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Corrosion behavior of composite coatings containing hydroxyapatite particles on Mg alloys by plasma electrolytic oxidation: A review
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作者 Arash Fattah-alhosseini Razieh Chaharmahali +1 位作者 Sajad Alizad Mosab Kaseem 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第9期2999-3011,共13页
Mg and its alloys have been introduced as promising biodegradable materials for biomedical implant applications due to their excellent biocompatibility, mechanical behavior, and biodegradability. However, their suscep... Mg and its alloys have been introduced as promising biodegradable materials for biomedical implant applications due to their excellent biocompatibility, mechanical behavior, and biodegradability. However, their susceptibility to rapid corrosion within the body poses a significant challenge and restricts their applications. To overcome this issue, various surface modification techniques have been developed to enhance the corrosion resistance and bioactivity of Mg-based implants. PEO is a potent technique for producing an oxide film on a surface that significantly minimizes the tendency to corrode. However, the inevitable defects due to discharges and poor biological activity during the coating process remain a concern. Therefore, adding suitable particles during the coating process is a suitable solution. Hydroxyapatite(HAp)has attracted much attention in the development of biomedical applications in the scientific community. HAp shows excellent biocompatibility due to its similarity in chemical composition to the mineral portion of bone. Therefore, its combination with Mg-based implants through PEO has shown significant improvements in their corrosion resistance and bioactivity. This review paper provides a comprehensive overview of the recent advances in the preparation, characterization, corrosion behavior and bioactivity applications of HAp particles on Mg-based implants by PEO. 展开更多
关键词 mg and its alloys HYDROXYAPATITE Corrosion behavior composite coatings Plasma electrolytic oxidation(peo)
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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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Effect of mixed rare earth oxides and CaCO_3 modification on the microstructure of an in-situ Mg_2Si/Al-Si composite 被引量:9
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作者 Liu, Zheng Lin, Jixing Jing, Qingxiu 《Rare Metals》 SCIE EI CAS CSCD 2009年第2期169-174,共6页
The effects of mixed rare earth oxides and CaCO3 on the microstructure of an in-situ Mg2Si/Al-Si hypereutectic alloy composite were investigated by optical microscope,scanning electron microscope,and energy dispersive... The effects of mixed rare earth oxides and CaCO3 on the microstructure of an in-situ Mg2Si/Al-Si hypereutectic alloy composite were investigated by optical microscope,scanning electron microscope,and energy dispersive spectrum analysis. The results showed that the morphol-ogy of the primary Mg2Si phase particles changed from irregular or crosses to polygonal shape,their sizes decreased from 75 μm to about 25 μm,and the compound of both the oxide and CaCO3 was better than either the single mixed rare earth o... 展开更多
