首页> 外文期刊>International Journal of Fracture >A CRITICAL GRAIN SIZE CONCEPT TO PREDICT THE IMPACT TRANSITION TEMPERATURE OF TI-MICROALLOYED STEELS
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A CRITICAL GRAIN SIZE CONCEPT TO PREDICT THE IMPACT TRANSITION TEMPERATURE OF TI-MICROALLOYED STEELS

机译:预测钛微合金钢冲击转变温度的临界晶粒尺寸

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摘要

Based on the assumption that local principal stress remains the same everywhere within a ferrite grain, a critical value of grain size can be determined for a fixed TiN particle size. When the grain size is smaller than the critical size, grain boundary is expected to resist the propagation of a micro-crack that is initiated from a TiN particle. Using this concept, an attempt has been made to predict the local cleavage fracture stress and 27J impact transition temperature (ITT) of different Ti-microalloyed steels, which were subjected to (instrumented) Charpy impact testing.
机译:基于铁素体晶粒内各处的局部主应力保持相同的假设,对于固定的TiN粒径,可以确定粒径的临界值。当晶粒尺寸小于临界尺寸时,期望晶界抵抗由TiN颗粒引发的微裂纹的传播。使用该概念,已尝试预测经受(仪器化)夏比冲击试验的不同钛微合金钢的局部解理断裂应力和27J冲击转变温度(ITT)。

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