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冷轧及退火工艺对5083铝合金薄板组织性能的影响
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作者 张泽东 刘晓滕 曹零勇 《轻合金加工技术》 CAS 2024年第1期23-27,共5页
利用金相显微镜、拉伸试验机、弯曲试验机对5083O铝合金板材在不同冷轧加工率(5%~40%)和不同退火温度(120~280℃)下的微观组织、拉伸力学性能、弯曲性能进行了系统研究。研究结果表明,5083O铝合金板材晶粒为细小均匀的等轴晶。随着冷轧... 利用金相显微镜、拉伸试验机、弯曲试验机对5083O铝合金板材在不同冷轧加工率(5%~40%)和不同退火温度(120~280℃)下的微观组织、拉伸力学性能、弯曲性能进行了系统研究。研究结果表明,5083O铝合金板材晶粒为细小均匀的等轴晶。随着冷轧加工率从5%增加至40%,晶粒逐渐被压扁、拉长。冷轧加工率不大于10%的板材折弯性能良好;当冷轧加工率为20%时,弯曲样品外侧出现凹凸不平的颈缩区域;当冷轧加工率增加到30%时,折弯样品出现微裂纹;当加工率增加到40%时,裂纹数量增多、尺寸增大。随着退火温度从120℃增加到280℃,不同冷轧加工率的板材屈服强度和抗拉强度呈单调下降趋势,而且屈服强度的降幅大于抗拉强度的降幅,断后伸长率呈单调增加趋势。当冷轧加工率为20%时,需对板材进行200℃以上的退火处理才能满足折弯性能要求;当冷轧加工率增加至30%和40%时,需要对板材进行240℃以上的退火处理才能满足折弯性能要求。 展开更多
关键词 新能源汽车电池包 5083铝合金薄板 微观组织 力学性能
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不同工艺制备的5083-O铝合金板材的组织和性能
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作者 赵明伟 陈兴旺 +1 位作者 梁忠 陈纪强 《轻金属》 北大核心 2020年第3期36-39,共4页
基于"1+4"热连轧生产线和2800 mm冷轧生产线,采用不同工艺线路制备了5083-O铝合金板材,研究了不同制备工艺对板材组织性能的影响。结果表明:不同工艺路线生产的成品板材均随退火温度升高,抗拉强度、屈服强度减小,深冲性能提... 基于"1+4"热连轧生产线和2800 mm冷轧生产线,采用不同工艺线路制备了5083-O铝合金板材,研究了不同制备工艺对板材组织性能的影响。结果表明:不同工艺路线生产的成品板材均随退火温度升高,抗拉强度、屈服强度减小,深冲性能提高。采用中间退火后,最终板材晶粒尺寸较大,更符合深冲加工要求。试验与生产的性能具有差异性,依据生产数据优化退火温度355℃保温3 h所得板材性能:抗拉强度275 MPa、屈服强度126 MPa、伸长率27%、加工硬化指数n值0.24、变形比r值0.72、制耳率0.8%、杯突值9.15 mm。 展开更多
关键词 “1+4”热连轧 5083-o铝合金板材 制备 组织性能
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5083铝合金板材塌陷成因分析
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作者 李霜 冯旺 +2 位作者 孙娜 黄启波 牟春 《铝加工》 CAS 2023年第2期21-24,共4页
为探究某厂多批次5083铝合金板材塌陷问题的形成原因,采用光学显微镜、扫描电镜等仪器观察了5083板材塌陷部位的断口形貌及显微组织,并借助光谱仪和能谱仪分析了该合金的化学成分和裂纹处的微区成分。结果表明:5083合金板材塌陷部位的... 为探究某厂多批次5083铝合金板材塌陷问题的形成原因,采用光学显微镜、扫描电镜等仪器观察了5083板材塌陷部位的断口形貌及显微组织,并借助光谱仪和能谱仪分析了该合金的化学成分和裂纹处的微区成分。结果表明:5083合金板材塌陷部位的固态氢含量明显偏高,板材存在较多尺寸不一的孔洞,铸锭中的较大气孔遗传至板材使其在后续轧制过程中出现了塌陷现象。 展开更多
关键词 5083铝合金 板材塌陷 气孔
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Forming Limit Stress Diagram Prediction of Aluminum Alloy 5052 Based on GTN Model Parameters Determined by In Situ Tensile Test 被引量:20
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作者 HE Min LI Fuguo WANG Zhigang 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2011年第3期378-386,共9页
The conventional forming limit diagram (FLD) is described as a plot of major strain versus minor strain. However, FLD is dependent on forming history and strain path. In the present study, a forming limit stress-bas... The conventional forming limit diagram (FLD) is described as a plot of major strain versus minor strain. However, FLD is dependent on forming history and strain path. In the present study, a forming limit stress-based diagram (FLSD) has been adopted to predict the fracture limit of aluminum alloy (AA) 5052-O1 sheet. Nakazima test is simulated by plastic constitutive formula derived from the modified Gurson-Tvergaard-Needleman (GTN) model. An in situ tensile test with scanning electron microscope (SEM) is proposed to determine the parameters in GTN model. The damage evolution is observed and recorded, and the parameters of GTN model are identified through counting void fraction at three damage stages of AA5052-O 1. According to the experimental results, the original void volume fraction, the volume fraction of potential nucleated voids, the critical void volume fraction, the void volume fraction at the final failure of material are assigned as 0.002 918, 0.024 9, 0.030 103, 0.048 54, respectively. The stress and strain are obtained at the last loading step before crack. FLSD and FLD of AA5052-O 1 are plotted. Compared with the experimental Nakazima test and uniaxial tensile test, the predicted results show a good agreement. The parameters determined by in situ tensile test can be applied to the research of the forming limit for ductile metals. 展开更多
关键词 forming limit stress diagram GTN model in situ tensile test void damage aluminum alloy 5052-o1 sheet metal forming
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Mechanics analysis of axisymmetric thin-walled part in warm sheet hydroforming 被引量:2
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作者 Yang Xiying Lang Lihui +1 位作者 Liu Kangning Liu Baosheng 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 2015年第5期1546-1554,共9页
To obtain the influence of fluid pressure and temperature on warm hydroforming of 5A06-O aluminum alloy sheet, the unified mechanics equilibrium equations, which take through- thickness normal stress and friction into... To obtain the influence of fluid pressure and temperature on warm hydroforming of 5A06-O aluminum alloy sheet, the unified mechanics equilibrium equations, which take through- thickness normal stress and friction into account, were established in spherical coordinate system. The distribution of through-thickness normal stress in the thickness direction was determined. The relation between through-thickness normal stress and fluid pressure was also analyzed in different regions of cylindrical cup. Based on the method of subtracting one increasing function from another, the constitutive equation of 5A06-O applied to warm hydroforming was established and in a good agreement with uniaxial tensile data. Based on whether the thickness variation was taken into account, two mechanic models were established to do the comparative study. The results for the studied case show that the calculated stress values are pretty close according to the two models and consistent with results of finite element analysis; the thickness distribution in flange computed by the second model conforms to the experimental data. Finally, the influences of fluid pressure on the flange thickness and radial stress were analyzed. 展开更多
关键词 5A06-o aluminum alloy:Constitutive equations:Fluid pressure:Through-thickness normalstress Warm sheet hydroforming
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