标准解读
《GB/T 48094-2026 等离子体参数测试方法》是一项国家标准,旨在规范等离子体相关参数的测量过程与技术要求。该标准适用于科学研究、工业生产等多个领域内对等离子体性质进行准确测定的需求场景。它详细规定了不同类型的等离子体(如低温等离子体、高温等离子体)在特定条件下如何通过实验手段获取其物理特性数据的方法。
根据文档内容,《GB/T 48094-2026》覆盖了从样品准备到数据分析整个流程的技术指导原则。其中包括但不限于:
- 样品制备:明确了待测样品的选择标准及其处理方式,确保实验结果的有效性和重复性。
- 仪器设备:列出了实施测试所需的各种专业设备及工具,并对其性能指标提出了具体要求。
- 操作步骤:提供了详细的实验操作指南,包括但不限于温度控制、压力调节等关键参数设定。
- 数据记录与处理:强调了实验过程中数据收集的重要性,以及后续利用统计学方法或专门软件进行分析的具体步骤。
- 安全注意事项:针对可能存在的风险因素给出了预防措施和应急处理方案。
如需获取更多详尽信息,请直接参考下方经官方授权发布的权威标准文档。
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- 即将实施
- 暂未开始实施
- 2026-08-28 颁布
- 2027-03-01 实施
文档简介
ICS17.180.99
CCSL50
中华人民共和国国家标准
GB/T48094—2026
等离子体参数测试方法
Testmethodofplasmaparameters
2026⁃08⁃28发布2027⁃03⁃01实施
国家市场监督管理总局
国家标准化管理委员会发布
GB/T48094—2026
目次
前言··························································································································Ⅲ
1范围·······················································································································1
2规范性引用文件········································································································1
3术语和定义··············································································································1
4测试原理·················································································································2
5测试条件·················································································································3
5.1环境条件···········································································································3
5.2测试设备条件·····································································································4
5.3气体类型与纯度要求····························································································4
6测试设备·················································································································4
6.1光源选择···········································································································4
6.2光谱仪··············································································································4
6.3数据显示与采集系统····························································································4
6.4出射激光收集系统·······························································································5
7测试步骤·················································································································5
7.1活性粒子···········································································································5
7.2离子参数···········································································································5
7.3电子参数···········································································································5
8数据处理·················································································································5
8.1活性粒子···········································································································5
8.2离子参数···········································································································5
8.3电子参数···········································································································6
9测试报告·················································································································7
附录A(资料性)测试参数推导过程················································································9
A.1离子参数···········································································································9
A.2电子参数·········································································································10
附录B(资料性)部分活性粒子测试参考特征及跃迁波长····················································16
附录C(资料性)测试报告模板·····················································································18
参考文献····················································································································20
Ⅰ
GB/T48094—2026
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。
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。
本文件由全国光电测试标准化技术委员会(SAC/TC487)归口。
本文件起草单位:中国科学技术大学、云南大学、安徽中科大禹科技有限公司、南昌大学、中国科学
院空天信息创新研究院、中国科学院合肥物质科学研究院、安徽中科聚变太赫兹科技有限公司、核工业
西南物理研究院、费勉科技(上海)股份有限公司、中国科学技术大学先进技术研究院、中国计量大学、
池州学院、北京环境特性研究所。
本文件主要起草人:吴征威、刘琦、黄永海、欧阳文冲、王璞、张乔枫、谢锦林、潘卓超、储江南、
刘海庆、王宏北、聂林、张晓世、谢斌平、朱骥文、张淑琴、汪新建、梅林、孙金海。
Ⅲ
GB/T48094—2026
等离子体参数测试方法
1范围
本文件描述了等离子体参数的测试方法。
本文件适用于常压、低压和高真空下激发的等离子体的主要参数测试。
本文件不适用于天体低密度等离子体。
2规范性引用文件
本文件没有规范性引用文件。
3术语和定义
下列术语和定义适用于本文件。
3.1
等离子体plasma
由离子、电子和中性粒子组成的宏观上平均电荷呈电中性的电离气体。
注:特指电子温度位于103K~105K,电子密度位于1012cm-3~1016cm-3的等离子体。
[来源:GB27955—2020,3.1,有修改]
3.2
谱线轮廓lineprofile
发射辐射强度随波长变化的曲线。
3.3
激发能excitationenergy
E
原子由基态跃迁到高于基态的给定能级所需的能量。
3.4
基态groundstate
原子、离子或分子能量最低的状态。
注:基态的能量定义为零。
3.5
电子温度electrontem
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