Orientation gradients and geometrically necessary dislocations in ultrafine grained dual-phase steels studied by 2D and 3D EBSD

被引:1728
作者
Calcagnotto, Marion [1 ]
Ponge, Dirk [1 ]
Demir, Eralp [1 ]
Raabe, Dierk [1 ]
机构
[1] Max Planck Inst Eisenforsch GmbH, D-40237 Dusseldorf, Germany
来源
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING | 2010年 / 527卷 / 10-11期
关键词
Dual-phase steel; Grain refinement; Orientation gradient; GND; 3D EBSD; ELECTRON BACKSCATTER DIFFRACTION; DEFORMATION-BEHAVIOR; MARTENSITE-TRANSFORMATION; TENSILE PROPERTIES; WARM DEFORMATION; VOLUME FRACTION; BCC METALS; STRAIN; MICROSTRUCTURE; PLASTICITY;
D O I
10.1016/j.msea.2010.01.004
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We study orientation gradients and geometrically necessary dislocations (GNDs) in two ultrafine grained dual-phase steels with different martensite particle size and volume fraction (24 vol.% and 38 vol.%). The steel with higher martensite fraction has a lower elastic limit, a higher yield strength and a higher tensile strength. These effects are attributed to the higher second phase fraction and the inhomogeneous transformation strain accommodation in ferrite. The latter assumption is analyzed using high-resolution electron backscatter diffraction (EBSD). We quantify orientation gradients, pattern quality and GND density variations at ferrite-ferrite and ferrite-martensite interfaces. Using 3D EBSD, additional information is obtained about the effect of grain volume and of martensite distribution on strain accommodation. Two methods are demonstrated to calculate the GND density from the EBSD data based on the kernel average misorientation measure and on the dislocation density tensor, respectively. The overall GND density is shown to increase with increasing total martensite fraction, decreasing grain volume, and increasing martensite fraction in the vicinity of ferrite. (C) 2010 Elsevier B.V. All rights reserved.
引用
收藏
页码:2738 / 2746
页数:9
相关论文
共 67 条
[1]   ORIENTATION IMAGING - THE EMERGENCE OF A NEW MICROSCOPY [J].
ADAMS, BL ;
WRIGHT, SI ;
KUNZE, K .
METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1993, 24 (04) :819-831
[2]   Micromechanical modeling of dual phase steels [J].
Al-Abbasi, FM ;
Nemes, JA .
INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2003, 45 (09) :1449-1465
[3]  
[Anonymous], FUNDAMENTAL DUAL PHA
[4]   DEFORMATION OF PLASTICALLY NON-HOMOGENEOUS MATERIALS [J].
ASHBY, MF .
PHILOSOPHICAL MAGAZINE, 1970, 21 (170) :399-&
[5]   Influence of martensite content and morphology on tensile and impact properties of high-martensite dual-phase steels [J].
Bag, A ;
Ray, KK ;
Dwarakadasa, ES .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1999, 30 (05) :1193-1202
[6]   WORK-HARDENING OF DUAL-PHASE STEELS [J].
BALLIGER, NK ;
GLADMAN, T .
METAL SCIENCE, 1981, 15 (03) :95-108
[7]   Three-dimensional EBSD study on the relationship between triple junctions and columnar grains in electrodeposited Co-Ni films [J].
Bastos, A. ;
Zaefferer, S. ;
Raabe, D. .
JOURNAL OF MICROSCOPY, 2008, 230 (03) :487-498
[8]   The characterization of low-angle boundaries by EBSD [J].
Bate, PS ;
Knutsen, RD ;
Brough, I ;
Humphreys, FJ .
JOURNAL OF MICROSCOPY, 2005, 220 :36-46
[9]   THE INFLUENCE OF MARTENSITE SHAPE, CONCENTRATION, AND PHASE-TRANSFORMATION STRAIN ON THE DEFORMATION-BEHAVIOR OF STABLE DUAL-PHASE STEELS [J].
BHATTACHARYYA, A ;
SAKAKI, T ;
WENG, GJ .
METALLURGICAL TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1993, 24 (02) :301-314
[10]  
BLECK W, 2001, P INT S NIOB 2001 TM, P727