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    • 3. 发明专利
    • Heat-keeping device for high-temperature billet
    • 高温保温保温装置
    • JP2011012298A
    • 2011-01-20
    • JP2009156495
    • 2009-07-01
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • C21D9/00B21B1/00B22D11/12C21D1/00
    • PROBLEM TO BE SOLVED: To provide a heat-keeping device for temporary storage, which temporarily stores a high-temperature billet which waits an order to be rolled after having been continuously cast, is superior in a heat-keeping performance, is easy of carrying in and carrying out operations, and can save the space.SOLUTION: The heat-keeping device which stores the high-temperature billet therein while preventing the thermal radiation of the high-temperature billet includes: side walls which surround four sides of the high-temperature billet; a heat insulation sheet which covers an aperture of the top face of a housing constituted by the side walls, employs an aerogel sheet having 80 vol.% or more of porosity as its body for heat insulation, and has flexibility; guides which are provided on the upper edges of two opposing side walls out of the side walls so as to extend along the upper edges; and a plurality of supports which can move along the guide and suspend the heat insulation sheet. The plurality of the supports move to change the distance between the supports, and thereby the heat insulation sheet opens and closes the aperture of the top face of the housing.
    • 要解决的问题:为了提供临时存储等待连续铸造后的轧制顺序的高温钢坯的临时储存用保温装置,其保温性能优异,易于携带 可以节省空间。解决方案:在防止高温钢坯的热辐射的同时保存高温钢坯的保温装置包括:围绕高温钢坯四周的侧壁, 温度坯料; 覆盖由侧壁构成的壳体的顶面的孔的隔热片采用具有80体积%以上的孔隙率的气凝胶作为其绝热体,具有柔软性; 引导件,其设置在两个相对的侧壁的上边缘之间的侧壁之外,以沿着上边缘延伸; 以及能够沿着引导件移动并且使隔热片悬挂的多个支撑件。 多个支撑件移动以改变支撑件之间的距离,由此隔热片打开和关闭壳体顶面的孔。
    • 4. 发明专利
    • Heat insulation sheet
    • 热绝缘片
    • JP2010167685A
    • 2010-08-05
    • JP2009012545
    • 2009-01-23
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • B32B7/08B32B27/00F16L59/02
    • PROBLEM TO BE SOLVED: To provide a heat insulation sheet excellent in heat insulating properties, which is lightweight and flexible, and in which a holding and winding are possible.
      SOLUTION: A laminate solving a problem of dusting which is a defect of aerogel is provided, noting that the aerogel is lightweight and can exert excellent insulating characteristics. The laminate comprises a resin coat or an inorganic fiber cloth 2 resin-impregnated arranged on one surface of an aerogel sheet 1 in which a porosity is 80 vol.% or more, and a reinforcing sheet 3 having a heat resistance of a heatproof temperature or more of the aerogel sheet 1 on the other surface of the aerogel sheet 1. The laminate is laminated and integrated by a mechanical coupling means. The mechanical coupling means has an engaging part on both surfaces of the laminate, and is to be preferably a fastening member 4 having a penetration part penetrating the laminate, more preferably a rivet.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供优异的隔热性能的轻质且柔软的隔热片,并且其中可以进行保持和缠绕。 提供了解决作为气凝胶缺陷的除尘问题的层压板,注意到气凝胶重量轻并且可以发挥优异的绝缘特性。 该层压体包括布置在孔隙率为80体积%以上的气凝胶片1的一个表面上的树脂涂层或无机纤维布2,以及具有耐热温度的加强片3或 气凝胶片1的另一个表面上的气凝胶片1更多。该层压体通过机械联接装置层压并整合。 机械联接装置在层叠体的两个表面上具有接合部分,并且优选地是具有穿透层压体的穿透部分的紧固部件4,更优选地是铆钉。 版权所有(C)2010,JPO&INPIT
    • 5. 发明专利
    • Fuel cell heat insulation system
    • 燃料电池保温系统
    • JP2009140917A
    • 2009-06-25
    • JP2008287830
    • 2008-11-10
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • H01M8/24H01M8/10H01M8/12
    • Y02E60/525
    • PROBLEM TO BE SOLVED: To provide a fuel cell heat insulation system of a compact size, in which thickness of the whole heat insulating structure of the fuel cell heat insulation system can be made thin, and is superior in reliability as a heat insulating structure.
