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Effect and mechanism of Ti−O solid solution layer on interfacial bonding strength of cold roll bonded titanium/stainless steel laminated composite plate
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作者 Zhi-yan YANG Xue-feng LIU +1 位作者 Hong-ting CHEN Xin MA 《Transactions of Nonferrous Metals Society of China》 2026年第1期171-182,共12页
Titanium plates with a Ti−O solid solution surface-hardened layer were cold roll-bonded with 304 stainless steel plates with high work hardening rates.The evolution and mechanisms affecting the interfacial bonding str... Titanium plates with a Ti−O solid solution surface-hardened layer were cold roll-bonded with 304 stainless steel plates with high work hardening rates.The evolution and mechanisms affecting the interfacial bonding strength in titanium/stainless steel laminated composites were investigated.Results indicate that the hardened layer reduces the interfacial bonding strength from over 261 MPa to less than 204 MPa.During the cold roll-bonding process,the hardened layer fractures,leading to the formation of multi-scale cracks that are difficult for the stainless steel to fill.This not only hinders the development of an interlocking interface but also leads to the presence of numerous microcracks and hardened blocks along the nearly straight interface,consequently weakening the interfacial bonding strength.In metals with high work hardening rates,the conventional approach of enhancing interface interlocking and improving interfacial bonding strength by using a surface-hardened layer becomes less effective. 展开更多
关键词 titanium/stainless steel laminated composite plate ti−O solid solution hardened layer interlocking interface formation mechanism interfacial bonding strength
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Revolutionizing titanium production:A comprehensive review of thermochemical and molten salt electrolysis processes
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作者 Haohang Ji Shenghui Guo +3 位作者 Lei Gao Li Yang Hengwei Yan Hongbo Zeng 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期15-34,共20页
Titanium exhibits outstanding properties,particularly,high specific strength and resistance to both high and low temperatures,earning it a reputation as the metal of the future.However,because of the highly reactive n... Titanium exhibits outstanding properties,particularly,high specific strength and resistance to both high and low temperatures,earning it a reputation as the metal of the future.However,because of the highly reactive nature of titanium,metallic titanium production involves extensive procedures and high costs.Considering its advantages and limitations,the European Union has classified titanium metal as a critical raw material(CRM)of low category.The Kroll process is predominantly used to produce titanium;however,molten salt electrolysis(MSE)is currently being explored for producing metallic titanium at a low cost.Since 2000,electrolytic titanium production has undergone a wave of technological advancements.However,because of the intermediate and disproportionation reactions in the electrolytic titanium production process,the process