DIN EN ISO 4516-2002 金属和其他无机镀层.维氏硬度和努氏显微硬度试验(ISO4516:2002);德文版本ENISO4516:2002

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【英文标准名称】:Metallicandotherinorganiccoatings-VickersandKnoopmicrohardnesstests(ISO4516:2002);GermanversionENISO4516:2002
【原文标准名称】:金属和其他无机镀层.维氏硬度和努氏显微硬度试验(ISO4516:2002);德文版本ENISO4516:2002
【标准号】:DINENISO4516-2002
【标准状态】:现行
【国别】:德国
【发布日期】:2002-10
【实施或试行日期】:
【发布单位】:德国标准化学会(DIN)
【起草单位】:
【标准类型】:()
【标准水平】:()
【中文主题词】:努氏(硬度);金属覆层;维氏硬度测量;显微硬度试验;维氏硬度计;金属膜;努氏硬度;维氏硬度;材料;试验设备;层;金属的;防腐蚀;覆层;试验;硬度测量;金属
【英文主题词】:Coatings;Corrosionprotection;Hardnessmeasurement;Knoop;Knoophardness;Layers;Materials;Metalcoatings;Metalfilms;Metallic;Metals;Microhardnesstesting;Testequipment;Testing;Tests;Vickers;Vickersh
【摘要】:ThisstandarddescribestheapplicationoftheVickersandKnoopmicroindentationtestsfordeterminingthemicrohardnessofmetallicandotherinorganiccoatings.
【中国标准分类号】:N71;A29
【国际标准分类号】:25_220_40;25_220_99
【页数】:18P;A4
【正文语种】:德语


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基本信息
标准名称:石油化工管式炉设计规范(附条文说明)
中标分类: 化工 >> 化工机械与设备 >> 化工设备
替代情况:替代SYJ 1035-1984
发布日期:1991-12-19
实施日期:1992-05-20
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作废日期:
出版日期:
页数:34页
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所属分类: 化工 化工机械与设备 化工设备
Product Code:SAE J2288
Title:Life Cycle Testing of Electric Vehicle Battery Modules
Issuing Committee:Electric Vehicle Forum Committee
Scope: This SAE Recommended Practice defines a standardized test method to determine the expected service life, in cycles, of electric vehicle battery modules. It is based on a set of nominal or baseline operating conditions in order to characterize the expected degradation in electrical performance as a function of life and to identify relevant failure mechanisms where possible. Accelerated aging is not included in the scope of this procedure, although the time compression resulting from continuous testing may unintentionally accelerate battery degradation unless test conditions are carefully controlled. The process used to define a test matrix of accelerated aging conditions based on failure mechanisms, and to establish statistical confidence levels for the results, is considered beyond the scope of this document. Because the intent is to use standard testing conditions whenever possible, results from the evaluation of different technologies should be comparable. End-of-life is determined based on module capacity and power ratings. This may result in a measured cycle life different than that which would be determined based on actual capacity; however, this approach permits a battery manufacturer to make necessary tradeoffs between power and energy in establishing ratings for a battery module. This approach is considered appropriate for a mature design or production battery. It should be noted that the procedure defined in this document is funtionally identicaly to the USABC Baseline Life Cycle Test Procedure.