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    • 91. 发明公开
    • 히트파이프형 방열장치 및 그 제조방법
    • 热管式散热装置及其制造方法
    • KR1020100072441A
    • 2010-07-01
    • KR1020080130853
    • 2008-12-22
    • 주식회사 자온지
    • 이상철
    • F28D15/02H05K7/20
    • H05K7/20336B21D7/02B21D53/02F28D1/0472F28D15/02
    • PURPOSE: A heat pipe type radiator and a manufacturing method thereof are provided to reduce manufacturing time and costs by easily forming into a cylindrical shape with racially arrange a spiral pipe loop. CONSTITUTION: A manufacturing method of a heat pipe type radiator of a spiral pipe loop structure comprises the following steps. A pipe is reeled on a first mold(1) into a helical structure to form a spiral type pipe loop(10). The spiral type pipe loop is radially arranged inside a second mold having an inner circumference and forms into a cylindrical shape. A heat-absorbing plate is attached to at least one end of the pipe loop formed into the cylindrical shape. The outer circumference of the first mold has a polygonal shape. The inner circumferential shape of the spiral type pipe loop is formed into a polygon by reeling the pipe on the first mold into a helical structure. The first mold has a cylinder structure. The spiral type pipe loop with a circular or ellipse inner shape by reeling the pipe on the first mold into a helical structure. The inner circumferential shape of the spiral type pipe loop is transfigured into a polygon with a processing frame.
    • 目的:提供一种热管式散热器及其制造方法,通过容易地成形为圆柱形,通过种植螺旋管回路来缩短制造时间和成本。 构成:螺旋管环结构的热管式散热器的制造方法包括以下步骤。 将管道卷绕在第一模具(1)上成螺旋结构以形成螺旋型管道环(10)。 螺旋型管环径向地设置在具有内圆周的第二模具的内部并形成圆筒形状。 吸热板附接到形成为圆筒形状的管环的至少一端。 第一模具的外周具有多边形。 螺旋型管环的内周形状通过将第一模具上的管卷曲成螺旋结构而形成为多边形。 第一模具具有气缸结构。 通过将第一模具上的管卷曲成螺旋结构,具有圆形或椭圆形内螺旋型管环。 螺旋型管环的内周形状变换为具有处理框架的多边形。
    • 92. 发明公开
    • 조습장치, 환경시험장치 및 조온조습장치
    • 湿度控制设备,环境测试设备和温度/湿度控制器
    • KR1020100014634A
    • 2010-02-10
    • KR1020097020231
    • 2008-05-12
    • 에스펙 가부시키가이샤
    • 사카미신이치로우
    • F24F3/14F24F5/00F24F11/02F25B21/02
    • F24F3/14F24F5/0042F24F11/0008F28D15/02F28F27/00F24F11/30F24F2110/20
    • Dehumidification efficiency is enhanced at a dehumidifying section while reducing the driving power. The humidity control equipment comprises a section for humidifying the air, and a section for dehumidifying the air and humidity control of a humidity control space is carried out by these humidifying section and dehumidifying section. The dehumidifying section has a body section arranged to be filled with working fluid and to create heat pipe phenomenon, a heat insulating portion being fitted over the body section, and a heat absorbing section for condensing the gas state working fluid evaporated in the distal portion becoming the other side for the heat insulating portion of the body section by absorbing heat from the proximal portion becoming one side for the heat insulating portion of the body section. The air is dehumidified at the distal portion of the body section where the liquid state working fluid evaporates.
