期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
Effect of oxygen on the microstructure,tensile properties and deformation behaviours of a biocompatible Ti40Zr25Nb25Ta10 high entropy alloy
1
作者 L.Mustafi V.T.Nguyen +5 位作者 T.Song Q.Deng L.Jiang x.b.chen D.M.Fabijanic M.Qian 《Journal of Materials Science & Technology》 2025年第11期62-73,共12页
The effect of oxygen on the microstructure,mechanical properties and deformation behaviours of as-cast biocompatible Ti40Zr25Nb25Ta10Ox(x=0.5,1.0 and 2.0 at.%)high entropy alloys(HEAs)was investi-gated.All three oxyge... The effect of oxygen on the microstructure,mechanical properties and deformation behaviours of as-cast biocompatible Ti40Zr25Nb25Ta10Ox(x=0.5,1.0 and 2.0 at.%)high entropy alloys(HEAs)was investi-gated.All three oxygen-doped HEAs solidified as a single body-centred cubic(BCC)phase grain structure with predominantly high-angle grain boundaries following the Mackenzie prediction.Increasing oxygen content significantly increased tensile strength at a rate of about 180 MPa/1.0 at.%,but decreased ten-sile ductility.However,at the addition level of 0.5 at.%O,the as-cast Ti40Zr25Nb25Ta10O0.5 HEA can achieve a yield strength(σ_(0.2))of 947±44 MPa and an elongation at break(ε_(f))of 9.5%±1.8%.These properties make this HEA comparable to medical grade Ti-6Al-4V(wt.%)alloy(ASTM Grade 23 titanium)(σ_(0.2)≥759 MPa;ε_(f)≥10%)in itsability to absorbenergy in plasticdeformation,whileoffering greater resistance to permanent shape changes.Due to the possible strong interaction between oxygen atoms and dislocations through pinning and de-pinning,all oxygen-doped HEAs exhibited discontinuous yield-ing,whereas the low oxygen base HEA underwent normal yielding.No oxygen clusters were detected through atom probe tomography(APT)analysis.The deformation mechanism depends on oxygen con-tent.The plastic deformation of the Ti40Zr25Nb25Ta10O0.5 HEA occurred through the formation of pri-mary and secondary shear bands.In contrast,planar slip bands and a limited number of primary shear bands(without secondary shear bands)were observed in the Ti40Zr25Nb25Ta10O2.0 HEA.To ensure suf-ficient ductility,the oxygen content should be limited to 0.5 at.%.Furthermore,at this oxygen content,the corrosion resistance of the Ti40Zr25Nb25Ta10O0.5 HEA in Hank’s solution is comparable to that of Ti-6Al-4V. 展开更多
关键词 High entropy alloy TITANIUM TANTALUM NIOBIUM ZIRCONIUM Deformation Corrosion resistance
原文传递
人工唾液对绵羊瘤胃液相平衡、瘤胃发酵和微生物氮合成的影响 被引量:5
2
作者 赵广永 冯仰廉 +2 位作者 x.b.chen E.R.Orskov W.J.Shand 《动物营养学报》 CAS CSCD 1995年第4期20-26,共7页
进行两个试验,研究灌注人工唾液对绵(?)平衡,瘤胃发酵和微生物蛋白质合成的影响。用尿液嘌呤衍生物总量作为供给宿主动物微生物氮的指标。试验1内,4只绵羊每天饲喂1kg以侧短干草为基础的配合日粮,采用4×4拉丁方(?),别向瘤胃中灌注0... 进行两个试验,研究灌注人工唾液对绵(?)平衡,瘤胃发酵和微生物蛋白质合成的影响。用尿液嘌呤衍生物总量作为供给宿主动物微生物氮的指标。试验1内,4只绵羊每天饲喂1kg以侧短干草为基础的配合日粮,采用4×4拉丁方(?),别向瘤胃中灌注0,1.5,3和4L/d单倍浓度的人工唾液(AS)。试验2内,3(?)每天饲喂与试验1成分相同的颗粒日粮1kg,采用3×4不完全拉丁方设计,分别(?)瘤胃中灌注0,4和8L/d单倍浓度和4L/d双倍浓度的人工唾液(DAS)。试验1发现,灌注人工唾液对瘤胃液体积、瘤胃液稀释率、发酵类型及微生物氮合成没有影响试验又发现,灌注8L/d AS和4L/d DAS显著提高瘤胃液稀释率和微生物氮的今成(P<0.05):但对瘤胃液体积没有显著影响(P<0.05)。4个处理的微生物氮合(?)效率分别为8.50,11.20,13.10和13.97g/kg可消化有机物(DOM)(S.E=(?) 95)。微生物氮合成效率与瘤胃液稀释率有相关关系。 展开更多
关键词 绵羊 人工唾液 瘤胃液相平衡 微生物氮
在线阅读 下载PDF
High throughput synthesis enabled exploration of CoCrFeNi-based high entropy alloys 被引量:6
3
