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Design,preparation,microstructure and mechanical property of the lightweight radiation-shielding Mg-Ta-Al composites basing differential temperature hot rolling
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作者 Wenbo Luo Songya Feng +7 位作者 Xiuzhu Han Li Zhou Qinke Kong Zhiyong Xue Jianzhao Wang Mei Zhan Xianhua Chen Fusheng Pan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第6期2433-2446,共14页
A novel lightweight,radiation-shielding Mg-Ta-Al layered metal-matrix composite(LMC)was successful designed by doping the extremely refractory metal(Ta)into Mg sheets.These Mg-based LMCs sheets shows excellent radiati... A novel lightweight,radiation-shielding Mg-Ta-Al layered metal-matrix composite(LMC)was successful designed by doping the extremely refractory metal(Ta)into Mg sheets.These Mg-based LMCs sheets shows excellent radiation-dose shield effect,about 145 krad·a^(−1),which is about 17 times of traditional Mg alloy,while its surface density is only about 0.9 g·cm^(−2),reducing by 60%than that of pure Ta.The quantitate relationship between radiation-dose and the materials’thickness was also confirmed to the logistic function when the surface density is in the range of 0.6-1.5 g·cm^(−2).Meantime,the rolling parameters,interface microstructure and mechanical properties in both as-rolled and annealing treated samples were evaluated.The sheets possess a special dissimilar atoms diffusion transitional zone containing an obvious inter-diffusion Mg-Al interface and the unique micro-corrugated Ta-Al interface,as well as a thin Al film with a thickness of about 10μm.The special zone could reduce the stress concentration and enhance the strength of Mg-Ta-Al LMCs.The interface bonding strength reaches up to 54-76 MPa.The ultimate tensile strength(UTS)and yield strength(TYS)of the Mg-Ta-Al sheet were high to 413 MPa and 263 MPa,respectively,along with an elongation of 5.8%.The molecular dynamics(MD)analysis results show that the two interfaces exhibit different formation mechanism,the Mg-Al interface primarily depended on Mg/Al atoms diffusion basing point defects movement,while the Ta-Al interface with a micro-interlock pining shape formed by close-packed planes slipping during high temperature strain-induced deformation process. 展开更多
关键词 Dissimilar metals composites mg based alloys Radiation shielding Hot rolling LIGHTWEIGHT
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The interface structure and property of magnesium matrix composites:A review
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作者 Hongwei Xiong Lidong Gu +7 位作者 Jingya Wang Liping Zhou Tao Ying Shiwei Wang Haitao Zhou Jianbo Li Yang Gao Xiaoqin Zeng 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第7期2595-2623,共29页
Magnesium matrix composites have garnered significant attention in recent years owing to their exceptional lightweight properties and notable potential in various engineering applications.The interface generally acts ... Magnesium matrix composites have garnered significant attention in recent years owing to their exceptional lightweight properties and notable potential in various engineering applications.The interface generally acts as a“bridge”between the matrix and reinforcement,playing crucial roles in critical processes such as load transfer,failure behavior,and carrier transport.A deep understanding of the interfacial structures,properties,and effects holds