Study of changes in the structure of zirconium alloy E125 after deformation by radial shear rolling

M. Magzhanov, A. Naizabekov, A. A. Kavalek, E. Panin, A. Arbuz
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Abstract

The rheological properties of the alloy E125 (Zr‑2.5 %Nb) were studied in the range of deformation rates 0.5–15 s‑1 and the temperature range 20–770 °C. A database for computer FEM modeling was created in the specified temperature and speed ranges. In the DEFORM‑3D software package, numerical simulation of a complex radial shear rolling process was carried out using the obtained database. The conditions conducive to the grinding of the alloy structure into an ultrafine‑grained state were determined. Based on the simulation results, a full‑scale experiment of rolling a bar made of alloy E125 on a radial shear rolling mill RSP‑14/40 in 7 passes from a diameter of 37 mm to 20 mm with a total compression in diameter of ε = 85 % was carried out. At the same time, according to the modeling, the total accumulated deformation in the most developed peripheral zone was 27,5 mm/mm. Due to the complex vortex flow of the metal, the distribution of accumulated deformation over the cross section was uneven with a gradient to the axial zone. This should also affect the change in the structure. The changes and the gradient of the structure were studied by the method of EBSD mapping of the sample section with a resolution of 2 mm. The microhardness gradient of the cross section was also investigated by the HV method. The axial and central zones of the sample were studied on the. The structure has a pronounced gradient from the formed equiaxed ultrafine‑grained (UMZ) structure on several outer millimeters of the peripheral section to an elongated rolling texture in the center of the rod. The work shows the possibility of processing with the formation of a gradient structure with enhanced properties for the E125 alloy, and also presents a database for FEM calculations.
径向剪切轧制变形后E125锆合金组织变化的研究
在变形速率0.5 ~ 15s - 1、温度20 ~ 770℃范围内,研究了E125 (Zr - 2.5% Nb)合金的流变特性。在规定的温度和速度范围内建立了计算机有限元建模数据库。在DEFORM‑3D软件包中,利用获得的数据库对一个复杂的径向剪切轧制过程进行数值模拟。确定了有利于将合金组织磨削成超细晶态的条件。基于仿真结果,在RSP - 14/40型径向剪切轧机上进行了E125合金棒材的全尺寸轧制试验,轧制直径为37 ~ 20 mm,总压缩直径ε = 85%,共7道次。同时,根据模拟结果,外围最发达区域的累计变形总量为275 mm/mm。由于金属的复杂涡旋流动,累积变形在截面上的分布是不均匀的,并向轴向区有梯度。这也会影响结构的变化。采用分辨率为2mm的EBSD成像方法对样品切片进行了结构变化和梯度的研究。采用HV法对截面的显微硬度梯度进行了研究。对试样的轴向和中心区域进行了研究。该组织具有明显的梯度,从外围部分外几毫米处形成的等轴超细晶(UMZ)组织到杆中心的细长滚动组织。研究结果表明,E125合金可以通过加工形成具有增强性能的梯度结构,并为有限元计算提供了数据库。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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