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Microstructure and interface thermal stability of C/Mo double-coated SiC fiber reinforced γ-TiAl matrix composites 被引量:5
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作者 罗贤 李超 +4 位作者 杨延清 许海嫚 李晓宇 刘帅 李鹏涛 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第5期1317-1325,共9页
C/Mo duplex coating interfacially modified SiC fiber-reinforced γ-TiAl matrix composite (SiCf/C/Mo/γ-TiA1) was prepared by foil-fiber-foil method to investigate its interfacial modification effect. SiCf/C/TiAl com... C/Mo duplex coating interfacially modified SiC fiber-reinforced γ-TiAl matrix composite (SiCf/C/Mo/γ-TiA1) was prepared by foil-fiber-foil method to investigate its interfacial modification effect. SiCf/C/TiAl composites were also prepared under the same processing condition for comparision. Both kinds of the composites were thermally exposed in vacuum at 800 and 900℃ for different durations in order to study thermal stability of the interfacial zone. With the aids of scanning electron microscope (SEM) and energy dispersive spectrometer (EDS), the interracial microstructures of the composites were investigated. The results reveal that, although adding the Mo coating, the interfacial reaction product of the SiCf/C/Mo/TiAl composite is the same with that of the SiCf/C/TiA1 composite, which is TiC/Ti2AlC between the coating and the matrix. However, C/Mo duplex coating is more efficient in hindering interfacial reaction than C single coating at 900 ℃ and below. In addition, a new layer of interfacial reaction product was found between Ti2AlC and the matrix after 900 ℃, 200 h thermal exposure, which is rich in V and close to the chemical composition of B2 phase. 展开更多
关键词 Mo coating TiAl alloy sic fiber titanium matrix composite interracial reaction thermal stability
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Effect of Silane Coupling Agent Concentration on Interfacial Properties of Basalt Fiber Reinforced Composites
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作者 Takao Ota 《材料科学与工程(中英文A版)》 2023年第2期36-42,共7页
The purpose of this study is to investigate the effect of the concentration of silane coupling solution on the tensile strength of basalt fiber and the interfacial properties of basalt fiber reinforced polymer composi... The purpose of this study is to investigate the effect of the concentration of silane coupling solution on the tensile strength of basalt fiber and the interfacial properties of basalt fiber reinforced polymer composites.The surface treatment of basalt fibers was carried out using an aqueous alcohol solution method.Basalt fibers were subjected to surface treatment with 3-Methacryloxypropyl trimethoxy silane at 0.5 wt.%,1 wt.%,2 wt.%,4 wt.%and 10 wt.%.The basalt monofilament tensile tests were carried out to investigate the variation in strength with the concentration of the silane coupling agent.The microdroplet test was performed to examine the effect of the concentration of the silane coupling agent on interfacial strength of basalt reinforced polymer composites.The film was formed on the surface of the basalt fiber treated silane coupling agent solution.The tensile strength of basalt fiber increased because the damaged fiber surface was repaired by the firm of silane coupling agent.The firm was effective in not only the surface protection of basalt fiber but also the improvement on the interfacial strength of fiber-matrix interface.However,the surface treatment using the high concentration silane coupling agent solution has an adverse effect on the mechanical properties of the composite materials,because of causing the degradation of the interfacial strength of the composite materials. 展开更多