efficiency and titanium purity according to industrial standards could not be achieved.Consequently,metallic titanium production has gradually diversified into employing technologies such as thermal reduction,MSE,and titanium alloy preparation.This study provides a comprehensive review of research advances in titanium metal preparation technologies over the past two decades,highlighting the challenges faced by the existing methods and proposing potential solutions.It offers useful insights into the development of low-cost titanium preparation technologies. 展开更多
关键词 titanium preparation titanium alloy thermal reduction molten salt electrolysis
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Titanium-promoted conversion of N_(2) into N-methylimides
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作者 Rui Hu Yidan Qi +2 位作者 Xingyu Wang Yunhui Yang Congyang Wang 《Chinese Chemical Letters》 2026年第1期276-279,共4页
The direct transformation of dinitrogen(N_(2)) into nitrogen-containing organic compounds holds substantial importance.In this work,we report a titanium-promoted method for the conversion of N_(2) to N-methylimides.In... The direct transformation of dinitrogen(N_(2)) into nitrogen-containing organic compounds holds substantial importance.In this work,we report a titanium-promoted method for the conversion of N_(2) to N-methylimides.Initially,the N_(2)-bridging end-on dititanium side-on dipotassium complex[{(Tren^(TMS))Ti}_(2)(μ-η^(1):η^(1):η^(2):η^(2)-N_(2)K_(2))] underwent simultaneous disproportionation and N-methylation reactions in the presence of methyl trifluoromethanesulfonate(Me OTf),yielding [{(N^(Me,TMS)NN^(TMS)_(2))Ti}(μ-NMe)]_(2) with complete cleavage of the N≡N bond.The nucleophilicity of the N-methylated intermediate allowed it to react with electrophilic reagents such as trimethylchlorosilane(TMSCl) to form heptamethyldisilazane,or with acyl chlorides to generate N-methylimides.Moreover,nitrogen-15(^(15)N) labeled experiments provided a novel approach to synthesizing ^(15)N-labeled methylimides. 展开更多
关键词 Dinitrogen fixation titanium IMIDES Heptamethyldisilazane DISPROPORtiONAtiON
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Influence of Nb addition on microstructure evolution and superplastic behavior of Ti-5Al-5Mo-5Cr-2Zr-xNb titanium alloy at 923 K
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作者 Shi-chen Sun Hong-ze Fang +3 位作者 Jia-qi Hao Bao-hui Zhu Xian-fei Ding Rui-run Chen 《China Foundry》 2026年第1期55-61,共7页
Ti-5Al-5Mo-5Cr-2Zr-xNb with different Nb(abbreviated as Ti-5552-xNb,x=3,6,9,12,wt.%)contents were stretched at 923 K to study their superplastic behavior and mechanical properties below recrystallization temperature.T... Ti-5Al-5Mo-5Cr-2Zr-xNb with different Nb(abbreviated as Ti-5552-xNb,x=3,6,9,12,wt.