铸造低碳马氏体不锈钢中奥氏体含量的X射线衍射定量分析  被引量:3

Quantitative Analysis of Austenite Content in Cast Low Carbon Martensitic Stainless Steel by X-Ray Diffraction

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作  者:熊云龙 王增睿 赵岭 于洪若 赵利军 陈瑞 王云霞 宋阳 XIONG Yun-long;WANG Zeng-rui;ZHAO Ling;YU Hong-ruo;ZHAO Li-jun;CHEN Rui;WANGYun-xia;SONG yang(Shenyang Research Institute of Foundry Co.,Ltd.,Shenyang 110022,Liaoning,China)

机构地区:[1]沈阳铸造研究所有限公司,辽宁沈阳110022

出  处:《铸造》2020年第7期704-708,共5页Foundry

基  金:国家自然基金项目(U1808216);辽宁省自然基金项目(2019-MS-310)。

摘  要:晶粒细小的逆变奥氏体是铸造低碳马氏体不锈钢中的常见组织,其含量与钢的力学性能密切相关。晶粒的择优取向导致α-γ双相组织中奥氏体体积分数现有的计算方法误差较大。在现有的研究基础上,通过引入取向几率密度,提出了一种简易的、用于具有明显择优取向α-γ双相组织的奥氏体体积分数计算方法,同时补充了Cu靶对应强度因子的计算。通过在ZG0Cr13Ni5Mo水轮机导叶铸件中进行取样测试,其X射线衍射图谱中可标定出α相的{110}、{200}和{211}衍射峰和γ相的{111}衍射峰。按照本方法计算得到的奥氏体体积分数为0.56%;利用传统计算方法得到的体积分数为0和1.91%;EBSD测试结果表明γ相具有{111}择优取向,含量约为0.4%。对比结果表明,本研究提出的计算方法具有较高可信度。The reversed austenite with fine grains is a common structure in cast low carbon martensitic stainless steel,and its content is closely related to the mechanical properties of the steel.The preferred orientation of the grains leads to a large error in the calculation of the volume fraction of austenite in theα-βdual phase structure.A simple method for calculating the volume fraction of austenite with obvious preferred orientation in aα-βdual-phase structure is developed by introducing the orientation probability,and the intensity factor for Cu-Kαis supplemented.The sampling from the ZG0 Cr13 Ni5 Mo turbine wicket gate casting and testing results show that,in the X-ray diffraction patterns,the{110},{200}and{211}diffraction peaks ofαphases and the{111}diffraction peaks of y phases can be calibrated.The volume fraction of austenite is 0.56%by using the method this paper described,and the volume fractions obtained by traditional methods are 0 and 1.91%respectively.The EBSD test results show that the y phase has{111}preferred orientation,and the content is about 0.4%.The comparison results show that the method proposed in this paper has high reliability.

关 键 词:低碳马氏体不锈钢 逆变奥氏体 体积分数 X射线衍射 强度因子 择优取向 

分 类 号:TG115.22[金属学及工艺—物理冶金]

 

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