Zinc-Nickel Alloy
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Corrosion Resistance Priority · Excellent Strength · Wide Environmental Adaptability. It overcomes pure zinc’s limitations, integrating "super corrosion resistance, strong load-bearing capacity, and wide adaptability" for high-end applications.
Electroplating: Use powder to prepare bath; control temperature/current for uniform coatings.
Die Casting: Melt ingots, remove impurities; die cast/forge for dense, defect-free parts.
Storage: Dry, ventilated warehouse; avoid water/corrosive gases; moisture-proof packaging for powder/wire.
Customized services (Ni content adjustment, form customization) and on-site technical guidance (smelting, electroplating) are available.
Core Advantages
Forms dense passivation film, resisting chlorides, sulfides, and acids; far superior to pure Zn and traditional Zn coatings for marine/industrial environments.
High tensile strength + good ductility; withstands impact/deformation without cracking, suitable for coatings and structural parts.
Maintains stable structure within broad temperature range; adapts to engine compartments and aerospace scenarios.
Lead-free/cadmium-free; meets REACH & RoHS; no toxic waste in coating process, aligning with green production.
Compatible with electroplating, thermal spraying, die-casting, welding; strong coating adhesion, high-precision die-castings.
Application Scenarios
Chassis components, brake systems, fuel pipelines (resists road salt/humidity).
Hydraulic parts, landing gear accessories, electronic housings (withstands high altitude/temperature changes).
Ship hulls, offshore platforms, marine pipelines (resists seawater/marine atmosphere).
Connectors, battery casings, communication parts (stable in humid/corrosive environments).
Oil well pipes, valves, pipeline joints (resists crude oil/well fluids).
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