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    • 8. 发明授权
    • Radiation detectable and protective articles
    • 辐射可检测和防护用品
    • US08334524B2
    • 2012-12-18
    • US12351786
    • 2009-01-09
    • Ronald DeMeoJoseph KucherovskyAmit Kurupathi
    • Ronald DeMeoJoseph KucherovskyAmit Kurupathi
    • G21F3/02
    • G21F3/02G01V5/0008G21F1/00G21F5/00G21Y2002/301G21Y2002/304G21Y2002/60G21Y2004/303G21Y2004/40
    • Compositions and processes for forming radiopaque polymeric articles are disclosed. In one embodiment, radiation inspection apparatuses and methods are then used to determine the presence and attributes of such radiopaque polymeric articles. A radiopaque polymeric article of the present invention can be created by mixing a radiopaque material, such as barium, bismuth, tungsten or their compounds, with a powdered polymer, pelletized polymer or liquid solution, emulsion or suspension of a polymer in solvent or water. In addition to creating radiation detectable objects, the radiopaque polymeric materials of the present invention can be used to create radiation protective articles, such as radiation protective garments and bomb containment vessels. Enhanced radiation protection can also be achieved through the use of nano-materials. The principals of the present invention can be used to provide protection against other types of hazards, including fire, chemical, biological and projectile hazards.
    • 公开了用于形成不透射线的聚合物制品的组合物和方法。 在一个实施例中,然后使用辐射检查装置和方法来确定这种不透射线的聚合物制品的存在和属性。 本发明的不透射线的聚合物可以通过将不透射线材料例如钡,铋,钨或它们的化合物与粉末聚合物,颗粒状聚合物或液体溶液,聚合物在溶剂或水中的乳液或悬浮液混合而形成。 除了产生辐射可检测物体之外,本发明的不透射线的聚合材料可以用于产生辐射防护制品,例如辐射防护衣物和炸弹容纳容器。 还可以通过使用纳米材料来实现增强的辐射防护。 本发明的原理可用于提供防止其他类型的危害的保护,包括火灾,化学,生物和射弹危害。
    • 9. 发明授权
    • Radiation detectable and protective articles
    • 辐射可检测和防护用品
    • US07476889B2
    • 2009-01-13
    • US11019952
    • 2004-12-20
    • Ronald DeMeoJoseph KucherovskyAmit Kurupathi
    • Ronald DeMeoJoseph KucherovskyAmit Kurupathi
    • G21F3/02
    • G21F3/02G01V5/0008G21F1/00G21F5/00G21Y2002/301G21Y2002/304G21Y2002/60G21Y2004/303G21Y2004/40
    • Compositions and processes for forming radiopaque polymeric articles are disclosed. In one embodiment, radiation inspection apparatuses and methods are then used to determine the presence and attributes of such radiopaque polymeric articles. A radiopaque polymeric article of the present invention can be created by mixing a radiopaque material, such as barium, bismuth, tungsten or their compounds, with a powdered polymer, pelletized polymer or liquid solution, emulsion or suspension of a polymer in solvent or water. In addition to creating radiation detectable objects, the radiopaque polymeric materials of the present invention can be used to create radiation protective articles, such as radiation protective garments and bomb containment vessels. Enhanced radiation protection can also be achieved through the use of nano-materials. The principals of the present invention can be used to provide protection against other types of hazards, including fire, chemical, biological and projectile hazards.
    • 公开了用于形成不透射线的聚合物制品的组合物和方法。 在一个实施例中,然后使用辐射检查装置和方法来确定这种不透射线的聚合物制品的存在和属性。 本发明的不透射线的聚合物可以通过将不透射线材料例如钡,铋,钨或它们的化合物与粉末聚合物,颗粒状聚合物或液体溶液,聚合物在溶剂或水中的乳液或悬浮液混合而形成。 除了产生辐射可检测物体之外,本发明的不透射线的聚合材料可以用于产生辐射防护制品,例如辐射防护衣物和炸弹容纳容器。 还可以通过使用纳米材料来实现增强的辐射防护。 本发明的原理可用于提供防止其他类型的危害的保护,包括火灾,化学,生物和射弹危害。
    • 10. 发明申请
    • Radiation detectable and protective articles
    • 辐射可检测和防护用品
    • US20050211930A1
    • 2005-09-29
    • US11019952
    • 2004-12-20
    • Ronald DeMeoJoseph KucherovskyAmit Kurupathi
    • Ronald DeMeoJoseph KucherovskyAmit Kurupathi
    • A61N5/00G21F3/02
    • G21F3/02G01V5/0008G21F1/00G21F5/00G21Y2002/301G21Y2002/304G21Y2002/60G21Y2004/303G21Y2004/40
    • Compositions and processes for forming radiopaque polymeric articles are disclosed. In one embodiment, radiation inspection apparatuses and methods are then used to determine the presence and attributes of such radiopaque polymeric articles. A radiopaque polymeric article of the present invention can be created by mixing a radiopaque material, such as barium, bismuth, tungsten or their compounds, with a powdered polymer, pelletized polymer or liquid solution, emulsion or suspension of a polymer in solvent or water. In addition to creating radiation detectable objects, the radiopaque polymeric materials of the present invention can be used to create radiation protective articles, such as radiation protective garments and bomb containment vessels. Enhanced radiation protection can also be achieved through the use of nano-materials. The principals of the present invention can be used to provide protection against other types of hazards, including fire, chemical, biological and projectile hazards.
    • 公开了用于形成不透射线的聚合物制品的组合物和方法。 在一个实施例中,然后使用辐射检查装置和方法来确定这种不透射线的聚合物制品的存在和属性。 本发明的不透射线的聚合物可以通过将不透射线材料例如钡,铋,钨或它们的化合物与粉末聚合物,颗粒状聚合物或液体溶液,聚合物在溶剂或水中的乳液或悬浮液混合而形成。 除了产生辐射可检测物体之外,本发明的不透射线的聚合材料可以用于产生辐射防护制品,例如辐射防护衣物和炸弹容纳容器。 还可以通过使用纳米材料来实现增强的辐射防护。 本发明的原理可用于提供防止其他类型的危害的保护,包括火灾,化学,生物和射弹危害。