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    • 1. 发明申请
    • MATERIAL WETTABILITY CHARACTERIZATION AND CHEMICAL ADDITIVE EVALUATION
    • 材料湿度特性和化学添加剂评估
    • US20110106456A1
    • 2011-05-05
    • US12610578
    • 2009-11-02
    • Geza Horvath SzaboDmitry EskinWael AbdallahPaul Swenson
    • Geza Horvath SzaboDmitry EskinWael AbdallahPaul Swenson
    • G06F19/00G01N31/00
    • G01N13/00
    • Methods and related systems are described for determining a property of a solid material relating to wettability, and for evaluating chemical additives. A solid particle is positioned at an interface between a lighter fluid phase, such as oil, and a denser fluid phase, such as water. An external force is applied, preferably with a centrifuge, so as to urge the solid particle into the denser fluid phase. An observation is made as to whether the particles has passed through the denser fluid phase, and based on the observation the contact angle is calculated. The calculation is also based on the densities of each fluid phase, of the solid material, the amount of the external force applied, size of the solid material, and interfacial tension between the two phases. The calculation also preferably accounts for two curvatures representing the interface between the first phase and the second phase as deformed by the solid material.
    • 描述了用于确定与润湿性相关的固体材料的性质以及用于评估化学添加剂的方法和相关系统。 固体颗粒位于较轻的流体相(例如油)和更致密的流体相(例如水)之间的界面处。 施加外力,优选使用离心机,以便将固体颗粒推入更致密的流体相。 观察颗粒是否已经通过更密集的流体相,并且基于观察,计算接触角。 计算还基于每个流体相,固体材料的密度,施加的外力的量,固体材料的尺寸和两相之间的界面张力。 该计算还优选表示由固体材料变形的表示第一相和第二相之间的界面的两个曲率。
    • 8. 发明授权
    • Material wettability characterization and chemical additive evaluation
    • 材料润湿性表征和化学添加剂评估
    • US08201439B2
    • 2012-06-19
    • US12610578
    • 2009-11-02
    • Geza Horvath SzaboDmitry EskinWael AbdallahPaul Swenson
    • Geza Horvath SzaboDmitry EskinWael AbdallahPaul Swenson
    • G01N13/00
    • G01N13/00
    • Methods and related systems are described for determining a property of a solid material relating to wettability, and for evaluating chemical additives. A solid particle is positioned at an interface between a lighter fluid phase, such as oil, and a denser fluid phase, such as water. An external force is applied, preferably with a centrifuge, so as to urge the solid particle into the denser fluid phase. An observation is made as to whether the particles has passed through the denser fluid phase, and based on the observation the contact angle is calculated. The calculation is also based on the densities of each fluid phase, of the solid material, the amount of the external force applied, size of the solid material, and interfacial tension between the two phases. The calculation also preferably accounts for two curvatures representing the interface between the first phase and the second phase as deformed by the solid material.
    • 描述了用于确定与润湿性相关的固体材料的性质以及用于评估化学添加剂的方法和相关系统。 固体颗粒位于较轻的流体相(例如油)和更致密的流体相(例如水)之间的界面处。 施加外力,优选使用离心机,以便将固体颗粒推入更致密的流体相。 观察颗粒是否已经通过更密集的流体相,并且基于观察,计算接触角。 计算还基于每个流体相,固体材料的密度,所施加的外力的量,固体材料的尺寸和两相之间的界面张力。 该计算还优选表示由固体材料变形的表示第一相和第二相之间的界面的两个曲率。
    • 9. 发明申请
    • Device and method for supporting a flag on a flagpole
    • 在旗杆上支持旗帜的装置和方法
    • US20050193940A1
    • 2005-09-08
    • US11065338
    • 2005-02-23
    • Paul Swenson
    • Paul Swenson
    • G09F17/00
    • G09F17/00
    • Disclosed is flagpole assembly comprising a flagpole; a flag having a periphery; upper and lower flag couplings configured to couple one side of the periphery of the flag to the flagpole; and at least one flag positioning ring configured to be positioned around the flagpole with a tight fit and between the upper and lower flag couplings and adjacent the upper flag coupling to maintain a substantially fixed position of the upper flag coupling, wherein the at least one flag positioning ring is configured to be removably attachable to the flagpole and independent from the flag and the upper flag coupling.
    • 公开了包括旗杆的旗杆组件; 一个有外围的旗帜 上和下标志联接器被配置为将标志的外围的一侧连接到旗杆; 以及至少一个标记定位环,其被配置为以紧密配合位于所述旗杆周围,并且在所述上标志联接件和所述上标志联接件之间并且邻近所述上标志联接器以保持所述上标志联接器的基本上固定的位置,其中所述至少一个标志 定位环被配置为可拆卸地附接到旗杆,并且独立于标志和上部标志联接。