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15篇 您的检索式:作者名="C.T.Liu"
    题名 作者 年代 出处 被引量
1冬小麦穗发芽抗性及其鉴定方法的研究显示文摘1985—1987年在美国爱达荷大学对19个普通小麦(Triticum aestivum L.)品种进行了小麦成熟期穗发芽抗性及其鉴定方法的研究。结果表明,除红粒品种普遍抗穗发芽外,不少白粒品种也具有较强的抗性,特别是中国品种丰产3号的抗性最强,超过美国的软质白粒抗源 Peck 和 Brevor。证明小麦穗发芽与籽粒α-淀粉酶活性高度正相关,而与脱落酸含量无关,培养皿种子发芽法是鉴定穗发芽抗性的简易方法,种子发芽指数是衡量抗性强弱的可靠指标。张海峰 R.S.Zemetra C.T.Liu 1989作物学报1989,15,2:41
2反应合成法制备FeAl金属间化合物多孔材料的曲折因子(英文)显示文摘以Fe、Al元素粉末为原料,采用反应合成方法,利用Kirkendall效应造孔制备的FeAl金属间化合物多孔材料是继陶瓷和金属多孔材料之后发展的一种新型多孔材料。曲折因子是表征多孔材料孔隙特征的重要参数。基于Darcy原理和 Hagen-Poiseuille方程研究FeAl多孔材料的曲折因子。结果表明,FeAl多孔材料的曲折因子小于具有相同孔结构的不锈钢多孔材料的曲折因子。在本研究范围内,根据 Hagen-Poiseuille方程计算得知,FeAl多孔材料的曲折因子为2.26,而具有相同孔结构的不锈钢多孔材料的曲折因子为2.92。并由造孔机理探讨了FeAl多孔材料曲折因子较小的原因。高海燕 贺跃辉 ZOU Jin 徐南平 C.T.LIU 2012Transactions of Nonferrous Metals Society of China2012,22,9:8
3Structure Heterogeneity in Metallic Glass: Modeling and Experiment显示文摘Despite the great efforts dedicated to metallic glasses(MGs), their structure still remains a mystery to be understood. With comparison to the existing micromechanical models, such as the free-volume and shear transformation zone(STZ) models, we first discuss in this article our recently proposed ‘core-shell' model,which contains a solid-like matrix and liquid-like inclusions. This serves as the theoretical basis to understand the structural heterogeneity in MGs in our analytical framework. After that, a scanning ultrafast nanoindentation technique is used to map out the structure heterogeneity in a Zr-based bulk metallic glass(BMG). With these ongoing research efforts, we hope that more research work could be stimulated in the pursuit of the structure-property relation in MGs.H.B.Ke J.F.Zeng C.T.Liu Y.Yang 2014Journal of Materials Science & Technology2014,30,6:5
4(TiAl)+Nb+W+B合金的微观组织演变(英文)显示文摘通过磁悬浮法制备含有W、Nb、B的重15kgTiAl合金大锭。此合金大锭与电弧熔炼的0.05kg的小样品相比,存在晶粒大小和相组织结构性质方面的区别。设计了一系列热处理工艺来消除大锭合金的高温残留β相,并获取理想的微观组织。铸态大锭合金在经过适当的热处理工艺后室温伸长率可达1.9%。这种大批量方式生产的TiAl合金,通过新合金设计与相应的热处理后,其力学性能可获得显著提高。黄岚 P.K.LIAW C.T.LIU 刘咏 黄劲松 2011Transactions of Nonferrous Metals Society of China2011,21,10:5
5氢在无序态和有序态Ni3Fe合金中的扩散行为显示文摘采用电解渗氢的方法研究室温下氢在无序态和有序态Ni3Fe合金中的扩散行为.研究结果表明,在相同渗氢温度下,渗氢后的Ni3Fe合金的延伸率随渗氢时间的增加而降低,拉伸断口上的沿晶断裂区(IG)的深度随渗氢时间的增加而增加;在相同渗氢时间下,合金拉伸断口上的沿晶断裂区的深度随渗氢温度的增加而增加.沿晶脆性断裂区的深度与渗氢温度和时间的关系符合菲克扩散方程的解.时间滞后法计算结果表明,氢在无序态Ni3Fe合金中的表观扩散系数高于在有序态合金中的表观扩散系数.氢在无序态和有序态Ni3Fe合金中的扩散激活能分别为44.9 kJ/mol和29.5 kJ/mol.陈业新 马杰 石丹丹 C.T.LIU 2008上海大学学报(自然科学版)2008,14,5:5
6Strategies for improving ductility of ordered intermetallics显示文摘Ordered intermetallics possess attractive high-temperature properties; however, low ductility and brittle fracture limit their use as engineering materials in many cases. This paper provides a comprehensive review on the recent progress in the development of ductile ordered intermetallics and summarizes the strategies used to improve the tensile ductility of ordered intermetallics, including control of ordered crystal structures,engineering grain-boundary structure and chemistry, eliminating environmental embrittlement, microstructure optimization, control of phase stability, and promoting transformation-/twining-induced plasticity. The basic ideas and related mechanisms underlying these ductilizing strategies are discussed. In addition, a brief mention of the current use of intermetallic alloys for structural and corrosion applications is made.Z.B.Jiao J.H.Luan C.T.Liu 2016Progress in Natural Science:Materials International2016,26,1:3
7Rational design of chemically complex metallic glasses by hybrid modeling guided machine learning显示文摘The compositional design of metallic glasses(MGs)is a long-standing issue in materials science and engineering.However,traditional experimental approaches based on empirical rules are time consuming with a low efficiency.In this work,we successfully developed a hybrid machine learning(ML)model to address this fundamental issue based on a database containing~5000 different compositions of metallic glasses(either bulk or ribbon)reported since 1960s.Unlike the prior works relying on empirical parameters for featurization of data,we designed modeling guided data descriptors in line with the recent theoretical models on amorphization in