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Fabrication of bamboo-inspired continuous carbon fiber-reinforced SiC composites via dual-material thermally assisted extrusion-based 3D printing 被引量:2
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作者 Sai Li Haitian Zhang +8 位作者 Zhongliang Lu Fusheng Cao Ziyao Wang Yan Liu Xiaohui Zhu Shuai Ning Kai Miao Shaoyu Qiu Dichen Li 《Journal of Materials Science & Technology》 2025年第5期92-103,共12页
Ceramic matrix composites(CMCs)structural components encounter the dual challenges of severe mechanical conditions and complex electromagnetic environments due to the increasing demand for stealth technology in aerosp... Ceramic matrix composites(CMCs)structural components encounter the dual challenges of severe mechanical conditions and complex electromagnetic environments due to the increasing demand for stealth technology in aerospace field.To address various functional requirements,this study integrates a biomimetic strategy inspired by gradient bamboo vascular bundles with a novel dual-material 3D printing approach.Three distinct bamboo-inspired structural configurations Cf/SiC composites are designed and manufactured,and the effects of these different structural configurations on the CVI process are analyzed.Nanoindentation method is utilized to characterize the relationship between interface bonding strength and mechanical properties.The results reveal that the maximum flexural strength and fracture toughness reach 108.6±5.2 MPa and 16.45±1.52 MPa m1/2,respectively,attributed to the enhanced crack propagation resistance and path caused by the weak fiber-matrix interface.Furthermore,the bio-inspired configuration enhances the dielectric loss and conductivity loss,exhibiting a minimum reflection loss of−24.3 dB with the effective absorption band of 3.89 GHz.This work introduces an innovative biomimetic strategy and 3D printing method for continuous fiber-reinforced ceramic composites,expanding the application of 3D printing technology in the field of CMCs. 展开更多
关键词 3D printing cf/SiC composites Mechanical properties Electromagnetic wave absorption
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Simultaneously improving the EMI shielding performances and mechanical properties of CF/PEKK composites via MXene interfacial modification 被引量:7
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作者 Xueqin Yang Jiamei Luo +7 位作者 Hongliang Ren Yi Xue Chenxi Yang Ting Yuan Zehao Yang Yong Liu Hui Zhang Jianyong Yu 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第23期202-209,共8页
In this study, two-dimensional MXene (Ti3 C2 Tx ) was employed to modify the interface of carbon fiber-reinforced polyetherketoneketone (CF/PEKK) composites, in order to simultaneously improve the electromagnetic inte... In this study, two-dimensional MXene (Ti3 C2 Tx ) was employed to modify the interface of carbon fiber-reinforced polyetherketoneketone (CF/PEKK) composites, in order to simultaneously improve the electromagnetic interference (EMI) shielding performances and mechanical properties. The obtained CF/PEKK composites possessed outstanding EMI and mechanical performances, as anticipated. Specifically, the CF/PEKK composites modified with MXene at 1 mg mL–1 exhibited an excellent EMI shielding effectiveness of 65.2 dB in the X-band, a 103.1% enhancement compared with the unmodified CF/PEKK composites. The attractive EMI shielding performances of CF/PEKK composites originated from enhanced ohmic losses and multiple reflections of electromagnetic waves with the help of the MXene and CF layers. In addition, CF/PEKK composites achieved the best mechanical properties by optimizing the dispersion concentration of MXene to 0.1 mg mL–1 . The flexural strength, flexural modulus, and interlaminar shear strength of CF/PEKK composites reached 1127 MPa, 81 GPa, and 89 MPa, which were 28.5%, 9.5%, and 29.7% higher than that of the unmodified CF/PEKK composites, respectively. Such improvement in mechanical properties could be ascribed to the comprehensive effect of mechanical interlocking, hydrogen bonds, and Van der Waals forces between the introduced MXene and CF, PEKK, respectively. 展开更多
