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AZ31镁合金变通道角挤压工艺 被引量:14
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作者 刘天模 刘世宇 +3 位作者 彭天成 刘建忠 刘宇 潘复生 《材料热处理学报》 EI CAS CSCD 北大核心 2009年第5期64-67,73,共5页
将Φ40mm×50mm的AZ31镁合金圆棒经变通道角挤压(Change channel angular extrusion,CCAE)成厚度约为5mm的板材。通过TEM观察表明,AZ31镁合金的形核机制主要是动态再结晶形核。结果表明,经CCAE变形后,由晶粒的剪切破碎和动态再结... 将Φ40mm×50mm的AZ31镁合金圆棒经变通道角挤压(Change channel angular extrusion,CCAE)成厚度约为5mm的板材。通过TEM观察表明,AZ31镁合金的形核机制主要是动态再结晶形核。结果表明,经CCAE变形后,由晶粒的剪切破碎和动态再结晶使得镁合金晶粒明显细化。内角、挤压比、挤压温度和挤压速率等对板材的显微组织结构有重要的影响。在100-450℃温度范围内进行CCAE变形,AZ31镁合金的晶粒尺寸随变形温度的升高而增大。AZ31镁合金经CCAE热变形后,合金的综合力学性能得到改善。 展开更多
关键词 镁合金 动态再结晶 变通道角挤压(CCAE)
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挤压比对AZ31镁合金变通道角挤压影响的数值模拟 被引量:1
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作者 李贝 柴跃生 +1 位作者 张敏刚 罗小萍 《轻合金加工技术》 CAS 北大核心 2012年第4期42-46,共5页
通过Gleeble-1500D热模拟机获得AZ31镁合金的应力-应变曲线,采用DEFORM-3D软件对其变通道角(CCAE)挤压过程进行了模拟,并分析了不同挤压比对挤压过程的应力和应变影响。结果表明,挤压比越大,所需的挤压力越大,且挤压后期挤压力减少比例... 通过Gleeble-1500D热模拟机获得AZ31镁合金的应力-应变曲线,采用DEFORM-3D软件对其变通道角(CCAE)挤压过程进行了模拟,并分析了不同挤压比对挤压过程的应力和应变影响。结果表明,挤压比越大,所需的挤压力越大,且挤压后期挤压力减少比例越大,材料动态再结晶的程度越高。随着挤压比的增大,表面质量反而逐渐增高,试样平均等效应变成线性增大。 展开更多
关键词 变通道角挤压 AZ31镁合金 挤压 数值模拟
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镁-铝合金中Mg_(17)Al_(12)相形态改善技术的研究现状 被引量:5
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作者 牛田刚 乔军 +2 位作者 边福勃 宋岳 李素山 《轻合金加工技术》 CAS 北大核心 2014年第8期13-17,32,共6页
综述了改变镁-铝合金中β-Mg17Al12相形态的技术,主要包括:快速凝固、机械形变、合金化处理、熔体搅拌和热处理等。镁-铝合金主要由α-Mg固溶体和β-Mg17Al12相组成,处理前Mg17Al12相呈粗大网状连续分布在晶界,且分布不规则;处理后其形... 综述了改变镁-铝合金中β-Mg17Al12相形态的技术,主要包括:快速凝固、机械形变、合金化处理、熔体搅拌和热处理等。镁-铝合金主要由α-Mg固溶体和β-Mg17Al12相组成,处理前Mg17Al12相呈粗大网状连续分布在晶界,且分布不规则;处理后其形态变得细小均匀,弥散分布在α-Mg基体中。最后根据各种技术的工作原理,对其提出了一些展望,期待这些技术更加成熟,得到更加广泛地使用。 展开更多
关键词 镁铝合金 β—Mg17 Al12相 通道挤压 变通道角挤压 快速凝固 超声处理
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Aging behavior and mechanical properties of 6013 aluminum alloy processed by severe plastic deformation 被引量:8
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作者 刘满平 蒋婷慧 +5 位作者 王俊 刘强 吴振杰 Ying-da YU Pl C.SKARET Hans J.ROVEN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第12期3858-3865,共8页
Structural features, aging behavior, precipitation kinetics and mechanical properties of a 6013 Al–Mg–Si aluminum alloy subjected to equal channel angular pressing (ECAP) at different temperatures were comparative... Structural features, aging behavior, precipitation kinetics and mechanical properties of a 6013 Al–Mg–Si aluminum alloy subjected to equal channel angular pressing (ECAP) at different temperatures were comparatively investigated with that in conventional static aging by quantitative X-ray diffraction (XRD) measurements, differential scanning calorimetry (DSC) and tensile tests. Average grain sizes measured by XRD are in the range of 66-112 nm while the average dislocation density is in the range of 1.20×10^14-1.70×10^14 m^-2 in the deformed alloy. The DSC analysis reveals that the precipitation kinetics in the deformed alloy is much faster as compared with the peak-aged sample due to the smaller grains and higher dislocation density developed after ECAP. Both the yield strength (YS) and ultimate tensile strength (UTS) are dramatically increased in all the ECAP samples as compared with the undeformed counterparts. The maximum strength appears in the samples ECAP treated at room temperature and the maximum YS is about 1.6 times that of the statically peak-aged sample. The very high strength in the ECAP alloy is suggested to be related to the grain size strengthening and dislocation strengthening, as well as the precipitation strengthening contributing from the dynamic precipitation during ECAP. 展开更多
关键词 Al-Mg-Si aluminum alloy severe plastic deformation equal-channel angular pressing aging behavior precipitation kinetics mechanical properties strengthening mechanisms
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Application of crystal plasticity modeling in equal channel angular extrusion 被引量:4
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作者 李赛毅 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第1期170-179,共10页
Some applications of crystal plasticity modeling in equal channel angular extrusion(ECAE) of face-centered cubic metals were highlighted.The results show that such simulations can elucidate the dependency of grain r... Some applications of crystal plasticity modeling in equal channel angular extrusion(ECAE) of face-centered cubic metals were highlighted.The results show that such simulations can elucidate the dependency of grain refinement efficiency on processing route and the directionality of substructure development,which cannot be explained by theories that consider only the macroscopic deformation behavior.They can also capture satisfactorily the orientation stability and texture evolution under various processing conditions.It is demonstrated that crystal plasticity models are useful tools in exploring the crystallographic nature of grain deformation and associated behavior that are overlooked or sometimes erroneously interpreted by existing phenomenological theories. 展开更多
