首页|标准ISO 16750-3:2023与ISO 16750-3:2012差异分析

标准ISO 16750-3:2023与ISO 16750-3:2012差异分析

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工业现代化进程的不断推进,全球汽车工业在飞速向新能源平台化发展.新势力车企的风起云涌、各大汽车品牌不断地从"油改电"转型,使得当下新能源车市场正迎来百花齐放的局面.根据传统燃油动力汽车与新能源汽车的平台差异化,标准ISO 16750-3[1]道路车辆电气及电子设备的环境条件和试验 第三部分发布了新的版本,以更加全面地兼顾纯电动平台、混合动力平台的电子电气零部件的机械环境试验.本文对标准ISO 16750-3:2023全面剖析,并结合旧版标准进行差异化分析,为相关第三方检测机构或检测人员更准确高效地理解标准和开展试验.
Analysis of Differences Between ISO 16750-3:2023 and ISO 16750-3:2012
With the continuous advancement of the process of industrial modernization,the global automobile industry is rapidly developing into a new energy platform.The upsurge of new power car companies and the continuous transformation of major automobile brands from"oil to electricity"make the current new energy vehicle market is ushering in a blossoming situation.According to the platform differentiation between traditional fuel-powered vehicles and new energy vehicles,a new version of the standard ISO 16750-3[1]Environmental conditions and testing of electrical and electronic equipment for road vehicles has been released in Part III to more comprehensively take into account the mechanical environmental testing of electronic and electrical components for pure electric platforms and hybrid platforms.This paper makes a comprehensive analysis of the standard ISO 16750-3:23,combined with the differentiation analysis of the old standard,so as to help relevant third-party testing institutions or testing personnel understand the standard and carry out tests more accurately and efficiently.

new energy vehicleselectrical and electroniccomponentmechanical load testdifferentiationanalysis

胡凯、王钊桐、于国林、张旺威、张仕彬

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威凯检测技术有限公司,广州 510663

新能源汽车 电子电气 部件 机械负荷试验 差异 分析

2024

环境技术
广州电器科学研究院有限公司

环境技术

CSTPCD
影响因子:0.995
ISSN:1004-7204
年,卷(期):2024.42(2)
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