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Flexural destructive process of unidirectional carbon/carbon composites reinforced with in situ grown carbon nanofibers 被引量:2
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作者 卢雪峰 肖鹏 +1 位作者 徐先锋 陈洁 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第10期3134-3141,共8页
Unidirectional carbon/carbon(C/C) composites modified with in situ grown carbon nanofibers(CNFs) were prepared by catalysis chemical vapor deposition. The effect of in situ grown CNFs on the flexural properties of... Unidirectional carbon/carbon(C/C) composites modified with in situ grown carbon nanofibers(CNFs) were prepared by catalysis chemical vapor deposition. The effect of in situ grown CNFs on the flexural properties of the C/C composites was investigated by detailed analyses of destructive process. The results show that there is a sharp increase in the flexural load-displacement curve in the axial direction of the CNF-C/C composites, followed by a serrated yielding phenomenon similar to the plastic materials. The failure mode of the C/C composites modified with in situ grown CNFs is changed from the pull-out of single fiber to the breaking of fiber bundles. The existence of interfacial layer composed by middle-textured pyrocarbon, CNFs and high-textured pyrocarbon can block the crack propagation and change the propagation direction of the main crack, which leads to the higher flexural strength and modulus of C/C composites. 展开更多
关键词 carbon nanofiber c/c composites flexural destruction crack propagation
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Yolk-shell Si/C composites with multiple Si nanoparticles encapsulated into double carbon shells as lithium-ion battery anodes 被引量:11
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作者 Le Hu Bin Luo +3 位作者 Chenghao Wu Pengfei Hu Lianzhou Wang Haijiao Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2019年第5期124-130,共7页
The conceptual design of yolk-shell structured Si/C composites is considered to be an effective way to improve the recyclability and conductivity of Si-based anode materials. Herein, a new type of yolk-shell structure... The conceptual design of yolk-shell structured Si/C composites is considered to be an effective way to improve the recyclability and conductivity of Si-based anode materials. Herein, a new type of yolk-shell structured Si/C composite (denoted as TSC-PDA-B) has been intelligently designed by rational engineering and precise control. In the novel structure, the multiple Si nanoparticles with small size are successfully encapsulated into the porous carbon shells with double layers benefiting from the strong etching effect of HF. The TSC-PDA-B product prepared is evaluated as anode materials for lithium-ion batteries (LIBs). The TSC-PDA-B product exhibits an excellent lithium storage performance with a high initial capacity of 2108 mAh g^-1 at a current density of 100 mA g^-1 and superior cycling performance of 1113 mAh g^-1 over 200 cycles. The enhancement of lithium storage performance may be attributed to the construction of hybrid structure including small Si nanoparticles, high surface area, and double carbon shells, which can not only increase electrical conductiv让y and intimate electrical contact with Si nanoparticles, but also provide built-in buffer voids for Si nanoparticles to expand freely without damaging the carbon layer. The present findings can provide some scientific insights into the design and the application of advanced Si-based anode materials in energy storage fields. 展开更多
