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Szczegóły Produktu:
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| Kolor: | Srebrny | Zn (min.): | 99,995% |
|---|---|---|---|
| Funkcja: | Odporność na korozję | Miejsce pochodzenia: | Chiny |
| Obróbka powierzchniowa: | Ocynkowany | Uszczelka: | Zgodnie z Twoją prośbą |
| Zawartość cynku: | ≥ 99,99% | Zakres średnic: | 1,6 mm / 2,0 mm / 2,5 mm |
| Tolerancja średnicy: | ±0,02 mm - ±0,05 mm | Temperatura topnienia: | 419,5 ° C. |
| Metoda sprayu: | Natrysk łukowy / natrysk termiczny | Trwałość ochrony przed korozją: | 10 -30+ lat |
| Czystość cynku: | ≥ 99,995% | Zakres średnic: | 0,8 mm - 3,17 mm |
| Stan powierzchni: | Gładka / o niskiej zawartości tlenków | Czystość cynku: | 99,9% / 99,95% / 99,995% |
| Gęstość: | 7,14 g/cm3 |
Marine and shipbuilding environments are among the most aggressive corrosion conditions due to continuous exposure to saltwater, humidity, and oxygen-rich air. High purity zinc wire provides a sacrificial corrosion protection layer, ensuring steel structures are protected through electrochemical activity.
When applied using arc spray systems, zinc wire melts and forms a dense metallic coating that prevents direct contact between steel and corrosive agents. This significantly reduces rust formation and extends the service life of vessels, docks, offshore platforms, and ship hull structures.
| Item | Specification |
|---|---|
| Product Name | High Purity Zinc Wire |
| Standard | ASTM B833 |
| Zinc Purity | 99.9% / 99.99% / 99.995% |
| Diameter Range | 0.8mm – 3.17mm |
| Production Process | Precision cold drawing |
| Surface Condition | Smooth, clean, low-oxide |
| Density | 7.14 g/cm³ |
| Melting Point | 419.5°C |
| Feeding Type | Arc spray / thermal spray compatible |
| Application Industry | Marine / shipbuilding / offshore / steel structures |
| Packaging | Spool / coil / export packing |
| Quality Control | SGS / BV / third-party inspection available |
| Customization | Diameter, spool weight, purity level |
In marine environments, corrosion is driven by chloride ions and constant moisture exposure. Zinc wire acts as a sacrificial anode material, meaning it corrodes instead of the steel substrate.
During arc spraying, molten zinc particles are deposited onto steel surfaces, forming a protective layer that provides:
This makes zinc wire an essential consumable in ship maintenance and offshore infrastructure protection programs.
| Item | Non-Standard Zinc Wire | ASTM B833 Zinc Wire |
|---|---|---|
| Standardization | No fixed industrial standard | Strict ASTM B833 compliance |
| Purity Stability | Varies batch to batch | Controlled and consistent |
| Arc Stability | Moderate | High stability in spraying |
| Coating Quality | Uneven layer risk | Uniform and dense coating |
| Application Safety | General use | Critical marine applications |
ASTM B833 compliance ensures predictable performance in large-scale industrial corrosion protection systems, especially where coating failure is not acceptable.
| Item | Industrial Grade | ASTM B833 Grade |
|---|---|---|
| Purity Range | ~99.5% – 99.9% | Up to 99.995% |
| Surface Quality | Standard finish | Low-oxide smooth finish |
| Spray Efficiency | Medium | High deposition efficiency |
| Equipment Compatibility | Basic systems | Advanced arc spray systems |
| Marine Use Suitability | Limited | Fully suitable |
Higher purity levels directly improve coating consistency and reduce spray defects in high-demand marine environments.
Surface condition directly affects arc stability during spraying. Oxidized or contaminated surfaces can cause:
High purity zinc wire with controlled surface oxidation ensures:
Yes. High purity zinc wire is widely used in offshore structures such as oil platforms, harbor facilities, and marine pipelines. It provides long-term protection against saltwater corrosion and mechanical wear.
Key benefits in offshore use include:
Zinc wire is typically supplied in:
Proper packaging ensures:
ASTM B833 high purity zinc wire is a critical material for marine and shipbuilding corrosion protection systems. Its controlled purity, stable arc performance, and superior coating consistency make it the preferred choice for offshore infrastructure and steel structure protection.
It ensures long-term durability, reduced maintenance costs, and reliable performance in the harshest environments.
It is used for arc spray corrosion protection in marine, offshore, and steel structure applications.
Because higher purity improves coating uniformity and ensures stronger long-term corrosion resistance.
Common diameters include 1.6mm, 2.0mm, and 3.17mm depending on spray equipment.
Yes, it is widely used for offshore corrosion protection systems.
Arc spray uses electrical arc melting, while thermal spray may use combustion or plasma heating methods.
Yes, it ensures consistent chemical composition, mechanical properties, and surface quality for industrial use.
Osoba kontaktowa: Mr. xie