蠕动
材料科学
偏转(物理)
应力松弛
冯·米塞斯屈服准则
有限元法
应变率
应变硬化指数
硬化(计算)
结构工程
机械
复合材料
物理
经典力学
工程类
图层(电子)
作者
Karl-Fredrik Nilsson,D. Baraldi,Stefan Holmström,Igor Simonovski
出处
期刊:Metals
[Multidisciplinary Digital Publishing Institute]
日期:2021-10-11
卷期号:11 (10): 1609-1609
被引量:4
摘要
This paper presents a finite element analysis of the small punch creep test for 316L(N), which is compared with experimental data for 650 and 700 °C. Special emphasis is placed on (i) assessing the influence of friction and (ii) comparing two different creep models: the simple Norton creep and the more general creep model. The computed normalized deflection rate versus time is almost identical for all cases, which allows for scaling of the results. The computed time to rupture increases linearly with the friction coefficient due to a reduction in the mean stress. There is a good overall agreement between the experimental values and the computed deflection rate for a friction coefficient of around 0.3. It is shown that the initial reduction in deflection rate is due to stress relaxation and homogenization, and is only marginally affected by primary creep hardening. The computed results are compared with the equivalent stress and strain rates in the recently published small punch standard (EN 10371). The computed von Mises stresses at minimum deflection decrease linearly with the friction coefficient but are consistently slightly higher than the equivalent stress in the standard. For the strain rates, the computed values are significantly higher than the equivalent values in the standard. The presented simulations give a deeper insight of the small punch creep and impact of key parameters such the friction coefficient and in general as a guidance to refinement and improvement of the empirically based formulae in the standard.
科研通智能强力驱动
Strongly Powered by AbleSci AI