Optimized fatigue performance of martensitic stainless steel AISI 440C using deep rolling integrated into hardening process [PDF]
The deep rolling process can be modified by annealing at appropriate temperature and time to optimize the fatigue performance of metallic materials.
Donhongprai P., Juijerm P.
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Influence of stress state and strain path on deformation induced martensitic transformations [PDF]
The mechanically induced transformation behavior of 12Crsingle bond9Nisingle bond 4Mo (ASTM A 564) austenitic stainless steel is investigated in different stress states.
Geijselaers, H.J.M. +2 more
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Effects of Ce addition on inclusion modification in martensitic stainless steel
The control of inclusion features, i.e., chemical composition, distribution, quantity, and size, is in high demand for stainless steels to achieve good surface quality, pitting corrosion resistance, and mechanical properties.
Lei Xing +5 more
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Prediction of the mechanical behaviour of TRIP steel [PDF]
TRIP steel typically contains four different phases, ferrite, bainite, austenite and martensite. During deformation the metastable retained austenite tends to transform to stable martensite.
Geijselaers, H.J.M., Perdahcioglu, E.S.
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FE calculations on a three stage metal forming process of Sandvik Nanoflex [PDF]
Sandvik NanoflexTM combines good corrosion resistance with high strength. This steel has good deformability in\ud austenitic conditions. It belongs to the group of metastable austenites, which means that during deformation a strain-induced\ud ...
Huetink, J. +3 more
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Numerical and experimental analysis of anisotropic damage growth and martensitic phase change due to plastic strain at ambient temperature [PDF]
This study investigates the anisotropic damage growth and martensitic phase transformation in AISI-316 austenitic stainless steel at room temperature. Initially, tensile and torsion tests were performed on samples at various displacements.
R. Barkhordari +2 more
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Microstructural alteration and oxidation behavior of boronized stainless steel AISI 440C after heat treatments [PDF]
The martensitic stainless steel AISI 440C was boronized at a temperature of 950 °C for about 4 hr. Heat treatments at a temperature of 850 °C for about 2-8 hr were performed to eliminate the FeB phase of the boride layer.
Patcharin Naemchanthara +1 more
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Thermo-structural Finite Element Analysis of Direct Laser Metal Deposited Thin-Walled Structures [PDF]
Multilayer direct laser metal deposition is a fabrication process in which the parts are fabricated by creating a molten pool into which particles are injected.
Dwivedi, Rajeev +2 more
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Pitting Resistance of the Modified 13Cr Martensitic Stainless Steel in Chloride Solution
In this study, the influence of molybdenum (Mo) and nickel (Ni) on the pitting resistance of the 13Cr martensitic stainless steels was investigated. X-ray diffraction analysis was performed to analyze the phases formed in the steels.
Moch. Syaiful Anwar +2 more
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Study on Failure Mechanism and Phase Transformation of 304 Stainless Steel during Erosion Wear
In this paper, the failure mechanism and phase transformation process of 304 stainless steel during the erosion wear process were studied with a rotary erosion wear test device.
Youjun Ye, Jing Li, Xingxing Lv, Lin Liu
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