WO2018088601A1 - Self-powered generator using candle - Google Patents

Self-powered generator using candle Download PDF

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Publication number
WO2018088601A1
WO2018088601A1 PCT/KR2016/013143 KR2016013143W WO2018088601A1 WO 2018088601 A1 WO2018088601 A1 WO 2018088601A1 KR 2016013143 W KR2016013143 W KR 2016013143W WO 2018088601 A1 WO2018088601 A1 WO 2018088601A1
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WO
WIPO (PCT)
Prior art keywords
candle
power generation
self
generation unit
support
Prior art date
Application number
PCT/KR2016/013143
Other languages
French (fr)
Korean (ko)
Inventor
최희식
Original Assignee
(주)코아센텍
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Publication date
Application filed by (주)코아센텍 filed Critical (주)코아센텍
Publication of WO2018088601A1 publication Critical patent/WO2018088601A1/en

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02NELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
    • H02N11/00Generators or motors not provided for elsewhere; Alleged perpetua mobilia obtained by electric or magnetic means
    • H02N11/002Generators
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V35/00Candle holders
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02NELECTRIC MACHINES NOT OTHERWISE PROVIDED FOR
    • H02N11/00Generators or motors not provided for elsewhere; Alleged perpetua mobilia obtained by electric or magnetic means
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10NELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10N10/00Thermoelectric devices comprising a junction of dissimilar materials, i.e. devices exhibiting Seebeck or Peltier effects
    • H10N10/10Thermoelectric devices comprising a junction of dissimilar materials, i.e. devices exhibiting Seebeck or Peltier effects operating with only the Peltier or Seebeck effects
    • H10N10/17Thermoelectric devices comprising a junction of dissimilar materials, i.e. devices exhibiting Seebeck or Peltier effects operating with only the Peltier or Seebeck effects characterised by the structure or configuration of the cell or thermocouple forming the device

Definitions

  • the present invention relates to a self-powered device using a candle, and more particularly, to a self-powered device using a candle that enhances the efficiency of efficient heat transfer and extinguish the candle through a pair of fire extinguishing cap toward the candle. will be.
  • a candle refers to a lighting device for molding a flammable solid, such as paraffin wax, beeswax, at a suitable temperature into a certain shape such as a cylindrical shape and inserting a wick such as cotton in the center thereof.
  • a flammable solid such as paraffin wax, beeswax
  • the evaporated melt combines with oxygen in the atmosphere to generate an exothermic chemical reaction to generate heat and light.
  • the recently developed scented candle is an artificial aroma (aroma) oil or gel type method, or a solid scented candle has been developed using a natural fragrance, yet easy to possess.
  • thermoelectric element the heat of the flame generated during the burning of the candle is transferred to the thermoelectric element to obtain electrical energy, and the electrical energy can be used as various power sources.
  • Such a self-powered device may not only be used as an energy source for each home light source in a developing country in which power supply is not smooth, but may also be used as an energy source of small capacity power, such as a decorative light source or a charging device for electronic devices.
  • Self-powered device using a candle includes a housing 10, the heat absorbing plate 20, the heat sink 30, the thermoelectric element 40, the lighting unit 50 and the control unit 60.
  • thermoelectric element 40 Through opening and closing of the opening and closing part 11 of the housing 10, a candle is disposed inside the housing 10 and the temperature difference between the contact surface of the heat absorbing plate 20 and the contact surface of the heat sink 30 receives heat of the candle above the candle.
  • thermoelectric element 40 By using the thermoelectric element 40 to produce a thermoelectric power is installed.
  • the candle may be away from the thermoelectric element 40 as the heating solid burns, the distance measuring sensor 12 detects this and raises the moving part 13 by using a motor (not shown) power. And the distance between the thermoelectric element 40 can be kept constant so that the electricity production can be made effectively.
  • the self-powered device using a candle according to the prior art has the following problems.
  • the housing 10 is provided and the candle is disposed inside the housing 10, there was a problem that the ignition and extinguishing work for the candle is very cumbersome.
  • Patent Document 1 Republic of Korea Registration No. 10-1544707
  • the present invention has been made to solve the above problems, the object of the present invention is to convert the heat energy of the candle into electrical energy to be utilized as a multi-purpose power source, the distance between the candle and the thermoelectric element can be made manually It is to provide a self-powered device using a candle to increase the convenience of candle ignition and extinguishing work.
  • Another object of the present invention is to provide a self-powered device using a candle that increases the efficiency of electricity production of the thermoelectric element by increasing the cooling efficiency of the heat sink by providing a cooling means composed of a discharge fan and a suction fan integrally on the heat sink constituting the power generation unit. It would be.
  • a candle disposed on the base; installed on the candle, the power generation unit for changing the heat energy generated by the ignition of the candle into electrical energy; installed between the power generation unit and the candle but Covered with a fire extinguishing cap having a form of expansion tube toward the candle: including, wherein the fire cap is provided with a pair of fire extinguishing cover having a through hole corresponding to each other, the through holes coincide with each other or It provides a self-powered device using a candle, characterized in that it is provided to rotate to be shielded.
  • the power generation unit includes a heat sink having an inner space corresponding to the flame of the candle, a heat absorbing plate disposed in the inner space of the heat sink, and a thermoelectric element interposed between both sides of the heat absorbing plate and the heat sink,
  • the upper portion further includes a cooling fan including a discharge fan for discharging heat collected in the heat absorbing plate, and a suction fan installed at both sides of the discharge fan and sucking outside air into the heat sink.
  • Self-powered device using a candle according to the present invention has the following effects.
  • the fire extinguishing cap is provided with a pair of fire extinguishing cover with a plurality of through holes overlapped, there is an effect that the candle can be easily extinguished.
  • the cooling means is further installed on the heat sink, there is an effect that can increase the cooling efficiency of the heat sink.
  • the cooling means may maximize the cooling efficiency of the heat sink by being composed of a discharge fan for discharging the heat of the thermoelectric element, and a suction fan for sucking the outside air in the heat sink.
  • thermoelectric element Accordingly, it is possible to maximize the temperature difference of the thermoelectric element, it is possible to increase the efficiency of electricity production through the thermoelectric element.
  • FIG. 1 is a cross-sectional view showing a self-powered device using a candle according to the prior art
  • FIG. 2 is a perspective view showing a self-powered device using a candle according to the first embodiment of the present invention
  • FIG. 3 is an exploded perspective view showing a self-powered device using a candle according to the first embodiment of the present invention
  • Figure 4 is an exploded perspective view showing a fire cap of the self-powered device using a candle according to the first embodiment of the present invention
  • FIG. 5 is a cross-sectional view showing a self-powered device using a candle according to a first embodiment of the present invention
  • Figure 6 is a front view showing another example of the lifting means of the self-powered device using a candle according to the first embodiment of the present invention
  • Figure 7a is a perspective view showing an open state of the fire extinguishing cap of the self-powered device using a candle according to the first embodiment of the present invention
  • Figure 7b is a perspective view showing a closed state of the digestion cap hole of the self-powered device using a candle according to the first embodiment of the present invention
  • FIG. 8 is a front view showing a self-powered device using a candle according to a second embodiment of the present invention
  • FIG. 9 is a plan view showing a state in which the cooling means of the self-powered device using a candle according to a second embodiment of the present invention installed on a heat sink;
  • FIG. 10 is a cross-sectional view showing a cooling means of a self-powered device using a candle according to a second embodiment of the present invention.
  • FIG. 11 is a plan view showing a state in which the wind direction guide is installed in the cooling means of the self-powered device using a candle according to a second embodiment of the present invention
  • FIG. 12 is an exploded perspective view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention.
  • FIG. 13 is a cross-sectional view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention.
  • FIG. 14 is an exploded perspective view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention.
  • 15 is a cross-sectional view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention.
  • 16 is a cross-sectional view showing a self-powered device using a candle according to a fourth embodiment of the present invention.
  • 17 is a cross-sectional view showing only the main part of the power generation unit of the self-powered device using a candle according to a fifth embodiment of the present invention.
  • FIG. 18 is a plan view showing a heat sink in a power generation unit of a self-powered device using a candle according to a fifth embodiment of the present invention.
  • a self-powered apparatus using a candle according to the first embodiment of the present invention (hereinafter, referred to as a "self-powered apparatus") will be described with reference to FIGS. 2 to 7B.
  • the self-power generation device converts the heat energy generated from the flame into electrical energy while the candle is burned, but has a technical feature to increase the convenience of candle extinguishing work by adjusting the oxygen inflow into the candle and to manually operate each part.
  • the self-generating device includes a base 100, a head part 200, a power generation part 300, and a fire extinguishing cap 400.
  • the base 100 constitutes a lower portion of the self-generating device and is supported on the ground.
  • Base 100 is formed to have a flat bottom, its shape is not limited to a particular shape.
  • a fixing groove 110 for fixing the candle is formed.
  • the candle refers to both a general candle that emits only light while burning, and a candle that emits incense.
  • the base 100 is preferably provided with a charging terminal that can use the power generated from the power generation unit 300.
  • the amount of power generated through the power generation unit is about 5W, considering the small capacity, it can be understood that the type of electronic devices that can be charged and used through the charging terminal is limited.
  • the head portion 200 constitutes an upper portion of the self-generating device
  • the light source is preferably installed inside.
  • the light source serves to emit light using the thermoelectric power produced by the power generation unit 300.
  • LED light emitting diode
  • the head 200 is fixed on the heat sink of the power generation unit 300 to be described later.
  • the power generation unit 300 is a configuration for producing electricity by using the heat energy of the candle, is installed in the lower portion of the head portion 200.
  • the power generation unit 300 uses a thermoelectric element 310 that generates electricity by an effect of Thomas johann seebeck, which is a phenomenon in which electromotive force is generated due to a temperature difference between both ends, and a contact surface and a heat sink of the heat absorbing plate 320 are used.
  • Thermoelectric power is generated by using a temperature difference between the contact surfaces with 330.
  • thermoelectric element 310 may be heated in high temperature by receiving heat absorbed by the heat absorbing plate 320 by surface contact with the heat absorbing plate 320, and the other side of the thermoelectric element 310 may be a heat sink 330.
  • the thermoelectric element 310 By transmitting heat to the heat sink 330 in contact with the surface, it can be cooled to low temperatures, such a temperature difference occurs on one side and the other side of the thermoelectric element 310, the thermoelectric element 310 has a Seebeck effect By generating thermoelectric power through it can produce electricity.
  • the power generation unit 300 is installed on the base 100 through the support (500).
  • Support 500 is installed between the power generation unit 300 and the support 500 as shown in Figure 2, and has a technical feature configured to be made to adjust the length.
  • the position of the power generation unit 300 should also be lowered along the flame of the candle, between the power generation unit 300 and the candle by adjusting the length of the support 500. This is to keep the space between them.
  • the support 500 is composed of a first support 510 and a second support 520 as shown in FIG.
  • the first support 510 extends downward from both sides of the heat sink 330 constituting the power generation unit 300, and a fixing hole 511 is formed at an end thereof.
  • the second support 520 is installed upward from the base 100 and forms an insertion groove 521 to allow the first support 510 to be inserted therein.
  • the second support 520 is formed with a plurality of height adjustment holes 521 in the height direction.
  • the height adjusting hole 521 corresponds to the fixing hole 511, the length of the entire support 500 is adjusted according to the position corresponding to the fixing hole 511.
  • the fixing pin 530 for restraining the length of the support 500 is provided.
  • the fixing pin 530 passes through the height adjusting hole 521 of the second support 520 and the fixing hole 511 of the first support 510, so that the support 500 can maintain the length of the state. It is.
  • the distance between the candle and the power generation unit 300 is made by hand by adjusting the length of the support 500, so that no electrical energy consumption occurs.
  • the digestion cap 400 collects the heat energy of the candle and efficiently serves the power generation unit 300, and serves to easily extinguish the candle.
  • Digestion cap 400 is coupled to the lower portion of the power generation unit 300, is formed to have a form of expansion toward the candle.
  • Fire extinguishing cap 400 is configured to be elevated based on the power generation unit (300).
  • Fire extinguishing cap 400 is configured to be elevated through the lifting means 410, as shown in Figure 4 is composed of a pair.
  • a pair of fire extinguishing caps 400 will be referred to as a first fire extinguishing cover 420 and a second fire extinguishing cover 430.
  • the first fire extinguishing cover 420 is coupled to the lower portion of the power generation unit 300 through the lifting means 410, and includes a fixed flange 421.
  • the elevating means 410 is composed of a coupling portion 411 installed on the lower portion of the power generation unit 300 and a screw portion 412 provided on the first fire cover (420).
  • the coupling part 411 is made in the form of a hollow pipe so that the heat energy of the candle can be transferred to the heat absorbing plate 320 of the power generation unit 300, and forms a male thread.
  • the screw portion 412 of the first fire-extinguishing cover 420 is formed in the form of a hollow pipe for screwing the coupling portion 411, and forms a female screw thread for coupling the male screw thread.
