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GB/T 10066.32-2021 English PDF

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GB/T 10066.32-2021: Test methods for electroheating and electromagnetic processing installations - Part 32: Induction through-heating installations
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Standard similar to GB/T 10066.32-2021

GB/T 37752.1   GB/T 5959.41   GB/T 31137   GB/T 10066.12   GB/T 10066.2   GB/T 10066.1   

Basic data

Standard ID GB/T 10066.32-2021 (GB/T10066.32-2021)
Description (Translated English) Test methods for electroheating and electromagnetic processing installations - Part 32: Induction through-heating installations
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard K61
Word Count Estimation 30,346
Issuing agency(ies) State Administration for Market Regulation, China National Standardization Administration

GB/T 10066.32-2021: Test methods for electroheating and electromagnetic processing installations - Part 32: Induction through-heating installations


---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 methods for electroheating and electromagnetic processing installations-Part 32.Induction through-heating installations ICS 25.180.10 CCSK61 National Standards of People's Republic of China Test methods for electric heating and electromagnetic treatment devices Part 32.Induction Diathermy Device (IEC 63078.2019,Instalationsforelectroheatingandelectromagneticprocessing- Released on 2021-05-21 2021-12-01 implementation State Administration of Market Supervision and Administration Issued by the National Standardization Management Committee

Table of contents

Foreword Ⅰ Introduction Ⅲ 1 Scope 1 2 Normative references 1 3 Terms and definitions 1 4 Basic requirements for tests and test conditions 5 5 Comparison of equipment or devices 6 6 Basic measurement and workload 6 7 Numerical simulation 7 8 Test item 7 9 Test method 7 Appendix A (Informative) Energy Efficiency Evaluation 11 Appendix B (Informative) Visual illustration of energy efficiency related situations 12 Appendix C (informative) Energy recovery rate 13 Appendix D (informative) Energy use assessment 14 Appendix AA (Normative) Diagrams of symbols and definitions related to the main circuit of induction diathermy equipment 15 Appendix BB (informative) Symbols used in this document 19 Appendix CC (Normative) Determination of Blank Temperature Uniformity Δθb 21 References 25 Figure AA.1 Basic main circuit of induction diathermy device 15 Figure AA.2 The main induction diathermy device with a rectifier transformer and several semiconductor variable frequency power supplies and compensation circuits/loads Circuit 16 Figure AA.3 has a rectifier transformer, a rectifier, and several series inverters and compensation circuits/loads. Thermal equipment main circuit 17 Figure AA.4 Compensation circuit example 18 Table CC.1 Blank temperature measurement point layout 22

