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Analysis of thermodynamic processes under high-voltage condenser welding with inductive dynamic drive

机译:具有电感动态驱动的高压冷凝器焊接下热力学过程的分析

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When obtaining fixed joints of different thickness from dissimilar materials, there arise difficulties associated with various thermophysical properties, and the likelihood of occurrence of intermetallic phases under chemical interaction. The use of super hard modes of thermodynamic effect during high-voltage condenser welding (HCW) provides localizing heat generation in the contact zone of the weld surfaces, activating the surface layers through converging the surfaces with the displacement of molten metal to the periphery of the contact zone and forming bonding in the solid phase.Recommendations are given for the use of technological methods of high-voltage capacitor welding depending on the combinations of welded alloys. A description of the nature and physical processes occurring at each technological reception is given.It is shown that the energy stored in the capacitor banks is spent on heat and power action. Variation of the mass of the induction - dynamic drive pusher and its inductance enables to adjust the ratio of thermal and mechanical components of the HCW process.The energy dispersion analysis of the experimental compounds obtained from dissimilar alloys confirms the absence of diffusion in high-voltage capacitor welding under super-rigid exposure modes.
机译:当从不同材料获得不同厚度的固定关节时,出现与各种热物理特性相关的困难,以及在化学相互作用下发生金属间相发生的可能性。在高压冷凝器焊接(HCW)期间的使用超硬模式的使用在焊接表面的接触区中提供了定位的热量,通过将表面与熔融金属的位移到的周边来激活表面层。接触区域和在固相中形成粘合。根据焊接合金的组合,给出了使用高压电容焊接技术方法的配置。给出了在每个技术接收处发生的性质和物理过程的描述。示出了存储在电容器组中的能量在热量和电力动作上。感应动态驱动推动器的质量的变化及其电感使得能够调节HCW过程的热和机械部件的比率。由不同合金获得的实验化合物的能量分散分析证实不存在在高压下的扩散超刚性曝光模式下电容焊接。

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