Nickel is silvery-white. hard, malleable, and ductile metal. Pure nickel shows significant chemical activity, but larger pieces of the metal are slow to react with air due to the protective oxide surface.
Symbol: Ni Atomic number: 28 Atomic weight: 58.6934 Element category: transition metal Nickel is silvery-white. hard, malleable, and ductile metal. Pure nickel shows significant chemical activity, but larger pieces of the metal are slow to react with air due to the protective oxide surface. The major use of nickel is in the preparation of alloys. About 46% of nickel production is for making nickel steels, 34% in nonferrous alloys or super alloys, 14% electroplating, and 6% in other uses. Nickel alloys are characterized by strength, ductility, and resistance to corrosion and heat.
Nickel metallic’s key traits are:
High melting point, 1453 ºC Resists corrosion and oxidation Very ductile Alloys effectively Magnetic at room temperature May be deposited via electroplating Has catalytic houses
Reflecting those traits, nickel is broadly used in over 300,000 merchandise for consumer, business, army, transport, aerospace, marine, and architectural applications. the largest use is in alloying - in particular with chromium and other metals to produce stainless and warmth-resisting steels. those are used for pots and pans, kitchen sinks, and many others, as well as in homes, food processing devices, medical gadgets, and chemical flora.
About sixty-five percent of the nickel that is produced is used to manufacture stainless steel. any other 20% is used in other steel and non-ferrous alloys - regularly for exceedingly specialized commercial, aerospace, and army packages. approximately 9% is utilized in plating and 6% in other uses, along with coins, electronics, and batteries for portable systems and hybrid vehicles. In many of these applications, there's no replacement for nickel without lowering performance or increasing value.
Nickel is vital for healthful flowers. As an end result, it is located clearly in most vegetables, end result and nuts, and inside the meals products derived from them, for instance – chocolate and wine.
Stanford Advanced Materials (SAM) now can provide various Nickel products including:
Diverse Applications: Nickel's exceptional properties make it an indispensable element in a wide array of applications. From aerospace and electronics to metallurgy and catalysis, our nickel products empower industries with their extensive capabilities.
Metallurgical Excellence: Nickel is a crucial component in alloying, enhancing materials' strength, durability, and resistance to corrosion in harsh environments.
Electronics and Magnetism: Nickel's magnetic properties are essential for electronics, telecommunications, and the manufacturing of magnets for various applications.
Precision and Purity: Quality is integral to our nickel products. We adhere to strict industry standards and meticulous specifications, ensuring that our nickel maintains the purity necessary for superior performance and consistent results.
Technical Expertise: Our team possesses profound knowledge of the properties and applications of nickel. We offer personalized technical support and guidance, helping you leverage Nickel's unique characteristics for your specific needs.
Reliable Supply: We recognize the importance of a consistent supply of nickel products. Our global presence and efficient logistics ensure that you have access to Nickel when and where you need it.
Our Nickel Product Offerings:
SAM offers an array of nickel products that cater to diverse applications, including:
Aerospace and Aviation: Nickel-based alloys are used in aerospace applications, contributing to the strength, corrosion resistance, and high-temperature performance of aircraft components.
Electronics and Telecommunications: Nickel plays a vital role in electronics, from plating to providing magnetic properties in electrical components and devices.
Catalysis and Chemical Processes: Nickel catalysts are used in various chemical reactions, enhancing reaction rates and selectivity in the production of chemicals.
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