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    • 1. 发明申请
    • THERMOELECTRIC POLYMER COMPOSITE, METHOD OF MAKING AND USE OF SAME
    • 热电聚合物复合材料,其制造方法和使用方法
    • US20140345661A1
    • 2014-11-27
    • US13898521
    • 2013-05-21
    • Sayantan RoyDavid Peter GerrardOleksandr V. Kuznetsov
    • Sayantan RoyDavid Peter GerrardOleksandr V. Kuznetsov
    • H01L35/26H01L35/34
    • H01L35/26H01L35/24H01L35/34
    • A thermoelectric composite includes a plurality of particles comprising a crosslinked polymer having a heat deflection temperature greater than or equal to 200° F. and a segregated network comprising a first filler material which is disposed between the particles to produce a thermoelectric response in response to application of a voltage difference or temperature difference across the thermoelectric composite. The first filler material includes a carbon material, a metal, a metal disposed on a carbon material, or a combination thereof. A process for preparing a thermoelectric article includes combining a first filler material and a plurality of particles comprising a polymer to form a composition and molding the composition to form a thermoelectric article, wherein the thermoelectric article is configured to produce a thermoelectric response in response to application of a voltage difference or temperature difference across the article.
    • 热电复合材料包括多个颗粒,其包含具有大于或等于200°F的热变形温度的交联聚合物,以及分离的网络,其包括设置在颗粒之间的第一填料,以响应于应用产生热电响应 的热电复合材料之间的电压差或温度差。 第一填充材料包括碳材料,金属,设置在碳材料上的金属或其组合。 制备热电制品的方法包括组合第一填料和多个包含聚合物的颗粒以形成组合物并模塑该组合物以形成热电制品,其中热电制品被配置为响应于应用产生热电响应 跨越物品的电压差或温度差。
    • 4. 发明授权
    • Thermoelectric polymer composite, method of making and use of same
    • 热电聚合物复合材料,其制造和使用方法
    • US09595654B2
    • 2017-03-14
    • US13898521
    • 2013-05-21
    • Sayantan RoyDavid Peter GerrardOleksandr V. Kuznetsov
    • Sayantan RoyDavid Peter GerrardOleksandr V. Kuznetsov
    • H01L35/12H01L35/26H01L35/34
    • H01L35/26H01L35/24H01L35/34
    • A thermoelectric composite includes a plurality of particles comprising a crosslinked polymer having a heat deflection temperature greater than or equal to 200° F. and a segregated network comprising a first filler material which is disposed between the particles to produce a thermoelectric response in response to application of a voltage difference or temperature difference across the thermoelectric composite. The first filler material includes a carbon material, a metal, a metal disposed on a carbon material, or a combination thereof. A process for preparing a thermoelectric article includes combining a first filler material and a plurality of particles comprising a polymer to form a composition and molding the composition to form a thermoelectric article, wherein the thermoelectric article is configured to produce a thermoelectric response in response to application of a voltage difference or temperature difference across the article.
    • 热电复合材料包括多个颗粒,其包含具有大于或等于200°F的热变形温度的交联聚合物,以及分离的网络,其包括设置在颗粒之间的第一填料,以响应于应用产生热电响应 的热电复合材料之间的电压差或温度差。 第一填充材料包括碳材料,金属,设置在碳材料上的金属或其组合。 制备热电制品的方法包括组合第一填料和多个包含聚合物的颗粒以形成组合物并模塑该组合物以形成热电制品,其中热电制品被配置为响应于应用产生热电响应 跨越物品的电压差或温度差。
    • 8. 发明申请
    • DEGRADABLE MATERIAL FOR DOWNHOLE APPLICATIONS
    • 可降解材料用于井下应用
    • US20160145485A1
    • 2016-05-26
    • US14551976
    • 2014-11-24
    • James DoaneWayne FurlanPing DuanSayantan RoyAnil Sadana
    • James DoaneWayne FurlanPing DuanSayantan RoyAnil Sadana
    • C09K8/508E21B33/12
    • C09K8/5086C09K8/524E21B33/1208E21B33/134E21B43/26
    • In one aspect, degradable material is disclosed, including: a polyurethane component with a first degradation rate in a downhole environment; and a corrosive additive component with a second degradation rate that is higher than a first degradation rate in the downhole environment. In another aspect, a method of temporarily sealing a downhole zone is disclosed, including: providing a polyurethane component with a first degradation rate in a downhole environment; providing a corrosive additive component with a second degradation rate that is higher than a first degradation rate in the downhole environment; mixing the polyurethane component and the corrosive additive component to form a degradable material; sealing the downhole zone with the degradable material; exposing the degradable material to the downhole environment; and degrading the degradable material.
    • 一方面,公开了可降解材料,包括:在井下环境中具有第一降解速率的聚氨酯组分; 以及具有比井下环境中的第一降解速率高的第二降解速率的腐蚀性添加剂组分。 另一方面,公开了临时密封井下区域的方法,包括:在井下环境中提供具有第一降解速率的聚氨酯组分; 提供具有比井下环境中的第一降解速率高的第二降解速率的腐蚀性添加剂组分; 混合聚氨酯组分和腐蚀性添加剂组分以形成可降解材料; 用可降解材料密封井下区域; 将可降解材料暴露于井下环境; 并降解可降解材料。
    • 9. 发明申请
    • DEGRADABLE CASING SEAL CONSTRUCTION FOR DOWNHOLE APPLICATIONS
    • 适用于下水道应用的可降级铸件密封结构
    • US20160145964A1
    • 2016-05-26
    • US14552003
    • 2014-11-24
    • James DoaneWayne FurlanPing DuanSayantan RoyAnil Sadana
    • James DoaneWayne FurlanPing DuanSayantan RoyAnil Sadana
    • E21B33/128E21B23/06
    • E21B33/1208
    • In one aspect, a degradable apparatus is disclosed, including: an inner core with a first degradation rate in a downhole environment; an outer sheath disposed around an outer extent of the inner core with a second degradation rate less than the first degradation rate in the downhole environment. In another aspect, a method of temporarily sealing a downhole zone is disclosed, including: providing an inner core with a first degradation rate in a downhole environment; providing an outer sheath disposed around an outer extent of the inner core with a second degradation rate less than the first degradation rate in the downhole environment; sealing the downhole zone with the outer sheath; exposing the outer sheath to the downhole environment; and exposing the inner core to the downhole environment.
    • 一方面,公开了一种可降解装置,包括:在井下环境中具有第一降解速率的内核; 外护套,其设置在内芯的外部范围内,具有小于井下环境中的第一劣化率的第二降解率。 另一方面,公开了临时密封井下区域的方法,包括:在井下环境中提供具有第一降解速率的内核; 提供围绕所述内芯的外部范围设置的外护套,其具有小于所述井下环境中的所述第一降解速率的第二降解速率; 用外护套密封井下区域; 将外护套暴露于井下环境; 并将内芯暴露于井下环境中。