Object specific language extension interface for a multi-level data structure
    1.
    发明申请
    Object specific language extension interface for a multi-level data structure 失效
    用于多级数据结构的对象专用语言扩展接口

    公开(公告)号:US20070118489A1

    公开(公告)日:2007-05-24

    申请号:US11284150

    申请日:2005-11-21

    IPC分类号: G06F15/18

    CPC分类号: G10L13/04 G06F17/2775

    摘要: A computerized method (300) and software product (200) is provided for querying and modifying a Multi-Level Data Structure (106) stored in a Text-to-Speech (100) engine of a data processing system having a Central Processing Unit (202), a processing system memory (203), and an operating system (201), using an application program written in an interpretive programming language. The method includes the steps of initializing (302) by means of the CPU implementing a set of commands, a data processing environment for processing the application program, processing (306) the application program, where the processing includes identifying a marked command that encapsulates a DPMS program, and upon identifying a marked command, operating (318) on the MLDS using a DPMS interpreter for producing a result from the MLDS, the result available to the application program during execution of the application program.

    摘要翻译: 提供了一种计算机化方法(300)和软件产品(200),用于查询和修改存储在具有中央处理单元的数据处理系统的文本到语音(100)引擎中的多级数据结构(106) 202),处理系统存储器(203)和操作系统(201),使用以解释性编程语言编写的应用程序。 该方法包括以下步骤:借助于实现一组命令的CPU初始化(302),处理应用程序的数据处理环境,处理(306)应用程序,其中处理包括识别封装了一个 DPMS程序,并且在识别标记的命令时,使用DPMS解释器在MLDS上操作(318)以产生来自MLDS的结果,该应用程序在执行应用程序期间可用的结果。

    Performance of oxide dispersion strengthened superconductor composites
    2.
    发明授权
    Performance of oxide dispersion strengthened superconductor composites 失效
    氧化物分散强化超导体复合材料的性能

    公开(公告)号:US06436875B2

    公开(公告)日:2002-08-20

    申请号:US09815063

    申请日:2001-03-22

    IPC分类号: C04B3564

    摘要: The invention features high performing composite superconducting oxide articles that can be produced from OPIT precursors substantially without poisoning the superconductor. In general, the superconducting oxide is substantially surrounded by a matrix material. The matrix material contains a first constraining material including a noble metal and a second metal. The second metal is a relatively reducing metal which lowers the overall oxygen activity of the matrix material and the article at a precursor process point prior to oxidation of the second metal. The second metal is substantially converted to a metal oxide dispersed in the matrix during or prior to a first phase conversion heat treatment but after formation of the composite, creating an ODS matrix.

    摘要翻译: 本发明的特征在于高性能复合超导氧化物制品,其可以从OPIT前体生产,而不会使超导体中毒。 通常,超导氧化物基本上被基质材料包围。 基质材料含有包含贵金属和第二金属的第一约束材料。 第二种金属是相对还原的金属,其降低了在第二金属氧化之前的前体工艺点处的基质材料和制品的整体氧活性。 在第一相转化热处理期间或之前,第二金属基本上转化为分散在基质中的金属氧化物,但是在形成复合材料之后,形成ODS基体。

    Performance of oxide dispersion strengthened superconductor composites
    4.
    发明授权
    Performance of oxide dispersion strengthened superconductor composites 失效
    氧化物分散强化超导体复合材料的性能

    公开(公告)号:US06305070B1

    公开(公告)日:2001-10-23

    申请号:US08731302

    申请日:1996-10-15

    IPC分类号: H01L3924

    摘要: The invention features high performing composite superconducting oxide articles that can be produced from OPIT precursors substantially without poisoning the superconductor. In general, the superconducting oxide is substantially surrounded by a matrix material. The matrix material contains a first constraining material including a noble metal and a second metal. The second metal is a relatively reducing metal which lowers the overall oxygen activity of the matrix material and the article at a precursor process point prior to oxidation of the second metal. The second metal is substantially converted to a metal oxide dispersed in the matrix during or prior to a first phase conversion heat treatment but after formation of the composite, creating an ODS matrix.

    摘要翻译: 本发明的特征在于高性能复合超导氧化物制品,其可以从OPIT前体生产,而不会使超导体中毒。 通常,超导氧化物基本上被基质材料包围。 基质材料含有包含贵金属和第二金属的第一约束材料。 第二种金属是相对还原的金属,其降低了在第二金属氧化之前的前体工艺点处的基质材料和制品的整体氧活性。 在第一相转化热处理期间或之前,第二金属基本上转化为分散在基质中的金属氧化物,但是在形成复合材料之后,形成ODS基体。