%)contents were stretched at 923 K to study their superplastic behavior and mechanical properties below recrystallization temperature.The microstructure of as-cast Ti-5552-xNb alloy is consisted of a singleβphase,and theβgrain size increases slightly with the increase of Nb content.The thermal effect in the process of high temperature drawing leads to the precipitation ofαphase.The addition of Nb in Ti-5552 titanium alloys reduces theα/βphase transformation temperature,which causes a decrease in the volume fraction ofαphase.Reducing theαphase content reduces incompatibility,but too low a proportion ofαphase will lead to premature fracture,so tensile strength and plasticity firstly increase and then decrease.The results show that Ti-5552-9Nb titanium alloy shows the best tensile strength(307.2 MPa)and superplasticity(106%).The superplastic mechanism of Ti-5552-9Nb alloy is mainly caused by relative sliding ofβgrain boundaries and dislocation movement. 展开更多
关键词 titanium alloy niobium element SUPERPLAStiC mechanical properties
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Investigation on the effect of solid particle erosion on the dissolution behavior of electrochemically machined TA15 titanium alloy
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作者 Dongbao Wang Dengyong Wang +2 位作者 Wenjian Cao Shuofang Zhou Zhengyang Jiang 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期252-264,共13页
During electrochemical machining(ECM),the passivation film formed on the surface of titanium alloy can lead to uneven dissolution and pitting.Solid particle erosion can effectively remove this passivation film.In this... During electrochemical machining(ECM),the passivation film formed on the surface of titanium alloy can lead to uneven dissolution and pitting.Solid particle erosion can effectively remove this passivation film.In this paper,the electrochemical dissolution behavior of Ti-6.5Al-2Zr-1Mo-1V(TA15)titanium alloy at without particle impact,low(15°)and high(90°)angle particle impact was investigated,and the influence of Al_(2)O_(3)particles on ECM was systematically expounded.It was found that under the condition of no particle erosion,the surface of electrochemically processed titanium alloy had serious pitting corrosion due to the influence of the passivation film,and the surface roughness(Sa)of the local area reached 10.088μm.Under the condition of a high-impact angle(90°),due to the existence of strain hardening and particle embedding,only the edge of the surface is dissolved,while the central area is almost insoluble,with the surface roughness(S_(a))reaching 16.086μm.On the contrary,under the condition of a low-impact angle(15°),the machining efficiency and surface quality of the material were significantly improved due to the ploughing effect and galvanic corrosion,and the surface roughness(S_(a))reached 2.823μm.Based on these findings,the electrochemical dissolution model of TA15 titanium alloy under different particle erosion conditions was established. 展开更多
关键词 TA15 titanium alloy electrochemical machining particle erosion passivation film
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Advancements in titanium nanocomposites:Microstructure and fretting wear resistance via spark plasma sintering
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作者 Basant Lal Abhijit Dey 《International Journal of Minerals,Metallurgy and Materials》 2026年第1期265-281,共17页
