论文标题
锆洛伊-4中的滑湿相互作用:多尺度机械测试和表征
Slip-hydride interactions in Zircaloy-4: Multiscale mechanical testing and characterisation
论文作者
论文摘要
使用原位次级电子显微镜(SEM)单晶体样品和EXATU数字图像相关(DIC)宏观宏观分级伸缩样品测试多晶状体晶体样品的多晶型样品,使用原位二级电子显微镜(SEM)微柱压缩测试研究了应力下的ΔHydrides和塑料滑移之间的相互作用。氢化物在取向的基础平面附近装饰,对于以较低的剪切应力,在氢化物矩阵界面处于氢化物矩阵界面处的基底滑动剪切<a>基底滑动剪切的<a>。相比之下,对于以支柱为导向<a>棱柱形滑动的支柱触发塑料滑移所需的剪切应力略高于<a>棱镜滑移系统的关键解析剪应力(CRS)。在这种情况下,可能通过<110> -type剪切来实现氢化物中的滑移,该剪切与亲本<a> - 型剪切剪切平行。在更长的长度尺寸上,这些结果用于为使用高空间分辨率DIC分析的多晶样品提供信息。在这里,局部界面剪切仍然是一个显着的变形路径,这既可能导致并由矩阵滑移在与相边界紧密取向的平面上引起。基质在几乎垂直于相邻的氢化物矩阵界面的平面上滑动可以导致氢化物内的塑料滑动,或在界面被捕,从而产生局部应力浓度。通过这些机制,在塑性状态的早期,δ-氢化物的存在导致锆洛伊-4中的应变定位增强。
The interactions between δ-hydrides and plastic slip in a commercial zirconium alloy, Zircaloy-4, under stress were studied using in situ secondary electron microscope (SEM) micropillar compression tests of single crystal samples and ex situ digital image correlation (DIC) macroscale tensile tests of polycrystalline samples. The hydrides decorate near basal planes in orientation, and for micropillars orientated for <a> basal slip localised shear at the hydride-matrix interface is favoured over slip in α-Zr matrix due to a lower shear stress required. In contrast, for pillars oriented for <a> prismatic slip the shear stress needed to trigger plastic slip within the hydride is slightly higher than the critical resolved shear stress (CRSS) for the <a> prismatic slip system. In this case, slip in the hydride is likely achieved through <110>-type shear which is parallel to the activated <a>-type shear in the parent matrix. At a longer lengthscale, these results are used to inform polycrystalline samples analysed using high spatial resolution DIC. Here localised interface shear remains to be a significant deformation path which can both cause and be caused by matrix slip on planes closely-oriented to the phase boundaries. Matrix slip on planes nearly perpendicular to the adjacent hydride-matrix interfaces can either result in plastic slip within the hydrides or get arrested at the interfaces, generating local stress concentration. Through these mechanisms, the presence of δ-hydrides leads to enhanced strain localisation in Zircaloy-4 early in the plastic regime.