  • the threaded portion 412 of the first fire extinguishing cover 420 is screwed to the coupling portion 411, so that the first fire extinguishing cover 420 may be lifted or lowered while the thread is loosened or tightened through the rotation of the threaded portion 411.
  • the fixing flange 421 is configured to cover the candle, it is made radially downward from the screw portion 412.
  • the heat energy of the candle may be collected and transferred to the power generation unit 300, thereby increasing power generation efficiency.
  • a plurality of through holes are formed in the fixed flange 421, which is referred to as a first through hole 421a.
  • the first through hole 421a is configured to supply oxygen smoothly to the candle inside the first fire cover 420.
  • the second fire cover 430 serves to open and close the first through hole 421a of the first fire cover 420 and overlaps the upper portion of the first fire cover 420.
  • the second fire extinguishing cover 430 includes a rotation flange 431 corresponding to the fixed flange 421 of the first fire cover 420, and the rotation flange 431 corresponds to the first through hole 421a. Two through holes 431a are formed.
  • the rotation flange 431 of the second fire cover 430 is to open or close the first through hole (421a) while being rotated on the fixed flange 421 of the first fire cover (420).
  • the candle When the first through-hole 421a is open, since the oxygen can be introduced into the first fire cover 420, the candle can be burned smoothly, and when the first through-hole 421a is closed, the first fire cover Since the inflow of oxygen is not made to the inside of the 420, the candle is gradually digested.
  • the lifting means 410 is a configuration for lifting the digestion cap 400, it is possible to configure the lifting of the fire extinguishing cap 400 through the screw coupling as described above, as shown in Figure 6 It can also be configured using the member 413.
  • the stretchable member 413 is preferably made of a material of a characteristic that the shape is not restored to its original state when a force is arbitrarily applied.
  • the configuration of the elastic member 413 may be applied in various ways, it is preferable that the present invention is provided with a corrugated pipe.
  • the corrugated pipe 413 is a member that can easily lift the power generating unit 300 manually as an elastic member commonly referred to as 'Java'.
  • the candle is inserted into the fixing groove 110 of the base 100.
  • the first through hole 421a should be open in correspondence with the second through hole 431a.
  • thermoelectric element 310 As the heat of the thermoelectric element 310 is cooled through the 330, electricity is produced by the Seebeck effect according to the temperature difference.
  • the electricity produced as described above may emit a light source of the head 200 through a circuit configuration, and may supply power to the electronic device through a charging terminal provided in the base 100.
  • the flame position of the candle is lowered, and the user keeps the interval between the power generation unit 300 and the candle constant so that the flame of the candle does not move away from the power generation unit 300.
  • the fixing pin 530 of the support 500 is removed to insert the first support 510 deeper into the second support 520.
  • the entire length of the support 500 is reduced, so that the distance between the power generation unit 300 and the candle can be maintained.
  • the fixing hole 511 of the first support 510 and the height adjustment hole 521 of the second support 520 should correspond to each other.
  • the fixing pin 530 is inserted through the height adjusting hole 521 and the fixing hole 511 so that the length of the entire supporter 500 is fixed.
  • the candle is also gradually digested.
  • the fire cap 400 is lowered again to allow the first fire cover 420 to cover the candle and resume self-power generation.
  • the cooling means may be further provided to further increase the cooling efficiency of the heat sink of the self-powered device using the above-described candles.
  • thermoelectric element for electricity production increases the efficiency of electricity production as the temperature difference increases. If there is a limit in raising the temperature of the candle, which is a heat source, the cooling means is installed on the heat sink to increase the cooling efficiency of the heat sink to increase the temperature difference of the thermoelectric element. You can increase the efficiency.
  • a self-powered apparatus provided with such cooling means is presented as a second embodiment of the present invention, and will be described with reference to FIGS. 8 to 11.
  • the cooling means 600 is installed between the heat sink 330 and the head part 200, and generates a power motor 610, a fan 620, and a wind direction guide 630. It is configured to include.
  • the fan 620 is rotated by the power of the motor 610 to discharge the heat of the thermoelectric element 310, and serves to suck the outside air into the heat sink (330).
  • the fan 620 includes a discharge fan 621 and a suction fan 622.
  • the discharge fan 621 serves to discharge heat collected by the heat absorbing plate 320 to the outside as described above, and is coupled to the shaft of the motor 610.
  • the discharge fan 621 is installed at a position corresponding to the heat absorbing plate 320 installed in the inner space of the heat sink 330, the blade direction of the discharge fan 621 is the heat absorbing plate 320 when the motor 610 power is generated. It is formed to discharge the heat collected in the outside.
  • the suction fan 622 is installed at a position corresponding to the heat sink 330, and the wing direction of the suction fan 622 is formed to allow the outside air to be sucked into the heat sink 330 when power of the motor 610 is generated.
  • the suction fan 622 is integrally formed at both sides of the discharge fan 621, and its wings are formed opposite to the wing direction of the discharge fan 621.
  • the partition 623 is preferably installed between the discharge fan 621 and the suction fan 622.
  • the partition 623 serves to partition the warmth of the heat absorbing plate 320 discharged from the outside air sucked in.
  • the partition wall 623 may be formed higher than the height of the discharge fan 621 and the suction fan 622.
  • the wind direction guide 630 fixes the fan 620 to the heat sink 330, and serves to guide the warm air discharged and the outside air sucked in.
  • the wind direction guide 630 is preferably screwed to the heat sink 330, the assembly means is not particularly limited.
  • the wind direction guide 630 forms discharge holes 631 corresponding to the discharge fan 621 and suction holes 632 corresponding to the suction fan 622.
  • the warmth of the heat absorbing plate 320 to collect the heat of the candle is quickly discharged to the outside, the outside air is sucked into the heat sink 330, so that the thermoelectric element 310 The temperature difference can be maximized.
  • thermoelectric element can be increased, thereby increasing the efficiency of electricity production.
  • the configuration for adjusting the height of the support may be provided in various ways.
  • a plurality of height adjustment holes 521 are formed in the height direction in the first support 510, and fixing holes 511 in the second support 520. ) Is formed.
  • a restraining pin 540 for restraining the first support 510 is installed in the second support 520, and the restraining pin 540 is provided in a multi-stage bent form.
  • One end of the restraint pin 540 is provided to be fitted into the fixing hole 511, the movement distance of the restraint pin 540 is secured between the other end of the restraint pin 540 and the second support 520. A predetermined distance is formed so that it can be.
  • the restraint pin 540 flows by a distance spaced between the other end of the restraint pin 540 and the second support 520, and as shown in FIG. 13, to one end of the restraint pin 540. This will allow the height adjustment hole 521 of the first support 510 and the fixing hole 511 of the second support 520 to enter and exit.
  • the height of the first support 510 in the second support 520 can be adjusted.
  • a plurality of locking grooves 512 are formed in the height direction in the first support 510, and the locking groove is formed in the second support 520.
  • a ball plunger 522 is caught and supported by 512.
  • the process of adjusting the height of the first support 510 in the second support 520 can be made more flexible and simple.
  • the spring of the ball plunger 522 may expand and contract the ball into the plurality of locking grooves 512. Height adjustment of the support 510 can be made automatically.
  • the height adjustment of the support to compensate for the distance from the power generation unit while the candle is burning, it may be configured to easily adjust the distance between the candle and the power generation unit using an elastic member instead of the height adjustment of the support. .
  • a case 120 into which a candle is inserted is provided, and a seating groove 121 corresponding to the diameter of the candle is provided in the case 120.
  • the seating groove 121 is provided with an elastic member 130 for elastically supporting the candle, the elastic member 130 is preferably provided as a spring.
  • the elastic member 130 is not necessarily provided as a spring.
  • the position of the candle may be maintained at a constant distance from the power generation unit 300 by the restoring force of the elastic member 130. .
  • the elastic member 130 is restored while maintaining the distance from the power generation unit 300 while raising the candle as much as the weight of the candle is reduced.
  • the candle may not only be variable in position by the elastic force of the elastic member 130, but also adjust the overall length of the support (510, 520) by inserting the first support (510) inside the second support (520). You can also change the position of the candle as the sun goes down.
  • the temperature difference on the power generation unit 300 is maximized.
  • a heat conductor 340 may be further provided on the heat absorbing plate 320 and the heat sink 330 to maximize the Seebeck effect.
  • the heat generator 340 is provided on the heat absorbing plate 320 and the heat dissipation plate 330 provided on the upper portion of the power generation unit 300. ) Is installed.
  • the thermal conductor 340 serves to further increase the temperature of the heat absorbing plate 320, and further increases the heat radiating effect of the heat sink 330.
  • the heat conductor 340 installed on the heat absorbing plate 320 includes a heat transfer fluid.
  • the heat conductor 340 installed on the heat absorbing plate 320 is made of a pipe shape in which the fruit oil is accommodated.
  • thermoelectric element 310 can be further increased.
  • the heat conduction plate 330 is also provided with a heat conductor 340 to increase the heat dissipation effect.
  • the heat conductor 340 installed on the heat sink 330 accommodates refrigerant oil instead of fruit oil.
  • the refrigerant oil increases the cooling efficiency of the heat sink 330, and maximizes the cooling efficiency of the heat sink 330 together with the cooling means 600 provided above the heat sink 330.
  • the heat conductor 340 installed on the heat sink 330 does not protrude outward from the spiral to avoid interference with the cooling means 600 above.
  • the thermal conductor 340 is installed between the heat radiation fins constituting the heat sink 330.
  • an insertion groove is formed between the heat dissipation fins so as to avoid interference with the heat conductor 340 and to allow the heat conductor 340 to be fitted.
  • thermoelectric element 310 occurs even more. Electricity production efficiency can be maximized.
  • the self-power generation apparatus using the candle according to the present invention has a technical feature that the heat energy is collected and delivered to the power generation unit through a fire extinguishing cap of the expansion type, the candle digestion through a fire extinguishing cap.
  • thermoelectric element there is a technical feature that can maximize the temperature difference of the thermoelectric element by providing a cooling means on the heat sink.
  • lifting means 411 coupling portion
  • thread portion 413 elastic member (wrinkle tube)
  • first fire cover 421 fixed flange
  • first through hole 430 second fire cover
  • support 510 first support

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)

Abstract

The present invention relates to a self-powered generator using a candle and, more particularly, to a self-powered generator using a candle, the self-powered generator being capable of effectively transmitting the thermal energy of a candle to a power generation unit by providing a pair of fire extinguishing caps having the shape of a tube expanded toward the candle, and capable of easily extinguishing, through the opening and closing of a through-hole formed in the fire extinguishing cap, the flame of the candle arranged in the fire extinguishing cap. To this end, provided is a self-powered generator using a candle, comprising: a candle arranged on a base; a power generation unit provided on the candle and converting thermal energy, generated while the candle is ignited, into electric energy; and a fire extinguishing cap provided between the power generation unit and the candle, laying over the candle, and having the shape of a tube expanded toward the candle, wherein the fire extinguishing cap is provided in a state in which a pair of fire extinguishing covers having through-holes corresponding to each other overlap each other, and is rotatably provided such that the through-holes are matched to each other or shielded from each other.

Description

양초를 이용한 자가발전장치 Self-powered device using candles
본 발명은 양초를 이용한 자가발전장치에 관한 것으로서, 더욱 상세하게는 양초를 향해 확관 형태를 갖는 한 쌍의 소화캡을 통해 열에너지의 효율적인 전달과 양초 소화의 편의성을 높인 양초를 이용한 자가발전장치에 관한 것이다.The present invention relates to a self-powered device using a candle, and more particularly, to a self-powered device using a candle that enhances the efficiency of efficient heat transfer and extinguish the candle through a pair of fire extinguishing cap toward the candle. will be.
일반적으로 양초(candle)는 파라핀 왁스, 밀랍 등과 같이 적당한 온도에서 녹는 가연성 고체를 원통형 등 일정 형상으로 성형하고, 그 중심부에 무명 등의 심지를 삽입한 등화용 기구를 말한다.In general, a candle (candle) refers to a lighting device for molding a flammable solid, such as paraffin wax, beeswax, at a suitable temperature into a certain shape such as a cylindrical shape and inserting a wick such as cotton in the center thereof.
이와 같은 양초는 심지에 불을 붙이면 열로 인하여 몸체를 이루는 가연성 고체가 녹기 시작한다.When such a candle ignites the wick, the combustible solids that form the body begin to melt due to heat.
이때, 녹은 가연성 고체 용융물은 모세관 작용에 의하여 심지를 타고 오르게 되며, 심지의 끝으로 이동한 가연성 고체 용융물은 열로 인해 기화하게 된다.At this time, the molten flammable solid melt is riding up the wick by capillary action, and the combustible solid melt moved to the end of the wick is vaporized due to heat.
이때, 기화된 용융물은 대기 중의 산소와 결합하여 발열 화학반응을 일으키면서 열과 빛을 발생하게 된다.At this time, the evaporated melt combines with oxygen in the atmosphere to generate an exothermic chemical reaction to generate heat and light.
