having a predetermined depth in a radial shape, and an empty space is formed therein so that the circulation water can flow when the check valve 130 is opened. The lower part has a female screw formed to be coupled to the vertical flow path 203 of the heat transfer part 200.
위 고정브라켓(120)의 구멍(123)의 하면에 위 체크밸브(130)가 설치되어, 저수부(100)에 포함된 순환수의 수압에 의해 체크밸브(130)가 하방으로 쳐지면 위 구멍(123)이 개방될 수 있도록 구성되어 있다.The upper check valve 130 is installed on the lower surface of the hole 123 of the upper fixing bracket 120, and when the check valve 130 is struck downward by the hydraulic pressure of the circulating water included in the reservoir 100, the upper hole 123 is configured to be open.
이때. 고정브라켓(120)의 하면에는 고정브라켓(120)과 전열부(200) 사이의 누수를 방지하기 위한 고무패킹(128)이 설치되어 있다.At this time. The lower surface of the fixing bracket 120 is provided with a rubber packing 128 to prevent leakage between the fixing bracket 120 and the heat transfer part 200.
또한, 위 고정브라켓(120)의 중앙부에는 승강막대(124)가 관통할 수 있는 단차진 구멍이 형성되어 있는데, 승강막대(124)의 외주면에 감겨지는 스프링(125)의 일단이 이 단차진 부분에 지지된다.In addition, a stepped hole is formed in the center of the fixing bracket 120 through which the lifting rod 124 can pass, and one end of the spring 125 wound around the outer circumferential surface of the lifting rod 124 is the stepped portion. Is supported.
이 승강막대(124)는 위에서 설명한 바와 같이, 작동초기에 순환수를 투입하기 위해 사용되는 것으로, 승강막대(124)를 누르면 승강막대(124)의 말단부에 결합된 체크밸브(130)가 강제로 개방되고 그 누르는 힘을 제거하면 스프링(125)의 복원력에 의해 다시 폐쇄되는 것이다.As described above, the lifting bar 124 is used to inject the circulating water at the beginning of operation. When the lifting bar 124 is pressed, the check valve 130 coupled to the distal end of the lifting bar 124 is forced. Opening and removing the pressing force is closing again by the restoring force of the spring 125.
고정브라켓(120)의 최외각에는 에어배출기(127)와 나사결합되는 분출공(126)이 더 형성되어 있다.The outermost portion of the fixing bracket 120 is further formed with a blowout hole 126 is screwed with the air discharge 127.
위 에어배출기(127)의 분출공(126)은 상기 순환수가 상기 전열부(200) 내부를 유동하면서 발생된 증기를 배출하기 위한 것으로서, 위 증기가 일정압력보다 커지면 상기 분출공(126)을 막고 있는 볼을 밀어올려 에어배출구(127a)를 통해 증기가 저수부(100)로 배출되도록 되어 있다.The ejection hole 126 of the upper air discharger 127 is for discharging steam generated while the circulating water flows inside the heat transfer part 200. When the upper steam is greater than a predetermined pressure, the ejection hole 126 is blocked. The ball is pushed up and the steam is discharged to the reservoir 100 through the air outlet 127a.
전열부(200)로부터 발생되는 증기는 물과 달리 압축성물질이기 때문에 부피는 적지만 고압이므로 이를 제거하지 않으면 온열매트를 순환하는 도중 소음을 발생시키거나 폭발의 위험이 있기 때문이다.Since the steam generated from the heat transfer part 200 is a compressible material unlike water, since the volume is small, but high pressure, if the steam is not removed, noise may be generated or an explosion may occur while circulating the thermal mat.
도시하지는 않았으나, 승강막대(124)를 외부에서 인위적으로 누를 수 있도록 승강막대의 두부와 당접하는 봉 형상의 가압부재가 더 구비될 수 있다.Although not shown, a rod-shaped pressing member contacting the head of the elevating rod may be further provided to artificially press the elevating rod 124 externally.
도 4를 참조하여 전열부(200)의 구성을 보다 상세히 설명한다.The configuration of the heat transfer part 200 will be described in more detail with reference to FIG. 4.
도 4는 전열부(200)의 구성을 보여주는 사시도이다.4 is a perspective view illustrating a configuration of the heat transfer part 200.
도 4에 나타낸 바와 같이, 전열부(200)에는, 위 저수부(100)의 상기 체크밸브(130)가 개방될 때 상기 순환수가 유입되어 유동하는 동안 열을 흡수하는 유로관(220); 이 형성되어 있다. As shown in FIG. 4, the heat transfer part 200 includes: a flow path tube 220 which absorbs heat while the circulating water flows in and flows when the check valve 130 of the water storage part 100 is opened; Is formed.
위 유로관(220)은, 상기 순환수가 상기 저수부(100)의 체크밸브(130)를 통해 최초로 유입되고, 위 저수부(100)의 고정브라켓(120) 하단부에 나사결합되기 위한 숫나사가 형성된 하방의 수직유로관(203)과; 상기 수직유로관(203)과 연통되며, 상기 수직유로관(203)를 통해 유입되는 상기 순환수를 일측으로 우회시키는 우회유로관(205); 및 상기 우회유로관(205)과 연통되며, 유출관(210)을 향해 경사진 경사유로가 형성된 경사유로관(207); 으로 이루어져 있다.The upper flow pipe 220, the circulation water is first introduced through the check valve 130 of the reservoir 100, the male thread is formed to be screwed to the lower end of the fixing bracket 120 of the reservoir 100 A downward vertical channel 203; A bypass flow passage 205 communicating with the vertical flow passage 203 and bypassing the circulating water introduced through the vertical flow passage 203 to one side; And an inclined flow pipe 207 in communication with the bypass flow pipe 205 and having an inclined flow path inclined toward the outlet pipe 210. Consists of
우회유로관(205)이 구비된 이유는, 수직유로관(203)을 통해 유입된 순환수가 온도가 높은 바닥면으로 수직낙하하게 되면, 급격한 기화가 일어날 수 있고 급격한 기화로 인해 기포가 발생할 우려가 있기 때문이다.The bypass flow path 205 is provided because, when the circulating water introduced through the vertical flow path 203 falls vertically to the bottom of the high temperature, sudden vaporization may occur and there is a concern that bubbles may occur due to the rapid vaporization. Because there is.
