Study on Microstructures and Mechanical Properties of a Hot Rolled High Manganese TRIP/ TWIP Steel 热轧高锰TRIP/TWIP钢组织性能研究
Influence of Manganese on Low Temperature Impact Behavior of Austenite TRIP/ TWIP Steels 锰含量对奥氏体TRIP/TWIP钢低温冲击行为的影响
Microstructures, mechanical properties and strengthening mechanisms of a 23.8% Mn TRIP/ TWIP steel 23.8%MnTRIP/TWIP钢的组织性能及强化机制
The Influence of Manganese on the Stacking Fault Energy and Deformation Mechanisms of the TWIP Steel 锰元素对TWIP钢层错能和变形机制的影响
The results show that there are60% annealing twins in TWIP steel before deformation and32% deformed twins after deformation. 在拉伸过程中,具有退火孪晶的晶粒内部首先发生变形,产生的变形孪晶遗传了退火孪晶的取向。
In-situ Observation of Microstructure for Fe-Mn-C TWIP Steel During Tensile Deformation Fe-23MnTWIP钢拉伸变形过程中微观组织的原位观察
Tensile Strain Hardening Behavior of Fe-Mn-C TWIP Steels Fe-Mn-C系TWIP钢的拉伸应变硬化行为研究
A Study on the Property of Fe-Mn-C Series TWIP Steels for Vehicles 汽车用Fe-Mn-C系TWIP钢的性能研究
Influence of grain size on TWIP effect in a TWIP Steel TWIP钢中晶粒尺寸对TWIP效应的影响
Study of High Strength and High Plasticity TWIP Steel 高强度高塑性TWIP钢的开发研究
In order to meet the needs for new generation automobile industry in the future, a lot of new steel are developing in the word, they are AHSS, HSS, DP steel, TRIP steel, TWIP steel etc. 为了满足未来新一代汽车工业发展的需求,开发了大量的新钢铁材料,如超高强钢(AHSS)、高强钢(HSS)、双相钢(DP钢)、TRIP钢,TWIP钢等。
Effect of Working Processes on Microstructure and Mechanical Property of TWIP Steel with High Strength and High Plasticity 不同加工工艺对高强高塑性TWIP钢组织与性能的影响
Mechanism of the twinning induced transformation, impact of stacking fault energy on TWIP effect and impact of microstructure on mechanical properties of the steel were introduced. 介绍了孪晶诱发相变的微观机理,层错能对TWIP效应的影响以及显微组织对钢的力学性能的影响。
Properties and microstructure of TWIP steel used in automobiles 汽车用TWIP钢的力学性能与微观组织
TWIP ( Twinning Induced Plasticity) has high plasticity, strain hardening rate and intensity. Besides, the impact absorbing energy of this steel is twice that of common high-strength steel. TWIP(TwinningInducedPlasticity)钢具有极高的塑性、高的应变硬化率和高的强度,它的冲击吸收功是普通高强钢的两倍。