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    • 2. 发明公开
    • 전도성 수용액을 이용한 엑셀파이프 히터 유닛과 이를 이용한 열교환장치
    • 水溶液导管加热中加热XL管加热管制造工艺
    • KR1020100020256A
    • 2010-02-22
    • KR1020080078958
    • 2008-08-12
    • 황보기철
    • 황보대화
    • F24H1/20H05B3/02F24H9/18F24H9/06
    • F24H1/203F24H9/06F24H9/1818F24H2250/00H05B3/023
    • PURPOSE: A manufacturing method of a XL pipe heating rod for an aqueous solution conduction thermal medium is provided to improve the electrical safety and to reduce electrical short by automatically remove the electricity consumption when the aqueous solution is removed. CONSTITUTION: A manufacturing method of a XL pipe heating rod for an aqueous solution conduction thermal medium comprises a mixing ratio composition solution conduction thermal medium, a heat conductive material wire, a heat resistance silicon hose, and an aqueous solution conduction thermal medium for a heating XL pipe boiler. The aqueous solution having the electric resistance value forms the mixing ratio composition solution conduction thermal medium. The heat conductive material wire and the heat resistance silicon hose have punched holes at a regular interval in order to contact with the aqueous solution. The conductive material wire and heat resistance silicon hose are composed of non-conductor silicon materials(11,12). The aqueous solution conduction thermal medium for heating XL pipe boiler comprises aqueous solution conduction heat medium composition charged in the heating XL pipe.
    • 目的:提供一种用于水溶液传导热介质的XL管加热棒的制造方法,以便在去除水溶液时自动消除电力消耗来改善电气安全性并减少电气短路。 构成:用于水溶液传导热介质的XL管加热棒的制造方法包括混合比组成溶液传导热介质,导热材料丝,耐热硅软管和用于加热的水溶液传导热介质 XL管式锅炉。 具有电阻值的水溶液形成混合比组成溶液传导热介质。 导热材料线和耐热硅软管以规则的间隔穿孔以便与水溶液接触。 导电材料导线和耐热硅软管由非导体硅材料(11,12)组成。 用于加热XL管式锅炉的水溶液传导热介质包括在加热XL管中装入的水溶液传导热介质组合物。
    • 5. 发明授权
    • 전극보일러의 전극봉 구조
    • 电极锅炉电极棒结构
    • KR101349468B1
    • 2014-01-08
    • KR1020130051981
    • 2013-05-08
    • 표준
    • 표준
    • F24H1/20F24H9/06H05B3/40F24H9/02F24H9/18
    • F24H1/203F24H1/208F24H9/02F24H9/06F24H9/1818F24H2250/10H05B3/40
    • The present invention relates to an electrode bar of an electrode boiler, more specifically, to an electrode bar structure of an electrode boiler adopting a heat pipe for improving thermal efficiency and providing a structure for effective insulation from a cover of a water tank in each electrode bar unit, when the electrode bar of the electrode boiler is installed in the water tank. In a conventional electrode bar of an electrode boiler, when the electrode bar is installed in a water tank, the electrode bar is fixed to a cover of the water tank and the cover is fastened and fixed to the water tank using a bolt. In this case, since insulation from the cover is required in the electrode bar, the electrode bar is designed to be insulated over the entire surface by using rubber packing for the cover. Accordingly, if water within the water tank is heated to increase temperature when the electrode is installed in the water tank through such a fixing and insulating structure, the pressure within the water tank is transmitted over the entire surface of an insulating part and the electrode bar may be separated from the cover. The present invention is to provide an electrode bar structure of an electrode boiler for preventing separation of the electrode bar despite pressure by hot air within a water tank by designing a structure of the electrode bar such that each electrode bar can be partially insulated from a cover part of the water tank, and, by configuring the electrode bar by extending an electrode by means of a heat pipe, thermal efficiency is improved and heating efficiency is further improved as a result. [Reference numerals] (AA) Thermal medium oil