이와 같은 이유로, 유출관(210)으로 향하는 유로 또한 경사유로관(207)으로 구성함으로써 전열면적을 넓히는 동시에 순환수의 급격한 기화를 방지할 수 있고 순환수의 순환이 용이하게 되는 것이다.For this reason, the flow path toward the outflow pipe 210 is also constituted by the inclined flow path pipe 207 to increase the heat transfer area and to prevent sudden vaporization of the circulating water and facilitate the circulation of the circulating water.
위 전열부(200)의 하면에는 가열부(300)로부터 유로관(220)으로 전달되는 열전도율을 향상시키기 위한 원형의 집열판(250)이 부착되어 있고, 위 집열판(250)에는 원의 중심에서 외측방향으로 형성된 다수의 집열핀(255)이 더 구비되어 있다.The lower surface of the heat transfer unit 200 is attached to the circular heat collecting plate 250 for improving the thermal conductivity transmitted from the heating unit 300 to the flow path tube 220, the heat collecting plate 250, the outer side from the center of the circle A plurality of heat collecting pins 255 formed in the direction are further provided.
또한, 상기 유로관(220)(정확하게는 경사유로관(207))과 상기 집열판(250) 사이에는 위 전열부(200)의 유로관(220)(정확하게는 경사유로관(207))과 집열판(250) 사이를 지지하는 지지브라켓(230)이 형성되어 있는데, 이는 지지브라켓(230)에 의해 위 집열판(250)과 유로관(220) 사이에 공간부(240)를 형성하기 위함이다. 이로 인하여, 집열판(250)에서 유로관(220)으로의 열전달은 공간부(240)를 통한 대류가 되며, 집열판(250)에서 경사유로관(207) 상부로의 열전달은 지지브라켓(230)을 통한 전도가 된다. 지지브라켓(230)이 경사유로관(207)의 상부로부터 연장되고 있기 때문에 경사유로관(207)의 바닥면은 공간부(240)를 통한 대류에 의해서만 열전달이 일어나게 되므로, 경사유로관(207)의 바닥면에서 발생할 수 있는 급격한 기화를 미연에 방지할 수 있는 것이다.In addition, between the flow path tube 220 (exactly the inclined flow path tube 207) and the heat collecting plate 250, the flow path tube 220 (exactly the inclined flow path tube 207) and the heat collecting plate of the heat transfer part 200. Support brackets 230 are formed to support between the 250, which is to form the space 240 between the heat collecting plate 250 and the flow pipe 220 by the support bracket 230. Therefore, heat transfer from the heat collecting plate 250 to the flow path tube 220 becomes convection through the space portion 240, and heat transfer from the heat collecting plate 250 to the inclined flow path tube 207 is performed by the support bracket 230. Through evangelism. Since the support bracket 230 extends from the upper portion of the inclined flow path tube 207, the bottom surface of the inclined flow path tube 207 generates heat transfer only by convection through the space portion 240, and thus, the inclined flow path tube 207. Sudden evaporation that can occur on the bottom surface of the can be prevented in advance.
또한, 위 전열부(200)의 상기 경사유로관(207)과 상기 우회유로관(205) 사이에는, 상기 집열판(250)으로부터 전열되는 열이 상기 유로관(220)을 통해 저수부(100)로 전열되는 것을 방지하기 위한 차폐판(260)이 형성되어 있는데, 이는, 저수부(100)내의 순환수의 온도가 전열부(200)에 의해 가열되면 온열매트(10)로 들어가는 순환수의 온도가 필요 이상으로 상승할 수 있기 때문이다. In addition, between the inclined flow path pipe 207 and the bypass flow path pipe 205 of the heat transfer unit 200, heat is transferred from the heat collecting plate 250 through the flow pipe tube 220, the reservoir 100 A shielding plate 260 is formed to prevent heat from being transferred to the heat sink, which is a temperature of the circulating water entering the heating mat 10 when the temperature of the circulating water in the reservoir 100 is heated by the heat transfer part 200. Is because it can rise more than necessary.
다음으로, 도 5 및 도 6을 참조하여, 저수부(100)에 유입된 순환수의 온도를 감지하고, 순환수의 온도에 따라 연료탱크(T)로부터 공급되는 연료가스의 양을 조절하는 메카니즘을 설명한다.Next, referring to FIGS. 5 and 6, a mechanism for sensing the temperature of the circulating water introduced into the reservoir 100 and adjusting the amount of fuel gas supplied from the fuel tank T according to the temperature of the circulating water Explain.
도 5는 가열부(300)의 외관을 보여주는 정면도이다.5 is a front view showing the appearance of the heating unit 300.
도 5에 나타낸 바와 같이, 가열부(300)는, 연료탱크(T)로부터 공급되는 연료가스의 분출량을 조절하는 가스조절기(400)와; 온도센서(140)로부터 생성된 팽창 또는 수축의 물리적신호를 받아 위 가스조절기(400)를 제어하는 제어기(500); 및 상기 제2실린더어셈블리(430)의 상기 제2연료토출공(414a)을 통해 유입된 연료가스를 연소시키는 연소기(610)과, 상기 연소기(610)에 전기스파크를 발생시키는 점화플러그(620)로 이루어진 점화기(600);로 구성되어 있다. As shown in FIG. 5, the heating unit 300 includes a gas regulator 400 for controlling the ejection amount of the fuel gas supplied from the fuel tank T; A controller 500 for controlling the gas regulator 400 by receiving a physical signal of expansion or contraction generated from the temperature sensor 140; And a combustor 610 for combusting fuel gas introduced through the second fuel discharge hole 414a of the second cylinder assembly 430, and a spark plug 620 for generating an electric spark in the combustor 610. Consists of igniter 600 consisting of.
도 6은 온도센서(140)와 가열부(300)와의 상호작용을 보여주는 도 5의 I-I선 횡단면도이다. FIG. 6 is a cross-sectional view taken along line I-I of FIG. 5 showing the interaction between the temperature sensor 140 and the heating part 300.