关键词 Si/c compositeS Yolk-shell Multiple SI nanoparticles Double carbon SHELLS Energy storage
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Effects of Preform and Pyrolytic Carbon Structure on Thermophysical Properties of 2D Carbon/Carbon Composites 被引量:8
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作者 罗瑞盈 程永宏 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2004年第2期112-118,共7页
Four kinds of carbon/carbon (C/C) composites, including the needled carbon fiber felt/the pyrolytic carbon (two different pyrolytic carbon microstructures), the chopped carbon fiber/the resin + pyrolytic carbon (PyrC)... Four kinds of carbon/carbon (C/C) composites, including the needled carbon fiber felt/the pyrolytic carbon (two different pyrolytic carbon microstructures), the chopped carbon fiber/the resin + pyrolytic carbon (PyrC), and the carbon cloth/PyrC, named as the composites 1#, 4#, 2#, and 3#, are prepared respectively. Effects of the preform and pyrolytic carbon structure on the thermophysical properties of 2D C/C composites are studied. The C/C composites possess low coefficient of thermal expansion (CTE). In a range of some temperatures, the negative expansion emerges in x-y direction for four C/C composites. From 0 to 900℃, the CTE is small and almost linear with the temperatures. The C/C composites have high thermal conductivities (TCs). As a function of temperature, TCs of the C/C composites are varied with the structures of preform and pyrc as well as the direction of heat transfer. In x-y and z direction, TCs differ greatly and that in x-y direction (25.6-174 W/m·K) is several times larger than that in z direction(3.5-50 W/m·K). 展开更多
关键词 carbon/carbon(c/c)composite pyrolytic carbon thermal expansion thermal conductivity
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The effect of modification of matrix on densification efficiency of pitch based carbon composites 被引量:3
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作者 MOHAMMAD Mahdi Sotoudehnia ALI Khalife Soltani +1 位作者 AMIR Maghsouipour FATOLLAH Moztarzadeh 《Journal of Coal Science & Engineering(China)》 2010年第4期408-414,共7页
Using coal tar pitch as a matrix precursor to prepare carbon materials is widelyused by impregnation/carbonization processing technology.Four different grades of coaltar pitch and a natural pitch were characterized in... Using coal tar pitch as a matrix precursor to prepare carbon materials is widelyused by impregnation/carbonization processing technology.Four different grades of coaltar pitch and a natural pitch were characterized in terms of carbon yield, density, viscosity,and fractionation with solvents, as well as by thermal analysis methods.The suitability ofthese commercially available matrices for densification of 3 dimensional carbon-carboncomposites was examined.The theoretical results compared with experimental results.The highest density after impregnation was obtained using one of the coal tar pitches.Thepredicted results are in reasonable agreement with experiment data.The significance ofthis research is that a special heat treatment regime was conducted.The effects of modificationtemperature on the densification efficiency of composites were investigated andthen structure and characteristics of the composites were determined by scanning electronmicroscopy (SEM), Transmission electron microscopy (TEM) and X-Ray Diffraction (XRD). 展开更多
