Stability of austenitic 316L steel against martensite formation during cyclic straining

J Man, K Obrtlík, M Petrenec, P Beran, M Smaga… - Procedia …, 2011 - Elsevier
Solution-annealed AISI 316L steel was fatigued with constant plastic strain amplitudes at
room temperature and under various conditions at depressed temperatures down to 113K to …

Dynamic mechanical response of biomedical 316L stainless steel as function of strain rate and temperature

WS Lee, TH Chen, CF Lin… - Bioinorganic chemistry and …, 2011 - Wiley Online Library
A split Hopkinson pressure bar is used to investigate the dynamic mechanical properties of
biomedical 316L stainless steel under strain rates ranging from 1× 103 s− 1 to 5× 103 s− 1 …

Hot deformation behavior of a Nb-containing 316LN stainless steel

Z Wenhui, S Shuhua, Z Deli, W Baozhong, W Zhenhua… - Materials & Design, 2011 - Elsevier
A Nb-containing 316LN stainless steel was compressed in the temperature range 900–
1200° C and strain rate range 0.01–10 s− 1. The mechanical behavior has been …

Microstructure of austenitic stainless steels of various phase stabilities after cyclic and tensile deformation

A Weidner, A Glage, S Martin, J Man… - International journal of …, 2011 - degruyter.com
The microstructures of two metastable high-alloyed CrMnNi cast TRIP steels and a stable
AISI 316L austenitic stainless steel were studied in detail after tensile and cyclic …

一种核级316LN 钢的相图计算与微合金化设计

张文辉, 王振华, 赵德利, 吕知清, 白兴红, 傅万堂 - 燕山大学学报, 2011 - cqvip.com
用热力学方法计算了一种核级316LN 钢及其在Nb, V 微合金化条件下的伪二元平衡相图,
研究了不同温度下钢的平衡相组成. 结果表明, 316LN 钢中的主要析出相为Cr2N, M23C6, 和相 …