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GB/T 19639.1-2014 English PDF

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GB/T 19639.1-2014: Technical conditions of small-sized valve-regulated lead-acid batteries
Status: Valid

GB/T 19639.1: Historical versions

Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 19639.1-2014349 Add to Cart 3 days Technical conditions of small-sized valve-regulated lead-acid batteries Valid
GB/T 19639.1-2005439 Add to Cart 4 days Small VRLA battery technology conditions Obsolete

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Basic data

Standard ID: GB/T 19639.1-2014 (GB/T19639.1-2014)
Description (Translated English): Technical conditions of small-sized valve-regulated lead-acid batteries
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: K84
Classification of International Standard: 29.220.20
Word Count Estimation: 15,163
Date of Issue: 12/5/2014
Date of Implementation: 7/1/2015
Older Standard (superseded by this standard): GB/T 19639.1-2005
Quoted Standard: GB/T 2408-2008; GB/T 2900.41; GB/T 12804-2011; GB/T 12805-2011; GB/T 19639.2; JB/T 9461-1999
Adopted Standard: IEC 61056-1-2012, MOD
Regulation (derived from): Announcement of Newly Approved National Standards 2014 No. 27
Issuing agency(ies): General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary: This Standard specifies common VRLA (hereinafter referred to as the battery) technical requirements, test methods, inspection rules, marking, packaging, transport and storage. This Standard is applicable to emergency lighting equipment, uninterruptible po

GB/T 19639.1-2014: Technical conditions of small-sized valve-regulated lead-acid batteries

---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.
Technical conditions of small-sized valve-regulated lead-acid batteries ICS 29.220.20 K84 National Standards of People's Republic of China Replacing GB/T 19639.1-2005 General VRLAB Part 1. Technical conditions Part 1. Technicalconditions [IEC 61056-1.2012, Generalpurposelead-acidbatteries (Valve-regulatedtypes) -Part 1. Generalrequirements, functionalcharacteristics-Methodsoftest, MOD] Issued on. 2015-07-01 2014-12-05 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Foreword

GB/T 19639 "General VRLAB" is divided into two parts. --- Part 1. Technical conditions; --- Part 2. Specifications Model; This part of GB/T 19639 Part 1. This section drafted in accordance with GB/T 1.1-2009 given rules. This Part replaces GB/T 19639.1-2005 "Small VRLA battery technology conditions" and GB/T 19639.1-2005 Compared to the main changes are as follows. --- Standard name changed to "Universal VRLAB Part 1. technical conditions"; --- Content does not increase the scope of application (see Chapter 1); --- Add content "Normative references" (see Chapter 2); --- Increase the "Abbreviations" modify "terms, symbols" content (see Chapter 3, Chapter 3, 2005); --- Add, modify "batteries look" test content; (see 41, 2005, version 4.1.); --- Increased by "1 hour rate capacity of the" technical requirements and test methods (see 4.2.2 and 5.4.2); --- Delete "seven minutes-rate discharge" Technical requirements and test methods (see the 2005 edition 4.4 and 5.6); --- Add, modify "the maximum discharge current" technical requirements and test methods (see 4.4 and 564 in 2005, version 4.6 and 5.8.); --- Edit "vent" technical requirements (see 47, 2005 4.10.); --- Add, modify "life cycle" technical requirements and test methods (see 4.13 and 515, 2005 4.16.1 and 5.18.2.); --- Edit "vibration resistance" Technical requirements and test methods; (see 4.11, and 5131, 2005 4.14 and 5.16.); --- Original standard "trickle discharge life" to "life at room temperature floating charge" (see 4141, 2005 4.16.2.); --- Edit "floating charge life at room temperature" test method (see 5161, 2005 5.18.3.); --- Add "material flame resistance of the" technical requirements and test methods (see 4.15 and 5.17); --- Increase the "floating charge high temperature life testing" approach (see 5.16.2); "Preconditioning test performed before the" --- modify test methods (see 522, 2005 5.2.); --- Edit "over-discharge test" method (see 5.7, 2005 5.9). This section uses redrafted law revision using IEC 61056-1.2012 "common lead-acid battery (VRLA) - Part 1. General To Requirements, functional characteristics test methods " This part of IEC 61056-1.2012 The main differences are as follows. --- Edit "Normative references" (see Chapter 2); --- Reprogramming "terms, abbreviations and symbols" (see Chapter 3); --- Increase the "explosion-proof" technical requirements and test methods (see 4.9,5.11); --- Improve the "life cycle" technical requirements; (see 4.13); --- Add "material flame resistance of the" technical requirements and test methods (see 4.15); --- Increase "Inspection Rules" (see Chapter 6); --- Increase "logo, packaging, transportation, storage" (see Chapter 7). This part is proposed by the China Electrical Equipment Industrial Association. The lead-acid batteries in part by the National Standardization Technical Committee (SAC/TC69) centralized. This part mainly drafted by. AMD Power Co., Ltd., Jiangsu Leoch Battery Co., Ltd., Jiangsu Wah Fu limited storage technology shares The company, the Shenyang Institute of batteries, Fujian Yaheng Power Technology Group Co., Ltd., Jiangsu Su in Battery Technology Development Co., Ltd., Fujian Fujian China Power Company. The main drafters of this section. Chen Yusong, Zhou Mingming, Dong Jie, Zhuming Hai, Yang Bao love, Shen Restoration, gold tree forest. This part of the standard replaces the previous editions. --- GB/T 19639.1-2005. General VRLAB Part 1. Technical conditions

1 Scope

This section GB/T 19639 specifies the general VRLA (hereinafter referred to as battery) technical requirements, test methods, inspection Inspection rules, marking, packaging, transportation and storage. This section applies to emergency lighting equipment, uninterruptible power supplies, mobile measurement equipment, rated capacity of 65Ah (including 65Ah) or less A variety of DC power supply batteries. Such single cell lead-acid battery, the electrode plate may be mounted in the rectangular slot, it can be wound Electrodes mounted in the cylinder. Sulfuric acid electrolyte in the battery is not flowing between the electrodes or adsorption pore structure or in a colloidal form. This section does not apply to batteries for other purposes, such as lead-acid starter batteries, traction lead-acid batteries, fixed-valve Lead-acid batteries, sealed lead-acid battery electric power, miniature VRLAB.

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document. GB/T 2408-2008 Plastics - Determination of burning behavior of horizontal and vertical (IEC 60695-11-10.1999, IDT) GB/T 2900.41 Electrotechnical terminology cells and batteries [GB/T 2900.41-2008, IEC 60050 (482).2003, IDT] GB/T 12804-2011 laboratory glassware cylinder (ISO 4788.2005, NEQ) GB/T 12805-2011 laboratory glassware Burettes (ISO 385.2005, NEQ) GB/T 19639.2 General VRLAB Part 2. Specifications Model (GB/T 19639.2-2014, IEC 61056- 2.2012, MOD) JB/T 9461-1999 groove mercury barometer technical conditions 3 terms, abbreviations and symbols 3.1 Terms Terminology GB/T 2900.41, as defined in applicable to this document. 3.2 Acronyms DOD --- depth of discharge (depthofdischarge). 3.3 Symbol C20 --- 20 hour rate nominal capacity, the unit is Ah (Ah); C1 --- 1 hour rate nominal capacity, the unit is Ah (Ah); Ca --- 20 hour rate the actual capacity of the unit is Ah (Ah); Ca1 --- 1 hour rate the actual capacity of the unit is Ah (Ah); --- Single battery GE amount of gas evolved in milliliters per ampere hour (mL/Ah · h);
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