首页> 外文期刊>Journal of Thermal Spray Technology >Jetting-Out Phenomenon Associated with Bonding of Warm-Sprayed Titanium Particles onto Steel Substrate
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Jetting-Out Phenomenon Associated with Bonding of Warm-Sprayed Titanium Particles onto Steel Substrate

机译:喷射现象与热喷涂钛颗粒结合到钢基底上有关

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Titanium powder particles accelerated and simultaneously heated by the supersonic gas flow were deposited onto steel substrate by the warm spraying process. The sprayed particles were heavily deformed and bonded to the substrate in solid state. Especially, all the deposited particles showed jetting-out of materials out of the particle-substrate interface triggered by the adiabatic shear instability known to occur under such shock impact conditions. High-magnified images showed that grain refinement occurred in the jetting-out region by dynamic recrystallization. Furthermore, the elemental analysis using the electron energy loss spectrum showed jetting-outs of the substrate as well as the particle. Numerical simulation based on the Johnson-Cook plastic deformation model showed that the jetting-out phenomenon commences about 10 ns after the initial contact of the particle with the substrate and at a position away from the center bottom of particle, where the highest compressive stress is experienced.
机译:通过热喷涂工艺将加速并同时被超声波气流加热的钛粉末颗粒沉积到钢基材上。喷涂的颗粒严重变形,并以固态键合到基材上。特别地,所有沉积的颗粒均显示出材料因已知在这种冲击条件下发生的绝热剪切不稳定性而从颗粒-基材界面中喷出。高倍图像显示,通过动态再结晶在喷出区域发生了晶粒细化。此外,使用电子能量损失谱的元素分析显示出基材以及颗粒的喷射。基于Johnson-Cook塑性变形模型的数值模拟表明,喷射现象始于颗粒与基材的初始接触后约10 ns,并且在远离颗粒中心底部的位置开始,该位置的最大压缩应力为有经验的。

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