首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >Optimization of the Strontium Modification Process in Gravity Permanent Mould Tilt Cast AlSi6Cu4 Cylinder Heads
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Optimization of the Strontium Modification Process in Gravity Permanent Mould Tilt Cast AlSi6Cu4 Cylinder Heads

机译:重力中锶改性过程的优化铸造Alsi6cu4气缸盖

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Abstract Sr addition rates between 80 and 400?ppm were tested in industrial-scale casting campaigns. An adequate level of modification is achieved across the entire section of the cylinder head at a Sr addition rate of 160–200?ppm, and further increase in Sr levels fails to offer additional benefits. Porosity increases at Sr addition levels exceeding 200?ppm. The fraction of porosity is as high as 2.5% at a Sr addition rate of 400?ppm. Mechanical properties do not change over these Sr addition rates. It can be argued that the adverse and favourable effects of Sr addition more or less balance each other. However, the underlying issue of the industrial-scale experimental work is that the mechanical properties targeted for this particular AlSi6Cu4 cylinder head casting have been confidently and consistently achieved with the gravity permanent mould tilt casting process, without a separate heat treatment.
机译:摘要在工业规模的铸造活动中测试了80到400的SR添加率。 通过160-200的SR添加速率在气缸盖的整个部分上实现了足够的修改水平,并且SR水平进一步增加未能提供额外的益处。 孔隙率在SR加入水平上增加超过200μppm。 孔隙率的一部分高达2.5%,以400μppm的SR添加率。 机械性能不会改变这些SR添加速率。 可以认为SR的不利和有利影响互相增加或多或少平衡。 然而,工业规模的实验工作的潜在问题是,通过重力永久模具倾斜铸造工艺,已经自信地实现了针对这种特定的Alsi6Cu4气缸盖铸件的机械性能。

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