    • 除湿效率在除湿部分提高,同时降低驱动功率。 湿度控制装置包括用于加湿空气的部分,并且通过这些加湿部和除湿部进行用于对湿度控制空间的空气进行除湿和湿度控制的部分。 除湿部具有主体部,其被设置成填充有工作流体并产生热管现象,绝热部分装配在主体部分上,以及用于冷凝在远端部分中蒸发的气态工作流体的吸热部分,成为 通过从近端部分吸收热量成为主体部分的隔热部分的一侧,用于主体部分的隔热部分的另一侧。 空气在液体状态工作流体蒸发的主体部分的远端部分被除湿。
    • 93. 发明公开
    • 히트파이프
    • 热管
    • KR1020090126908A
    • 2009-12-09
    • KR1020080053266
    • 2008-06-05
    • 이규정
    • 이규정
    • F28D15/02F28D7/00
    • F28D15/0233F28D15/02F28D15/046
    • PURPOSE: A heat pipe is provided to shorten return time of working fluid by including more than one inner pipe and a steam guide part. CONSTITUTION: A heat pipe comprises a metal housing(1), an evaporation part(10), more than one inner pipe(5,15,25), a steam guide part, and a jet hole. The evaporation part has a heating part which heats working fluid. The inner pipes are installed on the evaporation part. The steam guide part is installed on the inner pipes. The jet hole is formed between the inner pipes and the steam guide part.
    • 目的:提供热管,通过包括多个内管和蒸汽引导部分来缩短工作流体的返回时间。 构成:热管包括金属壳体(1),蒸发部分(10),多于一个内管(5,15,25),蒸汽引导部分和喷射孔。 蒸发部具有加热工作流体的加热部。 内管安装在蒸发部件上。 蒸汽引导部分安装在内管上。 喷射孔形成在内管和蒸汽引导部之间。
    • 94. 发明公开
    • DME 합성공정의 강제순환 제열장치 및 제열방법
    • 通过DME合成方法中强制循环的热控制装置及其控制方法
    • KR1020090114256A
    • 2009-11-03
    • KR1020080040103
    • 2008-04-29
    • 한국가스공사
    • 이정일김동곤
    • C01B3/26C01B3/38F28D15/00
    • C07C43/043F28D15/02F28D15/06
    • PURPOSE: A heat-control device by forced circulation in a DME synthetic process and a method thereof are provided to secure DME synthetic yield, and to prevent oxidation of a catalyst in a reactor. CONSTITUTION: A heat-control device by forced circulation in a DME synthetic process includes a cooling water feed pump(7,7a), a steam boiler(3,3a), a heater(10,10a), a PSV, a reactor(1), an LCV, a PCV, an input line(4,4a), an exhaust line(5,5a), and a circulation pump(6,6a). A cooling water feed pump supplies supplementary water, and the water is stored in the steam boiler. The heater heats the transferred supplementary water to the constant temperature, and the PSV prevents over-pressure of the boiler inside. The PCV discharges the steam to the outside according to the temperature and a pressure level.
    • 目的:提供一种通过DME合成方法强制循环的热控制装置及其方法,以确保DME合成产率,并防止反应器中的催化剂氧化。 构成:在DME合成方法中通过强制循环的热控制装置包括冷却水供给泵(7,7a),蒸汽锅炉(3,3a),加热器(10,10a),PSV,反应器 1),LCV,PCV,输入线(4,4a),排气管线(5,5a)和循环泵(6,6a)。 冷却水供给泵供应补充水,水储存在蒸汽锅炉中。 加热器将传送的补充水加热到恒温,PSV可防止锅炉内部的过压。 PCV根据温度和压力水平将蒸汽排放到外部。
    • 95. 实用新型
    • 히터튜브
    • 加热管
    • KR2020090008425U
    • 2009-08-21
    • KR2020080002127
    • 2008-02-18
    • 황환기
    • 황환기
    • F24H9/18F28D15/02H05B3/44F24H9/06
    • F24H9/18F24H9/06F24H2250/02F28D15/02H05B3/44