关键词 Natural MINERAL fiber reinforced composites BASALT fiber SILANE coupling agent interface fiber/matrix BOND
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Characterization of ceramic reinforced titanium matrix composites fabricated by spark plasma sintering for anti-ballistic applications 被引量:1
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作者 S.W.Maseko A.P.I.Popoola O.S.I.Fayomi 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第5期408-411,共4页
Titanium has found extensive use in various engineering applications due to its attractive physical,mechanical, and chemical characteristics. However, titanium has relatively low hardness for use as an armour material... Titanium has found extensive use in various engineering applications due to its attractive physical,mechanical, and chemical characteristics. However, titanium has relatively low hardness for use as an armour material. ZrB2 was incorporated to the Ti matrix to form a Ti-based binary composites. In this study, powder metallurgy techniques were employed to disperse the ceramic particulates throughout the matrix material then consolidated through spark plasma sintering. The composites were densified at1300 ℃, pressure of 50 MPa, and holding time of 5 min. The microstructure and phase analysis of the sintered composites was carried out using SEM and XRD, while the hardness was determined using Vickers' microhardness tester. The SEM and XRD results confirmed the presence of the TiB whiskers which renowned with the improving the hardness of titanium. The hardness of the composite with 10 wt% ZrB_2 showed the highest hardness compared to that obtained for the 5 and 15 wt% ZrB_2 composites which was 495 and 571 Hv respectively. 展开更多
关键词 SPS TIB WHISKERS Hardness titanium matrix composites REINFORCEMENT
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An Application of the Modified Shear Lag Model to Study the Influence of Thermal Residual Stresses on the Stiffness and Yield Strength of Short Fiber Reinforced Metal Matrix Composites 被引量:1
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作者 Zhonghao JIANG and Jianshe LIAN(Dept. of Materials Science and Engineering, Jilin University of Technology, Changchun 130025, China)Shangli DONG and Dezhuang YANG(School of Materials Science and Engineering, Harbin Institute of Technology, Harbin 150001, 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1999年第3期213-221,共9页
The modified shear lag model proposed recently was applied to calculate thermal residual stresses and subsequent stress distributions under tensile and compressive loadings. The expressions for the elastic moduli and ... The modified shear lag model proposed recently was applied to calculate thermal residual stresses and subsequent stress distributions under tensile and compressive loadings. The expressions for the elastic moduli and the yield strengths under tensile and compressive loadings were derived which take account of thermal residual stresses. The asymmetries in the elastic modulus and the yield strength were interpreted using the derived expressions and the obtained results of the stress calculations. The model predictions have exhibited good agreements with the experimental results and also with the other theoretical predictions 展开更多
关键词 ab Figure An Application of the Modified Shear Lag Model to Study the Influence of Thermal Residual Stresses on the Stiffness and Yield Strength of Short fiber reinforced Metal matrix composites