chemically complex alloys for the development of the hybrid classification-regression ML algorithms.Our hybrid ML modeling was validated both numerically and experimentally.Most importantly,it enabled the discovery of MGs(either bulk or ribbon)through the ML-aided deep search of a multitude of quaternary to scenery alloy compositions.The computational framework herein established is expected to accelerate the design of MG compositions and expand their applications by probing the complex and multi-dimensional compositional space that has never been explored before.Z.Q.Zhou Q.F.He X.D.Liu Q.Wang J.H.Luan C.T.Liu Y.Yang 2021npj Computational Materials2021,,1:2
8Tailoring nanoprecipitates for ultra-strong high-entropy alloys via machine learning and prestrain aging显示文摘The multi-principal-component concept of high-entropy alloys(HEAs) generates numerous new alloys.Among them,nanoscale precipitated HEAs have achieved superior mechanical properties and shown the potentials for structural applications.However,it is still a great challe nge to find the optimal alloy within the numerous candidates.Up to now,the reported nanoprecipitated HEAs are mainly designed by a trialand-error approach with the aid of phase diagram calculations,limiting the development of structural HEAs.In the current work,a novel method is proposed to accelerate the development of ultra-strong nanoprecipitated HEAs.With the guidance of physical metallurgy,the volume fraction of the required nanoprecipitates is designed from a machine learning of big data with thermodynamic foundation while the morphology of precipitates is kinetically tailored by prestrain aging.As a proof-of-principle study,an HEA with superior strength and ductility has been designed and systematically investigated.The newly developed γ’-strengthened HEA exhibits 1.31 GPa yield strength,1.65 GPa ultimate tensile strength,and 15% tensile elongation.Atom probe tomography and transmission electron microscope characterizations reveal the well-controlled high γ’ volume fraction(52%) and refined precipitate size(19 nm).The refinement of nanoprecipitates originates from the accelerated nucleation of the γ’ phase by prestrain aging.A deeper understanding of the excellent mechanical properties is illustrated from the aspect of strengthening mecha nisms.Finally,the versatility of the current design strategy to other precipitation-hardened alloys is discussed.Tao Zheng Xiaobing Hu Feng He Qjngfeng Wu Bin Han Chen Da Junjie Li Zhijun Wang Jincheng Wang Ji-jung Kai Zhenhai Xia C.T.Liu 2021Journal of Materials Science & Technology2021,,10:2
9纳米团簇强化型铁素体钢设计中空位组元的作用显示文摘高温下可稳定存在的纳米团簇由于具有科学研究意义及潜在应用价值,已引起了研究者的强烈兴趣。利用原子探针技术在温度接近1400℃(0.92Tm)的铁基合金中观察到了高稳定的纳米团簇,从而打破了人造纳米结构材料高温不稳定性约束。在一种空位作为关键合金组元,同时(Ti+Y)/O比与稳定的TiO2和Y2Ti2O7比率不同的高缺陷新材料中,观察到直径约4nm的富氧、钛和钇纳米团簇。在钛和钇存在的条件下,空位在提高氧溶解度和氧结合能方面具有不可替代的作用,因而导致共格纳米团簇的稳定性。原子探针成像特征和理论预测表明空位可首次被作为一种纳米级组分来设计具有优良高温性能的材料。M.K.Miller C.L.Fu M.Krcmar D.T.Hoelzer C.T.Liu 2008上海金属2008,30,4:1
10Low Temperature Environmental Embrittlement in Ordered Intermetallics显示文摘A comprehensive review of low temperature environmental embrittlement in intermetallics is pres-ented. Moisture and hydrogen are shown to severely embrittle many intermetallics, including iron,nickel and titanium aluminides. The roles of composition, microstructure and external test variablesare emphasized. Several methods to reduce or avoid embrittlement are described.N.S.Stoloff C.T.Liu 1993Journal of Materials Science & Technology1993,9,4:0
11Enhanced helium ion irradiation tolerance in a Fe-Co-Ni-Cr-Al-Ti high-entropy alloy with L12 nanoparticles显示文摘L12-strengthened high entropy alloys(HEAs)with excellent room and high-temperature mechanical prop-erties have been proposed as promising candidates as structural materials for advanced nuclear systems.However,knowledge about their radiation response is fairly limited.In the present work,a novel HEA with a high density of L12 nanoparticles was irradiated with He ion at 500°C.Transmission electron microscope(TEM)and atom probe tomography(APT)were employed to study the evolution of mi-crostructural stability and radiation-induced segregation.Similar to the single-phase