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    • 1. 发明专利
    • Method for manufacturing heat exchange element
    • 制造热交换元件的方法
    • JP2012083027A
    • 2012-04-26
    • JP2010229566
    • 2010-10-12
    • Mitsubishi Electric Corp三菱電機株式会社
    • TAKADA MASARUSOTOKAWA HAJIMEISHIMARU YUICHIIMAI TAKANORIARAI HIDEMOTO
    • F28F3/08F28F3/04
    • PROBLEM TO BE SOLVED: To obtain a method for manufacturing a heat exchange element that can reduce manufacturing cost.SOLUTION: The method for manufacturing the heat exchange element includes: a creation step of creating a plurality of unit component members each of which has a plurality of mutually-arranged passages by bonding corrugated sheet processed by being corrugated on a flat sheet; a laminating step of forming laminates by alternatively laminating and bonding first unit composition members where a longitudinal direction of the passage is a first direction and second unit composition members where a longitudinal direction of the passage is a second direction out of the plurality of unit composition members; and a crushing step of crushing a top peak of the corrugated sheet in each of the plurality of unit composition members in the laminates and making a cross-sectional shape of the passage substantially trapezoidal by compressing the laminates in a laminating direction.
    • 要解决的问题:获得可以降低制造成本的用于制造热交换元件的方法。 解决方案:用于制造热交换元件的方法包括:创建步骤,通过将通过波纹状处理的波纹板粘合在平板上,形成多个单元部件,每个单元部件具有多个相互排列的通道; 层叠步骤,通过交替地层叠和接合通道的纵向方向为第一方向的第一单元组合构件和通道的纵向方向为多个单元组合构件中的第二方向的第二单元组合构件 ; 以及粉碎步骤,在所述层叠体中的所述多个单位组合构件的每一个中破碎所述波纹片的顶峰,并且通过在层叠方向上压缩所述层叠体,使所述通道的横截面形状基本为梯形。 版权所有(C)2012,JPO&INPIT
    • 2. 发明专利
    • Total heat-transfer element, and total heat-transfer equipment
    • 总热传递元件和总热传递设备
    • JP2014020649A
    • 2014-02-03
    • JP2012158770
    • 2012-07-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • SOTOKAWA HAJIMEISHIMARU YUICHITAKADA MASARUIMAI TAKANORIOHIRA MITSUHIKOSHINOZAKI TAKESHIKICHISE KOJITOKIZAKI SHINYA
    • F24F7/08
    • PROBLEM TO BE SOLVED: To provide a high-quality total heat-transfer element having higher total heat-transfer performance and less stream leakage than conventional one.SOLUTION: A total heat-transfer element 1 includes: a plurality of unit elements 10 each having a partition plate 11; and ribs 21-23, 31-33 holding a space from another partition plate 11 adjacent thereto in a stacking direction and provided on both sides of the partition plate 11 so that flow paths on both sides of the partition plate 11 are perpendicular to each other, and stacked in the stacking direction while being each rotated 90 degrees to the other unit elements 10. The unit elements are each divided into first-fourth sections having the same shape. The shapes of the ribs provided in the first and second sections correspond to those in the third and fourth sections, when rotated 180 degrees in an in-plane direction of the partition plate 11, respectively, and the shapes of the ribs provided in the first and third sections are different from those in the second and fourth sections. In the flow paths formed between the unit elements 10 adjacent to each other in the stacking direction, a plurality of skip ribs 23 and connection skip ribs 33 having predetermined lengths are arranged at predetermined spaces on both sides of the partition plates 11 along extending directions of the flow paths.
