上海艾荔艾金属材料有限公司Shanghai Ailiai Metallic Material Co.,Ltd. 上海艾荔艾金属材料有限公司Shanghai Ailiai Metallic Material Co.,Ltd. 作为值得信赖的合作伙伴和高品质金属合金的半成品供应商,上海艾荔艾金属材料有限公司拥有完善的服务体系和专业的团队。在同客户交易的过程中,我们力求根据不同的应用需求将我们的产品做到精益求精。针对当前和未来的市场需求,艾荔艾致力于为客户提供优质的金属材料解决方案。

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FB2马氏体耐热钢中Laves相在焊接过程中演化行为的研究

发布人:上海艾荔艾合金股份有限公司www.shailiai.cn 更新时间:2016-03-21
采用热模拟的方法研究了 FB2 钢(一种新型 9%Cr 马氏体耐热钢)中 Laves 相在焊接热循环中的演化行为. 首先借助 SEM 发现了存在于原始供货状态下的 FB2 钢中尺寸在微米级别的 Laves 相颗粒; 进一步的分析表明, 这些 Laves 相的出现是由铸造过程中的枝晶偏析导致的.
FB2马氏体耐热钢中Laves相在焊接过程中演化行为的研究EVOLUTION BEHAVIOR OF LAVES PHASE IN FB2 STEEL DURING WELDING
采用热模拟的方法研究了 FB2 钢(一种新型 9%Cr 马氏体耐热钢)中 Laves 相在焊接热循环中的演化行为. 首先借助 SEM 发现了存在于原始供货状态下的 FB2 钢中尺寸在微米级别的 Laves 相颗粒; 进一步的分析表明, 这些 Laves 相的出现是由铸造过程中的枝晶偏析导致的. 焊接热模拟实验结果表明, 在加热过程中, Laves 相与基体γ -Fe 发生共晶反应导致的组分液化会给 FB2 钢热影响区带来热裂倾向; 在冷却后的样品中发现了一些网状的共晶组织, 利用 SEM 的 EDS 和 TEM 分别得到了该共晶组织的成分信息和结构信息, 确定该共晶组织的 2 个组分为χ 相和γ -Fe. 在此基础之上, 较为详细地分析了不同峰值温度热模拟后样品中共晶组织的形成过程, 解释了共晶组织不同形貌的产生原因. 
Elevating steam parameters are the main key to enhance the efficiency of fossil power plants, to reduce fuel consumption and noxious emission. Therefore, a lot of new creep resistant martensitic stainless steels have been developed, among which FB2 steel (a new 9%Cr martensitic stainless steel) is the most promising candidate for manufacturing steam turbine rotors operated at temperature range from 600 ℃ to 650 ℃. In the present work, the evolution behavior of Laves phase in the as received FB2 steel was studied by thermal simulation technique. Firstly, some sparse micron-sized particles of Laves phase were observed in as received FB2 steel by SEM. It was concluded that the large Laves phase particles formed in casting due to dendritic segregation. Then constitutional liquation resulting from eutectic reaction between Laves phase and γ -Fe in the heating process of welding thermal simulation was found, suggesting a liquation crack tendency in heat affected zone of FB2 steel. In the specimens experiencing thermal simulation, some eutectic microstructures were observed by SEM. Based on the results of EDS analysis and SAED, the two eutectic constituents were identified as χ phase and γ-Fe. At last, the reason for the difference in morphology of eutectic microstructures between specimens experiencing thermal simulation with different peak temperatures was analyzed. 

作为值得信赖的合作伙伴和高品质金属合金的半成品供应商,艾荔艾拥有完善的服务体系和专业的团队。在同客户交易的过程中,我们力求根据不同的应用需求将我们的产品做到精益求精。针对当前和未来的市场需求,艾荔艾致力于为客户提供最佳的金属材料解决方案。

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