Stainless steel fuel tank for automobile
A fuel tank for a motor vehicle is fabricated from an austenitic stainless steel sheet having elongation of 50% or more after fracture by a uniaxial stretching test with a work-hardening coefficient of 4000 N/mm 2 or a ferritic stainless steel sheet having elongation of 30% or more after fracture with Lankford value of 1.3 or more. The stainless steel sheets are reformed to a complicated shape of a fuel tank without work flaws such as cracks or break-down. Excellent corrosion-resistance of stainless steel itself is maintained in the fabricated fuel tank. Consequently, the proposed fuel tank is used without diffusion of gasoline to the open air over a long term.
1. A fuel tank for a motor vehicle, which is made from an austenitic stainless steel sheet consisting of 0.10 mass % or less of C+N, 1.0 mass % or less of Si, less than 0.005 mass % of S, 1.0 mass % or less of Mn, 15-20 mass % of Cr, 5-19 mass % of Ni, 2.0-5 mass % of Cu, 0-3.0 mass % of Mo, 0-0.5 mass % of Al, 0-1.0 mass % of at least one selected from the group consisting of Ti, Nb, Zr and V, 0-0.1 mass % of B, 0-0.05 mass % of rare earth metals, 0-0.03 mass % of Ca and the balance being Fe except inevitable impurities, the austenitic stainless steel sheet having elongation of 50% or more after fracture by a uniaxial stretching test with a work-hardening coefficient of 4000 N/mm 2 or less, the austenitic stainless steel sheet being coated with a Cr-enriched passive film with more than 25 atomic % of Cr and less than 75 atomic % of Fe.
2. A fuel tank for a motor vehicle, which is made from a ferritic stainless steel sheet consisting of 0.10 mass % or less of C+N, 2.0 mass % or less of Si, 1.0 mass % or less of Mn, less than 0.01 mass % of S, 11-20 mass % of Cr, 0.60 mass % or less of Ni, 0.50 mass % or less of Cu, 0-3.0 mass % of Mo, 0-0.5 mass % of Al, 0-1.0 mass % of at least one selected from the group consisting of Ti, Nb, Zr and V, 0-0.1 mass % of B, 0-0.05 mass % of rare earth metals, 0-0.03 mass % of Ca and the balance being Fe except inevitable impurities, the ferritic stainless steel sheet having elongation of 30% or more after fracture by a uniaxial stretching test with Lankford value of 1.3 or more, the ferritic stainless steel sheet being coated with a Cr-enriched passive film with more than 25 atomic % of Cr and less than 75 atomic % of Fe.