关键词 hypereutectic alloys al-Si alloys composite rare earth oxides MODIFICATION
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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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Oxidation mechanism of high-volume fraction SiCp/Al composite under laser irradiation and subsequent machining
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作者 Hanliang Liu Guolong Zhao +5 位作者 Zhiwen Nian Zhipeng Huang Kai Yang Conghua Liu Peng Wang Zhenkuan Diao 《Nanotechnology and Precision Engineering》 EI CAS CSCD 2023年第3期34-47,共14页
Conventional mechanical machining of a composite material comprising an aluminum matrix reinforced with a high volume fraction of SiC particles(hereinafter referred to as an SiCp/Al composite)faces problems such as ra... Conventional mechanical machining of a composite material comprising an aluminum matrix reinforced with a high volume fraction of SiC particles(hereinafter referred to as an SiCp/Al composite)faces problems such as rapid tool wear,high specific cutting force,and poor surface integrity.Instead,a promising method for solving these problems is laser-induced oxidation-assisted milling(LOAM):under laser irradiation,the local workpiece material reacts with oxygen,thus forming loose and porous oxides that are easily removed.In the present work,the oxidation mechanism of SiCp/Al irradiated by a nanosecond pulsed laser is studied to better understand the laser-induced oxidation behavior and control the characteristics of the oxides,with laser irradiation experiments performed on a 65%SiCp/Al composite with various laser parameters and auxiliary gases(oxygen,nitrogen,and argon).With increasing laser pulse energy density,both the ablated groove depth and the width of the heat-affected zone increase.When oxygen is used as the auxiliary gas,an oxide layer composed of SiO_(2)and Al2O3 forms,and CO_(2)is produced and escapes from the material,thereby forming pores in the oxides.However,when nitrogen or argon is used as the auxiliary gas,a recast layer is produced that is relatively difficult to remove.Under laser irradiation,the sputtered material reacts with oxygen to form oxides on both sides of the ablated groove,and as the laser scanning path advances,the produced oxides accumulate to form an oxide layer.LOAM and conventional milling are compared using the same milling parameters,and LOAM is found to be better for reduced milling force and tool wear and improved machined surface quality. 展开更多
关键词 SiCp/al composite oxidation mechanism Nanosecond pulsed laser Laser-induced oxidation Heat-affected zone
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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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Synthesis, Characterization of Mesoporous Al-Mg Composite Oxide and Catalytic Performance for Oxyethylation of Fatty Alcohol 被引量:1
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作者 SONG Wei-ming DENG Qi-gang +1 位作者 ZHOU De-rui ZHAO De-feng 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2005年第5期601-605,共5页