关键词 severe plastic deformation equal channel angular extrusion TEXTURE crystal plasticity strain path grain refinement
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Equal channel angular extrusion of NiTi shape memory alloy tube 被引量:3
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作者 江树勇 赵亚楠 +2 位作者 张艳秋 唐明 李春峰 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第7期2021-2028,共8页
As a new attempt, equal channel angular extrusion (ECAE) of nickel-titanium shape memory alloy (NiTi SMA) tube was investigated by means of process experiment, finite element method (FEM) and microscopy. NiTi SM... As a new attempt, equal channel angular extrusion (ECAE) of nickel-titanium shape memory alloy (NiTi SMA) tube was investigated by means of process experiment, finite element method (FEM) and microscopy. NiTi SMA tube with the steel core in it was inserted into the steel can during ECAE of NiTi SMA tube. Based on rigid-viscoplastic FEM, multiple coupled boundary conditions and multiple constitutive models were used for finite element simulation of ECAE of NiTi SMA tube, where the effective stress field, the effective strain field and the velocity field were obtained. Finite element simulation results are in good accordance with the experimental ones. Finite element simulation results reveal that the velocity field shows the minimum value in the corner of NiTi SMA tube, where severe shear deformation occurs. Microstructural observation results reveal that severe plastic deformation leads to a certain grain orientation as well as occurrence of substructures in the grain interior and dynamic recovery occurs during ECAE of NiTi SMA tube. ECAE of NiTi SMA tube provides a new approach to manufacturing ultrafine-grained NiTi SMA tube. 展开更多
关键词 NiTi tube shape memory alloy equal channel angular extrusion severe plastic deformation finite element method
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Strain rate-dependent high temperature compressive deformation characteristics of ultrafine-grained pure aluminum produced by ECAP 被引量:1
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作者 颜莹 齐跃 +1 位作者 陈立佳 李小武 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2016年第4期966-973,共8页
To explore the effect of strain rate ε on the high temperature deformation characteristics of ultrafine-grained materials, the deformation and damage features as well as microstructures of ECAP-treated pure Al at dif... To explore the effect of strain rate ε on the high temperature deformation characteristics of ultrafine-grained materials, the deformation and damage features as well as microstructures of ECAP-treated pure Al at different temperatures T and strain ratesε were systematically studied through compression tests and microscopic observations. The increase in ε eliminates strain softening at T≤473 K, and largely enhances the yield strength and flow stress at 473?573 K. The shear deformation dominates the plastic deformation of ECAP-treated Al. Many cracks along shear bands (SBs) are formed at T≥473 K and secondary SBs basically disappear at 1×10?3 s?1; however, at 1×10?2 s?1, cracks are only observed at temperature below 473 K, and secondary SBs become clearer at T≥473 K. The microstructures of ECAP-treated Al mainly consist of sub-grains (SGs). The increase in ε inhibits the SG growth, thus leading to the increases both in yield strength and flow stress at high temperatures. 展开更多
关键词 equal channel angular pressing(ECAP) pure Al strain rate high temperature compression DEFORMATION damage microstructure
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Severe plastic deformation of commercially pure aluminum using novel equal channel angular expansion extrusion with spherical cavity 被引量:3
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作者 Xiao-xi WANG Xiang ZHANG +2 位作者 Xin-yu JING Jun-chi YUAN Wei SONG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第10期2613-2624,共12页
