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9 AM TO 6 PM
Manjunatha Metal Finishers
No.784, 11th Cross, Peenya Industrial Area
We offer high-quality zinc coating solutions to meet a variety of industrial needs. Our zinc electroplating process provides excellent corrosion resistance, enhanced durability, and aesthetic appeal to a wide range of metal substrates. The zinc coating adds an extra layer of durability to the substrate, extending its lifespan and reducing the need for frequent maintenance or replacement.
Zinc-nickel alloy coatings provide superior corrosion protection, even in challenging environments such as automotive under-the-hood applications and marine environments. Our advanced electroplating techniques ensure uniform coverage and thickness distribution across complex geometries, ensuring consistent performance across all coated surfaces.
We offer high-quality zinc coating solutions to meet a variety of industrial needs. Our zinc electroplating process provides excellent corrosion resistance, enhanced durability, and aesthetic appeal to a wide range of metal substrates. The zinc coating adds an extra layer of durability to the substrate, extending its lifespan and reducing the need for frequent maintenance or replacement.
Zinc-cobalt alloy coatings provide superior corrosion protection, even in challenging environments such as automotive under-the-hood applications and marine environments. The addition of cobalt enhances the corrosion resistance compared to traditional zinc coatings. Zinc-cobalt coatings exhibit high ductility, allowing them to withstand mechanical stress without cracking or peeling. This makes them suitable for use in applications where flexibility and durability are essential.
Copper electroplating is widely used in the electronics industry to create conductive traces on PCBs, facilitating the flow of electricity between components and ensuring reliable performance of electronic devices. We operate modern facilities equipped with advanced electroplating equipment and technologies to deliver superior coatings efficiently and cost-effectively.
With our advanced nickel electroplating techniques, we offer precision finishes that meet the rigorous standards of industries such as automotive, aerospace, electronics, and more. Nickel coatings promote excellent solderability, making them suitable for electronic components, connectors, and terminals in the electronics industry.
Tin electroplating provides a bright, attractive finish that enhances the appearance of metal surfaces. It can be used for decorative applications in jewelry, decorative hardware, and household items, offering a lustrous, reflective finish. Tin electroplating exhibits high ductility, allowing it to withstand mechanical stress without cracking or peeling. This makes it suitable for use on components subjected to bending, flexing, or vibration.
Silver is one of the most conductive metals, making it an ideal choice for applications requiring high electrical conductivity. Silver-plated surfaces ensure efficient electrical transmission, minimizing signal loss and maximizing performance in electronic components and connectors. Silver-plated surfaces exhibit excellent solderability, ensuring reliable bonding in electronic assemblies and soldered joints. The smooth, uniform coating promotes strong adhesion and optimal performance in soldering processes.
Zinc-iron alloy coatings exhibit higher hardness than pure zinc coatings, providing added strength and durability to coated components. This makes them suitable for applications where abrasion resistance and wear protection are essential. Our advanced electroplating techniques ensure uniform coverage and thickness distribution of zinc-iron alloy coatings across complex geometries, ensuring consistent performance and protection across all coated surfaces.
Phosphate coatings create a roughened surface with micro-irregularities that enhance paint adhesion, ensuring strong bonding between the substrate and paint layers. This improves the durability and longevity of painted components. Phosphating serves as an effective pre-treatment method for subsequent coating processes such as painting, powder coating, and electrocoating. It prepares the surface by removing contaminants and providing a clean, uniform substrate for optimal coating adhesion.