This study investigated enhancing the wear resistance of Ti6Al4V alloys for medical applications by incorporating Ti C nanoreinforcements using advanced spark plasma sintering(SPS). The addition of up to 2.5wt% Ti C s... This study investigated enhancing the wear resistance of Ti6Al4V alloys for medical applications by incorporating Ti C nanoreinforcements using advanced spark plasma sintering(SPS). The addition of up to 2.5wt% Ti C significantly improved the mechanical properties, including a notable 18.2% increase in hardness(HV 332). Fretting wear tests against 316L stainless steel(SS316L) balls demonstrated a 20wt%–22wt% reduction in wear volume in the Ti6Al4V/Ti C composites compared with the monolithic alloy. Microstructural analysis revealed that Ti C reinforcement controlled the grain orientation and reduced the β-phase content, which contributed to enhanced mechanical properties. The monolithic alloy exhibited a Widmanstätten lamellar microstructure, while increasing the Ti C content modified the wear mechanisms from ploughing and adhesion(0–0.5wt%) to pitting and abrasion(1wt%–2.5wt%). At higher reinforcement levels, the formation of a robust oxide layer through tribo-oxide treatment effectively reduced the wear volume by minimizing the abrasive effects and plastic deformation. This study highlights the potential of SPS-mediated Ti C reinforcement as a transformative approach for improving the performance of Ti6Al4V alloys, paving the way for advanced medical applications. 展开更多
关键词 ti6Al4V alloy tiC particle MICROSTRUCTURE wear mechanism spark plasma sintering
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Effect of laser remelting on microstructure and properties of Ti6Al4V titanium alloy prepared by laser powder bed fusion
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作者 Yue-yang LIU Yang YANG +1 位作者 Xiang CHEN Yu-xing ZHAN 《Transactions of Nonferrous Metals Society of China》 2026年第2期488-506,共19页
Laser remelting(LR)was used as an auxiliary post-treatment process for the Ti6Al4V titanium alloys fabricated by laser powder bed fusion(LPBF).Optical microscope(OM),scanning electron microscope(SEM)and electron back ... Laser remelting(LR)was used as an auxiliary post-treatment process for the Ti6Al4V titanium alloys fabricated by laser powder bed fusion(LPBF).Optical microscope(OM),scanning electron microscope(SEM)and electron back scattering diffraction(EBSD)observations showed that the grains in melted zone(MZ)transformed into equiaxial grains with an average size of 1.31μm,and the grains in heat affected zone(HAZ)were refined.Moreover,the texture intensity dropped significantly from 13.86 to 6.35 in MZ and 10.79 in HAZ.The temperature gradient(G)to solidification rate(R)ratio decreased when the laser scanning speed slowed down to a certain extent in the LR process,which effectively improved the highly preferred orientation and filled the hole defects in the surface of LPBF-Ti6Al4V.Furthermore,the hardness,wear resistance and corrosion resistance of the surface of the LPBF samples were improved by LR treatment. 展开更多
关键词 laser powder bed fusion laser remelting grain refinement preferred orientation wear behavior electrochemical properties ti6AL4V
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Dietary titanium dioxide particles(E171)promote colitis-associated colorectal cancer development in mice through macrophage-derived S100A8/S100A9 secretion mediated by NLRP3/Caspase 1/GSDMD pathway
