GB/T 41232.6-2024 纳米制造 关键控制特性 纳米储能 第6部分:纳米电极材料中的碳含量测定 红外吸收法
GB/T 41232.6-2024 Nanomanufacturing—Key control characteristics—Nano-enabled electrical energy storage—Part 6:Determination of carbon content for nano-enabled electrode materials—Infrared absorption method
基本信息
本文件适用于质量分数为0.001%~100%的碳含量的检测,用于对纳米电极材料的判断,以及对纳米电极材料碳含量的选择。
发布历史
-
2024年08月
研制信息
- 起草单位:
- 深圳市德方纳米科技股份有限公司、国家纳米科学中心、宁波锋成先进能源材料研究院有限公司、佛山市德方纳米科技有限公司、深圳市标准技术研究院、山东精工电子科技股份有限公司、深圳市德方创域新能源科技有限公司、曲靖市德方纳米科技有限公司、清华大学深圳国际研究生院、中国计量大学、锂源(深圳)科学研究有限公司
- 起草人:
- 孔令涌、孙言、王远航、葛广路、高洁、王耀国、俞波、陈燕玉、樊阳波、金青青、邱志平、张敬捧、贾永鹏、周永辉、龚昊、陈心怡、李宝华、张淑琴、岳海峰
- 出版信息:
- 页数:16页 | 字数:23 千字 | 开本: 大16开
内容描述
ICS
07.030;07.120
CCS
F19
中华人民共和国国家标准
GB/T41232.6—2024
纳米制造关键控制特性纳米储能
第6部分:纳米电极材料中的碳含量
测定红外吸收法
Nanomanufacturing—Keycontrolcharacteristics—Nano-enabledelectricalenergy
storage—Part6:Determinationofcarboncontentfornano-enabledelectrode
materials—Infraredabsorptionmethod
(IECTS62607-4-6:2018,Nanomanufacturing—Keycontrolcharacteristics—
Part4-6:Nano-enabledelectricalenergystorage—
Determinationofcarboncontentfornano-enabledelectrodematerials,infrared
absorptionmethod,MOD)
2024-08-23发布2025-03-01实施
国家市场监督管理总局发布
国家标准化管理委员会
GB/T41232.6—2024
目次
前言
·····································································································
Ⅲ
引言
·····································································································
Ⅳ
1
范围
··································································································
1
2
规范性引用文件
······················································································
1
3
术语、定义和缩略语
·················································································
1
3.1
术语和定义
······················································································
1
3.2
缩略语
···························································································
1
4
试剂和材料
···························································································
2
4.1
分析气
···························································································
2
4.2
载气
······························································································
2
4.3
助熔剂
···························································································
2
4.4
有证标准物质
····················································································
2
5
仪器
··································································································
2
5.1
分析天平
·························································································
2
5.2
粉末压片机
······················································································
2
5.3
高频红外碳硫分析仪
·············································································
2
5.4
马弗炉
···························································································
3
5.5
坩埚
······························································································
3
5.6
干燥箱
···························································································
3
6
测试方法
······························································································
3
6.1
概述
······························································································
3
6.2
样品制备
·························································································
3
6.3
开机
······························································································
3
6.4
空白试验验证与测定
·············································································
3
6.5
检查和校准
······················································································
4
6.6
测试分析
·························································································
4
6.7
结果
······························································································
4
7
数据验证
······························································································
4
8
不确定度分析
·························································································
4
9
测试报告
······························································································
4
附录A(资料性)实例分析
···········································································
5
参考文献
··································································································
9
Ⅰ
GB/T41232.6—2024
前言
本文件按照GB/T1.1—2020《标准化工作导则第1部分:标准化文件的结构和起草规则》的规
定起草。
本文件是GB/T41232《纳米制造关键控制特性纳米储能》的第6部分。GB/T41232已经发
布了以下部分:
—第2部分:纳米正极材料的密度测试;
—第3部分:纳米材料接触电阻率和涂层电阻率的测试;
—第6部分:纳米电极材料中的碳含量测定红外吸收法。
本文件修改采用IECTS62607﹘4﹘6:2018《纳米制造关键控制特性第4﹘6部分:纳米储能纳
米电极材料中的碳含量测定红外吸收法》,文件类型由IEC的技术规范调整为我国的国家标准。
本文件与IECTS62607﹘4﹘6:2018相比做了下述结构调整:
—增加了第8章,第9章对应IECTS62607﹘4﹘6:2018中的第8章。
本文件与IECTS62607﹘4﹘6:2018的技术差异及其原因如下:
—用ISO80004﹘1替换了ISO/TS80004﹘1:2010,以确保引用最新版本的文件(见第2章和
3.1);
—增加了分析天平的分辨力,以明确分析天平的分辨力要求(见表1);
—增加了干燥箱的内容,以明确干燥箱的温度范围(见5.6和6.2.1);
—增加了不确定度分析的内容,以明确与测量纳米电极材料的碳含量有关的不确定度来源(见第
8章);
—增加了测试报告应包含的内容,以明确测试对象、测试人员及日期、测试仪器及型号[见第9章
中的a)~c)]。
本文件做了下列编辑性改动:
—为与现有标准协调,将标准名称改为《纳米制造关键控制特性纳米储能第6部分:纳米
电极材料中的碳含量测定红外吸收法》;
—删除了缩略语“IR”;
—增加了缩略语“LMFP”(见3.2);
—将测试仪器的参数进行了归类(见表1)。
请注意本文件的某些内容可能涉及专利。本文件的发布机构不承担识别专利的责任。
本文件由中国科学院提出。
本文件由全国纳米技术标准化技术委员会(SAC/TC279)归口。
本文件起草单位:深圳市德方纳米科技股份有限公司、国家纳米科学中心、宁波锋成先进能源材料
研究院有限公司、佛山市德方纳米科技有限公司、深圳市标准技术研究院、山东精工电子科技股份有限
公司、深圳市德方创域新能源科技有限公司、曲靖市德方纳米科技有限公司、清华大学深圳国际研究生
院、中国计量大学、锂源(深圳)科学研究有限公司。
本文件主要起草人:孔令涌、孙言、王远航、葛广路、高洁、王耀国、俞波、陈燕玉、樊阳波、
金青青、邱志平、张敬捧、贾永鹏、周永辉、龚昊、陈心怡、李宝华、张淑琴、岳海峰。
Ⅲ
GB/T41232.6—2024
定制服务
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