关键词 cf/PEKK composites Ti3C2T MXene Electromagnetic interference shielding performances Interfacial interactions
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Laser-induced porous graphene on Polyimide/PDMS composites andits kirigami-inspired strain sensor 被引量:2
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作者 Hao Wang Zifeng Zhao +1 位作者 Panpan Liu Xiaogang Guo 《Theoretical & Applied Mechanics Letters》 CSCD 2021年第2期110-114,共5页
The laser-induced porous graphene(LIG)prepared in a straightforward fabrication method is presented,and its applications in stretchable strain sensors to detect the applied strain are also explored.The LIGformed on th... The laser-induced porous graphene(LIG)prepared in a straightforward fabrication method is presented,and its applications in stretchable strain sensors to detect the applied strain are also explored.The LIGformed on the polyimide/polydimethylsiloxane(PI/PDMS)composite exhibits a naturally high stretchabil-ity(over 30%),bypassing the transfer printing process compared to the one prepared by laser scribing onPI films.The PI/PDMS composite with LIG shows tunable mechanical and electronic performances withdifferent PI particle concentrations in PDMS.The good cyclic stability and almost linear response of theprepared LIG’s resistance with respect to tensile strain provide its access to wearable electronics.To im-prove the PDMS/PI composite stretchability,we designed and optimized a kirigami-inspired strain sensorwith LIG on the top surface,dramatically increasing the maximum strain value that in linear response toapplied strain from 3%to 79%. 展开更多
关键词 Laser-induced porous graphene Polyimide(pi)/PDMS composite kirigami-inspired strain sensor
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Ballistic Performance and Damage Characteristics of Chemical Vapor Infiltration Quasi 3D-Cf/SiC Composites 被引量:1
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作者 何旭道 程兴旺 +1 位作者 wang qi wang pei 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第1期118-122,共5页
To investigate the ballistic performance and damage characteristics of quasi threedimensional(3D) needle-punched Cf/SiC composites prepared by chemical vapor infiltration(CVI),penetration experiments were conducte... To investigate the ballistic performance and damage characteristics of quasi threedimensional(3D) needle-punched Cf/SiC composites prepared by chemical vapor infiltration(CVI),penetration experiments were conducted by using 7.62 mm armor piercing incendiary(API).Macro and micro fracture morphologies were then observed on recycled targets.The results show that the protection coefficient of 3D Cf/SiC composites is 2.54.High porosity and many micro thermal stress cracks may directly lead to the lower ballistic performance.Flat fracture morphology was observed on the crater surface.The low dynamic fracture strength along layer direction may be attributed to the voids and microcracks caused by residual thermal stress.The damage characteristics of Cf/Si C composites include matrix cracking,fiber bundle cracking,interfacial debonding,fiber fracture,and fiber bundle pull-out.And interfacial debonding and fiber fracture may play major roles in energy absorption. 展开更多
关键词 CVI-cf/SiC composites material ballistic performance damage characteristics
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炭纤维表面处理对CF/PI复合材料界面性能的影响(英文) 被引量:3
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作者 孙文训 张志谦 黄玉东 《材料研究学报》 EI CAS CSCD 北大核心 1998年第2期163-166,共4页
在基体和成型工艺一定的条件下,炭纤维(CF)的表面状态决定了复合材料的界面性质通过空气冷等离子体处理、表面接技NA-酸酐和表面徐没涂层的方法对炭纤维进行表面改性:采用界面微脱粘测试技术表征不同表面处理方法对炭纤维/聚酰亚... 在基体和成型工艺一定的条件下,炭纤维(CF)的表面状态决定了复合材料的界面性质通过空气冷等离子体处理、表面接技NA-酸酐和表面徐没涂层的方法对炭纤维进行表面改性:采用界面微脱粘测试技术表征不同表面处理方法对炭纤维/聚酰亚胶树脂复合材料界面剪切强度的影响; 展开更多
关键词 炭纤维 复合材料 界面性能 表面处理 cf/pi
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PIP法制备Cf/SiC复合材料过程中碳纤维的化学损伤 被引量:3