도 6에 나타낸 바와 같이, 온도센서(140)는, 저수부(100)에 장착되어 저수부(100)에 유입된 순환수의 온도를 감지하여 순환수의 온도에 따라 그 내부에 충진된 액체가 팽창 또는 수축함으로써 물리적신호를 생성하는 신호생성부(143)와, 위 신호생성부(143)로 생성된 물리적신호를 가열부(300)의 제어기(500)(정확하게는 이동부재(510)에 전달함)에 전달하기 위한 모세관으로 된 신호전달부(145)로 구성되어 있다. As shown in FIG. 6, the temperature sensor 140 is mounted on the reservoir 100 to detect the temperature of the circulating water introduced into the reservoir 100 so that the liquid filled therein according to the temperature of the circulated water Signal generation unit 143 for generating a physical signal by expanding or contracting, and transmits the physical signal generated by the signal generation unit 143 to the controller 500 (exactly the moving member 510) of the heating unit 300 It consists of a signal transmission unit 145 of the capillary for delivery.
즉, 신호생성부(143)에서 생성되는 물리적신호라 함은 신호생성부(143) 내부에 충진되는 액체의 팽창력 또는 수축력을 의미한다. 따라서, 저수부(100) 내의 순환수의 온도가 일정온도 이상이 되면 그 내부에 충진된 액체가 팽창하여 위 이동부재(510)에 팽창력을 전달하게 되고, 이동부재(510)의 팽창에 의해 위 제2피스톤(431)이 도면상에서 좌측으로 이동하게 되어 결국 제2연료토출관(414)을 폐쇄하게 된다.That is, the physical signal generated by the signal generator 143 refers to the expansion force or contraction force of the liquid filled in the signal generator 143. Therefore, when the temperature of the circulating water in the reservoir 100 reaches a predetermined temperature or more, the liquid filled therein expands and transmits an expansion force to the stomach moving member 510, and the stomach is expanded by the expansion of the movable member 510. The second piston 431 is moved to the left in the drawing to eventually close the second fuel discharge pipe 414.
역으로, 저수부(100) 내의 순환수의 온도가 일정온도 이하가 되면 액체의 비체적이 줄어든다는 원리에 의거하여 제2연료토출관(414)을 개방하게 되는데, 이는, 제1실린더어셈블리(420)로부터 제2연료토출관(414)으로 유입되는 연료가스의 압력에 의해 항상 제2피스톤(431)을 도면상 우측으로 밀고 있기 때문에 가능한 것이다.Conversely, when the temperature of the circulating water in the reservoir 100 falls below a certain temperature, the second fuel discharge pipe 414 is opened based on the principle that the specific volume of the liquid is reduced, which is the first cylinder assembly 420. This is possible because the second piston 431 is always pushed to the right in the drawing due to the pressure of the fuel gas flowing into the second fuel discharge pipe 414 from.
위 신호전달부(145)는 모세관으로 되어 있기 때문에 충진 액체의 비체적이 미세하게 변화하더라도 그 비체적의 변화를 압력의 변화로 변환하여 위 이동부재(510)에 전달할 수 있게 된다.Since the signal transmission unit 145 is made of a capillary tube, even if the specific volume of the filling liquid changes minutely, the specific volume change can be converted into a change in pressure and transmitted to the upper moving member 510.
온도센서(140) 내부에 충진되는 액체는 온도에 따른 비체적의 변화가 있는 것이면 특정한 물질로 한정되는 것은 아니다.The liquid filled in the temperature sensor 140 is not limited to a specific material as long as there is a change in specific volume depending on temperature.
다음으로, 도 6을 참조하여, 가열부(300)의 구성에 대해 보다 상세히 설명한다.Next, with reference to FIG. 6, the structure of the heating part 300 is demonstrated in detail.
위 가스조절기(400)는, 상기 연료탱크(T)와 결합되는 결합부(411)와 상기 연료탱크(T)로부터 공급된 연료가스가 제1연료토출공(413a)를 통해 분출되는 제1연료토출관(413)이 구비된 지지블록(410)과; 실린더 내측에 형성된 조절나사부(422)에 나사결합된 조절노브(440)의 회전에 의해 실린더 내부를 이동함으로써 상기 제1연료토출관(413)을 개폐하는 제1피스톤(421)이 장착되고 상기 제1연료토출관(413)과 연통되도록 상기 지지블록(410) 상에 형성된 제1실린더어셈블리(420)와; 내부를 슬라이딩 이동함으로써 제2연료토출관(414)을 개폐하는 제2피스톤(431)이 장착되고 상기 제1실린더어셈블리(420)와 연통되도록 상기 지지블록(410) 상에 형성되며 위제2연료토출관(414)을 통해 유입된 연료가스를 토출시키기 위한 제2연료토출공(414a)이 형성된 제2실린더어셈블리(430);로 이루어져 있다.The gas regulator 400, the coupling portion 411 and the fuel gas supplied from the fuel tank (T) coupled to the fuel tank (T) the first fuel is ejected through the first fuel discharge hole (413a) A support block 410 provided with a discharge pipe 413; The first piston 421 for opening and closing the first fuel discharge pipe 413 is mounted by moving the inside of the cylinder by the rotation of the adjustment knob 440 screwed to the adjustment screw part 422 formed inside the cylinder and the first A first cylinder assembly 420 formed on the support block 410 to communicate with the fuel discharge pipe 413; The second piston 431 for opening and closing the second fuel discharge pipe 414 by sliding the inside is mounted and formed on the support block 410 so as to communicate with the first cylinder assembly 420 and the second fuel discharge And a second cylinder assembly 430 having a second fuel discharge hole 414a for discharging the fuel gas introduced through the pipe 414.
위 지지블록(410) 상에 제1 및 제2실린더어셈블리(420,430)가 형성되어 있다.First and second cylinder assemblies 420 and 430 are formed on the support block 410.
실린더어셈블리(420,430)는 각각의 실린더에 연료토출관(413,414), 연료토출공(413a,414a) 및 피스톤(421,431)을 구비하고 있다.The cylinder assemblies 420 and 430 are provided with fuel discharge pipes 413 and 414, fuel discharge holes 413a and 414a and pistons 421 and 431 in each cylinder.
