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진동제어에 의한 정밀기기의 고성능화를 위한 고강도 및 고감쇠능 합금개발

강창룡, 김익수

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Abstract

The effect of the addition of Co and N and subzero treatment on tensile strength and damping capacity was investigated in Fe-Cr-Mn alloy. Austenite was transformed into martensite by cold rolling increasing the degree of cold rolling led to an increase in the volume fraction of martensite. Th damping capacity linearly increased with increasing volume fraction of e martensite in cold rolled specimens and subzero treated specimens after cold rolling. The volume fraction of emartensite, tensile strength and damping capacity was also increased by the addition of Co, while this treatment decreased the elongation. However, the volume fraction of e martensite, elongation and damping capacity were reduced by the addition of N, although the tensile strength increased. Tensile strength and damping capacity werealso increased by subzero treatment, while elongation decreased.

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The effect of the addition of Co and N and subzero treatment on tensile strength and damping capacity was investigated in Fe-Cr-Mn alloy. Austenite was transformed into martensite by cold rolling increasing the degree of cold rolling led to an increase in the volume fraction of martensite. Th damping capacity linearly increased with increasing volume fraction of e martensite in cold rolled specimens and subzero treated specimens after cold rolling. The volume fraction of emartensite, tensile strength and damping capacity was also increased by the addition of Co, while this treatment decreased the elongation. However, the volume fraction of e martensite, elongation and damping capacity were reduced by the addition of N, although the tensile strength increased. Tensile strength and damping capacity werealso increased by subzero treatment, while elongation decreased.

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Available abstract

The effect of the addition of Co and N and subzero treatment on tensile strength and damping capacity was investigated in Fe-Cr-Mn alloy. Austenite was transformed into martensite by cold rolling increasing the degree of cold rolling led to an increase in the volume fraction of martensite. Th damping capacity linearly increased with increasing volume fraction of e martensite in cold rolled specimens and subzero treated specimens after cold rolling. The volume fraction of emartensite, tensile strength and damping capacity was also increased by the addition of Co, while this treatment decreased the elongation. However, the volume fraction of e martensite, elongation and damping capacity were reduced by the addition of N, although the tensile strength increased. Tensile strength and damping capacity werealso increased by subzero treatment, while elongation decreased.

Key concepts: Volume fraction, Elongation, Ultimate tensile strength, Martensite, Materials science, Austenite, Damping capacity, Alloy

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진동제어에 의한 정밀기기의 고성능화를 위한 고강도 및 고감쇠능 합금개발 — Research Paper | ScholarLens