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    • 1. 发明专利
    • Pressure vessel unit and temperature control method for pressure vessel
    • 压力容器单元和压力容器温度控制方法
    • JP2013167285A
    • 2013-08-29
    • JP2012030402
    • 2012-02-15
    • High Pressure Gas Safety Institute Of Japan高圧ガス保安協会Yachiyo Industry Co Ltd八千代工業株式会社
    • TAKEHANA TATSUMISATO SHOJI
    • F17C9/00
    • PROBLEM TO BE SOLVED: To provide a pressure vessel unit and a temperature control method for a pressure vessel capable of improving the utilization efficiency of liquefied gas and portability, and performing temperature control with ease.SOLUTION: A pressure vessel unit 1 includes a pressure vessel 2 and a protector 3 for protecting an outer periphery of the pressure vessel 2. The pressure vessel 2 includes a hollow resin liner layer 4 for holding a fluid, a resin reinforcement layer 5 for covering an outer periphery of the resin liner layer 4, base members 6 and 8 fixed to one-end side and the other end side of the resin liner layer 4, a fitting member 7 which is fixed to the base member 6 at one end side to act as a flow passage for the fluid, and a heat conduction member 9 fixed to the base member 8 at the other end side. One end side of the heat conduction member 9 is disposed in a hollow part of the resin liner layer 4 and the other end side is disposed outside the pressure vessel 2 while being arranged in a housing 31a of the protector 3.
    • 要解决的问题:提供一种能够提高液化气的利用效率和便携性的压力容器的压力容器单元和温度控制方法,并且容易地进行温度控制。压力容器单元1包括压力容器 2和用于保护压力容器2的外周的保护器3.压力容器2包括用于保持流体的中空树脂衬垫层4,用于覆盖树脂衬垫层4的外周的树脂加强层5, 固定在树脂衬垫层4的一端侧和另一端侧的构件6和8,在一端侧固定到基底构件6以用作流体的流动通道的装配构件7,以及 导热构件9在另一端固定到基座构件8。 导热构件9的一端侧设置在树脂衬垫层4的中空部分中,另一端侧设置在压力容器2的外侧,同时布置在保护器3的壳体31a中。
    • 2. 发明专利
    • Multilayered plastic fuel tank
    • 多层塑料燃油箱
    • JP2010036493A
    • 2010-02-18
    • JP2008203235
    • 2008-08-06
    • Yachiyo Industry Co Ltd八千代工業株式会社
    • TANI TATSUSHISATO SHOJI
    • B32B1/02B32B27/32B60K15/03
    • PROBLEM TO BE SOLVED: To provide a multilayered plastic fuel tank can enhance reliability of deterring a hydrocarbon such as gasoline, alcohol and the like from being permeated, and stable in structure and strength.
      SOLUTION: This multilayered plastic fuel tank is provided with the first sheet 10 comprising a high-density polyethylene 11, the second sheet 20 comprising a high-density polyethylene 21 and a barrier body 22, and the third sheet 30 comprising a high-density polyethylene 31, the second sheet is formed by overlapping a large number of thin-sheet-like polyamide sheets as the barrier body on an inside of the high-density polyethylene, by a molten extrusion method, the large number of polyamide sheets are arranged ovelappedly along a thickness direction of the second sheet, to cover the whole face of the second sheet in its top view, and the first sheet, the second sheet and the third sheet are layered in this order and are molded by a vacuum forming method.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供多层塑料燃料箱可以提高阻止诸如汽油,乙醇等烃类的渗透的可靠性,结构和强度稳定。 解决方案:该多层塑料燃料箱设置有包括高密度聚乙烯11的第一片10,包括高密度聚乙烯21和阻挡体22的第二片20,并且第三片30包括高密度聚乙烯 密度聚乙烯31,通过熔融挤出法将大量薄片状聚酰胺片材作为阻挡体重叠在高密度聚乙烯的内侧上形成第二片材,大量的聚酰胺片材 沿着第二片的厚度方向排列地覆盖第二片的整个面,并且第一片,第二片和第三片按顺序层叠,并通过真空成形法成型 。 版权所有(C)2010,JPO&INPIT
    • 6. 发明专利
    • Sealing structure of pressure vessel
    • 压力容器密封结构
    • JP2011102614A
    • 2011-05-26
    • JP2009257932
    • 2009-11-11
    • Yachiyo Industry Co Ltd八千代工業株式会社
    • TANI TATSUSHIWATANABE YOSHIHIRONAKAMURA TERUYUKISATO SHOJI
    • F17C1/16F17C1/06F17C13/04
