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    • 11. 发明专利
    • Cylindrical heat insulation material, and method for manufacturing the same
    • 圆柱形绝热材料及其制造方法
    • JP2012177463A
    • 2012-09-13
    • JP2011057185
    • 2011-02-25
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • F16L59/00H01M8/04H01M8/06
    • Y02P70/56
    • PROBLEM TO BE SOLVED: To provide a cylindrical heat insulation material which thermally insulates a high-temperature thermal device body by utilizing high heat insulation property of silica aerogel particles and achieving reduction in thickness or size, and to provide a method for manufacturing the same.SOLUTION: This cylindrical heat insulation material 1 is inserted and attached to a thermal device body A to thermally insulate the thermal device body A, and is composed of a calcium silicate compact internally formed with a plurality of fine pores which have porosity of 50% or higher and are composed of the silica aerogel particles densely blended. The method for manufacturing the cylindrical heat insulation material uses silica aerogel raw material with a hydrophilic coating film formed on surfaces of hydrophobic silica aerogel particles as the silica aerogel particles, the hydrophobic silica aerogel particles being treated to prevent intrusion of water into the inside.
    • 要解决的问题:提供一种圆柱形隔热材料,其通过利用二氧化硅气凝胶颗粒的高绝热性并实现厚度或尺寸的减小而使高温热装置体热绝缘,并提供制造方法 一样。 解决方案:该圆柱形隔热材料1插入并附接到热装置本体A以使热装置主体A绝热,并且由内部形成有多个细孔的硅酸钙压块构成,所述多个细孔具有 50%以上,由密集混合的二氧化硅气凝胶颗粒构成。 用于制造圆柱形隔热材料的方法使用在疏水性二氧化硅气凝胶颗粒的表面上形成的亲水性涂层的二氧化硅气凝胶原料作为二氧化硅气凝胶颗粒,所述疏水性二氧化硅气凝胶颗粒被处理以防止水侵入内部。 版权所有(C)2012,JPO&INPIT
    • 12. 发明专利
    • Guide roller and manufacturing method of the same
    • 其指导辊及其制造方法
    • JP2011179580A
    • 2011-09-15
    • JP2010043753
    • 2010-03-01
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • F16C13/00B32B1/08B32B5/28
    • PROBLEM TO BE SOLVED: To provide a guide roller which realizes weight reduction, and its manufacturing method.
      SOLUTION: The cylindrical guide roller includes a first fiber reinforced resin layer 3, a second fiber reinforced resin layer 4 provided on the first fiber reinforced resin layer, and a diamond-like carbon film 5 provided on the second fiber reinforced resin layer 4, wherein an orientation direction of a reinforced fiber in the first fiber reinforced resin layer is not aligned in an axial direction of the guide roller and an orientational direction of a reinforced fiber in the second fiber reinforced resin layer is aligned in an axial direction of the guide roller. After heating and curing a wound body formed by laminating and winding a second pre-preg sheet taken as a second fiber reinforced resin layer on a first pre-preg sheet taken as a first fiber reinforced resin layer and then adjusting surface roughness and out-of-roundness by grinding the second fiber reinforced resin layer, a diamond-like carbon film is formed. Since a roller body which is smooth and excellent in out-of-roundness can be formed through the grinding, the diamond-like carbon film can be made thinner.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供实现减重的导向辊及其制造方法。 解决方案:圆柱形引导辊包括第一纤维增强树脂层3,设置在第一纤维增强树脂层上的第二纤维增强树脂层4和设置在第二纤维增强树脂层上的类金刚石碳膜5 如图4所示,其中第一纤维增强树脂层中的增强纤维的取向方向在引导辊的轴向上不对齐,并且第二纤维增强树脂层中的增强纤维的取向方向在轴向方向 导辊。 在将作为第二纤维增强树脂层的第二预浸片层叠并卷绕在作为第一纤维增强树脂层的第一预浸料片上,然后调整表面粗糙度和超出 通过研磨第二纤维增强树脂层,形成金刚石状碳膜。 由于可以通过研磨形成平滑且优异的不圆度的辊体,因此可以使类金刚石碳膜变薄。 版权所有(C)2011,JPO&INPIT
    • 13. 发明专利
    • Heat insulation apparatus for hot water storage tank for heat pump water heater
    • 用于热泵水加热器的热水储存罐热绝缘装置
    • JP2011012953A
    • 2011-01-20
    • JP2010202427
    • 2010-08-24
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • F24H9/00F16L59/04F24H1/18
    • PROBLEM TO BE SOLVED: To provide a heat insulation apparatus that ensures compact transportation and space-saving storage of insulators used for insulating a tank body of a hot water storage tank for a heat pump water heater.SOLUTION: The heat insulation apparatus for a hot water storage tank for a heat pump water heater insulates a hot water storage tank T in such a manner that one surface of a mat member 1 comprising a rectangular fibrous mat 10 enclosed in a cover 12 in which an amorphous silica powder having a particle size of 1-20 nm which comprises silica solated in a solution and dehydrated with a supercritical fluid is dispersed in a fibrous nonwoven fabric at a porosity of not less than 97% is attached to a surface of a tank body T1, an upper surface of the map member 1 on each side is abutted against a recessed portion 22 formed in a side surface 21 of a foam insulator 4 of foam resin, and an adhesion application means 2 is disposed in the overlap to press the foam insulator 4 into adhesion to the surface of the mat member 1.