제1실린더어셈블리(420)는 연료탱크(T)로부터 분출되는 연료가스의 양을 수동으로 직접 조절하기 위한 것으로서, 실린더 내측에 형성된 조절나사부(422)에 나사결합되어 있는 조절노브(440)을 회전시키는 것에 의해 제1피스톤(421)으로 하여금 제1연료토출관(413)의 개방정도를 조절한다.The first cylinder assembly 420 is for manually controlling the amount of fuel gas ejected from the fuel tank T directly, and rotating the adjusting knob 440 screwed to the adjusting screw part 422 formed inside the cylinder. By controlling the opening of the first fuel discharge pipe 413 to the first piston 421.
한편, 제2실린더어셈블리(430)는 전열부(200)를 가열하기 위해 필요한 연료가스의 양을 조절하기 위한 구성으로서, 연료가스를 점화기(600)의 연소기(610)에 보낸다.On the other hand, the second cylinder assembly 430 is a configuration for adjusting the amount of fuel gas required to heat the heat transfer unit 200, and sends the fuel gas to the combustor 610 of the igniter 600.
제2실린더어셈블리(430)는 위 제1실린더어셈블리(420)와 연통되어 있으므로, 제1실린더어셈블리(420)를 통해 나오는 연료가스는 제2실린더어셈블리(430)의 제2연료토출관(414) 및 제2연료토출공(414a)을 거쳐 들어간다.Since the second cylinder assembly 430 is in communication with the first cylinder assembly 420, the fuel gas exiting through the first cylinder assembly 420 is the second fuel discharge pipe 414 of the second cylinder assembly 430. And the second fuel discharge hole 414a.
제2실린더어셈블리(430)의 제2피스톤(431)의 이동에 의해 제2연료토출관(414)의 개방정도가 결정이 되는데, 제2피스톤(431)의 이동은 위 온도센서(140)로부터 생성된 물리적신호를 받아 팽창 또는 수축하는 이동부재(510)의 팽창이나 수축에 의해 이루어진다.The opening degree of the second fuel discharge pipe 414 is determined by the movement of the second piston 431 of the second cylinder assembly 430. The movement of the second piston 431 is moved from the upper temperature sensor 140. It is made by the expansion or contraction of the movable member 510 to expand or contract in response to the generated physical signal.
이 때, 이동부재(510)와 제2피스톤(431)의 끝단부는 서로 당접하고 있기 때문에 이동부재(510)가 팽창하면 제2피스톤(431)은 제2연료토출관(414)을 폐쇄하는방향(도면상 좌측)으로 이동하게 되고, 이동부재(510)가 수축하면 제2피스톤(431)은 제2연료토출관(414)을 개방하는방향(도면상 우측)으로 이동하게 된다. 이는, 제1실린더어셈블리(420)에서 토출되는 연료가스가 제2연료토출관(414)을 통해 항상제2피스톤(431)을 일정압력으로 도면상 우측으로 밀어내고 있기 때문에 제2피스톤(431)의 끝단부와 이동부재(510)는 당접된 상태를 유지하면서 도면상 우측으로 이동하게 되는 것이다.At this time, the ends of the moving member 510 and the second piston 431 abut each other, so that when the moving member 510 expands, the second piston 431 closes the second fuel discharge pipe 414. When the moving member 510 contracts, the second piston 431 moves in the direction of opening the second fuel discharge pipe 414 (right in the drawing). The second piston 431 is because the fuel gas discharged from the first cylinder assembly 420 always pushes the second piston 431 to the right in the drawing at a predetermined pressure through the second fuel discharge pipe 414. The end and the moving member 510 is to be moved to the right in the drawing while maintaining a contact state.
다음으로, 도 6을 참조하여, 제어기(500)의 구성에 대해 보다 상세히 설명한다.Next, the configuration of the controller 500 will be described in more detail with reference to FIG. 6.
도 6에 나타낸 바와 같이, 제어기(500)는, 상기 설명한 이동부재(510)와, 위 이동부재(510)의 위치를 수동으로 조작하기 위한 위치조절기(540)로 구성되어 있다.As shown in FIG. 6, the controller 500 includes a moving member 510 described above and a position adjuster 540 for manually manipulating the position of the moving member 510.
위치조절기(550)는 제2실린더어셈블리(430)의 제2연료토출관(414)의 개방정도를 수동으로 설정하기 위한 구성으로서, 위 지지블록(410)의 일측에 고정된 상태로 위 이동부재(510)를 지지하는 탄성프레임(520)과; 위 지지블록(410)의 타측에 결합된 고정프레임(530)과; 일단에는 상기 고정프레임을 관통하고 상기 탄성프레임(520)에 나사결합된 조절볼트(541)가 구비되며, 타단에는 상기 조절볼트(541)를 회전시키기 위한 손잡이(542)가 구비된 위치조절레버(540); 및 위 고정프레임(530)과 상기 탄성프레임(520) 사이에서 위 조절볼트(541)와 나사결합되며 위 탄성프레임(520)에 고정된 조절너트(521);로 구성되어 있다. Position adjuster 550 is a configuration for manually setting the opening degree of the second fuel discharge pipe 414 of the second cylinder assembly 430, the upper moving member in a fixed state on one side of the support block 410 An elastic frame 520 supporting the 510; A fixed frame 530 coupled to the other side of the support block 410; One end is provided with a control bolt 541 penetrating the fixed frame and screwed to the elastic frame 520, the other end is provided with a handle 542 for rotating the adjustment bolt 541 (position control lever ( 540); And an adjusting nut 521 screwed to the adjusting bolt 541 between the fixing frame 530 and the elastic frame 520 and fixed to the elastic frame 520.
도 6에 나타낸 바와 같이, 탄성프레임(520)은 지지블록(410)의 일측에만 고정되어 있고, 위 이동부재(510)와 결합되어 있기 때문에 탄성프레임(520)이 횡방향으로 이동하면 이동부재(510)도 함께 이동하게 된다.As shown in FIG. 6, the elastic frame 520 is fixed to only one side of the support block 410, and is coupled to the moving member 510, so that the elastic frame 520 moves in the lateral direction. 510 is also moved together.
또한, 위 지지블록(410)의 타측에는 고정프레임(530)이 ㄱ자 형태로 고정되어 있고, 고정프레임(530)과 탄성프레임(520)이 최근거리에서 마주하는 부분에는 위치조절레버(540)의 조절볼트(541)가 고정프레임(530)을 관통하여 탄성프레임(520)에 나사결합되어 있다.In addition, the other side of the support block 410 is fixed to the fixed frame 530 in the form of the L-shape, the fixed frame 530 and the elastic frame 520 in the part facing the most recent distance of the position control lever 540 The adjusting bolt 541 is screwed to the elastic frame 520 through the fixing frame 530.