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A New Modification to Shear Lag Model as Applied to Stiffness and Yield Strength of Short Fiber Reinforced Metal Matrix Composites
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作者 Jiang, ZH Lian, JS +1 位作者 Yang, DZ Dong, SL 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 1998年第6期516-522,共7页
A new modification for the shear lag model is given and the expressions for the stiffness and yield Strength of short fiber metal matri×composite are derived. These expressions are then compared with our experime... A new modification for the shear lag model is given and the expressions for the stiffness and yield Strength of short fiber metal matri×composite are derived. These expressions are then compared with our experimental data in a SiCw/Al-Li T6 composite and the published experimental data on different SiCw/Al T6 composites and also compared with the previous shear lag models and the other theoretical models. 展开更多
关键词 sic A New Modification to Shear Lag Model as Applied to Stiffness and Yield Strength of Short fiber reinforced Metal matrix composites
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连续SiCf/TC17复合材料室温偏轴拉伸性能研究
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作者 沙兆洋 陈国清 +2 位作者 黄浩 王敏涓 周文龙 《宇航材料工艺》 CAS CSCD 北大核心 2024年第2期153-160,共8页
采用磁控溅射法结合热等静压工艺制备SiCf/TC17复合材料,通过SEM观察试样的断口形貌,研究了复合材料在室温的偏轴拉伸性能及断裂机制。结果表明:纤维偏轴角度在0°~2°间,复合材料轴向性能变化较小,拉伸强度稳定在1960~1987 MPa... 采用磁控溅射法结合热等静压工艺制备SiCf/TC17复合材料,通过SEM观察试样的断口形貌,研究了复合材料在室温的偏轴拉伸性能及断裂机制。结果表明:纤维偏轴角度在0°~2°间,复合材料轴向性能变化较小,拉伸强度稳定在1960~1987 MPa;纤维偏轴角度再增大时(>2°),材料拉伸强度近似呈单调线性降低,由1870 MPa降至1797 MPa。纤维偏轴角度较小时(≤2°),平坦区基体与纤维断裂面平整,且两者的断裂面平行。纤维/基体界面没有明显的脱粘破碎迹象;纤维偏轴角度较大时(>2°),部分纤维存在“斜切断裂”,纤维拔出距离变长,且不再与基体的断裂面保持在同一平面,基体撕裂损伤严重。依据断口形貌结合局部承载模型,详细论述了SiCf/TC17复合材料两种拉伸失效的断裂过程。纤维偏轴角度较小时(≤2°),裂纹萌生于纤维间距较小的反应层,在界面处钝化或偏转进而形成不同截面的平坦区,当纤维超过承载能力极限,试样整体断裂;纤维偏轴角度较大时(>2°),“拉-剪”耦合效应导致C涂层与反应层间的界面脱粘破碎形成裂纹源,裂纹加速反应层受损或导致界面脱粘致使纤维断裂,当基体及剩余纤维超过承载能力极限,试样整体断裂。 展开更多
关键词 钛基复合材料 sic纤维 TC17 拉伸性能 断裂过程 偏轴拉伸
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电压对15%SiC_(p)/2009铝基复合材料微弧放电析出气体成分的影响
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作者 廖燚钊 王兴平 +2 位作者 万旭敏 杜建成 薛文斌 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第5期1529-1540,共12页
在硅酸盐溶液中,对15%SiC_(p)/2009铝基复合材料进行不同电压下的微弧氧化试验。通过分析微弧放电过程中复合材料析出气体的组成,评估电压对阳极析出气体成分的影响,并阐释其产生机制。结果表明:不同电压下阳极析出的气体均由H_(2)、O_... 在硅酸盐溶液中,对15%SiC_(p)/2009铝基复合材料进行不同电压下的微弧氧化试验。通过分析微弧放电过程中复合材料析出气体的组成,评估电压对阳极析出气体成分的影响,并阐释其产生机制。结果表明:不同电压下阳极析出的气体均由H_(2)、O_(2)及少量CO组成,不同于传统电化学理论认为的阳极析出氧气。在360~440 V范围内,随着电压的升高,放电火花强度增大,微弧氧化膜生长速率加快,H_(2)含量随之增加,O_(2)含量相应降低;电压超过440 V后,H_(2)含量约为80%(体积分数),O_(2)含量约为20%,两者含量保持稳定。阳极火花放电区水热分解释放大量H_(2)和O_(2),且放电越剧烈,水分解量越多。放电区中铝和水氧化反应及高能电子轰击电离水分子也是过量H_(2)析出的重要原因。此外,SiC增强体参与成膜过程,并在放电区高温环境中被氧化,生成了少量的CO气体。 展开更多
关键词 微弧氧化 铝基复合材料 碳化硅增强体 气体析出 气相色谱
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60%SiCp/2009铝基复合材料表面等离子体电解氧化膜的生长和表征
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作者 廖燚钊 王兴平 +6 位作者 高川力 周茜 徐驰 金小越 杜建成 薛文斌 张永忠 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第2期435-452,共18页
在硅酸盐溶液中采用等离子体电解氧化技术在60%SiCP(体积分数)/2009铝基复合材料表面制备陶瓷膜。研究氧化膜的显微组织、成分、润湿性及其耐腐蚀性能,探讨SiC颗粒表面火花放电的产生机理。结果表明,来自硅酸盐溶液的不溶性化合物(SiO_(... 在硅酸盐溶液中采用等离子体电解氧化技术在60%SiCP(体积分数)/2009铝基复合材料表面制备陶瓷膜。研究氧化膜的显微组织、成分、润湿性及其耐腐蚀性能,探讨SiC颗粒表面火花放电的产生机理。结果表明,来自硅酸盐溶液的不溶性化合物(SiO_(2))使SiC颗粒表面产生火花放电,Al-Si-O化合物中的缺陷为SiC颗粒表面放电电流的传导提供优先路径。1200s时铝基复合材料表面形成5.5μm厚的均匀膜层,膜层的表面自由能在40s时达到最大值37.10 m J/cm^(2),并在1200 s时下降到25.95 m J/cm^(2)。此外,等离子体电解氧化处理可以显著提高复合材料的耐蚀性。 展开更多