A mesoporous Al-Mg composite oxide with a hexagonal structure was synthesized with aluminium nitrate and magnesium nitrate as the reagents and sodium dodecyl sulfate(SDS) as the template in the presence of ethylened... A mesoporous Al-Mg composite oxide with a hexagonal structure was synthesized with aluminium nitrate and magnesium nitrate as the reagents and sodium dodecyl sulfate(SDS) as the template in the presence of ethylenediamine. The XRD, nitrogen adsorption-desorption and TEM studies indicate that the composite has a hexagonal framework structure and an average pore diameter of 2. 6 nm. The TG/DTA spectra indicate that the decomposition and the removal of the occluded surfactant of the sample take place in a range of 230-550 ℃. The mesoporous Al-Mg composite oxide exhibites a highly catalytic activity for the oxyethylation of fatty alcohols. Narrow-range distributed ethoxylates are formed in the presence of the mesoporous Al-Mg composite oxide catalyst. The distribution selectivity coefficient(Cx) is 24 when the mesoporous Al-Mg composite oxide was used as a catalyst for the oxyethylation of octanol and the average adduct degree of ethoxylates is 6. 4. 展开更多
关键词 Mesoporous al-mg composites oxide CHARACTERIZATION Oxyethylation Narrow-range distribution
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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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Morphology and Frictional Characteristics Under Electrical Currents of Al_2O_3/Cu Composites Prepared by Internal Oxidation 被引量:7
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作者 刘瑞华 宋克兴 +3 位作者 贾淑果 徐晓峰 郜建新 国秀花 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2008年第3期281-288,共8页
Two Al2O3/Cu composites containing 0.24 wt.% Al2O3 and 0.60 wt.% Al2O3 separately are prepared by internal oxidation. Effects of sliding speed and pressure on the frictional characteristics of the composites and coppe... Two Al2O3/Cu composites containing 0.24 wt.% Al2O3 and 0.60 wt.% Al2O3 separately are prepared by internal oxidation. Effects of sliding speed and pressure on the frictional characteristics of the composites and copper against brass are investigated and compared. The changes in morphology of the sliding surface and subsurface are examined with scanning electron microscope (SEM) and energy dispersive X-ray spectrum (EDS). The results show that the wear resistance of the Al2O3/Cu composites is superior to that of copper under the same conditions, Under a given electrical current, the wear rate of Al2O3/Cu composites decreases as the Al2O3-content increases, However, the wear rates of the Al2O3/Cu composites and copper increase as the sliding speed and pressure increase under dry sliding condition. The main wear mechanisms for Al2O3/Cu composites are of abrasion and adhesion; for copper, it is adhesion, although wear by oxidation and electrical erosion can also be observed as the speed and pressure rise. 展开更多
关键词 al2O3/Cu composite internal oxidation friction and wear surface morphology current carder
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Microstructures,mechanical and oxidation behaviors of C/C composites modified by NiAl alloy 被引量:6
