首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >ON MODELING AND SIMULATION OF MECHANICAL PROPERTIES OF CAST IRONS WITH DIFFERENT MORPHOLOGIES OF GRAPHITE
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ON MODELING AND SIMULATION OF MECHANICAL PROPERTIES OF CAST IRONS WITH DIFFERENT MORPHOLOGIES OF GRAPHITE

机译:石墨不同形态的铸模力学性能建模与仿真研究

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摘要

Castings are produced by a manufacturing method which gives the components properties that are dependant on design, metallurgy and casting method. The wall thickness influences the resulting coarseness and type of microstructure and the material will have properties dependant on local metallurgical and thermal history. The local properties in a cast iron component can vary essentially in the casting volume, which makes it difficult to optimize the castings with good accuracy. Often simulation of stress/strain of cast products use constant material properties throughout the castings. If the micro structure is determined or predicted at a given point, it is possible to calculate the local material properties and its deformation behavior. This paper presents modeling and simulation of mechanical properties related to the graphite morphology and matrix constituents, using strength and strain hardening coefficients. The mechanical properties can be shown as stress-strain curves at different locations of the cast iron component. The models make it possible to determine qualitative stress-strain curves for any pearlitic cast iron grade and for pearlitic-ferritic ductile iron grades by knowing the graphite fraction and morphology and the chemical composition. Results from grey iron, compacted graphite irons and ductile irons are shown. These simulated local properties are validated on a complex casting in a nodular cast iron.
机译:铸件是通过一种制造方法生产的,该方法所提供的部件性能取决于设计,冶金和铸造方法。壁厚会影响所得的粗糙度和显微组织类型,并且材料将具有取决于局部冶金和热历史的特性。铸铁组件中的局部特性可能会在铸件体积中发生根本性变化,这使得难以以良好的精度优化铸件。通常,对铸造产品的应力/应变进行模拟会在整个铸件中使用恒定的材料属性。如果在给定点确定或预测了微观结构,则可以计算局部材料属性及其变形行为。本文利用强度和应变硬化系数,对与石墨形态和基体成分有关的机械性能进行建模和仿真。力学性能可以显示为铸铁部件不同位置的应力-应变曲线。通过了解石墨的成分和形态以及化学成分,这些模型可以确定任何珠光体铸铁牌号和珠光体-铁素体球墨铸铁牌号的定性应力-应变曲线。显示了灰口铁,压实石墨铁和球墨铸铁的结果。这些模拟的局部特性在球墨铸铁中的复杂铸件上得到了验证。

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