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Effect of Boron Addition on Creep Strain during Impression Creep of P91 Steel

机译:P91钢印模蠕变期间硼添加对蠕变应变的影响

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In an attempt to understand the effect of boron addition on creep deformation behavior under high stress and high temperature in martensitic P91 steel, impression creep tests were carried out on boron-free P91 (P91) and boron-added P91 (P91B) steels. The experimental program consisted of three steps, i.e., characterization of as-received steels by microhardness, optical microscopy (OM), transmission electron microscopy (TEM), electron backscattered diffraction (EBSD) and wavelength-dispersive spectroscopy (WDS); impression creep tests at 445 MPa and 625 degrees C on as-received steels; characterization at deformed plastic zones of impression-crept specimens by microhardness, OM, EBSD, TEM and WDS. Impression creep tests were run till a depth of penetration of 1.8 mm was achieved for both cases which ensured a sufficient plastic zone underneath indenter for subsequent microstructural investigations. Coarsening of M23C6 carbides was observed in P91 steel during high-temperature creep loading, which leads to extensive strain hardening in deformed plastic region, resulting in impaired creep performance. On the contrary, dynamic recrystallization in P91B steel results in formation of small strain-free grains during creep loading which are responsible for increased resistance of the material to shear stresses during an impression creep test.
机译:为了在马氏体P91钢的高应力和高温下了解硼添加对蠕变变形行为的影响,在无硼P91(P91)和硼添加的P91(P91B)钢上进行印模蠕变试验。实验程序由三个步骤组成,即通过显微硬度,光学显微镜(OM),透射电子显微镜(TEM),电子反向散射衍射(EBSD)和波长分散光谱(WDS)表征的三个步骤。印模在445MPa和625摄氏度上的印模蠕变测试在接收的钢上;通过微硬度,OM,EBSD,TEM和WDS表征印模爪样标本的变形塑料区。在对照两种情况下实现了深度蠕变试验,直至两种情况下实现了1.8毫米的深度,该情况确保了压痕下的足够的塑料区以进行后续微观结构研究。在高温蠕变载荷期间,在P91钢中观察到M23C6碳化物的粗化,这导致变形塑料区域的强菌株,导致蠕变性能受损。相反,P91B钢中的动态重结晶导致在蠕变负载期间形成小菌株颗粒,其负责在印模蠕变试验期间对材料的抗性抗性的抗性增加。

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