paramount significance in the study of composites.This paper presents a comprehensive review of prior researches related to the interface of Mg matrix composites.Firstly,the different interfacial structures and interaction mechanisms encompassing mechanical,physical,and chemical bonding are introduced.Subsequently,the interfacial mechanical properties and their influence on the overall properties are discussed.Finally,the paper addresses diverse interface modification methods including matrix alloying and reinforcement surface treatment. 展开更多
关键词 mg matrix composites INTERFACE interfacial strength interfacial modification
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Carbon Fiber Breakage Mechanism in Aluminum(Al)/Carbon Fibers(CFs) Composite Sheet during Accumulative Roll Bonding(ARB) Process
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作者 胡淑芬 SUN Zhenzhong +3 位作者 SHEN Fanghua DENG Jun 杨卫平 杨浩坤 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS CSCD 2024年第1期167-173,共7页
We put forward a method of fabricating Aluminum(Al)/carbon fibers(CFs) composite sheets by the accumulative roll bonding(ARB) method. The finished Al/CFs composite sheet has CFs and pure Al sheets as sandwich and surf... We put forward a method of fabricating Aluminum(Al)/carbon fibers(CFs) composite sheets by the accumulative roll bonding(ARB) method. The finished Al/CFs composite sheet has CFs and pure Al sheets as sandwich and surface layers. After cross-section observation of the Al/CFs composite sheet, we found that the CFs discretely distributed within the sandwich layer. Besides, the tensile test showed that the contribution of the sandwich CFs layer to tensile strength was less than 11% compared with annealed pure Al sheet. With ex-situ observation of the CFs breakage evolution with-16%,-32%, and-45% rolling reduction during the ARB process, the plastic instability of the Al layer was found to bring shear damages to the CFs. At last, the bridging strengthening mechanism introduced by CFs was sacrificed. We provide new insight into and instruction on Al/CFs composite sheet preparation method and processing parameters. 展开更多
关键词 Al/cfs composite sheet accumulative roll bonding tensile strength plastic instability carbon fiber breakage
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Microstructure evolution,mechanical properties and fracture behavior of Al-xSi/AZ91D bimetallic composites prepared by a compound casting
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作者 Guangyu Li Wenming Jiang +3 位作者 Feng Guan Junwen Zhu Yang Yu Zitian Fan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第5期1944-1964,共21页
In this paper,the effect of the Si content on microstructure evolution,mechanical properties,and fracture behavior of the Al-xSi/AZ91D bimetallic composites prepared by compound casting was investigated systematically... In this paper,the effect of the Si content on microstructure evolution,mechanical properties,and fracture behavior of the Al-xSi/AZ91D bimetallic composites prepared by compound casting was investigated systematically.The obtained results showed that all the Al-xSi/AZ91D bimetallic composites had a metallurgical reaction layer(MRL),whose thickness increased with increasing Si content for the hypoeutectic Al-Si/AZ91D composites,while the hypereutectic Al-Si/AZ91D composites were opposite.The MRL included eutectic layer(E layer),intermetallic compound layer(IMC layer)and transition