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    • 2. 发明授权
    • Device for the measurement of heat transfer characteristics of
multilayer sample arrangements
    • 用于测量多层样品布置的传热特性的装置
    • US06132082A
    • 2000-10-17
    • US986656
    • 1997-12-08
    • Barbara Hildegard Pause
    • Barbara Hildegard Pause
    • G01K17/20G01N25/20G01N25/18
    • G01K17/20
    • The invention provides a device for measuring heat transfer through plate-like sample arrangements under various test conditions. The device consists of two chambers. For determining the heat transfer through the sample arrangement located between the two chambers the first chamber is set at a certain temperature or undergoes a temperature variation. Furthermore, the sample arrangement can be exposed to heat radiation provided by a surface heater in front of the sample arrangement as well as to convective heat realized by using an ventilation system. Temperature changes as a result of heat transfer through the test samples are measured within the second chamber using PT 100 temperature sensors. Furthermore, temperature measurements are taken at locations inside the sample arrangement. Infrared sensors are used to measure the irradiation intensity in front of the sample arrangement and the heat emission from the back side of the sample arrangement. Thermophysical characteristics such as thermal conductivity, thermal resistance, heat absorption, heat transition and heat emission of multilayered insulation products are determined under the various test conditions from the measured temperatures, heat fluxes as well as the thickness of the sample arrangement.
    • 本发明提供一种用于在各种测试条件下测量通过板状样品布置的热传递的装置。 该装置由两个室组成。 为了确定位于两个室之间的样品装置的热传递,第一室被设定在一定温度或经历温度变化。 此外,样品布置可以暴露于由样品装置前面的表面加热器提供的热辐射以及通过使用通风系统实现的对流热。 通过测试样品的热传递导致的温度变化在第二个室内使用PT 100温度传感器进行测量。 此外,在样品装置内的位置处进行温度测量。 红外传感器用于测量样品装置前面的照射强度和来自样品装置背面的热辐射。 在各种测试条件下,从测量的温度,热通量以及样品布置的厚度来确定多层绝缘产品的热物理特性如导热性,热阻,吸热性,热转变和散热。
    • 7. 发明申请
    • Surface treatment of beverage containers to keep the beverage cool
    • 饮料容器的表面处理以保持饮料冷却
    • US20140026595A1
    • 2014-01-30
    • US13952065
    • 2013-07-26
    • Barbara Hildegard Pause
    • Barbara Hildegard Pause
    • F25D5/02
    • F25D5/02C09K5/063F25D3/08F25D2303/0841F25D2303/0843F25D2303/085F25D2331/803F28D20/02Y02E60/147
    • The invention pertains to a method suitable to reduce the heat transfer into a beverage container in order to keep the beverage cool over an extended period of time after taken from the refrigerator. The method is based on a surface treatment of the beverage container which comprises a binder in which phase change material is incorporated. By absorbing latent heat without a temperature increase, the phase change material creates a thermal barrier against heat penetration. The binder with the phase change material contained wherein is applied to the surface of the beverage container, for instance, by spray coating. The coating layer covers most of the container's surface. A second coating layer which does not contain phase change material is applied on top of the first coating layer in order to provide protection against mechanical stress during high speed filling and packaging.
