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Effect of the Surface Layer Formed by Laser Oxidation on Fracture Mechanics of Titanium Alloys

机译:激光氧化形成表面层对钛合金裂缝力学的影响

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For many practical applications of coated parts the effect of surface layers on the material properties is the main factor when selecting a strengthening method. It has been revealed that low-cycle loading fracture is initiated in the subsurface zone lying below a strengthened layer. Such behaviour of materials is due to the difference in the surface layer and the base metal properties and the complex form of residual stresses detected in the base along the surface layer boundary and in the surface layer itself. Tests have brought out that under low cycle loading conditions the number of cycles to failure in titanium specimens strengthened by laser oxidation increases up to 100000 with a loading of 0.8 of the base metal.
机译:对于涂覆部件的许多实际应用,表面层对材料特性的影响是选择强化方法时的主要因素。已经揭示了低循环载荷骨折在位于强化层下方的地下区中启动。材料的这种行为是由于表面层和基础金属性质的差异以及沿着表面层边界和表面层本身在底座中检测到的残余应力的复杂形式。测试已经提出,在低循环负载条件下,通过激光氧化强化的钛样品失效的循环循环次数增加到100000,碱基金属0.8的负载量增加。

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