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工艺参数对激光3D打印钛合金组织拉伸性能的影响分析 被引量:2
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作者 潘琛 张黎敏 田永刚 《激光杂志》 CAS 北大核心 2021年第7期152-156,共5页
为了减少3D打印钛合金缺陷,提高连接点质量,分析了工艺参数对激光3D打印钛合金组织拉伸性能的影响。首先分析了影响激光3D打印钛合金组织拉伸性能的参数不确定性;进行2次不同工艺参数对拉伸性能的影响实验,可以发现在热处理环境下,晶粒... 为了减少3D打印钛合金缺陷,提高连接点质量,分析了工艺参数对激光3D打印钛合金组织拉伸性能的影响。首先分析了影响激光3D打印钛合金组织拉伸性能的参数不确定性;进行2次不同工艺参数对拉伸性能的影响实验,可以发现在热处理环境下,晶粒尺寸增加,拉伸性下降,集束尺寸扩大,拉伸性能增强,而厚片度的提高,对钛合金的强度与拉伸性均有利;实验二将线能量密度、坡口角度以及扫描路径作为工艺参数,对拉伸性能做方差对比,结果表明线能量密度对钛合金拉伸性能影响较明显,密度越大拉伸性能越强,通过分析可以为后续打印过程提供近优工艺参数,保证激光3D打印质量。 展开更多
关键词 工艺参数 激光3D打印 钛合金组织 拉伸性能 线能量密度
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热处理对ZTi600铸造钛合金组织与性能的影响 被引量:6
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作者 戚运莲 洪权 +4 位作者 卢亚锋 杜宇 郭萍 刘伟 曾立英 《中国有色金属学报》 EI CAS CSCD 北大核心 2010年第B10期36-39,共4页
研究热等静压及热处理工艺对ZTi600高温铸造钛合金组织与性能的影响。研究结果表明:退火温度对屈服强度和抗拉强度以及塑性略有影响,经过热等静压处理后,室温拉伸塑性大幅度提高,塑性随着热等静压温度的升高而升高,强度变化较小;ZTi600... 研究热等静压及热处理工艺对ZTi600高温铸造钛合金组织与性能的影响。研究结果表明:退火温度对屈服强度和抗拉强度以及塑性略有影响,经过热等静压处理后,室温拉伸塑性大幅度提高,塑性随着热等静压温度的升高而升高,强度变化较小;ZTi600高温铸造钛合金组织以针状、板条状的魏氏组织为主,热等静压后晶粒尺寸减小,局部组织有等轴趋势。 展开更多
关键词 Ti600高温合金:显微组织 力学性能
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Ti-Zr-Cu-Ni钎料钎焊TA2钛合金的界面组织和拉伸强度研究
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作者 刘全明 肖俊峰 +5 位作者 唐文书 高松 孙华为 秦建 程亚芳 龙伟民 《精密成形工程》 北大核心 2025年第6期36-45,共10页
目的通过自制Ti-Zr-Cu-Ni钎料实现TA2钛合金钎焊连接,研究Ti-Zr-Cu-Ni钎料合金组织特征、接头界面组织、熔蚀特性及拉伸强度,为燃机损伤部件钎焊修复用钛基钎料及钎焊工艺研发提供理论支撑。方法采用SEM、XRD分析了钎料及钎焊接头的组织... 目的通过自制Ti-Zr-Cu-Ni钎料实现TA2钛合金钎焊连接,研究Ti-Zr-Cu-Ni钎料合金组织特征、接头界面组织、熔蚀特性及拉伸强度,为燃机损伤部件钎焊修复用钛基钎料及钎焊工艺研发提供理论支撑。方法采用SEM、XRD分析了钎料及钎焊接头的组织,研究了钎料类型对接头拉伸性能的影响。结果降低钎料中Cu、Ni的含量并添加Sn或V元素后,(Ti、Zr)固溶体相尺寸减小;Sn、V更倾向于与Ti、Zr结合形成复杂的晶体相并向(Ti、Zr)固溶体中汇集,元素扩散区深度减小,晶间渗入距离未见变化;引入5.0%(质量分数)Sn、1.5%(质量分数)V后,接头拉伸强度分别为300.6 MPa和302.7 MPa;非晶钎料无明显晶体相,晶间渗入距离明显增大,接头拉伸强度为267.0 MPa。结论钎焊接头界面为完全反应型结构,当钎料中引入5.0%Sn、1.5%V后,拉伸强度小幅降低,非晶钎料钎焊接头拉伸强度大幅降低,塑性指标均有所提升。少量微元素形成的晶体相对接头强度影响有限,非晶钎料钎焊界面冶金反应充分,形成更多脆性相,导致接头强度大幅下降。添加Sn或V后,分别在接头组织中形成Ti_(2)Sn_(3)、Ti_(6)Sn_(5)、Zr_(5)Sn_(3)或Ni_(3)VZr_(2)、NiV_(3)、Ni_(2)V等晶体相,可改善接头塑性。 展开更多
关键词 Ti-Zr-Cu-Ni钎料 钎料组织 TA2合金 钎焊界面组织 接头拉伸强度
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B、C和Si添加元素对Ti-15Mo基β钛合金显微组织和性能的影响 被引量:1
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作者 朱康英 《稀有金属快报》 CSCD 2002年第9期25-26,共2页
关键词 合金显微组织 性能
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Ti-6Al-4V合金热挤压管材工艺研究 被引量:3
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作者 颜苏 《航空制造技术》 2010年第20期73-74,78,共3页
本文研究了Ti-6Al-4V钛合金铸锭制备工艺、挤压工艺对其组织性能的影响,确定了Ti-6Al-4V钛合金的加工工艺路线及参数,研制出的产品满足相关技术标准的要求。
关键词 Ti-6Al-4V钛合金组织性能
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Selective laser melted near-beta titanium alloy Ti-5Al-5Mo-5V-1Cr-1Fe:Microstructure and mechanical properties 被引量:9
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作者 HUANG Hua-long LI Dan +4 位作者 CHEN Chao LI Rui-di ZHANG Xiao-yong LIU Shi-chao ZHOU Ke-chao 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第6期1601-1614,共14页
In this work,a near-beta Ti-5Al-5Mo-5V-1Cr-1Fe titanium alloy was fabricated by selective laser melting(SLM),and the microstructure evolution together with the mechanical properties was studied.The as-fabricated alloy... In this work,a near-beta Ti-5Al-5Mo-5V-1Cr-1Fe titanium alloy was fabricated by selective laser melting(SLM),and the microstructure evolution together with the mechanical properties was studied.The as-fabricated alloy showed columnarβgrains spreading over multiple layers and paralleling to the building direction.The distinct microstructure of as-fabricated alloy was composed of near-β(more than 98.1%)with a submicron cellular structure.Different SLM processing parameters such as hatch spacing could affect the microstructure of as-fabricated alloy,which could thus further significantly affect the mechanical properties of as-fabricated alloy.In addition,the as-fabricated alloy with the distinct microstructure exhibits yield strength of 818 MPa combined with elongation of more than 19%,which shows that SLM is a potential technology for manufacturing near-beta titanium components. 展开更多
