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416 is a martensitic free-working chromium steel alloy, which is generally considered a first free-working stainless steel. It has the highest machinability of any stainless steel, about 85% of free-machining carbon steel. Martensitic stainless steels are designed to harden by heat treatment and have corrosion resistance. Although the corrosion resistance of 416 alloy and other martensitic stainless steels is not as good as that of austenitic or ferritic stainless steels, it still exhibits good corrosion and oxidation resistance and high strength in hardened and tempered conditions.
301 grade stainless steel is a common austenitic stainless steel with good corrosion resistance and high carbon content, and can be cold worked to various temperatures. Among stainless steels, 301 is the most easily strengthened steel by cold deformation. Cold deformation processing can improve the strength and hardness of steel, and retain sufficient plasticity and toughness. In addition, this steel has good rust resistance under atmospheric conditions, but its corrosion resistance in reducing media is poor, and its corrosion resistance in chemical media such as acid, alkali and salt is poor. Therefore, it is not recommended for corrosive environments.
301 grade stainless steel is a common austenitic stainless steel with good corrosion resistance and high carbon content, and can be cold worked to various temperatures. Among stainless steels, 301 is the most easily strengthened steel by cold deformation. Cold deformation processing can improve the strength and hardness of steel, and retain sufficient plasticity and toughness. In addition, this steel has good rust resistance under atmospheric conditions, but its corrosion resistance in reducing media is poor, and its corrosion resistance in chemical media such as acid, alkali and salt is poor. Therefore, it is not recommended for corrosive environments.
GB/T700 GB/T1591 Carbon Steel Plate
The equivalent material of GB/T700 Q275 carbon steel and low alloy steel plate is S275JR steel plate. S275JR steel plate is a general-purpose carbon structural steel. This steel is similar to the steels listed in China GB/T700 and GB/T1591. It is also a carbon structural steel and low alloy structural steel used in engineering steel and structural steel, which is usually not heat treated. GB/T1591 steel plate is a Chinese standardized low alloy medium tensile strength steel plate produced by hot rolling process. GB/T1591 steel plate has a variety of manufacturing purposes.
202 stainless steel is an austenitic chromium-nickel-manganese alloy. It has high ductility, good corrosion resistance and excellent toughness in both high and low temperature environments. 202 stainless steel is one of the most widely used 200 series stainless steel. 202 stainless steel, the austenitic structure is stabilized by the addition of nickel and manganese, thereby preventing the formation of harmful phases, such as sigma phase or chromium carbide. The high nickel content also improves the corrosion and oxidation resistance of the steel at high temperatures.
Copper wire has good electrical and thermal conductivity, corrosion resistance and processing properties, and can be soldered and brazed with copper. Containing fewer impurities that reduce electrical and thermal conductivity, trace oxygen has little impact on electrical and thermal conductivity and processing properties, but it is easy to cause "hydrogen disease" and is not suitable for processing (annealing, welding, etc.) and use in a reducing atmosphere at high temperatures (such as >370°)
Copper wire has good electrical and thermal conductivity, corrosion resistance and processing properties, and can be soldered and brazed with copper. Containing fewer impurities that reduce electrical and thermal conductivity, trace oxygen has little impact on electrical and thermal conductivity and processing properties, but it is easy to cause "hydrogen disease" and is not suitable for processing (annealing, welding, etc.) and use in a reducing atmosphere at high temperatures (such as >370°)
Copper wire has good electrical and thermal conductivity, corrosion resistance and processing properties, and can be soldered and brazed with copper. Containing fewer impurities that reduce electrical and thermal conductivity, trace oxygen has little impact on electrical and thermal conductivity and processing properties, but it is easy to cause "hydrogen disease" and is not suitable for processing (annealing, welding, etc.) and use in a reducing atmosphere at high temperatures (such as >370°)