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首页> 外文期刊>Journal of Materials Science >Improvement of tensile strength and corrosion resistance of high-silicon cast irons by optimizing casting process parameters
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Improvement of tensile strength and corrosion resistance of high-silicon cast irons by optimizing casting process parameters

机译:通过优化铸造工艺参数提高高硅铸铁的拉伸强度和耐蚀性

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摘要

In this study, the relationship between casting process parameters and mechanical properties in a 14.5%Si containing corrosion resistant cast iron was statistically investigated using Taguchi method, one of the design tools of experiments. Three casting process parameters, which might be thought to be closely related to the determination of mechanical properties of high-silicon cast irons, such as melting temperature, mischmetal addition, and pouring temperature were chosen. Using signal-to-noise (SN) ratio calculated from the ultimate tensile strength (UTS) of each experimental casting run, the relationship between the casting process parameters and mechanical properties was statistically evaluated. The casting condition of high melting temperature of 1,650 degrees C, 0.2% mischmetal addition, and pouring temperature of 1,350 degrees C, led to an excellent UTS of 110-150 MPa, which is beyond the industrial criterion. The effects of casting process parameters on mechanical properties and corrosion resistance were further confirmed by combined analysis of fractography, hydrogen content determination, microscopic test, and acid resistance test.
机译:在这项研究中,使用Taguchi方法(一种实验设计工具),统计地研究了含14.5%Si的耐腐蚀铸铁中铸造工艺参数与机械性能之间的关系。选择了三个可能被认为与高硅铸铁机械性能的确定密切相关的铸造工艺参数,例如熔化温度,混合金属添加量和浇铸温度。使用从每个实验铸件运行的极限抗拉强度(UTS)计算出的信噪比(SN),对铸件工艺参数与机械性能之间的关系进行统计评估。高熔融温度(1,650摄氏度),添加0.2%的稀土金属和浇铸温度(1,350摄氏度)的铸造条件导致110-150 MPa的出色UTS,这超出了工业标准。结合分形分析,氢含量测定,显微测试和耐酸性测试,进一步证实了铸造工艺参数对机械性能和耐腐蚀性的影响。

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