    • 电极锅炉的电极棒技术领域本发明涉及一种电极锅炉的电极棒,更具体地说,涉及一种电极锅炉的电极棒结构,该电极锅炉采用一种用于提高热效率的热管,并且提供了一种用于从每个电极中的水箱盖的有效绝缘的结构 当电极锅炉的电极棒安装在水箱中时,该单元。 在电极锅炉的常规电极棒中,当电极棒安装在水箱中时,电极杆固定在水箱的盖上,盖子用螺栓固定并固定在水箱上。 在这种情况下,由于在电极棒中需要与盖的绝缘,所以电极棒通过使用用于盖的橡胶密封而设计成在整个表面上绝缘。 因此,当通过这种固定和绝缘结构将电极安装在水箱中时,如果水箱内的水被加热以升高温度,则水箱内的压力将在绝缘部件的整个表面上传递,并且电极棒 可以与盖分离。 本发明提供一种电极锅炉的电极棒结构,用于通过设计电极棒的结构,使得每个电极棒可以与盖部分地绝缘,以防止电极棒在水箱内的热空气压力下分离电极棒 水箱的一部分,并且通过利用热管使电极延伸来配置电极棒,结果提高了热效率,并进一步提高了加热效率。 (标号)(AA)热介质油
    • 7. 发明授权
    • 고압방전을 이용한 초절전 온수가열장치
    • 用于高压放电的热水加热装置
    • KR100872746B1
    • 2008-12-08
    • KR1020080025061
    • 2008-03-18
    • 주식회사한국사이버닉스
    • 홍윤희
    • F24H1/22F24H1/20F24H9/18
    • F24H1/225F24H1/203F24H9/1818F24H2250/10Y10S122/00
    • A power-saving hot water producing apparatus using high-pressure discharge is provided to save energy by using high-pressure discharge effect between a quartz tube and an earth terminal in order to heat the water instead of using resistance. A power-saving hot water producing apparatus using the high-pressure discharge comprises a water chamber(10) including a water inlet(11), a water outlet, and an earth terminal; a quartz tube both ends of which are exposed out of the water chamber; and a pair of quartz tube connecting pieces for preventing a water leakage. An electrode(22) is longitudinally built in the center of the quartz tube, wherein electrode fixtures(22a) are formed on both ends.
    • 提供一种使用高压放电的省电热水制造装置,以通过使用石英管和接地端子之间的高压放电效应来节省能量,以便加热水而不是使用电阻。 使用高压排出的省电热水生产装置包括:水室(10),包括进水口(11),出水口和接地端子; 其两端都暴露在水室外的石英管; 以及一对防止漏水的石英管连接件。 电极(22)纵向内置在石英管的中心,其中电极固定件(22a)形成在两端。
    • 8. 发明授权
    • 전기분해를 이용한 보일러 시스템
    • 锅炉系统使用电解
    • KR101834965B1
    • 2018-03-06
    • KR1020170086937
    • 2017-07-10
    • 김병태문기준
    • 김병태문기준
    • F24H9/18F24H9/20F24H1/20C02F1/461
    • F24H9/1818C02F1/46109F24H1/203F24H9/2014F24H2250/10
    • 본발명의특징에따르면, 물이저장되는수밀한내부공간(111)이형성되고, 내부에서가열된물을순환공급하기위한가열수배출구(112) 및냉수회수구(113)가각각마련된가열챔버(110); +극의구동전원이인가되는양전극부(125)와 -극의구동전원이인가되는음전극부(126)를포함하며, 상기양전극부(125)와음전극부(126)가물에잠기도록상기가열챔버(110)에관통삽입되어인가되는구동전원에따라물을전기분해하며고열을발생시키는전극가열체(120); 상기가열수배출구(112)에연결되어배출되는가열수를난방배관(182)이나온수용열교환기(150) 측으로이송하는가열수이송관(131); 및상기전극가열체(120)에인가되는구동전원을전류제어하여가열온도를조절하는제어모듈(140);을포함하는전기분해를이용한보일러시스템이제공된다.
    • 根据本发明,水密封内部空间111的特征,在加热室的脱模性和加热可排出端口112,用于提供在循环加热的水和水回收得到113 gagak提供的每个,其中水被存储( 110); 正极125与一驱动电力施加到+极和 - 包括负极126,其驱动功率的电极,在加热室以锁定到正极部分125 waeum电极126干旱 插入加热体110中的电极加热体120根据施加到其上的驱动功率来电解水以产生高温; 热水输送管131,用于输送连接到热水排出口112并被传送到加热管182或热水贮存热交换器150的热水; 以及用于通过控制施加到电极加热体(120)的驱动功率来控制加热温度的控制模块(140)。
    • 9. 发明授权
    • 전극보일러의 전해액 자동 주입시스템
    • 自动提供电极锅炉电解质的系统
    • KR101570804B1
    • 2015-11-27
    • KR20150008954
    • 2015-01-19
    • KIM IN HO
    • KIM IN HO
    • F24H1/20F24H9/20
    • F24H1/203F24H9/2014
    • 본발명은전극보일러의전해액자동주입시스템에관한것으로서, 전극보일러; 상기전극보일러와연결되며, 상기전극보일러에서가열되는온수가저장되는온수탱크; 상기온수탱크와이격배치되며, 상기온수탱크로보충수를공급하는보충수공급탱크; 상기보충수공급탱크로전해액을공급하는전해액공급탱크; 및상기보충수공급탱크로부터상기온수탱크로공급되는보충수내에미리결정된양만큼의전해액을자동으로공급하는전해액자동공급부를포함한다.
