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      13Cr 마르텐사이트계 스테인리스강의 템퍼링 성질에 미치는 Mo 첨가의 영향 = Mechanical Behavior;Influence of Mo Addition on the Tempered Properties of 13Cr Martensitic Stainless Steel

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      https://www.riss.kr/link?id=A3234424

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      In order to investigate the effect of Mo addition on the mechanical properties of 13Cr-0.2C martensitic stainless steel, tensile test and Charpy V-notch test were performed after tempering at the temperature range of 200∼700℃ following austenitizing at 1100℃. The yield strength and hardness of the steel were increased with the increase of Mo content at all tempering conditions, because Mo causes retardation of precipitation and coarsening of carbides and solid solution strengthening of matrix. Except 500℃ of tempering temperature. the Charpy impact energy was significantly increased with Mo content and showed the highest value at 1.5 wt.% addition. The increase of impact energy of the steel containing Mo is thought to be caused by δ-ferrite formed in the tempered martensitic matrix. At 500℃ tempering, Charpy impact energy was decreased drastically due to temper embrittlement and it was not possible to prevent it even though Mo was added up to 1.5 wt.%.
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      In order to investigate the effect of Mo addition on the mechanical properties of 13Cr-0.2C martensitic stainless steel, tensile test and Charpy V-notch test were performed after tempering at the temperature range of 200∼700℃ following austenitizi...

      In order to investigate the effect of Mo addition on the mechanical properties of 13Cr-0.2C martensitic stainless steel, tensile test and Charpy V-notch test were performed after tempering at the temperature range of 200∼700℃ following austenitizing at 1100℃. The yield strength and hardness of the steel were increased with the increase of Mo content at all tempering conditions, because Mo causes retardation of precipitation and coarsening of carbides and solid solution strengthening of matrix. Except 500℃ of tempering temperature. the Charpy impact energy was significantly increased with Mo content and showed the highest value at 1.5 wt.% addition. The increase of impact energy of the steel containing Mo is thought to be caused by δ-ferrite formed in the tempered martensitic matrix. At 500℃ tempering, Charpy impact energy was decreased drastically due to temper embrittlement and it was not possible to prevent it even though Mo was added up to 1.5 wt.%.

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