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Thermo-Physical Potential of Recycled Banana Fibers for Improving the Thermal and Mechanical Properties of Biosourced Gypsum-Based Materials
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作者 Youssef Maaloufa Soumia Mounir +8 位作者 Sara Ibnelhaj Fatima Zohra El Wardi Asma Souidi Yakubu Aminu Dodo Malika Atigui Mina Amazal Abelhamid Khabbazi Hassan Demrati Ahmed Aharoune 《Journal of Renewable Materials》 EI CAS 2024年第4期843-867,共25页
The development of bio-sourced materials is essential to ensuring sustainable construction;it is considered a locomotive of the green economy.Furthermore,it is an abundant material in our country,to which very little ... The development of bio-sourced materials is essential to ensuring sustainable construction;it is considered a locomotive of the green economy.Furthermore,it is an abundant material in our country,to which very little attention is being given.This work aims to valorize the waste of the trunks of banana trees to be used in construction.Firstly,the physicochemical properties of the fiber,such as the percentage of crystallization and its morphology,have been determined by X-ray diffraction tests and scanning electron microscopy to confirm the potential and the impact of the mode of drying on the quality of the banana fibers,with the purpose to promote the use of this material in construction.Secondly,the results obtained with the gypsum matrix allowed us to note a preponderant improvement in the composite’s thermal properties thanks to the variation of the banana fiber additive.Thirdly,the impact of the nature of the banana fiber distribution(either fiber mixed in matrix or fiber series model)on the flexural and compressive strengths of the composites was studied.The results obtained indicate that the insulation gain reaches up to 40%.It depends on the volume fraction and type of distribution of the banana fibers.However,the thermal inertia of the composites developed,represented by thermal diffusivity and thermal effusivity,was studied.Results indicate a gain of 40%and 25%,respectively,in terms of thermal diffusivity and thermal effusivity of the developed composites compared to plaster alone.Concerning the mechanical properties,the flexural strength depends on the percentage of the volume fraction of banana fibers used,and it can reach 20%more than the flexural strength of plaster;nevertheless,there is a significant loss in terms of the compressive strength of the studied composites.The results obtained are confirmed by the microstructure of the fiber banana.In fact,the morphology of the banana fibers was improved by the drying process.It reduces the amorphous area and improves the cellulosic crystalline surfaces,which assures good adhesion between the fiber and the matrix plaster.Finally,the dimensionless coefficient analysis was done to judge the optimal proportion of the banana fiber additive and to recommend its use even on false ceilings or walls. 展开更多
关键词 Biosourced materials fiber banana flexural strength mechanical properties open-air drying PLASTER thermal properties waste management
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Study on mechanical properties of composite materials by in-situ tensile test
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作者 黄海波 李凡 《Journal of Southeast University(English Edition)》 EI CAS 2004年第1期49-52,共4页