region layer(T layer).In the IMC layer,the hypereutectic Al-Si/AZ91D composites contained some Si solid solution and flocculent Mg_(2)Si+Al-Mg IMCs phases not presented in the hypoeutectic Al-Si/AZ91D composites.Besides,increasing Si content,the thickness proportion of the T layer increased,forming an inconsistent preferred orientation of the MRL.The shear strengths of the Al-xSi/AZ91D bimetallic composites enhanced with increasing Si content,and the Al-15Si/AZ91D composite obtained a maximum shear strength of 58.6 MPa,which was 73.4% higher than the Al-6Si/AZ91D composite.The fractures of the Al-xSi/AZ91D bimetallic composites transformed from the T layer into the E layer with the increase of the Si content.The improvement of the shear strength of the Al-xSi/AZ91D bimetallic composites was attributed to the synergistic action of the Mg_(2)Si particle reinforcement,the reduction of oxidizing inclusions and the ratio of Al-Mg IMCs as well as the orientation change of the MRL. 展开更多
关键词 Al/mg bimetallic composites Si content mg_(2)Si reinforcement Microstructure Mechanical properties Fracture behavior
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Hot extrusion of SiC_p/AZ91 Mg matrix composites 被引量:5
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作者 王晓军 胡小石 +2 位作者 聂凯波 吴昆 郑明毅 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第8期1912-1917,共6页
SiC particles reinforced AZ91 Mg matrix composites (SiCp/AZ91) with SiC volume fractions of 5%, 10% and 15% were fabricated by stir casting. After T4 treatment, these composites were extruded at 350 °C with an ... SiC particles reinforced AZ91 Mg matrix composites (SiCp/AZ91) with SiC volume fractions of 5%, 10% and 15% were fabricated by stir casting. After T4 treatment, these composites were extruded at 350 °C with an extrusion ratio of 12:1. In the as-cast composite, particles segregated at a microscopic scale within the intergranular regions. Hot extrusion almost eliminated this particle aggregation and improved the particle distribution of the composites. In addition, extrusion refined the grains of matrix. The results show that hot extrusion significantly improves the mechanical properties of the composites. In the as-extruded composite, with the increase of SiCp contents, the grain size of the extruded composites decreases, the strength and elastic modulus increase but the elongation decreases. 展开更多
关键词 EXTRUSION mg matrix composites SICP AZ91 magnesium alloy volume fraction
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Influence of solution treatment on microstructure and properties of in-situ Mg_2Si/AZ91D composites 被引量:4
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作者 彭蕾 陈刚 +2 位作者 赵玉涛 黄康 邵阳 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第11期2365-2371,共7页
The influence of solution treatment on the microstructure and properties of Mg2Si/AZ91D composites fabricated from Mg-SiO2 system via in-situ processing method was investigated.The results show that coarse Chinese scr... The influence of solution treatment on the microstructure and properties of Mg2Si/AZ91D composites fabricated from Mg-SiO2 system via in-situ processing method was investigated.The results show that coarse Chinese script shape Mg2Si phases can be formed by adding SiO2 into AZ91D magnesium alloy with Si content up to 1.5% of the alloy melt.During solution treatment,the morphology and distribution of the coarse Chinese script shape Mg2Si phases are