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作者 王建方 吴文健 +2 位作者 胡碧茹 满亚辉 陈朝辉 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2006年第10期1982-1985,共4页
对先驱体聚碳硅烷浸渍裂解工艺(PIP)制备Cf/SiC复合材料过程中碳纤维损伤严重的问题,系统地分析了在Cf/SiC复合材料制备过程中先驱体裂解对碳纤维的化学损伤.研究结果表明,PIP工艺中碳纤维的化学损伤包括界面反应和基体向碳纤维内部的... 对先驱体聚碳硅烷浸渍裂解工艺(PIP)制备Cf/SiC复合材料过程中碳纤维损伤严重的问题,系统地分析了在Cf/SiC复合材料制备过程中先驱体裂解对碳纤维的化学损伤.研究结果表明,PIP工艺中碳纤维的化学损伤包括界面反应和基体向碳纤维内部的扩散反应.其中聚碳硅烷(PCS)中的活性基团和碳纤维的化学反应并不严重,而微量的氧气和杂质对碳纤维的化学损伤影响很大;基体中硅等元素可向碳纤维内部扩散,随着高温处理时间的延长而加深,并形成脆性的界面层,使碳纤维截面积减小.在第一周期浸渍裂解过程中,先驱体对碳纤维的化学损伤很少,在后续周期中,随着基体致密度的提高,碳纤维的化学损伤有所增加. 展开更多
关键词 cf/SIC复合材料 碳纤维 化学损伤
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升温速率对PIP工艺制备的3D-Cf/SiC复合材料性能及结构的影响 被引量:2
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作者 陈志彦 邹世钦 《中南林业科技大学学报》 CAS CSCD 北大核心 2012年第1期150-153,共4页
研究了不同升温裂解速率对PIP工艺制备的3D-Cf/SiC复合材料性能的影响。采用了3种升温制度,每次裂解时间分别为3 900 min、1 500 min和1 000 min。实验发现3种升温制度下制备的材料的力学性能差别比较小,1 000 min裂解制备的试样的弯曲... 研究了不同升温裂解速率对PIP工艺制备的3D-Cf/SiC复合材料性能的影响。采用了3种升温制度,每次裂解时间分别为3 900 min、1 500 min和1 000 min。实验发现3种升温制度下制备的材料的力学性能差别比较小,1 000 min裂解制备的试样的弯曲强度高达762.5 MPa,其弯曲强度和断裂韧性常数还略高于另外2种。不同升温速率下试样断口的SEM照片均显示很长的纤维拔出,增韧效果显著。研究表明,适当提高升温速率并没有降低Cf/SiC复合材料的力学性能。 展开更多
关键词 cf/SIC复合材料 聚碳硅烷 先驱体浸渍-裂解工艺 快速裂解
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沸水对PI/CF复合材料界面作用机理的研究
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作者 周春华 刘威 《工程塑料应用》 CAS CSCD 北大核心 2005年第1期26-28,共3页
研究了聚酰亚胺(PI)/碳纤维(CF)复合材料界面在沸水中的稳定性。结果表明,经沸水浸泡后的复合材 料层间剪切强度和界面剪切强度均有所提高,且随水煮时间的延长而增大;试样断面观察表明,水没有对复合材料 界面产生破坏作用,力学性能... 研究了聚酰亚胺(PI)/碳纤维(CF)复合材料界面在沸水中的稳定性。结果表明,经沸水浸泡后的复合材 料层间剪切强度和界面剪切强度均有所提高,且随水煮时间的延长而增大;试样断面观察表明,水没有对复合材料 界面产生破坏作用,力学性能的变化与基体/纤维界面粘结的湿热稳定性有直接关系;沸水对界面的作用机理是,在 PI/CF复合材料的界面区,树脂的水解使氢键的数量增加,形成了防水层,阻碍了水沿界面的侵入,同时水松驰了界 面局部应力。 展开更多
关键词 复合材料界面 pi 界面粘结 湿热稳定性 层间剪切强度 聚酰亚胺 cf 作用机理 观察 侵入
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Improved wettability and mechanical properties of metal coated carbon fiber-reinforced aluminum matrix composites by squeeze melt infiltration technique 被引量:12
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作者 Jian-jun SHA Zhao-zhao LÜ +6 位作者 Ru-yi SHA Yu-fei ZU Ji-xiang DAI Yu-qiang XIAN Wei ZHANG Ding CUI Cong-lin YAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第2期317-330,共14页
In order to improve the wettability and bonding performance of the interface between carbon fiber and aluminum matrix,nickel-and copper-coated carbon fiber-reinforced aluminum matrix composites were fabricated by the ... In order to improve the wettability and bonding performance of the interface between carbon fiber and aluminum matrix,nickel-and copper-coated carbon fiber-reinforced aluminum matrix composites were fabricated by the squeeze melt infiltration technique.The interface wettability,microstructure and mechanical properties of the composites were compared and investigated.Compared with the uncoated fiber-reinforced aluminum matrix composite,the microstructure analysis indicated that the coatings significantly improved the wettability and effectively inhibited the interface reaction between carbon fiber and aluminum matrix during the process.Under the same processing condition,aluminum melt was easy to infiltrate into the copper-coated fiber bundles.Furthermore,the inhibited interface reaction was more conducive to maintain the original strength of fiber and improve the fiber−matrix interface bonding performance.The mechanical properties were evaluated by uniaxial tensile test.The yield strength,ultimate tensile strength and elastic modulus of the copper-coated carbon fiber-reinforced aluminum matrix composite were about 124 MPa,140 MPa and 82 GPa,respectively.In the case of nickel-coated carbon fiber-reinforced aluminum matrix composite,the yield strength,ultimate tensile strength and elastic modulus were about 60 MPa,70 MPa and 79 GPa,respectively.The excellent mechanical properties for copper-coated fiber-reinforced composites are attributed to better compactness of the matrix and better fiber−matrix interface bonding,which favor the load transfer ability from aluminam matrix to carbon fiber under the loading state,giving full play to the bearing role of carbon fiber. 展开更多