关键词 selective laser melting Ti-5Al-5Mo-5V-1Cr-1Fe near-βandβ-titanium alloy cellular structure PRECIPITATION
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Effects of tantalum addition on microstructure and properties of titanium alloy fabricated by laser powder bed fusion 被引量:4
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作者 ZHOU Li-bo SHU Jing-guo +6 位作者 SUN Jin-shan CHEN Jian HE Jianjun LI Wei HUANG Wei-ying NIU Yan YUAN Tie-chui 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第4期1111-1128,共18页
The expanding of material library of laser powder bed fusion(L-PBF)is of great significance to the development of material science.In this study,the biomedical Ti-13Nb-13Zr powder was mixed with the tantalum particles... The expanding of material library of laser powder bed fusion(L-PBF)is of great significance to the development of material science.In this study,the biomedical Ti-13Nb-13Zr powder was mixed with the tantalum particles(2 wt%−8 wt%)and fabricated by L-PBF.The microstructure consists of aβmatrix with partially unmelted pure tantalum distributed along the boundaries of molten pool owing to the Marangoni convention.Because the melting process of Ta absorbs lots of energy,the size of molten pool becomes smaller with the increase of Ta content.The fine microstructure exists in the center of melt pool while coarse microstructure is on the boundaries of melt pool because of the existence of heat-affected zone.The columnar-to-equiaxed transitions(CETs)happen in the zones near the unmelted Ta,and the low lattice mismatch induced by solid Ta phase is responsible for this phenomenon.The recrystallization texture is strengthened while the fiber texture is weakened when the tantalum content is increased.Due to the formation of refined martensiteα′grains during L-PBF,the compressive strengths of L-PBF-processed samples are higher than those fabricated by traditional processing technologies.The present research will provide an important reference for biomedical alloy design via L-PBF process in the future. 展开更多
关键词 laser powder bed fusion titanium alloys TANTALUM solidification microstructure texture evolution
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Improved mechanical and wear properties of Ti-35Nb-5Ta-7Zr-xSi alloys fabricated by selective electron beam melting for biomedical application 被引量:5
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作者 YANG Kun WANG Jian +1 位作者 YANG Guang-yu JIA Liang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第12期3825-3835,共11页
As the next generation biomedical titanium alloy, β-type titanium alloys are excellent candidates for biomedical applications due to the relative low elastic modulus and the contained non-toxic elements. However, the... As the next generation biomedical titanium alloy, β-type titanium alloys are excellent candidates for biomedical applications due to the relative low elastic modulus and the contained non-toxic elements. However, the relative low strength and unsatisfactory tribological property are undesired for load-bearing implant applications. In this study, 0-5 at% Si was added to the classic Ti-35Nb-5Ta-7Zr alloy to improve its strength and wear resistance, and the(Ti-35Nb-5Ta-7Zr)1-x-Six(x=0, 1 at% and 5 at%) alloy were fabricated by selective electron beam melting(SEBM)technology. The results indicated that Si addition significantly increases in compressive yield strength, which is mainly due to grain refinement strengthening. At the same time, the wear rate of the as-built TNTZ-5Si alloy in SBF solution was only ~30% of the Ti-6Al-4V alloy. Consequently, the TNTZ-5Si alloy showed an excellent combination of compressive yield strength, elastic modulus and wear resistance for potential load-bearing implant applications. 展开更多