modified.Meanwhile,the β-Mg17Al12 phase is dissolved into the magnesium matrix.With increasing holding time,the coarse Mg2Si phases tend to dissolve,break and spheroidize.After solution treatment at 420 ℃ for 16 h,Mg2Si phases become the finest and relatively well-distributed phase.The tensile strength and elongation are increased by 14.9% and 38.9%,respectively.It is believed that the Mg2Si phases continuously dissolve and break,and finally the spheroidized Mg2Si particles are obtained due to the interface tension of Mg2Si/Mg interface. 展开更多
关键词 mg2Si/AZ91D composites solution treatment spheroidized mg2Si particle interface tension
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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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Cf/Mg复合材料的力学与热物理性能和机械加工分析
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作者 张博 《冶金与材料》 2023年第7期112-114,共3页
近年来,镁合金的强度和刚度得到了显著提高,但断裂韧性(EwP)和疲劳性能差。Cf/Mg是将镁合金与碳纤维相结合,进而制成的一种复合材料。通过碳纤维增强体(CF)与镁基体之间的界面结合,增强体与镁基体之间形成了一个强相互作用层,从而改善... 近年来,镁合金的强度和刚度得到了显著提高,但断裂韧性(EwP)和疲劳性能差。Cf/Mg是将镁合金与碳纤维相结合,进而制成的一种复合材料。通过碳纤维增强体(CF)与镁基体之间的界面结合,增强体与镁基体之间形成了一个强相互作用层,从而改善镁合金的性能。文章对Cf/Mg复合材料的制备工艺、组织结构、力学性能和热物理性能等方面进行了综述,并提出了提高Cf/Mg复合材料强度和刚度的方法。希望通过文章的研究,为碳纤维增强镁合金材料的应用提供指导。 展开更多
关键词 cf/mg复合材料 热物理性能 机械加工分析
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Mg/Al真空爆炸焊接微观形貌及力学性能
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作者 李雪交 孙标 +3 位作者 张文喆 刘笑 钱敬业 韩颖 《高压物理学报》 CAS CSCD 北大核心 2024年第6期66-76,共11页
镁合金和铝合金因具有较高的化学活性,在常规焊接方式下,其表面的氧化物会掺杂到焊接接头内,使得复合板的结合性能下降。为了提高Mg/Al复合板的结合强度,采用真空爆炸焊接法制备了Mg-AZ31B/Al-6061复合板,并与常规空气环境下制备的相同... 镁合金和铝合金因具有较高的化学活性,在常规焊接方式下,其表面的氧化物会掺杂到焊接接头内,使得复合板的结合性能下降。为了提高Mg/Al复合板的结合强度,采用真空爆炸焊接法制备了Mg-AZ31B/Al-6061复合板,并与常规空气环境下制备的相同参数复合板进行了对比。通过光学显微镜、扫描电子显微镜、能谱仪以及万能试验机,对结合界面的微观形貌、元素分布和力学性能进行分析。结果表明:由于气体冲击波压力不同,真空环境下复合材料的界面形貌与空气环境下有很大区别;真空环境有效抑制了镁、铝2种金属氧化,在熔化区未检测到金属氧化物。此外,还观察到真空环境下试样的剪切强度和拉伸强度显著增大。因此,真空爆炸焊接对Mg/Al复合板性能的提升起到了重要作用,可以作为一种有效的金属焊接方法。 展开更多
关键词 真空环境 爆炸焊接 mg/Al复合板 结合界面 微观形貌 力学性能
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Mg-Gd-Y-Zn-Zr合金碎屑固相再生工艺研究
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作者 滕步刚 裴彦博 袁梦 《塑性工程学报》 CAS CSCD 北大核心 2024年第7期1-8,共8页
通过热压烧结以及挤剪复合成形工艺对Mg-7Gd-4Y-2Zn-0.4Zr合金碎屑进行固相再生。在碎屑中添加体积分数5%、7%和9%的SiC颗粒,研究了SiC颗粒含量对固相再生坯料微观组织和力学性能的影响。结果表明,热压烧结后坯料中的界面明显,O元素在... 通过热压烧结以及挤剪复合成形工艺对Mg-7Gd-4Y-2Zn-0.4Zr合金碎屑进行固相再生。在碎屑中添加体积分数5%、7%和9%的SiC颗粒,研究了SiC颗粒含量对固相再生坯料微观组织和力学性能的影响。结果表明,热压烧结后坯料中的界面明显,O元素在烧结界面富集。此外,微观组织中存在大块SiC颗粒,不同试样的塑性均较差。相比于其它试样,SiC体积分数7%的热烧结试样的综合性能最优,其抗拉强度为232 MPa,伸长率为1.76%。挤剪复合成形后,微观组织中的烧结界面消失,平均晶粒尺寸细化至10μm。此外,原本团聚分布的SiC颗粒均匀、弥散地分布在合金内部。SiC体积分数5%的固相再生坯料具有较优的综合力学性能,其抗拉强度为269 MPa,伸长率为12.2%,相比于固溶态合金分别提升了24.5%和62.7%。 展开更多
关键词 mg-Gd-Y-Zn-Zr合金 固相再生 挤剪复合成形 SIC颗粒
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ZIF-8-based micro-arc oxidation composite coatings enhanced the corrosion resistance and superhydrophobicity of a Mg alloy 被引量:7
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作者 Shiquan Jiang Zhiyuan Zhang +3 位作者 Dong Wang Yuqing Wen Ning Peng Wei Shang 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第4期1367-1380,共14页