    • 本发明涉及一种自动供应电极锅炉电解液的系统,包括:电极锅炉; 连接到电极锅炉的热水罐,以储存在电极锅炉中加热的热水; 补给水供给箱,与热水箱间隔设置,供给补给水至热水箱; 用于向补给水供应罐供应电解质的电解质供应罐; 以及电解质自动供给单元,其将补充供水槽供给的补充水中的规定量的电解质自动供给到热水箱。
    • 10. 发明授权
    • 탄소발열체를 이용한 이중관 구조의 관상 발열장치가 장착된 전기온수기
    • 电热水器安装管式加热单元使用碳加热元件
    • KR101565330B1
    • 2015-11-04
    • KR20150032488
    • 2015-03-09
    • LEE SEUNG GUYNJUNG HYO UN
    • LEE SEUNG GUYNJUNG HYO UN
    • F24H1/20F24H9/18H05B3/40
    • F24H1/203F24H9/1818F24H2250/10H05B3/40
    • 본발명은탄소발열체를이용한이중관구조의관상발열장치가장착된전기온수기에관한것으로써, 본발명은외부케이싱(20)내에배치되어온수를유입할수 있는온수유입공(33) 및온수를외부로배출하여공급할수 있는온수배출공(34)을각각구비함과아울러온수를담수하여가열할수 있게다수의발열장치장착공(31)이구비된예열조(30)를갖추고, 상기예열조(30)의발열장치장착공(31)에삽입장착되도록내부에탄소발열체(13)가권선된중심관체(12)가내장구비되고양단에압착부(11a)가형성됨과아울러일측에진공관으로제조하기위한내부의가스를빼낼수 있는배기공(19)이구비된발열관체(11)로이루어진이중관구조의관상발열장치(10)를포함하며, 상기발열관체(11)상의배기공(19)은압착부(11a)가형성된발열관체(11)의일측끝단쪽에배치형성되고, 상기관상발열장치(10)가예열조(30)의발열장치장착공(31)에삽입장착될때, 상기배기공(19)이예열조(30) 외부로노출된상태로관상발열장치(10)와발열장치장치공(31)사이가부싱(32)을통해서완전히밀봉되어외부와차폐되며, 상기예열조(30) 내부에배치된발열관체(11)는예열조(30) 내부에담수된난방수와직접접촉하여열교환이이루어지는전기온수기를제공한다.
    • 本发明涉及一种电热水器,其具有使用安装在其上的碳加热体的双管结构的管状加热装置。 具有使用安装在其上的碳加热体的双管结构的管状加热装置的电热水器包括:预热罐(30),设置在设置有热水入口(33)的外壳(20)上,以流动热 水,热水出口(34),用于将热水排出到外部以供应热水;以及多个加热装置安装孔(31),用于储存和加热热水; 以及由插入到预热箱(30)的加热装置安装孔(31)中并具有中间管体(12)的加热管体(11)组成的双管结构的管状加热装置(10) 在其上嵌入有碳加热体(13),形成在其两端的按压单元(11a)和形成在其一侧上的发射孔(19),以发射由真空管制成的内部气体。 加热管体(11)上的排出孔(19)形成在形成有加压单元(11a)的加热管体(11)的一侧的端部。 当管状加热装置(10)安装在预热箱(30)的加热装置安装孔(31)上时,管状加热装置(10)和加热装置安装孔(31)之间的间隙被完全密封, 当发射孔(19)暴露于预热罐(30)的外部时,通过衬套(32)从外部屏蔽,并且布置在预热罐(30)内部的加热管体(11)与 加热存储在预热罐(30)中的水以交换热量。