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首页> 外文期刊>Archives of Metallurgy and Materials >Microstructural Characterization Of Laser Heat Treated AISI 4140 Steel With Improved Fatigue Behavior
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Microstructural Characterization Of Laser Heat Treated AISI 4140 Steel With Improved Fatigue Behavior

机译:改善疲劳性能的激光热处理AISI 4140钢的显微组织表征

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The influence of surface heat treatment using laser radiation on the fatigue strength and corresponding microstructural evolution of AISI 4140 alloy steel was investigated in this research. The AISI 4140 alloy steel was radiated by a diode laser to give surface temperatures in the range between 600 and 800°C, and subsequently underwent vibration peening. The fatigue behavior of surface-treated specimens was examined using a giga-cycle ultrasonic fatigue test, and it was compared with that of non-treated and only-peened specimens. Fatigue fractured surfaces and microstructural evolution with respect to the laser treatment temperatures were investigated using an optical microscope. Hardness distribution was measured using Vickers micro-hardness. Higher laser temperature resulted in higher fatigue strength, attributed to the phase transformation.
机译:研究了激光辐照表面处理对AISI 4140合金钢疲劳强度和相应组织演变的影响。用二极管激光辐射AISI 4140合金钢,使表面温度在600至800°C之间,然后进行振动喷丸处理。使用千兆循环超声疲劳试验检查了表面处理过的试样的疲劳行为,并将其与未处理和仅喷丸处理的试样进行了比较。使用光学显微镜研究了疲劳断裂表面和相对于激光处理温度的显微组织演变。使用维氏显微硬度测量硬度分布。较高的激光温度导致较高的疲劳强度,这归因于相变。

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