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71.
钛合金固态相变的研究进展 总被引:4,自引:1,他引:4
综述了近年来国内外学者在钛合金固态相变理论和实验研究方面的进展情况,介绍了几种钛合金固态相变的研究实验方法,并对钛合金中马氏体、硼、亚稳脚分解等相变动力学、晶体学以及组织的演变、形核生长等进行了总结和归纳。 相似文献
72.
γ—TiAl增压涡轮熔模铸造过程数值模拟研究 总被引:9,自引:0,他引:9
根据熔模型壳离心浇注的铸造工艺特点,建立了γ-TiAl增压涡轮凝固传热过程的数值模型,推导了离心压力下γ-TiAl金属间化合物的凝固收缩和补缩过程数学模型,模拟计算了γ-TiAl增压涡轮铸件的温度场和收缩缺陷,结果表明,模型能可靠计算γ-TiAl增压涡轮铸件凝固过程的温度分布和准确预测铸件的收缩缺陷,数值模拟结果与实验结果吻合良好,数值模拟结果证实了前期工作所提出的进一步减少及消除收缩缺陷的优化工艺措施的合理性。 相似文献
73.
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75.
MicrostructureofTitaniumafterHydrogenationWangYu;WangPeixuan;ZhangJianwei(王宇)(王佩璇)(张建伟)UniversityofScienceandTechnologyBeijin... 相似文献
76.
Ming-Wei Lu Kun–Lin Lin Chien-Cheng Lin 《International Journal of Applied Ceramic Technology》2021,18(3):739-748
Various proportions of ZrO2/CaTiO3 powders were mixed and hot pressed at 1500°C/30 min for Ti casting. The hot-pressed ZrO2/CaTiO3 composites were reacted with pure Ti at 1700°C/10 min in Ar. The interfacial reaction between Ti and ZrO2/CaTiO3 composites was investigated through X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and energy-dispersive X-ray spectroscopy. The ZrO2/CaTiO3 composites with less than 10 vol.%, CaTiO3, and a minor amount of residual TiO2 were found. When the content of ZrO2 was increased to larger than 10 vol.%, two Ca2Zr5Ti2O16 and CaZrTi2O7 phases appeared in the composites. The amount of CaTiO3 and CaZrTi2O7 in the composites gradually decreased as the amount of ZrO2 increased. When Ti came in contact with ZrO2/CaTiO3 composites with less than 10 vol.% ZrO2, the resulting eutectic reaction produced a liquid phase and induced melting. When ZrO2 was increased to more than 30 vol.% in the composites, Ca2Zr5Ti2O16 and CaZrTi2O7 changed completely to CaZrO3, Ti2O, CaO, and ZrO2. With more than 30 vol.% ZrO2, no other reaction phases occurred in the Ti side after contact with the ZrO2/CaTiO3 composites, which is conducive for producing ceramic composites for Ti casting applications. 相似文献
77.
The true stress--strain curves of TC16 alloy with a wide range of strain rates were investigated under uniaxial quasi-static tension and uniaxial dynamic compression with the lnstron 8032 test machine and the split Hopkinson bar respectively. The results indicate that the true stress increases with increasing strain rate, while decreases with increasing temperature. Under the 105 s^-1 high strain rate and temperature higher than 673 K, the true stress would even be less than that under quasi-static condition. A new method incorporating TCl6's stress strain curve developing item was proposed to determine the coefficients in J-C model easily and to avoid the estimation of the adiabatic temperature rising. The Johnson-Cook dynamic constitutive relationship for TC16 was obtained for the first time. Good agreement was obtained between the model prediction and the experimental stress--strain curves for TC16 under both quasi-static and dynamic loadings. 相似文献
78.
The effects of α and β phase interactions on the tensile and creep deformation behavior of β titanium alloys was studied using
Ti-6.0wt.% Mn and Ti-8.1wt.%V as the model two-phase alloys, and Ti-13.0wt.%Mn and Ti-14.8wt.%V as the single-phase β alloys.
The β phase of α-βTi-8.1V deforms by stress-induced hexagonal martensite (α′), while slip and twinning occurs in the single-phase
β alloy with the same chemistry as the β phase. No stress-induced martensite was observed in the β or α-βTi-Mn alloys. This
behavior is modeled in terms of a number of factors, including elastic interaction stresses between the α and β phases, coherency
between the α phase and hexagonal martensite, and β phase stability.
This paper was presented at the Beta Titanium Alloys of the 00’s Symposium sponsored by the Titanium Committee of TMS, held
during the 2005 TMS Annual Meeting & Exhibition, February 13–16, 2005 in San Francisco, CA. 相似文献
79.
为进一步提升RH精炼的冶炼效率,更好与高拉速连铸相匹配,对RH冶炼IF钢过程中加Ti时机和纯循环时间对夹杂物的影响开展了试验研究。结果表明,钢液中T.O质量分数在加Al 5 min后小于0.003 0%;夹杂物的数密度在合金化4~5 min后具有最小值,随后增加纯循环时间,夹杂物的数密度无明显变化。在300 t RH工业生产实践中,Al-Ti间隔时间为2 min、纯循环时间为5 min和Al-Ti间隔3 min、纯循环4 min的处理工艺可以保证钢液中的夹杂物充分上浮去除,夹杂物的数密度为0.7~0.8个/mm2,可以实现RH的高效化精炼。在Al-Ti间隔时间大于1 min、纯循环时间大于3 min的操作条件下钢液中未检测到尺寸大于50 μm的夹杂物。基于以上工艺优化,IF钢的RH真空处理时间已经降低至20 min。向钢液中加入Al后主要形成Al2O3夹杂物,加入钛铁合金化后钢液中会形成富[Ti]区域,[Ti]将Al2O3还原而生成Al-Ti氧化物。随着[Ti]在钢液内的扩散以及Al-Ti氧化物的生成,钢液中的[Al]将Al-Ti氧化物还原而生成Al2O3,最终生成以Al-Ti氧化物为核心、外层由Al2O3包裹的复合夹杂物。 相似文献
80.