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    • 1. 发明专利
    • Vacuum heat insulating material, and heat-insulated box with the vacuum heat insulating material
    • 真空绝热材料和绝热箱与真空绝热材料
    • JP2011169414A
    • 2011-09-01
    • JP2010034414
    • 2010-02-19
    • Mitsubishi Electric Corp三菱電機株式会社
    • IWATA SHUICHINOMURA KYOKOFUJIMORI YOSUKENAKANO HIDEAKI
    • F16L59/06F25D23/06
    • PROBLEM TO BE SOLVED: To provide a vacuum heat insulating material or the like excellent in heat insulating performance by increasing the setting area of the vacuum heat insulating material in a heat-insulated box. SOLUTION: The vacuum heat insulating material 4 includes a core material 3 sealed to gas-barrier outer packaging materials 1a, 2, the inside thereof being in a decompressed state. The core material 3 is made into a laminated structure by continuously winding a sheet-like fiber assembly from the inner periphery to the outer periphery, and an outer shell of the heat-insulated box doubles as a part of the outer packaging materials 1a, 2 with the core material 3 sealed therein. The core material 3 is made into a laminated structure by winding a plurality of sheet-like multiple fiber assemblies, and is formed by sheet-like fiber assemblies 100, 110 having joint portions 12, 13. The joint portions 12, 13 are set so as not to overlap with joint portions of the upper and lower sheet-like multiple fiber assemblies 100, 110. COPYRIGHT: (C)2011,JPO&INPIT
    • 解决的问题:通过增加绝热箱中的真空隔热材料的设定面积,提供绝热性能优异的真空绝热材料等。 解决方案:真空隔热材料4包括密封到阻气外包装材料1a,2的芯材3,其内部处于减压状态。 芯材3通过从内周到外周连续地卷绕片状纤维集合体而制成层压结构,并且隔热箱的外壳加上外包装材料1a,2的一部分 芯材3密封在其中。 芯材3通过卷绕多个片状多个纤维集合体而形成为层叠结构,并且由具有接合部12,13的片状纤维组件100,110形成。接合部12,13被设定为 不与上下片状多纤维组件100,110的接合部分重叠。(C)2011,JPO&INPIT
    • 5. 发明专利
    • Door opening/closing testing device
    • JP2004108983A
    • 2004-04-08
    • JP2002273099
    • 2002-09-19
    • Mitsubishi Electric Corp三菱電機株式会社
    • NAKANO HIDEAKI
    • G01M99/00G01N3/32G01M19/00
    • PROBLEM TO BE SOLVED: To solve the problem that the opening/closing speed of a door to be tested is not fixed even when the opening/closing speed of a testing device is fixed and it is difficult to set testing conditions, because the connecting section between the arm of the testing device and the door to be tested slides during the course of opening/closing tests and the relative angle between the arm of the testing device and door to be tested continuously changes due to the difference in center of rotation between the door and testing device.
      SOLUTION: A door opening/closing testing device is provided with a rotary arm 4 which makes the center of rotation of the door 2 to be tested in the direction of a rotating shaft to coincide with that of the testing device in the direction of the rotating shaft, connecting means 3, 5, and 6 which connect the door 2 to the arm 4, and a rotating means 8 which rotates the arm 4. In addition, the rotating means 8 rotates the door 2, which is connected to the arm 4 by means of the connecting means 3, 5, and 6 so that the centers of rotation in the directions of the rotating shaft of the door 2 and arm 4 may become the same, together with the arm 4 by rotating the arm 4 while the door 2 is attached to an article 1 to be tested.
      COPYRIGHT: (C)2004,JPO
    • 6. 发明专利
    • Method and device for manufacturing vacuum heat insulating material, vacuum heat insulating material, heat insulating box using the same, and apparatus using vacuum heat insulating material
    • 用于制造真空绝热材料的方法和装置,真空绝热材料,使用其的热绝缘盒以及使用真空绝热材料的装置
    • JP2012149720A
    • 2012-08-09
    • JP2011009434
    • 2011-01-20
    • Mitsubishi Electric Corp三菱電機株式会社
    • FUJIMORI YOSUKENAKANO HIDEAKIKATO TAKEHARU
    • F16L59/06
    • PROBLEM TO BE SOLVED: To provide a method for manufacturing a vacuum heat insulating material excelling in productivity, handleability and heat insulating performance.SOLUTION: In this method for manufacturing a vacuum heat insulating material, a sheet-like fiber assembly 1J is wound around a winding frame 16 in a predetermined length coil-like form by a nonwoven fabric web roll 1H; the sheet-like fiber assembly 1J wound around the winding frame 16 is clamped at two parts such as a winding finish end 1Je and the side facing thereto to be extracted from the winding frame 16; a core material 4 of a laminate structure having a flat shape is formed by being pulled; the core material 4 of the laminate structure having the flat shape is enclosed in an outer wrapping material 2 from an end side becoming a final folding-back completion part out of both longitudinal ends of the flat shape; and thereafter the inside of the outer wrapping material 2 is evacuated.