      SOLUTION: The fuel cell heat insulation system comprises: a fuel cell body in which an oxidant gas and a fuel gas are supplied to a battery chamber under a high-temperature operation temperature environment and power is obtained by reacting electrochemically the oxidant gas and the fuel gas; and a heat insulating structure which is composed of a micro porous heat insulating layer, a vacuum heat insulating layer, and an inorganic fiber system heat insulating material layer in order from inside around the incidental device.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:为了提供一种小型化的燃料电池隔热系统,其中燃料电池隔热系统的整个隔热结构的厚度可以变薄,并且作为热量的可靠性优异 绝缘结构。 解决方案:燃料电池隔热系统包括:燃料电池体,其中氧化剂气体和燃料气体在高温运行温度环境下供应到电池室,并且通过电化学反应获得氧化剂气体 和燃气; 以及隔热结构,其由微型绝热层,真空绝热层和无机纤维​​系隔热材料层构成,从附带装置的内部开始。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • サクションローラ及びその製造方法
    • 抽吸辊及其制造方法
    • JP2015013711A
    • 2015-01-22
    • JP2013140273
    • 2013-07-04
    • 井前工業株式会社Imae Kogyo Kk
    • IMAE KENJI
    • B65H27/00
    • 【課題】ローラ表面を加温状態により所定の温度に保つことができると共に温度ムラを少なくすることができるサクションローラであって、軸方向の長さが長くても吸引路の形成が容易で、自重による変形を生じにくく軽量なサクションローラを提供する【解決手段】加温状態を保ちながら、帯状シートを搬送するサクションローラであって、前記帯状シートを吸着するための吸着孔が、外周面に複数穿孔されている、金属製外筒体;及び前記金属製外筒体に内嵌され、前記吸着孔に連通する1又は2以上の吸引路がローラ軸方向に延設され、加熱源及び/又は保熱材が保持される中空部を有する繊維強化樹脂製内筒体を備える。【選択図】図1
    • 要解决的问题:为了提供一种重量轻的吸辊,其中辊表面在加热状态下保持在预定温度,随着温度变化减小,并且即使轴向长度长,也容易形成吸入路径 ,难以在自重下变形。解决方案:在保持加热状态的同时传送带状片的吸辊包括:金属外管,其中吸入带状片的多个吸孔在一个 外周表面; 以及插入金属外管中的纤维增强树脂内管,具有与沿辊轴方向延伸的吸入孔连通的一个或多个吸入路径,包括保持加热源和/或隔热材料的中空部 。
    • 7. 发明专利
    • Cylindrical heat insulation material and device mounted with the same
    • 圆柱形热绝缘材料和与此相同的装置
    • JP2013155828A
    • 2013-08-15
    • JP2012018261
    • 2012-01-31
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • F16L59/04B32B1/08B32B5/24C03C25/10H01M8/04H01M8/06H01M8/10
    • Y02E60/521
    • PROBLEM TO BE SOLVED: To provide a cylindrical heat insulating material which can flexibly deal with circularity of a columnar thermal device on which the material is mounted and variation of products, and has excellent workability of extrapolation.SOLUTION: In a cylindrical heat insulating material that is mounted on an outer circumference of a thermal device and has an annular laminated structure, an innermost layer is structured with a heat insulating material of which base material is made of inorganic fibers to which an inorganic filler is given, of which thickness is 4.5 mm or less, and of which bending resistance measured by a Gurley bending resistance tester based on JIS L1096 is 20 mN or more. The base material made of the inorganic fibers may be the felt made of the inorganic fibers or a compressed material thereof, while the inorganic filler may be impregnated in the pores of the felt or the compressed material. The base material made of the inorganic fibers may be a cloth made by weaving filaments of the inorganic fibers and a layer impregnated with the inorganic filler may be formed on one side surface or both side surfaces of the cloth.
    • 要解决的问题:提供一种圆柱形隔热材料,其可以灵活地处理其上安装材料的柱状热装置的圆形度和产品的变化,并且具有优异的外推加工性。解决方案:在圆柱形隔热材料中 安装在热敏装置的外周上,并且具有环形层压结构,最内层由隔热材料构成,其基材由无机纤维制成,无机填料为无机纤维,厚度为4.5mm 以下,通过基于JIS L1096的Gurley耐弯曲试验仪测定的弯曲阻力为20mN以上。 由无机纤维制成的基材可以是由无机纤维制成的毡或其压缩材料,而无机填料可以浸渍在毡或压缩材料的孔中。 由无机纤维制成的基材可以是通过编织无机纤维的长丝制成的布,并且可以在布的一个侧表面或两个侧表面上形成浸渍有无机填料的层。
    • 8. 发明专利
    • Cylindrical heat insulating material and thermal device using the same
    • 圆柱形热绝缘材料和使用其的热装置
    • JP2012063007A
    • 2012-03-29
    • JP2011099449
    • 2011-04-27
    • Imae Kogyo Kk井前工業株式会社
    • IMAE KENJI
    • F16L59/02H01M8/02H01M8/06
    • Y02E60/50
    • PROBLEM TO BE SOLVED: To provide a cylindrical heat insulating material capable of flexibly dealing with variations in thermal device products to be attached and superior in workability of extrapolation.SOLUTION: The cylindrical heat insulating material comprises a cylindrical core material 1 including binder-processed cloth obtained by processing fabric woven from a filament of inorganic fiber with a binder, a wound heat insulating element 5 formed by binding a flexible heat insulating sheet of a fabric base material in which inorganic aerogel is dispersed around the outer circumferential surface of the cylindrical core material 1, and an outer wrapping material 3 stacked on the outermost circumferential surface of the wound heat insulating element 5 and including inorganic fiber as a principal component. It is preferable for the thickness of the cylindrical core material 1 to be 0.3 to 3.0 mm and for the inorganic binder to be immersed inside of the fabric or applied to the surface of the fabric.