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" Drafting. This document is part 32 of GB/T 10066 "Test Methods for Electric Heating and Electromagnetic Processing Devices". GB/T 10066 has been released The following parts. ---Part 1.General part; ---Part 2.Direct electric arc furnace; ---Part 3.Hearted induction furnace and coreless induction furnace; ---Part 31.Determination of the output power of the generator of the high-frequency induction heating device; ---Part 32.Induction diathermy device; ---Part 4.Indirect resistance furnace; ---Part 5.Plasma equipment for electric heating and electrochemistry; ---Part 6.Measuring method of output power of industrial microwave heating device; ---Part 7.Electric heating device with electron gun; ---Part 8.Electroslag remelting furnace; ---Part 9.Determination of the output power of high-frequency dielectric heating devices; ---Part 11.Submerged Arc Furnace; ---Part 12.Infrared electric heating device. This document is revised and adopted IEC 63078.2019 "Test Method for Induction Diathermy Device of Electric Heating and Electromagnetic Processing Device". Compared with IEC 63078.2019, this document deletes the "Appendix DD (informative appendix) safety test method" of the international standard, and changes The three safety test methods have been moved to "9 Test Methods" in this document as 9.108~9.110. The technical differences between this document and IEC 63078.2019 and the reasons are as follows. a) Replace IEC 60398.2015 with the normative reference GB/T 10066.1-2019, the degree of consistency between the two documents To modify to adapt to my country's technical conditions; b) By referencing GB/T 10066.1-2019 "Test Methods for Electric Heating and Electromagnetic Treatment Devices Part 1.General Part" (IEC 60398.2015, MOD) added test items and test methods related to machinery, vacuum and thermal Meet the needs of actual product testing; c) In "7 Numerical Simulation", the content of "Note" is changed to the main text, and the normative appendix cannot be cited in the note; d) It is stipulated that the safety-related cold test items listed in "8.2 Cold Test" are mandatory; e) Incorporate the content of IEC 63078.2019 informative appendix DD "safety test method" into Chapter 9 "test method", making it Normative content, which is more technically reasonable. This document has made the following editorial changes. a) In order to be consistent with my country's technical standard system, the standard name is changed to "Test Methods for Electric Heating and Electromagnetic Treatment Devices Part 32. Induction diathermy device"; b) In the "Supplement" of 4.4, the content required for measuring instruments is deleted, and its technical content is the same as that of GB/T 10066.1-2019. "4.8 Measuring Instruments" is repeated; c) Change the name of Chapter 9 from "Technical Tests and Device Energy Efficiency" to "Test Methods" in order to maintain compliance with GB/T 10066.1-2019 Unanimous. Please note that some of the contents of this document may involve patents. The issuing agency of this document is not responsible for identifying patents. This document was proposed by the China Electrical Equipment Industry Association. This document is under the jurisdiction of the National Industrial Electric Heating Equipment Standardization Technical Committee (SAC/TC121). Drafting organizations of this document. Xi'an Electric Furnace Research Institute Co., Ltd., Huaibei Huaming Industrial Frequency Conversion Equipment Co., Ltd., Hefei Mituo Intelligent Division Technology Co., Ltd., Suzhou Zhenwu Electric Furnace Co., Ltd., Xiamen Keyuer Technology Co., Ltd., Suzhou Zhenhu Electric Furnace Co., Ltd., Shandong Yafei Magnetic Energy Technology Co., Ltd., National Electric Furnace Quality Supervision and Inspection Center, Xi'an Huijin Technology Co., Ltd., Xi'an Flat Heat Treatment Co., Ltd., Guangdong Xinya Technology Co., Ltd., Xi'an Jingzhongsheng Technology Co., Ltd., Fujian Zhiyu Technology Co., Ltd. The main drafters of this document. Ge Huashan, Yu Weijiang, Li Kun, Zhu Xingfa, Yang Jia, Zhang Yongwu, Li Yang, Wang Yimin, Zhang Zhihuan, Huang Sengen, Li Ji, Yi Zhonghui, Ni Lioyong, Li Jing, Liu Xiaojian.

