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    • 72. 发明授权
    • Providing geocoded targeted web content
    • 提供地理编码的目标网页内容
    • US08473335B2
    • 2013-06-25
    • US12207086
    • 2008-09-09
    • Robert F. DeemingSteven B. Johnson
    • Robert F. DeemingSteven B. Johnson
    • G60Q40/00
    • H04L67/10G06F17/30241G06F17/3087
    • A system and method are disclosed for providing geocoded web content to a user based on a specific geographic location specified by the user. A determination module receives a geographic location from the user and determines latitude and longitude coordinates associated with the geographic location from a geographic information database. The determination module further determines a geographic boundary associated with the latitude and longitude coordinates based at least in part on an area of interest surrounding the geographic location. A web content search module determines web content comprising substance associated with a location within the geographic boundary. A front end interface transmits the determined web content for display in an order based at least in part on distance from the location associated with the web content to the geographic location.
    • 公开了一种系统和方法,用于基于由用户指定的特定地理位置向用户提供地理编码的网络内容。 确定模块从用户接收地理位置并且从地理信息数据库确定与地理位置相关联的纬度和经度坐标。 确定模块至少部分地基于地理位置周围的感兴趣区域来确定与纬度和经度坐标相关联的地理边界。 网页内容搜索模块确定包括与地理边界内的位置相关联的物质的网络内容。 前端接口至少部分地基于与与web内容相关联的位置到该地理位置的距离的顺序,以确定的web内容的顺序发送所确定的Web内容。
    • 74. 发明授权
    • Reinforcing member for vehicle center pillar
    • 车辆中心支柱加固件
    • US07815247B2
    • 2010-10-19
    • US12213526
    • 2008-06-20
    • Akira Obayashi
    • Akira Obayashi
    • B62D25/04
    • B62D25/04B62D25/025
    • Deformation by camber recovery etc. due to non-uniform residual stress is suppressed, and occurrence of crack and burr is suppressed by improving press forming property of a roof side T-shaped portion, so that a reinforcing member having a predetermined shape accuracy is manufactured easily and inexpensively by pressing. A reinforcing member (12) is constructed by three members, i.e. an upper member (20), a lower member (22) and a central member (24). A tensile strength of the upper member (20) is selected lower than that of the central member (24), and is higher than that of the lower member (22). In comparison to a case where the upper member (20) and the central member (24) are constructed integrally by an ultra-high tensile steel plate, fluctuation of internally generated residual stress is made small. Shape accuracy is thereby improved by the reduced deforming amount due to camber recovery etc., thus press forming being facilitated. Also, a roof side T-shaped portion constructed by the upper member (20) is improved in the drawing property, and the door frame corner portions (30) and (32) are improved in the outer trimming property. Thus, the shape accuracy is improved, and yield and productivity is increased by suppression of crack generation.
    • 抑制由于不均匀残余应力引起的弯曲恢复等的变形,通过提高屋顶侧T字形部分的冲压成形性能来抑制裂纹和毛刺的发生,从而制造具有预定形状精度的加强构件 轻松而便宜的按压。 加强构件(12)由三个构件构成,即上构件(20),下构件(22)和中心构件(24)。 上部构件(20)的拉伸强度选择为低于中心构件(24)的拉伸强度,并且高于下部构件(22)的拉伸强度。 与上部构件(20)和中央构件(24)由超高强度钢板一体构成的情况相比,内部产生的残余应力的波动变小。 由于由于弯曲恢复等而导致的变形量减小,因此提高了形状精度,从而便于冲压成形。 此外,由上部构件(20)构成的屋顶侧T形部分的拉伸性提高,并且门框角部(30)和(32)的外部修整性得到改善。 因此,提高了形状精度,并且通过抑制裂纹产生而提高了产率和生产率。
    • 79. 发明授权
    • Design-time representation for a first run-time environment with converting and executing applications for a second design-time environment
    • 第一个运行时环境的设计时表示,用于在第二个设计时环境中转换和执行应用程序
    • US07441228B2
    • 2008-10-21
    • US10658684
    • 2003-09-08
    • Joachim OttoGilles BerthelotChristof EngelArndt RosenthalIngo Helbig
    • Joachim OttoGilles BerthelotChristof EngelArndt RosenthalIngo Helbig
    • G06F9/44
    • G06F8/10G06F8/70
    • Techniques for converting and executing applications. The techniques include receiving an original design-time representation of an application, the original design-time representation for use in a first run-time environment for executing applications having been developed in a first design-time environment, the first design-time environment using a first programming model comprising one or more first model elements including screens and processing logic for each screen; and generating a converted design-time representation for use in a second run-time environment for executing applications having been developed in a second design-time environment, the second design-time environment using a second programming model comprising one or more second model elements including models, views, and controllers, the converted design-time representation including one or more application views based on the one or more application screens, and converted processing logic based on the original processing logic, the converted processing logic capable of being executed in the second run-time environment.
    • 用于转换和执行应用程序的技术。 这些技术包括接收应用的原始设计时表示,用于在第一运行时环境中用于执行在第一设计时环境中开发的应用的原始设计时表示,第一设计时环境使用 包括一个或多个第一模型元素的第一编程模型,包括用于每个屏幕的屏幕和处理逻辑; 以及生成用于在第二运行时环境中用于执行在第二设计时环境中开发的应用的转换的设计时表示,所述第二设计时环境使用包括一个或多个第二模型元素的第二编程模型,所述第二模型元素包括 模型,视图和控制器,基于一个或多个应用屏幕的转换的设计时间表示包括一个或多个应用视图,以及基于原始处理逻辑的转换的处理逻辑,能够在第二个 运行时环境。