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    • 26. 发明申请
    • INFLATABLE STRUCTURE FOR PACKAGING AND ASSOCIATED APPARATUS AND METHODS
    • 包装和相关设备的可燃结构和方法
    • US20150321821A1
    • 2015-11-12
    • US14804081
    • 2015-07-20
    • Sealed Air Corporation (US)
    • Shawn Michael FraynePaul Chudy
    • B65D81/05F17C7/00B65D30/24
    • B65D81/052B31D5/0073B31D2205/007B65D31/14B65D31/147F16K15/20F17C7/00F17C2221/031F17C2250/0621
    • An inflatable structure may be formed from a single piece of flexible film. The inflatable structure may include quilting seals which divide the inflatable chamber. The inflatable structure may include a one-way valve including an internal valve opening, a channel, and an external valve opening. A locator aperture positioned in the channel may be surrounded by a valve position-retention seal. A corresponding inflation device fills the inflatable structure with air and may do so without requiring heat sealing or insertion into the one-way valve. The inflation device may include a mechanical registration device configured to engage the locator aperture and position the one-way valve at a desired position with respect to an outlet of a source of pressurized air. The inflation device may detect when the inflatable structure is filled with a desired amount of air and automatically shut off the source of pressurized air.
    • 可充气结构可以由单片柔性膜形成。 可充气结构可以包括分隔充气室的绗缝密封件。 充气结构可以包括单向阀,其包括内部阀开口,通道和外部阀开口。 位于通道中的定位器孔可以被阀位置保持密封件包围。 相应的充气装置用空气填充充气结构,并且可以这样做而不需要热封或插入单向阀。 充气装置可以包括机械配准装置,其被配置为接合定位器孔并将单向阀相对于加压空气源的出口定位在期望的位置。 充气装置可以检测充气结构何时充满所需量的空气并自动切断加压空气源。
    • 28. 发明授权
    • Remaining gas amount calculating device
    • 剩余气体量计算装置
    • US07885783B2
    • 2011-02-08
    • US12142877
    • 2008-06-20
    • Atsushi Kurosawa
    • Atsushi Kurosawa
    • G01L7/00
    • F17C13/025F17C2201/0109F17C2201/035F17C2201/056F17C2205/0323F17C2205/0338F17C2205/0382F17C2221/012F17C2223/0123F17C2223/035F17C2227/0157F17C2250/032F17C2250/043F17C2250/0439F17C2250/0443F17C2250/0621F17C2250/0694F17C2265/04F17C2270/0168F17C2270/0184Y02E60/321Y02P90/45
    • A remaining gas amount calculating device includes a hydrogen tank, an opening/closing valve arranged to deliver hydrogen gas from inside the hydrogen tank, a decompression valve arranged to decompress hydrogen gas delivered from the hydrogen tank, a pressure sensor arranged to measure the pressure of hydrogen gas decompressed with the decompression valve, and a power source system controller arranged to determine the remaining gas amount in the hydrogen tank by calculating the gas pressure in the hydrogen tank based on the hydrogen gas pressure measured with the pressure sensor. The relationship between pressures in a primary chamber and a secondary chamber of the decompression valve is monotonical such that when the pressure in the primary chamber increases, the pressure in the secondary chamber also increases; and when the pressure in the primary chamber decreases, the pressure in the secondary chamber also decreases. The remaining gas amount calculating device makes it possible to calculate the amount of gas remaining in a gas container without using a gas pressure measuring device that measures directly the pressure in the gas container.
    • 剩余气体量计算装置包括氢罐,设置用于从氢罐内部输送氢气的开/关阀,设置成对从氢罐输送的氢气进行减压的减压阀,布置成测量压力的压力传感器 用减压阀减压的氢气;以及电源系统控制器,其布置成基于用压力传感器测量的氢气压力来计算氢气罐中的气体压力来确定氢气罐中的剩余气体量。 减压阀的主室和次室中的压力之间的关系是单调的,使得当初级室中的压力增加时,次级室中的压力也增加; 并且当初级室中的压力降低时,次级室中的压力也降低。 剩余气体量计算装置可以不使用直接测量气体容器中的压力的​​气体压力测量装置来计算气体容器中剩余的气体量。