材料科学
合金
扭转(腹足类)
材料加工
工业化学
压缩(物理)
固溶体
冶金
复合材料
工艺工程
医学
工程类
外科
生化工程
作者
A. Urbańczyk-Gucwa,A. Brzezińska,Kinga Rodak
标识
DOI:10.24425/amm.2018.125143
摘要
The samples of the CuCr0.6 alloy in the solution treated and additionally in aging states were severely plastically deformed by compression with oscillatory torsion (COT) method to produce ultrafine -grained structure.The samples were processed by using process parameters as: frequency of torsion (f = 1.6 Hz), compression speed (v = 0.04 mm/s), angle torsion (α = ±6°), height reduction (Δh = 7 mm).The total effective strain was ε ft = 40.The microstructure has been analyzed by scanning transmission electron microscope (STEM) Hitachi HD-2300A equipped with a cold field emission gun at an accelerating voltage of 200 kV.The quantitative microstructure investigations as disorientation angles were performed using a FEI INSPECT F scanning electron microscope (SEM) equipped with a cold field emission gun and a electron backscattering diffraction (EBSD) detector.The mechanical properties were determined using MST QTest/10 machine equipped with digital image correlation (DIC).The COT processed alloy previously aged at 500°C per 2h shows high mechanical strength, ultimate tensile strength UTS: 521 MPa and yield tensile strength YS: 488 MP attributed to the high density of coherent precipitates and ultrafine grained structure.
科研通智能强力驱动
Strongly Powered by AbleSci AI