关键词 carbon fiber metal matrix composite cf/Al composite COATING WETTABILITY mechanical properties
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不同温度下CF/PPESK复合材料吸湿老化行为有限元分析
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作者 李昱鹏 佟野 雷明凯 《材料保护》 2025年第1期75-81,共7页
聚芳醚砜酮(PPESK)复合材料可作为耐高温涂料、耐磨自润滑材料被广泛用于核电装备零部件防护。为了研究温度对碳纤维增强聚芳醚砜酮(CF/PPESK)复合材料吸湿老化行为的影响,建立二维复合材料模型,利用ABAQUS对25℃和100℃条件下CF/PPESK... 聚芳醚砜酮(PPESK)复合材料可作为耐高温涂料、耐磨自润滑材料被广泛用于核电装备零部件防护。为了研究温度对碳纤维增强聚芳醚砜酮(CF/PPESK)复合材料吸湿老化行为的影响,建立二维复合材料模型,利用ABAQUS对25℃和100℃条件下CF/PPESK复合材料的吸湿行为及吸湿应力分布规律进行研究。根据获得的水分浓度场数据,对CF/PPESK复合材料随温度及时间变化的吸湿应力场进行了分析。结果表明:水分在CF/PPESK复合材料的扩散过程基本满足Fick扩散定律;温度越高,达到吸湿平衡越快,吸湿应力越大,当高温状态长时间吸湿导致材料内部饱和吸湿时,最大应力达到140.2 MPa,最大吸湿应力出现在纤维排列间距最近的基体区域。 展开更多
关键词 ABAQUS 碳纤维增强聚芳醚砜酮复合材料 吸湿行为 吸湿应力
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Feasibility Study on Cryogenic Milling of Carbon Fiber Reinforced Silicon Carbide Composites 被引量:4
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作者 XU Liang ZHAO Guolong +3 位作者 ZHANG Jianqiang WANG Kai WANG Xinyong HAO Xiuqing 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2020年第3期424-433,共10页
Carbon fiber reinforced silicon carbide matrix(Cf/SiC)composites have the most potential application for high-temperature components of aerospace high-end equipment.However,high cutting temperature,rapid tool wear and... Carbon fiber reinforced silicon carbide matrix(Cf/SiC)composites have the most potential application for high-temperature components of aerospace high-end equipment.However,high cutting temperature,rapid tool wear and severe surface damages are the main problems in dry cutting Cf/SiC composites process.The feasibility study on cryogenic milling of Cf/SiC composites using liquid nitrogen as coolant is investigated.Influences of milling parameters and coolant on temperature,cutting force,surface quality and tool wear are investigated,which is compared with dry cutting.Experimental results reveal that the cutting temperature in cryogenic milling of Cf/SiC composites is reduced by about 40%—60%compared with dry cutting.The milling force increases gradually with the increase of spindle speed,feed rate,depth and width of milling in cryogenic milling process.In addition,the machined surface quality in cryogenic milling is superior to that in dry cutting process.Fiber fracture,matrix damage and fiber matrix debonding are main material removal mechanisms.Flank face wear is the main wear form of the polycrystalline diamond(PCD)end mills.The tool life is prolonged in the cryogenic milling process because the reduced temperature inhibits the softening of Co binder and phase transition of diamond in the PCD end mills. 展开更多
关键词 cf/SiC composites cryogenic milling cutting temperature surface quality tool wear
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RELATIONS BETWEEN INTERFACE OF CF/Al-4.5 Cu COMPOSITE AND SOLIDIFICATION PROCESSING 被引量:1
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作者 Chu, Shuangjie Wu, Renjie 《中国有色金属学会会刊:英文版》 EI CSCD 1997年第2期133-137,共5页
RELATIONSBETWEENINTERFACEOFCF/Al4.5CuCOMPOSITEANDSOLIDIFICATIONPROCESSING①ChuShuangjie,WuRenjieResearchInsti... RELATIONSBETWEENINTERFACEOFCF/Al4.5CuCOMPOSITEANDSOLIDIFICATIONPROCESSING①ChuShuangjie,WuRenjieResearchInstituteofCompositeM... 展开更多
关键词 cf/AL 4.5Cu compositE INTERFACE SOLIDIFICATION COOLING rate
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The mortise and tenon structure enabling lamellar carbon composites of ultra-high bending strength 被引量:2
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作者 Zhaojun Li Kunpeng Lin +6 位作者 Hailiang Fang Hui Yu Junzhuo Wang Yimin Miao Lianjun Wang Jianlin Li Wan Jiang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2023年第2期249-258,共10页