    • 본 발명은 일정한 길이의 파이프 모양을 가진 내부가 중공 된 용기 안에 열 매체 조성물을 정량 주입하고 중공처리에 의해 잡 공기를 제거하고 완전 밀폐한 후 전기 카트리지히터 등으로 반응부위를 가열하면 고체 상태로 변해 있던 열 매체가 기화하면서 공기저항이 없는 중공 용기 속을 팽창 가열한다. 이때 입력된 전기에너지가 열에너지와 운동에너지로 변환, 난방의 목적을 수행하는 동안 가장 뛰어난 열전달 효율을 나타내기 위해서는, 파이프 내부의 중공을 10의 -2승~-3승TOR 까지 유지하여야 하는데, 지금까지 시중에 유통되었던 유사 제품은 이러한 중공도(10의 -2승~-3승TOR)를 일정하게 유지하는 기술 미비로 인하여 고비용의 생산과 순도 높은 제품을 양산하지 못해 시장 진입에 실패하였다. 히터튜브는 이러한 지속적으로 중공을 유지하는 문제점들에 대하여 보완, 수정하고 새로운 방법을 시도하여 기존의 문제점들을 완벽하게 보완하여 새로운 중공상태를 유지하는 방법과 적용한 난방 장치이다
      히터튜브, 난방시스템, 발열장비, 열매체, 열전도, 중공밸브, 히터파이프
    • 96. 发明授权
    • 히트파이프 및 이를 이용한 열교환 시스템
    • 使用上述热管的热管和热交换系统
    • KR100870985B1
    • 2008-12-01
    • KR1020070043115
    • 2007-05-03
    • 이상직안병학
    • 이상직안병학
    • F28D15/02
    • F24D5/00F24D2220/07F24H3/00F28D15/02
    • A heat pipe and a heat exchange system using the same are provided to operate a plurality of hot blast heaters or heaters and pipes for a boiler simultaneously by using a single heat source while minimizing the loss of heat. A heat pipe includes a first chamber(110) integrally provided with a heating element(113) for moving thermal interface material(H2) inside and filled with heat media(H1) in an outer diameter part thereof, the heat media changing in phase by the heat transmission of the heating element, and a heating unit(150) having one or more heat transfer pipes(151) connected to the first chamber penetratingly for the movement of the phase-changing media and a plurality of heating fins(153) in close contact with the outside of the heat transfer pipe for maximizing heat exchange area. The first chamber is connected to a bypass pipe which operates by 2-way valves mounted at connection pipes at both ends thereof.
    • 提供一种热管和使用其的热交换系统,以通过使用单个热源同时操作多个用于锅炉的热风加热器或加热器和管道,同时最小化热损失。 一个热管包括一体地设置有加热元件(113)的第一室(110),用于将内部的热界面材料(H2)移动并在其外径部分填充有热介质(H1),所述热介质相位改变 加热元件的热​​传递和具有连接到第一腔室的一个或多个传热管(151)的加热单元(150),用于使相变介质移动并且多个加热翅片(153)在 与传热管外侧紧密接触,最大限度地提高热交换面积。 第一室连接到旁通管,该旁通管由其两端的连接管安装的二通阀操作。
    • 97. 实用新型
    • 냉·난방 겸용 매트
    • 组合加热和冷却垫
    • KR2020080005292U
    • 2008-11-12
    • KR2020070007489
    • 2007-05-07
    • 주식회사 더조은
    • 김성환
    • A47C21/04A47C27/00
    • A47C21/044A47C21/048A47C27/00A47C31/004B60N2/5614B60N3/14F24D3/02F25B21/02F28D15/02F28F2250/08G05D23/19
    • 본 고안은, 가열 또는 냉각된 물의 순환으로 냉방용 또는 난방용으로 사용할 수 있도록 한 냉·난방 겸용 매트에 관한 것이다.
      본 고안 냉·난방 겸용 매트는, 하우징(11)과; 하우징에 내장되는 물수납부(12)와; 하우징(11)에 내장되며, 발열 또는 흡열 반응이 동시에 일어나는 열전소자(13A)와, 열전소자(13A)의 상면에 적층되는 전열부재(13B)와, 전열부재(13B)를 감싸는 단열부재(13C)와, 전열부재(13B)의 내부에 배열되는 열교환 파이프(13D)로 이루어진 열교환기(13)와; 물통(12A)과 열교환기(13) 사이에 구비되는 펌프(14)와; 중첩된 두 시트(15A) 사이에 물 순환용 튜브(15B)가 절곡 배관된 후 시트의 일측으로 양 단부가 노출되는 매트부(15);로 구성되며, 튜브(15B)가 물수납부(12)와 열교환 파이프(13D)에 연결되는 구조이다.
