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Effects of artificial aging conditions on mechanical properties of gravity cast B356 aluminum alloy 被引量:5
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作者 D.DIONI S.CECCHEL +2 位作者 G.CORNACCHIA M.FACCOLI A.PANVINI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第4期1035-1042,共8页
The age hardening behavior of gravity cast B356 aluminum alloy was investigated by differential scanning calorimetry(DSC), hardness measurements and tensile tests. Three different artificial aging temperatures were se... The age hardening behavior of gravity cast B356 aluminum alloy was investigated by differential scanning calorimetry(DSC), hardness measurements and tensile tests. Three different artificial aging temperatures were selected, namely 155, 165 and 180 °C, with heat treatment time from 40 min to 32 h. DSC analysis results show that cluster formation begins below room temperature(at around-10 °C). Since cluster formation influences the subsequent precipitation of the main strengthening β'' phase, it can be inferred that a delay between solutionizing and artificial aging has a detrimental effect on the mechanical properties of the alloy. It was also confirmed that the hardness and the tensile properties of the alloy reach the maximum values when β'' phase is completely developed during the artificial aging. This happens after 16 h for samples aged at 155 °C, after 6 h for samples aged at 165 °C and after 4 h for samples aged at 180 °C. A subsequent decrease of the mechanical properties, observed only in the sample aged at the highest temperature, with increasing aging time can be associated with the transformation of the coherent β'' phase into the semi-coherent β' phase. Finally, the activation energy associated with the precipitation of β'' phase was calculated to be 57.2 k J/mol. 展开更多
关键词 b356 aluminum alloy gravity casting artificial aging precipitation sequence mechanical properties
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Optimization of heat treatment of gravity cast Sr-modified B356 aluminum alloy 被引量:2
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作者 M.FACCOLI D.DIONI +2 位作者 S.CECCHEL G.CORNACCHIA A.PANVINI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第8期1698-1706,共9页
In recent years,certain foundry processes have made it possible to obtain products with very thin parts,below the4mmthreshold of the permanent mold casting technology.The safety margins of these castings have been red... In recent years,certain foundry processes have made it possible to obtain products with very thin parts,below the4mmthreshold of the permanent mold casting technology.The safety margins of these castings have been reduced,so the T6heattreatment conditions adopted for the Al?7Si?Mg alloys need to be investigated to identify the best combination of strength andductility.Furthermore,the cost and the production time associated with T6heat treatment have to be optimized.In the present work,an experimental study was carried out to optimize the solution treatment and artificial aging conditions in gravity cast thin bars ofB356aluminum alloy modified with Sr.Two solution temperatures were selected,530°C and550°C,respectively,with solutiontime ranging from2to8h,followed by water quenching and artificial aging at165°C with aging time from2to32h.The results ofhardness and tensile tests were correlated with differential scanning calorimetry(DSC)analysis.The best combination of mechanicalproperties and heat treatment duration was obtained with2h solutionizing at550°C and8h aging at165°C.DSC analysis showedthat the alloy’s mechanical properties reach the maximum value when theβ''phase is completely developed during the artificialaging. 展开更多
关键词 b356 aluminum alloy gravity casting heat treatment HARDNESS tensile property β″ phase
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二层对推式搅拌桨对B_4C_p/A356复合材料半固态搅拌流场影响的数值研究 被引量:1
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作者 张雪飞 白景元 +2 位作者 管仁国 刘燕 周天国 《沈阳大学学报(自然科学版)》 CAS 2017年第4期275-279,共5页
为了优化传统半固态搅拌铸造设备,设计出二层对推式搅拌桨,对其半固态搅拌铸造B_4C_p/A356时的流场进行了Fluent模拟.对模拟结果进行轴向流域、径向流域以及铝液搅拌形态的验证试验,对实验所得的两个铝锭进行了宏观的对比分析.发现二层... 为了优化传统半固态搅拌铸造设备,设计出二层对推式搅拌桨,对其半固态搅拌铸造B_4C_p/A356时的流场进行了Fluent模拟.对模拟结果进行轴向流域、径向流域以及铝液搅拌形态的验证试验,对实验所得的两个铝锭进行了宏观的对比分析.发现二层对推式搅拌桨更易使碳化硼颗粒带入铝液中,促进碳化硼颗粒在铝液中的均匀分散;二级交错式桨叶布置可减少无碳化硼颗粒掺入区域. 展开更多
关键词 B4Cp/A356 模拟 半固态搅拌铸造 均匀分散
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利用几何优化的搅拌设备改善半固态搅拌法制备的B_4C_p/A356复合材料的颗粒分布均匀性 被引量:1
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作者 张雪飞 白景元 +2 位作者 管仁国 刘燕 周天国 《材料导报》 EI CAS CSCD 北大核心 2019年第2期298-303,共6页
本工作旨在验证几何优化的搅拌设备对半固态搅拌法制备的B_4C_p/A356复合材料颗粒分布均匀性的改善效果。通过建立几何参数优化后的搅拌设备模型,用FLUENT软件模拟和分析了半固态搅拌法(SSSM)制备的B_4C_p/A356的流场,并分别用普通搅拌... 本工作旨在验证几何优化的搅拌设备对半固态搅拌法制备的B_4C_p/A356复合材料颗粒分布均匀性的改善效果。通过建立几何参数优化后的搅拌设备模型,用FLUENT软件模拟和分析了半固态搅拌法(SSSM)制备的B_4C_p/A356的流场,并分别用普通搅拌设备和优化的搅拌设备制备出B_4C_p/A356铝锭,然后从宏观与微观的角度分析了B_4C颗粒的分散效果。模拟与分析结果表明:优化后的搅拌设备在半固态铝液(SSAL)中搅拌时,能够产生促进B_4C颗粒分散的三层非等速交汇涡流;桨叶倾斜角为60°的二层对推正交式搅拌桨增大了桨叶与半固态铝液的接触面积,且使下层铝液中的B_4C颗粒分布更为均匀。 展开更多
关键词 FLUENT B4Cp/A356 半固态搅拌法 非等速交汇涡流 几何优化 搅拌设备
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B_4C_p/A356复合材料半固态搅拌铸造过程的三维数值模拟
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作者 徐艳华 周荣亚 《化工科技》 CAS 2018年第6期11-16,共6页
基于流体动力学原理,采用SpaceClaim建立制备B_4C_p/A356复合材料单层桨及双层桨两种搅拌装置几何模型,研究了两种搅拌装置下坩埚内流场的特性以及复合材料的动态搅拌黏附情况。研究结果表明,相比于单层搅拌,采用双层错排的搅拌装置坩... 基于流体动力学原理,采用SpaceClaim建立制备B_4C_p/A356复合材料单层桨及双层桨两种搅拌装置几何模型,研究了两种搅拌装置下坩埚内流场的特性以及复合材料的动态搅拌黏附情况。研究结果表明,相比于单层搅拌,采用双层错排的搅拌装置坩埚内的流场均匀性更好,能有效减少上层搅拌的"死角"区域。通过对比实验可以看出,同等转速条件下双层桨坩埚内的半固态组织均匀性更好,其形成的铸锭微观组织B4C颗粒的分散性能较好,模拟结果与实验数据进行对比,验证了模拟的可靠性。 展开更多
关键词 B4Cp/A356 复合材料 半固态搅拌 数值模拟
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356B20型ICP三轴加速计
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《传感器世界》 2004年第6期42-42,共1页
关键词 356B20 ICP 三轴加速计 性能
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