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Microstructure and properties of cold consolidated amorphous ribbons from (NiCu)ZrTiAlSi alloys

机译:(NiCu)ZrTiAlSiSi合金的冷固非晶带的组织和性能

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Amorphous ribbons of compositions (Ni_(56)Cu_2)Zr_(18)Ti_(13)Al_6Si_5 and (Ni_(36)Cu_(3))Zr_(18)Ti_(14)Al_5Si_4 were consolidated by high pressure torsion (HPT) at room temperature. In the HPT experiments a 6 GPa pressure and two turns were applied. Samples in the form of discs, 6-7 times thicker than the ribbons and about 10 mm in diameter were achieved. The minimal deformation for the homogenous consolidation was estimated to be in the range of 400%. XRD showed that the microstructure was dependent on the composition. The sample with high Cu content remained amorphous while the sample with low Cu content revealed some crystallization. DSC experiments allowed a comparison of the glass transition temperature T_g and crystallization process of the amorphous ribbon and HPT sample which were different. The glass transition temperature T_g of the amorphous HPT sample of (Ni_(36)Cu_(23))Zr_(18)Ti_(14)Al_5Si_4 composition decreased. For both alloys the nanohardness and the elastic modules showed decrease for cold consolidated samples in comparison to the ribbons.
机译:(Ni_(56)Cu_2)Zr_(18)Ti_(13)Al_6Si_5和(Ni_(36)Cu_(3))Zr_(18)Ti_(14)Al_5Si_4的非晶态带通过高压扭力(HPT)固结室内温度。在HPT实验中,施加了6 GPa的压力和两圈。制成圆盘状样品,其厚度是色带的6-7倍,直径约为10毫米。均匀固结的最小变形估计在400%的范围内。 XRD表明,微观结构取决于组成。 Cu含量高的样品保持非晶态,而Cu含量低的样品显示出一些结晶。 DSC实验可以比较玻璃化转变温度T_g和非晶带和HPT样品的结晶过程,二者不同。 (Ni_(36)Cu_(23))Zr_(18)Ti_(14)Al_5Si_4组成的非晶HPT样品的玻璃化转变温度T_g降低。对于两种合金,与带相比,冷固结样品的纳米硬度和弹性模量均降低。

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