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    • 1. 发明授权
    • System for learning trail application creation
    • 用于学习跟踪应用程序创建的系统
    • US09189966B2
    • 2015-11-17
    • US13552393
    • 2012-07-18
    • Yiqun LiAiyuan GuoYan GaoAttila Szabo
    • Yiqun LiAiyuan GuoYan GaoAttila Szabo
    • G06F17/00G09B7/02G09B19/00G09B29/00G09B29/10
    • G09B7/02G09B19/00G09B19/0061G09B29/007G09B29/10
    • A server configured to create a learning trail application for a geographic area. The server includes a processor configured to: provide a template having a plurality of fields including a location field configured to receive the geographic area and an image archive field configured to receive images; receive template data for placement as the content of one or more of the plurality of fields; receive instructions for determining the placement of the template data into one or more of the plurality of fields; and generate the learning trail application from the template with the received template data. During execution of the application, the application is configured to receive at least one input image, determine whether a match exists between the input images and the content in the image archive field and display the template data associated with the content in the image archive field, when a match exists.
    • 配置为为地理区域创建学习轨迹应用程序的服务器。 所述服务器包括:处理器,被配置为:提供具有多个字段的模板,所述多个字段包括被配置为接收所述地理区域的位置字段和被配置为接收图像的图像归档字段; 接收用于放置的模板数据作为所述多个字段中的一个或多个的内容; 接收用于确定将所述模板数据放置在所述多个字段中的一个或多个中的指令; 并从模板生成学习跟踪应用程序与接收到的模板数据。 在应用程序的执行期间,应用被配置为接收至少一个输入图像,确定输入图像与图像归档区域中的内容之间是否存在匹配,并且在图像归档域中显示与内容相关联的模板数据, 当比赛存在时
    • 2. 发明申请
    • System For Learning Trail Application Creation
    • 学习路线应用程序创建系统
    • US20130297675A1
    • 2013-11-07
    • US13552393
    • 2012-07-18
    • Yiqun LIAiyuan GuoYan GaoAttila Szabo
    • Yiqun LIAiyuan GuoYan GaoAttila Szabo
    • G06F15/16
    • G09B7/02G09B19/00G09B19/0061G09B29/007G09B29/10
    • A server configured to create a learning trail application for a geographic area. The server includes a processor configured to: provide a template having a plurality of fields including a location field configured to receive the geographic area and an image archive field configured to receive images; receive template data for placement as the content of one or more of the plurality of fields; receive instructions for determining the placement of the template data into one or more of the plurality of fields; and generate the learning trail application from the template with the received template data. During execution of the application, the application is configured to receive at least one input image, determine whether a match exists between the input images and the content in the image archive field and display the template data associated with the content in the image archive field, when a match exists.
    • 配置为为地理区域创建学习轨迹应用程序的服务器。 所述服务器包括:处理器,被配置为:提供具有多个字段的模板,所述多个字段包括被配置为接收所述地理区域的位置字段和被配置为接收图像的图像归档字段; 接收用于放置的模板数据作为所述多个字段中的一个或多个的内容; 接收用于确定将所述模板数据放置在所述多个字段中的一个或多个中的指令; 并从模板生成学习跟踪应用程序与接收到的模板数据。 在应用程序的执行期间,应用被配置为接收至少一个输入图像,确定输入图像与图像归档区域中的内容之间是否存在匹配,并且在图像归档域中显示与内容相关联的模板数据, 当比赛存在时
    • 5. 发明申请
    • WELDING PROCESS FOR LARGE STRUCTURES
    • 大型结构焊接工艺
    • US20120255990A1
    • 2012-10-11
    • US13079854
    • 2011-04-05
    • Attila Szabo
    • Attila Szabo
    • B23K20/12
    • B23K20/124B23K20/126F05B2230/239Y02E10/72
    • A welding method that utilizes a friction stir welding (FSW) technique to weld large structures, for example, very large cylindrical tower sections of wind turbines. The method involves welding at least two workpieces together by metallurgically joining faying surfaces of the workpieces. The workpieces are placed together so that their faying surfaces face each other and a joint region is defined by and between the faying surfaces. The workpieces are then friction stir welded together by forcing a tool into the joint region, rotating the tool about an axis thereof to cause the tool to penetrate the joint region, and causing the tool to travel along the joint region to form a weld joint that metallurgically joins the faying surfaces and produces a welded assembly comprising the workpieces.
    • 一种利用摩擦搅拌焊接(FSW)技术焊接大型结构的焊接方法,例如,风力涡轮机的非常大的圆柱形塔架部分。 该方法包括通过冶金连接工件的拼接表面将至少两个工件焊接在一起。 工件被放置在一起,使得它们的配合面彼此面对,并且接合区域由接合面之间和之间限定。 然后将工件通过迫使工具进入接合区域而将工件摩擦搅拌焊接在一起,使工具围绕其轴线旋转以使工具穿过接合区域,并使工具沿着接合区域行进以形成焊接接头, 冶金地连接接合表面并产生包括工件的焊接组件。
    • 7. 发明申请
    • COLD METAL TRANSFER HARDFACING OF BUCKETS
    • BUCKETS的金属转移危害
    • US20120294729A1
    • 2012-11-22
    • US13108939
    • 2011-05-16
    • Attila SzaboJohn Drake Vanselow
    • Attila SzaboJohn Drake Vanselow
    • F03B3/12B23K9/24
    • B23K9/044B23K9/09B23K2101/001F01D5/225F05D2230/232F05D2230/30F05D2300/506F05D2300/702
    • In one embodiment, the invention provides a method of hardfacing a portion of a bucket subject to mechanical stress, the method comprising: contacting a surface of a bucket with a hardfacing filler metal connected to a welding nozzle to establish an arc between the surface and the filler metal and form a molten weld pool comprising the filler metal and a material of the surface; extending the filler metal into the molten weld pool to short circuit the arc; withdrawing the filler metal from the molten weld pool to re-establish the arc; moving the welding nozzle along the surface; and re-extending the filler metal into the molten weld pool to short circuit the arc, deposit additional filler metal into the molten weld pool, and liquify additional material of the surface into the molten weld pool.
    • 在一个实施例中,本发明提供了一种使机械应力的铲斗的一部分表面硬化的方法,该方法包括:将铲斗的表面与连接到焊接喷嘴的硬化填充金属接触,以在表面和 填充金属并形成包括填充金属和表面材料的熔融熔池; 将填充金属延伸到熔融焊池中以使电弧短路; 从熔融焊池中取出填充金属以重新建立电弧; 沿着表面移动焊接喷嘴; 并将填充金属重新延伸到熔融熔池中以使电弧短路,将另外的填充金属沉积到熔融焊池中,并将表面的附加材料液化成熔融熔池。