나사를 조이는 방향으로 위치조절레버(540)의 손잡이(542)를 회전시키면 위치조절레버(540)는 위 고정프레임(530)에 의해 전진(도면상 우측방향)할 수 없기 때문에 상대적으로 위 조절너트(521) 및 이와 고정된 탄성프레임(520)이 도면상 좌측으로 이동하게 되는 것이다.When the knob 542 of the positioning lever 540 is rotated in the direction of tightening the screw, the positioning lever 540 cannot be moved forward (rightward in the drawing) by the upper fixing frame 530, so the upper adjusting nut is relatively higher. 521 and the elastic frame 520 fixed thereto are moved to the left in the drawing.
이 때, 조절너트(521)는 사용강도를 보강하기 위해 선택적으로 사용할 수 있는 것이며, 조절너트(521)가 없는 경우라도 동일한 작용을 하게 됨은 물론이다.At this time, the adjustment nut 521 can be selectively used to reinforce the use strength, even if there is no adjustment nut 521 has the same effect.
위치조절기(550)를 작동시킴으로써, 이동부재(510)의 초기위치를 설정하게 되면, 결국, 제2실린더어셈블리(430)의 제2연료토출관(414)의 개도가 결정되는 것이고, 그 이후부터는 온도센서(140)의 물리적신호에 의해 이동부재(510)가 이동하게 되고, 이로 인해 제2피스톤(431)에 의한 제2연료토출관(414)의 개도가 조절되는 것이다.By setting the initial position of the moving member 510 by operating the position adjuster 550, the opening degree of the second fuel discharge pipe 414 of the second cylinder assembly 430 is determined. The moving member 510 is moved by the physical signal of the temperature sensor 140, thereby adjusting the opening degree of the second fuel discharge pipe 414 by the second piston 431.
다음으로, 도 7 및 도 8를 참조하여, 저수부(100)에 유입된 순환수의 온도가 설정온도에 이르게 되면 온도센서(140)의 팽창신호에 의해 이동부재(510)가 팽창하여 제2피스톤(431)을 밀어 제2연료토출관(414)이 완전히 폐쇄된 경우라도 제2연료토출공(414a)을 통해 미세한 연료가스가 점화기(600)로 유입될 수 있도록 함으로써 순환수의 온도를 유지할 수 있는 구성에 대해 설명한다.Next, referring to FIGS. 7 and 8, when the temperature of the circulating water flowing into the reservoir 100 reaches the set temperature, the moving member 510 expands by the expansion signal of the temperature sensor 140 to the second temperature. Even when the second fuel discharge pipe 414 is pushed by the piston 431, the fuel gas can be introduced into the igniter 600 through the second fuel discharge hole 414a to maintain the temperature of the circulating water. The possible configurations are described.
도 7에 나타낸 바와 같이, 위 제2실린더어셈블리(430)의 위 제2피스톤(431)의 선단부에는, 위 제2실린더어셈블리(430)의 연료토출관(414)이 폐쇄되더라도 상기 제2실린더어셈블리(430) 내부로 미세연료가 유입되도록 요입홈(431a)이 형성되어 있다. 이로 인해, 위 제2실린더어셈블리(430)의 연료토출관(414)이 완전히 폐쇄되더라도 요입홈(431a)을 통해 미세한 양의 연료가스가 제2실린더어셈블리(430) 내부로 유입될 수 있어, 순환수의 온도를 유지하는데 필요한 연료가스를 점화기(600)로 보낼 수 있게 되는 것이다.As shown in FIG. 7, the second cylinder assembly is closed at the tip of the second piston assembly 430 of the second cylinder assembly 430 even if the fuel discharge pipe 414 of the second cylinder assembly 430 is closed. 430, the recess groove 431a is formed so that the fine fuel flows into the inside. Thus, even when the fuel discharge pipe 414 of the second cylinder assembly 430 is completely closed, a minute amount of fuel gas may flow into the second cylinder assembly 430 through the recess groove 431a, thereby circulating. It is possible to send the fuel gas necessary to maintain the temperature of the water to the igniter 600.
이와 선택적으로, 도 8에 나타낸 바와 같이, 위 제2실린더어셈블리(430)의 상기 연료토출관(414)의 내주면에는, 위 제2실린더어셈블리(430)의 연료토출관(414)이 폐쇄되더라도 위 제2실린더어셈블리(430) 내부로 미세연료가 유입되도록 요입홈(414b)이 형성될 수도 있다.Alternatively, as shown in FIG. 8, the inner discharge surface of the fuel discharge pipe 414 of the second cylinder assembly 430 may be closed even if the fuel discharge pipe 414 of the second cylinder assembly 430 is closed. A recess groove 414b may be formed to allow the microfuel to flow into the second cylinder assembly 430.
이상, 본 발명의 온열매트용 이동식 보일러(1000)를 바람직한 실시예를 통해 설명하였으나, 이는 본 발명의 이해를 돕고자 하는 목적이며 본 발명의 기술적범위를 이에 한정하고자 하는 것이 아니다.The mobile boiler 1000 for the thermal mat of the present invention has been described through the preferred embodiment, but this is for the purpose of helping the understanding of the present invention and is not intended to limit the technical scope of the present invention.
본 기술이 속하는 기술분야에서 통상의 지식을 가진 자라면, 본 발명의 기술적 사상을 벗어나지 않고도 다양한 변형이나 개조가 가능함을 이해할 것이다.Those skilled in the art will appreciate that various modifications and variations can be made without departing from the spirit of the present invention.
예를 들어, 본 발명의 온도센서(140)에 충진되는 액체의 종류, 이동부재(510)의 형상이나 재질, 각 구성의 결합구조, 전열부(200)에 포함된 유로관(220)의 형상이나 재질 등은 본 발명의 기술적범위를 정하는 기준이 될 수 없고, 오로지 특허청구범위에 의해서만 정해짐은 말할 나위가 없다.For example, the type of liquid to be filled in the temperature sensor 140 of the present invention, the shape or material of the moving member 510, the coupling structure of each configuration, the shape of the flow path tube 220 included in the heat transfer part 200. Needless to say, materials and the like cannot be used as criteria for determining the technical scope of the present invention, and are determined only by the claims.