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作者 方华婵 肖鹏 +1 位作者 熊翔 於广军 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第1期196-202,共7页
Carbon/carbon composites modified by NiAl alloy were prepared using vacuum reactive melt infiltration methods with NiAl and titanium mixed powders as raw materials. The microstructures were investigated by scanning el... Carbon/carbon composites modified by NiAl alloy were prepared using vacuum reactive melt infiltration methods with NiAl and titanium mixed powders as raw materials. The microstructures were investigated by scanning electron microscopy. The fracture behavior, infiltration and oxidation mechanism were further discussed. The results indicated that NiAl alloy exhibited good wettability on the C/C preform because a TiC reaction layer formed at the interface. Multi-layer(PyC/TiC/NiAl+TiC) coating evenly and compactly distributed on the surface of the carbon fiber in tubular form. The penetration depth of molten NiAl alloys depended on the reaction between the PyC and titanium. The impact fracture was inclined to along the interface between the NiAl permeability layer and C/C matrix. Al_2TiO_5 and TiO_2 formed on the surface, while the interior multi-layer tubular structure partially remained after oxidation at 1773 K for 30 min. 展开更多
关键词 carbon/carbon composites INTERFACE Ni al multilayer structure oxidATION
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Mg/Al双金属固相复合界面特征与性能
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作者 王春晖 李昕童 +3 位作者 钱凌云 付华栋 程兰月 孙朝阳 《工程科学学报》 EI CSCD 北大核心 2024年第12期2217-2228,共12页
Mg/Al双金属层状复合材料因兼具镁合金低密度和铝合金耐腐蚀的特性,在轻量化与高性能成形制造方面应用需求巨大.而金属材料接触面在固态下直接结合的双金属固相复合工艺,因避免了液–液复合或液–固复合中氧化、夹杂等缺陷对复合材料性... Mg/Al双金属层状复合材料因兼具镁合金低密度和铝合金耐腐蚀的特性,在轻量化与高性能成形制造方面应用需求巨大.而金属材料接触面在固态下直接结合的双金属固相复合工艺,因避免了液–液复合或液–固复合中氧化、夹杂等缺陷对复合材料性能的影响,在双金属复合技术中具有显著的优势.为阐明Mg/Al双金属固相复合过程中热变形条件对复合界面特征和性能的影响规律,开展了变形温度300~430℃、应变率5×10^(-3)~1 s^(-1)和变形量20%~40%条件下的热压缩复合实验,采用扫描电镜、能谱仪和维氏硬度仪获得了复合界面的微观形貌、元素和硬度的分布规律.结果表明:随着应变率降低、变形量增加和变形温度升高,元素扩散时间增长、扩散能力增强,过渡区总厚度增加,形成了Mg_(17)Al_(12)相和Al_(3)Mg_(2)相组成的高硬度金属间化合物层.在此基础上,通过建立金属间化合物层的厚度演化模型,结合双金属冶金结合的临界变形量计算公式,构建了Mg/Al双金属复合界面特征随热变形条件演化图.计算结果说明:较高温度(>400℃)和较高应变率(~1 s^(-1))的变形条件在保证Mg/Al双金属冶金结合同时,可以抑制金属间化合物层的出现和长大,从而有助于良好复合界面的实现. 展开更多
关键词 mg/al双金属 复合界面 元素扩散 微观组织 厚度演化模型
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镁铝合金添加剂对SiC-MgAl_(2)O_(4)材料显微结构和性能的影响
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作者 王梦强 陈留刚 +3 位作者 孙红刚 杜一昊 司瑶晨 李红霞 《材料导报》 EI CAS CSCD 北大核心 2024年第16期75-80,共6页
为探索煤气化用耐火材料的无铬化,本研究采用碳化硅颗粒和镁铝尖晶石细粉为主要原料制备SiC-MgAl_(2)O_(4)复合耐火材料,于流动氮气中500~1450℃热处理,对比未添加和添加4%(质量分数)镁铝合金粉的复合材料在热处理升温过程中的微观结构... 为探索煤气化用耐火材料的无铬化,本研究采用碳化硅颗粒和镁铝尖晶石细粉为主要原料制备SiC-MgAl_(2)O_(4)复合耐火材料,于流动氮气中500~1450℃热处理,对比未添加和添加4%(质量分数)镁铝合金粉的复合材料在热处理升温过程中的微观结构及性能变化,探究镁铝合金氮化烧成中形成的低维相对SiC-MgAl_(2)O_(4)复合材料性能的改善效果。结果表明,镁铝合金与热处理环境中的N 2、O_(2)的反应温度区间为650~800℃,主要反应产物为AlN和MgO。添加镁铝合金后的试样在700℃形成蜂窝状MgAl_(2)O_(4)尖晶石,增强了SiC骨料和MgAl_(2)O_(4)基质间的结合,此时试样的常温力学强度达到最高;900~1300℃时,MgAl_(2)O_(4)尖晶石由蜂窝状转变为棒状,1300~1500℃时,其再转变为片状、粒状的MgAlON尖晶石,这些形貌和物相的转变伴随体积膨胀,导致试样的强度小幅下降。镁铝合金的添加能使SiC-MgAl_(2)O_(4)在较低温度热处理下原位形成尖晶石,从而提高材料的力学性能。 展开更多
关键词 复合耐火材料 镁铝尖晶石 氮化反应 镁铝合金