关键词 等离子体电解氧化 铝基复合材料 sic增强颗粒 火花放电 润湿性 耐蚀性
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Effect of properties of SiC fibers on longitudinal tensile behavior of SiC_f/Ti-6Al-4V composites 被引量:5
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作者 李建康 杨延清 +2 位作者 原梅妮 罗贤 李丽丽 《中国有色金属学会会刊:英文版》 EI CSCD 2008年第3期523-530,共8页
Three types of SiC fibers with different tensile strength were employed to prepare unidirectional titanium matrix composites. The strengths of the original SiC fibers and extracted fibers from the composites were meas... Three types of SiC fibers with different tensile strength were employed to prepare unidirectional titanium matrix composites. The strengths of the original SiC fibers and extracted fibers from the composites were measured. The results show that the mechanical properties of fibers are greatly damaged by the consolidation processing of the composite. The strength data of the extracted fibers are used to predict the strength of the composites according to two theoretic models. The Globe Load-Sharing(GLS) model overestimates the strength of the composites. If the Local Load-Sharing(LLS) model assumes that failure occurs after the formation of a cluster with three broken fibers, the model can predict the strength of the composites exactly. 展开更多
关键词 碳化硅光纤 复合材料 抗张强度
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Exploration of Al-based matrix composites reinforced by hierarchically spherical agents 被引量:1
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作者 Li Zhang Bao-lin Wu +1 位作者 Yu-hua Zhao Xing-hao Du 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第8期796-801,共6页
Al-based composites reinforced with A1-Ti intermetallic compounds/Ti metal hierarchically spherical agents were successfully fabricated by powder metallurgy. This kind of structure produces strongly bonded interfaces ... Al-based composites reinforced with A1-Ti intermetallic compounds/Ti metal hierarchically spherical agents were successfully fabricated by powder metallurgy. This kind of structure produces strongly bonded interfaces as well as soft/hard/soft transition regions between the matrix and reinforced agents, which are beneficial to load transfer during deformation. As expected, the resultant composites exhibit promising mechanical properties at ambient temperature. The underlying mechanism was also discussed in this paper. 展开更多
关键词 metallic matrix composites REINFORCEMENT INTERMETALLICS aluminum titanium powder metallurgy mi-crostructure mechanical properties
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SiC纤维预制体结构对SiC_(f)/BN/SiC复合材料致密化和力学性能的影响
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作者 王梦千 贾林涛 +1 位作者 李爱军 彭雨晴 《复合材料科学与工程》 CAS 北大核心 2024年第5期58-65,共8页
为了研究碳化硅(SiC)纤维预制体的结构对SiC基体的化学气相渗透(CVI)工艺致密化过程的影响,利用模拟计算方法分析了2D叠层、2.5D和3D正交三种编织结构SiC预制体在SiC致密化过程中的孔隙结构演变规律,并采用三氯化硼-氨气-氢气-氮气(BCl_... 为了研究碳化硅(SiC)纤维预制体的结构对SiC基体的化学气相渗透(CVI)工艺致密化过程的影响,利用模拟计算方法分析了2D叠层、2.5D和3D正交三种编织结构SiC预制体在SiC致密化过程中的孔隙结构演变规律,并采用三氯化硼-氨气-氢气-氮气(BCl_(3)-NH_(3)-H_(2)-N_(2))混合气体和三氯甲基硅烷-氢气-氮气(MTS-H_(2)-N_(2))混合气体作为前驱体,利用CVI致密化工艺制备出三种预制体结构的SiC_(f)/BN/SiC复合材料。结果表明,SiC纤维预制体结构不同,SiC_(f)/BN/SiC复合材料的致密化效率不同,其中2.5D纤维预制体的致密化速率最快,3D正交预制体的致密化速率最慢。致密化120 h后,三种预制体结构的复合材料密度均达到2.3 g/cm~3以上,开孔率为10%左右。三种结构的SiC_(f)/BN/SiC复合材料拉伸强度为130~170 MPa。在层间剪切过程中,2D结构SiC_(f)/BN/SiC复合材料与2.5D结构SiC_(f)/BN/SiC复合材料样品都出现了XY面的纤维剥离现象,而3D结构SiC_(f)/BN/SiC复合材料样品发生了正交Z向纤维的断裂。由此可知,SiC纤维预制体结构影响了所形成复合材料的致密化过程和力学性能。 展开更多
关键词 sic纤维 预制体结构 sic基体 CVI 致密化 复合材料 力学性能
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EFFECT OF OXIDATION OF SiC ON AGING CHARACTERISTICS OF SiC PARTICLES AND SHORT MULLITE FIBERS REINFORCED 2024Al COMPOSITE 被引量:1
