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    • 1. 发明授权
    • Method for the manufacture of a radiographic intensifying screen with
antistat
    • 用于制造具有抗静电剂的射线照相增强屏的方法
    • US5569485A
    • 1996-10-29
    • US319812
    • 1994-10-07
    • John C. DahlquistSubodh K. Kulkarni
    • John C. DahlquistSubodh K. Kulkarni
    • C09K3/16C09K11/02C09K11/08G21K4/00B05D3/06
    • G21K4/00G21K2004/08G21K2004/10G21K2004/12Y10T428/258Y10T428/31Y10T428/31663Y10T428/31855
    • The performance of phosphor screens can be improved by adding an antistatic agent into the protective topcoat of the radiographic screen when the antistatic agent preferably comprises a fluorocarbon or silicone antistatic agent. These antistatic agents are particularly useful where the screen is made by coating phosphor dispersion/mixture onto a substrate while the dispersion/mixture contains less than 5% by weight of polymerizable components with a molecular weight less than 300, preferably with less than 5% by weight of polymerizable components having molecular weights less than 500, and a topcoat contains the antistatic agent. Formation of the antistatic topcoat is preferably formed by inclusion of the antistatic agent into the polymerizable composition and allowing the antistatic agent to migrate to the surface of the composition during polymerization to form a layer consisting essentially of the antistatic agent. The polymerizable composition should be photopolymerizable, and other components within the coating to be photohardened which have molecular weights below 300 or 500 should likewise be kept to less than 5% by weight of the composition.
    • 当抗静电剂优选包括氟碳化合物或有机硅抗静电剂时,可以通过将抗静电剂添加到放射线照相屏幕的保护性面漆中来改善荧光屏的性能。 这些抗静电剂在通过将荧光体分散体/混合物涂布在基材上而制成的屏幕是特别有用的,同时分散体/混合物含有小于5重量%的分子量小于300的聚合性组分,优选小于5% 分子量小于500的可聚合组分的重量,以及顶涂层含有抗静电剂。 抗静电面漆的形成优选通过将抗静电剂包含在可聚合组合物中并使抗静电剂在聚合过程中迁移到组合物的表面以形成基本上由抗静电剂组成的层而形成。 可聚合组合物应该是可光聚合的,并且分子量低于300或500的待光硬化涂层中的其它组分同样应保持在组合物重量的小于5%。
    • 3. 发明授权
    • Radiographic intensifying screen with antistat
    • 防静电射线增强屏
    • US6027810A
    • 2000-02-22
    • US871179
    • 1997-06-09
    • John C. DahlquistSubodh K. Kulkarni
    • John C. DahlquistSubodh K. Kulkarni
    • C09K3/16C09K11/02C09K11/08G21K4/00G01J1/58B32B1/18
    • G21K4/00G21K2004/08G21K2004/10G21K2004/12Y10T428/258Y10T428/31Y10T428/31663Y10T428/31855
    • The performance of phosphor screens can be improved by adding an antistatic agent into the protective topcoat of the radiographic screen when the antistatic agent preferably comprises a fluorocarbon or silicone antistatic agent. These antistatic agents are particularly useful where the screen is made by coating phosphor dispersion/mixture onto a substrate while the dispersion/mixture contains less than 5% by weight of polymerizable components with a molecular weight less than 300, preferably with less than 5% by weight of polymerizable components having molecular weights less than 500, and a topcoat contains the antistatic agent. Formation of the antistatic topcoat is preferably formed by inclusion of the antistatic agent into the polymerizable composition and allowing the antistatic agent to migrate to the surface of the composition during polymerization to form a layer consisting essentially of the antistatic agent. The polymerizable composition should be photopolymerizable, and other components within the coating to be photohardened which have molecular weights below 300 or 500 should likewise be kept to less than 5% by weight of the composition.
    • 当抗静电剂优选包括氟碳化合物或有机硅抗静电剂时,可以通过将抗静电剂添加到放射线照相屏幕的保护性面漆中来改善荧光屏的性能。 这些抗静电剂在通过将荧光体分散体/混合物涂布在基材上而制成的屏幕是特别有用的,同时分散体/混合物含有小于5重量%的分子量小于300的聚合性组分,优选小于5% 分子量小于500的可聚合组分的重量,以及顶涂层含有抗静电剂。 抗静电面漆的形成优选通过将抗静电剂包含在可聚合组合物中并使抗静电剂在聚合过程中迁移到组合物的表面以形成基本上由抗静电剂组成的层而形成。 可聚合组合物应该是可光聚合的,并且分子量低于300或500的待光硬化涂层中的其它组分同样应保持在组合物重量的小于5%。
    • 8. 发明授权
    • Multi-module radiation detecting device and fabrication method
    • 多模块辐射检测装置及其制造方法
    • US5635718A
    • 1997-06-03
    • US585507
    • 1996-01-16
    • James M. DePuydtNang T. TranJames C. BrownThomas J. StaigerJohn C. DahlquistMeredith J. Williams
    • James M. DePuydtNang T. TranJames C. BrownThomas J. StaigerJohn C. DahlquistMeredith J. Williams
    • G01T1/24H01L27/14
    • H01L27/1469G01T1/243H01L27/14634H01L27/14636H01L2224/16225H01L27/14618
    • A multi-module radiation detecting device, a radiation detecting module for incorporation in a multi-module radiation detecting device, and a method for assembling a multi-module radiation detecting device are provided. The radiation detecting module includes a carrier substrate and a radiation detecting tile mounted over the carrier substrate. The module includes interconnection structure for connecting radiation detecting elements in the radiation detecting tile to conductive contacts on a base substrate. The module facilitates attachment and detachment of the module relative to the base substrate and relative to a test fixture used in test and burn-in operations. The module is constructed to isolate the radiation detecting tile from thermal and/or mechanical stresses produced at the interconnection interface during attachment and detachment for test and burn-in, assembly, and rework operations. As a result, the module can be used to produce a multi-module radiation detecting device having enhanced reliability. The module can help maintain device reliability despite rework operations, and can thereby reduce rework costs.
    • 提供了一种多模块放射线检测装置,用于并入多模块放射线检测装置的放射线检测模块以及组装多模块辐射检测装置的方法。 辐射检测模块包括载体基板和安装在载体基板上的辐射检测瓦片。 该模块包括用于将辐射检测瓦片中的辐射检测元件连接到基底基板上的导电触点的互连结构。 该模块有助于模块相对于基底基板和相对于在测试和老化操作中使用的测试夹具的附接和拆卸。 该模块被构造成将辐射检测瓦与在连接和拆卸期间在互连接口处产生的热和/或机械应力隔离以用于测试和老化,组装和返工操作。 结果,该模块可用于生产具有增强的可靠性的多模块辐射检测装置。 该模块可以帮助维护设备的可靠性,尽管返工操作,从而可以降低返工成本。