304 Stainless Steel Plate

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We hold expertise in offering our quality conscious customers well defined 304 Stainless Steel Plate. We offer these in various specifications and designs as per the needs of our clients at market leading prices. The products offered by us stringently tested at every stage of development to ensure for high quality and attractive designs.
  • 304 Stainless Steel Plate

Model:
304 Stainless Steel Plate
Specifications
Article304 Cold Rolled stainless steel plate
StandardAISI, ASTM, GB, JIS
Widthas your requirement
SurfaceBA
typePlate / Strip / Sheet / Coil
Thickness0.4mm; 0.5mm; 0.6mm; 0.7mm; 0.8mm; 0.9mm; 1.0mm; 1.1mm; 1.2mm; 1.3mm; 1.4mm; 1.5mm; 1.6mm; 1.7mm; 1.8mm; 1.9mm; 2.0mm~4.0mm
UsageCold-rolled, bright annealed and skin passed products with extremely good surface glossiness and high reflectivity, are used in building decoration, home appliance product and kitchen installation, etc.
Parkingwooden packing or as your requirement
PaymentSmall quantity: T/T at sight, 30% in advance , 70% after receiving the B/L cop ; Large quantity:L/C at sight
Delivery Time15days after received T/T or L/C

SUS304 chemical composition:
ElementsCSiMnPSCrNi
Specification0.081.002.000.0450.03018.0-20.08.00-10.50

All standard grades of stainless steel contain iron, carbon and a minimum of 11.5% chromium, the element responsible for the inherent corrosion resistance of the alloy. All stainless steels resist corrosion, although the degree of resistance to attack by many common chemicals, food products and other materials is variable. To enhance or supplement the effect of chromium, other alloying elements are added to straight chromium stainless steels as follows:

1. Nickel— to stabilize the austenitic structure, improve forming properties, increase ductility, high temperature strength and corrosion resistance (particularly in industrial and marine atmospheres, chemical, food and textile processing industries).
2. Silicon— to increase scaling resistance and resist carburizing at high temperatures.
3. Manganese— to improve hotworking properties, increase yield and tensile strengths (above 2%), partially replace nickel and stabilize the austenitic structure.
4. Molybdenum— to increase corrosion resistance (particularly in sulfite, sulfate, acetic acid and acetate solutions and salt water atmosphere), increase creep resistance, increase strength at elevated temperatures, expand range of passivity and counteract tendency to pit.
5. Titanium, ColumbiumTantalum—to prevent intergranular corrosion by stabilizing the carbon as titanium or columbium carbides instead of chromium carbides, produce finer grain size, reduce stretcher strains from drawing and forming in Type 430.
6. Sulphur, Phosphorus and Selenium— to improve machinability.
7. Additional Chromium— to increase scaling, wear and corrosion resistance and increase tensile strength.



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