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    • 1. 发明申请
    • THREE-DIMENSIONAL MATRIX PHASED ARRAY SPOT WELD INSPECTION SYSTEM
    • 三维矩阵相位阵列焊接检测系统
    • WO2012154954A3
    • 2014-05-08
    • PCT/US2012037322
    • 2012-05-10
    • EDISON WELDING INST INCNA JEONG KSPENCER ROGERBOULWARE PAUL C
    • NA JEONG KSPENCER ROGERBOULWARE PAUL C
    • G01N29/00
    • G01N29/0645G01N29/24G01N29/262G01N29/28G01N2291/106G01N2291/2672
    • A system for characterizing a spot weld including an acoustic probe that further includes a plurality of ultrasonic transducer elements arranged in a curved array, wherein the transducer elements are operative to generate ultrasonic signals and to receive reflections thereof; and a combination of materials for allowing the probe to conform to a contoured surface of the spot weld while enabling sound energy to be transferred directly into the spot weld under test conditions; a phased array excitation unit coupled to the array of transducer elements for ultrasonically exciting transducer elements; and a controller coupled to the phased array excitation unit for controlling the operation of the phased array unit, gathering and processing information from the ultrasonic transducers, and generating a two-dimensional, color coded image that characterizes the integrity of the spot weld.
    • 一种用于表征点焊的系统,包括还包括以弯曲阵列布置的多个超声换能器元件的声探头,其中所述换能器元件可操作以产生超声信号并接收其反射; 以及用于允许探头符合点焊的轮廓表面的材料的组合,同时使声能直接转移到在测试条件下的点焊中; 耦合到用于超声波激发换能器元件的换能器元件阵列的相控阵激励单元; 以及耦合到相控阵激励单元的控制器,用于控制相控阵单元的操作,收集和处理来自超声波换能器的信息,以及生成表征点焊完整性的二维彩色编码图像。
    • 2. 发明申请
    • CONDUCTIVE HEAT RESISTANCE DEFORMATION WELDING METHOD
    • 导电耐热变形焊接方法
    • WO2008011148A3
    • 2008-06-19
    • PCT/US2007016462
    • 2007-07-20
    • EDISON WELDING INST INCKIMCHI MENACHEMJENNINGS JONATHON
    • KIMCHI MENACHEMJENNINGS JONATHON
    • B23K11/00
    • B23K11/0935
    • A conductive heat resistance deformation welding method for joining work pieces (100, 200) in a work assembly (1000). At least one cover sheet (300, 400), having a higher melting temperature and electrical resistance greater than either work pieces (100, 200) is applied. Passing an electrical current between a primary (500) and a secondary electrode (600) through the cover sheet (300, 400) causes the cover sheet n(300, 400) temperature to exceed the melting point of the work pieces (100, 200). Further heating and moving at least a portion of the work assembly (1000) sufficient to ensure physical contact between the work pieces (100,200) creates a weld pool including a portion of both work pieces (100,200). Solidification creates a weld joining the work pieces (100, 200).
    • 一种用于连接工件(1000)中的工件(100,200)的导电耐热变形焊接方法。 施加具有比任一工件(100,200)大的熔融温度和电阻的至少一个覆盖片(300,400)。 通过覆盖片(300,400)在初级(500)和次级电极(600)之间通过电流使盖板n(300,400)的温度超过工件(100,200)的熔点 )。 进一步加热和移动足以确保工件(100,200)之间的物理接触的工件(1000)的至少一部分产生包括两个工件(100,200)的一部分的焊接池。 凝固产生焊接工件(100,200)的焊缝。
    • 5. 发明申请
    • REMOTE HIGH-PERFORMANCE COMPUTING MATERIAL JOINING AND MATERIAL FORMING MODELING SYSTEM AND METHOD
    • 远程高性能计算材料加工和材料成型建模系统及方法
    • WO2009009204A3
    • 2009-03-19
    • PCT/US2008061032
    • 2008-04-21
    • EDISON WELDING INST INCBABU SUDARSANAMCONRARDY CHRISKHURANA SHUCHIGAN WEIZHANG WEI
    • BABU SUDARSANAMCONRARDY CHRISKHURANA SHUCHIGAN WEIZHANG WEI
    • G06G7/48B23K9/00
    • G06F19/00B23K9/02B23K31/02G06F17/5018
    • A remote high-performance computing material joining and material forming modeling system (100) enables a remote user (10) using a user input device (20) to use high speed computing capabilities to model materials joining and material forming processes. The modeling system (100) includes an interface module (200), an application module (300), a computing module (400), and a scheduling module (500). The interface module (200) is in operative communication with the user input device (20), as well as the application module (300), the computing module (400), and the scheduling module (500). The application module (300) is in operative communication with the interface module (200) and the computing module (400). The scheduling module (500) is in operative communication with the interface module (200) and the computing module (400). Lastly, the computing module (400) is in operative communication with the interface module (200), the application module (300), and the scheduling module (500).