    • 解决的问题:提供一种制造生产率,可处理性和绝热性能优异的真空绝热材料的方法。 解决方案:在这种真空绝热材料的制造方法中,片状纤维集合体1J通过非织造织物卷筒卷1H以预定长度的卷状形式缠绕在卷绕框架16上; 缠绕在卷绕框架16上的片状纤维集合体1J被夹持在卷绕完成端部1Je和与其相对的一侧的两个部分,以从卷绕框架16中取出; 通过拉动形成具有平坦形状的叠层结构的芯材4; 具有扁平形状的叠层结构的芯材4从平坦形状的两个纵向端部的端部侧被封装在外包装材料2中,成为最终的折回完成部; 然后将外包装材料2的内部抽真空。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Vacuum heat insulating material, insulating box, and method of manufacturing vacuum heat insulating material
    • 真空绝热材料,绝缘盒和制造真空绝热材料的方法
    • JP2010242833A
    • 2010-10-28
    • JP2009091101
    • 2009-04-03
    • Mitsubishi Electric Corp三菱電機株式会社
    • NAKADA MITSUAKIFUJIMURA KAZUMASAMITANI TETSUOFUJITA AKIHIROTAKAGI TSUKASAIWATA SHUICHINOMURA KYOKOABIKO SHOHEIYAMAMOTO NOBUONAKANO HIDEAKI
    • F16L59/06
    • PROBLEM TO BE SOLVED: To provide a vacuum heat insulating material, an insulating box, and a method of manufacturing the vacuum heat insulating material, having a core material made of such resin fibers that make the core material of the resin fibers thicker, while suppressing the lowering of insulating performance. SOLUTION: The method of manufacturing the vacuum heat insulating material 21 includes, in the method of manufacturing the vacuum heat insulating material 21 vacuum packed of layered resin fibers 1: a step of discharging a resin fiber 1 from a discharging section 7; and a step of layering the resin fiber 1, layering a plurality of spiral filaments 12 each having a plurality of loops 11 formed of the resin fiber 1 and the loops 11 have been displaced to each other in a direction parallel to the rotation plane of the loop 11, on the upper surface of a fiber layering stage 5 for layering the resin fiber 1 discharged from the discharging section 7. The step of layering the resin fiber 1 includes a step of layering the resin fiber 1 on the upper surface of the fiber layering stage 5, reciprocally moving the discharge section 7 and the fiber layering stage 5 relative to each other. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种真空绝热材料,绝缘箱和制造真空绝热材料的方法,其具有由这种树脂纤维制成的芯材,使得树脂纤维的芯材变厚 同时抑制绝缘性能的降低。 解决方案制造真空绝热材料21的方法包括在层压树脂纤维1真空包装的真空隔热材料21的制造方法中:从排出部分7排出树脂纤维1的步骤; 并且对树脂纤维1进行分层的步骤,将由树脂纤维1形成的多个环11的多个螺旋丝12分层,并且使环11在平行于树脂纤维1的旋转平面的方向上彼此位移 环路11在纤维层叠台5的上表面上,用于层叠从排出部分7排出的树脂纤维1.层压树脂纤维1的步骤包括在树脂纤维1的上表面上层叠树脂纤维1的步骤 层叠台5相对于彼此往复移动放电部分7和纤维分层台5。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Vacuum thermal insulation material, and thermal insulation box
    • 真空绝热材料和热绝缘盒
    • JP2012163138A
    • 2012-08-30
    • JP2011022719
    • 2011-02-04
    • Mitsubishi Electric Corp三菱電機株式会社
    • IWATA SHUICHINOMURA KYOKOFUJIMORI YOSUKENAKANO HIDEAKIABIKO SHOHEIHANAOKA SHO
    • F16L59/06F25D23/06
    • PROBLEM TO BE SOLVED: To solve a problem that manufacturing is difficult because of generation of displacement of fiber collected bodies forming parts with different thicknesses and collapse of lamination because the fiber collected bodies laminated themselves are not fixed by adhering or welding in a vacuum thermal insulation material using the fiber collected bodies constituted by laminating organic fiber needed for laminating sheet number of not less than few hundreds pieces as core materials.SOLUTION: A folding superposing part as the core material of the vacuum thermal insulation material thicker than a laminated body with a plate shape is shaped by folding one end of two ends of in a winding direction of the laminated body constituted by continuously winding a fiber collected body with a sheet shape from an inner periphery to an outer periphery and shaping the same in a plate shape, to the other end of the two ends in the winding direction.
    • 要解决的问题:为了解决由于形成具有不同厚度的部件的纤维集合体的产生而产生难以制造的问题以及层压的崩溃,因为层叠的纤维集合体不是通过粘附或焊接而固定的 真空保温材料采用纤维收集体构成的层压有机纤维所需的层压片数不少于几百块作为核心材料。 解决方案:折叠叠加部分作为真空绝热材料的核心材料,比层压体厚度大的板状,通过将由连续卷绕构成的层叠体的卷绕方向的两端折叠 从内周到外周具有片状的纤维收集体,并将其成形为板状,在卷绕方向的两端的另一端。 版权所有(C)2012,JPO&INPIT