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选区激光熔化S136模具钢粉末成形工艺研究
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作者 朱学超 魏青松 孙春华 《苏州市职业大学学报》 2018年第3期22-26,共5页
选区激光熔化(SLM)技术成形件尺寸精度高、成形面粗糙度低,能够实现由粉末到零件的自由、快速制造,特别适合成形具有复杂结构的随形冷却水路的模具。利用选区激光熔化(SLM)技术对S136模具钢粉末进行不同激光功率和扫描速度组合下的单道... 选区激光熔化(SLM)技术成形件尺寸精度高、成形面粗糙度低,能够实现由粉末到零件的自由、快速制造,特别适合成形具有复杂结构的随形冷却水路的模具。利用选区激光熔化(SLM)技术对S136模具钢粉末进行不同激光功率和扫描速度组合下的单道扫描试验,分析归类了熔道形貌特征,并对熔道宽度的成形稳定度下最优工艺、激光功率和扫描速度对熔道宽度的影响规律进行研究,从中分析较优工艺参数组合下熔道形貌特征产生的原因。 展开更多
关键词 选区激光熔化 熔道形貌特征 成形工艺窗口 熔道宽度
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AA6014铝合金热变形行为及热加工图 被引量:7
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作者 荆丰伟 武晓燕 +2 位作者 段晓鸽 仇鹏 江海涛 《塑性工程学报》 CAS CSCD 北大核心 2021年第9期144-153,共10页
采用热压缩模拟实验研究了 AA6014铝合金在变形温度为320~520℃,应变速率为0.01~10 s^(-1)下的热变形行为。研究结果表明,在变形温度和应变速率的变化过程中,AA6014铝合金的应力呈温度负敏感性和应变速率正敏感性,增大应变速率和降低变... 采用热压缩模拟实验研究了 AA6014铝合金在变形温度为320~520℃,应变速率为0.01~10 s^(-1)下的热变形行为。研究结果表明,在变形温度和应变速率的变化过程中,AA6014铝合金的应力呈温度负敏感性和应变速率正敏感性,增大应变速率和降低变形温度均会增大合金的变形抗力,应力-应变曲线为动态回复型曲线。依据应变量为0.3、0.5、0.7和0.9时材料的热变形数据,基于DMM原理构建了不同应变量下的AA6014铝合金热加工图,分析和讨论了 AA6014铝合金的变形工艺。结果表明,AA6014铝合金的安全热加工区间集中于中、低应变速率区,在安全区内存在动态回复及再结晶特征,失稳区内出现局部流变特征。其功率耗散率η最大值位于320 ℃<T<520 ℃,0.56 s^(-1)<■<1 s^(-1)变形条件范围内,AA6014铝合金的最佳成形工艺窗口确定为370℃<T<520℃,0.01 s^(-1)<■<0.056 s^(-1)和320℃<T<520℃,0.56 s^(-1)<■<1 s^(-1)。 展开更多
关键词 AA6014铝合金 热变形行为 热加工图 功率耗散率 成形工艺窗口
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Prediction of fracture limits of Ni-Cr based alloy under warm forming condition using ductile damage models and numerical method 被引量:3
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作者 Ayush MORCHHALE Anand BADRISH +4 位作者 Nitin KOTKUNDE Swadesh Kumar SINGH Navneet KHANNA Ambuj SAXENA Chetan NIKHARE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第8期2372-2387,共16页
The stretch forming and the deep-drawing processes were carried out at 300 and 673 K to determine the safe forming and fracture limits of IN625 alloy.The experimentally obtained strain-based fracture forming limit dia... The stretch forming and the deep-drawing processes were carried out at 300 and 673 K to determine the safe forming and fracture limits of IN625 alloy.The experimentally obtained strain-based fracture forming limit diagram(FFLD)was transformed into a stress-based(σ-FFLD)and effective plastic strain(EPS)vs triaxiality(η)plot to remove the excess dependency of fracture limits over the strains.For the prediction of fracture limits,seven different damage models were calibrated.The Oh model displayed the best ability to predict the fracture locus with the least absolute error.Though the experimentally obtained fracture limits have only been used for the numerical analysis,none of the considered damage models predicted the fracture strains over the entire considered range of stress triaxiality(0.33<η<0.66).The deep drawing process window helped to determine wrinkling,safe and fracture zones while drawing the cylindrical cups under different temperature and lubricating conditions.Further,the highest drawing ratio of 2 was achieved at 673 K under the lubricating condition.All the numerically predicted results of both stretch forming and deep drawing processes using the Hill 1948 anisotropic yielding function were found to be good within the acceptable range of error. 展开更多
关键词 IN625 alloy warm forming ductile damage models FORMABILITY forming limit diagram deep drawing processing window finite element analysis
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