Carbon materials are important but find little application in bending components due to their unsatisfy-ing bending strength(300-500 MPa).To fabricate carbon composites of high bending strength is a tough task,even us... Carbon materials are important but find little application in bending components due to their unsatisfy-ing bending strength(300-500 MPa).To fabricate carbon composites of high bending strength is a tough task,even using carbon fibers(CFs)structures as reinforcements.Here we report lamellar carbon com-posites of ultra-high bending strength(>1.2 GPa)produced from CFs cloths coated with nano-diamond(ND)particles by spark plasma sintering(SPS).When NDs are sandwiched between CFs cloths,some ND particles penetrate into interstices between CFs.During the sintering,the ND particles are transformed into graphite onions;this transformation is associated with an active state of carbon atoms participating in the change.As a result,the carbon onions strongly bond the CFs together,helping consolidate the com-pacts into strong lamellar carbon composite bulks.The produced graphite onions from the NDs located at crossings of CFs tows form a robust mortise and tenon structure,which helps the bending strength of the lamellar composite from the compact of 40 wt.%NDs exceed 1.2 GPa.The as-prepared compos-ite possesses the highest specific bending strength of all current high temperature structural materials reported so far.This work may pave a new way for high performance carbon materials. 展开更多
关键词 Carbon fibers(cfs) DIAMOND Carbon composite STRENGTH
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Composition control and temperature inferential control of dividing wall column based on model predictive control and PI strategies 被引量:4
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作者 Jianxin Wang Na Yu +2 位作者 Mengqi Chen Lin Cong Lanyi Sun 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2018年第5期1087-1101,共15页
The dividing wall column (DWC) is considered as a major breakthrough in distillation technology and has good prospect of industrialization. Model predictive control (MPC) is an advanced control strategy that has a... The dividing wall column (DWC) is considered as a major breakthrough in distillation technology and has good prospect of industrialization. Model predictive control (MPC) is an advanced control strategy that has acquired extensive applications in various industries. In this study, MPC is applied to the process for separating ethanol, n-propanol, and n-butanol ternary mixture in a fully thermally coupled DWC. Both composition control and tem- perature inferent/al control are considered. The multiobjective genetic algor/thm function "gamult/obj" in Matlab is used for the weight tuning of MPC. Comparisons are made between the control performances of MPC and PI strategies. Simulation results show that although both MPC and PI schemes can stabilize the DWC in case of feed disturbances, MPC generally behaves better than the PI strategy for both composition control and tempera- ture inferential control, resulting in a more stable and superior performance with lower values of integral of squared error (ISE). 展开更多
关键词 Dividing wall column composition control Temperature inferential control pi strategy Model predictive control Genetic algorithm
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Study on vacuum brazing of C_f/C composites 被引量:1
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作者 陈俊华 胥国祥 +1 位作者 耿浩然 陈广立 《China Welding》 EI CAS 2007年第4期56-59,共4页
Vacuum brazing experiments of Cf/C composites were carried out using pure Al and Al-5 Ti-B as brazing fillers , and shearing strength of the joints was measured. The microstructures of the brazed joints were studied b... Vacuum brazing experiments of Cf/C composites were carried out using pure Al and Al-5 Ti-B as brazing fillers , and shearing strength of the joints was measured. The microstructures of the brazed joints were studied by means of scanning electron microscopy (SEM) and energy dispersive X-ray spectrometer. The results indicate that the brazing temperature is the important processing parameter affecting the quality of the brazed joints. Vacuum brazing of Cf/C composites can be achieved employing the pure Al and AI-S Ti-B brazing fillers at a brazing temperature of 730 ℃ or 750 ℃ , respectively. Moreover, the joints have excellent microstructures with shear strength reaching the level of practical applications. 展开更多