Claims (6)

  1. 일측에는 온열매트(10)를 순환하는 순환수가 유입되도록 유입관(110)이 형성되고, 상기 순환수가 저장되는 저수부(100); 상기 저수부(100)로부터 배출되는 상기 순환수가 일정한 유로관(220)를 따라 유동하면서 열교환 되고, 일측에 형성된 유출관(210)을 통해 상기 온열매트(10)로 상기 순환수가 배출되는 전열부(200)와; 연료탱크(T)로부터 공급된 연료가스를 연소시켜 상기 전열부(200) 내부의 상기 순환수를 가열하는 가열부(300); 및 외관을 형성하는 하우징(700): 을 포함하는 이동식 보일러(1000)가 구비된 온열매트(10)의 구조에 있어서,An inlet pipe 110 is formed at one side such that circulating water circulating in the thermal mat 10 is introduced, and the water storage part 100 in which the circulating water is stored; The circulating water discharged from the water storage part 100 is heat-exchanged while flowing along a predetermined flow path tube 220, and the heat transfer part through which the circulating water is discharged to the thermal mat 10 through an outlet pipe 210 formed at one side ( 200); A heating unit (300) for burning the fuel gas supplied from the fuel tank (T) to heat the circulating water in the heat transfer unit (200); In the structure of the thermal mat 10 is provided with a mobile boiler 1000 comprising a housing 700 for forming an appearance,
    상기 저수부(100)는,The reservoir 100,
    일측에는 상기 온열매트(10)의 내부에 매설된 순환관(20)의 일단부와 연결된 유입관(110)과; 상기 순환수가 상기 전열부(200) 내부로 유입되도록 하는 다수개의 구멍(123)이 형성된 고정브라켓(120)과; 상기 순환수에 의한 수압에 따라 상기 구멍(123)을 개폐하는 박막의 체크밸브(130)와; 상기 순환수의 온도를 감지하여 내부에 충진된 액체가 팽창 또는 수축함으로써 물리적신호를 생성하는 온도센서(140); 를 포함하고,An inlet pipe 110 connected to one end of the circulation pipe 20 embedded in the thermal mat 10; A fixing bracket (120) having a plurality of holes (123) formed therein to allow the circulation water to flow into the heat transfer part (200); A thin-film check valve 130 that opens and closes the hole 123 according to the water pressure by the circulating water; A temperature sensor 140 that detects the temperature of the circulating water and generates a physical signal by expanding or contracting the liquid filled therein; Including,
    상기 전열부(200)에는,The heat transfer unit 200,
    상기 저수부(100)의 상기 체크밸브(130)가 개방될 때 상기 순환수가 유입되어 유동하는 동안 열을 흡수하는 유로관(220); 이 형성되며, A flow passage tube 220 which absorbs heat while the circulating water is introduced and flows when the check valve 130 of the reservoir 100 is opened; Is formed,
    상기 가열부(300)는,The heating unit 300,
    상기 연료탱크(T)와 결합되는 결합부(411)와, 상기 연료탱크(T)로부터 공급된 연료가스가 제1연료토출공(413a)을 통해 분출되는 제1연료토출관(413)이 구비된 지지블록(410)과, 실린더 내측에 형성된 조절나사부(422)에 나사결합된 조절노브(440)의 회전에 의해 실린더 내부를 이동함으로써 상기 제1연료토출관(413)을 개폐하는 제1피스톤(421)이 장착되고 상기 제1연료토출관(413)과 연통되도록 상기 지지블록(410) 상에 형성된 제1실린더어셈블리(420)와, 내부를 슬라이딩 이동함으로써 제2연료토출관(414)을 개폐하는 제2피스톤(431)이 장착되고 상기 제1실린더어셈블리(420)와 연통되도록 상기 지지블록(410) 상에 형성되며 상기 제2연료토출관(414)을 통해 유입된 연료가스를 토출시키기 위한 제2연료토출공(414a)이 형성된 제2실린더어셈블리(430)가 구비된 가스조절기(400); 및 상기 제2실린더어셈블리(430)의 상기 제2피스톤(431)의 끝단부와 당접하여 상기 온도센서(140)로부터 생성된 물리적신호를 받아 팽창 또는 수축됨으로써 상기 제2피스톤(431)을 이동시키는 이동부재(510)와, 상기 이동부재(510)의 위치를 가변시키기 위한 위치조절기(550)를 구비한 제어기(500); 및 상기 제2실린더어셈블리(430)의 상기 제2연료토출공(414a)을 통해 유입된 연료가스를 연소시키는 연소기(610)과, 상기 연소기(610)에 전기스파크를 발생시키는 점화플러그(620)로 이루어진 점화기(600); 를 포함하여 구성된 것을 특징으로 하는 온열매트(10)용 이동식 보일러(1000).A coupling part 411 coupled to the fuel tank T and a first fuel discharge pipe 413 through which the fuel gas supplied from the fuel tank T is ejected through the first fuel discharge hole 413a are provided. First piston for opening and closing the first fuel discharge pipe 413 by moving the inside of the cylinder by the rotation of the support block 410 and the adjustment knob 440 screwed to the adjustment screw unit 422 formed inside the cylinder. 421 is mounted and the first cylinder assembly 420 formed on the support block 410 so as to communicate with the first fuel discharge pipe 413 and the second fuel discharge pipe 414 by sliding the inside. The opening and closing of the second piston 431 is formed on the support block 410 so as to communicate with the first cylinder assembly 420 and to discharge the fuel gas introduced through the second fuel discharge pipe 414 A gas regulator 400 having a second cylinder assembly 430 having a second fuel discharge hole 414a formed therein; And a physical signal generated from the temperature sensor 140 in contact with an end of the second piston 431 of the second cylinder assembly 430 to expand or contract to move the second piston 431. A controller 500 having a moving member 510 and a position adjuster 550 for changing the position of the moving member 510; And a combustor 610 for combusting the fuel gas introduced through the second fuel discharge hole 414a of the second cylinder assembly 430, and an ignition plug 620 for generating an electric spark in the combustor 610. Igniter 600 made of; Mobile boiler 1000 for thermal mat 10, characterized in that configured to include.
