标准解读
《GB/T 47900-2026 高分子烧结微滤膜元件》是一项国家标准,主要针对高分子材料通过烧结工艺制成的微滤膜及其组件进行规范。该标准详细规定了此类产品的分类与命名、技术要求、试验方法、检验规则以及标志、包装、运输和贮存等方面的内容。
在分类与命名部分,明确了依据材质、过滤精度等不同属性对产品进行分类,并给出了相应的命名规则,便于行业内统一理解和使用。技术要求方面,则是从物理性能(如强度)、化学稳定性、孔径分布特性等多个维度设定了具体指标,确保产品能够满足基本的应用需求。此外,还特别强调了对于某些特殊应用场景下可能需要达到的额外性能要求。
试验方法章节提供了验证上述技术要求的各种测试手段,包括但不限于机械强度测试、耐化学性评估及通量测定等,旨在为生产厂家提供一套科学合理的检测体系,同时也为用户选择合适的产品提供了参考依据。检验规则则进一步细化了抽样方案、判定原则等内容,保证了产品质量控制的有效实施。
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
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- 2026-07-02 颁布
- 2027-02-01 实施
文档简介
ICS23.100.60
CCSJ77
中华人民共和国国家标准
GB/T47900—2026
高分子烧结微滤膜元件
Sinteredpolymermicroporousmembraneelement
2026⁃07⁃02发布2027⁃02⁃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/T47900—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分类与型号··············································································································2
4.1分类·················································································································2
4.2型号命名···········································································································2
4.3类别代号···········································································································2
4.4型式代号···········································································································2
4.5膜材质代号········································································································2
4.6膜平均孔径代号··································································································3
5技术要求·················································································································3
5.1外观·················································································································3
5.2外形尺寸偏差·····································································································3
5.3偏心度··············································································································4
5.4平均孔径···········································································································4
5.5孔隙率··············································································································4
5.6纯水通量···········································································································4
5.7断裂拉伸强度·····································································································5
5.8抗冲击强度········································································································5
5.9耐腐蚀性能········································································································5
6试验方法·················································································································5
6.1外观·················································································································5
6.2外形尺寸及偏差··································································································6
6.3偏心度··············································································································6
6.4平均孔径···········································································································7
6.5孔隙率··············································································································7
6.6纯水通量···········································································································8
6.7断裂拉伸强度·····································································································8
6.8抗冲击强度·······································································································10
6.9耐腐蚀性能·······································································································10
7检验规则···············································································································11
7.1检验分类··········································································································11
Ⅰ
GB/T47900—2026
7.2出厂检验··········································································································11
7.3型式试验··········································································································12
8标志、包装、运输和贮存·····························································································12
8.1标志················································································································12
8.2包装················································································································13
8.3运输················································································································13
8.4贮存················································································································13
附录A(规范性)纯水通量测试装置···············································································14
参考文献····················································································································16
Ⅱ
GB/T47900—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。
本文件由全国分离膜标准化技术委员会(SAC/TC382)提出并归口。
本文件起草单位:浙江东瓯过滤机制造有限公司、浙江津膜环境科技有限公司、江苏荣生电子有限
公司、中国计量大学、中玺新材料(安徽)有限公司、山东招金膜天股份有限公司、南京丹恒科技有限公
司、天津膜天膜材料科技有限公司、天津市宝钜净化设备工程有限公司、中煤(北京)环保股份有限公
司、青海启迪清源新材料有限公司、上海威驰过滤系统有限公司、苏州凯虹高分子科技有限公司、苏州
市明瑞精工器材有限公司、深圳市久大轻工机械有限公司、内蒙古瑞达环保有限公司、青山钢管有限公
司、扬州联博药业有限公司、江苏威泽智能科技股份有限公司、江苏宇佳智能装备有限公司、陕西蔚蓝
节能环境科技集团有限责任公司、宁波灏钻科技有限公司、深圳骏泽环境科技有限公司、深圳逗点生物
技术有限公司、天津工业大学、山东环投环境工程有限公司、北京中电加美环保科技有限公司、东方电
气(福建)创新研究院有限公司、航膜科技发展集团有限公司。
本文件主要起草人:宋志骥、陈董根、薛海燕、季双峰、饶宾期、钱小全、王新艳、朱建初、蒋鹏、刘峥、
李庭、寇瑞强、尧平安、陈凯、王益斌、陈为刚、陈博洋、周天友、陈凡虎、章留留、杨献春、陈飞、王伟、顾逞涛、
刘天来、陈高明、何本桥、郝彦海、戴云帆、裴景克、张漾菲、刘洋、王树丽、王瀚漪。
Ⅲ
GB/T47900—2026
高分子烧结微滤膜元件
1范围
本文件规定了高分子烧结微滤膜元件(以下简称“膜元件”)的分类与型号、技术要求、试验方法、检
验规则及标志、包装、运输和贮存。
本文件适用于固液分离用高分子烧结微滤膜元件的生产、科研、使用和管理。
2规范性引用文件
下列文件中的内容通过文中的规范性引用而构成本
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