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Characterisation of Al-Ti dissimilar material joints fabricated using ultrasonic additive manufacturing

机译:使用超声增材制造技术制造的Al-Ti异种材料接头的特性

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摘要

Ultrasonic additive manufacturing (UAM) is a solid state manufacturing process for joining thin metal tapes using principles of ultrasonic metal welding. The process operates at low temperatures, enabling dissimilar material welds without generating harmful intermetallic compounds. In this study, a 9 kW UAM system was used to create joints of Al 1100 and commercially pure titanium. Viable process parameters were identified through pilot weld studies via controlled variation of weld force, amplitude and weld speed. Push-pin delamination tests and shear tests were performed, comparing as-built, heat treated and spark plasma sintering treated samples. Heat treated and spark plasma sintering treated samples yielded mechanical strengths over twice that of as-built samples. Electron backscatter diffraction measurements show that deformation and grain refinement only take place in the aluminium layers. Heat treated samples exhibit a thin intermetallic layer, which is hypothesised as constraining the interface, leading to the improved strength.
机译:超声增材制造(UAM)是一种固态制造工艺,用于使用超声金属焊接原理连接薄金属带。该工艺在低温下运行,可进行异种材料焊接而不会产生有害的金属间化合物。在这项研究中,使用9 kW UAM系统创建Al 1100和商业纯钛的接头。通过中试焊接研究,通过控制焊接力,振幅和焊接速度的变化来确定可行的工艺参数。进行了图钉分层测试和剪切测试,比较了竣工,热处理和火花等离子体烧结处理的样品。热处理和火花等离子烧结处理后的样品产生的机械强度是原样的两倍。电子背散射衍射测量表明,变形和晶粒细化仅发生在铝层中。热处理过的样品表现出较薄的金属间化合物层,据认为这会限制界面,从而提高强度。

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