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作者 Ping Wang Yan Zhong +3 位作者 Jingquan Liu Lingfang Gao Ting Long Zuguo Li 《Chinese Journal of Natural Medicines》 2026年第2期215-226,共12页
Colitis-associated colorectal cancer(CAC)is a major contributor to cancer-related mortality worldwide.Titanium dioxide(TiO_(2),E171),a widely used food additive,has been insufficiently studied regarding its effects on... Colitis-associated colorectal cancer(CAC)is a major contributor to cancer-related mortality worldwide.Titanium dioxide(TiO_(2),E171),a widely used food additive,has been insufficiently studied regarding its effects on macrophages within colon tumors during CAC development.In this study,CAC mouse models were used to investigate the biological impact of dietary E171 on macrophages in vivo,while lipopolysaccharide(LPS)-stimulated RAW264.7 macrophage cell lines were employed to elucidate the underlying mechanisms in vitro.We found that dietary E171 intake accelerated CAC development,exacerbated inflammatory responses and oxidative stress,and upregulated CAC-associated genes,including S100a8,S100a9,Lcn2,S100a11,Cxcl2,and interleukin-1α(Il-1α).E171 also increased the expression of S100A8,S100A9,NOD-like receptor family pyrin domain-containing 3(NLRP3),and gasdermin-D Nterminal(GSDMD-N)in macrophages within colon tumors.In inflammatory macrophages,E171 exposure enhanced cell viability,increased reactive oxygen species(ROS)levels,and elevated the expression and secretion of S100A8 and S100A9,consistent with in vivo histological observations.Furthermore,E171-induced secretion of S100A8 and S100A9 in macrophages was suppressed by specific inhibitors,including N-acetylcysteine(NAC,ROS inhibitor),MCC950(NLRP3 inhibitor),Z-YVAD-FMK(caspase 1 inhibitor),disulfiram(GSDMD inhibitor),and transfection of NLRP3 small interfering ribonucleic acid(siRNA).These results indicate that dietary E171 promotes CAC development by activating macrophages,with S100A8 and S100A9 serving as key mediators,and the NLRP3/caspase 1/GSDMD pathway acting as a critical mechanism. 展开更多
关键词 titanium dioxide particles(E171) Colitis-associated colorectal cancer MACROPHAGE S100A8/S100A9 NLRP3/Caspase 1/GSDMD
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Ti含量对热镀55wt.%Al-Zn镀层组织的影响
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作者 张志坚 徐学明 +3 位作者 唐兴昌 惠洋 刘小华 李坤宇 《兰州理工大学学报》 北大核心 2026年第1期8-14,共7页
为研究Ti对热镀55wt.%Al-Zn镀层组织的影响,通过配置不同Ti含量55wt.%Al-Zn热浸镀锌铝液对钢基板进行热浸镀实验,利用光学显微镜(OM)、扫描电镜(SEM)及能谱仪(EDS),对不同Ti含量铝锌镀层的表面、截面及过渡层组织进行分析.结果表明:不... 为研究Ti对热镀55wt.%Al-Zn镀层组织的影响,通过配置不同Ti含量55wt.%Al-Zn热浸镀锌铝液对钢基板进行热浸镀实验,利用光学显微镜(OM)、扫描电镜(SEM)及能谱仪(EDS),对不同Ti含量铝锌镀层的表面、截面及过渡层组织进行分析.结果表明:不同Ti含量表面锌花组织结构基本一致,镀层表面锌花及合金层组织均由富Al相、富Zn相、富Si相及Al-Zn-Fe-Si化合物相构成;当Ti质量分数低于0.035%时,镀层锌花尺寸随Ti含量的增高而显著减小,含Ti镀层组织相对细小且致密;Ti的添加能够在镀液凝固过程中增加形核点,有助于锌花尺寸减小及细化镀层合金晶粒尺寸. 展开更多
关键词 铝锌镀层 ti含量 镀层组织 锌花 晶粒细化
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超高真空蒸发制备Pd/Ti吸气薄膜的工艺优化与性能研究
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作者 李伟 李进 +2 位作者 李宇龙 王旭迪 曹青 《真空科学与技术学报》 北大核心 2026年第1期76-83,共8页
