430 Stainless Steel Sheets

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  • 430 Stainless Steel Sheets

Model:
430 Stainless Steel Sheets
Specifications
Article430 Cold Rolled stainless steel sheet
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

SUS430 chemical composition:
ElementsCSiMnPSCr
Specification0.120.751.000.0400.03016.00-18.00

The oxidation behavior of AISI 304 and AISI 430 stainless steels was investigated from 1100 °C up to 1200 °C. Mössbauer spectroscopy and x ray diffraction were used to access the phase composition of the formed scales. The main crystalline phases found in the oxidized materials at temperatures above 1100 °C were hematite and magnetite for AISI 430 steel, and hematite and a spinel-like phase for AISI 304 steel. Hematite was found to be the dominant oxide at lower temperatures, whereas magnetite preferentially forms at higher temperatures. The activation energy for oxidation is smaller for AISI 430 steel in relation to AISI 304 steel in the range of studied temperatures, and therefore the AISI 430 steel is less resistant towards oxidation at high temperatures.

The oxidation behavior at high temperatures of AISI 304 and AISI 430 stainless steels is strongly affected by the temperature and time, especially above 1100 °C. The activation energy for oxida¬tion is smaller for AISI 430 steel in relation to AISI 304 steel in the range of studied temperatures, and therefore the AISI 430 steel is less resistant towards oxidation at high temperatures in synthetic air atmosphere. The adherence of the formed scale is directly related to its composition, and therefore the characterization of the iron oxides present in the oxidized layer is very important. The main crystalline phases found in the oxidized materials at temperatures above 1100 °C were hematite and magnetite for AISI 430 steel, and hematite and a spinel-like phase for AISI 304 steel. The presence of this spinel-like phase can be associated to the higher oxidtion resist¬ance of the AISI 304 steel. Hematite was found to be the dominant oxide at lower temperatures, whereas magnetite preferentially forms at higher temperatures.


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