The mechanical properties of the SiC fiber-reinforced Mg-Al metal matrix composite materials have been studied on internal microstructure by (scanning electron microscopy) SEM in-situ tensile test. The emergence and p... The mechanical properties of the SiC fiber-reinforced Mg-Al metal matrix composite materials have been studied on internal microstructure by (scanning electron microscopy) SEM in-situ tensile test. The emergence and propagation of the crack, and the fracture behavior in materials have been observed and studied. It is found that in the case of the tensile test, the crack emerged in SiC fiber initially. In the case of the strong cohesion of the fiber-metal interface, the crack propagated in the fiber, meanwhile the fibers in the neighborhood of the cracked fiber began to crack and the Mg-Al metal deformed plastically, and at last the material fractured. Otherwise the toughness of the materials grows in the case of the lower cohesion of the fiber-metal matrix interface. 展开更多
关键词 Cracks fiber reinforced materials Interfaces (materials) mechanical properties MICROSTRUCTURE Scanning electron microscopy Silicon carbide Tensile testing
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Mechanical Properties of Glass Fiber/Unsaturated Polyester Resin Composite Water Collector
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作者 XIONG Yanping QIU Li +1 位作者 NAN Yanmin LONG Tianyu 《Journal of Donghua University(English Edition)》 CAS 2021年第1期68-71,共4页
The water collector is operated in the humid and hot environment of the cooling tower all the year round.It also needs to carry part of the weight of water and silt.Therefore,it is particularly critical to optimize th... The water collector is operated in the humid and hot environment of the cooling tower all the year round.It also needs to carry part of the weight of water and silt.Therefore,it is particularly critical to optimize the material of the water collector and improve its mechanical properties.Polyester,a general term of polymer obtained from polyols and polyacids,is a kind of engineering plastics with excellent properties and wide applications.Glass fiber is a reinforced plastic reinforcement material,and the biggest characteristic of it is the high tensile strength and good heat resistance.In this paper,glass fiber reinforced polyester resin composite material is prepared,its tensile properties and bending properties are tested,and the performance of the imported material JK2020B is compared and analyzed.The results show that the elastic modulus along the fiber direction is relatively high,but the interlayer force in the direction of thickness and width is very small.This review provides a guidance for production process. 展开更多
关键词 glass fiber unsaturated polyester resin composite material water collector mechanical property
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Residual Stress Distribution of Si_(3)N_(4)/SiC Gradient Material and the Effect of Residual Stress on Material Properties
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作者 赵东升 JING Qiang +1 位作者 SUN Jianwei 张金咏 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第4期759-765,共7页