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作者 Mei Zhi Department of Materials, Huazhong University of Science and Technology, Wuhan 430074, P. R. China Jin Yanping, Gu Mingyuan and Wu Renjie State Key Laboratory of Metal Matrix Composites, Shanghai Jiao Tong University, Shanghai 200030, P. R. 《中国有色金属学会会刊:英文版》 CSCD 1998年第4期61-65,共5页
INTRODUCTIONAgingtreatmenthasbeenwidelyusedasafurtherstrengtheningmeansforaluminummatrixcomposites.Studyofc... INTRODUCTIONAgingtreatmenthasbeenwidelyusedasafurtherstrengtheningmeansforaluminummatrixcomposites.Studyofcomposites’agingla... 展开更多
关键词 aluminum matrix COMPOSITE sic MULLITE fiber 2024Al alloy AGING
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Preparation and Mechanical Properties of-SiC Nanoparticle Reinforced Aluminum Matrix Composite by a Multi-step Powder Metallurgy Process 被引量:5
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作者 WANG Linong WU Hao +2 位作者 WU Xingping CHEN Minghai LIU Ning 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第6期1059-1063,共5页
β-SiC nanoparticle reinforced A1 matrix (nano-SiCp/A1) composite was prepared by a multi- step powder metallurgy strategy including presureless sintering, hot compacting process and hot extrusion. The microstructur... β-SiC nanoparticle reinforced A1 matrix (nano-SiCp/A1) composite was prepared by a multi- step powder metallurgy strategy including presureless sintering, hot compacting process and hot extrusion. The microstructures of the as-prepared composites were observed by scanning electronic microscopy (SEM), and the mechanical properties were characterized by tensile strength measurement and Brinell hardness test. The experimental results revealed that the tensile strength of the composite with the addition of 5wt%/3-SIC nanoprtieles could be increased to 215 MPa, increasing by 110% compared with pure A1 matrix. Comparative experiments reflected that theβ-SIC nanoprticles showed significant reinforcement effect than traditional a-SiC micro-sized particles. The preparation process and sintering procedure were investigated to develop a cost effective preparation strategy to fabricate nano-SiCp/A1 composite. 展开更多
关键词 Β-sic NANOPARTICLES particulate reinforced Al matrix composite powder metallurgy
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偏轴载荷下连续SiC纤维增强钛基复合材料的拉伸行为研究
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作者 王敏涓 陈永刚 +4 位作者 齐金磊 孙光耀 王宝 黄旭 黄浩 《航空制造技术》 CSCD 北大核心 2024年第8期45-53,共9页
连续SiC纤维增强钛基(SiCf/Ti)复合材料是未来高性能动力装置的关键材料之一。针对SiCf/Ti复合材料中纤维与试样轴向载荷常存在一定偏轴角度的问题,通过室温拉伸、有限元模拟和断口表征研究了偏轴角度对SiCf/TC17复合材料力学性能和失... 连续SiC纤维增强钛基(SiCf/Ti)复合材料是未来高性能动力装置的关键材料之一。针对SiCf/Ti复合材料中纤维与试样轴向载荷常存在一定偏轴角度的问题,通过室温拉伸、有限元模拟和断口表征研究了偏轴角度对SiCf/TC17复合材料力学性能和失效机理的影响。根据SiCf/TC17复合材料力学性能、断口形貌和应力分布可以定义一个临界偏轴角度,其数值约为1°。结果表明,随偏轴角度的增加,复合材料试样的抗拉强度下降,且当偏轴角度超过临界值时,抗拉强度下降速率增加。复合材料的失效机制与偏轴角度相关,当偏轴角度小于临界值时,试样断口由数个平坦的断面组成,纤维拔出和界面开裂程度都较低,纤维断面基本垂直于轴线,为典型的正应力断裂形貌;当偏轴角度大于临界值时,断口的起伏程度增加,纤维拔出和界面开裂现象都更加明显,部分纤维开始出现剪切断裂,表明拉剪耦合在断裂中起到重要作用。因此,对于SiCf/TC17复合材料轴向试样而言,应将纤维与试样整体的偏轴角度控制在临界值内,以获得有效的性能测试数据。 展开更多
关键词 钛基复合材料 sic纤维 偏轴拉伸 断口形貌 临界偏轴角度
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Microstructural Changes of T1-6A1-4V Matrix by the Incorporation of Continuous SiC Fibers
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作者 Yuechun FU Nanlin SHI Dezhi ZHANG Rui YANG 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2006年第4期452-454,共3页
