18.97.14.86
18.97.14.86
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Candidate
화염급냉 표면처리된 Cu-8.8Al-4.5Ni-4.5Fe 합금의 미세구조 분석 및 내마모성에 관한 연구
Research Characterization of the Microstructure and the Wear Resistance of the Flame-Quenched Cu-8.8Al-4.5Ni-4.5Fe Alloy
이민구 ( M. K. Lee ) , 홍성모 ( S. M. Hong ) , 김광호 ( G. H. Kim ) , 김경호 ( K. H. Kim ) , 김홍회 , ( W. W. Kim )
UCI I410-ECN-0102-2009-570-001814274

The flame quenching process has been employed to modify the surfaces of commercial marine propeller material, aluminum bronze alloy (Cu-8.8AI-5Ni-5Fe), and the microstructure, hardness and wear properties of the flame-quenched layers have been studied. The thermal history was accurately monitored during the process with respect to both the designed maximum surface temperature and holding time. The XRD and EDX analysis have shown that at temperatures above T_(β), the microstructure consisting of α+κ phases changed into the α+ß` martensite due to an eutectoid reaction of α+κ→ß, and a martensitic transformation of ß→ß`. The ß` martensite phase formed showed a face-centered cubic (FCC) crystal structure with the typical twinned structure. The hardness of the flame-quenched layer having the α+ß` structure was similar to that of the α+ß structure and depended sensitively on the size and distribution of hard κ and ß` phases with depth from the surface. As a result of the sliding wear test, the wear resistance of the flame-quenched layer was markedly enhanced with the formation of the ß` martensite.

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