    • 远程高性能计算材料连接和材料成形建模系统(100)使得能够使用用户输入装置(20)的远程用户(10)使用高速计算能力来模拟材料连接和材料形成过程。 建模系统(100)包括接口模块(200),应用模块(300),计算模块(400)和调度模块(500)。 接口模块(200)与用户输入设备(20)以及应用模块(300),计算模块(400)和调度模块(500)可操作地通信。 应用模块(300)与接口模块(200)和计算模块(400)操作通信。 调度模块(500)与接口模块(200)和计算模块(400)进行操作通信。 最后,计算模块(400)与接口模块(200),应用模块(300)和调度模块(500)进行操作通信。
    • 7. 发明申请
    • OPPOSED CURRENT FLOW MAGNETIC PULSE FORMING AND JOINING SYSTEM
    • 对流电流脉动成形与接合系统
    • WO2006091420A3
    • 2007-12-06
    • PCT/US2006005072
    • 2006-02-14
    • EDISON WELDING INST INCSHAO HAIPINGZHANG PEIHUI
    • SHAO HAIPINGZHANG PEIHUI
    • B21D26/14
    • B21D26/14B21J7/30B23K20/06B23K2201/06Y10T29/49803Y10T29/49805Y10T29/53417
    • An opposed current flow magnetic pulse forming and joining system (1 0) in electrical communication with a magnetic pulse power supply (20) having a positive connection (22) and a negative connection (24) The system (1 0) may be used in forming individual workpieces or joining multiple workpieces, including joining by magnetic pulse welding The system (10) includes a first section (loo), a second section (200), an insulator (300), and a first and a second pair of conductors (400, 500) The first and second sections (100, 200) cooperate to enclose the workp?ece(s) and function to create an electromagnetic force similar to that produced by a single closed coll The system (1 0) is configured to achieve desirable current flow by minimizing inductance, inductive reactance, and impedance in the conductors The pairs of conductors (400, 500) may incorporate closely spaced individual conductors, braided conductors, and coaxial conductors
    • 与具有正连接(22)和负连接(24)的磁脉冲电源(20)电连通的相对电流流脉动形成和接合系统(10)。系统(10)可用于 形成单个工件或连接多个工件,包括通过磁脉冲焊接接合。系统(10)包括第一部分(loo),第二部分(200),绝缘体(300)和第一和第二对导体 第一和第二部分(100,200)协作以包围工件并且用于产生类似于由单个封闭coll产生的电磁力的功能。系统(10)被配置为实现 通过使导体中的电感,感抗和阻抗最小化来获得期望的电流。导体对(400,500)可以包括紧密间隔的各个导体,编织导体和同轴导体
    • 8. 发明申请
    • METHOD OF WELDING TITANIUM AND TITANIUM BASED ALLOYS TO FERROUS METALS
    • 焊接钛和钛基合金对金属的方法
    • WO2004085696A3
    • 2006-09-21
    • PCT/US2004008218
    • 2004-03-18
    • EDISON WELDING INST INCHALL PETER C
    • HALL PETER C
    • B23K26/20B23K26/40B23K35/30B23K26/00
    • B23K35/3053B23K26/211B23K35/3066B23K35/3093B23K2203/02B23K2203/14B23K2203/24Y10T428/12806Y10T428/12979
    • A method of welding titanium, and titanium based alloys, (100) to ferrous metals (200) is described. Welding of titanium, and titanium based alloys, (100) is plagued with poor quality and highly brittle welds, substantially due to formation of Ti-Fe intermetallics in the weld pool (600). The instant invention provides supplementary filler material (400) to alter the proportions of various elements in the weld pool (600). Certain fillers (400), such as nickel or iron, added to the weld pool (600) enable high quality welds to be fabricated utilizing a wide variety of fusion welding techniques, including laser welding, between titanium, or titanium based alloys, (100) and ferrous metals (200), including but not limited to the welding of nickel-titanium and stainless steel. Filler material (400) may be supplied in various forms, including foil (410), wire (110) (210), powders, preformed gaskets, and others. Optionally, the titanium or titanium based alloy (100) may be stress relieved to achieve full recovery of the shape memory strain prior to welding.
    • 描述了将钛和钛基合金(100)焊接到黑色金属(200)的方法。 钛和钛基合金(100)的焊接困难,质量差和焊接痕迹很大,这主要是由于在焊池(600)中形成Ti-Fe金属间化合物。 本发明提供补充填料(400)以改变焊池(600)中各种元素的比例。 添加到焊池(600)中的某些填料(400),例如镍或铁,可以利用在钛或钛基合金之间的各种熔焊技术(包括激光焊接),(100 )和黑色金属(200),包括但不限于镍钛和不锈钢的焊接。 填充材料(400)可以以各种形式提供,包括箔(410),线(110)(210),粉末,预成型垫圈等。 任选地,钛或钛基合金(100)可以被应力释放以在焊接之前实现形状记忆应变的完全恢复。