The Si_(3)N_(4)/SiC gradient material with a gradient composition structure was prepared by a hot pressing sintering.The sinterability,distribution of residual stress and the effect of residual stress on mechanical pr... The Si_(3)N_(4)/SiC gradient material with a gradient composition structure was prepared by a hot pressing sintering.The sinterability,distribution of residual stress and the effect of residual stress on mechanical properties of Si_(3)N_(4)/SiC gradient materials were studied.The research results show that,at 1750℃,Si_(3)N_(4)/SiC gradient materials with different ratios can achieve co-sintering,and the overall relative density of the sample reaches 98.5%.Interestingly,the flexural strength of Si_(3)N_(4)/SiC gradient material is related to its loading surface.The flexural strength of SiC as the loading surface is about 35%higher than that of Si_(3)N_(4)as the loading surface.The analysis of the residual stress of the material in the gradient structure shows that the gradient stress distribution between the two phases is a vital factor affecting the mechanical properties of the material.With the increase of SiC content in the gradient direction,the fracture toughness of each layer of Si_(3)N_(4)/SiC gradient materials gradually decreases.The surface hardness of the pure SiC side is lower than that reported in other literature. 展开更多
关键词 Si_(3)N_(4) sic gradient material residual stress mechanical properties
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SiC_(f)/Ti65复合材料的拉伸行为研究
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作者 孟凡玲 刘范凯 +1 位作者 杨丽娜 王玉敏 《热加工工艺》 北大核心 2024年第12期34-40,共7页
采用磁控溅射先驱丝法结合热等静压工艺制备SiC_(f)/Ti65复合材料,研究了SiC_(f)/Ti65复合材料室温、高温拉伸行为,揭示了SiC_(f)/Ti65复合材料拉伸断裂机制。研究结果表明:SiC_(f)/Ti65复合材料的室温、高温抗拉强度相比于Ti65合金的... 采用磁控溅射先驱丝法结合热等静压工艺制备SiC_(f)/Ti65复合材料,研究了SiC_(f)/Ti65复合材料室温、高温拉伸行为,揭示了SiC_(f)/Ti65复合材料拉伸断裂机制。研究结果表明:SiC_(f)/Ti65复合材料的室温、高温抗拉强度相比于Ti65合金的抗拉强度分别提升29%和164%,验证了复合材料的增强效果。SiC_(f)/Ti65复合材料的室温拉伸断裂机制为反应层断裂、纤维/基体界面脱粘、基体脆性断裂、纤维断裂、包套韧性断裂;高温断裂机制为反应层断裂、纤维/基体界面脱粘、纤维断裂、W/SiC界面脱粘、基体和包套韧性断裂。 展开更多
关键词 复合材料 拉伸性能 sic纤维 断裂机制
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Synergistically Toughening Effect of SiC Whiskers and Nanoparticles in Al_2O_3-based Composite Ceramic Cutting Tool Material 被引量:4
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作者 LIU Xuefei LIU Hanlian +3 位作者 HUANG Chuanzhen WANG Limei ZOU Bin ZHAO Bin 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第5期977-982,共6页
In recent decades, many additives with different characteristics have been applied to strengthen and toughen Al2O3-based ceramic cutting tool materials. Among them, SiC whiskers and SiC nanoparticles showed excellent ... In recent decades, many additives with different characteristics have been applied to strengthen and toughen Al2O3-based ceramic cutting tool materials. Among them, SiC whiskers and SiC nanoparticles showed excellent performance in improving the material properties. While no attempts have been made to add SiC whiskers and SiC nanoparticles together into the ceramic matrix and the synergistically toughening effects of them have not been studied. An Al2O3-SiCw-SiC np advanced ceramic cutting tool material is fabricated by adding both one-dimensional SiC whiskers and zero-dimensional SiC nanoparticles into the Al2O3 matrix with an effective dispersing and mixing process. The composites with 25 vol% SiC whiskers and 25 vol% SiC nanoparticles alone are also investegated for comparison purposes. Results show that the Al2O3-SiCw-SiCnp composite with both 20 vo1% SiC whiskers and 5 vol% SiC nanoparticles additives have much improved mechanical properties. The