Introduction

Electric heating and electromagnetic treatment devices are important thermal process equipment in various industrial sectors of the national economy. The electric heating device in the device is divided into 10 types The same electric heating method is classified, and it can also be classified according to different applications, different working frequencies and different working atmospheres. In order to correctly assess and evaluate electric heating And the performance and quality of electromagnetic processing devices, and to promote its development, it is necessary to develop test methods for electric heating and electromagnetic processing devices. Its product standards provide the necessary conditions. In this regard, my country has established the GB/T 10066 Test Method for Electric Heating and Electromagnetic Processing Devices. The "Law" series of standards consist of general parts and other parts of various types of electric heating and electromagnetic treatment devices classified mainly according to different electric heating methods. GB/T 10066 aims to describe the test methods for electric heating and electromagnetic processing devices, and is intended to be composed of 14 parts. ---Part 1.General part. The purpose is to describe the general test methods for various electric heating and electromagnetic treatment devices. ---Part 2.Direct electric arc furnace. The purpose is to describe a special test method for a direct electric arc furnace. ---Part 3.Hearted induction furnace and coreless induction furnace. The purpose is to describe special test methods for intentional and unintentional induction melting furnaces. --- Part 31.Determination of the output power of the generator of the high-frequency induction heating device. The purpose is to describe the occurrence of high-frequency induction heating devices The method of measuring the output power of the device. ---Part 32.Induction diathermy device. The purpose is to describe a special test method for induction diathermy devices. ---Part 4.Indirect resistance furnace. The purpose is to describe the special test method of the indirect resistance furnace. ---Part 5.Plasma equipment for electric heating and electrochemistry. The purpose is to describe the characteristics of electrothermal and electrochemical plasma equipment Special test methods. ---Part 6.Method for measuring the output power of industrial microwave heating devices. The purpose is to describe the output power of an industrial microwave heating device The method of measuring the rate. ---Part 7.Electric heating device with electron gun. The purpose is to describe a special test method for an electric heating device with an electron gun. ---Part 8.Electroslag remelting furnace. The purpose is to describe the special test method of electroslag remelting furnace. ---Part 9.Determination of the output power of high-frequency dielectric heating devices. The purpose is to describe the output power of the high-frequency dielectric heating device test methods. ---Part 10.Electromagnetic processing device. The purpose is to describe the special test method of electromagnetic treatment device. ---Part 11.Submerged arc furnace. The purpose is to describe the special test method of submerged arc furnace. ---Part 12.Infrared electric heating device. The purpose is to describe the special test method of infrared electric heating device. The other parts are formulated according to the general part, and the relevant regulations in the general part can be improved and improved according to the characteristics of various devices. supplement. The other parts are used in conjunction with the general part. Each part of GB/T 10066 is formulated with the corresponding IEC standard to varying degrees. The previous version of the IEC standard adopted in Part 1 is based on And the latest editions of the IEC standards adopted in Part 7, Part 8, Part 12 and Part 32 are all formulated by my country. The sub-clauses supplementing the sub-clauses in GB/T 10066.1-2019 are numbered from 101 onwards. Supplementary appendices are AA, BB And so on. Test methods for electric heating and electromagnetic treatment devices Part 32.Induction Diathermy Device

1 Scope

This document describes the test procedures, test conditions and test methods for determining the main performance parameters and operating characteristics of induction diathermy devices. This document is applicable to the working frequency of low frequency, power frequency or intermediate frequency (up to 100kHz), for subsequent hot forming (such as forging, extrusion and rolling) Etc.) The induction heating device that performs overall or partial heat transfer of metal blanks or workpieces can also be used for induction heating devices for heat treatment and other purposes. Installation and reference for superconducting DC induction diathermy device.

2 Normative references

The contents of the following documents constitute the indispensable clauses of this document through normative references in the text. Among them, dated quotations Only the version corresponding to that date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to This document. This chapter of GB/T 10066.1-2019 is applicable, but supplemented as follows. supplement. GB/T 5959.1-2019 Safety of Electric Heating and Electromagnetic Processing Equipment Part 1.General Requirements (IEC 60519-1.2015, IDT) GB 5959.3-2008 Safety of electric heating devices Part 3.Special features for induction and conductive heating devices and induction melting devices Requirements (IEC 60519-3.2005, IDT) GB/T 10066.1-2019 Test methods for electric heating and electromagnetic treatment devices Part 1.General parts (IEC 60398.2015, MOD)

3 Terms and definitions

The following terms and definitions defined in GB/T 10066.1-2019 apply to this document. Note 101.For the following terms and definitions related to certain components and electrical parameters of the main circuit of induction diathermy equipment, see also the diagram in Appendix AA. symbol For instructions, see Appendix BB. 3.101 Induction through-heating instalation A complete set of equipment consisting of induction diathermy equipment and electrical and mechanical auxiliary equipment required for its operation and use. Note. Electrical ancillary equipment includes all electrical components of the main circuit of induction diathermy equipment, power supply circuits and control systems of mechanical ancillary equipment. Mechanical accessories The equipment includes the blank loading and unloading and conveying mechanism and its power equipment and water cooling system. 3.102 Induction through-heating equipment It is composed of one or more heating inductors and their supporting frames (cabinet), and water and electricity connections, etc., for induction heating and heat preservation of the blank equipment.

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