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GB/T 7991.3-2021 English PDF

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GB/T 7991.3-2021: Test method of viterous and porcelain enamels - Part 3: Determination of resistance to thermal shock
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GB/T 7991.3-2021English229 Add to Cart 3 days [Need to translate] Test method of viterous and porcelain enamels - Part 3: Determination of resistance to thermal shock Valid GB/T 7991.3-2021

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Basic data

Standard ID GB/T 7991.3-2021 (GB/T7991.3-2021)
Description (Translated English) Test method of viterous and porcelain enamels - Part 3: Determination of resistance to thermal shock
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard G94
Word Count Estimation 11,189
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration

GB/T 7991.3-2021: Test method of viterous and porcelain enamels - Part 3: Determination of resistance to thermal shock


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Test method of viterous and porcelain enamels -- Part 3: Determination of resistance to thermal shock ICS 71:120; 25:220:50 CCSG94 National Standards of People's Republic of China Replacing GB/T 7987-2013 Glass-lined layer test method Part 3: Determination of thermal shock resistance Published on 2021-12-31 2022-07-01 Implementation State Administration for Market Regulation Released by the National Standardization Administration

foreword

This document is in accordance with the provisions of GB/T 1:1-2020 "Guidelines for Standardization Work Part 1: Structure and Drafting Rules of Standardization Documents" drafted: This document is part 1 of GB/T 7991 "Test methods for glass-lined layers": GB/T 7991 has released the following parts: --- Part 1: Determination of corrosion resistance to alkaline solutions; --- Part 3: Determination of resistance to sudden changes in temperature; --- Part 4: Determination of mechanical shock resistance; --- Part 5: Thickness measurement by electromagnetic method; --- Part 6: High voltage test; --- Part 7: Determination of the mean coefficient of linear thermal expansion; --- Part 9: Determination of tensile strength; --- Part 10: Determination of lead and cadmium dissolution: This document replaces GB/T 7987-2013 "Test Method for Rapid Deformation Resistance of Glass-Lined Layers to Temperature Difference", compared with GB/T 7987-2013, except In addition to structural adjustments and editorial changes, the main technical changes are as follows: a) Changed the "test principle" (see Chapter 4, Chapter 3 of the:2013 edition); b) Changed "Apparatus and Instruments" (see Chapter 5, Chapter 4 of the:2013 edition); c) Changed the shape and size of the sample (see Chapter 6, Chapter 5 of the:2013 edition); d) Added the requirement that the glass-lined layer of the sample should pass the 10kV high voltage test (see 6:2); e) Changed the test procedure (see Chapter 7, Chapter 6 of the:2013 edition); f) The requirements for "making ice-water mixtures" have been added to Chapter 7 (see 7:3): Please note that some content of this document may be patented: The issuing agency of this document assumes no responsibility for identifying patents: This document is proposed by China Petroleum and Chemical Industry Federation: This document is under the jurisdiction of the National Standardization Technical Committee for Glass-lined Equipment (SAC/TC72): This document is drafted by: Suzhou Xieli Chemical Equipment Co:, Ltd:, Jiangsu Yangyang Chemical Equipment Manufacturing Co:, Ltd:, Taicang Xingong Glass Enamel Glass Co:, Ltd:, Jiangsu Special Equipment Safety Supervision and Inspection Research Institute, Jiangyin Standardization Institute, Jiangyin Silicon Enamel Co:, Ltd:, Tianhua Chemical Machinery and Automation Research and Design Institute Co:, Ltd: The main drafters of this document: Qian Jianfeng, Wei Zhihua, Zhu Hongzhi, Xiao Lijuan, Shi Jiantao, He Zhengwen, Shen Yongqi, Zhou Lei, Peng Huatao, Cao Xia, Yu Tingyue, Zhang Qian, Sang Linchun: This document was first published as GB/T 7987-1987 in 1987, revised for the first time in:2003, and revised for the second time in:2013: Three revisions:

Introduction

GB/T 7991 aims to accurately measure the performance data of the glass-lined layer, and is intended to consist of 10 parts: --- Part 1: Determination of corrosion resistance to alkaline solutions; --- Part 2: Determination of resistance to boiling acid and its vapor corrosion properties; --- Part 3: Determination of resistance to sudden changes in temperature; --- Part 4: Determination of mechanical shock resistance; --- Part 5: Thickness measurement by electromagnetic method; --- Part 6: High voltage test; --- Part 7: Determination of the mean coefficient of linear thermal expansion; --- Part 8: Determination of scratch resistance; --- Part 9: Determination of tensile strength; --- Part 10: Determination of lead and cadmium dissolution: These ten performance parameters are very important to glass-lined equipment, and are directly related to the quality and service life of glass-lined equipment: The glass-lined layer's resistance to rapid temperature difference is a very important performance parameter of glass-lined equipment: During the use of glass-lined equipment, the It is unavoidable to withstand the impact of high and low temperature: If the glass-lined layer has poor resistance to rapid temperature difference, the rapid temperature change will cause the glass-lined layer to be damaged and exploded: Equipment is scrapped: After the improvement of the experimental device in this document, the experimental error has been greatly reduced, and the difference of the experimental results in different regions, seasons and environments has been reduced: different: Moreover, this method is also closer to the actual working conditions of glass-lined equipment, and can more accurately measure the resistance of glass-lined layers to sudden changes in temperature: according to: To optimize the formulation of glass-lined glaze, evaluate the rationality and advancement of the firing process of glass-lined equipment, and improve the quality and quality of glass-lined equipment: Service life is very important: Glass-lined layer test method Part 3: Determination of thermal shock resistance

1 Scope

This document describes the test principle of the glass-lined layer's resistance to abrupt changes in temperature, and specifies the test equipment and instruments, test specimens, test procedures, and results: Results judgment and test report: This document is applicable to the determination of the resistance to sudden changes of temperature difference of glass-lined flat plate specimens:

2 Normative references

The contents of the following documents constitute essential provisions of this document through normative references in the text: Among them, dated citations documents, only the version corresponding to that date applies to this document; for undated references, the latest edition (including all amendments) applies to this document: GB/T 7991:6 Test method for glass-lined layer - Part 6: High voltage test Preparation of HG/T 3105 Steel Plate Glass-Lined Specimen

3 Terms and Definitions

There are no terms and definitions that need to be defined in this document:

4 Test principle

After heating the sample to the thermal shock test temperature, spray cold water on the surface of the glass-lined layer of the sample, dry the glass-lined layer of the sample, and observe the lining of the sample: Whether the glass layer is damaged such as cracking, cracking, peeling, etc: If no damage to the glass lining is found after the first thermal shock test, the The high test temperature is 10 ℃, and the thermal shock test is repeated until the glass-lined layer of the sample is damaged: The previous test temperature at which failure occurred is the same as the The difference in water temperature is the temperature resistance value of the glass-lined sample:

5 Apparatus and instruments

5:1 Test device The structure and size of the test device for measuring the rapid temperature change resistance of the glass-lined layer shall comply with the requirements of Figure 1 and Figure 2: Figure 2 is added in Figure 1 Dimensional drawing of thermal components:

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