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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Acoustic Emission Analysis of Damage during Compressive Deformation of Amorphous Zr-Based Foams with Aligned,Elongated Pores
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Acoustic Emission Analysis of Damage during Compressive Deformation of Amorphous Zr-Based Foams with Aligned,Elongated Pores

机译:排列成排的长孔的非晶态Zr基泡沫压缩变形过程中损伤的声发射分析

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摘要

Acoustic emission methods are used to investigate the evolution of internal microfractural damage during uniaxial compression of amorphous Zr-based foams with aligned, elongated pores. The foams are fabricated by means of densifying a blend of crystalline W powders and amorphous Zr-based powders with two oxygen contents (0.078 and 0.144 wt pet) by warm equal channel angular extrusion, followed by dissolution of the elongated W phase from the fully densified amorphous matrix. For the high-oxygen foams, prior powder boundaries in the amorphous struts promote damage that accumulates during compression, resulting in energy-absorbing properties comparable with the low-oxygen foams without stress-concentrating powder boundaries. The influence of pore orientation on the evolution of microfracture damage and the ability of the foams to accumulate damage without catastrophic failure is also investigated: pores oriented from 24 to 68 deg to the loading direction promote wall bending, resulting in foams with more diffuse damage and better energy-absorbing properties.
机译:声发射方法用于研究在单轴压缩无定形Zr基泡沫的过程中内部微裂纹损伤的演变,这些泡沫具有对齐的细长孔。通过热等通道角挤压将两种含氧量(0.078和0.144 wt pet)的结晶W粉末和无定形Zr基粉末的混合物致密化,然后从完全致密化中溶解伸长的W相来制造泡沫无定形基质。对于高氧泡沫,无定形支杆中的先有粉末边界促进了压缩过程中积累的损伤,从而产生了与没有应力集中粉末边界的低氧泡沫相当的能量吸收性能。还研究了孔隙取向对微裂纹破坏演变以及泡沫累积破坏而不会发生灾难性破坏的能力的影响:从24到68度相对于加载方向取向的孔隙会促进壁弯曲,从而导致泡沫具有更大的分散破坏和更好的能量吸收特性。

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