关键词 PITcH carbonIZATION IMPREGNATION c/c composites
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EXPERIMENTAL STUDY ON PEK -C MODIFIED EPOXIES AND THE CARBON FIBER COMPOSITES FOR AEROSPACE APPLICATION 被引量:7
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作者 李暘暘 益小苏 唐邦明 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2000年第4期242-249,共8页
The morphological structure of various epoxies toughened with a special amorphous thermoplastic PEK-C and their carbon fiber composites were studied by using SEM. For both cases, phase separation and inversion took pl... The morphological structure of various epoxies toughened with a special amorphous thermoplastic PEK-C and their carbon fiber composites were studied by using SEM. For both cases, phase separation and inversion took place to form fine epoxy-rich globules dispersing in the PEK-C matrix, in which the epoxy-rich phase had the absolutely higher volume fraction. The phase structure and the interfacial properties were also studied by means of FTIR, DSC, and DMTA as well. An accompanying mechanical determination revealed that an improved toughness was achieved both in the blend casts and in the carbon fiber composites. A composite structural model was hence suggested. 展开更多
关键词 PEK-c thermoset/thermoplastic binary system phase behavior interface TOUGHNESS carbon fiber composites
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Effect of specific pressure on fabrication of 2D-C_f/Al composite by vacuum and pressure infiltration 被引量:11
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作者 马玉钦 齐乐华 +2 位作者 郑武强 周计明 鞠录岩 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第7期1915-1921,共7页
Carbon fiber reinforced aluminum matrix (Cf/Al) composite has many excellent properties, and it has received more and more attention. Two-dimensional (2D) Cf/Al composites were fabricated by vacuum and pressure in... Carbon fiber reinforced aluminum matrix (Cf/Al) composite has many excellent properties, and it has received more and more attention. Two-dimensional (2D) Cf/Al composites were fabricated by vacuum and pressure infiltration, which was an integrated technique and could provide high vacuum and high infiltration pressure. The effect of specific pressure on the infiltration quality of the obtained composites was comparatively evaluated through microstructure observation. The experimental results show that satisfied Cf/Al composites could be fabricated at the specific pressure of 75 MPa. In this case, the preform was infiltrated much more completely by aluminum alloy liquid, and the residual porosity was seldom found. It is found that the ultimate tensile strength of the obtained Cf/Al composite reached maximum at the specific pressure of 75 MPa, which was improved by 138.9% compared with that of matrix alloy. 展开更多
关键词 specific pressure vacuum and pressure infiltration c/Al composite carbon fiber PROPERTIES
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Effects of Carbon Nanotubes by Electrophoretic Deposition on Interlaminar Properties of Two Dimensional Carbon/carbon Composites
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作者 黎云玉 GUO Lingjun +2 位作者 LI Hejun MA Haili 宋强 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2017年第5期994-1000,共7页
