YS/T 581.18-2012 氟化铝化学分析方法和物理性能测定方法 第18部分:X射线荧光光谱分析(压片)法测定元素含量
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来源:标准资料网
基本信息
标准名称: | 氟化铝化学分析方法和物理性能测定方法 第18部分:X射线荧光光谱分析(压片)法测定元素含量 |
发布部门: | 中华人民共和国工业和信息化部 |
发布日期: | 2012-12-28 |
实施日期: | 2013-06-01 |
首发日期: | |
作废日期: | |
出版社: | 中国标准出版社 |
出版日期: | 2013-06-01 |
适用范围
本标准规定了X射线荧光光谱(压片)法测定氟化铝中氟、铝、钠、硅、铁、硫、磷、钙(分别以F、Al、Na、SiO2、Fe2O3、SO42-、P2O5、CaO表示)等元素的方法。
本标准适用于氟化铝中氟、铝、钠、硅、铁、硫、磷、钙等元素的测定。
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所属分类: 石油 石油产品 燃料油
基本信息
标准名称: | 环境审核指南 环境审核员资格要求 |
英文名称: | Guidelines for environmental auditing--Qualification criteria for environmental auditors |
中标分类: |
环境保护 >>
环境保护综合 >>
标准化、质量管理 |
ICS分类: |
环保、保健与安全 >>
环境保护
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替代情况: | 被GB/T 19011-2003代替 |
发布日期: | 1996-12-20 |
实施日期: | 1997-04-01 |
首发日期: | 1900-01-01 |
作废日期: | 1900-01-01 |
出版日期: | 1900-01-01 |
页数: | 20页 |
适用范围
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所属分类: 环境保护 环境保护综合 标准化 质量管理 环保 保健与安全 环境保护
Product Code:SAE AIR810
Title:Degradation Limits of Hydrocarbon-Based Hydraulic Fluids, MIL-H-5606, MIL-H-6083, MIL-H-83282, and MIL-H-46170 Used in Hydraulic Test Stands
Issuing Committee:A-6c3 Fluids Committee
Scope: Previous versions of AIR810 were devoted exclusively to MIL-H-5606, since it was the most widely used hydraulic fluid in military aircraft at that time. Since the latest revision of AIR810A, however, which appeared in 1968, MIL-H-5606 has been replaced in many applications by the less flammable synthetic hydrocarbon-based fluid MIL-H-83282. MIL-H-6083, a rust-inhibited version of MIL-H-5606 has found use in the hydraulic systems of tanks and armored vehicles, along with MIL-H-46170, a rust-inhibited version of MIL-H-83282. Thus, the scope of this revision of AIR810 has been expanded to include all four of these fluids. The purpose of this report is to offer guidelines for deciding when the respective fluid has degraded to an extent that warrants replacement in hydraulic test stand. The most sensitive hydraulic components in systems using the subject fluids will dictate the limits of contamination or degradation permitted for each case. The guidelines incorporated in the AIR are the general concerns of knowledgeable professionals. However, the experience and judgment of engineers and operators responsible for the equipment must be relied upon to determine when hydraulic fluid is to be replaced.neral concerns of knowledgeable professionals. However, the experience and judgment of engineers and operators responsible for the equipment must be relied upon to determine when hydraulic fluid is to be replaced.neral concerns of knowledgeable professionals. However, the experience and judgment of engineers and operators responsible for the equipment must be relied upon to determine when hydraulic fluid is to be replaced.neral concerns of knowledgeable professionals. However, the experience and judgment of engineers and operators responsible for the equipment must be relied upon to determine when hydraulic fluid is to be replaced.