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    • 1. 发明授权
    • Silicon based composite material
    • 硅基复合材料
    • US08679679B2
    • 2014-03-25
    • US12350631
    • 2009-01-08
    • Pu ZhangSuresh ManiJunqing MaLiya WangJun Q. Chin
    • Pu ZhangSuresh ManiJunqing MaLiya WangJun Q. Chin
    • H01M4/134
    • H01B1/18H01B1/16
    • A composite material having utility as an anode for lithium ion batteries comprises silicon, a transition metal, a ceramic and an electrically conductive diluent such as carbon. In particular instances, the ceramic is electrically conductive, and may comprise vanadium carbide or tungsten carbide. The transition metal may, in some instances, comprise iron. The material may be fabricated by grinding together a starting mixture of the components, and grinding may be accomplished in a high impact ball milling process, and the grinding step may cause partial alloying of the silicon with the metal and/or carbon. Further disclosed is a method for making the material as well as electrodes which incorporate the material.
    • 作为用于锂离子电池的阳极的复合材料包括硅,过渡金属,陶瓷和诸如碳的导电稀释剂。 在特定情况下,陶瓷是导电的,并且可以包括碳化钒或碳化钨。 在一些情况下,过渡金属可以包含铁。 可以通过将组分的起始混合物一起研磨来制造材料,并且可以在高冲击球磨过程中实现研磨,并且研磨步骤可以引起硅与金属和/或碳的部分合金化。 进一步公开了制造该材料的方法以及结合该材料的电极。
    • 3. 发明申请
    • SOFTWARE ERROR DETECTION METHOD, SOFTWARE MODULE, DATABASE AND SYSTEM
    • 软件错误检测方法,软件模块,数据库和系统
    • US20090138854A1
    • 2009-05-28
    • US12275233
    • 2008-11-21
    • Suresh Mani
    • Suresh Mani
    • G06F11/36
    • G06F11/3664
    • A method of detecting errors in a software program when executed by a computer, is disclosed. The method comprises the following steps: providing a database comprising a collection of errors occurring in the software program, each error being associated with a location in the software program code triggering the occurrence of the error; accessing the database to retrieve said collection; marking the locations in the software program code that are specified in said collection; monitoring execution of the software program and, if the program execution arrives at one of said marked locations, and generating an output indicating the occurrence of an error. In an embodiment, the generation of the output is conditional and depends the evaluation of a data condition retrieved from said database. The data condition typically comprises parameters relating to a state of the software program at the marked location. This facilitates the detection of data-dependent errors. Other embodiments of the invention include a software module for monitoring the execution of a software program, a database providing the collection of errors and a system including a computer comprising the software module and a database.
    • 公开了一种当由计算机执行时检测软件程序中的错误的方法。 该方法包括以下步骤:提供包括在软件程序中出现的错误的集合的数据库,每个错误与软件程序代码中触发错误发生的位置相关联; 访问数据库以检索所述集合; 标记在所述集合中指定的软件程序代码中的位置; 监视软件程序的执行,以及如果程序执行到达所述标记位置之一,并且生成指示出现错误的输出。 在一个实施例中,输出的生成是有条件的,并且取决于从所述数据库检索的数据条件的评估。 数据条件通常包括与标记位置处的软件程序的状态有关的参数。 这有助于检测数据相关的错误。 本发明的其他实施例包括用于监视软件程序的执行的软件模块,提供错误集合的数据库以及包括软件模块和数据库的计算机的系统。
    • 6. 发明申请
    • SILICON BASED COMPOSITE MATERIAL
    • 硅基复合材料
    • US20090179181A1
    • 2009-07-16
    • US12350631
    • 2009-01-08
    • Pu ZhangSuresh ManiJunqing MaLiya WangJun Q. Chin
    • Pu ZhangSuresh ManiJunqing MaLiya WangJun Q. Chin
    • H01B1/18B32B5/16
    • H01B1/18H01B1/16
    • A composite material having utility as an anode for lithium ion batteries comprises silicon, a transition metal, a ceramic and an electrically conductive diluent such as carbon. In particular instances, the ceramic is electrically conductive, and may comprise vanadium carbide or tungsten carbide. The transition metal may, in some instances, comprise iron. The material may be fabricated by grinding together a starting mixture of the components, and grinding may be accomplished in a high impact ball milling process, and the grinding step may cause partial alloying of the silicon with the metal and/or carbon. Further disclosed is a method for making the material as well as electrodes which incorporate the material.
    • 作为用于锂离子电池的阳极的复合材料包括硅,过渡金属,陶瓷和诸如碳的导电稀释剂。 在特定情况下,陶瓷是导电的,并且可以包括碳化钒或碳化钨。 在一些情况下,过渡金属可以包含铁。 可以通过将组分的起始混合物一起研磨来制造材料,并且可以在高冲击球磨过程中实现研磨,并且研磨步骤可以引起硅与金属和/或碳的部分合金化。 进一步公开了制造该材料的方法以及结合该材料的电极。