Mg alloys are considered the most promising engineering materials because of their unique properties.However,the uncontrolled corrosion rate of these alloys limits their applications.Therefore,in this study,a micro-ar... Mg alloys are considered the most promising engineering materials because of their unique properties.However,the uncontrolled corrosion rate of these alloys limits their applications.Therefore,in this study,a micro-arc oxidation layer was used as a transition layer to“directly”grow a zinc-based metal-organic framework(MOF)composite coating on the surface of a Mg alloy(AZ91D).Herein,the two zeolitic imidazolate framework(ZIF-8)coatings with different morphologies were separately prepared by homologous metal oxide induction and a one-step in-situ growth method.The superhydrophobic composite coating showed strong hydrophobicity and self-cleaning properties,which could prevent the penetration of water and corrosive ions(Cl^(−))into the surface of AZ91D.Electrochemical tests demonstrated that the super-hydrophobic composite coatings greatly enhanced the corrosion resistance of AZ91D,and the corrosion current density decreased from 10^(−5)to 10^(−9)A/cm^(2).These results indicate that the ZIF-8 coatings are beneficial for improving the hydrophobicity and enhancing the corrosion resistance of Mg alloys.Therefore,MOF composite coatings provide a new strategy that can be used to prepare multifunctional anticorrosion coatings on metal substrates. 展开更多
关键词 mg alloy composite coating Metal-organic framework Corrosion resistance SUPERHYDROPHOBICITY
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Effect of HEA/Al composite interlayer on microstructure and mechanical property of Ti/Mg bimetal composite by solid-liquid compound casting 被引量:3
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作者 Jin Cheng Jian-hua Zhao +3 位作者 Chun Wang Jing-jing Shangguan Cheng Gu Ya-jun Wang 《China Foundry》 SCIE CAS CSCD 2023年第1期1-11,共11页
In this study,HEA/AI composite interlayer was used to fabricate Ti/Mg bimetal composites by solidliquid compound casting process.The Al layer was prepared on the surface of TC4 alloy by hot dipping,and the FeCoNiCr HE... In this study,HEA/AI composite interlayer was used to fabricate Ti/Mg bimetal composites by solidliquid compound casting process.The Al layer was prepared on the surface of TC4 alloy by hot dipping,and the FeCoNiCr HEA layer was prepared by magnetron sputtering onto the Al layer.The influence of the HEA layer thickness and pouring temperature on interface evolution was investigated based on SEM observation and thermodynamic analysis.Results indicate that the sluggish diffusion effect of HEA can effectively inhibit the interfacial diffusion between Al and Mg,which is conducive to the formation of solid solution,especially when the thickness of HEA is 800 nm.With the increase of casting temperature from 720 ℃ to 730 ℃,740℃,and 750 ℃,α-Al(Mg),α-Al(Mg)+Al3Mg2,Al3Mg2+Al12Mg17,and Al12Mg17+δ-Mg are formed at the interface of Ti/Mg bimetal,respectively.When the thickness of the HEA layer is 800 nm and the pouring temperature is 720 ℃,the bonding strength of the Ti/Mg bimetal can reach the maximum of 93.6 MPa. 展开更多
关键词 Ti/mg bimetal composite microstructure solid-liquid compound casting HEA/Al composite interlayer mechanical property
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退火态CFR镁/铝复合板界面形貌与力学性能研究 被引量:1
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作者 李莎 楚志兵 +3 位作者 桂海莲 李华英 拓雷锋 王涛 《塑性工程学报》 CAS CSCD 北大核心 2024年第3期144-156,共13页
通过对波-平轧制镁/铝复合板进行退火处理,研究了退火温度和退火时间对镁/铝复合板界面微观组织和力学性能的影响规律。结果表明, 200℃/30 min退火平直镁/铝复合板新结合界面生成薄的Mg_(17)Al_(12)相扩散层,这可以促进界面冶金结合,... 通过对波-平轧制镁/铝复合板进行退火处理,研究了退火温度和退火时间对镁/铝复合板界面微观组织和力学性能的影响规律。结果表明, 200℃/30 min退火平直镁/铝复合板新结合界面生成薄的Mg_(17)Al_(12)相扩散层,这可以促进界面冶金结合,提升界面结合强度。当250℃/30 min退火时,新结合界面迅速扩展,进一步形成由Mg_(17)Al_(12)相和Mg_(2)Al_(3)相共同构成的IMCs层。当退火温度升高到300℃时,界面整体形成连续分布的IMCs层,退火温度越高或退火时间越长, IMCs层厚度越大。高温退火处理时,强塑性变形可以加速波谷位置界面原子间的扩散,导致同种化合物波谷位置的生长激活能小于波峰位置,从而造成波谷扩散层厚度大于波峰。退火态镁/铝复合板弯曲测试后,界面无分层、基体无脱落。随着退化温度的升高,平直镁/铝复合板高温拉伸抗拉强度下降,而断裂伸长率增加。 展开更多
