proeutectoid ferrite
- 网络先共析铁素体
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Microstructure of the deposited metals is composed of acicular ferrite and a little proeutectoid ferrite .
熔敷金属组织主要是针状铁素体,少量的先共析铁素体。
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The microscopic structure of the weld mainly consisted of proeutectoid ferrite , acicular ferrite and pearlite .
焊缝金属的显微组织主要由先共析铁素体、针状铁素体和珠光体组成。
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Amount prediction of proeutectoid ferrite in flux cored wire welded seam
药芯焊丝焊缝中先共析铁素体的数量预测
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The effect of kinetics on hot deformation of austenite to isothermal transformation of proeutectoid ferrite
热变形温度对先共析铁素体等温转变动力学的影响
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Thermodynamic Calculations on the Proeutectoid Ferrite Transformation of Deformed Austenite
热变形奥氏体先共析铁素体的热力学计算
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An investigation on the morphology of the proeutectoid ferrite in hypoeutectoid steel
亚共析钢中先共析铁素体形态的研究
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Thermodynamic calculations on the deformed-austenite → proeutectoid ferrite transformation
形变奥氏体中的铁素体相变形变奥氏体→铁素体的热力学计算
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The microstructure of weld seam columnar grain are composed of proeutectoid ferrite 、 FSA 、 massive ferrite and acicular ferrite .
焊缝柱状晶区的组织由沿柱状晶界分布的先共析铁素体+侧板条铁素体+块状铁素体+针状铁素体组成;
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In the γ + α two phase region , precipitation of proeutectoid ferrite film along austenite grain boundaries is the main reason for the embrittlement of the steel .
在γ+α两相区,Nb对钢的塑性影响较小,钢的脆性是沿γ晶界薄膜状先共析铁素体α相的析出造成的。
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The results indicated that the area of the dynamic continuous cooling transformation curves had two fields : proeutectoid ferrite was the transformation production in a field , bainite was in another .
研究表明,在动态CCT曲线中,相变区域主要有2个部分:A→F转变区和A→B转变区;
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At the meantime , this alloy method can effectively reduce the content of proeutectoid ferrite in weld metal , and promoting the forming of the acicular ferrite , with great impact ductility of weld joint .
同时能够减少焊缝金属中先共析铁素体的含量,促进针状铁素体的形成,提高焊接接头的低温冲击韧性值。
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The results show that the microstructure of the steel obtained after cooling is proeutectoid ferrite , eutectoid ferrite from the austenite , a little carbide-free bainite , granular bainite and martensite .
结果表明,该钢在冷却过程中组织均为未溶的先共析铁素体、从奥氏体中析出的共析铁素体、少量的无碳化物贝氏体、粒状贝氏体和马氏体。
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Synopsis For ternary alloy of Fe-C-Mn , the segregation of manganese and the solute drag effect will take place at the interface of ferrite-austenite during the process of proeutectoid ferrite nucleation and growth .
Fe-C-Mn三元合金在先共析铁素体形核和长大过程中,在铁素体和奥氏体晶界处会发生Mn的晶界偏析和溶质的拖曳效应。
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For the specimens of steels 15 and 45 , it was observed that the deformation is mainly undergone in proeutectoid ferrite , as well as shear , multipe-slip and colony rotation exhibited in pearlite .
结果表明,15和45号钢形变主要在铁素体中进行,珠光体可发生剪切形变与旋转等现象。
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The result shows that , for the thinner specimen , plastic deformation occurs firstly in proeutectoid ferrite and then grows along the prior austenite grain boundary , and then , a microcrack initiates and propagates preferentially at the interface of proeutectoid ferrite and pearlite colony .
结果表明,对薄试样拉伸变形时,不论是否有氢,先共析铁素体优先发生塑性变形,微裂纹沿先共析铁素体与珠光体团的边界形核、扩展;