关键词 β-type titanium alloys additive manufacturing MICROSTRUCTURE mechanical properties wear resistance
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Microstructural evolution in a powder metallurgical Ti-7Mo alloy with continuous oxygen gradient 被引量:2
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作者 陈智星 刘彬 +2 位作者 刘咏 曾凡沛 卢金忠 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期508-514,共7页
A titanium alloy containing continuous oxygen gradient was prepared by powder metallurgy(P/M) and the composition–property relationship was studied on a single sample. The alloy was sintered with layered powder of di... A titanium alloy containing continuous oxygen gradient was prepared by powder metallurgy(P/M) and the composition–property relationship was studied on a single sample. The alloy was sintered with layered powder of different oxygen contents via vacuum sintering and spark plasma sintering(SPS), respectively. After subsequent heat treatments, high-throughput characterizations of the microstructures and mechanical properties by localized measurements were conducted. The Ti-7% Mo(molar fraction) alloy with an oxygen content ranging from 1.3×10^(-3) to 6.2×10^(-5)(mass fraction) was obtained, and the effects of oxygen on the microstructural evolution and mechanical properties were studied. The results show that SPS is an effective way for fabricating fully dense Ti alloy with a compositional gradient. The average width of α′ phase coarsens with the increase of the content of oxygen. The content of α″ martensitic phase also increases with the content of oxygen. At oxygen contents of 3×10^(-3) and 4×10^(-3)(mass fraction), the Ti alloys present the lowest microhardness and the lowest elastic modulus, respectively. The results also indicate that the martensitic phases actually decrease the hardness of Ti-7Mo alloy, and oxygen effectively hardens the alloy by solid solution strengthening. Therefore, the high-throughput characterization on a microstructure with a gradient content of oxygen is an effective method for rapidly evaluating the composition–property relationship of titanium alloys. 展开更多
关键词 titanium alloys oxygen martensitic transformation high-throughput method powder metallurgy (P/M) mechanical properties
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Hot deformation behavior of Ti-6.5Al-3.5Mo-1.5Zr-0.3Si alloy with acicular microstructure 被引量:2
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作者 刘高峰 张尚洲 陈礼清 《Journal of Central South University》 SCIE EI CAS 2011年第2期296-302,共7页
The characteristics of hot deformation of an α+β titanium alloy Ti-6.5Al-3.5Mo-1.5Zr-0.3Si with acicular microstructure were studied using isothermal hot compressive tests in a strain rate range of 0.01-10 s^-1 at ... The characteristics of hot deformation of an α+β titanium alloy Ti-6.5Al-3.5Mo-1.5Zr-0.3Si with acicular microstructure were studied using isothermal hot compressive tests in a strain rate range of 0.01-10 s^-1 at 860-1 100 ℃. The true stress-tree strain curves of alloy hot-compressed in the α+β region exhibit a peak stress followed by continuous flow softening; whereas in the β region, the flow stress attains a steady-state regime. At a strain rate of 10 s^-1 and in a wide temperature range, the alloy exhibits plastic flow instability. According to the kinetic rate equation, the apparent activation energies are estimated to be about 633 kJ/mol in the α+β region and 281 kJ/mol in the β region, respectively. The processing maps show a domain of the globularization process of a colony structure and α dynamic recrystallization in the temperature range of 860-960 ℃ with a peak efficiency of about 60%, and a domain of β dynamic recrystallization in the β region with a peak efficiency of 80%. 展开更多
关键词 titanium alloy Ti-6.5Al-3.5Mo-1.5Zr-0.3Si hot compression flow behavior MICROSTRUCTURE
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