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Effects of overload and frequency on fatigue crack propagation in nanocrystalline Zr-based bulk metallic glass

机译:过载和频率对纳米Zr基大块金属玻璃疲劳裂纹扩展的影响

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A nanocrystalline (NC) bulk glass Zr{sub}55Al{sub}10Cu{sub}30Ni{sub}5(at%) containing nano-scale crystals embedded uniformly in a glassy matrix has both high tensile strength of 1.7 GPa and high ductility. The new alloy is therefore expected to have practical applications in machines and structures. The influences of frequency and overload on fatigue crack propagation behavior of the NC bulk glass were examined. The fatigue crack propagation rate da/dn less than 3 × 10{sup}(-5) mm/cycle was independent of frequency in the frequency range of 0.1 to 50 Hz at the stress ratio of 0.1 under sine and triangular waves. When the overload ratio (overload/baseline load) was large, a complete crack arrest occurred and the AK value just before a crack regrowth was three times larger than the threshold stress intensity factor range ΔK{sub}(th). The reason for the crack arrest was not explained by the crack closure effect. The overloading induced the kinking and branching of the crack. The stress reduction near the crack tip due to the kinking and branching of the crack and the crack closure effect gave an appropriate explanation for the complete crack arrest and the larger threshold stress intensity factor range. When the overload ratio was small, a temporary crack arrest occurred and the kink and branching of cracks occurred intermittently at the crack front.
机译:包含均匀嵌入玻璃态基质中的纳米级晶体的纳米晶(NC)大块玻璃Zr {sub} 55Al {sub} 10Cu {sub} 30Ni {sub} 5(at%)具有高1.7 GPa的高拉伸强度和高延展性。因此,新合金有望在机械和结构中得到实际应用。研究了频率和过载对NC大块玻璃疲劳裂纹扩展行为的影响。在正弦波和三角波下,应力比为0.1时,疲劳裂纹扩展速率da / dn小于3×10 {sup}(-5)mm /周期,与0.1至50 Hz频率范围内的频率无关。当过载率(过载/基线负载)较大时,会发生完全的裂纹止裂,并且裂纹再生长之前的AK值比阈值应力强度因子范围ΔK{sub}(th)大三倍。裂纹停止的原因不能通过裂纹闭合效果来解释。过载引起裂纹的扭结和分支。由于裂纹的扭结和分支以及裂纹的闭合效应,裂纹尖端附近的应力减小为裂纹的完全停止和更大的阈值应力强度因子范围提供了适当的解释。当过载率较小时,会出现暂时的裂纹停滞,并且在裂纹前沿断断续续出现弯折和分支。

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