Reclassification of Spheroidal Graphite Ductile Cast Irons Grades According to Design Needs

被引:0
|
作者
Franco Zanardi
Carlo Mapelli
Silvia Barella
机构
[1] Zanardi Fonderie SpA,Dipartimento di Meccanica
[2] Politecnico di Milano,undefined
来源
International Journal of Metalcasting | 2020年 / 14卷
关键词
spheroidal graphite cast iron; ductile iron; silicon solid solution strengthened ductile iron; ADI; austempered ductile iron; ausferritic ductile iron; IDI; isothermed ductile iron; perferritic; perferrite; tensile test; material standard; casting design;
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摘要
The classification of grades inside a material family should be based on the properties required by design procedures. This paper proposes a reclassification of spheroidal graphite ferritic pearlitic and ausferritic (ADI) ductile cast irons grades based on yield strength (YS), strength ratio (SR) UTS/YS and elongation at fracture (EF). In fact, these parameters are fundamental for the static assessment according to the procedures FKM Guideline and BS 7910:2005. Static assessment at room temperature, involving plastic deformation and depending on the wall thickness and stress state triaxiality, is here proposed as the most significant for the material classification. All other properties (e.g., fatigue under cyclic loads, high strain rates and temperature effect, etc.) should be reported with reference to the classification mentioned above. SR and EF control the plastic deformation at the notch tip, where maximum calculated elastic stress is redistributed. Minimum YS is usually assumed as the basic parameter for static and cyclic loading design. Because of the inverse relationship that exists between strength and ductility, Brinell hardness control and material quality index should be adopted as Material Quality Control tools, preventing from a too low EF. Fracture Toughness and its ratio with YS must be considered for preventing brittle fracture due to the presence of flaws. Fracture toughness definitions and available data are not sufficiently consistent for a correct comparison between different material grades. A surrogate Charpy energy measurement is indicated for an indirect estimate of toughness.
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页码:622 / 655
页数:33
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