In SiC(f)/Ti-6Al-4V composites, the microstructure of the matrix close to the fiber was different from that of the fiber-less material. Microstructure observations show that a layer of fine grains was located adjace... In SiC(f)/Ti-6Al-4V composites, the microstructure of the matrix close to the fiber was different from that of the fiber-less material. Microstructure observations show that a layer of fine grains was located adjacent to the fiber, and more dislocations and faults were found in this region. Higher recrystallization nucleation rate due to the undeformed SiC fiber and thermal residual stress induced during cooling from the fabrication temperature caused the microstructural changes of the matrix. Hardness measurement indicates that the matrix in the fiber neighborhood was strengthened, and the strengthening effect decreased with distance away from the fiber. 展开更多
关键词 matrix strengthening Ti-6Al-4V powder sic fiber Metal-matrix composites
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Effect of fiber distribution on residual thermal stress in titanium matrix composite
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作者 马志军 杨延清 +1 位作者 朱艳 陈彦 《中国有色金属学会会刊:英文版》 CSCD 2004年第2期330-334,共5页
Residual thermal stresses (RTS) of SCS-6 SiC/Ti-24Al-11Nb composite were analyzed by using finite element method (FEM). Three models of fiber array in the composite and the effect of fiber distance on the RTS were dis... Residual thermal stresses (RTS) of SCS-6 SiC/Ti-24Al-11Nb composite were analyzed by using finite element method (FEM). Three models of fiber array in the composite and the effect of fiber distance on the RTS were discussed. In all the three models compressive stress was found in the radial direction and tensile stress in the tangential direction. It is pointed out that, in real composite system, hexagonal fiber geometry is superior because the distribution and the magnitude of the residual stress are similar to those in single fiber model. In square fiber geometry, it is easier to make the matrix crack due to the larger residual tangential stress. RTS becomes very large and changes violently when the fiber distance is less than 15 μm or so, therefore too high fiber volume is apt to result in matrix crack. 展开更多
关键词 钛合金 sic纤维 残余热压力 有限元 FEM RTS 数值模拟
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成型温度对SiC_(f)/Ti60复合材料拉伸行为的影响
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作者 孟凡玲 宋永青 +1 位作者 张旭 王玉敏 《沈阳理工大学学报》 CAS 2023年第4期79-86,共8页
采用磁控溅射技术结合热等静压工艺制备SiC_(f)/Ti60复合材料,研究成型温度对SiC_(f)/Ti60复合材料室温和高温拉伸性能的影响规律,并分析其断裂机制。结果表明:SiC_(f)/Ti60复合材料室温拉伸强度随成型温度升高而降低,高温拉伸强度与成... 采用磁控溅射技术结合热等静压工艺制备SiC_(f)/Ti60复合材料,研究成型温度对SiC_(f)/Ti60复合材料室温和高温拉伸性能的影响规律,并分析其断裂机制。结果表明:SiC_(f)/Ti60复合材料室温拉伸强度随成型温度升高而降低,高温拉伸强度与成型温度关系不明显;拉伸载荷作用下材料的主要断裂特征表现为“纤维桥连”,呈现网络状的基体裂纹分布特征;复合材料损伤首先发生在反应层,裂纹萌生后扩展进入基体,基体断裂发生在纤维断裂之前,复合材料芯完全失效后包套断裂。 展开更多
关键词 钛基复合材料 sic纤维 拉伸行为 断裂机制
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Effect of C/Mo Duplex-coating on Thermal Residual Stresses in SiCf/Ti2AlNb Composites 被引量:1
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作者 ZHU Tangkui WANG Degui LUO Xian 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2021年第4期526-532,共7页