    • F17C1/16F17C2201/0109F17C2201/0128F17C2201/0147F17C2203/0619F17C2203/066F17C2203/0665F17C2203/0668F17C2203/067F17C2205/0305F17C2205/0382F17C2209/2127F17C2209/2154F17C2209/221F17C2209/227F17C2209/234F17C2221/033F17C2223/0123F17C2223/036F17C2260/011F17C2260/012F17C2270/0168
    • PROBLEM TO BE SOLVED: To provide a sealing structure of a pressure vessel preventing a reduction in a sealing function when a high pressure is loaded to the pressure vessel. SOLUTION: The sealing structure of the pressure vessel 1 comprises a resin liner 2 storing gas or a liquid, a fiber reinforced resin layer 3 reinforcing the outer surface of the resin liner 2, and a metal mouthpiece part 4 protruded on the outer surface of the fiber reinforced resin layer 3 to be a filling/discharging port. In the resin liner, a tubular filling/discharging part 22 with a through-hole 24, which is protruded outward from the inside of the pressure vessel, is formed. On the outer peripheral surface of the filling/discharging part, connection structures 23, 43 mutually connected with the inner peripheral surface of the mouthpiece part, are formed. In the through-hole 24 of the filling/discharging part, a tubular member 100 made by using a material with strength higher than that of the resin liner, is inserted and fitted. When a tubular valve 60 for filling/discharging the gas or liquid is inserted in a valve insertion hole 102 arranged in the tubular member through the mouthpiece part, a seal member 80 is interposed between the outer periphery 61 of the valve and the inner periphery of the valve insertion hole. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供当高压被加载到压力容器时防止密封功能降低的压力容器的密封结构。 解决方案:压力容器1的密封结构包括储存气体或液体的树脂衬垫2,加强树脂衬垫2的外表面的纤维增强树脂层3和在外部突出的金属接口部分4 纤维增强树脂层3的表面成为填充/排出口。 在树脂衬套中,形成有从压力容器的内部向外突出的具有通孔24的管状填充/排出部22。 在填充/排出部分的外圆周表面上,形成与接口部分的内周表面相互连接的连接结构23,43。 在填充/排出部分的通孔24中,插入并装配由使用强度高于树脂衬垫的材料制成的管状构件100。 当用于填充/排出气体或液体的管状阀60通过接口部分插入到设置在管状构件中的阀插入孔102中时,密封构件80插入在阀的外周边61和阀的外周 阀插入孔。 版权所有(C)2011,JPO&INPIT
    • 7. 发明专利
    • Resin fuel container
    • 树脂燃料容器
    • JP2008018986A
    • 2008-01-31
    • JP2006193505
    • 2006-07-14
    • Yachiyo Industry Co Ltd八千代工業株式会社
    • SATO SHOJI
    • B65D65/40B32B27/28
    • PROBLEM TO BE SOLVED: To improve the strength of a fuel container and reduce the weight of the same by securing thicknesses of a PE layer and a regeneration layer that is necessary for the strength of the container and dispersing an EVOH favorably in the regeneration layer.
      SOLUTION: The resin fuel container has a multilayer sectional structure composed of at least one PE (Polyethylene) layer 1A, one EVOH (ethylene-vinyl alcohol copolymer) layer 1C, one regeneration layer 1E, and one adhesive layer (adhesive inner layer 1B and adhesive outer layer 1D) for gluing the regeneration layer 1E and the EVOH layer 1C to other layers. The average of the thickness of the entire multilayer is within a range of 3 to 6 mm. The adhesive layer is formed of PE obtained by graft-polymerizing a maleic acid. The ratio R1 of the total thickness of the EVOH layer 1C and the thickness of the entire multilayer is determined to be within a range of 5:100 to 9:100. The ratio R2 of the total thickness of the adhesive layer and the total thickness of the EVOH layer 1C is determined to be within a range of 1:1 to 10:7.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:为了提高燃料容器的强度并且通过确保容器的强度所需的PE层和再生层的厚度来减小其重量,并将EVOH分散在 再生层。 解决方案:树脂燃料容器具有由至少一个PE(聚乙烯)层1A,一个EVOH(乙烯 - 乙烯醇共聚物)层1C,一个再生层1E和一个粘合剂层(粘合剂内层)组成的多层截面结构 层1B和粘合剂外层1D),用于将再生层1E和EVOH层1C胶合到其它层。 整个多层的厚度的平均值在3至6mm的范围内。 粘合剂层由通过马来酸的接枝聚合获得的PE形成。 EVOH层1C的总厚度的比率R1和整个多层膜的厚度确定在5:100至9:100的范围内。 粘合剂层的总厚度与EVOH层1C的总厚度的比R2确定在1:1至10:7的范围内。 版权所有(C)2008,JPO&INPIT