    • 要解决的问题:提供一种隔热装置,其确保用于绝热用于热泵热水器的热水储罐的罐体的绝缘体的紧凑的运输和节省空间的储存。解决方案:热的隔热装置 用于热泵热水器的储水箱将热水储存箱T以这样的方式隔离,即将垫构件1的一个表面包括在封闭在盖12中的矩形纤维垫10中,其中具有粒径为 将包含硅溶胶溶液并用超临界流体脱水的1-20nm分散在纤维无纺织物中,孔隙率不小于97%附着到罐体T1的表面,地图的上表面 每一侧的构件1抵靠形成在发泡树脂的泡沫绝缘体4的侧表面21中的凹部22,并且粘合施加装置2以重叠的方式设置,以将泡沫绝缘体 4粘附到垫构件1的表面。
    • 14. 发明专利
    • Heat insulating system for fuel cell
    • 燃料电池热绝缘系统
    • JP2010033745A
    • 2010-02-12
    • JP2008191970
    • 2008-07-25
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • H01M8/04H01M8/24
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a heat insulating system for a fuel cell, low in cost, lightweight and dispensing with machining.
      SOLUTION: The heat insulating system for the fuel cell has a first heating insulating material layer formed of a flexible inorganic heat insulating material, a second heat insulating material layer formed of a flexible aerogel heat insulating material, and a third heat insulating material layer formed of a flexible inorganic heat insulating material, around a fuel cell body and/or an incidental device to the fuel cell body formed to acquire electric power by supplying oxidizer gas and fuel gas into a cell chamber in a temperature environment operated at a high temperature and electrochemically reacting the oxidizer gas and fuel gas.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种用于燃料电池的隔热系统,成本低,重量轻并且分配加工。 解决方案:用于燃料电池的绝热系统具有由柔性无机绝热材料形成的第一加热绝缘材料层,由柔性气凝胶绝热材料形成的第二绝热材料层和第三隔热材料 由柔性无机绝热材料形成的层,在燃料电池体周围的燃料电池体和/或附带装置上,形成为通过在高温运行的温度环境中将氧化剂气体和燃料气体供给到电池室来获取电力 温度和电化学反应氧化剂气体和燃料气体。 版权所有(C)2010,JPO&INPIT
    • 15. 发明专利
    • Thermal insulation device of heat apparatus
    • 热装置的热绝缘装置
    • JP2009299760A
    • 2009-12-24
    • JP2008153953
    • 2008-06-12
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • F16L59/02B65D90/06F24H9/00
    • PROBLEM TO BE SOLVED: To provide a thermal insulation device for easily saving a space even in a storage place, without making a thermal insulation material bulky in carrying, to be used for thermally insulating a heat apparatus body of a heat apparatus such as a hot water storage tank of a heat pump water heater.
      SOLUTION: Silica is turned into sol in solution, and its moisture is removed by a supercritical fluid. Amorphous silica fine powder formed by drying and having the particle size of 1-20 nm, is distributed over nonwoven fabric composed of fiber, and one surface of a mat member 1 formed by surrounding a rectangular fibrous mat 10 of setting porosity to 97% or more with a covering body 12, is laid on a surface of the heat apparatus body. An adherence applying means 2 such as a pressure sensitive adhesive tape is arranged on a surface of the mat member 1, and heat is insulated by bringing a reverse surface of the mat member 1 into close contact with the surface of the heat apparatus body.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供即使在存储地方容易地节省空间的绝热装置,也不会使携带时的体积大的绝热材料被用于将加热装置的加热装置主体进行绝热,例如 作为热泵热水器的热水储罐。 解决方案:将二氧化硅溶于溶液中,用超临界流体除去其水分。 通过干燥形成的具有1-20nm的粒径的无定形二氧化硅细粉末分布在由纤维构成的无纺织物上,以及通过围绕设定孔隙率为97%的矩形纤维毡10而形成的垫材1的一个表面,或 更多地将覆盖体12放置在加热装置本体的表面上。 在垫构件1的表面上设置粘合剂施加装置2,例如压敏粘合带,通过使垫构件1的反面与加热装置本体的表面紧密接触来隔热。 版权所有(C)2010,JPO&INPIT
    • 20. 发明专利
    • SOUND ABSORBING MATERIAL
    • JPH10282964A
    • 1998-10-23
    • JP9972997
    • 1997-04-01
    • IMAE KOGYO KK
    • IMAE KENJISAITO YU
    • E04B1/86G10K11/162
    • PROBLEM TO BE SOLVED: To eliminate water absorptivity and oil absorptivity in spite of an extremely good sound absorption performance by covering a porous sound absorber having a sound absorbing effect with a polytetrafluoroethylene(PTFE) sheet having many micropores. SOLUTION: The perforated sound absorber having the sound absorbing effect is covered with the PTFE sheet having the many micropores. The PTFE refers to a polymer of tetrafluoroethylene. The microporous sheet is formed by providing the PTFE sheet with the micropores. A woven fabric formed by weaving the fine fibers of the PTFE or a nonwoven fabric consisting of the fine fibers of the PTFE may otherwise be used as well in place of the perforated PTFE sheet. The PTFE sheet formed in such a manner exhibits waterproofness to rain water and, therefore, the infiltration of the water into the sound absorber body is prevented, by which the occurrence of even the slightest impairment of the performance of the sound absorbing material is averted.