4.4 Article Proceedings Paper

Warm Spraying of High-Strength Ni-Al-Bronze: Cavitation Characteristics and Property Prediction

Journal

JOURNAL OF THERMAL SPRAY TECHNOLOGY
Volume 26, Issue 1-2, Pages 265-277

Publisher

SPRINGER
DOI: 10.1007/s11666-016-0487-4

Keywords

bronze-coatings; cavitation erosion; marine components; protective coatings; simulation; warm spraying

Funding

  1. research community Center of Maritime Technologies (CMT), Bramfelder Strasse Hamburg [18449 BG/1]
  2. AiF within Industrial Joint Research (IGF) of the German Federal Ministry of Economic Affairs and Energy based on an enactment of the German parliament

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Bronze materials such as Ni-Al-bronze show exceptional performances against cavitation erosion, due to their high fatigue strength and high strength. These materials are used for ship propellers, pump systems or for applications with alternating stresses. Usually, the respective parts are cast. With the aim to use resources more efficiently and to reduce costs, this study aimed to evaluate opportunities to apply bronze as a coating to critical areas of respective parts. The coatings should have least amounts of pores and non-bonded areas and any contaminations that might act as crack nuclei and contribute to material damages. Processes with low oxidation and high kinetic impacts fulfill these criteria. Especially warm spraying, a nitrogen-cooled HVOF process, with similar impact velocities as cold gas spraying but enhanced process temperature, allows for depositing high-strength Ni-Al-bronze. This study systematically simulates and evaluates the formation and performance of warm-sprayed Ni-Al-bronze coatings for different combustion pressures and nitrogen flow rates. Substrate preheating was used to improve coating adhesion for lower spray parameter sets. Furthermore, this study introduces an energy-based concept to compare spray parameter sets and to predict coating properties. Coatings with low porosities and high mechanical strengths are obtained, allowing for a cavitation resistance similar to bulk material.

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