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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Surface transformation hardening of Ti-5Al-2.5Sn alloy by pulsed Nd:YAG laser: an experimental study
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Surface transformation hardening of Ti-5Al-2.5Sn alloy by pulsed Nd:YAG laser: an experimental study

机译:脉冲Nd的Ti-5Al-2.5Sn合金的表面变换硬化:YAG激光:实验研究

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摘要

In this study, surface hardening of Ti-5Al-2.5Sn alloy was performed using a pulsed Nd:YAG laser. The effect of laser parameters including laser frequency, laser pulse width, laser speed, and focal point position was investigated on the microstructure, geometrical dimensions of hardened zone (hardened width, hardened depth, and entry angle of hardened zone), and micro-hardness. In the specimens with higher cooling rate, martensitic phase () is formed in the hardened zone, while in the specimens with lower cooling rate, combination of equaxied and acicular alpha phase is formed in the hardened zone. The laser speed has a significant effect on the overlapping factor compared to other laser variables. By increasing the laser speed, the cooling rate increase and the pulse overlapping decreases in the hardened zone. High cooling rate leads to the refinement of prior beta grain size in this zone. Combination of equiaxed and acicular alpha phase, as well as acicular martensitic phase, is observed in the transition zone. The martensitic phase is a dominant phase in location near the hardened zone. A laser power of 165W, lase frequency of 14Hz, pulse width of 22ms, laser speed of 105mm/min, and focal point position of +3.5mm are optimum parameters for obtaining the best laser surface hardening results. The presence of martensitic phase in the optimum sample causes an increase in the hardness about 36% as compare to the base metal.
机译:在该研究中,使用脉冲Nd:YAG激光进行Ti-5Al-2.5Sn合金的表面硬化。在微观结构,硬化区的几何尺寸(硬化区硬化宽度,硬化深度和进入角度)的微观结构,几何尺寸下,研究了激光参数的影响,包括激光频率,激光脉冲宽度,激光速度和焦点位置。和微硬度。在具有较高冷却速率的标本中,在硬化区中形成马氏体相(),同时在具有较低冷却速率的试样中,在硬化区中形成均匀和针状α相的组合。与其他激光变量相比,激光速度对重叠因子具有显着影响。通过提高激光速度,冷却速率增加和脉冲重叠在硬化区中减少。高冷却速率导致该区内先前β晶粒尺寸的改进。在过渡区观察到等式和针状α相以及针状马氏体相的组合。马氏体相是在硬化区附近的位置中的主要阶段。激光功率为165W,液位频率为14Hz,脉冲宽度为22ms,激光速度为105mm / min,+ 3.5mm的焦点位置是获得最佳激光表面硬化结果的最佳参数。在最佳样品中存在马氏体相的存在导致硬度增加约36%,如与基础金属的相比。

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