이와 같은 양초는 심지가 타 들어감에 따라서 용융물의 기화시마다 특유의 파라핀 왁스 등으로부터 발산되는 냄새를 가지게 된다.As the wick burns, such a candle has a smell emitted from paraffin wax or the like which is peculiar every time the vaporization of the melt.
이러한 양초 기화시 발생되는 냄새는 불쾌감을 유발할 수 있으므로, 이러한 단점을 보완하거나 아예 심리치료 등의 목적으로, 최근에는 소정의 향신료를 양초의 겉면이나 가연성 고체에 혼합하여 제조함으로써 양초가 타들어가면서 소정의 향이 발산되도록 한 향초도 개발되었다.Since the smell generated during the vaporization of the candle may cause discomfort, for the purpose of compensating for such disadvantages or at all for the purpose of psychotherapy, in recent years, a predetermined spice is mixed with the outer surface of the candle or a flammable solid to prepare the candle as it burns. A scented candle was also developed to allow the fragrance to emanate.
즉, 최근 개발되는 향초는 인공적인 향을 내는 아로마(aroma) 오일이나 젤 타입 방식으로 되어 있거나, 천연향을 이용하면서도 소지에 간편한 고체 형태의 향초가 개발되어 있는 상태이다.In other words, the recently developed scented candle is an artificial aroma (aroma) oil or gel type method, or a solid scented candle has been developed using a natural fragrance, yet easy to possess.
한편, 최근에는 전술한 양초(향초)의 열을 에너지원으로 하여 자가 발전이 이루어질 수 있도록 한 자가발전 장치가 개발되어 있는 실정이다.On the other hand, in recent years, the situation has been developed a self-powering device that allows the self-power generation using the heat of the above-described candles (scented candles) as an energy source.
즉, 양초가 연소되는 동안 발생하는 불꽃의 열을 열전소자에 전달하여 전기에너지를 얻도록 하고, 그 전기에너지를 다양한 전력원으로 사용될 수 있도록 한 것이다.In other words, the heat of the flame generated during the burning of the candle is transferred to the thermoelectric element to obtain electrical energy, and the electrical energy can be used as various power sources.
이와 같은 자가발전장치는 전력 공급이 원활하지 못한 개발도상국의 각 가정 광원 에너지원으로 사용될 수 있을뿐만 아니라, 장식용 광원, 전자기기 충전용 등 소용량 전력의 에너지원으로 사용될 수 있다.Such a self-powered device may not only be used as an energy source for each home light source in a developing country in which power supply is not smooth, but may also be used as an energy source of small capacity power, such as a decorative light source or a charging device for electronic devices.
이하, 첨부된 도 1을 참조하여 종래 기술에 따른 양초를 이용한 자가발전장치에 대하여 간략하게 살펴보도록 한다.Hereinafter, a self-powered apparatus using a candle according to the related art will be briefly described with reference to FIG. 1.
종래 기술에 따른 양초를 이용한 자가발전장치는 하우징(10), 흡열판(20), 방열판(30), 열전소자(40), 조명부(50) 및 제어부(60)를 포함한다.Self-powered device using a candle according to the prior art includes a housing 10, the heat absorbing plate 20, the heat sink 30, the thermoelectric element 40, the lighting unit 50 and the control unit 60.
하우징(10)의 개폐부(11) 개방을 통해, 하우징(10) 내부에 양초가 배치되고 그 양초의 상방에는 양초의 열을 전달받아 흡열판(20)의 접촉면과 방열판(30)의 접촉면 간에 온도차를 이용하여 열기전력을 생산하는 열전소자(40)가 설치된다.Through opening and closing of the opening and closing part 11 of the housing 10, a candle is disposed inside the housing 10 and the temperature difference between the contact surface of the heat absorbing plate 20 and the contact surface of the heat sink 30 receives heat of the candle above the candle. By using the thermoelectric element 40 to produce a thermoelectric power is installed.
이때, 양초는 가열성 고체가 타들어가면서 열전소자(40)와의 거리가 멀어질 수 있는데, 거리측정센서(12)는 이를 감지하여 모터(미도시) 동력을 이용해 이동부(13)를 상승시킴으로써 양초와 열전소자(40) 간에 거리는 일정하게 유지될 수 있어 전기생산이 효과적으로 이루어질 수 있게 된다.At this time, the candle may be away from the thermoelectric element 40 as the heating solid burns, the distance measuring sensor 12 detects this and raises the moving part 13 by using a motor (not shown) power. And the distance between the thermoelectric element 40 can be kept constant so that the electricity production can be made effectively.
하지만, 상기한 종래 기술에 따른 양초를 이용한 자가발전장치는 다음과 같은 문제가 있었다.However, the self-powered device using a candle according to the prior art has the following problems.
첫째, 하우징(10)이 마련되고 그 하우징(10)의 내부에 양초가 배치됨으로써, 양초에 대한 점화 및 소화 작업이 매우 번거로운 문제가 있었다.First, the housing 10 is provided and the candle is disposed inside the housing 10, there was a problem that the ignition and extinguishing work for the candle is very cumbersome.
즉, 개폐부(11)를 여닫아야 하는 번거로움이 야기되는 문제가 있었던 것이다.That is, there is a problem that the hassle to open and close the opening and closing part 11 is caused.
특히, 양초 소화시 하우징(10) 내부를 개방하여 양초 불꽃에 바람을 작용시켜야 함으로써, 양초 소화에 대한 번거로움이 발생하였던 것이다.In particular, when the fire extinguishing the candle (10) to open the interior to act on the flame of the candle, the hassle for the fire extinguishing.
둘째, 양초의 불꽃과 열전소자(40)에 대한 일정 거리 유리를 위해, 거리측정센서(12) 및 모터 등의 전기 에너지가 소모됨으로써, 자가 발전의 기술적 사상이 퇴색되는 문제가 있었다.Second, for a certain distance glass for the flame of the candle and the thermoelectric element 40, the electrical energy of the distance measuring sensor 12 and the motor is consumed, there is a problem that the technical idea of self-power generation is faded.
즉, 양초 열을 이용한 자가발전 용량이 소용량임을 감안할 때, 모터 등을 이용한 부품 동작이 이루어질 경우 자가발전의 효율성이 떨어지는 문제가 있었던 것이다.That is, considering that the self-generation capacity using the candle heat is a small capacity, there was a problem that the efficiency of self-generation is lowered when the operation of the parts using a motor or the like is made.
[선행기술문헌][Preceding technical literature]
[특허문헌][Patent Documents]
(특허문헌 1) 대한민국 등록번호 제10-1544707호(Patent Document 1) Republic of Korea Registration No. 10-1544707
본 발명은 상기한 문제점을 해결하기 위하여 안출된 것으로서, 본 발명의 목적은 양초의 열에너지를 전기에너지로 바꾸어 다용도의 전력원으로 활용될 수 있도록 하되, 양초와 열전소자간 거리 조절이 수동으로 이루어질 수 있도록 하고 양초 점화 및 소화 작업의 편의성을 높인 양초를 이용한 자가발전장치를 제공하고자 한 것이다. The present invention has been made to solve the above problems, the object of the present invention is to convert the heat energy of the candle into electrical energy to be utilized as a multi-purpose power source, the distance between the candle and the thermoelectric element can be made manually It is to provide a self-powered device using a candle to increase the convenience of candle ignition and extinguishing work.
본 발명의 다른 목적은 발전부를 구성하는 방열판에 토출팬 및 흡입팬이 일체로 구성된 냉각수단을 마련하여 방열판의 냉각효율을 높임으로써, 열전소자의 전기 생산 효율성을 높인 양초를 이용한 자가발전장치를 제공하고자 한 것이다. Another object of the present invention is to provide a self-powered device using a candle that increases the efficiency of electricity production of the thermoelectric element by increasing the cooling efficiency of the heat sink by providing a cooling means composed of a discharge fan and a suction fan integrally on the heat sink constituting the power generation unit. It would be.
본 발명은 상기한 목적을 달성하기 위하여, 베이스에 배치된 양초;상기 양초 위에 설치되며, 양초가 점화되면서 발생하는 열에너지를 전기에너지로 변화시키는 발전부;상기 발전부와 양초 사이에 설치되되 양초를 덮어 씌우며, 양초를 향해 확관의 형태를 갖는 소화캡:을 포함하여 구성되되, 상기 소화캡은, 서로 대응된 통공을 갖는 한 쌍의 소화커버가 중첩된 상태로 마련되어, 상호 간에 통공이 일치되거나 차폐될 수 있도록 회전되게 마련된 것을 특징으로 하는 양초를 이용한 자가발전장치를 제공한다.The present invention to achieve the above object, a candle disposed on the base; installed on the candle, the power generation unit for changing the heat energy generated by the ignition of the candle into electrical energy; installed between the power generation unit and the candle but Covered with a fire extinguishing cap having a form of expansion tube toward the candle: including, wherein the fire cap is provided with a pair of fire extinguishing cover having a through hole corresponding to each other, the through holes coincide with each other or It provides a self-powered device using a candle, characterized in that it is provided to rotate to be shielded.
이때, 상기 발전부는, 양초의 불꽃이 대응되는 내측 공간이 형성된 방열판과, 상기 방열판의 내측공간에 배치된 흡열판과, 상기 흡열판의 양측과 방열판 사이에 개재된 열전소자를 포함하고, 상기 방열판 상부에는 흡열판에 집열된 열을 토출시키는 토출팬과, 토출팬의 양측에 설치되며 외기를 방열판으로 흡입하는 흡입팬을 포함하는 냉각수단이 더 설치된 것이 바람직하다.In this case, the power generation unit includes a heat sink having an inner space corresponding to the flame of the candle, a heat absorbing plate disposed in the inner space of the heat sink, and a thermoelectric element interposed between both sides of the heat absorbing plate and the heat sink, Preferably, the upper portion further includes a cooling fan including a discharge fan for discharging heat collected in the heat absorbing plate, and a suction fan installed at both sides of the discharge fan and sucking outside air into the heat sink.
본 발명에 따른 양초를 이용한 자가발전장치는 다음과 같은 효과가 있다.Self-powered device using a candle according to the present invention has the following effects.
첫째, 분리된 지지대의 길이 조절을 통해 양초와 열전소자간 거리 유지가 수작업으로 이루어짐으로써, 부품 동작을 위한 전기적 에너지 소모가 발생하지 않게 된다.First, by maintaining the distance between the candle and the thermoelectric element by manually adjusting the length of the separated support, the electrical energy consumption for the operation of the component does not occur.
이와 같이 자가 발전이 이루어지는 동안 소비되는 전력이 발생하지 않으므로, 자가 발전의 효율성을 높일 수 있는 효과가 있다.As such, since the power consumed during the self-power generation does not occur, there is an effect that can increase the efficiency of self-power generation.
둘째, 양초를 향해 확관의 형태를 갖는 소화캡이 제공됨으로써, 발전부로의 열에너지 전달이 효과적으로 이루어질 수 있게 된다.Second, by providing a fire extinguishing cap having a form of expansion pipe toward the candle, it is possible to effectively transfer the heat energy to the power generation unit.
즉, 양초측으로부터 발전부를 향해 관로가 점점 좁게 형성됨에 따라, 발전부로의 열에너지 전달이 효과적으로 이루어질 수 있는 것이다.That is, as the pipe is gradually narrowed from the candle side toward the power generation unit, heat energy transfer to the power generation unit can be effectively performed.
셋째, 소화캡이 복수의 통공이 중첩된 한 쌍의 소화커버로 마련됨에 따라, 양초 소화 작업이 간편하게 이루어질 수 있는 효과가 있다.Third, as the fire extinguishing cap is provided with a pair of fire extinguishing cover with a plurality of through holes overlapped, there is an effect that the candle can be easily extinguished.
즉, 소화커버의 회전을 통해 통공의 개폐가 조절됨에 따라, 소화캡 내부로의 산소유입량을 제어하여 양초를 간편하게 소화시킬 수 있는 것이다.That is, as the opening and closing of the through hole is controlled through the rotation of the fire extinguishing cover, it is possible to easily extinguish the candle by controlling the amount of oxygen flow into the fire cap.
넷째, 소화캡이 발전부에서 승강될 수 있도록 마련됨으로써, 양초의 높이에 용이하게 대응할 수 있는 효과가 있다.Fourth, since the fire cap is provided to be elevated in the power generation unit, there is an effect that can easily correspond to the height of the candle.
즉, 양초의 높이에 따라 소화커버의 위치가 조절될 수 있으므로, 양초의 높이에 관계없이 소화커버의 위치를 최적화할 수 있는 효과가 있다.That is, since the position of the fire extinguishing cover can be adjusted according to the height of the candle, there is an effect of optimizing the position of the fire extinguishing cover regardless of the height of the candle.
특히, 베이스에 양초를 올려놓는 과정에서 양초와 소화커버 간에 간섭을 피할 수 있는 효과가 있다.In particular, there is an effect to avoid interference between the candle and the fire cover in the process of placing the candle on the base.
다섯째, 방열판에 냉각수단이 더 설치됨으로써, 방열판의 냉각효율을 높일 수 있는 효과가 있다.Fifth, the cooling means is further installed on the heat sink, there is an effect that can increase the cooling efficiency of the heat sink.
