BS 6582-2000
连续热浸铅合金(铅锡合金)镀层的冷轧扁平碳钢制品

Continuously hot-dip lead alloy (terne) coated cold reduced carbon steel flat rolled products


BS 6582-2000 发布历史

This British Standard specifies requirements for continuously hot-dip lead alloy (terne) coated cold reduced low carbon steel flat products in drawing and forming grades. This standard applies to flat products from over 0.4 mm up to and including 2.0 mm thick and widths up to 1350 mm, in strip and sheet. It applies to products with terne coatings having a nominal mass of 120 g/m and to commercial grade terne coating (CGT) having no specified coating mass but meeting the other requirements of this standard. NOTE The products in this standard can be used for applications where suitability for soldering and cold forming are required and corrosion resistance is a principal factor. The coating mass specified and the thickness of the base material should be compatible with the desired service life and forming requirements.

BS 6582-2000由英国标准学会 GB-BSI 发布于 2000-06-15,并于 2000-06-15 实施。

BS 6582-2000 在中国标准分类中归属于: H46 钢板、钢带,在国际标准分类中归属于: 77.140.50 扁平钢和半成品。

BS 6582-2000的历代版本如下:

  • 2000年06月15日 BS 6582-2000 连续热浸铅合金(铅锡合金)镀层的冷轧扁平碳钢制品

 

 

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标准号
BS 6582-2000
发布日期
2000年06月15日
实施日期
2000年06月15日
废止日期
中国标准分类号
H46
国际标准分类号
77.140.50
发布单位
GB-BSI
被代替标准
BS 6582-1985 99/13312 DC
适用范围
This British Standard specifies requirements for continuously hot-dip lead alloy (terne) coated cold reduced low carbon steel flat products in drawing and forming grades. This standard applies to flat products from over 0.4 mm up to and including 2.0 mm thick and widths up to 1350 mm, in strip and sheet. It applies to products with terne coatings having a nominal mass of 120 g/m and to commercial grade terne coating (CGT) having no specified coating mass but meeting the other requirements of this standard. NOTE The products in this standard can be used for applications where suitability for soldering and cold forming are required and corrosion resistance is a principal factor. The coating mass specified and the thickness of the base material should be compatible with the desired service life and forming requirements.




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