Pd/Ti吸气剂薄膜作为超高真空系统中重要的真空维持材料,具有激活温度低、抽速快等优点。针对薄膜制备过程中蒸发源热变形导致的镀膜均匀性问题,研究采用COMSOL多物理场仿真分析了靶丝热变形行为,提出了“石英玻璃棒+变距弹簧靶丝”的... Pd/Ti吸气剂薄膜作为超高真空系统中重要的真空维持材料,具有激活温度低、抽速快等优点。针对薄膜制备过程中蒸发源热变形导致的镀膜均匀性问题,研究采用COMSOL多物理场仿真分析了靶丝热变形行为,提出了“石英玻璃棒+变距弹簧靶丝”的复合结构设计,将Pd丝和Ti丝的径向最大热变形量分别降至0.0216 mm和0.0494 mm,相比直丝结构分别提升约303倍和63倍。自主设计搭建了超高真空蒸发镀膜系统,系统研究了Pd/Ti薄膜的蒸发工艺参数,确定了Ti丝45A/60 min、Pd丝18 A/2-10 min的最佳工艺条件。SEM分析表明薄膜呈典型柱状生长结构,Pd覆层连续均匀覆盖Ti底层。镀膜后系统极限真空达到1.41×10^(-8)Pa,真空维持性能显著提升。定压法吸氢测试结果显示,基底材料对吸气性能影响显著,无氧铜箔基底的稳定抽速(0.006 L/(s·cm^(2)))优于工业钛箔基底(0.002 L/(s·cm^(2)));Pd层厚度存在最优值,约50 nm厚度时吸气性能最佳,抽速达0.005 L/(s·cm^(2))。研究为Pd-Ti薄膜吸气剂的工程化制备提供了重要的技术支撑和数据基础。 展开更多
关键词 非蒸散型吸气剂 Pd/ti薄膜 真空蒸镀 蒸发源结构优化 吸气性能测试
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生物医疗材料Ti13Nb13Zr铣削稳定性建模与仿真研究
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作者 陈东菊 吴建强 +3 位作者 吴水源 潘日 孙锟 范晋伟 《北京工业大学学报》 北大核心 2026年第1期1-12,共12页
针对新型β钛合金Ti13Nb13Zr作为良好的生物植入体医疗材料却因强度高、韧性大、加工过程中易产生颤振等问题,综合考虑铣削过程中再生效应、模态耦合效应、过程阻尼效应等因素,将铣削过程简化为二自由度铣削模型,建立系统动力学方程,并... 针对新型β钛合金Ti13Nb13Zr作为良好的生物植入体医疗材料却因强度高、韧性大、加工过程中易产生颤振等问题,综合考虑铣削过程中再生效应、模态耦合效应、过程阻尼效应等因素,将铣削过程简化为二自由度铣削模型,建立系统动力学方程,并采用二阶全离散法进行求解。通过对比仿真结果,证明了模型有效性,并探究了各项因子对铣削稳定性的影响规律。最后,设计了三因素四自由度正交实验,将铣削方式、刀具磨损带带宽、刀具浸入比等因素依据对稳定性影响程度进行排序,并且得出保证稳定性前提条件下Ti13Nb13Zr最佳铣削方案为采用逆铣,刀具浸入比为0.25,刀具磨损带带宽为35μm。 展开更多
关键词 ti13Nb13Zr 过程阻尼 模态耦合 铣削加工 再生效应 数值仿真
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V、Nb、Ti微合金元素在低Mo耐火钢中强化机理研究
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作者 万荣春 《船舶职业教育》 2026年第1期49-52,共4页
通过观察两种不同V、Nb、Ti微合金元素含量的Q355级别低Mo(小于0.30 wt.%)耐火钢在不同变形量下滑移带分布特征,结合试验钢显微组织与力学性能,分析研究V、Nb、Ti微合金元素在耐火钢中的强化机理。试验结果表明,V、Nb、Ti微合金元素的加... 通过观察两种不同V、Nb、Ti微合金元素含量的Q355级别低Mo(小于0.30 wt.%)耐火钢在不同变形量下滑移带分布特征,结合试验钢显微组织与力学性能,分析研究V、Nb、Ti微合金元素在耐火钢中的强化机理。试验结果表明,V、Nb、Ti微合金元素的加入,可以增加试验钢的贝氏体体积分数,同时增加铁素体中的析出相和位错密度。V、Nb、Ti微合金元素在耐火钢中的强化机理主要表现在两方面:一是通过析出强化和增加位错密度,强化铁素体组织;二是通过增加贝氏体体积分数,实现贝氏体相变强化,同时强化其周围贝氏体/铁素体复合组织。 展开更多
关键词 V、Nb、ti 低Mo耐火钢 强化机理
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TC4钛合金表面热浸镀Al-Mg5合金镀层的Ti/Al界面特性
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作者 王禹同 魏守征 +3 位作者 饶文姬 程璇 张英乔 李志勇 《材料热处理学报》 北大核心 2026年第1期154-163,共10页
为了实现Ti/Al异质界面组织结构的均匀化,在TC4钛合金表面进行了热浸镀Al-Mg5合金镀层,重点分析了工艺参数对镀层宏观形貌、Ti/Al界面特性的影响,并对Ti/Al界面的反应机理进行了研究。结果表明:在试验工艺参数下,随着热浸镀温度T的升高... 为了实现Ti/Al异质界面组织结构的均匀化,在TC4钛合金表面进行了热浸镀Al-Mg5合金镀层,重点分析了工艺参数对镀层宏观形貌、Ti/Al界面特性的影响,并对Ti/Al界面的反应机理进行了研究。结果表明:在试验工艺参数下,随着热浸镀温度T的升高或保温时间t的延长,镀层逐渐变得平滑均一;固定t,镀层厚度随T的升高先减小后略有增大;固定T,镀层厚度随t的延长大致呈先增加后减少的趋势;TC4钛合金与Al-Mg5合金镀层之间仅形成一层TiAl_(3);固定T,TiAl_(3)层厚度随t的延长逐渐增大;固定t,随着T的升高TiAl_(3)层不仅厚度逐渐增大,形态也发生了变化,T≤900℃时,TiAl_(3)层呈胞状,T≥1000℃时,TiAl_(3)层转变为齿状;界面处TiAl_(3)层的形成主要包括:铝液在钛表面润湿铺展,Ti、Al元素互扩散,TiAl_(3)的异质形核及TiAl_(3)层的持续生长4个阶段。 展开更多
关键词 TC4钛合金 Al-Mg5合金 热浸镀 ti/Al界面 微观组织
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轧制-拉拔-退火冷却协同调控下Ti-3Al-5Mo-4.5V钛合金组织与织构演变机制
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作者 孙小平 刘东 +4 位作者 杜予晅 雷磊 张朋辉 吴聪 雷蕃 《稀有金属材料与工程》 北大核心 2026年第2期535-542,共8页
研究了Ti-3Al-5Mo-4.5V(TC16)合金棒材在轧制-拉拔-不同退火冷却(水淬(WQ)、空冷(AC)和炉冷(FC))方式下微观组织和织构的协同演变机制。结果表明:TC16钛合金棒材初始片层组织在两相区轧制和退火过程中通过动态再结晶和α相长大形成了由... 研究了Ti-3Al-5Mo-4.5V(TC16)合金棒材在轧制-拉拔-不同退火冷却(水淬(WQ)、空冷(AC)和炉冷(FC))方式下微观组织和织构的协同演变机制。结果表明:TC16钛合金棒材初始片层组织在两相区轧制和退火过程中通过动态再结晶和α相长大形成了由等轴α和β相组成的双相组织,β相和α相分别形成了<110>//Y(Y//棒材轴向)和<101ˉ0>//Y的丝织构。热拉拔虽未改变织构类型,但热拉拔变形导致内部晶粒取向梯度明显增加,进而显著减弱织构强度。退火冷速速率对α相含量调控显著,等轴α相含量由WQ的36.8vol%增至FC的74.9vol%。不同冷速下的β相和α相织构类型与拉拔态织构一致。退火加热阶段α→β相变通过Burgers取向关系(BOR)继承并强化原始β相织构;而冷却过程中β→α相变因自适应效应触发变体选择,导致α相织构强度增强。由此可见,热处理可继承并强化轧制-拉拔织构,而非重构其类型。本研究通过热加工-冷却协同调控策略,为钛合金微观组织和织构优化提供参考和指导。 展开更多