Carbon nanotubes(CNTs) were deposited uniformly on carbon cloth by electrophoretic deposition(EPD). Thereafter, CNT-doped clothes were stacked and densified by pyrocarbon via chemical vapor infiltration to fabrica... Carbon nanotubes(CNTs) were deposited uniformly on carbon cloth by electrophoretic deposition(EPD). Thereafter, CNT-doped clothes were stacked and densified by pyrocarbon via chemical vapor infiltration to fabricate two-dimensional(2 D) carbon/carbon(C/C) composites. Effects of EPD CNTs on interlaminar shear performance and mode Ⅱ interlaminar fracture toughness(GⅡc) of 2 D C/C composites were investigated. Results showed that EPD CNTs were uniformly covered on carbon fibers, acting as a porous coating. Such a CNT coating can obviously enhance the interlaminar shear strength and GⅡc of 2 D C/C composites. With increaing EPD CNTs, the interlaminar shear strength and GⅡc of 2 D C/C composites increase greatly and then decrease, both of which run up to their maximum values, i e, 13.6 MPa and 436.0 J·m-2, when the content of EPD CNTs is 0.54 wt%, 2.27 and 1.45 times of the baseline. Such improvements in interlaminar performance of 2 D C/C composites are mainly beneficial from their increased cohesion of interlaminar matrix, which is caused not only by the direct reinforcing effect of EPD CNT network but also by the capacity of EPD CNTs to refine pyrocarbon matrix and induce multilayered microstructures that greatly increase the crack propagation resistance through "crack-blocking and-deflecting mechanisms". 展开更多
关键词 electrophoretic deposition carbon nanotube c/c composite interlaminar performance reinforcing mechanism
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Preparation and properties of C/C-SiC brake composites fabricated by warm compacted-in situ reaction 被引量:4
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作者 Zhuan Li Peng Xiao Xiang Xiong 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2010年第4期500-505,共6页
Carbon fibre reinforced carbon and silicon carbide dual matrix composites(C/C-SiC) were fabricated by the warm compacted-in situ reaction.The microstructure,mechanical properties,tribological properties,and wear mec... Carbon fibre reinforced carbon and silicon carbide dual matrix composites(C/C-SiC) were fabricated by the warm compacted-in situ reaction.The microstructure,mechanical properties,tribological properties,and wear mechanism of C/C-SiC composites at different brake speeds were investigated.The results indicate that the composites are composed of 58wt%C,37wt%SiC,and 5wt%Si.The density and open porosity are 2.0 g.cm^(-3) and 10%,respectively.The C/C-SiC brake composites exhibit good mechanical properties.The flexural strength can reach up to 160 MPa,and the impact strength can reach 2.5 kJ.m^(-2).The C/C-SiC brake composites show excellent tribological performances.The friction coefficient is between 0.57 and 0.67 at the brake speeds from 8 to 24 m·s^(-1).The brake is stable,and the wear rate is less than 2.02×10^(-6) cm^3·J^(-1).These results show that the C/C-SiC brake composites are the promising candidates for advanced brake and clutch systems. 展开更多
关键词 c/c-SIc ceramic matrix composites tribological properties MIcROSTRUcTURE
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Carbon and oxygen isotopic composition of carbonate cements of different phases in terrigenous siliciclastic reservoirs and significance for their origin:A case study from sandstones of the Triassic Yanchang Formation,southwestern Ordos Basin,China 被引量:11
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作者 WANG Qi ZHUO Xizhun +1 位作者 CHEN Guojun LI Xiaoyan 《Chinese Journal Of Geochemistry》 EI CAS 2008年第3期249-256,共8页