flexural strength of Al2O3-SiCw-SiCnp is 730+ 95 MPa and fracture toughness is 5.6 ± 0.6 MPa.m1/2. The toughening and strengthening mechanisms of SiC whiskers and nanoparticles are studied when they are added either individually or in combination. It is indicated that when SiC whiskers and nanoparticles are added together, the grains are further refined and homogenized, so that the microstructure and fracture mode ratio is modified. The SiC nanoparticles are found helpful to enhance the toughening effects of the SiC whiskers. The proposed research helps to enrich the types of ceramic cutting tool and is benefit to expand the application range of ceramic cutting tool. 展开更多
关键词 Al2O3-based ceramic cutting tool materials sic whiskers sic nanoparticles mechanical properties toughening and strengthening mechanisms
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Improved mechanical properties of SiC fiber reinforced silica-based ceramic cores fabricated by stereolithography 被引量:4
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作者 W.Zheng J.M.Wu +3 位作者 S.Chen K.B.Yu J.Zhang Y.S.Shi 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第21期161-168,共8页
Silica-based ceramic cores have been widely used to fabricate aero-engine hollow blades due to their moderate high temperature mechanical properties and excellent leachability.In this study,silica-based ceramics with ... Silica-based ceramic cores have been widely used to fabricate aero-engine hollow blades due to their moderate high temperature mechanical properties and excellent leachability.In this study,silica-based ceramics with SiC fiber addition were prepared via stereolithography,and the influence of SiC fiber content on mechanical properties of the obtained silica-based ceramics was investigated.With the increase of SiC fiber content,linear shrinkage gradually decreased,while room temperature flexural strength and high temperature flexural strength first increased and then decreased.As SiC fiber content increased to 4.0 wt%,linear shrinkage was reduced to 0.62%resulting from the oxidation of SiC.Furthermore,room temperature flexural strength was improved from 11.79 MPa to 23.83 MPa and high temperature flexural strength was enhanced from 15.64 MPa to 34.62 MPa with 4.0 wt%SiC fiber addition due to the reinforcement of fibers and the enhancedβ-cristobalite content,which meets the need of ceramic cores.Therefore,it demonstrates the capability of fabricating high-performance and high-precision silica-based ceramic cores reinforced by SiC fibers via stereolithography for rapid manufacturing of hollow blades. 展开更多
关键词 Silica-based ceramic cores STEREOLITHOGRAPHY sic fiber mechanical properties Hollow blades
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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 被引量:1
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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 oxygen content on tensile strength of polymer-derived SiC fibers 被引量:1
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作者 楚增勇 冯春祥 +3 位作者 宋永才 王应德 李效东 肖加余 《中国有色金属学会会刊:英文版》 CSCD 2002年第5期894-898,共5页
