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Crack-Tip Strain Field Mapping and the Toughness of Metallic Glasses

机译:裂纹尖端应变场映射和金属玻璃的韧性

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摘要

We have used high-energy x-ray scattering to map the strain fields around crack tips in fracture specimens of a bulk metallic glass under load at room temperature and below. From the measured strain fields we can calculate the components of the stress tensor as a function of position and determine the size and shape of the plastic process zone around the crack tip. Specimens tested at room temperature develop substantial plastic zones and achieve high stress intensities () prior to fracture. Specimens tested at cryogenic temperatures fail at reduced but still substantial stress intensities () and show only limited evidence of crack-tip plasticity. We propose that the difference in behavior is associated with changes in the flow stress and elastic constants, which influence the number density of shear bands in the plastic zone and thus the strain required to initiate fracture on an individual band. A secondary effect is a change in the triaxial state of stress around the crack tip due to the temperature dependence of Poisson's ratio. It is likely that this ability to map elastic strains on the microscale will be useful in other contexts, although interpreting shifts in the position of the scattering peaks in amorphous materials in terms of elastic strains must be done with caution.
机译:我们已使用高能X射线散射绘制了在室温及以下载荷下大块金属玻璃的断裂样本中裂纹尖端周围的应变场。从测得的应变场中,我们可以计算应力张量随位置的函数,并确定裂纹尖端周围塑性加工区的大小和形状。在室温下测试的试样在破裂前会形成大量的塑性区并达到较高的应力强度。在低温条件下测试的试样在降低强度时仍会失效,但应力强度仍然很高(),并且仅显示出有限的裂纹尖端可塑性证据。我们提出,行为上的差异与流动应力和弹性常数的变化有关,这会影响塑性区剪切带的数量密度,从而影响在单个带上引发断裂所需的应变。第二个影响是由于泊松比的温度依赖性,裂纹尖端周围的三轴应力状态发生了变化。尽管必须谨慎地解释非晶态材料在弹性应变方面散射峰位置的位移,但这种在微观尺度上绘制弹性应变的能力可能会在其他情况下有用。

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