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Identification of ductile to brittle transition temperature by using plane strain specimen in tensile test and correlation with instrumented Charpy impact test: experimental and numerical study

机译:使用平面菌株样本在拉伸试验中使用平面菌株试样与仪表夏比冲击试验的鉴定:实验和数值研究

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摘要

This study addresses the correlation between the ductile-to-brittle transition temperature ranges of high strength 4140 steel obtained respectively from tensile tests under plane strain (PS) conditions and from conventional Charpy impact tests. Specimens were taken respectively at 25?mm (P) and at 55?mm (M) from skin of a cylindrical 90-mm-radius hot rolled bar water quenched from 875?°C, tempered at 600?°C and air cooled. P and M samples respectively showed a fully martensitic and a martensite-bainite microstructure. Fracture surface observations showed good agreement for physical fracture mechanisms (cleavage facet size, mixed ductile?+?brittle fracture in the transition region, ductile fracture at higher temperatures) between PS and Charpy, in particular sensitivity of upper bainite to cleavage fracture that reduces fracture energy in the lower self-energy on Charpy tests.
机译:该研究解决了分别从平面菌株(PS)条件下的拉伸试验和传统的夏比冲击试验中获得的高强度4140钢的韧性4140钢的脆性转变温度范围之间的相关性。 从875Ω℃的圆柱形90mm半径热轧棒水的皮肤分别以25μm(p)和55μm(m)以55毫米(m)进行试样。 P和M样品分别显示出全马氏体和马氏体 - 贝氏体微观结构。 骨折表面观察结果表明,物理骨折机制(裂解小平面尺寸,在过渡区域的混合延伸性,混合延性,在较高温度下的混合延性,韧性骨折)之间的PS和夏比,特别是上贝氏体的敏感性降低骨折的裂缝 在夏奇的测试中较低的自我能量。

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