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Influences of Complex Modification of RE and P on the Microstructure and Impact Toughness of Hypereutectic Al-24Si Alloy

机译:复合改性Re和P复合改性对过度晶体Al-24SI合金的微观结构和冲击韧性

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The influences of RE and P complex modification on microstructure and impact toughness of hypereutectic Al-24Si alloy are investigated. The result shows that the coarse block primary silicon is refined obviously and its edges and angles are blunted under the influences of the complex modification of RE and P. The large needle eutectic silicon is modified to the short-rod or particle ones also. The alloys have the finest microstructure and highest impact toughness when adding about 0.10% P and 0.9% RE into alloys. Compared with the unmodified alloy, the average size of primary silicon in the modified alloys refined from 93.5ìm to 24.1 ìm and the impact toughness of alloys increases to 11.0062J/cm~2 from 7.3572J/cm~2, The excellent impact toughness of alloys can be attributed to the increase of initiation energy and expand energy of the cracks caused by the refinement of primary silicon and eutectic silicon after complex modified with P and RE.
机译:研究了Re和P复杂改性对过度沉积族二氧化合金微观结构和冲击韧性的影响。结果表明,显然粗块初级硅精制,其边缘和角度在Re和P的复杂改性的影响下钝化。大针共晶硅也被修改到短杆或颗粒。当加入约0.10%P和0.9%的再入合金时,合金具有最佳的微观结构和最高的冲击韧性。与未经修饰的合金相比,改性合金中初级硅的平均尺寸从93.5英寸改进至24.1μm,合金的冲击韧性增加到7.3572J / cm〜2的11.0062J / cm〜2增加,具有优异的冲击韧性合金可归因于在用P和RE改性复合物后,通过PRO和RE改性初级硅和共晶硅的改进引起的裂缝引起的能量的增加。

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