关键词 brazing filler cf/C composite vacuum brazing micmstructure shearing strength
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One-pot Synthesis of MoO_(3)/PI Composite with Enhanced Photocatalytic Performance for Oxidative Coupling of Amines to Imines 被引量:1
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作者 Zhao Wenjie Du Chengxin +4 位作者 Song Yu Zhou Yafen Wang Qing Zhou Limei Xu Bin 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS CSCD 2024年第2期57-71,共15页
Organic-inorganic MoO_(3)/PI(MoPI)composites were prepared using a simple one-pot thermal copolymerization method.The resulting composites exhibited enhanced photocatalytic activity for the selective oxidation of benz... Organic-inorganic MoO_(3)/PI(MoPI)composites were prepared using a simple one-pot thermal copolymerization method.The resulting composites exhibited enhanced photocatalytic activity for the selective oxidation of benzylamine to N-benzylidene benzylamine(N-BDBA)in ambient air under simulated solar light irradiation compared to pristine MoO_(3) or polyimide(PI).In particular,the MoPI composite with a 0.3:1 molar ratio of Mo to melamine,referred to as MoPI-0.3,demonstrated the best performance in the photo-oxidation of benzylamine,achieving a benzylamine conversion of 95%with a N-BDBA selectivity exceeding 99%after 3 h irradiation.The enhanced photocatalytic activity of the MoPI-0.3 catalyst was attributed to the formation of a direct Z-scheme heterojunction between MoO_(3) and PI,facilitating more efficient separation of the photoinduced electrons and holes.Additionally,the MoPI-0.3 composite maintained considerably high activity over four consecutive cycles,highlighting its good stability and recyclability.Furthermore,the MoPI-0.3 composite could photo-oxidize benzylamine derivatives and heterocyclic amines to their corresponding imines,demonstrating the universal applicability of this composite catalyst. 展开更多
关键词 MoO3/pi composite photocatalysis amine oxidation IMINE
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Self-propagating synthesis joining of C_(f)/Al composites and TC4 alloy using AgCu filler with Ni-Al-Zr interlayer 被引量:1
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作者 Lei Shen Zhuo-Ran Li +3 位作者 Guang-Jie Feng Shu-Ye Zhang Zhi Zhou Peng He 《Rare Metals》 CSCD 2021年第7期1817-1824,共8页
The successful joining of carbon fiber-reinforced aluminum matrix(C_(f)/Al)composites and TC4 alloy can produce composite structure and meet the demands of lightweight in aerospace field.Up to now,few experimental res... The successful joining of carbon fiber-reinforced aluminum matrix(C_(f)/Al)composites and TC4 alloy can produce composite structure and meet the demands of lightweight in aerospace field.Up to now,few experimental researches have been reported on the joining of C_(f)/Al composites and TC4 alloy.In this study,the AgCu foils and Ni-Al-Zr compact were designed for the self-propagating high-temperature synthesis joining of these two materials.C_(f)/Al composites were joined with a reactive Ti plated on its joining surface.The typical microstructure of TC4/(AgCu/Ni-Al-Zr/AgCu)/Ti/C_(f)/Al joint was analyzed,and the effects of joining condition on microstructural evolution of the SHS joint were investigated.A thin reaction layer of Ni-Al-Ti intermetallic compounds was formed adjacent to the TC4 alloy.As a result,AgCu foils could reduce the effect of reaction heat on the substrates and improve the joint shear strength.When the thickness of AgCu foils reaches 150 lm,the Ni-Al-Zr interlayer mainly acts as auxiliary heat source.High joining pressure caused the active elements to diffuse into C_(f)/Al composites and weakened the shear strength of the joint.Finally,the joint shear strength could reach 36.4 MPa when the AgCu foils were 50 lm and the joining pressure was 2 MPa. 展开更多
