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Influence of Cold Plastic Deformation on the Structure and Physicomechanical Properties of the Biocompatible Low-Modulus Zr51Ti31Nb18 Alloy

机译:冷塑动变形对生物相容性低模量Zr51Ti31NB18合金结构和物理机械性能的影响

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摘要

The influence of the degree of compression in the range of 46-84% upon cold rolling of rods of a biocompatible low-modulus Zr51Ti31Nb18 (IMP BAZALM) alloy preliminarily quenched from the beta field on the formation of its structure, phase composition, and physicomechanical properties (hardness, elastic modulus) has been studied by the methods of optical microscopy, transmission electron microscopy, X-ray diffraction analysis, back-scattering electron diffraction, and microindentation. It has been established that with an increase in the degree of compression, a reorientation and elongation of the initially equilibrium beta grains occur along the direction of rolling with the formation of a perfect filamentary structure in the rods with a minimum cross-section. The values of microhardness are stabilized in the range of 320-325 HV due to the development of dynamic recovery processes in the deformed structure, and the elastic modulus decreases from 68 to 55 GPa in the rolling plane of rods owing to the improvement of the {001}RP < 110 > RD-type texture, which leads to the appearance of the predominantly "low-modulus" < 110 > orientation in the direction of measurement.
机译:在生物相容性低模量Zr51111NB18(Imp Bazalm)合金的杆的冷轧中,压缩程度为46-84%的影响,其在形成其结构,相位组成和物理机制的形成已经通过光学显微镜,透射电子显微镜,X射线衍射分析,背散射电子衍射和微观函数研究了性质(硬度,弹性模量)。已经确定,随着压缩程度的增加,初始平衡的β晶粒的重新定位和伸长率沿着轧制的完美丝结构形成,具有最小横截面。由于变形结构中的动态恢复过程的发展,微硬度的值稳定在320-325HV的范围内,由于{的改善001} RP <110> RD型纹理,其在测量方向上导致主要的“低模量”<110>取向。

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