FeCoNiCr HEA,the main microstructural features were numerous large faulted dislocation loops and helium bubbles.While the irradiation resistance of the present L12-strengthened HEA is much improved in terms of reduced bubble size,which could be attributed to the considerable He trapping efficiency of the coherent pre-cipitate/matrix interface and the enhanced capability of the interface for damage elimination when the matrix channel width is narrow.APT analysis revealed that an inverse-Kirkendall-mechanism-dominated radiation-induced segregation(RIS)occurs around bubbles,where a significant Co enrichment and Ni de-pletion can be clearly observed.In addition,the competing dynamics of ballistic mixing and elemental clustering that raised from the irradiation-enhanced diffusion in a highly supersaturated matrix,along with the low precipitation nucleation barrier due to the small lattice misfit,lead to a dynamical pre-cipitation dissolution and re-precipitation appears under irradiation.Such a promising phenomenon is expected to promote a potential self-healing effect and could in turn provide a sustainable irradiation tolerance over the operational lifetime of a reactor.Y.L.Zhao F.L.Meng T.Yang J.H.Luan S.F.Liu G.M.Yeli W.T.Lin W.H.Liu X.J.Liu C.T.Liu J.J.Kai 2023Journal of Materials Science & Technology2023,,12:0
12Micro-scaled plastic yielding and shear-banding dynamics in metallic glasses显示文摘Shear-banding behavior in metallic glasses plays a key role in the operation of plastic deformation,which is associated with yield strength.In a micro-scale,the shear-banding behavior must be affected by many factors from the test machine and the substrate.Therefore,in this study,comprehensively considering a machine compliance,a geometry imperfection of micro-pillar,and a substrate sink-in the machine-sample-substrate system,we developed a plastic-strength model at a micrometer scale in this study,which is evidenced by the microscale compressive properties of 18 kinds of metallic glasses.The the-oretical model provides a guidance for the elastic limits and shear-banding dynamics of metallic glasses at the micro-scale,which can be applicable to characterize the microscale deformation behavior of other amorphous materials.D.X.Han G.Wang Q.Wang R.Feng X.D.Ma K.C.Chan C.T.Liu 2023Journal of Materials Science & Technology2023,,21:0
13Fe的化学计量比对金属间化合物Ni_3Fe环境氢脆的影响显示文摘研究不同Fe化学计量比的无序态、有序态金属间化合物Ni3Fe合金在真空和氢气环境中拉伸的力学性能和断口形貌.结果表明,当Ni3Fe合金的成分偏离化学计量比时,合金的相组成不发生变化,但合金的力学性能和在氢气环境中的氢脆敏感性却随之发生变化.非化学计量的Ni3Fe合金在真空和氢气中的塑性增加,氢脆因子(IH2)降低.不同Fe化学计量比的有序态Ni3Fe合金氢脆敏感性的差异与合金的有序度有关,化学计量的Ni3Fe合金有序度最高,环境氢脆敏感性也最高;非化学计量的Ni3Fe合金有序度降低,环境氢脆敏感性也随之降低.钱海燕 陈涛 陈业新 C.T.Liu 2010上海大学学报(自然科学版)2010,16,4:0
14Preface显示文摘PrefaceChangxuShi,HonoraryChairmanGuoliangChen,Co-organizerandHostC.T.Liu,Co-organizerStephenL.Sass,Co-organizerThisinternati...Changxu Shi, Honorary Chairman Guoliang Chen, Co-organizer and Host C.T.Liu, Co-organizer Stephen L. Sass, Co-organizer 1995Acta Metallurgica Sinica(English Letters)1995,8,Z1:0
15Off-stoichiometry-guided design of high-strength chemically complex intermetallic-based alloys with outstanding ductility显示文摘1.Introduction The lasting drive for improved energy efficiency in power gen-eration encourages the innovative design of advanced structural materials with superb mechanical properties[1-6].Among these materials,ordered intermetallic alloys[7-9],as a unique class of metallic materials,have drawn increasing concern from both the scientific and industrial communities due to their intriguing high-temperature properties,strong chemical binding,and low atomic mobility[10,11].However,in light of the insufficient number of slip systems and/or intrinsically weak grain boundary(GB),they are usually brittle at ambient temperature,severely hindering their practical use in engineering systems[12].Previous studies reported that the change in alloy stoichiometry has a significant beneficial effect on the ductility of intermetallic alloys.For instance,Liu et al.Bo Xiao Jixun Zhang Shaofei Liu Yilu Zhao Lianyong Xu C.T.Liu Tao Yang 2023Journal of Materials Science & Technology2023,,29:0
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