Equal channel angular expansion extrusion with spherical cavity(ECAEE-SC)was introduced as a novel severe plastic deformation(SPD)technique,which is capable of imposing large plastic strain and intrinsic back-pressure... Equal channel angular expansion extrusion with spherical cavity(ECAEE-SC)was introduced as a novel severe plastic deformation(SPD)technique,which is capable of imposing large plastic strain and intrinsic back-pressure on the processed billet.The plastic deformation behaviors of commercially pure aluminum during ECAEE-SC process were investigated using finite element analysis DEFORM-3D simulation software.The material flow,the load history,the distribution of effective strain and mean stress in the billet were analyzed in comparison with conventional equal channel angular extrusion(ECAE)process.In addition,single-pass ECAEE-SC was experimentally conducted on commercially pure aluminum at room temperature for validation,and the evolution of microstructure and microhardness of as-processed material was discussed.It was shown that during the process,the material is in the ideal hydrostatic stress state and the load requirement for ECAEE-SC is much more than that for ECAE.After a single-pass ECAEE-SC,an average strain of 3.51 was accumulated in the billet with homogeneous distribution.Moreover,the microstructure was significantly refined and composed of equiaxed ultrafine grains with sub-micron size.Considerable improvement in the average microhardness of aluminum was also found,which was homogenized and increased from HV 36.61 to HV 70.20,denoting 91.75%improvement compared with that of the as-cast billet. 展开更多
关键词 severe plastic deformation equal channel angular expansion extrusion with spherical cavity(ECAEE-SC) numerical simulation strain accumulation grain refinement
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Mechanical responses, texture and microstructural evolution of high purity aluminum deformed by equal channel angular pressing 被引量:4
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作者 汪冰峰 孙杰英 +2 位作者 邹金佃 VINCENT Sherman 李娟 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第10期3698-3704,共7页
Ultrafine-grained(UFG) high purity aluminum exhibits a variety of attractive mechanical properties and special deformation behavior. Equal channel angular pressing(ECAP) process can be used to easily and effectively r... Ultrafine-grained(UFG) high purity aluminum exhibits a variety of attractive mechanical properties and special deformation behavior. Equal channel angular pressing(ECAP) process can be used to easily and effectively refine metals. The microstructure and microtexture evolutions and grain boundary characteristics of the high purity aluminum(99.998%) processed by ECAP at room temperature are investigated by means of TEM and EBSD. The results indicate that the shear deformation resistance increases with repeated EACP passes, and equiaxed grains with an average size of 0.9 μm in diameter are formed after five passes. Although the orientations distribution of grains tends to evolve toward random orientations, and microtextures(80°, 35°, 0°),(40°, 75°, 45°) and(0°, 85°, 45°) peak in the sample after five passes. The grain boundaries in UFG aluminum are high-angle geometrically necessary boundaries. It is suggested that the continuous dynamic recrystallization is responsible for the formation of ultrafine grains in high purity aluminum. Microstructure evolution in the high purity aluminum during ECAP is proposed. 展开更多
关键词 equal channel angular processing(ECAP) aluminum grain refinement microstructure mechanical property
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Reheating and thixoforging of ZK60+RE alloy deformed by ECAE 被引量:5
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作者 赵祖德 程远胜 +2 位作者 陈强 王艳彬 舒大禹 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第2期178-182,共5页
The two-pass equal channel angular extrusion (ECAE) process was introduced into strain-induced melt activation (SIMA) to predeform a ZK60 alloy with rare earth (RE) addition. Microstructure evolution of ECAE-formed ZK... The two-pass equal channel angular extrusion (ECAE) process was introduced into strain-induced melt activation (SIMA) to predeform a ZK60 alloy with rare earth (RE) addition. Microstructure evolution of ECAE-formed ZK60+RE alloy during reheating was investigated. Furthermore, tensile properties of thixoforged components were determined. The results show that the SIMA process can produce ideal microstructures, and spheroidized solid particles with little entrapped liquid can be obtained. With prolonging holding time, the size of solid particles increases and the degree of spheroidization is improved. The tensile properties of the thixoforged ZK60+RE samples are close to those of two-pass ECAE-formed samples. 展开更多
关键词 magnesium alloy REHEATING THIXOFORGING equal channel angular extrusion (ECAE)
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