关键词 ti-3Al-5Mo-4.5V钛合金 轧制-拉拔 冷却速率 微观组织 织构
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轧制温度对Ti650高温钛合金棒材组织性能的影响
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作者 钱坤 张国君 +3 位作者 王晓 辛社伟 周伟 侯红苗 《中国材料进展》 北大核心 2026年第1期58-65,共8页
研究了轧制温度对Ti650合金拉伸及蠕变性能的影响。采用光学显微镜分析了不同轧制温度对合金等轴α相及次生α相形貌、含量的影响;使用EBSD分析技术对轧制后的合金的晶体取向进行表征。结果表明:随着轧制温度的升高,Ti650合金强度逐渐增... 研究了轧制温度对Ti650合金拉伸及蠕变性能的影响。采用光学显微镜分析了不同轧制温度对合金等轴α相及次生α相形貌、含量的影响;使用EBSD分析技术对轧制后的合金的晶体取向进行表征。结果表明:随着轧制温度的升高,Ti650合金强度逐渐增加,塑性变化不大;初生α相、次生α相、织构等均会对Ti650合金拉伸性能产生影响;Ti650合金的高温蠕变性能与轧制温度升高导致的初生α相含量和尺寸及次生α相片层厚度有关,随着轧制温度升高蠕变残余应变表现出先降低后升高的趋势,在1000℃轧制时抗蠕变性能最佳。 展开更多
关键词 ti650钛合金 显微组织 织构 拉伸性能 高温蠕变
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N型4H-SiC/Ti/TaSi_(2)/Pt欧姆接触电极600℃稳定性研究
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作者 刘士琳 路晶 +5 位作者 李志强 雷程 余建刚 贾平岗 李丰超 梁庭 《仪表技术与传感器》 北大核心 2026年第1期16-20,27,共6页
由于金属-半导体欧姆接触的高温性能退化,SiC基MEMS传感器在高温(600℃)发动机中的应用受限。为解决电极高温稳定性问题,使用Ti/TaSi_(2)/Pt的金属体系作为与N型4H-SiC接触的电极材料,研究了不同金属层厚度(50/100/100 nm、50/150/100 n... 由于金属-半导体欧姆接触的高温性能退化,SiC基MEMS传感器在高温(600℃)发动机中的应用受限。为解决电极高温稳定性问题,使用Ti/TaSi_(2)/Pt的金属体系作为与N型4H-SiC接触的电极材料,研究了不同金属层厚度(50/100/100 nm、50/150/100 nm、50/200/100 nm和50/150/200 nm)和退火温度(950~1 100℃)下Ti/TaSi_(2)/Pt电极的欧姆接触特性和高温稳定性。结果表明:厚度为50/150/100 nm的Ti/TaSi_(2)/Pt电极,在1 050℃下退火,可实现更低的比接触电阻率,且在600℃空气环境20 h考核后仍具有良好的性能和平整度。 展开更多
关键词 欧姆接触 高温稳定性 比接触电阻率 ti/TaSi_(2)/Pt厚度 退火温度
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Characterization and Analysis of Abnormal Grain Structures in WSTi6421 Titanium Alloy AfterβAnnealing Treatment 被引量:1
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作者 Wang Wensheng Liu Xianghong +5 位作者 Wang Haipeng Wang Kaixuan Tian Yanwen Yan Jianchuan Li Yulu Chen Haisheng 《稀有金属材料与工程》 北大核心 2025年第2期354-362,共9页
As-forged WSTi6421 titanium alloy billet afterβannealing was investigated.Abnormally coarse grains larger than adjacent grains could be observed in the microstructures,forming abnormal grain structures with uneven si... As-forged WSTi6421 titanium alloy billet afterβannealing was investigated.Abnormally coarse grains larger than adjacent grains could be observed in the microstructures,forming abnormal grain structures with uneven size distribution.Through electron backscattered diffraction(EBSD),the forged microstructure at various locations of as-forged WSTi6421 titanium alloy billet was analyzed,revealing that the strength of theβphase cubic texture generated by forging significantly influences the grain size afterβannealing.Heat treatment experiments were conducted within the temperature range from T_(β)−50°C to T_(β)+10°C to observe the macro-and micro-morphologies.Results show that the cubic texture ofβphase caused by forging impacts the texture of the secondaryαphase,which subsequently influences theβphase formed during the post-βannealing process.Moreover,the pinning effect of the residual primaryαphase plays a crucial role in the growth ofβgrains during theβannealing process.EBSD analysis results suggest that the strength ofβphase with cubic texture formed during forging process impacts the orientation