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Effects of Heat Treatment on Mechanical Properties and Corrosion Fatigue Strength in Physiological Saline Solution of New Titanium Alloys for Medical Implants

机译:热处理对医用植入新钛合金生理盐溶液中力学性能和腐蚀疲劳强度的影响

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摘要

Ti-15mass%Zr-4%Nb-4%Ta-0.2%Pd and Ti-15%Sn-4%Nb-2%Ta-0.2%Pd alloys not containing V and Al for surgical implantation were cast by plasma electron beam melting. The effect of heat treatment on room temperature strength and corrosion fatigue strength were investigated by aging treatment after solution treatment. The alloys were forged in their α and α + β regions, and then solution-treated at 953~1173 K for 3.6 ks. Optimized solution treatment conditions are 1038 K -3.6 ks for Ti-Zr alloy and 1098 K -3.6 ks for Ti-Sn alloy containing 15~20 vol% of primary α phase. After solution treatment under the optimized conditions, aging treatment was carried out at 623~873 K for 600 s~108 ks. Optimized aging conditions for Ti-Zr and Ti-Sn alloys were at 673 K for 36 ks and at 723 K for 36 ks, respectively. The room temperature strengths of these solution treated and aged alloys were about 30% higher than the annealed alloys. It is revealed by transmission electron microscopic observation that, fine α phase precipitates in α' martensitic matrix are responsible for the age hardening. The corrosion fatigue test in a physiological saline solution was carried out under the condition of a tension to tension mode with a sine wave at a stress ratio of 0.1, at a frequency of 10 Hz in Eagle's MEM+ fetal bovine serum solution using an environment cell with 90%N_2+5% CO_2+5%O_2 gas bubbling at 310 K. The fatigue strength at 10~7 cycles in solution-treated and aged Ti-15%Zr-4%Nb-4%Ta-0.2%Pd and Ti-15%Sn-4%Nb-2% Ta-0.2%Pd alloys were about 650 MPa and 800 MPa respectively, which were about 20~30% higher than those of the annealed alloys.
机译:通过等离子电子束铸造不含钒和铝的Ti-15mass%Zr-4%Nb-4%Ta-0.2%Pd和Ti-15%Sn-4%Nb-2%Ta-0.2%Pd合金融化。通过固溶处理后的时效处理研究了热处理对室温强度和腐蚀疲劳强度的影响。合金在其α和α+β区域锻造,然后在953〜1173 K固溶处理3.6 ks。优化的固溶处理条件是:Ti-Zr合金的固溶处理条件为1038 K -3.6 ks,Ti-Sn合金的固溶处理条件为15〜20 vol%的初生α相。在最佳条件下固溶处理后,在623〜873 K进行了600 s〜108 ks的时效处理。 Ti-Zr和Ti-Sn合金的最佳时效条件分别为673 K 36 ks和723 K 36 ks。这些固溶处理和时效合金的室温强度比退火合金高约30%。透射电子显微镜观察表明,α'马氏体基体中细小的α相析出物​​是时效硬化的原因。在Eagle's MEM +胎牛血清溶液中,在生理盐水中,在正弦波,正弦波,应力比为0.1,频率为10 Hz,频率为10 Hz的条件下进行腐蚀疲劳试验。 90%N_2 + 5%CO_2 + 5%O_2在310 K时起泡。固溶和时效Ti-15%Zr-4%Nb-4%Ta-0.2%Pd和Ti在10〜7个循环时的疲劳强度-15%Sn-4%Nb-2%Ta-0.2%Pd合金分别约为650 MPa和800 MPa,比退火合金高约20〜30%。

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