Early carbonate cements in the Yanchang Formation sandstones are composed mainly of calcite with relatively heavier carbon isotope(their δ18O values range from-0.3‰--0.1‰) and lighter oxygen isotope(their δ18O val... Early carbonate cements in the Yanchang Formation sandstones are composed mainly of calcite with relatively heavier carbon isotope(their δ18O values range from-0.3‰--0.1‰) and lighter oxygen isotope(their δ18O values range from-22.1‰--19.5‰).Generally,they are closely related to the direct precipitation of oversaturated calcium carbonate from alkaline lake water.This kind of cementation plays an important role in enhancing the anti-compaction ability of sandstones,preserving intragranular volume and providing the mass basis for later disso-lution caused by acidic fluid flow to produce secondary porosity.Ferriferous calcites are characterized by relatively light carbon isotope with δ13C values ranging from-8.02‰ to-3.23‰,and lighter oxygen isotope with δ18O values ranging from-22.9‰ to-19.7‰,which is obviously related to the decarboxylation of organic matter during the late period of early diagenesis to the early period of late diagenesis.As the mid-late diagenetic products,ferriferous calcites in the study area are considered as the characteristic authigenic minerals for indicating large-scaled hydrocarbon influx and migration within the clastic reservoir.The late ankerite is relatively heavy in carbon isotope with δ13C values ranging from-1.92‰ to-0.84‰,and shows a wide range of variations in oxygen isotopic composition,with δ18O values ranging from-20.5‰ to-12.6‰.They are believed to have nothing to do with decarboxylation,but the previously formed marine carbonate rock fragments may serve as the chief carbon source for their precipitation,and the alkaline diagenetic environment at the mid-late stage would promote this process. 展开更多
关键词 碳氧同位素合成 碳酸盐水泥 碳源 可分解水池
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In Situ Reaction Strengthening and Toughening of B_(4)C/TiSi_(2)Ceramics
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作者 夏涛 涂晓诗 +2 位作者 张帆 ZHANG Jinyong REN Lin 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2023年第1期12-19,共8页
B_(4)C-SiC-TiB_(2)ceramics were prepared by in situ reactive hot-pressing sintering with TiSi_(2)as an additive.The reaction pathways of TiSi_(2)and B_(4)C were investigated.The sintering was found to be a multistep p... B_(4)C-SiC-TiB_(2)ceramics were prepared by in situ reactive hot-pressing sintering with TiSi_(2)as an additive.The reaction pathways of TiSi_(2)and B_(4)C were investigated.The sintering was found to be a multistep process.The reaction started at approximately 1000℃,and TiB_(2)was formed first.Part of Si and C started to react at 1300℃,and the unreacted Si melted at 1400℃to form a liquid phase.TiSi_(2)predominantly affected the intermediate sintering process of B_(4)C and increased the sintering rate.Due to the unique reaction process of TiSi_(2)and B_(4)C,a large number of aggregates composed of SiC and TiB_(2)were generated.The results showed that composite ceramics with the optimal flexural strength of 807 MPa,fracture toughness of 3.2 MPa·m1/2,and hardness of 32 GPa,were obtained when the TiSi_(2)content was 10 wt%. 展开更多
关键词 in situ reaction hot pressing sintering TiSi_(2) B_(4)c composite ceramics reaction mechanism
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超高温陶瓷改性C/C复合材料抗氧化烧蚀性能研究进展 被引量:3
