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首页> 外文期刊>Journal of Iron and Steel Research International >Study on Hot Deformation Cracks of Steel D2 Using Processing Map
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Study on Hot Deformation Cracks of Steel D2 Using Processing Map

机译:D2钢热变形裂纹的加工图研究

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摘要

The hot deformation behaviors of steel D2 in the range of 900℃ to 1 160℃ and strain rate range of 0. 01 s~(-1) to 10 s~(-1) have been studied by using Processing Map developed on the basis of dynamic materials model. The efficiency of energy dissipation η is taken as a function of temperature and strain rate to obtain a Processing Map. In the Processing Map of steel D2 , there are two zones of cracking susceptivity with high dissipation efficiency η of 46% and 63% respectively. One zone is in the range of 900℃ to 980℃ and the strain rate range of 0. 01 s~(-1) to 0. 06 s~(-1), and the other from 1 140℃ to 1 160℃ and 8 s~(-1) to 10 s~(-1). The experiment proves that there are microstructural brittle transgranular fractures and macroscopic thermal cracks in the two zones respectively. The map also revealed that deformation in these two zones is of instable flowing, so these two zones should be avoided when choosing hot deformation conditions.
机译:利用在此基础上开发的加工图,研究了D2钢在900℃至1 160℃范围内,应变速率范围为0. 01 s〜(-1)到10 s〜(-1)时的热变形行为。动态材料模型。能量消耗效率η是温度和应变率的函数,以获得加工图。在钢D2的加工图中,有两个裂纹敏感性区,其高耗散效率η分别为46%和63%。一个区域的温度范围为900℃至980℃,应变率范围为0. 01 s〜(-1)到0. 06 s〜(-1),另一个区域为1 140℃至1 160℃,并且8 s〜(-1)至10 s〜(-1)。实验证明,两个区域分别存在显微组织的脆性透晶断裂和宏观热裂纹。该图还显示这两个区域中的变形是不稳定的,因此在选择热变形条件时应避免这两个区域。

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