Kyoto University · 공학
Akinobu Shibata 교수의 연구실은 마르텐사이트성 강철의 나노구조 및 결정학적 특성에 중점을 두고 있으며, 특히 수소 유도 피로 및 균열 메커니즘, 라이트 마르텐사이트의 고체상태 형성 거동을 중심으로 한 기초 연구를 수행하고 있습니다. 전자 배경산란도구(EBSD)와 집중 이온 광선-주사전자현미경(FOB-SEM)을 활용한 3차원 구조 분석을 통해 라이트 마르텐사이트의 기하학적 형태, 경계 구조, 결정학적 관계를 정밀하게 규명하고 있습니다. 특히 {011} 평면을 중심으로 한 균열 성장 메커니즘과 수소가 미치는 국소 플라스틱 변형 영향에 대한 기전 분석이 핵심입니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
This study investigated the characteristics of hydrogen-related crack propagation in low carbon lath martensite steel through orientation analysis using electron backscattering diffraction. The orientation analysis revealed that the hydrogen-related fracture surface consisted of the {011}M facets, which were also parallel to the block boundaries or lath boundaries in the lath martensite structure. In addition, micro-cracks were observed on or in the vicinity of the prior austenite grain boundari
In the present paper, the origin of midrib in lenticular martensite is clarified by examining the similarity between midrib and thin plate martensite in detail and studying the stress-induced growth behavior of thin plate martensite at various temperatures. Although lenticular martensite, especially midrib, exhibits a zigzag array in general, some martensite plates which are branched or kinked were also observed as thin plate martensite. The substructure of midrib is completely twinned and the o
This paper summarised the microstructural and crystallographic features of hydrogen-related fracture under tensile deformation in martensitic steels. The specimens with relatively low strength exhibited quasi-cleavage fracture. Crystallographic orientation analysis demonstrated that the quasi-cleavage fracture occurred on {011} planes. On the other hand, the macroscopic fracture surface morphologies of the specimens with relatively high strength appeared to be intergranular-like. However, nature
In this study, the substructures and crystallographic features of as-quenched lath martensite in interstitial-free (IF) steel and low-carbon steel (0.2C steel) were investigated using focused ion beam-scanning electron microscopy serial sectioning and advanced transmission electron microscopy. A three-dimensional analysis revealed that the morphology of the so-called lath, the smallest structural unit, exhibited a wedge-shaped plate instead of the ideal lath shape. The habit plane orientations w