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作者 孙丹羽 朱世步 +2 位作者 刘泰山 张强 马荣檄 《材料导报》 EI CAS CSCD 北大核心 2024年第S01期104-114,共11页
碳/碳(C/C)复合材料具有高强、轻质和耐温等优势,在航天领域取得广泛应用;但由于其抗氧化性能较差,难以满足高超声速飞行器长时飞行、大气层再入飞行和跨大气层飞行的服役环境。利用超高温陶瓷改性C/C复合材料(C/C-UHTC)可以显著提高C/... 碳/碳(C/C)复合材料具有高强、轻质和耐温等优势,在航天领域取得广泛应用;但由于其抗氧化性能较差,难以满足高超声速飞行器长时飞行、大气层再入飞行和跨大气层飞行的服役环境。利用超高温陶瓷改性C/C复合材料(C/C-UHTC)可以显著提高C/C复合材料的抗氧化烧蚀性能,有望满足新一代飞行器长时间抗氧化、抗烧蚀及结构强度的要求。本文总结了C/C-UHTC复合材料烧蚀性能的常用测试方法,包括氧-乙炔烧蚀、等离子烧蚀、激光烧蚀和风洞烧蚀,简要介绍了各种烧蚀性能测试方法的特点。此外,对近年来Zr系和Hf系单组元、双组元和三组元C/C-UHTC复合材料的烧蚀性能及烧蚀机理进行详细阐述。 展开更多
关键词 超高温陶瓷 c/c复合材料 抗氧化烧蚀性能 测试方法 烧蚀机制
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快速热压烧结制备高性能B_(4)C-LaB_(6)复合陶瓷 被引量:1
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作者 徐志伟 彭可 袁铁锤 《粉末冶金材料科学与工程》 2024年第1期35-44,共10页
为了解决碳化硼(B_(4)C)难以烧结致密化和韧性差的问题,以B_(4)C和氧化镧(La_(2)O_(3))为原料,在2000℃和30 MPa下快速热压烧结制备B_(4)C-LaB_(6)复合陶瓷,研究La_(2)O_(3)含量对B_(4)C-LaB_(6)复合陶瓷微观结构和力学性能的影响,分析L... 为了解决碳化硼(B_(4)C)难以烧结致密化和韧性差的问题,以B_(4)C和氧化镧(La_(2)O_(3))为原料,在2000℃和30 MPa下快速热压烧结制备B_(4)C-LaB_(6)复合陶瓷,研究La_(2)O_(3)含量对B_(4)C-LaB_(6)复合陶瓷微观结构和力学性能的影响,分析LaB_(6)的增韧机制。结果表明:w(La_(2)O_(3))=3%的B_(4)C-LaB_(6)复合陶瓷综合力学性能较好,其相对密度、维氏硬度、抗弯强度和断裂韧性分别为99.51%、36.56 GPa、547.43 MPa和4.18 MPa·m^(1/2)。LaB_(6)可细化B_(4)C-LaB_(6)复合陶瓷晶粒,同时提高其相对密度和断裂韧性。LaB_(6)的增韧机制与裂纹偏转和晶粒裂解有关。 展开更多
关键词 B_(4)c-LaB_(6)复合陶瓷 晶粒细化 晶界 相对密度 增韧机制
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超高温陶瓷改性C/C复合材料抗烧蚀性能研究进展
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作者 王卓凡 艾德文 +1 位作者 王坤杰 谢栋 《材料导报》 EI CAS CSCD 北大核心 2024年第S01期122-128,共7页
随着航空航天事业的发展,C/C复合材料被广泛应用于该领域,但是高温抗氧化性能较差的缺点限制了它的使用范围。通过基体改性的方法将超高温陶瓷(UHTCs)引入到C/C复合材料中是提高C/C复合材料抗氧化烧蚀性能的主要方法。本文主要介绍了不... 随着航空航天事业的发展,C/C复合材料被广泛应用于该领域,但是高温抗氧化性能较差的缺点限制了它的使用范围。通过基体改性的方法将超高温陶瓷(UHTCs)引入到C/C复合材料中是提高C/C复合材料抗氧化烧蚀性能的主要方法。本文主要介绍了不同超高温陶瓷相对C/C-UHTCs复合材料烧蚀性能的影响,分析了相应的烧蚀机理和烧蚀性能不同测试方法的特点,并针对C/C-UHTCs复合材料的长效热防护、性能优化作出了展望。 展开更多
关键词 超高温陶瓷 c/c复合材料 基体改性 抗烧蚀性能
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SiC-ZrC复相超高温陶瓷改性C/C复合材料的研究进展
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作者 张倩玮 陈意高 +1 位作者 崔红 吴小军 《材料导报》 EI CAS CSCD 北大核心 2024年第3期80-89,共10页
SiC-ZrC复相超高温陶瓷改性C/C复合材料的制备工艺原理与单一陶瓷相改性C/C复合材料的工艺原理基本相同,但SiC-ZrC复相陶瓷具有耐高温、温域宽(1600~2500℃)、抗氧化、工艺适应性好等优点,在测试和应用中表现出优异的力学性能和抗烧蚀性... SiC-ZrC复相超高温陶瓷改性C/C复合材料的制备工艺原理与单一陶瓷相改性C/C复合材料的工艺原理基本相同,但SiC-ZrC复相陶瓷具有耐高温、温域宽(1600~2500℃)、抗氧化、工艺适应性好等优点,在测试和应用中表现出优异的力学性能和抗烧蚀性能,能够有效填补目前高温段热防护材料的空缺,因此已经成为C/C复合材料基体掺杂改性的重要选择,在航天飞行器防热领域极具应用潜力。本文针对C/C-SiC-ZrC复合材料的发展潜力和应用空间,从制备工艺、结构特征以及性能特点三个方面综述了C/C-SiC-ZrC复合材料当前的研究进展,分析了制备工艺对复合材料微结构和性能的影响规律,提出了基于工程应用C/C-SiC-ZrC防热材料的发展建议。 展开更多
关键词 c/c复合材料 Sic-Zrc复相陶瓷 基体改性
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TiB_(2)/B_(4)C复相陶瓷自蔓延热爆炸烧结与性能表征
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作者 李云飞 高鑫 +1 位作者 陈鹏万 刘开源 《兵工学报》 EI CAS CSCD 北大核心 2024年第1期26-34,共9页
为了探究高硬度复相陶瓷高效且低成本的制备方法,利用自蔓延高温合成结合爆炸烧结技术,开展制备二硼化钛/碳化硼(TiB_(2)/B_(4)C)复相陶瓷的研究,成功制备厚度约为1 cm、直径约为5 cm的TiB_(2)/B_(4)C复相陶瓷块体。烧结样品物相和微观... 为了探究高硬度复相陶瓷高效且低成本的制备方法,利用自蔓延高温合成结合爆炸烧结技术,开展制备二硼化钛/碳化硼(TiB_(2)/B_(4)C)复相陶瓷的研究,成功制备厚度约为1 cm、直径约为5 cm的TiB_(2)/B_(4)C复相陶瓷块体。烧结样品物相和微观结构分析表征结果表明:烧结样品中TiB_(2)相和B_(4)C相分布均匀,截面观察到致密的微米级颗粒。该方法制备的样品致密度和硬度较高,随冲击压力不同,致密度范围在90%~93%之间,相应平均维氏硬度为16.64~17.35 GPa;根据不同条件下回收样品的微结构、致密度等分析,冲击压力和起爆时刻生坯温度对TiB_(2)/B_(4)C复相陶瓷烧结质量有重要影响;冲击压力为40 GPa,生坯温度为1800 K时,烧结致密度为93%;为进一步提高烧结质量,应提高冲击压力或冲击波作用时间。研究表明自蔓延热爆炸烧结技术是一种高效且低成本的高硬度复相陶瓷的制备方法。 展开更多
关键词 TiB_(2)/B_(4)c 复相陶瓷 自蔓延高温合成 爆炸烧结 微观结构
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C/C复合材料高熵氧化物涂层抗烧蚀性能 被引量:1
