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Obtaining Mechanical Properties of Fe Powder Using a Combined Nanoindentation and the Finite Element Method
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HOME > J Korean Powder Metall Inst > Volume 20(4); 2013 > Article
나노인덴테이션과 유한요소법을 결합한 철 분말의 기계적 물성 취득
정혁재, 이동준, 윤은유, 이언식, 김낙준, 김형섭
Obtaining Mechanical Properties of Fe Powder Using a Combined Nanoindentation and the Finite Element Method
Hyeok Jae Jeong, Dong Jun Lee, Eun Yoo Yoon, Eon Sik Lee, Nack Joon Kim, Hyeong Seop Kim
Journal of Korean Powder Metallurgy Institute 2013;20(4):280-284
DOI: https://doi.org/10.4150/KPMI.2013.20.4.280
1포항공과대학교 신소재공학과
2포항공과대학교 신소재공학과
3한국 재료연구소 경량금속단 변형제어연구실
4포항산업과학연구원
5포항공과대학교 철강대학원
6포항공과대학교 신소재공학과
1Department of Materials and Engineering, Pohang University of Science and Technology
2Department of Materials and Engineering, Pohang University of Science and Technology
3Korea Institute of Materials Science, Light Metal Devision, Materials Deformation Department
4Research Institute of Industrial Science and Technology
5Graduate Institute of Ferrous Technology, Pohang University of Science and Technology
6Department of Materials and Engineering, Pohang University of Science and Technology
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Stress-strain curves are fundamental properties to study characteristics of materials. Flow stress curves of the powder materials are obtained by indirect testing methods, such as tensile test with the bulk materials and powder compaction test, because it is hard to measure the stress-strain curves of the powder materials using conventional uniaxial tensile test due to the limitation of the size and shape of the specimen. Instrumented nanoindentation can measure mechanical properties of very small region from several nanometers to several micrometers, so nanoindentation technique is suitable to obtain the stress-strain curve of the powder materials. In this study, a novel technique to obtain the stress-strain curves using the combination of instrumented nanoindentation and finite element method was introduced and the flow stress curves of Fe powder were measured. Then obtained stress-strain curves were verified by the comparison of the experimental results and the FEA results for powder compaction test.


Journal of Powder Materials : Journal of Powder Materials
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