상기 냉각수단은 열전소자의 열을 토출시키는 토출팬과, 방열판에 외기를 흡입시키는 흡입팬으로 구성됨으로써 방열판의 냉각효율을 극대화시킬 수 있는 것이다.The cooling means may maximize the cooling efficiency of the heat sink by being composed of a discharge fan for discharging the heat of the thermoelectric element, and a suction fan for sucking the outside air in the heat sink.
이에 따라, 열전소자의 온도차를 극대화시킬 수 있으므로, 열전소자를 통한 전기생산의 효율성을 높일 수 있게 된다.Accordingly, it is possible to maximize the temperature difference of the thermoelectric element, it is possible to increase the efficiency of electricity production through the thermoelectric element.
도 1은 종래 기술에 따른 양초를 이용한 자가발전장치를 나타낸 단면도1 is a cross-sectional view showing a self-powered device using a candle according to the prior art
도 2는 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치를 나타낸 사시도2 is a perspective view showing a self-powered device using a candle according to the first embodiment of the present invention
도 3은 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치를 나타낸 분해 사시도3 is an exploded perspective view showing a self-powered device using a candle according to the first embodiment of the present invention
도 4는 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치의 소화캡을 나타낸 분해사시도Figure 4 is an exploded perspective view showing a fire cap of the self-powered device using a candle according to the first embodiment of the present invention
도 5는 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치를 나타낸 단면도5 is a cross-sectional view showing a self-powered device using a candle according to a first embodiment of the present invention
도 6은 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치의 승강수단 다른 예를 나타낸 정면도Figure 6 is a front view showing another example of the lifting means of the self-powered device using a candle according to the first embodiment of the present invention
도 7a는 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치의 소화캡 통공이 개방된 상태를 나타낸 사시도Figure 7a is a perspective view showing an open state of the fire extinguishing cap of the self-powered device using a candle according to the first embodiment of the present invention
도 7b는 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치의 소화캡 통공이 폐쇄된 상태를 나타낸 사시도Figure 7b is a perspective view showing a closed state of the digestion cap hole of the self-powered device using a candle according to the first embodiment of the present invention
도 8은 본 발명의 제2실시예에 따른 양초를 이용한 자가발전장치를 나타낸 정면도8 is a front view showing a self-powered device using a candle according to a second embodiment of the present invention
도 9는 본 발명의 제2실시예에 따른 양초를 이용한 자가발전장치의 냉각수단이 방열판에 설치된 상태를 나타낸 평면도9 is a plan view showing a state in which the cooling means of the self-powered device using a candle according to a second embodiment of the present invention installed on a heat sink;
도 10은 본 발명의 제2실시예에 따른 양초를 이용한 자가발전장치의 냉각수단을 나타낸 단면도10 is a cross-sectional view showing a cooling means of a self-powered device using a candle according to a second embodiment of the present invention.
도 11은 본 발명의 제2실시예에 따른 양초를 이용한 자가발전장치의 냉각수단에 풍향 가이드가 설치된 상태를 나타낸 평면도11 is a plan view showing a state in which the wind direction guide is installed in the cooling means of the self-powered device using a candle according to a second embodiment of the present invention
도 12는 본 발명의 제3실시예에 따른 양초를 이용한 자가발전장치의 지지대를 나타낸 요부 분해 사시도12 is an exploded perspective view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention;
도 13은 본 발명의 제3실시예에 따른 양초를 이용한 자가발전장치의 지지대를 나타낸 요부 횡단면도13 is a cross-sectional view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention.
도 14는 본 발명의 제3실시예에 따른 양초를 이용한 자가발전장치의 지지대를 나타낸 요부 분해 사시도14 is an exploded perspective view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention;
도 15는 본 발명의 제3실시예에 따른 양초를 이용한 자가발전장치의 지지대를 나타낸 요부 횡단면도15 is a cross-sectional view showing main parts of a support of a self-powered apparatus using candles according to a third embodiment of the present invention.
도 16은 본 발명의 제4실시예에 따른 양초를 이용한 자가발전장치를 나타낸 단면도16 is a cross-sectional view showing a self-powered device using a candle according to a fourth embodiment of the present invention.
도 17은 본 발명의 제5실시예에 따른 양초를 이용한 자가발전장치의 발전부 요부만 나타낸 단면도17 is a cross-sectional view showing only the main part of the power generation unit of the self-powered device using a candle according to a fifth embodiment of the present invention.
도 18은 본 발명의 제5실시예에 따른 양초를 이용한 자가발전장치의 발전부에 있어서 방열판을 나타낸 평면도.18 is a plan view showing a heat sink in a power generation unit of a self-powered device using a candle according to a fifth embodiment of the present invention.
본 명세서 및 청구범위에 사용된 용어나 단어는 통상적이거나 사전적인 의미로 한정 해석되지 아니하며, 발명자는 그 자신의 발명을 가장 최선의 방법으로 설명하기 위해 용어의 개념을 적절하게 정의할 수 있다는 원칙에 입각하여 본 발명의 기술적 사상에 부합하는 의미와 개념으로 해석되어야만 한다.The terms or words used in this specification and claims are not to be construed as limiting in their usual or dictionary meanings, and the inventors may properly define the concept of terms in order to best explain their invention in the best way possible. It should be interpreted as meaning and concept corresponding to the technical idea of the present invention.
이하, 첨부된 도 2 내지 도 7b를 참조하여 본 발명의 제1실시예에 따른 양초를 이용한 자가발전장치(이하, '자가발전장치'라 함)에 대하여 설명하도록 한다.Hereinafter, a self-powered apparatus using a candle according to the first embodiment of the present invention (hereinafter, referred to as a "self-powered apparatus") will be described with reference to FIGS. 2 to 7B.
자가발전장치는 양초가 연소되는 동안 불꽃으로부터 발생한 열에너지를 전기에너지로 변환하되, 양초로의 산소 유입 조절을 통해 양초 소화 작업의 편의성을 높이고 각 부품 동작이 수동으로 이루어질 수 있도록 한 기술적 특징이 있다.The self-power generation device converts the heat energy generated from the flame into electrical energy while the candle is burned, but has a technical feature to increase the convenience of candle extinguishing work by adjusting the oxygen inflow into the candle and to manually operate each part.
이에 따라, 양초 소화 작업의 편의성을 높일 수 있으며, 수동에 의한 부품 동작이 이루어지도록 함으로써, 자가발전이 이루어지는 동안 전력 소모가 발생하지 않으므로 자가 발전의 효율성을 높일 수 있게 된다.Accordingly, it is possible to increase the convenience of the candle fire extinguishing operation, and by performing the manual operation of the parts, it is possible to increase the efficiency of the self-generation since no power consumption occurs during the self-generation.
자가발전장치는 도 2 및 도 3에 도시된 바와 같이, 베이스(100)와, 헤드부(200)와, 발전부(300)와, 소화캡(400)을 포함하여 구성된다.As shown in FIGS. 2 and 3, the self-generating device includes a base 100, a head part 200, a power generation part 300, and a fire extinguishing cap 400.
베이스(100)는 자가발전장치의 하부를 구성하며, 지면에 지지되는 구성이다.The base 100 constitutes a lower portion of the self-generating device and is supported on the ground.
베이스(100)는 평평한 저면을 갖도록 형성되며, 그의 형태는 특정한 모양으로 한정되지 않는다. Base 100 is formed to have a flat bottom, its shape is not limited to a particular shape.
베이스(100)의 중앙에는 양초가 고정되기 위한 고정홈(110)이 형성된다.In the center of the base 100, a fixing groove 110 for fixing the candle is formed.
이때, 양초라 함은 연소되면서 빛만 발광하는 일반양초와, 향을 발산하는 향초를 모두 의미한다.In this case, the candle refers to both a general candle that emits only light while burning, and a candle that emits incense.
한편, 베이스(100)에는 발전부(300)로부터 생산된 전력을 이용할 수 있는 충전단자가 마련됨이 바람직하다.On the other hand, the base 100 is preferably provided with a charging terminal that can use the power generated from the power generation unit 300.
이때, 발전부를 통해 생산되는 발전량은 5W정도로서, 소용량임을 감안할 때 충전단자를 통해 충전하여 사용할 수 있는 전자기기의 종류는 한정될 수밖에 없음은 이해 가능하다.At this time, the amount of power generated through the power generation unit is about 5W, considering the small capacity, it can be understood that the type of electronic devices that can be charged and used through the charging terminal is limited.
다음으로, 헤드부(200)는 자가발전장치의 상부를 구성하며, 그의 내부에는 광원이 설치됨이 바람직하다.Next, the head portion 200 constitutes an upper portion of the self-generating device, the light source is preferably installed inside.
광원은 발전부(300)에서 생산된 열기전력을 이용하여 광을 발광하는 역할을 수행한다. The light source serves to emit light using the thermoelectric power produced by the power generation unit 300.
광원은 광효율이 높은 발광다이오드(LED)를 사용하는 것이 바람하나, 광효율이 높은 다양한 광원이 사용될 수 있다.As a light source, it is preferable to use a light emitting diode (LED) having high light efficiency, but various light sources having high light efficiency may be used.
상기 헤드부(200)는 후술하는 발전부(300)의 방열판 위에 고정된다.The head 200 is fixed on the heat sink of the power generation unit 300 to be described later.
다음으로, 발전부(300)는 양초의 열에너지를 이용해 전기를 생산하는 구성이며, 헤드부(200)의 하부에 설치된다.Next, the power generation unit 300 is a configuration for producing electricity by using the heat energy of the candle, is installed in the lower portion of the head portion 200.
발전부(300)는 양단의 온도차에 의해 기전력이 발생하는 현상인 제베크(Thomas johann seebeck) 효과에 의해 전기를 발전하는 열전소자(310)를 이용하는 것으로, 흡열판(320)과의 접촉면과 방열판(330)과의 접촉면 간에 온도차를 이용하여 열기전력을 발생시킨다.The power generation unit 300 uses a thermoelectric element 310 that generates electricity by an effect of Thomas johann seebeck, which is a phenomenon in which electromotive force is generated due to a temperature difference between both ends, and a contact surface and a heat sink of the heat absorbing plate 320 are used. Thermoelectric power is generated by using a temperature difference between the contact surfaces with 330.
즉, 열전소자(310)의 일측은 흡열판(320)과 면접촉하여 흡열판(320)에 흡열된 열을 전달받아 고온으로 가열될 수 있으며, 열전소자(310)의 타측은 방열판(330)과 면접촉하여 방열판(330)으로 열을 전달함으로써, 저온으로 냉각될 수 있는바, 이러한, 열전소자(310)의 일측과 타측은 온도차가 발생하고, 상기열전소자(310)는 제베크 효과를 통해 열기전력을 발생시켜 전기를 생산할 수 있는 것이다.That is, one side of the thermoelectric element 310 may be heated in high temperature by receiving heat absorbed by the heat absorbing plate 320 by surface contact with the heat absorbing plate 320, and the other side of the thermoelectric element 310 may be a heat sink 330. By transmitting heat to the heat sink 330 in contact with the surface, it can be cooled to low temperatures, such a temperature difference occurs on one side and the other side of the thermoelectric element 310, the thermoelectric element 310 has a Seebeck effect By generating thermoelectric power through it can produce electricity.
한편, 상기 발전부(300)는 지지대(500)를 통해 베이스(100)에 설치된다.On the other hand, the power generation unit 300 is installed on the base 100 through the support (500).
지지대(500)는 도 2에 도시된 바와 같이 발전부(300)와 지지대(500) 사이에 설치되며, 길이조절이 이루어질 수 있도록 구성된 기술적 특징을 갖는다. Support 500 is installed between the power generation unit 300 and the support 500 as shown in Figure 2, and has a technical feature configured to be made to adjust the length.
즉, 양초가 연소됨에 따라 양초의 불꽃 위치는 하강되므로, 발전부(300)의 위치도 양초의 불꽃을 따라 하강되어야 하는바, 지지대(500)의 길이 조절을 통해 발전부(300)와 양초 사이에 간격을 유지시켜주기 위한 것이다.That is, since the flame position of the candle is lowered as the candle is burned, the position of the power generation unit 300 should also be lowered along the flame of the candle, between the power generation unit 300 and the candle by adjusting the length of the support 500. This is to keep the space between them.
지지대(500)는 도 3에 도시된 바와 같이 제1지지대(510)와 제2지지대(520)로 구성된다.The support 500 is composed of a first support 510 and a second support 520 as shown in FIG.
제1지지대(510)는 발전부(300)를 구성하는 방열판(330)의 양측으로부터 하방을 향해 연장되며, 그의 단부에는 고정공(511)이 형성된다.The first support 510 extends downward from both sides of the heat sink 330 constituting the power generation unit 300, and a fixing hole 511 is formed at an end thereof.
