The Mechanical Properties of a Low Alloyed Austempered Ductile Iron in the Upper Austferrite Region
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概要
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Microstructural observations, X-ray diffraction testing and measurements of mechanical properties were used to study the characteristics of austempering and the influence of tempered martensite on mechanical properties as a function of austempering time at 400ºC after austenitising at 900ºC for a 0.77%Cu-0.5%Ni ductile iron. The austempering times were derived from a resistivity curve measured by a vacuum heat treatment system. The experimental results show that the resistivity change curve could be used effectively for selecting the isothermal holding times of austempering treatment, with all the mechanical properties of ADI austempering at times corresponding to the processing window defined by the electrical resistance measurement satisfying the standard requirement. The formation of martensite in austempering reduced the mechanical properties of ADI but these properties could be increased by a treatment tempering at 200ºC after cooling and to obtain more ductility and toughness as compared with that undergoing single heat treatment. This increase also extended the effective austempering time interval of ADI over which the ASTM standards were satisfied.
- 社団法人 日本鉄鋼協会の論文
- 1999-05-15
著者
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Wen D
Department Of Mechanical Engineering National Taiwan University Of Science And Technology
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Wen Dong
Department Of Mechanical Engineering China Institute Of Technology
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LEI Tien
Department of Mechanical Engineering, National Taiwan University of Science and Technology
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Lei T
Department Of Mechanical Engineering National Taiwan University Of Science And Technology
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Lei Tien
Department Of Mechanical Engineering National Taiwan University Of Science And Technology
関連論文
- Effect of Nitrocarburizing Time on the Microstructures and Erosion Behavior of Cold-work Tool Steel
- The Processing Window for Austempering Ductile Iron
- The Mechanical Properties of a Low Alloyed Austempered Ductile Iron in the Upper Austferrite Region
- Particle Erosion of SUS403 Tempered Martensitic Stainless Steel