Cold-rolled steel sheet, method of producing the same, battery, and method of producing the same
    1.
    发明授权
    Cold-rolled steel sheet, method of producing the same, battery, and method of producing the same 失效
    冷轧钢板,其制造方法,电池及其制造方法

    公开(公告)号:US08388770B2

    公开(公告)日:2013-03-05

    申请号:US12282538

    申请日:2007-03-13

    IPC分类号: C22C38/00 C22C38/14

    摘要: A cold-rolled steel sheet has a composition containing, by mass percent, 0.0040% or less of C, 0.02% or less of Si, 0.14% to 0.25% of Mn, 0.020% or less of P, 0.015% or less of S, 0.0040% or less of N, 0.020% to 0.070% of Al, 0.005% to 0.030% of Nb, 0.005% to 0.030% of Ti, (0.0003% to 0.0010% of the equivalent amount of solid solution B (from which the amount of B forming BN has been subtracted)), and the balance composed of Fe and inevitable impurities, wherein even when the rolling reduction of cold rolling is 85% or less, the average grain size of a ferrite structure is reliably 12.0 μm or less, and the relationship −0.20≦Δr≦0.20 can be reliably satisfied and which has an excellent earing property.

    摘要翻译: 冷轧钢板的组成为:以质量%计含有C:0.02%以下,Si:0.14〜0.25%,P:0.020%以下,S:0.015%以下,0.0040% ,0.0040%以下的N,0.020〜0.070%的Al,0.005〜0.030%的Nb,0.005〜0.030%的Ti,(0.0003〜0.0010%的固溶B的当量) 已经减去了形成BN的B量)),余量由Fe和不可避免的杂质构成,即使在冷轧的压下率为85%以下的情况下,铁素体组织的平均粒径也可靠地为12.0μm以下 ,并且可以可靠地满足-0.20≦̸&Dgr; r≦̸ 0.20的关系,具有优异的耳朵特性。

    COLD-ROLLED STEEL SHEET, METHOD OF PRODUCING THE SAME, BATTERY, AND METHOD OF PRODUCING THE SAME
    2.
    发明申请
    COLD-ROLLED STEEL SHEET, METHOD OF PRODUCING THE SAME, BATTERY, AND METHOD OF PRODUCING THE SAME 失效
    冷轧钢板,其制造方法,电池及其制造方法

    公开(公告)号:US20090025838A1

    公开(公告)日:2009-01-29

    申请号:US12282538

    申请日:2007-03-13

    IPC分类号: C21D8/04 C22C38/00 H01M2/02

    摘要: A cold-rolled steel sheet has a composition containing, by mass percent, 0.0040% or less of C, 0.02% or less of Si, 0.14% to 0.25% of Mn, 0.020% or less of P, 0.015% or less of S, 0.0040% or less of N, 0.020% to 0.070% of Al, 0.005% to 0.030% of Nb, 0.005% to 0.030% of Ti, (0.0003% to 0.0010% of the equivalent amount of solid solution B (from which the amount of B forming BN has been subtracted)), and the balance composed of Fe and inevitable impurities, wherein even when the rolling reduction of cold rolling is 85% or less, the average grain size of a ferrite structure is reliably 12.0 μm or less, and the relationship −0.20≦Δr≦0.20 can be reliably satisfied and which has an excellent earing property.

    摘要翻译: 冷轧钢板的组成为:以质量%计含有C:0.02%以下,Si:0.14〜0.25%,P:0.020%以下,S:0.015%以下,0.0040% ,0.0040%以下的N,0.020〜0.070%的Al,0.005〜0.030%的Nb,0.005〜0.030%的Ti,(0.0003〜0.0010%的固溶B的当量) 已经减去形成BN的B量)),余量由Fe和不可避免的杂质构成,即使在冷轧的压下率为85%以下的情况下,铁素体组织的平均粒径可靠地为12.0μm以下 ,并且可以可靠地满足关系-0.20 <= Deltar <= 0.20,具有优异的耳朵特性。

    COLD-ROLLED STEEL SHEET AND PROCESS FOR PRODUCING THE SAME
    3.
    发明申请
    COLD-ROLLED STEEL SHEET AND PROCESS FOR PRODUCING THE SAME 审中-公开
    冷轧钢板及其制造方法

    公开(公告)号:US20090300902A1

    公开(公告)日:2009-12-10

    申请号:US12519539

    申请日:2006-12-20

    IPC分类号: H01M6/00 C21D8/04 C22C38/04

    摘要: A cold-rolled steel sheet that is suitable for battery cases and has low anisotropy is composed of, by mass %, C: ≦0.0030%, Si: ≦0.02%, Mn: 0.15 to 0.19%, P: ≦0.020%, S: ≦0.015%, N: ≦0.0040%, Al: 0.020 to 0.070%, Nb: 1.00≦Nb/C (atomic equivalent ratio)≦5.0, B: 1 ppm≦B-(11/14)N≦15 ppm (in the expression, B and N denote the contents of the respective elements), and the balance: being Fe and inevitable impurities, and has a planar anisotropy Δr of the r-value in the range of −0.10≦Δr≦0.10. In a process for producing the steel sheet, the cold rolling is performed at a rolling ratio of 70 to 87%, and then annealing is performed on a continuous annealing line at an annealing temperature of from the recrystallization temperature to 830° C.

    摘要翻译: 适用于电池壳体并且各向异性低的冷轧钢板以质量%计含有C:<= 0.0030%,Si:<= 0.02%,Mn:0.15〜0.19%,P:<0.020 %,S:<= 0.015%,N:<= 0.0040%,Al:0.020〜0.070%,Nb:1.00 <= Nb / C(原子当量比)<= 5.0,B:1ppm <= B- / 14)N <= 15ppm(在表达式中,B和N表示各元素的含量),余量为Fe和不可避免的杂质,并且在r值范围内具有平面各向异性Deltar -0.10 <= Deltar <= 0.10。 在钢板的制造方法中,以轧制率为70〜87%进行冷轧,然后在从再结晶温度至830℃的退火温度下在连续退火生产线上进行退火。