    • 要解决的问题:提供一种具有比常规传热性能更好的总传热性能和较少流动泄漏的高质量的总传热元件。解决方案:总传热元件1包括:多个单元元件10,每个单元元件10具有 隔板11; 和肋21-23,31-33,其在与层叠方向相邻的隔板11上保持空间,并且设置在隔板11的两侧,使得隔板11的两侧的流路彼此垂直 并且堆叠在堆叠方向上,同时相对于其它单元元件10旋转90度。单元元件被分成具有相同形状的第一至第四部分。 设置在第一和第二部分中的肋的形状分别对应于在隔板11的面内方向上旋转180度时的第三和第四部分中的肋的形状,并且设置在第一和第二部分中的肋的形状 第三部分与第二部分和第四部分不同。 在层叠方向上彼此相邻的单元元件10之间形成的流路中,沿着分隔板11的两侧的延伸方向,在隔板11的两侧的规定的间隔配置多个具有预定长度的横向肋23和连接横越肋33 流路。
    • 4. 发明专利
    • Total heat exchanging element
    • 总热交换元件
    • JP2013257106A
    • 2013-12-26
    • JP2012134489
    • 2012-06-14
    • Mitsubishi Electric Corp三菱電機株式会社
    • SOTOKAWA HAJIMEISHIMARU YUICHIOZEKI YASUOFUKAYA MAKOTOTAKADA MASARUIMAI TAKANORISHINOZAKI KEN
    • F28F3/08F24F7/08F28F3/02
    • PROBLEM TO BE SOLVED: To suppress air leakage for improving heat exchange efficiency and reducing ventilation resistance.SOLUTION: In a heat exchanging element, unit structure members, each of which includes a partition member having thermal conductivity and moisture permeability and resin leakage prevention ribs holding the partition members at a predetermined interval in stacking to suppress air leakage, are stacked. The leakage prevention ribs include: first leakage prevention ribs respectively disposed parallel to a primary-air-flow flowing direction on both sides of a front surface of the partition member; second leakage prevention ribs respectively disposed parallel to a secondary-air-flow flowing direction on both sides of a back surface of the partition member; third leakage prevention ribs disposed inside the second leakage prevention ribs parallel to them; and pressing projections arranged on inside faces of the second leakage prevention ribs to be brought into contact with outside faces of the first leakage prevention ribs in stacking for bringing inside faces of the first leakage prevention ribs into contact with outside faces of the third leakage prevention ribs.
    • 要解决的问题:为了抑制空气泄漏以提高热交换效率并降低通风阻力。在热交换元件中,单元结构构件包括具有导热性和透湿性的分隔构件和保持树脂泄漏的肋 层叠以预定间隔堆叠以抑制空气泄漏的分隔构件。 防漏肋包括:分隔构件的前表面的两侧分别平行于主空气流动方向设置的第一防漏肋; 第二防漏肋分别与分隔构件的后表面的两侧上的二次空气流动方向平行设置; 设置在与其平行的第二防漏肋内侧的第三防漏肋; 并且设置在所述第二防漏肋的内表面上的按压突起与所述第一防漏肋的外表面层叠接触,以使所述第一防漏肋与所述第三防漏肋的外表面接触 。
    • 5. 发明专利
    • Heat exchanging element, and method of manufacturing the same
    • 热交换元件及其制造方法
    • JP2013257107A
    • 2013-12-26
    • JP2012134490
    • 2012-06-14
    • Mitsubishi Electric Corp三菱電機株式会社
    • SOTOKAWA HAJIMEISHIMARU YUICHITAKADA MASARUOHIRA MITSUHIKOIMAI TAKANORIFUKAYA MAKOTOOZEKI YASUOBABA FUMIAKIMITANI TETSUO
    • F28F3/08F24F7/08F28F3/02
    • PROBLEM TO BE SOLVED: To provide a total heat exchanging element capable of: suppressing separation of a bonded part with a space holding member even when a dense, high-density and high-performance partition member is used; and achieving low ventilation resistance.SOLUTION: In a heat exchanging element, unit structure members, each of which includes a partition member having thermal conductivity and moisture permeability and resin shield ribs holding the partition member at a predetermined interval to suppress air leakage, are stacked. The shield ribs include first shield ribs respectively disposed parallel to the primary-air-flow flowing direction on both sides of a front surface of the partition member; and have first shield rib outside face contact parts, wherein the outside faces of the first shield ribs are in contact with the partition member, and first shield rib inside face contact parts, wherein the inside faces of the first shield ribs are in contact with the partition member. The partition member is embedded in the first shield ribs between the first shield rib outside face contact parts and the first shield rib inside face contact parts.
