YS/T 995-2014 Abolished Industry standards-Non-ferrous metals

YS/T 995-2014 Anode plate for zinc electrolysis in hydrometallurgy

YS/T 995-2014 Anode plate for zinc electrolysis in hydrometallurgy

Publish Date: 2014-10-14 Implement Date: 2015-04-01 For services related to genuine standard inquiry, procurement, translation, and other related services in China, please Contact Us

Basic Information

Standard Code: YS/T 995-2014
Standard Type: Industry standards
Standard Status: Abolished
is_force_gb: no
CCS Name: Heavy metals and their alloys
ICS Name: Lead, zinc, and tin products
Publish Date: 2014-10-14
Implement Date: 2015-04-01
Pages: 12 pages

Scope

This standard specifies the terms and definitions, requirements, test methods, inspection rules and marking, packaging, transportation, storage, and quality certificates, as well as the content of contracts (or purchase orders) for anode plates used in wet metallurgical electrolytic zinc production (hereinafter referred to as anode plates).
This standard applies to anode plates used in wet metallurgical electrolytic zinc production, which are produced by adding elements such as silver, calcium, strontium, and rare earths to lead as the basic raw material, in accordance with specific formulations and processes.

Development Information

Word Count: 18 Thousand words Pages: 12 pages

Referenced Standards

GB/T 228.1-2010 Metallic materials—Tensile testing—Part 1:Method of test at room temperature GB/T 231.1-2002 Metallic materials—Brinell hardness test—Part 1:Test method GB/T 231.1-2009 Metallic materials—Brinell hardness test—Part 1:Test method GB/T 231.1-2018 Metallic materials—Brinell hardness test—Part 1:Test method GB/T 469-1995 Lead ingots GB/T 469-2005 Lead ingots GB/T 469-2013 Lead ingots GB/T 469-2023 Lead ingots GB/T 4103.1-2000 Methods for chemical analysis of lead and lead alloys—Determination of tin content GB/T 4103.1-2012 Methods for chemical analysis of lead and lead alloys—Part 1:Determination of tin content GB/T 4103.2-2000 Methods for chemical analysis of lead and lead alloys—Determination of antimony content GB/T 4103.2-2012 Methods for chemical analysis of lead and lead alloys—Part 2:Determination of antimony content GB/T 4103.3-2000 Methods for chemical analysis of lead and lead alloys—Determination of copper content GB/T 4103.3-2012 Methods for chemical analysis of lead and lead alloys—Part 3:Determination of copper content GB/T 4103.4-2000 Methods for chemical analysis of lead and lead alloys—Determination of iron content GB/T 4103.4-2012 Methods for chemical analysis of lead and lead alloys—Part 4:Determination of iron content GB/T 4103.5-2000 Methods for chemical analysis of lead and lead alloys—Determination of bismuth content GB/T 4103.5-2012 Methods for chemical analysis of lead and lead alloys—Part 5:Determination of bismuth content GB/T 4103.6-2000 Methods for chemical analysis of lead and lead alloys—Determination of arsenic content GB/T 4103.6-2012 Methods for chemical analysis of lead and lead alloys—Part 6:Determination of arsenic content GB/T 4103.9-2000 Methods for chemical analysis of lead and lead alloys—Determination of calcium content GB/T 4103.9-2012 Methods for chemical analysis of lead and lead alloys—Part 9:Determination of calcium content GB/T 4103.10-2000 Methods for chemical analysis of lead and lead alloys—Determination of silver content GB/T 4103.10-2012 Methods for chemical analysis of lead and lead alloys—Part 10:Determination of silver content GB/T 4103.11-2000 Methods for chemical analysis of lead and lead alloys—Determination of zinc content GB/T 4103.11-2012 Methods for chemical analysis of lead and lead alloys—Part 11:Determination of zinc content GB/T 4135-2002 Silver GB/T 4135-2016 Silver ingots GB/T 8888-2003 Wrought heavy non-ferrous metal products-Packing,marking,transporting and storing GB/T 8888-2014 Wrough heavy non-ferrous metal products-packing,marking,transportation,storing and cetificate of quality GB/T 12689.11-2004 The methods for chemical analysis of zinc and zinc alloys—The determination of lanthanum and cerium contents—The tri-bromide arsenazo spectrophotometric method

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