关键词 镁/铝复合板 波纹辊 退火处理 界面IMCs层 力学性能
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选区激光熔化成形TiB_(2)/Al-Si-Mg大尺寸复杂构件 被引量:1
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作者 廉清 肖亚开 +6 位作者 孙华 赵鑫光 尹健 吴一 王洪泽 郑凯特 黄洁 《中国有色金属学报》 EI CAS CSCD 北大核心 2024年第4期1154-1163,共10页
选区激光熔化(SLM)成形大尺寸复杂构件厚度多样、成形高度较高、方向复杂,需要研究构件微观组织均匀性和力学性能稳定性。本文以SLM成形TiB_(2)/Al-Si-Mg复合材料为研究对象,分析复合材料多级微观组织,对比不同成形厚度、高度、方向下... 选区激光熔化(SLM)成形大尺寸复杂构件厚度多样、成形高度较高、方向复杂,需要研究构件微观组织均匀性和力学性能稳定性。本文以SLM成形TiB_(2)/Al-Si-Mg复合材料为研究对象,分析复合材料多级微观组织,对比不同成形厚度、高度、方向下复合材料的力学性能。结果表明:复合材料表现出熔池特征结构,细小等轴晶粒组织均匀分布且随机取向,纳米TiB_(2)颗粒在材料内部弥散分布。随成形厚度增加,复合材料伸长率保持稳定,抗拉强度受本征热处理影响略微增大;在不同成形高度下,复合材料抗拉强度和伸长率保持稳定;在不同成形方向下,复合材料抗拉强度保持稳定,伸长率受熔池结构影响在水平方向略高。基于以上结果,成功制备大飞机舱门铰链臂(588 mm×318 mm×470 mm)复杂结构件。 展开更多
关键词 选区激光熔化 TiB_(2)/Al-Si-mg复合材料 微观组织 力学性能 复杂构件
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Preparation, structure and properties of Mg/Al laminated metal composites fabricated by roll-bonding, a review 被引量:11
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作者 Tingting Liu Bo Song +4 位作者 Guangsheng Huang Xianquan Jiang Shengfeng Guo Kaihong Zheng Fusheng Pan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第8期2062-2093,共32页
Laminated metal composites(LMCs) are a unique composite material and have great application prospects in automobiles, ships, aircraft,and other manufacturing industries. As lightweight materials, the Mg/Al LMCs are ex... Laminated metal composites(LMCs) are a unique composite material and have great application prospects in automobiles, ships, aircraft,and other manufacturing industries. As lightweight materials, the Mg/Al LMCs are expected to combine the advantages of both Mg and Al alloys to broaden their application prospects. Roll-bonding is the most popular process for the fabrication of Mg/Al LMCs due to high production efficiency and good product quality stability. The roll-bonding process involves the deformation of the substrates and the formation of the interfacial diffusion layer. The latter will directly determine the interface bonding strength of Mg/Al LMCs. Bonding strength is very sensitive to the thickness of the reaction layer in the diffusion layer. When the thickness of the reaction layer exceeds 5 μm, the bonding strength decreases sharply. Therefore, controlling the thickness of the reaction layer is very important for the design of rolling parameters.The latest research also showed that the addition of intermediate layer metal and the construction of three-dimensional interfaces can further improve the interface bonding strength. How to apply these methods to roll-bonding is the focus of future research. Recently, a new rolling technique, corrugated roll/plat roll rolling+flat roll/flat roll rolling has been developed to fabricate Mg/Al LMCs. It can effectively promote the deformation of the hard layer and generate a wavy interface, resulting in the enhancement of the bonding quality and rolling quality.In the current review, the effects of rolling parameters and subsequent annealing on the interface structure of Mg/Al LMCs were elaborated in detail. The application of some special rolling techniques in the preparation of Mg/Al LMCs was also summarized. The latest research results on the relationship between interface structure and mechanical properties of Mg/Al LMCs were reviewed. Finally, further research directions in this field were proposed. 展开更多
