首页> 外文会议>American Nuclear Society;International Conference on Environmental Degradation of Materials in Nuclear Power Systems - Water Reactors >USING A MULTI-SCALE APPROACH TO ASSESS THE MECHANICAL PROPERTIES AND DEFORMATION MECHANISMS OF HIGH DOSE INCONEL X-750
【24h】

USING A MULTI-SCALE APPROACH TO ASSESS THE MECHANICAL PROPERTIES AND DEFORMATION MECHANISMS OF HIGH DOSE INCONEL X-750

机译:使用多尺度方法评估高剂量Inonell X-750的力学性能和变形机理

获取原文

摘要

In a high thermal neutron flux, Inconel X-750transmutates, producing displacement damage andhelium and hydrogen generation rates more severe thanother structural materials. To characterize mechanicalproperties and deformation mechanisms incurred byradiation, a multi-scale approach from nanometer scaleTransmission Electron Microscopy (TEM) to componentscale testing is employed. Material irradiated with twodistinct temperature histories, up to 315 °C, irradiated todoses 5-84 dpa, containing up to 2.6 at% He and 0.6 at%H gases is presented. Component testing measures loadbearing capacity, but cannot yield engineeringmechanical properties. Fracture surfaces indicate highlyintergranular failure, but don’t provide mechanisticinformation. Microhardness quantifies hardness and flowstress of the material as a function of radiation damage.Single-grained and bi-crystalline micro-tensile tests in theelectron microscope reveal trans-granular deformationinitiation mechanisms and quantify critical resolved shearstress, σy, and σUTS. Higher resolution fracture surfacesexhibit similar trans-granular facets within graininteriors, along with intergranular features, indicatingmixed-mode failure. TEM investigations of deformed bulkfracture surfaces and micro-tensiles show helium bubbleswithin grain interiors shear along the direction of localplasticity and in some cases coalesce prior to shearingligaments between bubbles. Micro-tensiles with verticallyoriented grain boundaries develop voids at theintersections of boundaries and dislocation channels afteryielding, immediately before failure. In bulk material,these interactions may drive fracture propagation alonggrain boundaries. Meso-scale tensiles with severalconstrained grains are proposed to investigate this.
机译:在高热中子通量下,Inconel X-750 发生mut变,产生位移破坏并 氦和氢的产生速率比 其他结构材料。表征机械 引起的性质和变形机理 辐射,从纳米尺度出发的多尺度方法 透射电子显微镜(TEM)到组件 使用规模测试。物料辐照两次 辐射至315°C的不同温度历史 剂量为5-84 dpa,包含高达2.6 at%的He和0.6 at%的He 出现了H气。组件测试措施负载 承载能力,但不能屈服工程 机械性能。断裂表面表明高度 晶间破坏,但不提供机理 信息。显微硬度可量化硬度和流动性 材料的应力随辐射损伤而变化。 单晶和双晶微拉伸试验 电子显微镜揭示穿晶变形 引发机制并量化临界分辨剪切 应力,σy和σUTS。较高分辨率的断裂面 在谷物中表现出类似的跨颗粒小面 内部,以及沿晶特征,表明 混合模式故障。变形体的TEM研究 断裂表面和微拉伸显示氦气气泡 在谷物内部沿局部方向剪切 可塑性,在某些情况下会在剪切之前合并 气泡之间的韧带。垂直微拉伸 取向的晶界在 边界和位错通道的交点之后 在失败之前立即屈服。在散装物料中 这些相互作用可能会推动裂缝沿 晶界。中尺度拉伸 建议使用约束谷物对此进行研究。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号