      본 고안의 차량용 시트는 물을 이용하기 때문에 전자파에 의한 피해가 없을 뿐 아니라 적은 에너지로 높은 효율을 나타낼 수 있으며, 난방은 물론 여름철에 냉방용으로도 사용이 가능한 이점이 있다.
      물, 튜브, 열전소자, 열교환
    • 99. 发明授权
    • 히트파이프를 이용한 냉난방장치
    • 使用热管的冷却和加热装置
    • KR100827683B1
    • 2008-05-07
    • KR1020060127409
    • 2006-12-13
    • 김정이
    • 김정이
    • F28D15/02F24D3/12
    • F24D3/14E04C2/525F24D2220/07F28D15/02
    • A cooling and heating apparatus using a heat pipe is provided to form a plurality of heat source supply pipes for circulating hot or cold water, and to transport, assemble, and disassemble the heat source supply pipes easily by connecting the heat pipe to the respective heat source supply pipe. A cooling and heating apparatus using a heat pipe comprises a heat source supply pipe(23), heat pipes(24), a case(10), yellow soil blocks(30), and an assistant pipe. The hot or cold water flows inside the heat source supply pipe. More than one heat pipe is connected to the heat source supply pipe. The case is equipped with the heat source supply pipe and the heat pipe inside. More than one yellow soil block is arranged inside the case. The assistant pipe is installed inside the yellow soil block so that an opened inlet is exposed outside, and inserted into the heat pipe so as to be detachable.
    • 提供一种使用热管的冷却和加热装置,以形成多个用于循环热水或冷水的热源供应管,并且通过将热管连接到相应的热量容易地运输,组装和拆卸热源供应管 源管。 使用热管的冷却和加热装置包括热源供应管(23),热管(24),壳体(10),黄土块(30)和辅助管。 热水或冷水在热源供应管内流动。 多个热管连接到热源供应管。 该箱内装有热源供应管和热管。 箱内有多个黄土块。 辅助管安装在黄土块内,使开放的入口暴露在外面,并插入热管中以便可拆卸。
    • 100. 发明授权
    • 제올라이트를 유체전달매체로 이용한 열팽창 전달장치
    • 使用沸石作为流体传输介质的热膨胀传递装置
    • KR100785529B1
    • 2007-12-13
    • KR1020060072092
    • 2006-07-31
    • 이 정 현이규정
    • 이정현이규정
    • F28D1/00F28D15/02
    • H05K1/0201F28D15/02H05K7/20
    • A heat expansion transfer device using zeolite as a fluid transport medium is provided to make a nanopore structure and an additional passage structure of zeolite or coat the nanopore structure and the additional passage structure with zeolite to absorb peripheral refrigerant by absorbing molecular force of zeolite, and increase transfer power of a liquid refrigerant through capillary tube by nanopores. A case(10) has a cavity inside. A refrigerant is injected into the cavity and a phase of the refrigerant is changed by heat. A nanopore structure(20) is formed in the case for moving a condensed liquid refrigerant by capillary tube force. A gaseous refrigerant path(30) is formed at one side of the nanopore structure for moving evaporated gaseous refrigerant. The nanopore structure has a lattice structure having nanopores and is made of zeolite having absorbing molecular force capable of absorbing peripheral liquid refrigerant.
    • 提供了使用沸石作为流体输送介质的热膨胀转移装置,以形成纳米孔结构和沸石的附加通道结构,或者用沸石涂覆纳米孔结构和附加通道结构,通过吸收沸石的分子吸收外围制冷剂,以及 通过纳米孔增加液体制冷剂通过毛细管的传递功率。 外壳(10)内有空腔。 制冷剂被注入到空腔中,制冷剂的相被热量改变。 在用于通过毛细管力移动冷凝的液体制冷剂的情况下形成纳米孔结构(20)。 气体制冷剂路径(30)形成在用于移动蒸发的气态制冷剂的纳米孔结构的一侧。 纳米孔结构具有具有纳米孔的晶格结构,并且由具有吸收外围液体制冷剂的吸收分子的沸石制成。