关键词 mg/Al Laminated metal composites Roll-bonding Interface Mechanical properties
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Characteristics of two Al based functionally gradient composites reinforced by primary Si particles and Si/in situ Mg_2Si particles in centrifugal casting 被引量:14
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作者 翟彦博 刘昌明 +2 位作者 王开 邹茂华 谢勇 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第3期361-370,共10页
Two kinds of Al based functionally gradient composite tubes reinforced by primary Si particles alone and primary Si/in situ Mg2Si particles jointly were successfully prepared by centrifugal casting,and their structura... Two kinds of Al based functionally gradient composite tubes reinforced by primary Si particles alone and primary Si/in situ Mg2Si particles jointly were successfully prepared by centrifugal casting,and their structural and mechanical characters were compared.It is found that the composite reinforced with primary Si particles takes a characteristic of particles distribution both in the inner and outer layers.However,composite reinforced with primary Si/Mg2Si particles jointly takes a characteristic of particles distribution only in the inner layer and shows a sudden change of particles distribution across the section of inner and outer layers.The hardness and wear resistance of Al-19Si-5Mg tube in the inner layer are greatly higher than that in the other layers of Al-19Si-5Mg tube and Al-19Si tube.Theoretical analysis reveals that the existence of Mg2Si particles is the key factor to form this sudden change of gradient distribution of two kinds of particles.Because Mg2Si particles with a lower density have a higher centripetal moving velocity than primary Si particles,in a field of centrifugal force,they would collide with primary Si particles and then impel the later to move together forward to the inner layer of the tube. 展开更多
关键词 centrifugal casting functionally gradient composites in situ primary Si particles in situ mg2Si particles
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Novel method of screw extrusion for fabricating Al/Mg(macro-) composites from aluminum alloy 6063 and magnesium granules 被引量:4
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作者 Kristian Gr tta SKORPEN Eirik MAUL +1 位作者 Oddvin REISO Hans J rgen ROVEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期3886-3893,共8页
A novel method of screw extrusion was used for producing a bimetal composite Al/Mg from granules containing aluminium alloy 6063 (AA6063) and commercial pure magnesium. Up to 12.5%(mass fraction) pure magnesium wa... A novel method of screw extrusion was used for producing a bimetal composite Al/Mg from granules containing aluminium alloy 6063 (AA6063) and commercial pure magnesium. Up to 12.5%(mass fraction) pure magnesium was added to the aluminium alloy. In general, the material consisted of a fine grained microstructure. In addition to the phases originating from the input materials, intermetallic phases were observed as islands consisting of the Al2Mg3 phase surrounded byγ-Mg17Al12, throughout the microstructure. The mechanical properties of the extruded material showed a gradual increase in strength with increasing the addition of Mg. The highest registered UTS, well above 350 MPa, was observed for the material containing 10%Mg. Examinations of the fracture surfaces indicated that increasing the magnesium content led to a higher degree of brittle fracture and a gradual change of the fracture micro-mechanisms. The optimization of the post-extrusion processing conditions is still ongoing. 展开更多