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Preparation of Al_2O_3/Au nano-laminated composite coatings and their oxidation resistance on stainless steel 被引量:1
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作者 高俊国 陆峰 +2 位作者 汤智慧 王长亮 何业东 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2491-2497,共7页
Al2O3/Au nano-laminated composite coatings were prepared by means of magnetron sputtering. The coating was compact and comprised of nano-laminated Al2O3 and Au layers. High temperature cyclic oxidation test was employ... Al2O3/Au nano-laminated composite coatings were prepared by means of magnetron sputtering. The coating was compact and comprised of nano-laminated Al2O3 and Au layers. High temperature cyclic oxidation test was employed to investigate the oxidation resistance of the composite coatings. The results revealed that the applied Al2O3/Au nano-laminated composite coatings improved the oxidation and spallation resistance of the stainless steel substrate significantly. The mechanism accounting for oxidation resistance was related with the suppression of inward oxygen diffusion and selective oxidation of Cr in the substrate. The mechanism accounting for spallation resistance was attributed to the relaxation of thermal stress by the nano-laminated structure. 展开更多
关键词 al2O3/Au composite coatings magnetron sputtering oxidation resistance spallation resistance
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时效时间对Al-Mg-Si-Cu铝合金表面阳极氧化膜微观结构及光泽度的影响
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作者 陈翔 姜科达 陈明安 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第9期3270-3281,共12页
采用硫酸阳极氧化对经过180℃下4 h、10 h、30 h时效处理的Al-Mg-Si-Cu合金表面进行阳极氧化处理,探究不同时效时间对Al-Mg-Si-Cu合金阳极氧化膜层微观结构及其光泽度的影响。研究结果表明:与基体材料相比,不同时效时间合金阳极氧化后... 采用硫酸阳极氧化对经过180℃下4 h、10 h、30 h时效处理的Al-Mg-Si-Cu合金表面进行阳极氧化处理,探究不同时效时间对Al-Mg-Si-Cu合金阳极氧化膜层微观结构及其光泽度的影响。研究结果表明:与基体材料相比,不同时效时间合金阳极氧化后的光泽度均出现明显降低,且光泽度随时效时间增加先变大后减小;随时效时间增加,合金晶界析出相分别呈现连续—离散—连续的分布状态,其在阳极氧化过程中优先氧化溶解,使阳极氧化膜呈现沿晶界分布的孔洞特征,连续分布的晶界析出相引起的孔洞更明显,同时造成孔洞及其周围区域粗糙度增加,这是不同时效时间合金阳极氧化后光泽度出现差异的主要原因;基体中粗大的AlFeMnSi相会出现阳极氧化膜层中微米级孔洞,从而降低阳极氧化样品的光泽度,但时效时间对其没有明显影响。 展开更多
关键词 al-mg-SI-CU合金 阳极氧化 时效时间 晶界析出相 光泽度
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衬板叠轧Mg/Al复合板基体组织演变优化强塑性机制 被引量:1
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作者 张安鑫 李峰 +2 位作者 牛文涛 高融合 孙璐 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第2期369-383,共15页
Mg/Al复合板兼并了镁合金的轻质性及铝合金的可塑性、耐腐蚀等性能,显著增强了其综合性能,但制造周期长、工艺要求高等不足制约了异质复合板成形技术的快速发展。为此,本文提出一种衬板辅助叠轧成形新方法。研究结果表明:3ARB时Mg/Al复... Mg/Al复合板兼并了镁合金的轻质性及铝合金的可塑性、耐腐蚀等性能,显著增强了其综合性能,但制造周期长、工艺要求高等不足制约了异质复合板成形技术的快速发展。为此,本文提出一种衬板辅助叠轧成形新方法。研究结果表明:3ARB时Mg/Al复合板抗拉强度可达235 MPa,伸长率为14.7%,镁板中出现明显的韧窝,呈韧性断裂特征,综合性能为最佳。由于此时Mg板基面滑移与非基面滑移同时开动,促进了动态再结晶的生成,此时Mg板再结晶比例为77.21%。随着累积叠轧的进行,大角度晶界增加和晶粒细化明显,原始晶粒已经基本破碎细化成等轴晶,Mg、Al基体硬度波动逐渐减小,复合板内部结构逐渐趋于稳定。本研究可为高性能异质复合板成形制造提供了一种新思路。 展开更多
关键词 衬板叠轧 mg/al复合板 再结晶 晶粒细化 强塑性
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超声施振方式对消失模铸造Al/Mg双金属复合材料界面组织和力学性能的影响
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作者 李庆晴 徐远财 +2 位作者 牛言清 樊自田 蒋文明 《铸造技术》 CAS 2024年第5期411-418,共8页