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作者 郭凌翔 唐颖 +3 位作者 黄世伟 肖博澜 夏东浩 孙佳 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2024年第1期61-70,I0001,I0002,共12页
新一代高超声速飞行器热端部件服役温度不断提高,对表面防护涂层的相稳定性和抗烧蚀性能提出了更高的要求。本工作针对传统过渡金属氧化物ZrO_(2)、HfO_(2)涂层开展高熵化设计,采用高温固相反应结合超音速大气等离子喷涂制备(Hf_(0.125)... 新一代高超声速飞行器热端部件服役温度不断提高,对表面防护涂层的相稳定性和抗烧蚀性能提出了更高的要求。本工作针对传统过渡金属氧化物ZrO_(2)、HfO_(2)涂层开展高熵化设计,采用高温固相反应结合超音速大气等离子喷涂制备(Hf_(0.125)Zr_(0.125)Sm_(0.25)Er_(0.25)Y_(0.25))O_(2-δ)(M1R3O)、(Hf_(0.2)Zr_(0.2)Sm_(0.2)Er_(0.2)Y_(0.2))O_(2-δ)(M2R3O)、(Hf_(0.25)Zr_(0.25)-Sm_(0.167)Er_(0.167)Y_(0.167))O_(2-δ)(M3R3O)三种高熵氧化物涂层,探究稀土组元含量对高熵氧化物涂层的相结构演变规律、相稳定性以及抗烧蚀性能的影响。M2R3O涂层和M3R3O涂层呈现优异的相稳定性和抗烧蚀性能,涂层经热流密度为2.38~2.40 MW/m^(2)的氧–乙炔焰烧蚀后仍保持物相结构稳定,未发生固溶体分解或析出稀土组元。其中M2R3O涂层循环烧蚀180 s后的质量烧蚀率与线烧蚀率分别为0.01 mg/s和–1.16μm/s,相比M1R3O涂层(0.09 mg/s、–1.34μm/s)以及M3R3O涂层(0.02 mg/s、–4.51μm/s),分别降低了88.9%、13.4%以及50.0%、74.3%,表现出最优异的抗烧蚀性能。M2R3O涂层的抗烧蚀性能优异归因于其兼具较高的熔点(>2200℃)和较低的热导率((1.07±0.09)W/(m•K)),使其有效防护内部的SiC过渡层以及C/C复合材料免受氧化损伤,避免了界面SiO_(2)相形成所导致的界面开裂。 展开更多
关键词 高熵陶瓷 过渡金属氧化物 热喷涂 热防护涂层 抗烧蚀 c/c复合材料
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喷涂-烧结法制备SiC涂层及抗冲蚀性能的研究
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作者 李媛琪 王博 +2 位作者 王龙 李安 李佳艳 《中国陶瓷》 CAS CSCD 北大核心 2024年第11期37-45,共9页
为了提高低密度C/C复合材料的抗冲蚀性能,使用喷涂-烧结法在其表面制备了均匀完整的SiC涂层,研究了反应原材料中蔗糖、葡萄糖、活性炭、磷粉四种碳源对SiC涂层的物相组成、微观形貌以及抗冲蚀性能的影响。结果表明:碳源种类对涂层中的... 为了提高低密度C/C复合材料的抗冲蚀性能,使用喷涂-烧结法在其表面制备了均匀完整的SiC涂层,研究了反应原材料中蔗糖、葡萄糖、活性炭、磷粉四种碳源对SiC涂层的物相组成、微观形貌以及抗冲蚀性能的影响。结果表明:碳源种类对涂层中的物相组成产生影响,蔗糖和葡萄糖作为碳源时涂层均以单一的SiC物相存在,在10次冲蚀性能测试后涂层仍完整覆盖基体表面,冲蚀损失率分别为1.288%和1.144%,可能是由于残碳现象的改善以及大体积SiC颗粒的生成使冲蚀粒子发生了回弹作用,导致抗冲蚀性能提升。 展开更多
关键词 喷涂-烧结法 低密度c/c复合材料 SIc涂层 碳源 抗冲蚀性能
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高温热处理对C/C复合材料组织结构和拉伸性能的影响
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作者 钮超 贾建刚 +1 位作者 伏芳杏 潘子康 《西安工业大学学报》 CAS 2024年第4期424-431,共8页
为了缓解C/C复合材料的脆性,使用自制的热梯度化学气相沉积(TG-CVI)设备对单向碳纤维预制体进行致密化,制备得到致密的C/C复合材料。通过高温热处理调节界面的结合强度和基体碳的石墨化程度,利用排水法测试复合材料的密度,万能材料试验... 为了缓解C/C复合材料的脆性,使用自制的热梯度化学气相沉积(TG-CVI)设备对单向碳纤维预制体进行致密化,制备得到致密的C/C复合材料。通过高温热处理调节界面的结合强度和基体碳的石墨化程度,利用排水法测试复合材料的密度,万能材料试验机测试其拉伸性能,采用可视化石墨烯片层技术(VGT)对试样进行处理,使用偏光显微镜(PLM)、扫描电子显微镜(SEM)、X-射线衍射(XRD)分别研究复合材料的微观组织、界面和断面形貌、以及物相组成。结果表明,在相同沉积条件下,热处理后的C/C复合材料碳基体的石墨化程度提高,界面结合强度下降,拉伸性能下降。但复合材料最初的脆性断裂向拟延性转变,延伸率提高。 展开更多
关键词 c/c复合材料 高温热处理 热解碳基体 拉伸性能
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Biogenic carbonate formation and sedimentation in the Xisha Islands: evidences from living Halimeda 被引量:4
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作者 XU Hong ZHAO Xinwei +8 位作者 EBERLI G.P. LIU Xinyu ZHU Yurui CAI Ying LUO Wei YAN Guijing ZHANG Bolin WEI Kai SHI Jian 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2015年第4期62-73,共12页
A recent island survey reveals that the Xuande Atoll and the Yongle Atoll in the Xisha Islands can be classified into one of two systems:the depleted atoll system and growth atoll system;the survey also indicates tha... A recent island survey reveals that the Xuande Atoll and the Yongle Atoll in the Xisha Islands can be classified into one of two systems:the depleted atoll system and growth atoll system;the survey also indicates that the decreased area of several shoals is an unbearable burden for the Xisha Islands, of which the largest island area is 2.13 km2 and the minimum elevation is 1.4 m. According to a survey on the ecological characteristics of Halimeda in the Laolongtou breaker zone of Shidao Island in the Xisha Islands, the green and white living Halimeda are collected, the isotopic ages of 