Air-curing is usually applied to the polymer-derived SiC fibers and, as a result, oxygen is embedded to the material. An effective relationship between oxygen content of the SiC fibers and mass gain of their precursor... Air-curing is usually applied to the polymer-derived SiC fibers and, as a result, oxygen is embedded to the material. An effective relationship between oxygen content of the SiC fibers and mass gain of their precursor fibers was established. Results also showed that oxygen content has a great influence on the mechanical properties and excellent tensile strength is usually obtained at the oxygen content of 12%~13%, similar to the density of SiC fibers. Oxygen content has a positive effect on the ceramic yield, and thus, is good to the density and tensile strength; while, oxygen content is also negative to volume content of SiC phase and crystallization of the SiC fibers, and thus, detrimental to the density and tensile strength. Both of the two effects result in the peak behavior of the tensile strength of SiC fibers. 展开更多
关键词 碳化硅光纤 抗张强度 机械性能 氧含量 聚合陶瓷
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无压烧结SiC-金刚石多晶材料致密化及物理性能研究
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作者 张秀玲 陈宇红 +2 位作者 戚武彬 张强 海万秀 《粉末冶金技术》 CAS CSCD 北大核心 2024年第2期165-169,176,共6页
以AlN-Y_(2)O_(3)-Sc2O3为液相烧结助剂,添加不同质量分数金刚石,经无压烧结制备SiC-金刚石多晶材料。采用扫描电镜观察多晶材料显微结构,利用激光闪射法测量其热扩散系数和热导率。研究了金刚石质量分数(1.0%、2.5%、5.0%)和粒度(0.25... 以AlN-Y_(2)O_(3)-Sc2O3为液相烧结助剂,添加不同质量分数金刚石,经无压烧结制备SiC-金刚石多晶材料。采用扫描电镜观察多晶材料显微结构,利用激光闪射法测量其热扩散系数和热导率。研究了金刚石质量分数(1.0%、2.5%、5.0%)和粒度(0.25μm、1.00μm)对SiC陶瓷材料致密化行为和力学性能的影响。结果表明,金刚石质量分数低于5.0%,烧结后的材料相对密度均超过94%;金刚石含量为5.0%的样品相对密度远远低于其他样品。SiC多晶材料的相对密度随金刚石添加量的增加而降低,原料中添加过量的金刚石会降低材料的相对密度。在实验条件下,多晶材料晶粒尺寸没有发生异常长大,硬度为16~18 GPa,断裂韧性为3.8~4.4 MPa·m^(1/2),抗弯强度为239~540 MPa。材料的热导率和热扩散系数随着温度的升高而降低,气孔是影响复合材料热导率的主要因素。 展开更多
关键词 碳化硅多晶材料 无压烧结 致密化 液相 力学性能 热性能
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原位自生SiC晶须对原料预氧化SiC耐磨材料显微结构和性能的影响
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作者 郭会师 赵志强 +5 位作者 李文凤 高朝阳 贾晓东 刘应凡 陈凤华 桂阳海 《陶瓷学报》 CAS 北大核心 2024年第2期332-337,共6页
以Si粉、活性炭、预氧化的SiC颗粒为原料,于埋炭条件下经1500℃保温3h烧制后,制备出了原位自生SiC晶须复合SiC耐磨材料,并研究了SiC晶须对原料预氧化SiC耐磨材料性能的影响,并分析了这些性能和显微结构间的关系。结果表明,原位自生SiC... 以Si粉、活性炭、预氧化的SiC颗粒为原料,于埋炭条件下经1500℃保温3h烧制后,制备出了原位自生SiC晶须复合SiC耐磨材料,并研究了SiC晶须对原料预氧化SiC耐磨材料性能的影响,并分析了这些性能和显微结构间的关系。结果表明,原位自生SiC晶须可提高SiC耐磨材料的致密度和力学性能,并在Si粉和活性炭共同添加量为12 wt.%时改善效果较佳,对应试样的抗冲击强度和硬度分别为29.91 kJ·m^(-2)和98(HRB),磨耗比为4.49。这是因为原位自生的SiC晶须充填在SiC颗粒间的孔隙中,形成了均匀的网络结构,且其伴生的SiO_(2)和SiC原料预氧化的产物SiO_(2),均可与α-Al_(2)O_(3)添加剂反应生成莫来石,增强了晶须与基体间的结合力。当SiC耐磨材料受到外力作用时,这些与基体结合较好的SiC晶须,可通过拔出、裂纹的偏转和桥联等途径改善SiC耐磨材料的力学性能。 展开更多
关键词 sic晶须 预氧化 原位自生 sic耐磨材料 力学性能 显微结构
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Exploring the Synergy: Experimental and Theoretical Investigation of Steel and Glass Fiber Reinforced Polymer (GFRP) Reinforced Slab Incorporating Alccofine and M-Sand
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作者 Vijayalakshmi Ravichandran Ravichandran Ramanujam Srinivasan +1 位作者 Saravanan Jagadeesan Prithiviraj Chidambaram 《Open Journal of Civil Engineering》 2024年第3期334-347,共14页
Introduction: This study investigates the Experimental and Theoretical Investigation of Steel and Glass Fiber Reinforced Polymer (GFRP) Reinforced Slab Incorporating Alccofine and M-sand. Objective: Specific objective... Introduction: This study investigates the Experimental and Theoretical Investigation of Steel and Glass Fiber Reinforced Polymer (GFRP) Reinforced Slab Incorporating Alccofine and M-sand. Objective: Specific objectives include evaluating the mechanical properties and structural behaviour of steel and GFRP-reinforced one-way slabs and comparing experimental and theoretical