研究了连续超声振动和间歇超声振动两种施振方式对消失模铸造Al/Mg双金属材料界面组织和力学性能的影响。结果表明,未施加超声振动Al/Mg双金属界面由Al-Mg金属间化合物区和共晶组织区组成,两个区域边界存在一层氧化膜,阻碍了元素扩散,Mg... 研究了连续超声振动和间歇超声振动两种施振方式对消失模铸造Al/Mg双金属材料界面组织和力学性能的影响。结果表明,未施加超声振动Al/Mg双金属界面由Al-Mg金属间化合物区和共晶组织区组成,两个区域边界存在一层氧化膜,阻碍了元素扩散,Mg_(2)Si相呈网状,团聚分布于金属间化合物区。两种超声施振方式均能通过超声空化效应和声流效应破碎和消除氧化膜,并使Mg_(2)Si相细化和分散于整个界面,部分共晶组织转变为金属间化合物,提高了界面组织和显微硬度分布均匀性。连续超声振动作用下Al/Mg双金属界面剪切强度达到53.9 MPa,相比未超声处理提升63.8%。间歇超声振动作用下,界面厚度较连续超声振动减小,然而局部区域存在孔洞缺陷和Mg_(2)Si相局部聚集,削弱了对界面的强化效果,但界面剪切强度仍达到49.5 MPa。 展开更多
关键词 al/mg复合材料 消失模铸造 超声振动 界面 微观组织 力学性能
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Al-Mg共掺杂钴酸锂的合成及其电化学性能研究
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作者 蔺多佳 闫源 +3 位作者 刘航 张剑峰 徐振凯 夏鑫 《化工新型材料》 CAS CSCD 北大核心 2024年第1期108-112,共5页
钴酸锂(LCO)作为锂电池正极材料,在电子产品领域有非常广泛的应用,但由于高电压下会导致其晶相的不可逆相变从而导致循环稳定性降低,因此如何提高钴酸锂在高电压下的电化学稳定性一直是研究热点。为了改善钴酸锂的电化学稳定性,采用固... 钴酸锂(LCO)作为锂电池正极材料,在电子产品领域有非常广泛的应用,但由于高电压下会导致其晶相的不可逆相变从而导致循环稳定性降低,因此如何提高钴酸锂在高电压下的电化学稳定性一直是研究热点。为了改善钴酸锂的电化学稳定性,采用固相球磨-烧结法合成了Al-Mg共掺杂的LCO材料。采用X射线衍射(XRD)和扫描电镜(SEM)及电化学性能测试表征晶体结构、形貌和测量其循环稳定性。结果表明:Mg、Al进入钴酸锂晶格内部后有效地提高了其电化学稳定性,当Al掺杂量为0.1%,Mg掺杂量为1%时,在0.5C的倍率,3~4.5V的电压下,首圈放电比容量可达136.7mAh/g,100圈后的容量保持率可达76.2%,同时也表现出了良好的倍率性能。 展开更多
关键词 钴酸锂 电化学性能 固相球磨-烧结法 al-mg共掺杂
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不同铝合金对Al/Mg/Al层状复合材料腐蚀行为的影响
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作者 郭贺 焦进超 +7 位作者 张津 王旭东 连勇 冯波 冯晓伟 郑开宏 丁啸云 韩东 《材料导报》 EI CAS CSCD 北大核心 2024年第12期154-161,共8页
将镁合金与铝合金经过热轧制成Al/Mg/Al层状复合材料,结合析氢试验、电化学试验和电偶试验,对1060/AZ31/1060、5052/AZ31/5052和6061/AZ31/6061在3.5%(质量分数)NaCl溶液中腐蚀行为进行研究,通过分析其腐蚀形貌、腐蚀产物、析氢速率、... 将镁合金与铝合金经过热轧制成Al/Mg/Al层状复合材料,结合析氢试验、电化学试验和电偶试验,对1060/AZ31/1060、5052/AZ31/5052和6061/AZ31/6061在3.5%(质量分数)NaCl溶液中腐蚀行为进行研究,通过分析其腐蚀形貌、腐蚀产物、析氢速率、动电位极化曲线和交流阻抗谱,探究Al/Mg/Al层状复合材料的腐蚀机理。结果表明:Al/Mg/Al层状复合材料的表面腐蚀行为与铝合金的腐蚀行为相似,其相对于原始镁合金的腐蚀电流密度降低了两个数量级;Al/Mg/Al层状复合材料截面腐蚀产物呈颗粒状密集分布在镁一侧,腐蚀行为主要受电偶效应的影响,镁-铝电偶对电偶电流可达10^(-3)A·cm^(-2)数量级;对应的三种镁-铝电偶对电偶电流密度和电偶电位与混合电位理论拟合值相差不大;三种Al/Mg/Al层状复合材料中5052/AZ31/5052的整体耐蚀性最好。 展开更多
关键词 al/mg/al层状复合材料 电化学 电偶腐蚀 析氢 腐蚀产物
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铸造Mg/Al复合材料工艺参数和复合界面的研究进展
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作者 孙青竹 《铸造》 CAS 2024年第7期898-907,共10页
Mg/Al复合材料在汽车、航空航天和电子设备等领域广泛应用。相对于制备复合板的轧制工艺,铸造能够用于制备复杂的复合材料构件,并具有成本低和生产效率高等优点。然而,铸造Mg/Al复合材料存在微观组织难以控制和界面结合强度较低等问题,... Mg/Al复合材料在汽车、航空航天和电子设备等领域广泛应用。相对于制备复合板的轧制工艺,铸造能够用于制备复杂的复合材料构件,并具有成本低和生产效率高等优点。然而,铸造Mg/Al复合材料存在微观组织难以控制和界面结合强度较低等问题,限制了材料性能。影响复合材料性能的因素包括铸造工艺、界面处理和扩散层组织等。目前,主要通过控制晶粒尺寸、界面强化和界面反应等方式来强化复合材料。本文综述了铸造法制备Mg/Al复合材料过程中的工艺参数对复合界面的影响,包括扩散层厚度、晶粒尺寸等,最后对此方向提出自己的见解。 展开更多
关键词 mg/al复合材料 铸造 工艺参数 扩散层
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Al-Zn-Mn-Si-Mg系压铸铝合金阳极氧化工艺
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作者 张富强 薛龙飞 +2 位作者 李佳佳 张志刚 刘宜汉 《材料与冶金学报》 CAS 北大核心 2024年第1期80-85,共6页
在传统铝合金阳极氧化电解工艺基础上,添加草酸、酒石酸和柠檬酸等形成硫酸-有机酸混合体系氧化处理液,对Al-Zn-Mn-Si-Mg系压铸铝合金进行阳极氧化处理,探索阳极氧化工艺参数和有机酸种类对氧化膜微观形貌、耐腐蚀和耐磨性能的影响.研... 在传统铝合金阳极氧化电解工艺基础上,添加草酸、酒石酸和柠檬酸等形成硫酸-有机酸混合体系氧化处理液,对Al-Zn-Mn-Si-Mg系压铸铝合金进行阳极氧化处理,探索阳极氧化工艺参数和有机酸种类对氧化膜微观形貌、耐腐蚀和耐磨性能的影响.研究结果表明:在硫酸质量分数为10%、氧化电压为18V、氧化时间为60 min、氧化温度为20℃的条件下,与纯硫酸体系相比,混合酸体系能显著增加Al-Zn-Mn-Si-Mg系压铸铝合金阳极氧化膜厚度,提高氧化膜的耐腐蚀性能和耐磨性能;其中10%硫酸-15%柠檬酸混合体系(百分数均为质量分数,下同)下的氧化膜耐腐蚀性能较强,10%硫酸-10%酒石酸体系下的氧化膜耐磨性能较优. 展开更多
关键词 al-Zn-Mn-Si-mg系铝合金 阳极氧化 有机酸 耐腐蚀 耐摩擦
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