Wind-resistant heating device using non-electric source
Abstract
Disclosed is a wind-resistant heating device using a non-electric source. To this end, a non-electric heating body is received in the inner lower part of a main casing of a wind-resistant heating device. Air supply holes for supplying air for combustion are formed in the main casing. An upper opening for upward discharging heat generated when the non-electric heating body is combusted is formed in the main casing. Wind-resistant casings are spaced apart at a specific interval on the inside or outside of the main casing, thus preventing a head wind from flowing into the air supply holes of the main casing. Accordingly, although a head wind flows into the air supply holes of the main casing or the heating device is carried and moved, air can be changed into a flow of air to enable continuous combustion.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A wind-resistant heating device D using a non-electric heating body NB, wherein the non-electric heating body NB is received in an inner lower part of a main casing 10 of the wind-resistant heating device D, air supply holes 11 for supplying air for combustion are formed in the main casing, an upper opening 12 for upward discharging heat generated when the non-electric heating body NB is combusted is formed in the main casing, and wind-resistant casings 20 and 30 are spaced apart at a specific interval on an inside or outside of the main casing 10 , thus preventing a head wind from flowing into the air supply holes 11 of the main casing 10 .
2 . The wind-resistant heating device of claim 1 , wherein:
a lower casing 10 b is coupled to a lower part of an upper casing 10 a of the main casing 10 in such a way as to be separated, and the lower part of the upper casing 10 a is gradually expanded to form a slant part 13 .
3 . The wind-resistant heating device of claim 2 , wherein:
the lower casing 10 b of the main casing 10 has a lower opening 14 a formed in a bottom plate 14 , a support unit 15 is positioned to be spaced apart from the bottom plate 14 at a specific interval, and the non-electric heating body NB is positioned over the support unit 15 .
4 . The wind-resistant heating device of claim 3 , wherein a spring 16 is positioned between the bottom plate 14 and the support unit 15 to pressurize the non-electric heating body NB upward.
5 . The wind-resistant heating device of claim 3 , wherein a flow control part 17 to which a plurality of rotation wings 17 a is coupled in such a way as to be open or shut by a rotation of a rotation shaft 17 b is provided in the lower opening 14 a of the bottom plate 14 to control a size of the lower opening 14 a.
6 . The wind-resistant heating device of claim 1 , wherein:
the non-electric heating body NB is received in the inner lower part of the inner wind-resistant casing 20 , a lower part of an upper cylindrical part 22 in which an inflow hole 21 is formed is gradually expanded to form a slant guide part 23 , and a lower cylindrical part 24 is positioned at a bottom of the slant guide part 23 .
7 . The wind-resistant heating device of claim 1 , wherein:
inflow holes 21 are formed in the inner wind-resistant casing 20 , and wind deflectors 21 a are disposed to be inclined inside or outside in the inflow holes 21 to change a direction of a flow of air.
8 . The wind-resistant heating device of claim 7 , wherein:
the wind deflector 21 a disposed in the inflow hole 21 is disposed to be inclined outside, a blocking plate 21 b is disposed at an outside end of the wind deflector 21 a , and an opening degree of the air supply hole 11 of the main casing 10 is controlled by the blocking plate 21 b based on control of a relative position of the inner wind-resistant casing 20 .
9 . The wind-resistant heating device of claim 6 , wherein:
the main casing 10 and the inner wind-resistant casing 20 are coupled up and down so that a relative position between the main casing 10 and the inner wind-resistant casing 20 is adjusted, and the slant part 13 of the main casing 10 and the slant guide part 23 of the inner wind-resistant casing 20 are disposed to pass through a corresponding slant to adjust an interval between the slant part 13 and the slant guide part 23 .
10 . The wind-resistant heating device of claim 9 , wherein:
a plurality of fixing parts 18 spaced apart at specific intervals is disposed alongside an inner circumference surface of the main casing 10 and coupled to an outer circumference surface of the inner wind-resistant casing 20 , and the fixing parts 18 are coupled to the inner wind-resistant casing 20 so that a relative height of the fixing parts is adjustable.
11 . The wind-resistant heating device of claim 10 , wherein:
the fixing part 18 of the main casing 10 comprises an elastic body, and the fixing part is pressurized and coupled to the outer circumference surface of the inner wind-resistant casing 20 by applying an elastic force to the outer circumference surface.
12 . The wind-resistant heating device of claim 1 , wherein:
the inner wind-resistant casing 20 is spaced apart from the main casing 10 at a specific interval, and the inner wind-resistant casing 20 is protruded upward so that combusted air is discharged to the outside through the upper opening 12 .
13 . The wind-resistant heating device of claim 1 , wherein a plurality of fixing elastic parts 25 is radially disposed at a bottom of the inner wind-resistant casing 20 to pressurize and fix the non-electric heating body NB.
14 . The wind-resistant heating device of claim 13 , wherein the fixing elastic parts 25 have elastic jaws 25 a formed therein and are engaged with a bottom of the non-electric heating body NB or a trapping jaw G formed in the outer circumference surface of the non-electric heating body NB.
15 . The wind-resistant heating device of claim 1 , wherein:
the outer wind-resistant casing 30 is provided to surround an outside of the main casing 10 , and a plurality of guidance holes 31 is formed so that air is supplied to the air supply holes 11 .
16 . The wind-resistant heating device of claim 15 , wherein a bottom of the outer wind-resistant casing 30 is positioned to be seated in the slant part 13 of the main casing 10 .
17 . The wind-resistant heating device of claim 16 , wherein end guidance holes 31 a are formed at the bottom of the outer wind-resistant casing 30 , so air introduced into the end guidance holes 31 a is naturally changed into a flow of air by the slant part 13 .Join the waitlist — get patent alerts
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