그리고, 제2지지대(520)는 베이스(100)로부터 상방을 향해 설치되며, 제1지지대(510)가 내부로 삽입될 수 있도록 삽입홈(521)을 형성한다.The second support 520 is installed upward from the base 100 and forms an insertion groove 521 to allow the first support 510 to be inserted therein.
이때, 제2지지대(520)에는 높이 방향으로 복수의 높이조절공(521)이 형성된다.At this time, the second support 520 is formed with a plurality of height adjustment holes 521 in the height direction.
상기 높이조절공(521)은 고정공(511)에 대응되며, 고정공(511)이 대응되는 위치에 따라 지지대(500) 전체의 길이가 조절된다.The height adjusting hole 521 corresponds to the fixing hole 511, the length of the entire support 500 is adjusted according to the position corresponding to the fixing hole 511.
이때, 지지대(500)의 길이를 구속하기 위한 고정핀(530)이 마련된다.At this time, the fixing pin 530 for restraining the length of the support 500 is provided.
즉, 고정핀(530)이 제2지지대(520)의 높이조절공(521) 및 제1지지대(510)의 고정공(511)을 통과함으로써, 지지대(500)는 그 상태의 길이를 유지할 수 있는 것이다.That is, the fixing pin 530 passes through the height adjusting hole 521 of the second support 520 and the fixing hole 511 of the first support 510, so that the support 500 can maintain the length of the state. It is.
이를 통해 알 수 있듯이, 양초와 발전부(300)간에 거리 조절은 지지대(500)의 길이 조절을 통한 수작업으로 이루어지게 되므로, 전기적 에너지 소모가 전혀 발생하지 않게 된다.As can be seen through this, the distance between the candle and the power generation unit 300 is made by hand by adjusting the length of the support 500, so that no electrical energy consumption occurs.
이에 따라, 자가발전에 대한 효율성을 높일 수 있게 된다.Accordingly, it is possible to increase the efficiency for self-power generation.
다음으로, 소화캡(400)은 양초의 열에너지를 모아 발전부(300)에 효율적으로 전달하는 역할과 더불어, 양초를 간편하게 소화시키는 역할을 한다.Next, the digestion cap 400 collects the heat energy of the candle and efficiently serves the power generation unit 300, and serves to easily extinguish the candle.
소화캡(400)은 발전부(300)의 하부에 결합되며, 양초를 향해 확관의 형태를 갖도록 형성된다. Digestion cap 400 is coupled to the lower portion of the power generation unit 300, is formed to have a form of expansion toward the candle.
소화캡(400)은 발전부(300)를 기준으로 승강될 수 있도록 구성된다. Fire extinguishing cap 400 is configured to be elevated based on the power generation unit (300).
소화캡(400)은 승강수단(410)을 통해 승강될 수 있도록 구성되며, 도 4에 도시된 바와 같이 한 쌍으로 구성된다. Fire extinguishing cap 400 is configured to be elevated through the lifting means 410, as shown in Figure 4 is composed of a pair.
설명의 편의상, 한 쌍의 소화캡(400)은 제1소화커버(420)와 제2소화커버(430)라 하기로 한다.For convenience of description, a pair of fire extinguishing caps 400 will be referred to as a first fire extinguishing cover 420 and a second fire extinguishing cover 430.
제1소화커버(420)는 승강수단(410)을 통해 발전부(300)의 하부에 결합되며, 고정플랜지(421)를 포함한다.The first fire extinguishing cover 420 is coupled to the lower portion of the power generation unit 300 through the lifting means 410, and includes a fixed flange 421.
상기 승강수단(410)은 발전부(300)의 하부에 설치된 결합부(411)와 제1소화커버(420)에 마련된 나사부(412)로 구성된다.The elevating means 410 is composed of a coupling portion 411 installed on the lower portion of the power generation unit 300 and a screw portion 412 provided on the first fire cover (420).
이때, 결합부(411)는 양초의 열에너지가 발전부(300)의 흡열판(320)에 전달될 수 있도록 중공(中空)의 관로 형태로 이루어지며, 수나사산을 형성한다.At this time, the coupling part 411 is made in the form of a hollow pipe so that the heat energy of the candle can be transferred to the heat absorbing plate 320 of the power generation unit 300, and forms a male thread.
그리고, 제1소화커버(420)의 나사부(412)는 결합부(411)와의 나사 결합을 위해 중공(中空)의 관로 형태로 이루어지며, 수나사산이 결합되기 위한 암나사산을 형성한다.In addition, the screw portion 412 of the first fire-extinguishing cover 420 is formed in the form of a hollow pipe for screwing the coupling portion 411, and forms a female screw thread for coupling the male screw thread.
이와 같이 제1소화커버(420)의 나사부(412)가 결합부(411)에 나사 결합됨으로써, 나사부(411)의 회전을 통해 나사산이 풀리거나 조여지면서 제1소화커버(420)는 승강될 수 있는 구성을 갖게 된다.As such, the threaded portion 412 of the first fire extinguishing cover 420 is screwed to the coupling portion 411, so that the first fire extinguishing cover 420 may be lifted or lowered while the thread is loosened or tightened through the rotation of the threaded portion 411. You have a configuration.
상기 고정플랜지(421)는 양초를 덮어씌우는 구성이며, 나사부(412)로부터 하방을 향해 방사상 형태로 이루어진다.The fixing flange 421 is configured to cover the candle, it is made radially downward from the screw portion 412.
이와 같이 고정플랜지(421)가 방사 형태로 이루어짐에 따라, 양초의 열에너지를 모아 발전부(300)로 전달할 수 있으므로, 발전 효율을 높일 수 있게 된다.As the fixed flange 421 is made in a radial manner as described above, the heat energy of the candle may be collected and transferred to the power generation unit 300, thereby increasing power generation efficiency.
이때, 고정플랜지(421)에는 복수의 통공이 형성되며, 이를 제1통공(421a)이라 한다.In this case, a plurality of through holes are formed in the fixed flange 421, which is referred to as a first through hole 421a.
제1통공(421a)은 제1소화커버(420) 내부의 양초에 원활한 산소 공급을 하기 위한 구성이다.The first through hole 421a is configured to supply oxygen smoothly to the candle inside the first fire cover 420.
그리고, 제2소화커버(430)는 제1소화커버(420)의 제1통공(421a)을 개폐시키는 역할을 하며, 제1소화커버(420)의 상부에 중첩된다.The second fire cover 430 serves to open and close the first through hole 421a of the first fire cover 420 and overlaps the upper portion of the first fire cover 420.
이때, 제2소화커버(430)는 제1소화커버(420)상에 단순히 안착된 상태이므로, 자유 회전이 가능한 상태이다.At this time, since the second fire cover 430 is simply seated on the first fire cover 420, it is free to rotate.
제2소화커버(430)는 제1소화커버(420)의 고정플랜지(421)에 대응되는 회전플랜지(431)를 포함하며, 그 회전플랜지(431)에는 제1통공(421a)에 대응되는 제2통공(431a)이 형성된다.The second fire extinguishing cover 430 includes a rotation flange 431 corresponding to the fixed flange 421 of the first fire cover 420, and the rotation flange 431 corresponds to the first through hole 421a. Two through holes 431a are formed.
이와 같은 구성에 의해, 제2소화커버(430)의 회전플랜지(431)는 제1소화커버(420)의 고정플랜지(421) 상에서 회전되면서 제1통공(421a)을 개방시키거나 폐쇄시키는 것이다. By such a configuration, the rotation flange 431 of the second fire cover 430 is to open or close the first through hole (421a) while being rotated on the fixed flange 421 of the first fire cover (420).
제1통공(421a)이 개방된 경우, 제1소화커버(420)의 내부로 산소 유입이 이루어질 수 있으므로 양초가 원활하게 연소될 수 있으며, 제1통공(421a)이 폐쇄된 경우 제1소화커버(420)의 내부로 산소 유입이 이루어지지 않게 되므로 양초는 서서히 소화되는 것이다.When the first through-hole 421a is open, since the oxygen can be introduced into the first fire cover 420, the candle can be burned smoothly, and when the first through-hole 421a is closed, the first fire cover Since the inflow of oxygen is not made to the inside of the 420, the candle is gradually digested.
한편, 상기 승강수단(410)은 소화캡(400)의 승강을 위한 구성으로서, 상기한 바와 같이 나사 결합을 통해 소화캡(400)의 승강을 구성할 수 있으며, 도 6에 도시된 바와 같이 신축부재(413)를 이용해 구성할 수도 있다.On the other hand, the lifting means 410 is a configuration for lifting the digestion cap 400, it is possible to configure the lifting of the fire extinguishing cap 400 through the screw coupling as described above, as shown in Figure 6 It can also be configured using the member 413.
상기 신축부재(413)는 임의로 힘을 가했을 때, 모양이 원래대로 복원되지 않는 특성의 재질로 구성됨이 바람직하다.The stretchable member 413 is preferably made of a material of a characteristic that the shape is not restored to its original state when a force is arbitrarily applied.
이는, 사용자가 발전부(300)의 위치를 수동으로 조절해야 하므로, 발전부(300)를 임의로 하강시켰을 때, 발전부(300)의 위치는 하강된 위치에 머무를 수 있어야 하는 것이다.This is because the user must manually adjust the position of the power generation unit 300, when the power generation unit 300 is arbitrarily lowered, the position of the power generation unit 300 should be able to stay in the lowered position.
이때, 신축부재(413)의 구성은 다양하게 적용될 수 있으며, 본 명세서에서는 주름관으로 마련됨이 바람직하다.At this time, the configuration of the elastic member 413 may be applied in various ways, it is preferable that the present invention is provided with a corrugated pipe.
상기 주름관(413)은 통상 '자바라'라 불리우는 신축부재로서 발전부(300)를 수동으로 용이하게 승강시킬 수 있는 수단인 것이다.The corrugated pipe 413 is a member that can easily lift the power generating unit 300 manually as an elastic member commonly referred to as 'Java'.
이하, 상기한 구성으로 이루어진 자가발전장치의 작용에 대하여 설명하도록 한다.Hereinafter, the operation of the self-generating device having the above configuration will be described.
양초를 베이스(100)의 고정홈(110)에 삽입시킨다.The candle is inserted into the fixing groove 110 of the base 100.
이때, 양초의 상단부가 소화캡(400)에 간섭될 경우, 제1소화커버(420)의 나사부(412)를 회전하여 소화캡(400)을 상승시키거나, 승강수단(410)이 주름관(413)인 경우 소화캡(400)만 들어올려 상승시킨다.At this time, when the upper end of the candle interferes with the fire cap 400, the screw 412 of the first fire cover 420 to raise the fire cap 400, or the lifting means 410 corrugated pipe 413 ) In the case of raising only the digestion cap (400).
이후, 양초의 심지에 점화한 후, 제1소화커버(420)의 나사부(412)를 회전하여 하강시키거나 승강수단(410)이 주름관인 경우 소화캡(400)을 당겨 고정플랜지(421)로 하여금 양초의 일부를 덮어씌운다.Then, after ignition on the wick of the candle, by rotating the screw 412 of the first fire cover 420 to lower or lower the lifting means 410 is a corrugated pipe pull the fire extinguishing cap 400 to the fixed flange 421 To cover part of the candle.
이때, 제1통공(421a)은 도 7a에 도시된 바와 같이, 제2통공(431a)과 일치되어 개방된 상태이어야 함은 이해 가능하다.In this case, as shown in FIG. 7A, it is understood that the first through hole 421a should be open in correspondence with the second through hole 431a.
이후, 양초가 연소되는 동안 양초의 열에너지는 나사부(412)와 결합부(411)의 관로를 통해 발전부(300)의 흡열판(320)에 전달되어 열전소자(310)를 가열하고, 방열판(330)을 통해 열전소자(310)의 열이 냉각됨으로써 온도차에 따른 제베크 효과에 의해 전기가 생산된다.Then, while the candle is burned, the heat energy of the candle is transmitted to the heat absorbing plate 320 of the power generation unit 300 through the pipe of the screw part 412 and the coupling part 411 to heat the thermoelectric element 310, and the heat sink ( As the heat of the thermoelectric element 310 is cooled through the 330, electricity is produced by the Seebeck effect according to the temperature difference.
도시되지는 않았지만, 상기와 같이 생산된 전기는 회로 구성을 통해 헤드부(200)의 광원을 발광시킬 수 있으며, 베이스(100)에 마련된 충전단자를 통해 전자기기에 전력을 공급할 수 있게 된다.Although not shown, the electricity produced as described above may emit a light source of the head 200 through a circuit configuration, and may supply power to the electronic device through a charging terminal provided in the base 100.
한편, 양초가 연소되면서 양초의 불꽃 위치는 하강이 되는데, 사용자는 양초의 불꽃이 발전부(300)로부터 멀어지지 않도록 발전부(300)와 양초 간에 간격을 일정하게 유지시킨다.On the other hand, as the candle is burned, the flame position of the candle is lowered, and the user keeps the interval between the power generation unit 300 and the candle constant so that the flame of the candle does not move away from the power generation unit 300.