  2. 제 1항에 있어서,The method of claim 1,
    상기 온도센서(140)는,The temperature sensor 140,
    상기 저수부(100)의 내부에 잠수되어 순환수의 온도를 감지하고, 내부에 충진된 유체에 의해 저수부(100) 내부로 유입된 순환수의 온도가 특정온도에 도달할 때 팽창 또는 수축하는 물리적신호를 생성하는 신호생성부(143)와, 상기 물리적신호를 상기 이동부재(510)로 전달하기 위해 상기 유체가 충진된 모세관으로 이루어진 신호전달부(145)로 구성된 것을 특징으로 하는 온열매트(10)용 이동식 보일러(1000).The submerged inside the reservoir 100 senses the temperature of the circulating water, and expands or contracts when the temperature of the circulated water introduced into the reservoir 100 by a fluid filled therein reaches a specific temperature. Thermal mat, characterized in that consisting of a signal generation unit 143 for generating a physical signal and a signal transmission unit 145 consisting of a capillary filled with the fluid to transfer the physical signal to the moving member 510 ( Portable boiler (1000).
  3. 제 1항 또는 제 2항에 있어서,The method according to claim 1 or 2,
    상기 제2실린더어셈블리(430)의 상기 제2피스톤(431)의 선단부에는, 상기 제2실린더어셈블리(430)의 연료토출관(414)이 폐쇄되더라도 상기 제2실린더어셈블리(430) 내부로 미세연료가 유입되도록 요입홈(431a)이 형성된 것을 특징으로 하는 온열매트(10)용 이동식 보일러(1000).Even though the fuel discharge pipe 414 of the second cylinder assembly 430 is closed at the distal end of the second piston assembly 430 of the second cylinder assembly 430, fine fuel is injected into the second cylinder assembly 430. Mobile boiler 1000 for a thermal mat 10, characterized in that the recessed groove (431a) is formed so that the inlet.
  4. 제 1항 또는 제 2항에 있어서,The method according to claim 1 or 2,
    상기 제2실린더어셈블리(430)의 상기 제2연료토출관(414)의 내주면에는, 상기 제2실린더어셈블리(430)의 연료토출관(414)이 폐쇄되더라도 상기 제2실린더어셈블리(430) 내부로 미세연료가 유입되도록 요입홈(414b)이 형성된 것을 특징으로 하는 온열매트(10)용 이동식 보일러(1000).On the inner circumferential surface of the second fuel discharge pipe 414 of the second cylinder assembly 430, even if the fuel discharge pipe 414 of the second cylinder assembly 430 is closed, into the second cylinder assembly 430. Mobile boiler (1000) for a thermal mat (10), characterized in that the recessed groove (414b) is formed so that fine fuel is introduced.
  5. 제 1항 또는 제 2항에 있어서,The method according to claim 1 or 2,
    상기 위치조절기(550)는,The position adjuster 550,
    상기 지지블록(410)의 일측에 고정된 상태로 상기 이동부재(510)를 지지하는 탄성프레임(520)과;An elastic frame 520 for supporting the movable member 510 in a fixed state on one side of the support block 410;
    상기 지지블록(410)의 타측에 결합된 고정프레임(530); 및A fixed frame 530 coupled to the other side of the support block 410; And
    일단에는 상기 고정프레임을 관통하고 상기 탄성프레임(520)에 나사결합된 조절볼트(541)가 구비되며, 타단에는 상기 조절볼트(541)를 회전시키기 위한 손잡이(542)가 구비된 위치조절레버(540);로 구성된 것을 특징으로 하는 온열매트(10)용 이동식 보일러(1000).One end is provided with a control bolt 541 penetrating the fixed frame and screwed to the elastic frame 520, the other end is provided with a handle 542 for rotating the adjustment bolt 541 (position control lever ( 540); Mobile boiler 1000 for a thermal mat 10, characterized in that consisting of.
  6. 제5항에 있어서,The method of claim 5,
    상기 고정프레임(530)과 상기 탄성프레임(520) 사이에는, 상기 조절볼트(541)와 나사결합되며 상기 탄성프레임(520)에 고정된 조절너트(521)가 더 구비된 것을 특징으로 하는 온열매트(10)용 이동식 보일러(1000).Between the fixing frame 530 and the elastic frame 520, a heating mat, characterized in that the adjustment bolt 541 is screwed and the adjustment nut 521 fixed to the elastic frame 520 is further provided Portable boiler 1000 for 10.
PCT/KR2010/000845 2009-02-17 2010-02-11 Portable boiler for a hot mat WO2010095829A2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
KR1020090012986A KR100948114B1 (en) 2009-02-17 2009-02-17 A portable boiler used for heating mat
KR10-2009-0012986 2009-02-17

