首页> 外文期刊>鉄と鋼/Journal of the Iron and Steel Institute of Japan. >Strain rate-temperature dependency of impact tensile properties and ductile fracture behavior in ductile cast iron
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Strain rate-temperature dependency of impact tensile properties and ductile fracture behavior in ductile cast iron

机译:球墨铸铁的冲击拉伸性能和延性断裂行为的应变率-温度依赖性

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摘要

Impact tensile tests of as-cast and ferritic annealed ductile cast irons are carried out at strain rates up to 10{sup}3/s using a servo-hydraulic high speed testing machine. The fractography of the tensile specimens is carefully carried out with a scanning electron microscope. The experimental results demonstrate that the 0.2% proof stress and ultimate tensile strength of the materials used increase with increasing strain rate and lowering temperature. For the as-cast material with higher pearlite content in the matrix, the strain rate sensitivities of the strengths at room temperature are found to be higher than those of ferritic material. According to the relationships between the tensile properties and strain rate-temperature parameter, R-value, it is considered that for the deformation mechanisms of ductile cast irons at strain rates up to 10{sup}3/s, the thermally activated process is predominantly. Also, the constitutive equations of the impact tensile strengths for these irons are made based on the strain rate-temperature parameter R. It is believed that the proposed equations can be appropriate for engineering applications. While both the work-hardening exponent and the tensile ductility increase by decreasing the R-value. However, the tensile ductility decreases by decreasing the R-value less than 4500K, because of the over-strengthening by deformation constraining occurs: It is supported by observations of fracture surfaces in the tensile specimens that micro-dimple fracture surface area induced from debondings at a large number of small inclusions near the eutectic cell boundaries increases with decreasing R-value.
机译:使用伺服液压高速试验机以高达10 {sup} 3 / s的应变速率对铸态和铁素体退火球墨铸铁进行冲击拉伸试验。用扫描电子显微镜仔细地进行拉伸试样的分形。实验结果表明,所用材料的0.2%屈服极限应力和极限抗拉强度随着应变率和温度的降低而增加。对于基质中珠光体含量较高的铸态材料,发现室温强度的应变率敏感性高于铁素体材料。根据拉伸性能与应变率-温度参数R值之间的关系,认为对于应变率高达10 {sup} 3 / s的球墨铸铁的变形机理,热活化过程主要是。而且,基于应变率-温度参数R,得出了这些铁的冲击拉伸强度的本构方程。据信,所提出的方程可以适用于工程应用。而加工硬化指数和拉伸延性都通过降低R值而增加。但是,由于将R值减小到4500K以下,导致拉伸延展性降低,这是因为发生了形变约束而导致的过度强化:观察到拉伸试样中的断口表面可以证明,脱胶引起的微凹痕断口表面积是在随着R值的降低,共晶晶胞边界附近的大量小夹杂物增加。

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