What is the Difference Between Nickel-based Alloys and Ordinary Stainless Steel
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In fact, in essence, nickel-based alloys are also a kind of stainless steel.
They are just special stainless steels. The chemical composition is also
different from ordinary stainless steel. Nickel-based alloys are high in nickel,
high chromium, and high molybdenum. A high-alloy stainless steel of high-alloy
Among them, the famous steel is 6% Mo (254SMo). This steel has good local
corrosion resistance. It has good pitting corrosion resistance and better stress
corrosion resistance under the conditions of seawater, aeration, clearance and
low-speed scouring (PI≥40). It is an alternative material for nickel-based
alloys and titanium alloys. Secondly, it has excellent high temperature or high
temperature corrosion resistance or corrosion resistance. It is irreplaceable
for 304 stainless steel. In addition, from the perspective of the classification
of stainless steel, the metallographic structure of special stainless steel is a
stable austenitic metallurgical structure.
Because nickel-based alloy is a high-alloy high-performance special material,
its manufacturing process will be more complicated than ordinary stainless steel
products. At present, most of them still rely on traditional processes for
manufacturing, such as: infusion, forging, rolling and other processes.
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The negative electrode material is the carrier of lithium ions and electrons during the charging process of the battery and plays the role of energy storage and release. In the battery cost, the negative electrode material accounts for about 5%-15%, which is one of the important raw materials for lithium-ion batteries. The global sales of lithium battery anode materials are about 100,000 tons, mainly in China and Japan. According to the current growth trend of new energy vehicles, the demand for anode materials will also show a state of continuous growth. At present, the global lithium battery anode materials are still dominated by natural/artificial graphite, and new anode materials such as mesh carbon microspheres (MCMB), lithium titanate, silicon-based anodes, HC/SC, and metal lithium are also growing rapidly.
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