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    • 7. 发明授权
    • Multi-compartment vacuum insulation panels
    • 多隔室真空保温板
    • US5018328A
    • 1991-05-28
    • US451830
    • 1989-12-18
    • Nihat O. CurDavid B. Kirby
    • Nihat O. CurDavid B. Kirby
    • F16L59/065F25D23/06
    • F16L59/065F25D23/062F25D2201/14F25D2400/04Y10T428/237
    • A vacuum insulation panel having flexible gas impermeable walls formed in multiple substantially adjacent compartments. A thermal break may advantageously be provided around the perimeter to prevent conduction of heat from a warmer side of the panel to a colder side, which thermal break can be easily constructed by utilizing webs of gas impermeable material with the foil carried thereon such that the foil has a width somewhat less than the width of the film and with two separate pieces of the firm rotated at 90.degree. to one another to provide a continuous area void of the foil.Multiple compartments are utilized to enhance the long term thermal characteristics of the panel by "protecting" the vacuum characteristics of at least one of the compartments by surrounding it with additional evacuated compartments. This results in a very minimal gas pressure gradient across the internal walls forming the internal compartment to minimize gas and vapor permeation into it thus greatly enhancing the lifetime of the panel. Further, this permits strategic placing of gettering materials such that gettering materials absorbing certain gases can be placed in the outer compartments and other gettering materials absorbing different gases can be placed in the internal compartments to enhance the lifetime of the panel.
    • 9. 发明授权
    • Vacuum panel assembly method
    • 真空面板组装方法
    • US5327703A
    • 1994-07-12
    • US35816
    • 1993-03-23
    • Nihat O. CurRichard W. KruckDavid B. Kirby
    • Nihat O. CurRichard W. KruckDavid B. Kirby
    • B65B31/02B32B17/02
    • B65B31/024
    • A method for assembling a vacuum insulation panel is provided which includes the steps of: loading a quantity of microporous powder into a gas permeable pouch; pressing the pouch into a desired form; sealing the pouch; heating the powder to a temperature elevated above standard room temperature; inserting the pouch into a gas impermeable bag while the pouch and powder remain at the elevated temperature; evacuating gases from the powder pouch while it is at the elevated temperature; evacuating gases from the bag; and sealing the gas evacuated bag with the gas evacuated pouch therein to form a vacuum insulation panel. The heating of the powder may occur only just before insertion of the pouch into the bag, or may occur both before the powder is loaded into the pouch as well as just before insertion of the pouch into the bag. Further, a trace amount of Helium (at a pressure of approximately 1 mm Hg) may be put into the bag before it is sealed in order to permit testing of the sealed panel for leaks.
    • 提供了一种用于组装真空绝热板的方法,其包括以下步骤:将一定数量的微孔粉末装载到透气袋中; 将袋压制成所需的形式; 密封袋; 将粉末加热至高于标准室温的温度; 将袋插入不透气袋中,同时袋和粉末保持在升高的温度; 在高温下从粉末袋排出气体; 从袋子抽出气体; 并将气体抽真空的袋子与气体排出的袋密封在一起形成真空绝热板。 粉末的加热可能仅在将袋插入袋中之前才可能发生,或者可能在将粉末装入袋之前以及在将袋插入袋之前都可能发生。 此外,在密封之前,可以将微量的氦气(在约1mm Hg的压力下)放入袋中,以便允许密封面板进行测试以进行泄漏。