이를 위해, 지지대(500)의 고정핀(530)을 분리하여 제1지지대(510)를 제2지지대(520)의 내부에 더 깊이 삽입시킨다.To this end, the fixing pin 530 of the support 500 is removed to insert the first support 510 deeper into the second support 520.
이에 따라, 지지대(500) 전체 길이는 줄게되어, 발전부(300)와 양초 간에 거리가 유지될 수 있게 된다.Accordingly, the entire length of the support 500 is reduced, so that the distance between the power generation unit 300 and the candle can be maintained.
이때 제1지지대(510)의 고정공(511)과 제2지지대(520)의 높이 조절공(521)은 서로 대응되어야 한다.At this time, the fixing hole 511 of the first support 510 and the height adjustment hole 521 of the second support 520 should correspond to each other.
이후, 고정핀(530)을 높이조절공(521)과 고정공(511)을 통과하여 삽입시킴으로써 지지대(500) 전체의 길이는 고정이 된다.Thereafter, the fixing pin 530 is inserted through the height adjusting hole 521 and the fixing hole 511 so that the length of the entire supporter 500 is fixed.
한편, 자가발전과정을 정지하기 위해서는, 양초를 소화시킨다.On the other hand, in order to stop the self-generation process, the candle is extinguished.
이를 위해 제2소화커버(430)의 회전플랜지(431)를 회전하여 도 7b에 도시된 바와 같이 제1통공(421a)을 폐쇄시킨다.To this end, the rotation flange 431 of the second fire cover 430 is rotated to close the first through hole 421a as shown in FIG. 7B.
이에 따라, 소화캡(400) 내부의 산소량은 점점 감소되므로, 양초 역시 서서히 소화된다.Accordingly, since the amount of oxygen in the digestion cap 400 is gradually reduced, the candle is also gradually digested.
이로써, 자가발전과정이 멈추게 된다.This stops the self-development process.
그리고, 자가발전을 재개시키기 위해서는, 제2소화커버(430)의 회전플랜지(431)를 회전하여 제1통공(421a)을 개방하고, 승강수단(410)을 이용해 소화캡(400)을 상승시켜 양초의 상부를 노출시킨다.Then, in order to resume self-power generation, by rotating the rotary flange 431 of the second fire extinguishing cover 430 to open the first through-hole (421a), by raising and lowering the fire extinguishing cap 400 using the lifting means 410 Expose the top of the candle.
즉, 결합부(411)와 나사부(412)의 회전 또는 주름관(413)을 수축하여 소화캡(400)의 위치를 상승시키는 것이다.That is, the rotation of the coupling portion 411 and the screw portion 412 or shrink the corrugated pipe 413 to raise the position of the fire cap (400).
다음으로, 양초를 점화한 후, 소화캡(400)을 다시 하강하여 제1소화커버(420)로 하여금 양초를 덮어씌운 후 자가발전을 재개한다.Next, after igniting the candle, the fire cap 400 is lowered again to allow the first fire cover 420 to cover the candle and resume self-power generation.
한편, 전술한 양초를 이용한 자가발전장치의 방열판에 대한 냉각효율을 더 높이기 위하여 냉각수단이 더 마련될 수 있다.On the other hand, the cooling means may be further provided to further increase the cooling efficiency of the heat sink of the self-powered device using the above-described candles.
전기생산을 위한 열전소자는 온도차가 클수록 전기 생산 효율이 높아지는바, 열원인 양초의 온도를 높이는 것에 한계가 있다면 냉각수단을 방열판에 설치하여 방열판의 냉각 효율을 높여 열전소자의 온도차를 높임으로써 전기생산 효율을 높일 수 있는 것이다.The thermoelectric element for electricity production increases the efficiency of electricity production as the temperature difference increases. If there is a limit in raising the temperature of the candle, which is a heat source, the cooling means is installed on the heat sink to increase the cooling efficiency of the heat sink to increase the temperature difference of the thermoelectric element. You can increase the efficiency.
이러한 냉각수단이 마련된 자가발전장치를 본 발명의 제2실시예로 제시하며, 첨부된 도 8 내지 도 11을 참조하여 설명하도록 한다.A self-powered apparatus provided with such cooling means is presented as a second embodiment of the present invention, and will be described with reference to FIGS. 8 to 11.
설명하기에 앞서 제1실시예와 동일한 구성에 대해서는 부호를 병기하면 상세한 설명은 생략하도록 한다.Prior to the description, the same components as in the first embodiment are denoted by the same reference numerals, and detailed description thereof will be omitted.
냉각수단(600)은 도 8에 도시된 바와 같이, 방열판(330)과 헤드부(200) 사이에 설치되며, 동력을 발생하는 모터(610)와, 팬(620)과, 풍향 가이드(630)를 포함하여 구성된다.As shown in FIG. 8, the cooling means 600 is installed between the heat sink 330 and the head part 200, and generates a power motor 610, a fan 620, and a wind direction guide 630. It is configured to include.
팬(620)은 모터(610)의 동력에 의해 회전되면서 열전소자(310)의 열을 토출시키고, 외기를 방열판(330)으로 흡입시키는 역할을 한다.The fan 620 is rotated by the power of the motor 610 to discharge the heat of the thermoelectric element 310, and serves to suck the outside air into the heat sink (330).
팬(620)은 토출팬(621)과 흡입팬(622)으로 구성된다.The fan 620 includes a discharge fan 621 and a suction fan 622.
토출팬(621)은 상기한 바와 같이 흡열판(320)으로 집진된 열을 외부로 토출시키는 역할을 하며, 모터(610)의 축에 결합된다.The discharge fan 621 serves to discharge heat collected by the heat absorbing plate 320 to the outside as described above, and is coupled to the shaft of the motor 610.
상기 토출팬(621)은 방열판(330)의 내측 공간에 설치된 흡열판(320)에 대응된 위치에 설치되며, 상기 토출팬(621)의 날개 방향은 모터(610) 동력 발생시 흡열판(320)에 집진된 열기를 외부로 토출시킬 수 있도록 형성된다.The discharge fan 621 is installed at a position corresponding to the heat absorbing plate 320 installed in the inner space of the heat sink 330, the blade direction of the discharge fan 621 is the heat absorbing plate 320 when the motor 610 power is generated. It is formed to discharge the heat collected in the outside.
그리고, 흡입팬(622)은 방열판(330)에 대응된 위치에 설치되며, 흡입팬(622)의 날개 방향은 모터(610) 동력 발생시 외기가 방열판(330)으로 흡입될 수 있도록 형성된다.In addition, the suction fan 622 is installed at a position corresponding to the heat sink 330, and the wing direction of the suction fan 622 is formed to allow the outside air to be sucked into the heat sink 330 when power of the motor 610 is generated.
이에 따라, 흡입팬(622)은 도 9 및 도 10에 도시된 바와 같이, 토출팬(621)의 양측에 일체로 형성되되 그의 날개는 토출팬(621)의 날개 방향과 반대로 형성된다.Accordingly, as shown in FIGS. 9 and 10, the suction fan 622 is integrally formed at both sides of the discharge fan 621, and its wings are formed opposite to the wing direction of the discharge fan 621.
이와 같은 구성을 통해 모터(610) 동력 발생시 토출팬(621)과 흡입팬(622)이 동시에 회전되더라도, 기류의 움직임은 반대 방향이 되는 것이다.Through such a configuration, even when the discharge fan 621 and the suction fan 622 are rotated at the same time when the power of the motor 610 is generated, the movement of the airflow is in the opposite direction.
한편, 상기 토출팬(621)과 흡입팬(622) 사이에는 격벽(623)이 설치됨이 바람직하다.On the other hand, the partition 623 is preferably installed between the discharge fan 621 and the suction fan 622.
격벽(623)은 토출되는 흡열판(320)의 온기와 흡입되는 외기가 구분되도록 구획하는 역할을 한다.The partition 623 serves to partition the warmth of the heat absorbing plate 320 discharged from the outside air sucked in.
상기 격벽(623)은 도 10에 도시된 바와 같이, 토출팬(621)과 흡입팬(622)의 높이보다 높게 형성됨이 바람직하다.As shown in FIG. 10, the partition wall 623 may be formed higher than the height of the discharge fan 621 and the suction fan 622.
다음으로, 풍향 가이드(630)는 팬(620)을 방열판(330)에 고정시키고, 토출되는 온기와 흡입되는 외기를 가이드하는 역할을 한다.Next, the wind direction guide 630 fixes the fan 620 to the heat sink 330, and serves to guide the warm air discharged and the outside air sucked in.
풍향 가이드(630)는 방열판(330)에 나사 조립됨이 바람직하나, 조립 수단은 특정하게 한정되지 않는다.The wind direction guide 630 is preferably screwed to the heat sink 330, the assembly means is not particularly limited.
풍향 가이드(630)는 도 11에 도시된 바와 같이 토출팬(621)에 대응되는 토출공(631)과, 흡입팬(622)에 대응되는 흡입공(632)을 형성한다.As illustrated in FIG. 11, the wind direction guide 630 forms discharge holes 631 corresponding to the discharge fan 621 and suction holes 632 corresponding to the suction fan 622.
이와 같은 구성에 의해, 상기 격벽(623)의 구성과 더불어, 흡열판(320)의 온기 토출 및 방열판(330)으로의 외기 흡입이 효과적으로 이루어질 수 있게 된다.By such a configuration, in addition to the configuration of the partition wall 623, it is possible to effectively discharge the warmth of the heat absorbing plate 320 and the suction of the outside air to the heat sink 330.
상기한 구성으로 이루어진 냉각수단의 설치로 인해, 양초의 열이 집진되는 흡열판(320)의 온기는 외부로 신속하게 토출되고, 외기는 방열판(330)으로 흡입됨에 따라, 열전소자(310)의 온도차는 극대화될 수 있게 된다.Due to the installation of the cooling means having the above configuration, the warmth of the heat absorbing plate 320 to collect the heat of the candle is quickly discharged to the outside, the outside air is sucked into the heat sink 330, so that the thermoelectric element 310 The temperature difference can be maximized.
이에 따라, 열전소자를 이용한 제베크 효과를 높일 수 있으므로 전기 생산 효율성을 높일 수 있게 된다.Accordingly, the Seebeck effect using the thermoelectric element can be increased, thereby increasing the efficiency of electricity production.
한편, 상기한 지지대의 높이 조절을 위한 구성은 다양하게 마련될 수 있다.On the other hand, the configuration for adjusting the height of the support may be provided in various ways.
이러한 지지대의 다양한 높이조절 구성에 대하여 제3실시예로 제시하며, 첨부된 도 12 내지 도 15를 참조하여 살펴보도록 한다.Various height adjustment configurations of the support are presented in the third embodiment, and will be described with reference to FIGS. 12 to 15.
먼저 도 12 및 도 13에 도시된 양초를 이용한 자가발전장치는, 제1지지대(510)에 높이 방향으로 복수의 높이조절공(521)이 형성되고, 제2지지대(520)에는 고정공(511)이 형성된다.First, in the self-power generation apparatus using the candle illustrated in FIGS. 12 and 13, a plurality of height adjustment holes 521 are formed in the height direction in the first support 510, and fixing holes 511 in the second support 520. ) Is formed.
이때, 제2지지대(520)에 제1지지대(510)를 구속시키기 위한 구속핀(540)이 설치되며, 상기 구속핀(540)은 다단 절곡된 형태로 마련된다.At this time, a restraining pin 540 for restraining the first support 510 is installed in the second support 520, and the restraining pin 540 is provided in a multi-stage bent form.
상기 구속핀(540)의 일단부는 고정공(511)에 끼움 결합된 상태로 제공되며, 구속핀(540)의 타단부와 제2지지대(520)간에는 구속핀(540)의 이동거리가 확보될 수 있도록 소정의 이격거리가 형성된다.One end of the restraint pin 540 is provided to be fitted into the fixing hole 511, the movement distance of the restraint pin 540 is secured between the other end of the restraint pin 540 and the second support 520. A predetermined distance is formed so that it can be.
이와 같은 구성에 의해, 구속핀(540)은 구속핀(540)의 타단부와 제2지지대(520) 간에 이격된 거리만큼 유동되면서 도 13에 도시된 바와 같이 상기 구속핀(540)의 일단부로 하여금 제1지지대(510)의 높이조절공(521)과 제2지지대(520)의 고정공(511)을 출입할 수 있도록 한 것이다.By such a configuration, the restraint pin 540 flows by a distance spaced between the other end of the restraint pin 540 and the second support 520, and as shown in FIG. 13, to one end of the restraint pin 540. This will allow the height adjustment hole 521 of the first support 510 and the fixing hole 511 of the second support 520 to enter and exit.
이에 따라, 제2지지대(520)의 내부에서 제1지지대(510)의 높이가 조절될 수 있게 된다.Accordingly, the height of the first support 510 in the second support 520 can be adjusted.
다음으로, 도 14 및 도 15에 도시된 양초를 이용한 자가발전장치는, 제1지지대(510)에 높이 방향으로 복수의 걸림홈(512)이 형성되고, 제2지지대(520)에는 상기 걸림홈(512)에 걸려 지지되는 볼플런저(522)가 마련된다.Next, in the self-power generation apparatus using the candle illustrated in FIGS. 14 and 15, a plurality of locking grooves 512 are formed in the height direction in the first support 510, and the locking groove is formed in the second support 520. A ball plunger 522 is caught and supported by 512.