关键词 cf/Al composites TC4 alloy Self-propagating high-temperature synthesis joining MICROSTRUCTURE Shear strength
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Improving Corrosion Resistance of C_f/Mg Composites using Rare Earth Conversion Coatings
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作者 宋美慧 王春雨 武高辉 《Journal of Rare Earths》 SCIE EI CAS CSCD 2007年第S2期72-75,共4页
The surface of carbon fiber reinforced Mg matrix (Cf/Mg) composites was modified by treatment of rare earth conversion coating, and nontoxic, non-pollution Ce conversion coatings were prepared. The effect of the coati... The surface of carbon fiber reinforced Mg matrix (Cf/Mg) composites was modified by treatment of rare earth conversion coating, and nontoxic, non-pollution Ce conversion coatings were prepared. The effect of the coatings on corrosion behaviors of composites was investigated by electrochemical polarization technology and electrochemical impedance spectroscopy (EIS) in 3.5% NaCl solution. The higher Ecorr and lower icorr were obtained by Ce conversion coatings. EIS results showed that the higher values of R2 were obtained by treatment containing CeCl3, the high corrosion resistance occured in treatment containing CeCl3, the low corrosion resistance in uncoating sample, the coating of treatment containing Ce(NO3)3 was medium. The microstructure of Ce conversion coatings was observed by scanning electron microscopy (SEM), and the elements of corresponding for coatings was characterized by energy dispersive spectrometer (EDS). The micro-cracks and Ce-riched spherical particles were characteristics of these coatings. 展开更多
关键词 cf/Mg composites corrosion resistance Ce conversion coatings rare earths
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微重力、高低温交变环境对CF/PEEK复材成形工艺的影响 被引量:1
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作者 郑世君 颜家勇 +3 位作者 崔庆新 张孝阿 高峰 张军营 《航天制造技术》 2025年第3期48-53,共6页
本研究针对碳纤维增强聚醚醚酮(CF/PEEK)复合材料在微重力与高低温交变环境下的成形工艺机理展开系统性研究。通过分子动力学模拟与实验表征相结合,揭示了空间环境下材料热力学行为的非平衡特性:微重力环境下体系热焓值降低59.03%,树脂... 本研究针对碳纤维增强聚醚醚酮(CF/PEEK)复合材料在微重力与高低温交变环境下的成形工艺机理展开系统性研究。通过分子动力学模拟与实验表征相结合,揭示了空间环境下材料热力学行为的非平衡特性:微重力环境下体系热焓值降低59.03%,树脂基体黏弹性响应异常及界面结合强度下降;高低温交变环境则调控冷却速率影响结晶度分布,诱导其界面横晶结构的非均匀生长。实验结果表明,优化工艺参数(加工温度为360℃、速率为2 mm/s)可使纤维/基体的界面结合具有较好的浸润效果,孔隙率降低,并通过碳纤维异相成核效应促进形成良好横晶结构。研究建立的模拟体系,为复材微重力环境下成形制造提供了工艺优化理论与技术研究,对未来推动复材在微重力等环境下的塑性成形技术的工程化应用具有重要意义。 展开更多
关键词 cf/PEEK复合材料 微重力 高低温交变 成形工艺 分子动力学模拟
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Processing and characterization of C_f/SiC composites
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作者 Xinbo He Bin Ye +2 位作者 Xuanhui Qu Changrui Zhang Xingui Zhou 《Journal of University of Science and Technology Beijing》 CSCD 2005年第5期460-463,共4页
Carbon fiber-reinforced SiC composites were prepared by precursor pyrolysis-hot pressing (PP-HP) and precursor impregnation-pyrolysis (PIP), respectively. The effect of fabrication methods on the microstructure an... Carbon fiber-reinforced SiC composites were prepared by precursor pyrolysis-hot pressing (PP-HP) and precursor impregnation-pyrolysis (PIP), respectively. The effect of fabrication methods on the microstructure and mechanical properties of the composites was investigated. It was found that the composite prepared by PP-HP exhibits a brittle fracture behavior, which is mainly ascribed to a strongly bonded fiber/matrix interface and the degradation of the fibers caused by a higher processing temperature. On the contrary, the composite prepared by PIP shows a tough fracture behavior, which could be rationalized on the basis of a weakly bonded fiber/matrix interface as well as a higher strength retention of the fibers. As a result, in comparison with the composite prepared by PP-HP, the composite prepared by PIP achieves better mechanical properties with a flexural strength of 573.4 MPa and a fracture toughness of 17.2 MPa.m^1/2. 展开更多
关键词 cf/SiC composites fabrication methods mechanical properties
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