标准解读

《GB/T 45012-2024 工业用绝热制品 低温线性热膨胀系数的测定》是一项国家标准,旨在规范工业用绝热材料在低温条件下线性热膨胀系数的测试方法。该标准适用于各种工业用绝热制品,如泡沫塑料、矿物棉等,在低温环境下的性能评估。

标准详细规定了实验所需设备和条件,包括温度控制装置、测量仪器精度要求以及样品制备方法。其中,对于样品尺寸有明确要求,以确保数据的准确性和重复性。测试过程中,需要将样品置于特定的温度环境中,并逐步改变温度,记录不同温度点下样品长度的变化情况。通过这些数据计算出材料的线性热膨胀系数。

此外,《GB/T 45012-2024》还提供了关于如何处理实验结果的具体指导,比如数据处理方法、报告编写格式等内容,帮助使用者更好地理解和应用测试结果。对于可能出现的异常情况或不确定因素,标准也给出了相应的处理建议,以保证测试过程的科学性和可靠性。

该标准的发布与实施有助于提高我国工业用绝热材料质量检测水平,为相关行业提供技术支持,促进产品质量提升和技术进步。


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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文档简介

ICS

91.100.60

CCS

Q25

中华人民共和国国家标准

GB/T45012—2024/ISO23766:2022

工业用绝热制品

低温线性热膨胀系数的测定

Thermalinsulatingproductsforindustrialinstallations—Determinationofthecoef﹘

ficientoflinearthermalexpansionatsub-ambienttemperatures

(ISO23766:2022,IDT)

2024-11-28发布2025-06-01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/T45012—2024/ISO23766:2022

目次

前言

·····································································································

1

范围

··································································································

1

2

规范性引用文件

······················································································

1

3

术语和定义

···························································································

1

4

方法A:光学法

······················································································

1

4.1

原理

······························································································

1

4.2

设备

······························································································

2

4.3

试样

······························································································

3

4.4

试样状态调节

····················································································

3

4.5

步骤

······························································································

3

5

方法B:位移法

······················································································

4

5.1

原理

······························································································

4

5.2

设备

······························································································

4

5.3

试样

······························································································

5

5.4

试样状态调节

····················································································

5

5.5

步骤

······························································································

5

6

结果计算和表示

······················································································

5

7

测量的精度

···························································································

6

8

试验报告

······························································································

6

参考文献

··································································································

7

GB/T45012—2024/ISO23766:2022

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。

本文件等同采用ISO23766:2022《工业用绝热制品

低温线性热膨胀系数的测定》。

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。

本文件由中国建筑材料联合会提出。

本文件由全国绝热材料标准化技术委员会(SAC/TC191)归口。

本文件起草单位:南京玻璃纤维研究设计院有限公司、安徽中冶淮海装配式建筑有限公司、上海大

音希声新型材料有限公司、弘成康健(苏州)新材料科技有限公司、中科标准(宁德)科技有限公司、

北京华艾鑫节能设备有限公司、深圳市金台检测技术有限公司、河北金威新型建筑材料有限公司、浙江

振申绝热科技股份有限公司、宝润达新型材料股份有限公司、郑州峰泰纳米材料有限公司、南京中材标

准认证有限公司。

本文件主要起草人:崔军、王睿、余波、王志平、方蔚然、林影、杨新敬、郭晓明、高正伟、

张永福、朱正叶、王帅、毛欣飞、潘阳、张帅恺、寇鹏飞、刘涛、韩晴雪、孟浩。

GB/T45012—2024/ISO23766:2022

工业用绝热制品

低温线性热膨胀系数的测定

1范围

本文件规定了测定绝热制品低温(-196℃~25℃)线性热膨胀系数的设备和步骤,低温取决于试

样可能的温度限制。

本文件不适用于在试验过程中由于水或相变而产生不可逆尺寸变化的产品。

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文件必不可少的条款。其中,注日期的引用文

件,仅该日期对应的版本适用于本文件;不注日期的引用文件,其最新版本(包括所有的修改单)适用

于本文件。

ISO9229绝热

术语(Thermalinsulation—Vocabulary)

注:GB/T4132—2023绝热

术语(ISO9229:2020,IDT)

ISO18099建筑设备及工业装置用绝热制品热膨胀系数的测定(Thermalinsulatingproducts

forbuildingequipmentandindustrialinstallations—Determinationofthecoefficientofthermalexpan﹘

sion)

注:GB/T34183—2017建筑设备及工业装置用绝热制品热膨胀系数的测定(ISO18099:2013,IDT)

3术语和定义

ISO9229和ISO18099界定的以及下列术语和定义适用于本文件。

3.1

低温sub-ambientte

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