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    • 61. 发明授权
    • Method of joining part having high fatigue strength
    • 接合疲劳强度高的部件的方法
    • US09044831B2
    • 2015-06-02
    • US13816053
    • 2011-06-29
    • Akira NozueOsamu Kimpara
    • Akira NozueOsamu Kimpara
    • B23K31/00B23K20/02B23K11/00B23K20/00B23P11/02
    • B23K31/00B23K11/002B23K20/008B23K20/021B23K20/028B23K2101/006B23P11/02
    • A method of joining using a supporting electrode 4 having a cooling circuit and a pressure electrode 8 movably arranged above the supporting electrode, using a steel material causing martensitic transformation for one of or both of a first member 20 having an opening portion and a second member 24, engaging the second member with the opening portion of the first member, starting conduction from a power supply to the supporting electrode and the pressure electrode, allowing an insertion portion of the second member to enter the opening portion of the first member by a pressure force of the pressure electrode, causing the second member and an inner wall portion of the opening portion to be subjected to solid-phase diffusion joining, rapidly cooling the both members by thermal conduction of the supporting electrode after the joining, and quenching a joined portion and generating compressive residual stress by the rapid cooling.
    • 使用具有冷却回路的支撑电极4和可移动地布置在支撑电极上方的压力电极8使用对具有开口部分的第一构件20中的一个或两者进行马氏体相变的钢材进行接合的方法和第二构件 如图24所示,第二构件与第一构件的开口部接合,从电源向支撑电极和压力电极开始导通,允许第二构件的插入部通过压力进入第一构件的开口部 压力电极的力,使第二构件和开口部的内壁部进行固相扩散接合,通过接合后的支撑电极的热传导来迅速冷却两构件,并且淬火接合部 并通过快速冷却产生压缩残余应力。
    • 65. 发明授权
    • Robotic processing system and method
    • 机器人处理系统及方法
    • US08934999B2
    • 2015-01-13
    • US13372472
    • 2012-02-13
    • Nicholas R. Kalayjian
    • Nicholas R. Kalayjian
    • G06F19/00B23K1/002B23K31/00B23K31/02
    • B23K3/0653
    • A robotic processing system includes a microprocessor-controlled workpiece processor having a mobile processing element to be positioned independently in three orthogonal dimensions with respect to each of a plurality of target locations on a workpiece, with each particular target location of the plurality of target locations including an element to be processed, the mobile processing element processing the element at each particular target location by first moving to an initial location that is offset from the particular target location in a single dimension and then second moving along the single dimension towards the element at the particular target location until a contact signal is detected; and a control, coupled to the workpiece and to the mobile processing element, communicating the contact signal to the workpiece processor when the processing element makes physical contact with the element at the particular target location.
    • 机器人处理系统包括微处理器控制的工件处理器,其具有可相对于工件上的多个目标位置中的每一个独立地以三个正交尺寸独立地定位的移动处理元件,多个目标位置的每个特定目标位置包括 要处理的元件,移动处理元件通过首先移动到在单个维度上偏离特定目标位置的初始位置,然后沿着单个维度向着元件移动,在每个特定目标位置处处理元件 特定目标位置,直到检测到接触信号; 以及耦合到工件和移动处理元件的控制器,当处理元件与特定目标位置处的元件进行物理接触时,将接触信号传递到工件处理器。
    • 67. 发明授权
    • Method of reattaching an end assembly to a well car
    • 将端部组件重新安装到井车的方法
    • US08820613B2
    • 2014-09-02
    • US13717140
    • 2012-12-17
    • TTX Company
    • William R. HalliarFrank F. StecBruce E. Keating
    • B23K31/00B23K31/02B60P3/06
    • B23K31/02B61D3/20B61F1/08
    • A method of shortening an end of a well car includes removing a plurality of parts that would inhibit the shortening process; cutting a shear plate and a set of side sill angles at a location on the well side of the end assembly; detaching the end assembly from a main body of the well car; on each side of the main body: cutting the top tube at a location above a monument plate that is just beyond a reinforcement plate attached to the monument plate; cutting through a weld between the monument and reinforcement plates and a side sheet; cutting through the side sheet generally at the attachment location of the monument and reinforcement plates; and cutting the shear plate of the main body with a contoured cut such that the remaining shear plate has a contoured pattern substantially matching the cut shear plate under the removed end assembly.
    • 一种缩短井车的端部的方法包括:去除抑制缩短过程的多个部分; 在端部组件的井口侧的位置处切割剪切板和一组侧视角; 将端部组件从井车的主体上拆下; 在主体的每一侧:将顶管切割在刚好超出附着在纪念碑板上的加强板的纪念碑板之上的位置; 通过纪念碑和加强板之间的焊缝切割和侧片; 通常在纪念碑和加强板的附着位置切割侧片; 并且用轮廓切割来切割主体的剪切板,使得剩余的剪切板具有基本上与被移除的端部组件下方的剪切剪切板相匹配的轮廓图案。