首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructural evaluation and crystallographic texture modification of heat-treated zirconium Excel pressure tube material
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Microstructural evaluation and crystallographic texture modification of heat-treated zirconium Excel pressure tube material

机译:热处理锆Excel压力管材料的显微组织评估和晶体学织构改性

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Dual phase (alpha - beta) Zr-Excel (Zr-3.5 wt% Sn-0.8 wt% Mo-0.8 wt% Nb) Pressure Tube (PT) material was solution treated at a range of temperatures in the (alpha + beta)(zr),or (beta(zr),-phase field, and cooled in water or air to generate various microstructures. TEM and neutron diffraction revealed significant alterations during the heat-treatments in both the microstructure and the initial strong transverse texture of the As-Received (ASR) PT material. The proportion of transformed beta-phase (beta -> alpha) or martensitic/acicular alpha-phase increased progressively with increasing solution temperature. The morphologies of the transformed beta products are different in the water-quenched material (martensitic plates) than in the air-cooled material (relatively wide, parallel plates). The room temperature texture of the heat-treated material shows that: the extent to which the initially strong transverse texture is modified (basal poles shifting towards the axial direction) increases with increasing solution temperature, yielding a relatively random texture at higher solution treatment temperature (quenching from similar to 930 degrees C). This texture modification through heat-treatment is more effective by water-quenching than by air-cooling. Although, a randomized texture is developed in the alpha -> beta -> alpha a phase transformation, variant selection is observed. It is suggested that this selection occurs primarily during cooling (alpha -> beta), whereas no (or very weak) variant selection occurs during heating (alpha -> beta), as indicated by the identical room temperature beta-phase (remnant) textures in the heat-treated and ASR materials. (C) 2016 Elsevier B.V. All rights reserved.
机译:双相(α-β)Zr-Excel(Zr-3.5 wt%Sn-0.8 wt%Mo-0.8 wt%Nb)压力管(PT)材料在(​​alpha + beta)(或(β(zr))相场,并在水或空气中冷却以产生各种微结构TEM和中子衍射表明,在热处理过程中,As的微结构和初始强横向织构均发生了显着变化-接收(ASR)PT材料。随着溶液温度的升高,转变的β相(β->α)或马氏体/针状α相的比例逐渐增加。 (马氏体板)比风冷材料(相对较宽的平行板)中的高。热处理后的材料的室温织构表明:最初强的横向织构被改变的程度(基极向轴向移动)方向)增加随着溶液温度的升高,在更高的溶液处理温度下(从930摄氏度左右淬火)产生相对随机的织构。通过水淬比通过空气冷却,通过热处理进行的这种纹理改性更有效。尽管在alpha-> ​​beta-> alpha a相变过程中形成了随机纹理,但观察到了变体选择。建议这种选择主要发生在冷却过程中(alpha-> ​​beta),而在加热过程中(alpha-> ​​beta)则没有(或非常弱)变体选择,这与相同的室温β-相(残余)质地所表明在热处理和ASR材料中。 (C)2016 Elsevier B.V.保留所有权利。

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