    • 本发明涉及一种适于减少向饮料容器传热的方法,以便在从冰箱取出之后将饮料冷却一段较长时间。 该方法基于饮料容器的表面处理,该饮料容器包括其中掺入相变材料的粘合剂。 通过在不增加温度的情况下吸收潜热,相变材料产生抵抗热穿透的热障碍。 含有相变材料的粘合剂,其中例如通过喷涂施加到饮料容器的表面。 涂层覆盖了容器的大部分表面。 不含相变材料的第二涂层施加在第一涂层的顶部,以便在高速填充和包装期间提供防止机械应力的保护。
    • 9. 发明授权
    • Thermal control of automotive interiors with phase change material
    • 具有相变材料的汽车内饰的热控制
    • US07320357B2
    • 2008-01-22
    • US10474854
    • 2002-04-13
    • Barbara Hildegard Pause
    • Barbara Hildegard Pause
    • B60H1/00F28D15/00
    • B60N2/56B60H1/00285B60H1/00492B60H1/3235B60R2013/0287C09K5/063F28D20/02F28D20/023Y02E60/145Y02P20/124Y02T10/88Y10S165/902
    • The inventive method includes the utilization of different phase change materials with different melting temperature ranges in each of the headliner (3), the seats (7), and the instrument panel (12) of an automobile in order to save energy while improving thermal comfort for the passengers. When used in the seats (7), the phase change material can be included in the seat heater system. Preferable phase change materials are alkyl hydrocarbons and mixtures thereof, salt-hydrates, metals, alloys, poly-alcohols, and eutectics with phase changes within the desired temperature ranges and with appropriate heat storage capacities. Preferably, the phase change materials are directly incorporated in a polymeric compound structure, in an elastomeric compound structure, or in a foam structure in order to enhance the overall thermal capacity. When used in the seats (7), the phase change material incorporated in a polymeric or elastomeric structure is formed into a mesh-like material (9) and attached to a knitted spacer fabric (6).
    • 本发明的方法包括在汽车的顶篷(3),座椅(7)和仪表板(12)中使用具有不同熔融温度范围的不同相变材料,以便节省能量,同时改善热舒适性 为乘客。 当在座椅(7)中使用时,相变材料可以包括在座椅加热器系统中。 优选的相变材料是烷基烃及其混合物,盐水合物,金属,合金,多元醇和共晶体,其相变在期望的温度范围内并具有合适的储热能力。 优选地,相变材料直接结合在聚合化合物结构中,以弹性体复合结构或泡沫结构结合,以增强整个热容量。 当在座椅(7)中使用时,结合在聚合物或弹性体结构中的相变材料形成为网状材料(9)并且连接到编织间隔织物(6)上。
    • 10. 发明授权
    • Procedure and device for the measurement of water vapor transfer through
textiles and other plate-like materials
    • 通过纺织品和其他板状材料测量水蒸气转移的程序和装置
    • US5907091A
    • 1999-05-25
    • US954017
    • 1997-10-20
    • Barbara Hildegard Pause
    • Barbara Hildegard Pause
    • G01N15/08G01N33/36G01N13/04C12M1/12G01M3/16
    • G01N15/082G01N33/367
    • The invention provides a method for measurement of characteristics related to water vapor transfer through plate-like material samples, in particular textile materials, and a measuring unit device with a water container, a water container atmosphere or headspace, air chamber, and measuring chamber, where the water container headspace and air chamber are separated by such plate-like material sample for carrying out such measurements under stationary air flow conditions according to detecting an absolute humidity increase of 1% in an air chamber atmosphere, and where determinations of water vapor transmission rate, water vapor resistance, water vapor permeability and water vapor pressure differential across the plate-like material sample are obtained via use of appropriate sensors installed within the housing of such testing device, including air temperature and humidity sensors, water temperature sensor, and an evaporative heat flux thermal sensor.
    • 本发明提供一种用于测量与通过板状材料样品,特别是纺织材料的水蒸汽转移有关的特性的方法,以及具有水容器,水容器气氛或顶部空间,空气室和测量室的测量单元装置, 其中水容器顶部空间和空气室由这样的板状材料样品分开,以在静止空气流动条件下进行这种测量,根据在空气室气氛中检测到1%的绝对湿度增加,并且在确定水蒸汽传播 通过使用安装在这种测试装置的壳体内的适当的传感器,包括空气温度和湿度传感器,水温传感器和一个或多个测量装置,可以获得板状材料样品上的速率,水蒸气阻力,水汽渗透性和水蒸气压差 蒸发热通量热传感器。