distribution differences ofβgrains afterβannealing.Additionally,the development of grains with large orientations within the cubic texture shows a certain degree of selectivity duringβannealing,which is affected by various factors,including the pinning effect of the primaryαphase,the strength of the matrix cubic texture,and the orientation relationship betweenβgrain and matrix.Comprehensively,the stronger the texture in a certain region,the less likely the large misoriented grains suffering secondary growth,thereby aggregating the difference in microstructure and grain orientation distribution across different regions afterβannealing. 展开更多
关键词 WSti6421 titanium alloy βannealing abnormal grain structure
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退火法制备TiO_(2)/Ti电极及其对有机含铀废水的电化学净化
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作者 彭超 李天宇 +4 位作者 吕慧涛 陈佳琪 颜永得 薛云 田国新 《原子能科学技术》 北大核心 2026年第1期148-157,共10页
高温气冷堆燃料元件生产过程中会产生相当量的偏碱性含铀废水,其中还含有一定浓度的尿素、聚乙烯醇、四氢糠醇等有机物。为实现有机含铀废水的净化,本研究针对这种废水开展铀去除研究。首先通过对Ti片进行680℃退火处理,制备了TiO_(2)/T... 高温气冷堆燃料元件生产过程中会产生相当量的偏碱性含铀废水,其中还含有一定浓度的尿素、聚乙烯醇、四氢糠醇等有机物。为实现有机含铀废水的净化,本研究针对这种废水开展铀去除研究。首先通过对Ti片进行680℃退火处理,制备了TiO_(2)/Ti电极,然后配制有机含铀模拟溶液,采用电化学法开展模拟溶液中铀的去除研究,探索了碳酸根浓度、pH、铀初始浓度、时间、电压等因素对铀去除率的影响,并推测了过程的反应机理。X射线光电子谱(XPS)、扫描电子显微镜(SEM)、电子能谱(EDS)和X射线衍射(XRD)分析表明,通过退火处理合成的TiO_(2)/Ti电极表面被颗粒状金红石相TiO_(2)覆盖,说明通过退火法能成功制备TiO_(2)/Ti电极。电化学法去除模拟溶液(pH=9)中铀的最优条件为:碳酸钠浓度0.01 mol/L、电压10 V、时间5 h,此条件下铀去除率达95.43%。0.01 mol/L碳酸钠溶液中,铀的还原电位为-0.99 V(vs SCE),其还原过程为一步单电子过程,U(Ⅵ)得到1个电子还原为U(Ⅴ),再歧化为U(Ⅳ)和U(Ⅵ),铀是以UO_(2)和U_(2)O_(5)的形态沉积在电极表面。在4种共存物中,硝酸铵、尿素和聚乙烯醇对铀去除有明显的抑制,而四氢糠醇则没有明显影响。它们共同存在时,在10 V条件下,铀去除率下降至36.75%,但通过提升电压至15 V,铀去除率上升至85.99%。本文所制备TiO_(2)/Ti电极的重复利用性良好,重复使用8次后,铀去除率仍能达到90%以上,每次重复使用,铀的回收率基本能达90%以上。 展开更多
关键词 含铀废水 电化学 tiO_(2)/ti电极 有机物
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试验参数对含Ti 微合金钢扩孔性能的影响
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作者 张宗学 蓝慧芳 +1 位作者 胡珂 唐帅 《锻压技术》 北大核心 2026年第2期21-29,共9页
含Ti微合金钢本身存在性能波动较大的问题,而GB/T 24524—2021中推荐的扩孔试验参数范围较宽,导致性能难以准确测量。以Ti-V和Ti-Mo-V试验钢为研究对象,通过扩孔试验,研究了冲孔速度对孔边缘剪切质量和剪切影响区深度的影响,并分析了扩... 含Ti微合金钢本身存在性能波动较大的问题,而GB/T 24524—2021中推荐的扩孔试验参数范围较宽,导致性能难以准确测量。以Ti-V和Ti-Mo-V试验钢为研究对象,通过扩孔试验,研究了冲孔速度对孔边缘剪切质量和剪切影响区深度的影响,并分析了扩孔凸模运动速度、板料厚度和毛刺对扩孔率的影响。结果表明:当冲孔速度为80 mm·min^(-1)时,剪切影响区深度最小、断面光亮带比例最高,对扩孔性能有利。扩孔凸模运动速度对扩孔性能的影响规律不明显,从控制试验结束的稳定性角度考虑,扩孔凸模运动速度宜选择8 mm·min^(-1);随着板料厚度的增加,扩孔率增加;毛刺区域由于微孔洞的存在,在扩孔过程中易成为裂纹萌生源,去除毛刺可以使扩孔率提升,但保留毛刺更贴近实际工况,且符合GB/T 24524—2021的要求。 展开更多
关键词 ti微合金钢 扩孔试验 冲孔速度 扩孔率 扩孔性能 毛刺
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基于灰色关联分析的Ti-6Al-4V钛合金连杆热锻工艺优化
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作者 田冀宙 邓伟 +3 位作者 何葛豪 王卓安 杜俊韦 管方楞 《锻压技术》 北大核心 2026年第1期38-47,共10页
为减少连杆的锻造缺陷、改善产品质量和模具磨损情况,基于灰色关联分析,以Ti-6Al-4V钛合金连杆为对象,采用有限元仿真模拟研究连杆热锻过程中摩擦因数μ、锻造速度V、坯料的始锻温度T和压扁量Δ这4个工艺参数对终锻成形载荷、最大等效... 为减少连杆的锻造缺陷、改善产品质量和模具磨损情况,基于灰色关联分析,以Ti-6Al-4V钛合金连杆为对象,采用有限元仿真模拟研究连杆热锻过程中摩擦因数μ、锻造速度V、坯料的始锻温度T和压扁量Δ这4个工艺参数对终锻成形载荷、最大等效应力和变形均匀性的影响;通过熵值法和灰色关联分析建立了灰色关联度关于这4个工艺参数的预测模型,并使用方差法验证了模型的准确性和显著性。获得最优工艺参数为:摩擦因数μ=0.40、坯料的始锻温度T=975℃、锻造速度V=448.5 mm·s^(-1)、压扁量Δ=14 mm,与初始工艺相比,最优工艺参数组合下终锻成形载荷下降了15.78%、最大等效应力下降了16.18%、变形均匀性改善了19.75%。最后经生产验证,证明了优化工艺参数的可行性,并为连杆实际热锻成形提供参考。 展开更多
关键词 ti-6AL-4V钛合金 连杆 锻造 灰色关联分析 变形均匀性
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