Three-dimensional finite element physical models considering the layered distribution of materials at the interface were developed to study the effect of the coating system on distributions of thermal residual stresse... Three-dimensional finite element physical models considering the layered distribution of materials at the interface were developed to study the effect of the coating system on distributions of thermal residual stresses in SiCf/Ti2AlNb composites.Two coating systems were comparatively studied,namely C coating and C/Mo duplex-coating.The thermal residual stresses after 1 080 ℃/1 h solution treatment and 800 ℃/20 h ageing treatment in the composites were also analyzed.The experimental results show that Mo coating can decrease thermal residual stress magnitude in the matrix.However,it would increase the thermal residual stresses in the interfacial reaction layer of TiC.The change of radial thermal residual stress in TiC layer is inconspicuous after solid solution and ageing treatment,but the hoop and axial thermal residual stresses increase obviously.However,the heat treatment can obviously reduce hoop and axial thermal residual stresses of the matrix,which is benefit to restrain the initiation and propagation of cracks in the matrix. 展开更多
关键词 finite element simulation titanium matrix composite sic fiber thermal residual stress
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基于Al-B-C烧结助剂的SiC_(nf)增强SiC陶瓷基复合材料制备及性能研究 被引量:1
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作者 楼永伟 陈浩 陈建军 《陶瓷学报》 CAS 北大核心 2023年第4期769-775,共7页
以单晶碳化硅纳米纤维(SiC_(nf))为增强体,以铝(Al)粉、硼(B)粉和超细炭黑为烧结助剂,通过化学气相沉积及浸渍裂解工艺在SiC_(nf)上制备了PyC、BN双层界面包覆层,采用热压烧结法制备SiC_(nf)增强SiC陶瓷基复合材料(SiC_(nf)/SiC-CMC)。... 以单晶碳化硅纳米纤维(SiC_(nf))为增强体,以铝(Al)粉、硼(B)粉和超细炭黑为烧结助剂,通过化学气相沉积及浸渍裂解工艺在SiC_(nf)上制备了PyC、BN双层界面包覆层,采用热压烧结法制备SiC_(nf)增强SiC陶瓷基复合材料(SiC_(nf)/SiC-CMC)。实验结果表明,Al-B-C烧结助剂在1850℃生成了液相Al8B4C7,促进了SiC陶瓷的致密化,提高了复合材料致密度。当烧结助剂含量为10wt.%时,随着Si Cnf含量的增加,复合材料内孔隙增多,致密度降低,抗弯强度和断裂韧性先增大后降低。当SiC_(nf)含量为10 wt.%时,复合材料的力学性能达到最优,抗弯强度和断裂韧性分别为414 MPa和9.65 MPa·m1/2,相较于未添加SiC_(nf)的热压烧结SiC陶瓷,其韧性提高了93.8%。微观结构分析表明,SiC_(nf)主要通过纤维拔出的方式来增加裂纹扩展时的能量消耗,达到提升陶瓷断裂韧性的效果。 展开更多
关键词 sic_(nf)增强sic陶瓷基复合材料 Al-B-C烧结助剂 热压烧结 断裂韧性
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Experimental Investigation of Natural Fiber Reinforced Polymers 被引量:2
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作者 Irene S. Fahim Salah M. Elhaggar Hatem Elayat 《Materials Sciences and Applications》 2012年第2期59-66,共8页
The potential usage of virgin Low density polyethelyne (LDPE) reinforced with different concentrations (2%, 5% and 6% by weight) of treated rice straw with different lengths (2 mm, 4 mm and 6 mm) is investigated to pr... The potential usage of virgin Low density polyethelyne (LDPE) reinforced with different concentrations (2%, 5% and 6% by weight) of treated rice straw with different lengths (2 mm, 4 mm and 6 mm) is investigated to produce high value products that have technical and environmental demand. The two treatment methods used for rice straw are alkali and acidic treatments of rice straw. The removal of impurities and waxy substances from fiber surface avoid creation of rougher topography after treatment and improves the quality of fiber, also content of hemi cellulose and lignin decrease so increase effectiveness of fiber due to dispersing of fiber in matrix. The reinforcing material is embedded in the matrix material to enhance tensile and flexural behaviors of the synthesized composite. The result of investigating these two mechanical properties, using statistical analysis & design of experiments, showed an enhancement in the mechaniccal properties of the virgin polymer composite compared to the virgin polymer. The flexural stress of the composite increased three times the virgin flexural stress, while the tensile stress increased eight times the original tensile stress. 展开更多
关键词 Polymers-matrix composites (PMCs) fiber reinforced PLASTIC (FRP) NATURAL fibers Low Density POLYETHYLENE (LDPE)
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