14C contained in the Halimeda are shown to be 27 years and 55 years, respectively, and carbonate mainly occurs in five types, i.e., luster, segment, sand, sand grain, and marl in the formation. The Halimeda segments mainly provide the carbonate sediments of long-term biogenic deposits in the reef environment and the annual productivity per area is 60–100 g/m2;the characteristics of the microstructure of the Halimeda are analyzed, the aragonite raphide carbonate is deposited and enriched in the cortexes, medullas and cysts, and the Halimeda generally contain major elements such as C, O, Ca, Cl, Mg, K, Na, S and Al, and are rich in trace elements such as tellurium (Te), rhodium (Rh) and strontium. It is believed that the Halimeda grow slowly, including the biotic community of reef corals in the reef areas, thus they possess an environmental remediation capacity, but it takes much time to remedy the environment, and it is necessary to make the law to protect the diversity and vulnerability of the Xisha marine ecology, the ecology of the reef community and the island environment in a scientific way. As indicated in the survey, under the background of global warming and sea-level rise, the discovery of large amounts of Halimeda in the Laolongtou sea area is significant for the natural increase of the depleted atoll system of the Xuande Atoll, while the Halimeda segments represent the primary form of the fossil Halimeda, of which the species can be identified and preserved in great numbers under geological conditions. The Miocene was discovered in large amounts in the Xichen-1 well, therefore the study on the characteristics and mechanism of Halimeda carbonate sediments plays a pivotal role in the formation and construction of organic reefs in the South China Sea as well as oil and gas exploration. 展开更多
关键词 Xisha Islands HALIMEDA composition of biogenic carbonate 14^c accelerator mass spectrometrydating segment aragonite raphide trace elements
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Study on the Pyrolytic Carbon Generated by the Electric Heating CVD Method 被引量:1
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作者 徐先锋 欧阳甜 +1 位作者 ZENG Lingsheng CHAI Lingzhi 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第2期409-413,共5页
A new method of fabricating C/C composite materials, namely electric heating CVD method, was used, which electrified the carbon fiber directly by using the conductivity of itself. Acetylene was used as the carbon sour... A new method of fabricating C/C composite materials, namely electric heating CVD method, was used, which electrified the carbon fiber directly by using the conductivity of itself. Acetylene was used as the carbon source with nitrogen as dilution gas, and the pyrolytic carbon started to deposit on the carbon fiber surface when the deposition temperature was reached. The morphology of pyrolytic carbon was characterized by SEM, and the surface properties of carbon fibers before and after CVD were characterized by Raman spectroscopy. The experimental results show that the electric heating method is a novel method to fabricate C/C composite materials, which can form a dense C/C composite material in a short time. The order degree and the average crystallite size of the carbon fiber surface were decreased after the experiment. 展开更多
关键词 c/c composite materials electric heating method chemical vapor deposition pyrolytic carbon
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