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Influence of ageing on thermomechanical fatigue of austenitic stainless steels

机译:老化对奥氏体不锈钢热机械疲劳的影响

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The increasing demands on efficiency and flexibility results in more detrimental operating conditions for the materials used in the boiler section of biomass power plants. Hence, the materials will be exposed to cyclic operation, increased temperature and higher pressure where austenitic stainless steels have shown to be promising candidates to cope with the increasing demands. However, their behaviour under these conditions are not yet fully understood. This work investigates the response of the commercial austenitic stainless steels Sanicro 25, Sanicro 31HT and Esshete 1250 and focus on the material degradation from cyclic operating condition and long-term usage. Pre-aged specimens (2000 hours at 800°C) were exposed to thermomechanical fatigue (TMF) testing under strain-control and in the temperature range of 100°C to 800°C. The two TMF-test conditions IP- and OP-cycling performed on the investigated materials did not differ that much in hardening behaviour. However, the plastic strain range were in general greater for IP-cycle condition. An observed barrelling effect was simulated by a simplified finite element analysis (FEA), which showed influence of specimen geometry. The degree of deformation of the test specimens was measured by the use of low angle grain boundary (LAGB) density calculations and it showed no barrelling effect before 500 OP-cycles.
机译:效率和灵活性的越来越大导致生物质发电厂锅炉部分中使用的材料的更有害的操作条件。因此,材料将暴露于循环操作,提高温度和更高的压力,其中奥氏体不锈钢已显示承诺应对越来越多的需求。然而,他们在这些条件下的行为尚未完全理解。这项工作调查了商业奥氏体不锈钢Sanicro 25,Sanicro 31Ht和Esshete 1250的响应,并专注于循环操作条件和长期使用的材料降解。预先老化的样品(800°C时)暴露于应变控制下的热机械疲劳(TMF)测试,并在100℃至800℃的温度范围内。在调查材料上进行的两个TMF-Test条件IP和Op-循环在硬化行为中没有多大差异。然而,对于IP循环条件,塑性应变范围一般更大。通过简化的有限元分析(FEA)模拟了观察到的枪管效果,其显示出样本几何形状的影响。通过使用低角度晶界(LAGB)密度计算来测量试样的变形程度,并且在500个OP-循环之前没有显示枪管效果。

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