Publications (2)

Publication Number Publication Date
WO2010095829A2 true WO2010095829A2 (en) 2010-08-26
WO2010095829A3 WO2010095829A3 (en) 2010-11-18

Family

ID=42183446

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/KR2010/000845 WO2010095829A2 (en) 2009-02-17 2010-02-11 Portable boiler for a hot mat

Country Status (2)

Country Link
KR (1) KR100948114B1 (en)
WO (1) WO2010095829A2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102356239B1 (en) * 2020-10-08 2022-02-07 주식회사 유로 Safety hot water mat

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04347450A (en) * 1991-05-22 1992-12-02 Kenji Okayasu Portable heat transmitting device
JPH0571709A (en) * 1991-09-13 1993-03-23 Paloma Ind Ltd Noodle boiling machine
KR100306289B1 (en) * 1997-07-23 2001-11-30 정완식 Heating device for temporal resting place
KR100876939B1 (en) * 2008-09-10 2009-01-07 김용후 Hot water circulation apparatus
KR20090008174A (en) * 2008-12-23 2009-01-21 조환빈 3 way camping boiler

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200179635Y1 (en) 1999-11-02 2000-04-15 한상구 Heating device of a mat
KR200338951Y1 (en) 2003-10-22 2004-01-24 이정열 Portable heating utensil

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH04347450A (en) * 1991-05-22 1992-12-02 Kenji Okayasu Portable heat transmitting device
JPH0571709A (en) * 1991-09-13 1993-03-23 Paloma Ind Ltd Noodle boiling machine
KR100306289B1 (en) * 1997-07-23 2001-11-30 정완식 Heating device for temporal resting place
KR100876939B1 (en) * 2008-09-10 2009-01-07 김용후 Hot water circulation apparatus
KR20090008174A (en) * 2008-12-23 2009-01-21 조환빈 3 way camping boiler

Also Published As

Publication number Publication date
WO2010095829A3 (en) 2010-11-18
KR100948114B1 (en) 2010-03-18

Similar Documents

Publication Publication Date Title
WO2010095828A2 (en) Portable boiler for a hot mat
WO2014092323A1 (en) Hot water-centered combined hot water and heating boiler
WO2011149217A2 (en) Firewood boiler
EP0514922B1 (en) Portable heat conducting apparatus
WO2010047535A2 (en) Natural circulation mode boiler for heating
CN201184680Y (en) Gas water heater
CN114752419B (en) Gasifier drying device capable of automatically adjusting temperature
WO2010095829A2 (en) Portable boiler for a hot mat
KR100909847B1 (en) A firewood boiler
WO2019009662A1 (en) Natural circulation heating burner dispensing with circulation pump
US20080223946A1 (en) Gas Control/Block Valve and Automatic Circulation Device of Warm Water Using the Gas Valves
WO2017104985A1 (en) Natural rotating convention-type heating system
KR101080835B1 (en) A bunner controller of a portable boiler used for heating mat and heating air mat
RU126433U1 (en) BOILER HEATING WATER HEATING STEEL
WO2019182237A1 (en) Hot-water storage boiler having both heat-quantity proportional control function and backflow prevention function
WO2017007198A1 (en) Fuel cell system
KR100437192B1 (en) Water heater
CN110529847A (en) Burner and household electrical appliance with it
CN206207749U (en) The combustion control system and hotline heater of combustor
WO2019004625A1 (en) Warm water supply apparatus equipped with pre-heating function and method for controlling same
KR100504085B1 (en) Body Heater for use Wear
CN210638032U (en) Combustor and have its domestic appliance
CN106642294A (en) Waterway system capable of achieving energy conservation for heating system
KR200186371Y1 (en) Waste heat recovery apparatus for hot air supply boier
KR200299677Y1 (en) Body Heater for use Wear

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 10743904

Country of ref document: EP

Kind code of ref document: A2

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 10743904

Country of ref document: EP

Kind code of ref document: A2