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首页> 外文期刊>Metals and Materials International >A Novel Method to Calculate the CarbidesFraction from Dilatometric Measurements During Cooling in Hot-Work ToolSteel
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A Novel Method to Calculate the CarbidesFraction from Dilatometric Measurements During Cooling in Hot-Work ToolSteel

机译:一种新的方法来计算热工床冷却过程中稀释测量稀释测量的碳化渣

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摘要

Dilatometry is a useful technique to obtain experimental data concerning transformation. In this paper, a dilation conversional model was established to calculate carbides fraction in AISI H13 hot-work tool steel based on the measured length changes. After carbides precipitation, the alloy contents in the matrix changed. In the usual models, the content of carbon atoms after precipitation is considered as the only element that affects the lattice constant and the content of the alloy elements such as Cr, Mo, Mn, V are often ignored. In the model introduced in this paper, the alloying elements (Cr, Mo, Mn, V) changes caused by carbides precipitation are incorporated. The carbides were identified using scanning electron microscope and transmission electron microscope. The relationship between lattice constant of carbides and temperature are measured by high-temperature X-ray diffraction. The results indicate that the carbides observed in all specimens cooled at different rates are V-rich MC and Cr-rich M23C6, and most of them are V-rich MC, only very few are Cr-rich M23C6. The model including the effects of substitutional alloying elements shows a good improvement on carbides fraction predictions. In addition, lower cooling rate advances the carbides precipitation for AISI H13 specimens. The results between experiments and mathematical model agree well.
机译:膨胀测量是获得关于变换的实验数据的有用技术。本文基于测量的长度变化,建立了一种扩张性交易模型,以计算AISI H13热工床钢中的碳化物分数。在碳化物沉淀后,基质中的合金含量发生变化。在通常的模型中,析出后的碳原子的含量被认为是影响晶格常数的唯一元件,并且通常被忽略诸如Cr,Mo,Mn,V的合金元素的含量通常被忽略。在本文介绍的模型中,掺入了由碳化物沉淀引起的合金元素(Cr,Mo,Mn,V)改变。使用扫描电子显微镜和透射电子显微镜识别碳化物。通过高温X射线衍射测量碳化物和温度的晶格常数之间的关系。结果表明,在不同速率下冷却的所有样品中观察到的碳化物是V-富含MC和富含CR的M23C6,并且大多数是富含V的MC,只有很少的是CR富含Cr的M23C6。包括替代合金元素的效果的模型显示出对碳化物分数预测的良好改善。此外,较低的冷却速率使碳化物沉淀的含量为AISI H13标本。实验与数学模型之间的结果很好。

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