이와 같은 구성에 의해 제2지지대(520)의 내부에서 제1지지대(510)의 높이가 조절되는 과정은 좀더 유연하고 간편하게 이루어질 수 있게 된다.By such a configuration, the process of adjusting the height of the first support 510 in the second support 520 can be made more flexible and simple.
즉, 제2지지대(520)의 내부에 제1지지대(510)를 삽입시키는 과정에서 볼플런저(522)의 스프링은 신축되면서 볼을 복수의 걸림홈(512)에 드나들 수 있게 하므로, 제1지지대(510)의 높이 조절은 자동으로 이루어질 수 있는 것이다.That is, in the process of inserting the first support 510 into the second support 520, the spring of the ball plunger 522 may expand and contract the ball into the plurality of locking grooves 512. Height adjustment of the support 510 can be made automatically.
한편, 상기 지지대의 높이 조절은 양초가 연소되면서 발전부와의 거리가 멀어지는 것을 보상하기 위함인데, 지지대의 높이조절대신 탄성부재를 이용하여 양초와 발전부 간에 거리가 용이하게 조절되도록 구성될 수도 있다.On the other hand, the height adjustment of the support to compensate for the distance from the power generation unit while the candle is burning, it may be configured to easily adjust the distance between the candle and the power generation unit using an elastic member instead of the height adjustment of the support. .
이를 본 발명의 제4실시예로 제시하며, 첨부된 도 16을 참조하여 설명하도록 한다.This is presented as a fourth embodiment of the present invention, and will be described with reference to FIG. 16.
설명하기에 앞서 전술한 실시예들과 동일한 구성에 대해서는 부호를 병기하며, 상세한 설명은 생략하도록 한다.Prior to the description, the same components as in the above-described embodiments will be denoted by the reference numerals, and detailed description thereof will be omitted.
도 16에 도시된 바와 같이, 양초가 삽입되는 케이스(120)가 마련되고 상기 케이스(120)에는 양초의 직경에 대응되는 안착홈(121)이 마련된다.As shown in FIG. 16, a case 120 into which a candle is inserted is provided, and a seating groove 121 corresponding to the diameter of the candle is provided in the case 120.
이때, 안착홈(121)에는 양초를 탄성지지하는 탄성부재(130)가 설치되며, 상기 탄성부재(130)는 스프링으로 제공됨이 바람직하다.At this time, the seating groove 121 is provided with an elastic member 130 for elastically supporting the candle, the elastic member 130 is preferably provided as a spring.
물론, 탄성부재(130)가 반드시 스프링으로 제공되어야 하는 것은 아니다.Of course, the elastic member 130 is not necessarily provided as a spring.
양초가 케이스(120) 안에서 탄성부재(130)에 의해 탄성지지됨으로써, 양초가 연소되더라도 탄성부재(130)의 복원력에 의해 양초의 위치는 발전부(300)와 일정하게 간격이 유지될 수 있는 것이다.Since the candle is elastically supported by the elastic member 130 in the case 120, even if the candle is burned, the position of the candle may be maintained at a constant distance from the power generation unit 300 by the restoring force of the elastic member 130. .
즉, 양초가 연소됨에 따라 양초의 무게가 줄기 때문에, 탄성부재(130)는 복원되면서 양초의 무게가 감소되는 만큼 양초를 상승시키면서 발전부(300)와의 거리를 유지시키는 것이다.That is, since the weight of the candle is reduced as the candle is burned, the elastic member 130 is restored while maintaining the distance from the power generation unit 300 while raising the candle as much as the weight of the candle is reduced.
이때, 양초는 탄성부재(130)의 탄성력에 의해 위치가 가변될 수 있을 뿐만아니라, 제2지지대(520)의 내부에 제1지지대(510)를 삽입하여 상기 지지대(510,520)의 전체 길이를 조절해가면서 양초의 위치를 가변시킬 수도 있다.In this case, the candle may not only be variable in position by the elastic force of the elastic member 130, but also adjust the overall length of the support (510, 520) by inserting the first support (510) inside the second support (520). You can also change the position of the candle as the sun goes down.
즉, 양초에 탄성부재(130)만 마련될 수도 있도, 도 16에 도시된 바와 같이 탄성부재(130)와 지지대(510,520)의 높이 조절 구성이 함께 마련될 수도 있다.That is, even if only the elastic member 130 in the candle may be provided, as shown in Figure 16 may be provided with a height adjustment configuration of the elastic member 130 and the support (510,520).
한편, 발전효율을 높이기 위해서는 발전부(300) 상에서의 온도차가 극대화되는 것이 바람직하다.On the other hand, in order to increase the power generation efficiency, it is preferable that the temperature difference on the power generation unit 300 is maximized.
이를 위해, 흡열판(320)과 방열판(330)에 각각 열전도체(340)를 더 마련하여 제베크 효과를 극대화시킬 수 있다.To this end, a heat conductor 340 may be further provided on the heat absorbing plate 320 and the heat sink 330 to maximize the Seebeck effect.
이를 본 발명의 제 5실시예로 제시하며, 첨부된 도 17을 참조하여 설명하도록 한다.This is presented as a fifth embodiment of the present invention, and will be described with reference to FIG. 17.
설명하기에 앞서 전술한 실시예들과 동일한 구성에 대해서는 부호를 병기하면 상세한 설명은 생략하도록 한다.Prior to the description, the same components as in the above-described embodiments will be omitted if the same reference numerals are used.
도 17에 도시된 바와 같이, 발전부(300)가 마련되고 발전부(300)의 하부에 설치된 흡열판(320)과 발전부(300)의 상부에 설치된 방열판(330)에는 각각 열전도체(340)가 설치된다.As illustrated in FIG. 17, the heat generator 340 is provided on the heat absorbing plate 320 and the heat dissipation plate 330 provided on the upper portion of the power generation unit 300. ) Is installed.
상기 열전도체(340)는 흡열판(320)에 온도를 더 높이는 역할을 하고, 방열판(330)의 방열효과를 더욱 높이는 역할을 한다.The thermal conductor 340 serves to further increase the temperature of the heat absorbing plate 320, and further increases the heat radiating effect of the heat sink 330.
이때, 흡열판(320)에 설치된 열전도체(340)는 열매유(heat transfer fluid)를 포함한다.At this time, the heat conductor 340 installed on the heat absorbing plate 320 includes a heat transfer fluid.
즉, 흡열판(320)에 설치된 열전도체(340)는 열매유가 수용된 파이프 형태로 이루어지는데. 흡열판(320)의 흡열핀 사이에 삽입되어 흡열판(320)에 밀착된 밀착부(341)와, 상기 밀착부(341)로부터 하방으로 연장되어 양초의 불꽃에 대응되는 나선부(342)로 구성된다.That is, the heat conductor 340 installed on the heat absorbing plate 320 is made of a pipe shape in which the fruit oil is accommodated. The contact portion 341 inserted between the heat absorbing fins of the heat absorbing plate 320 and in close contact with the heat absorbing plate 320 and the spiral portion 342 extending downward from the close contact portion 341 to correspond to the flame of the candle. It is composed.
즉, 이와 같은 구성에 의해, 양초의 불꽃이 나선부(342)를 가열하고, 가열된 나선부(342) 내부의 열매유 온도는 흡열판(320)에 열손실없이 전달하여 상기 흡열판(320)을 가열시킴으로써, 열전소자(310)의 일면의 온도는 더욱 높아질 수 있는 것이다.That is, by such a configuration, the flame of the candle heats the spiral portion 342, and the temperature of the fruit oil inside the heated spiral portion 342 is transmitted to the heat absorbing plate 320 without heat loss, thereby absorbing the heat absorbing plate 320. ), The temperature of one surface of the thermoelectric element 310 can be further increased.
한편, 방열판(330)에도 방열 효과를 높이기 위한 열전도체(340)가 설치된다.On the other hand, the heat conduction plate 330 is also provided with a heat conductor 340 to increase the heat dissipation effect.
상기 방열판(330)에 설치된 열전도체(340)에는 열매유 대신 냉매유가 수용된다.The heat conductor 340 installed on the heat sink 330 accommodates refrigerant oil instead of fruit oil.
즉, 냉매유는 방열판(330)의 냉각효율을 높이게 되며, 방열판(330)의 상방에 마련된 냉각수단(600)과 함께 방열판(330)의 냉각 효율을 극대화시키게 된다.That is, the refrigerant oil increases the cooling efficiency of the heat sink 330, and maximizes the cooling efficiency of the heat sink 330 together with the cooling means 600 provided above the heat sink 330.
이때, 방열판(330)에 설치된 열전도체(340)는 상방의 냉각수단(600)과의 간섭을 피하기 위해 나선부가 외부로 돌출 형성되지는 않는다.At this time, the heat conductor 340 installed on the heat sink 330 does not protrude outward from the spiral to avoid interference with the cooling means 600 above.
즉, 도 18에 도시된 바와 같이, 방열판(330)을 구성하는 방열핀 사이로 열전도체(340)가 설치되는 것이다.That is, as shown in Figure 18, the thermal conductor 340 is installed between the heat radiation fins constituting the heat sink 330.
이때, 방열핀들 사이에는 열전도체(340)와의 간섭을 피하고, 상기 열전도체(340)가 끼움 결합될 수 있도록 끼움홈부가 형성된다.In this case, an insertion groove is formed between the heat dissipation fins so as to avoid interference with the heat conductor 340 and to allow the heat conductor 340 to be fitted.
이와 같이 기존의 흡열판(320)과 방열판(330)의 구성외에 열매유 및 냉매유를 포함하는 열전도체(340)가 더 마련됨으로써, 열전소자(310)의 온도차는 더욱 크게 발생하며, 이로 인해 전기 생산 효율을 극대화될 수 있게 된다.As described above, since the heat conductor 340 including the fruit oil and the refrigerant oil is further provided in addition to the configurations of the heat absorbing plate 320 and the heat sink 330, the temperature difference of the thermoelectric element 310 occurs even more. Electricity production efficiency can be maximized.
지금까지 설명한 바와 같이, 본 발명에 따른 양초를 이용한 자가발전장치는 확관 형태의 소화캡을 통해 열에너지를 모아 발전부에 전달하고, 소화캡을 통해 양초 소화를 간편하게 한 기술적 특징이 있다.As described so far, the self-power generation apparatus using the candle according to the present invention has a technical feature that the heat energy is collected and delivered to the power generation unit through a fire extinguishing cap of the expansion type, the candle digestion through a fire extinguishing cap.
또한, 수작업을 통해 양초와 발전부 간에 거리를 유지시키도록 구성한 기술적 특징이 있다.In addition, there is a technical feature configured to maintain the distance between the candle and the power generation unit by hand.
이에 따라, 자가발전에 따른 발전의 효율성을 높일 수 있으며, 양초 소화 작업의 편의성을 높일 수 있게 된다.Accordingly, it is possible to increase the efficiency of power generation according to the self-power generation, it is possible to increase the convenience of the candle fire extinguishing work.
또한, 방열판에 냉각수단을 마련하여 열전소자의 온도차를 극대화할 수 있는 기술적 특징이 있다.In addition, there is a technical feature that can maximize the temperature difference of the thermoelectric element by providing a cooling means on the heat sink.
이에 따라, 자가발전장치를 통한 전기생산 효율성을 높일 수 있게 된다. Accordingly, it is possible to increase the electricity production efficiency through the self-generating device.
이상에서 본 발명은 기재된 구체예에 대하여 상세히 설명되었지만 본 발명의 기술사상 범위 내에서 다양한 변형 및 수정이 가능함은 당업자에게 있어서 명백한 것이며, 이러한 변형 및 수정은 첨부된 특허 청구범위에 속함은 당연한 것이다.Although the present invention has been described in detail with respect to the embodiments described, it will be apparent to those skilled in the art that various modifications and variations are possible within the spirit of the present invention, and such modifications and variations are obviously belonging to the appended claims.
