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Transverse Surface Cracks in Continuously Cast Steel Slabs, Oscillation Marks and Austenite Grain Size

机译:连铸钢坯的横向表面裂纹,振荡痕迹和奥氏体晶粒尺寸

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Transverse surface cracks in low carbon steel slabs are invariably inter-granular and follow the soft ferrite films outlining the grain boundaries of exceptionally large prior-austenite grains often found at the roots of oscillation marks in continuously cast low-carbon steel slabs. Plastic deformation is concentrated in the ferrite films and cracks initiate in the ferrite films, leading to crack propagation along the austenite grain boundaries. Hot-ductility is significantly reduced by an increase in austenite grain size and in situ observations revealed that depending on the cooling rate, austenite can nucleate and grow by diffusional mechanisms or forms by a massive type of reaction. The delta-ferrite transformation has also been studied by using neutron diffraction techniques and high-energy X-rays in a synchrotron.
机译:低碳钢坯的横向表面裂纹始终是晶粒间的,并跟随着软铁素体膜,勾勒出通常在连续铸造的低碳钢坯的振动痕迹根部经常发现的异常大的奥氏体晶粒的晶界。塑性变形集中在铁素体膜中,裂纹在铁素体膜中引发,导致裂纹沿奥氏体晶界扩展。奥氏体晶粒尺寸的增加显着降低了热延性,并且原位观察表明,根据冷却速率,奥氏体可以通过扩散机制成核并生长,也可以通过大量反应形成。还通过在同步加速器中使用中子衍射技术和高能X射线研究了δ-铁素体相变。

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