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Phase Transformations and Mechanical Properties of Fe-Mn-Si-Al TRIP-Steels

机译:Fe-Mn-Si-Al TRIP钢的相变和力学性能

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摘要

Deformation twinning, martensitic phase transformation and mechanical properties of austenitic Fe-(15-30)wt%Mn alloys with additions of aluminium and silicon have been investigated. Tensile tests were carried out at different strain rates and temperatures. The formation of twins, α'- and ε-martensite during plastic deformation was analysed by optical microscopy, X-ray diffraction, scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The stacking fault energy γfcc and the free energy ΔGγ→ε for the γ→ε phase transformation were calculated using the regular solution model. It is known that additions of aluminium increase γfcc and therefore strongly suppress the γ→ε transformation while silicon decrease γfcc and sustains the γ→ε transformation. The γ→ε phase transformation takes place in alloys with γfcc≤20mJ/m2. The stacking fault energy of the Fe-25Mn-3Si-3Al alloy was calculated as a function of temperature and related with microstructural changes of the strained sample at different temperatures. These steels with reduced density of about 7,3 g/cm-3 combine high tensile ductility up to 80 % at high strain rates with true tensile strength of about 1000 MPa. The excellent plasticity induced by twinning and additional phase transformation up to extremely high strain rates of about ε=103s-1 results in an extraordinary shock resistence and enables deep drawing and backward extrusion operations of parts with complex shapes and high production rates.
机译:研究了添加铝和硅的奥氏体Fe-(15-30)wt%Mn合金的形变孪晶,马氏体相变和力学性能。在不同的应变速率和温度下进行拉伸测试。通过光学显微镜,X射线衍射,扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析了塑性变形过程中孪晶,α'-和马氏体的形成。使用常规解模型计算了堆垛层错能γfcc和γ→ε相变的自由能ΔGγ→ε。已知铝的添加增加γfcc并因此强烈抑制γ→ε相变,而硅减少γfcc并维持γ→ε相变。 γ→ε相变发生在γfcc≤20mJ/ m2的合金中。计算Fe-25Mn-3Si-3Al合金的堆垛层错能与温度的关系,并与应变样品在不同温度下的显微组织变化有关。这些具有降低的密度约7.3 g / cm-3的钢在高应变率下结合了高达80%的高拉伸延展性和约1000 MPa的真实拉伸强度。由孪生和附加相变引起的优异塑性,直至高达ε= 103s-1的极高应变速率,均具有出色的抗震性,并能够对具有复杂形状和高生产率的零件进行深冲和向后挤压操作。

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