predictions. Methods: Four different mix proportions were arrived at, comprising both conventional concrete and Alccofine-based concrete. In each formulation, a combination of normal river sand and M-sand was utilized. Results: Concrete with Alccofine exhibits superior mechanical properties, while M-sand incorporation minimally affects strength but reduces reliance on natural sand. GFRP-reinforced slabs display distinct brittle behaviour with significant deflections post-cracking, contrasting steel-reinforced slabs’ gradual, ductile failure. Discrepancies between experimental data and design recommendations underscore the need for guideline refinement. Conclusion: Alccofine and M-sand enhance concrete properties, but reinforcement type significantly influences slab behaviour. GFRP-reinforced slabs, though exhibiting lower values than steel, offer advantages in harsh environments, warranting further optimization. 展开更多
关键词 fiber Reinforced Polymer Alccofine Concrete Structural Behaviour mechanical properties One-Way Slab Sustainable Construction materials Alternative Aggregates
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Mechanical and electromagnetic wave absorption properties of Cf-Si3N4 ceramics with PyC/SiC interphases 被引量:6
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作者 Wei Zhou Lan Long Yang Li 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2019年第12期2809-2813,共5页
Aiming to obtain microwave absorbing materials with excellent mechanical and microwave absorption properties, carbon fiber reinforced Si3N4 ceramics(Cf-Si3N4) with pyrolytic carbon(PyC)/SiC interphases were fabricated... Aiming to obtain microwave absorbing materials with excellent mechanical and microwave absorption properties, carbon fiber reinforced Si3N4 ceramics(Cf-Si3N4) with pyrolytic carbon(PyC)/SiC interphases were fabricated by gel casting. The influences of carbon fibers content on mechanical and microwave absorption properties of as-prepared Si3N4 based ceramics were investigated. Results show that chemical compatibility between carbon fibers and Si3N4 matrix in high temperature environment can be significantly improved after introduction of Py C/SiC interphases. As carbon fibers content increases from 0 to 4 wt%, flexural strength of Si3N4 based ceramics decreases slightly while fracture toughness obviously increases. Moreover, both the real and imaginary parts of complex permittivity increase with the rising of carbon fibers content within the frequency range of 8.2–12.4 GHz. Investigation of microwave absorption shows that the microwave attenuation ability of Cf-Si3N4 ceramics with Py C/SiC interphases is remarkably enhanced compared with pure Si3N4 ceramics. Effective absorption bandwidth(<-10 d B) of10.17–12.4 GHz and the minimum reflection less of-19.6 d B are obtained for Si3N4 ceramics with 4 wt%carbon fibers in 2.0 mm thickness. Cf-Si3N4 ceramics with Py C/SiC interphases are promising candidates for microwave absorbing materials with favorable mechanical property. 展开更多
关键词 Silicon nitride Carbon fibers PyC/sic interphases mechanical properties Microwave absorption
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高性能C/SiC刹车材料及其优化设计 被引量:18
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作者 田广来 徐永东 +4 位作者 范尚武 张立同 柯少昌 成来飞 刘海平 《复合材料学报》 EI CAS CSCD 北大核心 2008年第2期101-108,共8页