    • 要解决的问题:提供一种能够灵活地处理要附接的热装置产品的变化并且具有优异的外推可操作性的圆柱形绝热材料。 解决方案:圆柱形隔热材料包括圆柱形芯材料1,其包括通过将由无机纤维长丝编织的织物与粘合剂加工而获得的粘合剂加工布,通过粘合柔性隔热片形成的缠绕绝热元件5 其中无机气凝胶分散在圆筒形芯材1的外圆周表面上的织物基材和层叠在缠绕绝热元件5的最外圆周表面上并包含无机纤维作为主要成分的外包装材料3 。 圆筒状芯材1的厚度优选为0.3〜3.0mm,无机粘合剂浸渍在织物内部或涂布在织物表面上。 版权所有(C)2012,JPO&INPIT
    • 9. 发明专利
    • Sintering setter
    • 烧结设备
    • JP2004053147A
    • 2004-02-19
    • JP2002211886
    • 2002-07-22
    • Imae Kogyo KkMurata Mfg Co Ltd井前工業株式会社株式会社村田製作所
    • IMAE KENJIORAKU SHUICHIYANO ISAOFUNATANI NOBUIE
    • C04B35/64F27D3/12
    • PROBLEM TO BE SOLVED: To provide a sintering setter having superior dimensional accuracy and stability when superposed in a multistage state, and capable of easily manufacturing a ceramic substrate with high planarity. SOLUTION: The sintering setter is for placing an object to be sintered thereon in a sintering furnace when manufacturing a ceramic electronic part by sintering an object. It is equipped with a placing plate 1 for placing the object thereon and struts 2 mounted on a surface of the placing plate 1. Protruded parts 2b are protrudedly provided on the bottom of the struts 2, and recessed parts 1b having a size fittable with the protruded parts 2b are provided recessed on a surface 1a on which the struts 2 are not mounted. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种当叠加在多级状态时具有优异的尺寸精度和稳定性的烧结设置器,并且能够容易地制造具有高平坦度的陶瓷基板。 解决方案:当通过烧结物体制造陶瓷电子部件时,烧结固定器用于将烧结物放置在烧结炉中。 它配备有用于放置物体的放置板1和安装在放置板1的表面上的支柱2.突出部分2b突出地设置在支柱2的底部,并且具有可与 突出部2b设置在未安装支柱2的表面1a上凹陷。 版权所有(C)2004,JPO
    • 10. 发明专利
    • Vacuum insulating material and manufacturing method therefor
    • 真空绝缘材料及其制造方法
    • JP2013238283A
    • 2013-11-28
    • JP2012112028
    • 2012-05-16
    • Imae Kogyo Kk井前工業株式会社Mitsubishi Electric Corp三菱電機株式会社
    • IMAE KENJI
    • F16L59/06
    • PROBLEM TO BE SOLVED: To provide a vacuum insulating material having high quality stability which can maintain a sheet form even though the use of a binder causing the problem of volatilization under the vacuum is avoided and initial insulation for a long period.SOLUTION: In a vacuum insulating material comprising a laminated body of inorganic fiber sheets, and an envelope material for vacuum-sealing the laminated body, each inorganic fiber sheet is a sheet of inorganic fiber strands having a waveform formed of a curve line, the waveform has a wavelength of one half to one cycle and a wavelength of 3-12 mm, and a plurality of inorganic fiber strands are scattered at random. At least a part of inorganic fiber strands are connected with the other inorganic fiber strands. The inorganic fiber sheet can be preferably attained by making a sheet of a dispersed agent including inorganic fiber strands, and the amount of a used binder can be reduced by entangling the inorganic fiber strands.
    • 要解决的问题:提供具有高质量稳定性的真空绝热材料,即使在真空下使用引起真空挥发问题的粘合剂也可以保持片状,并能长时间地进行初始绝缘。解决方案:在 无机纤维片层叠体的真空绝热材料和层叠体的真空密封用包封材料,无机纤维片是具有由曲线形成的波形的无机纤维束片,其波长为 一半到一个循环,波长为3-12mm,多个无机纤维束随机散布。 无机纤维束的至少一部分与其它无机纤维束连接。 无机纤维片优选通过制造包含无机纤维束的分散剂的片材来实现,并且可以通过缠结无机纤维束来减少所使用的粘合剂的量。