    • 要解决的问题:提供一种能够:即使使用致密,高密度和高性能的分隔构件也能够抑制接合部分与空间保持构件的分离的总热交换元件; 并实现低通风阻力。解决方案:在热交换元件中,每个都包括具有导热性和透湿性的分隔构件,并且以预定间隔保持分隔构件以防止空气泄漏的树脂屏蔽肋被堆叠 。 所述护罩肋包括在所述分隔构件的前表面的两侧分别平行于所述主空气流动方向设置的第一屏蔽肋; 并具有第一屏蔽肋外面接触部分,其中第一屏蔽肋的外表面与分隔构件接触,第一屏蔽肋在面接触部分内,其中第一屏蔽肋的内表面与 分隔件 分隔构件嵌入在第一屏蔽肋外面接触部分之间的第一屏蔽肋和面接触部分内的第一屏蔽肋之间。
    • 6. 发明专利
    • Total heat exchanger, and method for manufacturing partition plate used therefor
    • 总热交换器及其制造使用的分隔板的方法
    • JP2013015286A
    • 2013-01-24
    • JP2011149246
    • 2011-07-05
    • Mitsubishi Electric Corp三菱電機株式会社
    • ISHIMARU YUICHISOTOKAWA HAJIMETAKADA MASARUTOKIZAKI SHINYATERAI MAMORU
    • F28F3/08F24F3/147F24F7/08F28F13/18F28F19/04
    • PROBLEM TO BE SOLVED: To provide a total heat exchanger that suppresses the deterioration of the performance even under an environment where dew condensation is repeated, and improves the efficiency of the total heat exchange, and to provide a method for manufacturing a partition plate used therefor.SOLUTION: The total heat exchanger circulates two kinds of gases across the partition plate, and performs exchange of sensible heat and latent heat between the two kinds of gases through the partition plate. The partition plate has a three-layer structure including: a first layer made of a porous resin base material 11; a second layer made of a porous hydrophilic moisture-permeation resin film 10 which is laminated on the first layer and having a gas-permeability; and a third layer made of a non-porous hydrophilic moisture-permeation resin film 9 which is laminated on the second layer and having a gas barrier property. The third layer has an unevenness shape on a surface thereof.
    • 要解决的问题:即使在重复结露的环境下也能提供抑制性能劣化的全热交换器,并提高总热交换的效率,并且提供一种制造隔板的方法 用于此的板。 解决方案:整个热交换器将两种气体循环穿过隔板,并通过隔板交换两种气体之间的显热和潜热。 隔板具有三层结构,包括:由多孔树脂基材11制成的第一层; 由层叠在第一层上并具有透气性的多孔性亲水性透湿性树脂膜10构成的第二层; 以及层叠在第二层上并具有阻气性的由无孔亲水性透湿性树脂膜9构成的第三层。 第三层在其表面上具有凹凸形状。 版权所有(C)2013,JPO&INPIT
    • 7. 发明专利
    • Heat-transfer element
    • 传热元件
    • JP2014020603A
    • 2014-02-03
    • JP2012157166
    • 2012-07-13
    • Mitsubishi Electric Corp三菱電機株式会社
    • TAKADA MASARUSOTOKAWA HAJIMEISHIMARU YUICHIOKAMOTO KAZUTERU
    • F28F3/08F24F7/08
    • PROBLEM TO BE SOLVED: To provide a heat-transfer element capable of reducing worsening of draft resistance and improving total heat-transfer efficiency by suppressing contact of partition members with each other due to a warp of the partition members caused by temperature and humidity changes.SOLUTION: A heat-transfer element includes: stacked unit structural members each formed by partition members and a space holding member holding the partition members at a predetermined space, the space holding member including: first space ribs; second space ribs; first warp suppressing ribs connected to the second space ribs, provided between the first space ribs in parallel with respect to each in a predetermined pitch, and lower than the first space ribs, and second warp suppressing ribs connected to the first space ribs, provided between the second space ribs in parallel with respect to each in a predetermined pitch, and lower than the second space ribs, the space holding member being arranged at a position where the first warp suppressing ribs and the second warp suppressing ribs are not opposed to each other, when stacking the unit structural members.
    • 要解决的问题:提供一种能够通过抑制由温度和湿度变化引起的分隔构件翘曲而使分隔构件彼此接触来降低通风阻力恶化并提高总传热效率的传热元件。 解决方案:传热元件包括:由分隔构件形成的堆叠单元结构构件和将分隔构件保持在预定空间的空间保持构件,空间保持构件包括:第一空间肋; 第二空间肋骨; 与所述第二空间肋连接的第一翘曲抑制肋,设置在所述第一空间肋之间,相对于所述第一空间肋以预定间距平行地设置并且低于所述第一空间肋,以及连接到所述第一空间肋的第二翘曲抑制肋, 所述第二空间肋以预定间距相对于每一个平行,并且比所述第二空间肋低,所述空间保持构件布置在所述第一经向扭转肋和所述第二翘曲抑制肋彼此不相对的位置处 ,当堆叠单元结构构件时。