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党波

作品数:4 被引量:27H指数:3
供职机构:西北工业大学材料学院凝固技术国家重点实验室更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划西北工业大学基础研究基金更多>>
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Effects of cooling rate on solution heat treatment of as-cast A356 alloy被引量:12
2015年
The effect of cooling rate of the solidification process on the following solution heat treatment of A356 alloy was investigated,where the cooling rates of 96 K/s and 3 K/s were obtained by the step-like metal mold.Then the eutectic silicon morphology evolution and tensile properties of the alloy samples were observed and analyzed after solution heat treatment at 540 °C for different time.The results show that the high cooling rate of the solidification process can not only reduce the solid solution heat treatment time to rapidly modify the eutectic silicon morphology,but also improve the alloy tensile properties.Specially,it is found that the disintegration,the spheroidization and coarsening of eutectic silicon of A356 alloy are completed during solution heat treatment through two stages,i.e.,at first,the disintegration and spheroidization of the eutectic silicon mainly takes place,then the eutectic silicon will coarsen.
杨长林李远兵党波吕贺宾刘峰
Effect of as-solidified microstructure on subsequent solution-treatment process for A356 Al alloy被引量:7
2016年
For the compromise of mechanical properties and product cost, the end-chilled sand casting technique was applied to studying the microstructure evolution of A356 Al alloy with cooling rate and the effect of different as-cast microstructures on the subsequent solution-treatment process. The experimental results show that the secondary dendrite arm spacing (SDAS) of primaryα(Al), the size of eutectic Si and the volume fraction of Al?Si eutectic are reduced with increasing the cooling rate. Eutectic Si, subjected to solution treatment at 540 °C for 1 h followed by water quenching to room temperature, is completely spheroidized at cooling rate of 2.6 K/s; is partially spheroidized atcooling rate of 0.6 K/s; and is only edge-rounded at cooling rates of 0.22 and 0.12 K /s. Whilst the microhardness is also the maximum at cooling rate of 2.6 K/s. It consequently suggests that subjected to modification by high cooling rate, the eutectic Si is more readily modified, thus shortening the necessary solution time at given solution temperature, i.e., reducing the product cost.
党波刘丛丛刘峰刘颖卓李远兵
关键词:MODIFICATION
冷却速率对A356铝合金显微组织和微观硬度的影响被引量:9
2013年
研究了不同冷却速率对A356合金凝固组织和微观硬度的影响,以及T4热处理后,其显微组织和微观硬度的进一步演化.结果表明:提高冷却速率,凝固组织α?Al的二次枝晶臂间距(SDAS)和共晶Si的尺寸显著减小,微观硬度显著提高;8h的T4热处理后,相同冷却速率下的SDAS几乎没有变化,而较高冷却速率下的共晶Si更容易球化.冷却速率为9℃/s和0.15℃/s试样的微观硬度都得到进一步提高,冷却速率为167℃/s时,共晶Si在完全球化后进而长大粗化,试样的微观硬度反而降低.可见,当冷却速率较高时,细小的共晶Si仅需要相对较短的固溶时间就可以球化,达到最佳的力学性能.因此,通过控制冷却速率,可以细化晶粒,提高性能,还能缩短T4热处理的时间,节约生产成本.
刘颖卓党波刘峰
关键词:冷却速率A356铝合金显微组织
过热处理对铸态A356铝合金微观组织及力学性能的影响被引量:1
2016年
为了获得高质量的A356铸件,通过研究不同过热温度下合金的快淬微观组织特征,提出了一种熔体过热处理工艺,有效地细化了合金的微观组织、减少了合金中的缩孔缺陷,合金的力学性能得到了显著提高。
党波张旭陈豫增刘峰
关键词:精炼处理力学性能
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