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首页> 外文期刊>Journal of Manufacturing Processes >Study on surface state and thermophysical properties of TA15 alloy by laser ablation
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Study on surface state and thermophysical properties of TA15 alloy by laser ablation

机译:激光烧蚀对Ta15合金的表面状态和热物理性能研究

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摘要

The active titanium alloy is prone to form an oxide layer with poor thermal strength and fluffy during hot working. Native morphological defects also affect subsequent processing. In this study, the laser ablation was used to remove the thermally processing oxide layer and modified the surface morphology. The effect of the newly formed oxide layer on the surface thermal diffusivity was studied. As the average power increased, the native morphological defects were modified to the crater morphology. Finally, the wavy fringe morphology was formed. The thermal oxide layer of the untreated sample was composed of TiO2 (anatase), TiO2 (rutile), and Al2O3. After laser ablation, the content of TiO2 (rutile) increased. Cross-sectional morphology observation shows, above 12 W, the oxide layer appeared agitating morphology. It is proved that 12 W is the boundary between the thermal effect and the thermo-mechanical composite effect. The effectiveness of laser ablation in modulating the thermo-physical properties of the surface was verified by thermal diffusivity measurements.
机译:活性钛合金在热工作期间容易形成具有差的热强度和蓬松的氧化物层。本机形态缺陷也会影响随后的加工。在该研究中,使用激光烧蚀去除热处理氧化物层并改性表面形态。研究了新形成的氧化物层对表面热扩散率的影响。随着平均功率的增加,原生形态缺陷被修改为火山口形态。最后,形成了波浪状形态。未处理样品的热氧化物层由TiO 2(锐钛矿),TiO 2(金红石)和Al 2 O 3组成。激光烧蚀后,TiO 2(金红石)的含量增加。横截面形态学观察结果显示在12W以上,氧化物层出现搅拌形态。事实证明,12W是热效应与热机械复合效果之间的边界。通过热漫射测量验证了激光消融在调节表面的热物理性质时的有效性。

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