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    • 3. 发明专利
    • Vacuum heat insulation material, method for manufacturing vacuum heat insulation material and heat insulating box for refrigerator
    • 真空绝热材料,用于制造真空绝热材料的方法和用于制冷器的热绝缘箱
    • JP2013087843A
    • 2013-05-13
    • JP2011228024
    • 2011-10-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • FUJIMURA KAZUMASAHIRAMATSU SEIKIMITANI TETSUOHAMANO KOJIIWATA SHUICHINOMURA KYOKOABIKO SHOHEI
    • F16L59/06B32B1/06F25D23/06
    • PROBLEM TO BE SOLVED: To solve the problem that, in the case where a vacuum heat insulation material is used in which polyester fibers are used for a core material of a refrigerator recovered for recycling, since the polyester fiber is characterized in that breaking elongation is large and brittle fracture hardly occurs, even when trying to crush the vacuum heat insulation member, the polyester fibers elongate, such that it is difficult to crush the vacuum heat insulation material.SOLUTION: A vacuum heat insulation material comprises a resin fiber aggregate and an external wrapping material. The resin fiber aggregate is comprised of resin fibers comprised of thermoplastic resin, epoxy resin and photopolymerization initiator of the epoxy resin. The epoxy resin in the resin fiber has two or more epoxy groups in one molecule and is contained in a ratio of 0.1 to 30 wt% with respect to the thermosetting resin. The photopolymerization initiator in the resin fiber is contained in a ratio of 0.1 to 10 wt% with respect to the epoxy resin by isolating the Lewis acid catalyst through ultraviolet irradiation.
    • 解决的问题为了解决在使用聚酯纤维用于回收再循环的冰箱的芯材的真空隔热材料的情况下,由于聚酯纤维的特征在于, 断裂伸长率大,脆性断裂几乎不发生,即使在试图粉碎真空隔热构件的情况下,聚酯纤维细长,难以粉碎真空绝热材料。 解决方案:真空隔热材料包括树脂纤维聚集体和外包装材料。 树脂纤维集合体由环氧树脂的热塑性树脂,环氧树脂和光聚合引发剂构成的树脂纤维构成。 树脂纤维中的环氧树脂在一个分子中具有两个以上的环氧基,相对于热固性树脂的比例为0.1〜30重量%。 通过紫外线照射分离路易斯酸催化剂,树脂纤维中的光聚合引发剂的含量相对于环氧树脂为0.1〜10重量%。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Vacuum heat insulating material and vacuum heat insulating device employing the vacuum heat insulating material
    • 真空绝热材料和采用真空绝热材料的真空绝热装置
    • JP2013245775A
    • 2013-12-09
    • JP2012120478
    • 2012-05-28
    • Mitsubishi Electric Corp三菱電機株式会社
    • YOKOI MASAHIROABIKO SHOHEISAITO KOJIMURAKAMI HIROKI
    • F16L59/06
    • PROBLEM TO BE SOLVED: To solve a problem that, in a conventional configuration, a clearance is present between core material parts since the core material of a vacuum heat insulating material is divided in a planar direction, the clearance becomes a clearance penetrating the vacuum heat insulating material in a thickness direction while leaving two films with respect to the thickness direction that is a heat insulating direction, and heat insulation performance is reduced by influences of the clearance between the core material parts which are not in vacuum states.SOLUTION: In a vacuum heat insulating material 10, front and rear sides of a core material 11 are covered with a hermetic thin leaf material 12, the outer surrounding part thereof is sealed and the inside thereof is held in a vacuum state. The vacuum heat insulating material is configured by alternately forming, on one surface, a projecting portion 13 in which the core material is provided thickly in a predetermined direction, and a recessed portion 14 which has a layer of the core material thinner than the projecting portion and is formed in such a manner that a dimension in the predetermined direction is approximately equal to that of the projecting portion. The two vacuum heat insulating materials are used while being overlapped in such a manner that the surfaces, on which the recessed portion and the projecting portion are formed, are confronted with each other and the projecting portion of one vacuum heat insulating material is fitted into the recessed portion of the other vacuum heat insulating material.
    • 要解决的问题为了解决在以往的结构中,由于真空绝热材料的芯材在平面方向上被分割而在芯材部件之间存在间隙的问题,所以间隙成为穿透真空热的间隙 绝缘材料在厚度方向上,同时相对于作为绝热方向的厚度方向留下两个膜,并且通过不处于真空状态的芯部件之间的间隙的影响来减小绝热性能。解决方案:在 芯材11的前后侧的真空绝热材料10被密封薄片材料12覆盖,其外周围被密封,其内部保持在真空状态。 真空绝热材料通过在一个表面上交替地形成在预定方向上厚度设置芯材的突出部分13和具有比突出部分更薄的芯部材料层的凹部14 并且形成为使得预定方向上的尺寸大致等于突出部分的尺寸。 这两个真空绝热材料以重叠的方式使用,其中形成有凹部和突出部分的表面彼此面对,并且将一个真空绝热材料的突出部分嵌入到 另一个真空隔热材料的凹部。
    • 5. 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
    • 6. 发明专利
    • Vacuum thermal insulating material and thermal insulation box
    • 真空绝热材料和热绝缘箱
    • JP2010121652A
    • 2010-06-03
    • JP2008293482
    • 2008-11-17
    • Mitsubishi Electric Corp三菱電機株式会社
    • IWATA SHUICHINOMURA KYOKOTAKAGI TSUKASATSUJIHARA MASANORIABIKO SHOHEI
    • F16L59/06
    • PROBLEM TO BE SOLVED: To provide a vacuum thermal insulating material having excellent thermal insulating performance. SOLUTION: In the vacuum thermal insulating material constituted of a core material 2, and an outer covering material 1 having gas barrier properties to cover the core material 2, its inside is sealed hermetically under a reduced pressure. The core material 2 is formed of a long fiber assembly made of a thermoplastic resin. In the core material 2, one layer is formed by sandwiching the top and bottom of the layer made of the long fiber assembly without the deposition between the fibers with the layer made of the long fiber assembly having the deposition between the fibers. The core material is formed by laminating one layer or a plurality of layers. The layer having the deposition between the fibers has fiber basis weight per unit area of not more than 5 g/m 2 . COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供具有优异隔热性能的真空绝热材料。 解决方案:在由芯材2构成的真空绝热材料和具有阻气性的覆盖芯材2的外覆盖材料1中,其内部在减压下气密密封。 芯材2由热塑性树脂制的长纤维组合体形成。 在芯材2中,通过将由长纤维组合物制成的层的顶部和底部夹在一起而不形成纤维之间的沉积而形成一层,其中由具有在纤维之间沉积的长纤维组件制成的层。 芯材通过层叠一层或多层而形成。 在纤维之间具有沉积的层具有每单位面积的纤维单位面积重量不超过5g / m 2 SP SP。 版权所有(C)2010,JPO&INPIT