作者 L.Zhao L.Jiang +9 位作者 L.X.Yang H.Wang W.Y.Zhang G.Y.Ji X.Zhou W.A.Curtin x.b.chen P.K.Liaw S.Y.Chen H.Z.Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第15期269-282,共14页
To accelerate the exploration,screening,and discovery of structural high-entropy alloys with targeted properties,the newly developed High-Throughput Hot-Isostatic-Pressing based Micro-Synthesis Approach(HT-HIP-MSA)is ... To accelerate the exploration,screening,and discovery of structural high-entropy alloys with targeted properties,the newly developed High-Throughput Hot-Isostatic-Pressing based Micro-Synthesis Approach(HT-HIP-MSA)is employed to efficiently synthesize and characterize 85 combinatorial alloys in a 13-principal element alloying space.These Co Cr Fe Ni-based high entropy alloys span 1 quaternary,9 quinary,and 36 senary alloy systems,and their composition-structure-property relationships are characterized and analyzed experimentally and computationally.From the single-phase FCC CoCrFeNi alloy base,with Mn,Cu,Ti,Nb,Ta,Mo,W,Al,and Si as principal element alloying additions,we find(1)the extended Mn solubility in the single-phase FCC CoCrFeNi-Mn_(x) alloys,(2)the destabilizing behavior for most of the quinary and senary alloys,and(3)the distinctive solid-solution-strengthening effects in the alloys.In combining the computational methods,the HT-HIP-MSA can be systematic and economic to explore and refine the compositions,structures,and properties of structural high-entropy alloys. 展开更多
关键词 High-entropy alloys HIGH-THROUGHPUT Composition-structure-property
原文传递
Biomaterials / bioinks and extrusion bioprinting 被引量:6
4
作者 x.b.chen A.Fazel Anvari-Yazdi +5 位作者 X.Duan A.Zimmerling R.Gharraei N.K.Sharma S.Sweilem L.Ning 《Bioactive Materials》 SCIE CSCD 2023年第10期511-536,共26页
Bioinks are formulations of biomaterials and living cells, sometimes with growth factors or other biomolecules, while extrusion bioprinting is an emerging technique to apply or deposit these bioinks or biomaterial sol... Bioinks are formulations of biomaterials and living cells, sometimes with growth factors or other biomolecules, while extrusion bioprinting is an emerging technique to apply or deposit these bioinks or biomaterial solutions to create three-dimensional (3D) constructs with architectures and mechanical/biological properties that mimic those of native human tissue or organs. Printed constructs have found wide applications in tissue engineering for repairing or treating tissue/organ injuries, as well as in vitro tissue modelling for testing or validating newly developed therapeutics and vaccines prior to their use in humans. Successful printing of constructs and their subsequent applications rely on the properties of the formulated bioinks, including the rheological, mechanical, and biological properties, as well as the printing process. This article critically reviews the latest developments in bioinks and biomaterial solutions for extrusion bioprinting, focusing on bioink synthesis and characterization, as well as the influence of bioink properties on the printing process. Key issues and challenges are also discussed along with recommendations for future research. 展开更多
关键词 3D bioprinting EXTRUSION Bioinks BIOMATERIALS Tissue engineering
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部