[부호의 설명][Description of the code]
100 : 베이스 110 : 고정홈100: base 110: fixing groove
120 : 케이스 121 : 안착홈120: case 121: seating groove
130 : 탄성부재 200 : 헤드부130: elastic member 200: head portion
300 : 발전부 310 : 열전소자300: power generation unit 310: thermoelectric element
320 : 흡열판 330 : 방열판320: heat absorbing plate 330: heat sink
340 : 열전도체 341 : 밀착부340: heat conductor 341: close contact
342 : 나선부 400 : 소화캡342: spiral 400: fire extinguishing cap
410 : 승강수단 411 : 결합부410: lifting means 411: coupling portion
412 : 나사부 413 : 신축부재(주름관)412: thread portion 413: elastic member (wrinkle tube)
420 : 제1소화커버 421 : 고정플랜지420: first fire cover 421: fixed flange
421a : 제1통공 430 : 제2소화커버421a: first through hole 430: second fire cover
431 : 회전플랜지 431a : 제2통공431: rotating flange 431a: second hole
500 : 지지대 510 : 제1지지대500: support 510: first support
511 : 고정공 512 : 걸림홈511: fixing hole 512: locking groove
521 : 높이조절공 522 : 볼플런저521: height adjustment hole 522: ball plunger
520 : 제2지지대 530 : 고정핀520: second support 530: fixed pin
540 : 구속핀 600 : 냉각수단540: restraining pin 600: cooling means
610 : 모터 620 : 팬610: motor 620: fan
621 : 토출팬 622 : 흡입팬621: discharge fan 622: suction fan
623 : 격벽 630 : 풍향가이드623: bulkhead 630: wind direction guide
631 : 토출공 632 : 흡입공631: discharge hole 632: suction hole

Claims (15)

  1. 베이스에 배치된 양초;Candles placed on the base;
    상기 양초 위에 설치되며, 양초가 점화되면서 발생하는 열에너지를 전기에너지로 변화시키는 발전부;A power generation unit installed on the candle and converting heat energy generated while the candle is ignited into electric energy;
    상기 발전부와 양초 사이에 설치되되 양초를 덮어 씌우며, 양초를 향해 확관의 형태를 갖는 소화캡:을 포함하여 구성되되,It is installed between the power generation unit and the candle to cover the candle, and comprises a fire extinguishing cap having a form of expansion toward the candle:
    상기 소화캡은,The digestion cap,
    서로 대응된 통공을 갖는 한 쌍의 소화커버가 중첩된 상태로 마련되어, 상호 간에 통공이 일치되거나 차폐될 수 있도록 회전되게 마련된 것을 특징으로 하는 양초를 이용한 자가발전장치.A pair of fire extinguishing covers having a through hole corresponding to each other is provided in an overlapped state, the self-powered device using a candle, characterized in that the through-hole is rotated to be matched or shielded.
  2. 제 1항에 있어서,The method of claim 1,
    상기 소화커버는,The fire extinguishing cover,
    상기 발전부에 결합되며, 복수의 제1통공이 형성된 제1소화커버;A first fire extinguishing cover coupled to the power generation unit and having a plurality of first holes formed therein;
    상기 제1소화커버의 제1통공이 형성된 부위에 중첩되되 제1소화커버의 제1통공에 대응되는 제2통공이 형성되며, 제1소화커버 상에서 회전되면서 제1통공과 제2통공의 일치 여부가 제어될 수 있도록 한 제2소화커버:를 포함하여 구성된 양초를 이용한 자가발전장치.A second through hole corresponding to the first through hole of the first fire cover is formed while overlapping the first through hole of the first fire cover and is rotated on the first fire cover. A second fire extinguishing cover which can be controlled: a self-powered apparatus using a candle configured to include.
  3. 제 2항에 있어서,The method of claim 2,
    상기 제1소화커버는,The first fire extinguishing cover,
    상기 발전부와 제1소화커버 사이에 설치되며 중공(中空)의 관로를 갖는 승강수단과, 상기 승강수단으로부터 하방을 향해 방사상으로 형성되며 제1통공이 형성된 고정플랜지를 포함하고,A lifting means installed between the power generating part and the first fire cover and having a hollow pipe, and a fixed flange formed radially downward from the lifting means and having a first through hole,
    제2소화커버는,The second fire cover,
    상기 고정플랜지를 덮어 중첩되며, 제1통공에 대응되는 제2통공이 형성된 회전플랜지를 포함하는 것을 특징으로 하는 것을 특징으로 하는 양초를 이용한 자가발전장치.Overlapping the fixed flange, the self-powered device using a candle, characterized in that it comprises a rotating flange formed with a second through hole corresponding to the first through.
  4. 제 3항에 있어서,The method of claim 3, wherein
    상기 승강수단은,The lifting means,
    상기 발전부로부터 하방을 향해 설치되며, 발전부와 통하는 중공(中空)의 관로를 갖는 수나사부가 형성된 결합부와,A coupling portion provided downward from the power generation portion, the coupling portion having a male screw portion having a hollow pipeline communicating with the power generation portion;
    상기 제1소화커버에 설치되어 상기 수나사부에 나사 결합되되, 중공(中空)의 관로를 갖는 암나사부가 형성된 나사부로 구성된 것을 특징으로 하는 양초를 이용한 자가발전장치.A self-powered apparatus using a candle provided on the first fire cover and screwed to the male screw portion, the screw portion having a female screw portion having a hollow pipe.
  5. 제 3항에 있어서,The method of claim 3, wherein
    상기 승강수단은,The lifting means,
    임의로 힘을 가했을 때 모양이 복원되지 않도록 신축부재로 구성된 것을 특징으로 하는 양초를 이용한 자가발전장치.Self-powered device using a candle, characterized in that composed of an elastic member so that the shape is not restored when applied to a random force.
  6. 제 5항에 있어서,The method of claim 5,
    상기 승강수단은 주름관으로 구성된 것을 특징으로 하는 양초를 이용한 자가발전장치.The elevating means is a self-powered device using a candle, characterized in that consisting of a corrugated pipe.
  7. 제 1항 내지 제 6항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 6,
    상기 발전부와 베이스 사이에는 발전부를 베이스에 지지하는 지지대가 설치되고,Between the power generation unit and the base is provided a support for supporting the power generation unit,
    상기 지지대는The support is
    발전부로부터 하방을 향해 연장되며, 단부에는 고정공이 형성된 제1지지대와,A first support extending downward from the power generation unit and having a fixing hole formed at an end thereof;
    상기 베이스로부터 상방을 향해 설치되되 제1지지대가 삽입되는 삽입홈이 형성되며, 높이 방향으로 상기 고정공에 대응되는 복수의 높이조절공이 형성된 제2지지대로 구성되고,It is installed upward from the base, the insertion groove is formed is inserted into the first support is formed, the second support is formed with a plurality of height adjustment holes corresponding to the fixing hole in the height direction,
    상기 고정공과 높이조절공을 통과하여 지지대의 길이를 조절하는 고정핀을 포함하는 것을 특징으로 하는 양초를 이용한 자가발전장치.Self-powered device using a candle, characterized in that it comprises a fixing pin for adjusting the length of the support by passing through the fixing hole and the height adjustment hole.
  8. 제 1항 내지 제 6항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 6,
    상기 발전부와 베이스 사이에는 발전부를 베이스에 지지하는 지지대가 설치되고,Between the power generation unit and the base is provided a support for supporting the power generation unit,
    상기 지지대는The support is
    발전부로부터 하방을 향해 연장되며, 높이 방향으로 복수의 높이조절공이 형성된 제1지지대와,A first support extending downward from the power generation unit and having a plurality of height adjustment holes formed in a height direction;
    상기 베이스로부터 상방을 향해 설치되되 제1지지대가 삽입되는 삽입홈이 형성되며, 상단부에는 고정공이 제2지지대로 구성되고,It is installed upward from the base and the insertion groove is formed is inserted into the first support, the upper end is composed of a fixing hole as the second support,
    일단부는 상기 고정공을 통해 높이조절공에 출입되며, 타단부는 일단부로부터 다단 절곡되어 제2지지대로부터 이격되도록 형성된 구속핀을 포함하는 것을 특징으로 하는 양초를 이용한 자가발전장치.One end is entered into the height adjustment hole through the fixing hole, the other end is a self-powered device using a candle, characterized in that it comprises a restraining pin formed to be bent in multiple stages from one end spaced apart from the second support.
  9. 제 1항 내지 제 6항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 6,
    상기 발전부와 베이스 사이에는 발전부를 베이스에 지지하는 지지대가 설치되고,Between the power generation unit and the base is provided a support for supporting the power generation unit,
    상기 지지대는The support is
    발전부로부터 하방을 향해 연장되며, 높이 방향으로 복수의 걸림홈이 형성된 제1지지대와,A first support extending downward from the power generation unit and having a plurality of locking grooves formed in a height direction;
    상기 베이스로부터 상방을 향해 설치되되 제1지지대가 삽입되는 삽입홈이 형성되며, 내측면에는 상기 걸림홈에 걸려 결합되는 볼플런저가 설치된 제2지지대로 구성된 것을 특징으로 하는 양초를 이용한 자가발전장치.An installation groove is installed upward from the base, the insertion groove is inserted into which the first support is inserted, and the inner surface is composed of a second support installed with a ball plunger engaged by the locking groove.
  10. 제 1항 내지 제 6항 중 어느 한 항에 있어서,The method according to any one of claims 1 to 6,
    상기 발전부는, The power generation unit,
    양초의 불꽃이 대응되는 내측 공간이 형성된 방열판과, 상기 방열판의 내측공간에 배치된 흡열판과, 상기 흡열판의 양측과 방열판 사이에 개재된 열전소자를 포함하고,A heat sink formed with an inner space corresponding to the flame of the candle, a heat absorbing plate disposed in the inner space of the heat sink, and a thermoelectric element interposed between both sides of the heat sink and the heat sink;
    상기 방열판 상부에는 On the heat sink top
    흡열판에 집열된 열을 토출시키는 토출팬과, 토출팬의 양측에 설치되며 외기를 방열판으로 흡입하는 흡입팬을 포함하는 냉각수단이 더 설치된 것을 특징으로 하는 양초를 이용한 자가발전장치.Self-powered apparatus using a candle, characterized in that the cooling means further comprises a discharge fan for discharging the heat collected in the heat absorbing plate, and a suction fan which is installed on both sides of the discharge fan and sucks the outside air into the heat sink.
  11. 제 10항에 있어서,The method of claim 10,
    상기 토출팬과 흡입팬은 일체로 형성되되, 토출팬과 흡입팬의 날개 방향은 서로 반대인 것을 특징으로 하는 양초를 이용한 자가발전장치.The discharge fan and the suction fan is formed integrally, self-powered apparatus using a candle, characterized in that the wing direction of the discharge fan and the suction fan are opposite to each other.
  12. 제 11항에 있어서,The method of claim 11,
    상기 토출팬과 흡입팬 사이에는 온기 토출영역과 냉기 흡입영역을 구획하는 격벽이 더 형성되며, 상기 격벽의 높이는 토출팬 및 흡입팬의 높이보다 높게 형성된 것을 특징으로 하는 양초를 이용한 자가발전장치.A partition wall is further formed between the discharge fan and the suction fan to partition a hot discharge area and a cold air suction area, and the height of the partition wall is higher than the height of the discharge fan and the suction fan.
  13. 베이스에 배치된 양초;Candles placed on the base;
    상기 양초 위에 설치되며, 양초가 점화되면서 발생하는 열에너지를 전기에너지로 변화시키는 발전부:를 포함하여 구성되며,Is installed on the candle, and comprises a power generation unit for changing the thermal energy generated by the ignition of the candle into electrical energy:
    상기 발전부는, The power generation unit,
    양초의 불꽃이 대응되는 흡열판과, 상기 흡열판 상부에 위치된 방열판과, 상기 흡열판과 방열판 사이에 개재된 열전소자를 포함하되,It includes a heat absorbing plate corresponding to the flame of the candle, a heat sink disposed on the heat absorbing plate, and a thermoelectric element interposed between the heat absorbing plate and the heat sink,
    상기 흡열판에는, 열매유를 포함하는 열전도체가 더 설치되고,The heat absorbing plate is further provided with a heat conductor containing a fruit oil,
    상기 방열판에는, 냉매유를 포함하는 열전도체가 더 설치된 것을 특징으로 하는 양초를 이용한 자가발전장치.The heat generating plate, a self-powered device using a candle, characterized in that a heat conductor further comprises a refrigerant oil.
  14. 제 13항에 있어서,The method of claim 13,
    상기 방열판 상부에는 On the heat sink top
    흡열판에 집열된 열을 토출시키는 토출팬과, 토출팬의 양측에 설치되며 외기를 방열판으로 흡입하는 흡입팬을 포함하는 냉각수단이 더 설치된 것을 특징으로 하는 양초를 이용한 자가발전장치.Self-powered apparatus using a candle, characterized in that the cooling means further comprises a discharge fan for discharging the heat collected in the heat absorbing plate, and a suction fan which is installed on both sides of the discharge fan and sucks the outside air into the heat sink.
  15. 제 13항 또는 제 14항에 있어서,The method according to claim 13 or 14,
    상기 열전도체는,The thermal conductor,
    흡열판 또는 방열판에 밀착 고정된 밀착부와, 상기 밀착부로부터 흡열판 또는 방열판의 외측을 향해 나선형으로 연장된 나선부로 구성된 것을 특징으로 하는 양초를 이용한 자가발전장치.Self-powered device using a candle, characterized in that the contact portion is tightly fixed to the heat absorbing plate or heat sink, and the spiral portion extending spirally from the close contact portion to the outside of the heat absorbing plate or heat sink.
PCT/KR2016/013143 2016-11-08 2016-11-15 Self-powered generator using candle WO2018088601A1 (en)

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KR1020160148395A KR101858069B1 (en) 2016-11-08 2016-11-08 An independent electric power device using a candle

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