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喷射沉积Al-27%Si合金二次加热的组织转变
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作者 彭健 王日初 +3 位作者 朱学卫 彭超群 王小锋 马如龙 《中国有色金属学报》 EI CAS CSCD 北大核心 2013年第8期2133-2139,共7页
采用光学显微镜和扫描电镜等检测手段研究喷射沉积Al-27%Si合金二次加热的显微组织及其转变规律。在二次加热过程中,喷射沉积Al-27%Si合金的组织转变经历3个阶段:转变初期,试样中液相体积分数很少,Si相在晶界长大;转变中期,试样中液相... 采用光学显微镜和扫描电镜等检测手段研究喷射沉积Al-27%Si合金二次加热的显微组织及其转变规律。在二次加热过程中,喷射沉积Al-27%Si合金的组织转变经历3个阶段:转变初期,试样中液相体积分数很少,Si相在晶界长大;转变中期,试样中液相体积分数不断增大,α(Al)相与Si相熔化;转变后期,α(Al)相消失,合金中Si相和液相两相平衡,液相与Si相的体积分数不变,Si相尺寸却随之增大。二次加热温度越高,每个转变阶段的时间越短,随着二次加热的进行,合金中的Si相形貌逐渐由近球形转变为板条形。 展开更多
关键词 al-27%Si合金 二次加热 半固态成形 喷射沉积 α(al)相 SI
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Microstructures and corrosion behaviors of Al−6.5Si−0.45Mg−xSc casting alloy 被引量:1
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作者 Yu-kun MA Ming-xing WANG +1 位作者 Ya-nan LIU Bin CAI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第2期424-435,共12页
The microstructures and corrosion behaviors of the Al−6.5Si−0.45Mg casting alloys with the addition of Sc were investigated by using scanning electron microscopy,X-ray diffraction,electrochemical measurement technique... The microstructures and corrosion behaviors of the Al−6.5Si−0.45Mg casting alloys with the addition of Sc were investigated by using scanning electron microscopy,X-ray diffraction,electrochemical measurement techniques and immersion corrosion tests and compared with those of Sr-modified alloy.The results show that Sc has evident refining and modifying effects on the primaryα(Al)and the eutectic Si phase of the alloy,and the effects can be enhanced with the increase of Sc content.When the Sc content is increased to 0.58 wt.%,its modifying effect on the eutectic Si is almost same as that of Sr.Sc can improve the corrosion resistance of the test alloy in NaCl solution when compared with Sr,but the excessively high Sc content cannot further increase the corrosion resistance of the alloy.The corrosion of the alloys mainly occurs in the eutectic region of the alloy,and mostly the eutecticα(Al)is dissolved.This confirms that Si phase is more noble thanα(Al)phase,and the galvanic couplings can be formed between the eutectic Si andα(Al)phases. 展开更多
关键词 al−Si−Mg casting alloy scandium(Sc) α(al)phase eutectic Si phase corrosion resistance
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Finite element analysis of stress-strain localization and distribution in Al-4.5Cu-2Mg alloy 被引量:1
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作者 Rahul BHANDARI Prosanta BISWAS +1 位作者 Manas Kumar MONDAL Durbadal MANDAL 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第6期1200-1215,共16页
Finite element analysis has been carried out to understand the effect of various processing routes and condition on the microscale deformation behavior of Al–4.5 Cu–2 Mg alloy. The alloy has been developed through f... Finite element analysis has been carried out to understand the effect of various processing routes and condition on the microscale deformation behavior of Al–4.5 Cu–2 Mg alloy. The alloy has been developed through four different routes and condition, i.e. conventional gravity casting with and without refiner, rheocasting and SIMA process. The optical microstructures of the alloy have been used to develop representative volume elements(RVEs). Two different boundary conditions have been employed to simulate the deformation behavior of the alloy under uniaxial loading. Finally, the simulated stress-strain behavior of the alloy is compared with the experimental result. It is found that the microstructural morphology has a significant impact on stress and strain distribution and load carrying capacity. The eutectic phase always carries a higher load than the α(Al) phase. The globular α(Al) grains with thinner and uniformly distributed eutectic network provide a better stress and strain distribution. Owing to this, SIMA processed alloy has better stress and strain distribution than other processes. Finally, the simulated yield strength of the alloy is verified by experiment and they have great agreement. 展开更多
关键词 al-4.5Cu-2Mg alloy MICROSTRUCTURE a(al phase eutectic phase finite element analysis micromechanical response
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Quantitative analysis of influence of α-Al(MnFeCr)Si dispersoids on hot deformation and microstructural evolution of Al-Mg-Si alloys 被引量:1
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作者 Hiromi NAGAUMI Jian QIN +2 位作者 Cheng-bin YU Xiao-guo WANG Lin-sheng WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第6期1805-1821,共17页
The microstructural evolution of AA6061 and Mn-bearing Al-Mg-Si-Cu alloys was studied by compression tests that were carried out between 300 and 500 °C with a wide range of strain rates. Compared to the AA6061 al... The microstructural evolution of AA6061 and Mn-bearing Al-Mg-Si-Cu alloys was studied by compression tests that were carried out between 300 and 500 °C with a wide range of strain rates. Compared to the AA6061 alloy, the large amount of α-Al(MnFeCr)Si dispersoids in the Mn-bearing alloy yielded a significant increase in the flow stress under all deformation conditions. The effects of the deformation parameters on the evolution of the microstructure were studied using electronic backscatter diffraction measurements. The predominant softening mechanism of both alloys was dynamic recovery. The presence of α dispersoids in Mn-bearing alloys effectively refined the size of substructures with misorientation angles in the range of 2°-5°, which retarded the dynamic recovery. To predict the subgrain size under various deformation conditions, the threshold stresses that were caused by α dispersoids were calculated by the modified Orowan equation and incorporated into a conventional constitutive equation. The subgrain size that was predicted by the modified constitutive equation showed satisfactory agreement with the experimental measurements. 展开更多
关键词 al-Mg-Si alloy hot deformation α-al(MnFeCr)Si dispersoids SUBSTRUCTURE dynamic softening threshold stress Z parameter
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