User-centric method of aggregating information sources to reinforce digital identity
    4.
    发明申请
    User-centric method of aggregating information sources to reinforce digital identity 有权
    以用户为中心的聚合信息源的方法来加强数字身份

    公开(公告)号:US20060121987A1

    公开(公告)日:2006-06-08

    申请号:US11005674

    申请日:2004-12-07

    IPC分类号: G06F17/00 G06F19/00

    摘要: Systems and methods for providing a digital identity or profile in a gaming console that communicates to a remote service. A “Gamer Profile” is created that serves as a building block for services and applications that aim to create a social community of gamers and grow relationships among players. In accordance with the present invention, the Gamer Profile is the entirety of information (e.g., metadata) related to a specific user. The Gamer Profile is developed from a set of services that collect and expose this information in a meaningful way to the community. Feedback information may be included that is provided by other users to further enhance the profile. The Gamer Profile also provides for personalization such that users can customize their gaming experience.

    摘要翻译: 在与远程服务通信的游戏控制台中提供数字身份或简档的系统和方法。 创建了一个“玩家简介”,作为服务和应用程序的构建块,旨在创建游戏玩家的社交社区并增加玩家之间的关系。 根据本发明,游戏者简档是与特定用户相关的整体信息(例如,元数据)。 Gamer Profile是从一系列服务开发的,这些服务以有意义的方式收集和公开这些信息给社区。 可以包括由其他用户提供的反馈信息以进一步增强简档。 Gamer Profile还提供个性化功能,使用户可以自定义游戏体验。

    BONDED La(Fe,Si)13-BASED MAGNETOCALORIC MATERIAL AND PREPARATION AND USE THEREOF
    10.
    发明申请
    BONDED La(Fe,Si)13-BASED MAGNETOCALORIC MATERIAL AND PREPARATION AND USE THEREOF 审中-公开
    粘结La(Fe,Si)13基磁性材料及其制备及其应用

    公开(公告)号:US20150047371A1

    公开(公告)日:2015-02-19

    申请号:US14359685

    申请日:2012-05-17

    IPC分类号: H01F1/01 F25B21/00

    摘要: Provided is a high-strength, bonded La(Fe, Si)13-based magnetocaloric material, as well as a preparation method and use thereof. The magnetocaloric material comprises magnetocaloric alloy particles and an adhesive agent, wherein the particle size of the magnetocaloric alloy particles is less than or equal to 800 μm and are bonded into a massive material by the adhesive agent; the magnetocaloric alloy particle has a NaZn13-type structure and is represented by a chemical formula of La1-xRx(Fe1-p-qCopMnq)13-ySiyAα, wherein R is one or more selected from elements cerium (Ce), praseodymium (Pr) and neodymium (Nd), A is one or more selected from elements C, H and B, x is in the range of 0≦x≦0.5, y is in the range of 0.8≦y≦2, p is in the range of 0≦p≦0.2, q is in the range of 0≦q≦0.2, α is in the range of 0≦α≦3.0. Using a bonding and thermosetting method, and by means of adjusting the forming pressure, thermosetting temperature, and thermosetting atmosphere, etc., a high-strength, bonded La(Fe, Si)13-based magnetocaloric material can be obtained, which overcomes the frangibility, the intrinsic property, of the magnetocaloric material. At the same time, the magnetic entropy change remains substantially the same, as compared with that before the bonding. The magnetic hysteresis loss declines as the forming pressure increases. And the effective refrigerating capacity, after the maximum loss being deducted, remains unchanged or increases.

    摘要翻译: 提供高强度的La(Fe,Si)13基磁热材料及其制备方法和用途。 磁热材料包括磁热合金颗粒和粘合剂,其中磁热合金颗粒的颗粒尺寸小于或等于800μm,并通过粘合剂粘合成块状材料; 磁热合金颗粒具有NaZn13型结构,并且由La1-xRx(Fe1-p-qCopMnq)13-ySiyAα的化学式表示,其中R是选自元素铈(Ce),镨(Pr) 和钕(Nd),A是选自元素C,H和B中的一种或多种,​​x在0和nlE的范围内; x和nlE; 0.5,y在0.8和nlE的范围内; y和nlE; 2,p在 0≦̸ p≦̸ 0.2,q在0和nlE的范围内; q≦̸ 0.2,α在0< nEE;α≦̸ 3.0的范围内。 使用粘结和热固化方法,通过调整成型压力,热固化温度和热固性气氛等,可以获得高强度的La(Fe,Si)13基磁热材料,克服了 易磁性,内在性质,磁热材料。 同时,与接合前相比,磁熵变保持基本相同。 随着成形压力的增加,磁滞损耗下降。 扣除最大损失后的有效制冷量保持不变或增加。