对比分析了C/C和C/SiC刹车材料的力学性能和摩擦磨损性能。结果表明,C/SiC刹车材料的力学性能比C/C的高,而且C/SiC刹车材料克服了C/C静态摩擦系数低和湿态摩擦性能严重衰减的不足,说明C/SiC刹车材料是一种新型高性能刹车材料。以C/C复... 对比分析了C/C和C/SiC刹车材料的力学性能和摩擦磨损性能。结果表明,C/SiC刹车材料的力学性能比C/C的高,而且C/SiC刹车材料克服了C/C静态摩擦系数低和湿态摩擦性能严重衰减的不足,说明C/SiC刹车材料是一种新型高性能刹车材料。以C/C复合材料为基础,在深入分析机轮刹车盘服役环境特点的基础上,探讨了C/SiC刹车材料的力学性能、热物理性能、摩擦磨损性能、复合材料结构和制造工艺等方面的优化设计途径和方法,为实现材料微结构-力学性能-摩擦磨损性能的协同设计与制造奠定基础。 展开更多
关键词 碳/碳化硅 刹车材料 力学性能 摩擦磨损性能 优化设计
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影响SiC陶瓷纤维力学性能的因素评价 被引量:8
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作者 王浩 李效东 +2 位作者 彭平 冯春祥 王应德 《宇航材料工艺》 CAS CSCD 北大核心 2001年第3期4-9,14,共7页
在SiC陶瓷纤维整个制备工艺过程中 ,影响因素繁多而且交叉作用 ,每个因素的变化都对SiC纤维的力学性能产生很大影响。本文以先驱体转化法为例 ,针对SiC陶瓷纤维整个制备工艺过程中的四个阶段 。
关键词 sic 陶瓷纤维 力学性能 制备工艺过程 先驱体转化法 复合材料 碳化硅
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编织结构三维仿真及其对C/SiC复合材料性能的影响 被引量:7
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作者 周新贵 游宇 +2 位作者 张长瑞 黄伯云 刘学业 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2007年第2期200-205,共6页
以连续碳纤维增强的碳化硅复合材料为研究对象,利用计算机仿真技术实现了纤维预制体结构的三维仿真;同时采用CVD+PIP联合工艺制备了2.5D与三维四向2种结构的C/SiC复合材料,研究了预制体结构与复合材料力学性能之间的关系。结果表明:三... 以连续碳纤维增强的碳化硅复合材料为研究对象,利用计算机仿真技术实现了纤维预制体结构的三维仿真;同时采用CVD+PIP联合工艺制备了2.5D与三维四向2种结构的C/SiC复合材料,研究了预制体结构与复合材料力学性能之间的关系。结果表明:三维四向编织结构C/SiC复合材料的x向弯曲强度达到399.2 MPa,层间剪切强度达到38.1 MPa,断裂韧性达到16.0 MPa.m1/2,各项力学性能均高于2.5D编织结构的C/SiC复合材料的力学性能。 展开更多
关键词 编织结构 C/sic复合材料 结构仿真 力学性能
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耐高温SiC纤维的研究动态 被引量:11
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作者 范小林 宋永才 +1 位作者 李效东 冯春祥 《宇航材料工艺》 CAS CSCD 北大核心 1998年第1期13-17,共5页
本文阐述了影响SiC纤维高温力学性能和热化学稳定性的主要因素及目前国外提高SiC纤维高温力学性能的主要方法。
关键词 高温力学性能 热化学稳定性 碳化硅材料 纤维
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SiCp-A356铝基复合材料薄带的双辊铸造 被引量:8
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作者 潘复生 周守则 +1 位作者 梁小平 D.V.Edmonds 《机械工程学报》 EI CAS CSCD 北大核心 1996年第1期92-96,共5页
采用双辊铸造设备,生产了厚为2~50mm的SiCp-A356铝基复合材料簿带,研究了搅拌工艺、薄带厚度等因素对SiC颗粒分布、铸造缺陷和薄带力学性能的影响。结果表明,当浇注前进行搅拌,并保证一定的铸造速度时,可获得S... 采用双辊铸造设备,生产了厚为2~50mm的SiCp-A356铝基复合材料簿带,研究了搅拌工艺、薄带厚度等因素对SiC颗粒分布、铸造缺陷和薄带力学性能的影响。结果表明,当浇注前进行搅拌,并保证一定的铸造速度时,可获得SiC颗粒均匀分布、表面质量好的复合材料薄带。比较了双辊铸造和金属型铸造两种条件下的组织和性能。 展开更多
关键词 复合材料 碳化硅 双辊 铸造 力学性能
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连续SiC(Al)纤维的耐超高温性能及其机理 被引量:4
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作者 郑春满 刘世利 +2 位作者 李效东 王浩 赵大方 《物理化学学报》 SCIE CAS CSCD 北大核心 2008年第6期971-976,共6页
以有机金属聚合物聚铝碳硅烷为原料,利用先驱体转化法制备出连续SiC(Al)纤维.采用一系列分析测试对纤维的组成、结构以及耐超高温性能进行了表征,通过与Nicalon纤维的比较,对连续SiC(Al)纤维的耐超高温机理进行了研究.结果表明,连续SiC(... 以有机金属聚合物聚铝碳硅烷为原料,利用先驱体转化法制备出连续SiC(Al)纤维.采用一系列分析测试对纤维的组成、结构以及耐超高温性能进行了表征,通过与Nicalon纤维的比较,对连续SiC(Al)纤维的耐超高温机理进行了研究.结果表明,连续SiC(Al)纤维具有优异的耐超高温性能,在1800℃氩气中处理1h后,纤维的强度保留率为80%左右;元素分析和27AlMAS核磁共振等分析表明,连续SiC(Al)纤维为近化学计量比的SiC纤维,纤维中微量的铝元素以Al—O和Al—C键两种形式存在;在超高温条件下,两种不同存在形式的铝均能够抑制纤维中晶粒的长大.纤维具有近化学计量比的组成和铝元素在高温条件下对于晶粒长大的抑制,是连续SiC(Al)纤维具有优异耐超高温性能的原因. 展开更多
关键词 耐超高温 连续sic(Al)纤维 性能 机理
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纤维类型对C/SiC复合材料性能的影响 被引量:3
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作者 尹洪峰 任耘 +3 位作者 王宏联 徐永东 成来飞 张立同 《硅酸盐通报》 CAS CSCD 2001年第5期43-46,共4页
利用化学气相浸渗法制备了Cf C/SiC复合材料 ,借助SEM、TEM等研究了纤维类型对Cf C/SiC复合材料力学性能的影响。实验证明T30 0碳纤维增韧补强效果优于M40碳纤维 ,利用T30 0碳纤维制备出弯曲强度为 45 9M ,断裂韧性为 2 0 .0MPa·m1... 利用化学气相浸渗法制备了Cf C/SiC复合材料 ,借助SEM、TEM等研究了纤维类型对Cf C/SiC复合材料力学性能的影响。实验证明T30 0碳纤维增韧补强效果优于M40碳纤维 ,利用T30 0碳纤维制备出弯曲强度为 45 9M ,断裂韧性为 2 0 .0MPa·m1/ 2 ,断裂功为 2 5 170J/m2 的Cf C/SiC复合材料。 2种碳纤维增韧效果的差异是由纤维的原始强度。 展开更多
关键词 纤维 力学性能 纤维增韧 陶瓷基 类型 碳/碳化硅 复合材料
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