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Study on Abrasive Resistance of Haystellite7 Alloy Coating Prepared by Flame Remelting

Hou Huixi

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Abstract

The Haystellite7 flame remelting coating was formed by oxygen acetylene flare, the abrasion behavior of N80 low carbon steel wipe and Haystellite7 remelting coating was compared under the same experiment condition. The microstructure of alloy coating was observed by SEM and the elements in coating were analysed by EDS. The results show that the abrasion resistance of Haystellite7 remelting coating is better than N80 low carbon steel pipe.

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What this paper is about

The Haystellite7 flame remelting coating was formed by oxygen acetylene flare, the abrasion behavior of N80 low carbon steel wipe and Haystellite7 remelting coating was compared under the same experiment condition. The microstructure of alloy coating was observed by SEM and the elements in coating were analysed by EDS. The results show that the abrasion resistance of Haystellite7 remelting coating is better than N80 low carbon steel pipe.

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Available abstract

The Haystellite7 flame remelting coating was formed by oxygen acetylene flare, the abrasion behavior of N80 low carbon steel wipe and Haystellite7 remelting coating was compared under the same experiment condition. The microstructure of alloy coating was observed by SEM and the elements in coating were analysed by EDS. The results show that the abrasion resistance of Haystellite7 remelting coating is better than N80 low carbon steel pipe.

Key concepts: Coating, Materials science, Abrasive, Metallurgy, Microstructure, Abrasion (mechanical), Alloy, Carbon fibers

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