关键词 Al/mg composites EXTRUSION microstructure mechanical properties
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单向CF/PA6复合材料性能劣化及老化寿命预测
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作者 余冰 任天翔 +5 位作者 缪宏超 陈立峰 沈伟 王伟 赵德方 占海华 《工程塑料应用》 CAS CSCD 北大核心 2024年第1期116-122,共7页
利用热压成型工艺制备出碳纤维(CF)/尼龙6(PA6)复合材料单向板,并将复合材料试样置于蒸馏水热水浴中,分别在25,60,80℃下进行不同时间的湿热老化,再对湿热老化后复合材料试样进行吸湿测试、三点弯曲测试、微观形貌表征,探究复合材料的... 利用热压成型工艺制备出碳纤维(CF)/尼龙6(PA6)复合材料单向板,并将复合材料试样置于蒸馏水热水浴中,分别在25,60,80℃下进行不同时间的湿热老化,再对湿热老化后复合材料试样进行吸湿测试、三点弯曲测试、微观形貌表征,探究复合材料的吸湿规律、力学性能劣化规律和微观形貌变化,并对复合材料的长期寿命进行预测。结果发现,复合材料在25,60℃下的吸湿行为基本符合Fick扩散定律,而80℃下在老化最后阶段出现了背离Fick扩散定律现象。复合材料的弯曲强度随老化温度、老化时间的增加呈下降趋势,分别在25,60,80℃下老化120 d后,试样弯曲强度分别下降了22.78%,25.0%,26.25%。但是老化温度、老化时间对弯曲弹性模量无显著影响,且CF与PA6树脂之间的界面黏合性能随着温度、时间的增加逐渐变差。以绍兴2021年平均温度作为服役温度,基于加速老化测试模型和阿伦尼乌斯理论建立了CF/PA6复合材料在服役环境下剩余弯曲强度的预测模型,可预测到1 400 d后,CF/PA6复合材料的弯曲强度保留率在64.8%左右。 展开更多
关键词 cf/PA6复合材料 吸湿行为 弯曲性能 微观形貌 寿命预测
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Interfacial microstructure and mechanical behavior of Mg/Cu bimetal composites fabricated by compound casting process 被引量:7
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作者 De-xing XU Chang-lin YANG +2 位作者 Kang-ning ZHAO Hong-xiang LI Ji-shan ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第6期1233-1241,共9页
Mg/Cu bimetal composites were prepared by compound casting method, and the microstructure evolution, phase constitution and bonding strength at the interface were investigated.It is found that a good metallurgical bon... Mg/Cu bimetal composites were prepared by compound casting method, and the microstructure evolution, phase constitution and bonding strength at the interface were investigated.It is found that a good metallurgical bonding can be achieved at the interface of Mg and Cu,which consists of two sub-layers,i.e.,layer I with 30μm on the copper side composed of Mg2Cu matrix phase, on which a small amount of dendritic MgCu2 phase was randomly distributed;layerⅡ with 140μm on the magnesium side made up of the lamellar nano-eutectic network Mg2Cu+(Mg) and a small amount of detached Mg2Cu phase. The average interfacial shear strength of the bimetal composite is measured to be 13 MPa.This study provides a new fabrication process for the application of Mg/Cu bimetal composites as the hydrogen storage materials. 展开更多
关键词 mg/Cu bimetal composites compound casting interfacial bonding mechanism interfacial microstructure interfacial mechanical behavior
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自成核行为在CF/PPS复合材料中的差异性与普适性
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作者 任毅 李洲洋 +3 位作者 李心果 周剑锋 朱姝 余木火 《合成纤维》 CAS 2024年第4期65-74,共10页
以半结晶高分子为基体的碳纤维增强热塑性复合材料,其基体的结晶行为将受到碳纤维表面性质与热历史的共同影响。当这种材料在经历反复加热冷却的热循环过程时,基体会产生自成核行为,其结晶过程变得更加复杂。通过三种T300级碳纤维分别... 以半结晶高分子为基体的碳纤维增强热塑性复合材料,其基体的结晶行为将受到碳纤维表面性质与热历史的共同影响。当这种材料在经历反复加热冷却的热循环过程时,基体会产生自成核行为,其结晶过程变得更加复杂。通过三种T300级碳纤维分别制备了碳纤维增强聚苯硫醚(CF/PPS)复合材料,并探究了二次熔融温度与CF/PPS复合材料结晶行为的关系,揭示了不同碳纤维表面性质对CF/PPS复合材料自成核行为的影响。在此基础上阐明了CF/PPS复合材料基体自成核与CF异相成核的竞争关系。最后,通过冲压成型制得具有自成核行为的CF/PPS复合材料角片,验证了自成核对于CF/PPS复合材料二次热成型技术的有效性与重要性。 展开更多
关键词 cf/PPS复合材料 自成核行为 碳纤维 冲压成型
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