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The effect of ion beam surface modifications on fatigue crack initiation in polycrystalline nickel

机译:离子束表面改性对多晶镍疲劳裂纹引发的影响

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摘要

Flexural fatigue tests at surface strain amplitudes of +/-0.0012 were conducted on polycrystalline nickel to determine the effect of ion beam surface modifications of the Ni/Al system on fatigue crack initiation. An Ni-75at.%Al surface region 1000 A thick was produced by evaporating alternate layers of nickel and aluminum followed by ion beam mixing with 3 MeV Ni2+ ions to a fluence of 1 x 1016 ions cm-2. A two-phase [gamma]-[gamma]' surface structure was produced through implantation of 350 keV Al+ ions to a fluence of 5 x 1017 ions cm-2 into the nickel specimens at 723 K. Nickel specimens that were self-implanted with 350 keV Ni+ ions to a fluence of 1 x 1016 ions cm-2 were also analyzed.The addition of aluminum to the surface resulted in an increase in surface hardness and suppression of surface slip band features. The nickel self-implantation increased surface hardness but had very little effect on surface slip feature suppression. Transgranular crack initiation was seen in unmodified and self-implanted specimens, and intergranular crack initiation was prevalent in aluminum micro-alloyed specimens.
机译:在+/- 0.0012表面应变振幅弯曲疲劳试验是在多晶镍进行,以确定对疲劳裂纹萌生在Ni / Al体系的离子束的表面改性的效果。 %的Al表面区域1000厚通过蒸发镍和铝的交替层所产生的镍75at。随后离子束与3MeV的Ni2 +的离子混合到1×1016离子厘米-2的注量。两相的γ] - [γ”的表面结构是通过350千根电子伏的Al +离子的注入来产生至5×1017个离子厘米2到镍试样在723个K.镍标本是一个通量自植入350千电子伏的Ni +离子以1×10 16离子的通量CM-2也进行了分析。此外,铝对表面造成的增加的表面硬度和表面滑移带特征抑制。镍自植入表面硬度提高,但对表面滑爽功能抑制的影响非常小。穿晶裂纹萌生见于未修饰的和自注入标本和晶间裂纹萌生是铝微合金化的标本普遍。

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