GB/T 36280-2023 English PDFUS$769.00 · In stock
Delivery: <= 6 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 36280-2023: Lead carbon battery for electrical energy storage Status: Valid GB/T 36280: Historical versions
Basic dataStandard ID: GB/T 36280-2023 (GB/T36280-2023)Description (Translated English): Lead carbon battery for electrical energy storage Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: F19 Classification of International Standard: 27.180 Word Count Estimation: 38,366 Date of Issue: 2023-12-28 Date of Implementation: 2024-07-01 Older Standard (superseded by this standard): GB/T 36280-2018 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 36280-2023: Lead carbon battery for electrical energy storage---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.ICS 27:180 CCSF19 National Standards of People's Republic of China Replace GB/T 36280-2018 Lead-carbon batteries for power storage Published on 2023-12-28 2024-07-01 Implementation State Administration for Market Regulation Released by the National Standardization Administration Committee Table of contentsPrefaceⅠ 1 Scope 1 2 Normative references 1 3 Terms, definitions and symbols 1 4 encoding 2 5 Technical requirements 3 6 Test methods 7 7 Inspection Rules 24 8 Marking, packaging, transportation and storage29 Appendix A (informative) Battery specification parameter table 31 Appendix B (Normative) Battery operating parameter table 34ForewordThis document complies with the provisions of GB/T 1:1-2020 "Standardization Work Guidelines Part 1: Structure and Drafting Rules of Standardization Documents" Drafting: This document replaces GB/T 36280-2018 "Lead-carbon batteries for electric energy storage": Compared with GB/T 36280-2018, except for structural adjustments In addition to editorial changes, the main technical changes are as follows: ---Changed the scope of application of the document (see Chapter 1, Chapter 1 of the:2018 edition); ---Deleted the duplicate content in terms and definitions with DL/T 2528 (see 3:1, 3:1 of the:2018 version); ---Changed the content of the symbol (see 3:2,:2018 version of 3:2); ---Changed "Specification" to "Encoding" and changed the encoding rules (see Chapter 4, Chapter 4 of the:2018 edition); ---Added "power characteristics" (see 5:3:2), "rate charge and discharge performance" (see 5:3:3), "high altitude initial charge and discharge performance" (see 5:4:3), "short circuit performance" (see 5:6:1:3), "salt spray performance" (see 5:6:2:1), "alternating heat and humidity performance" (see 5:6:2:2), "high sea "Insulation performance" (see 5:6:2:3), "High altitude voltage resistance performance" (see 5:6:2:4); ---Changed "initial charge and discharge energy" to "initial charge and discharge performance" and changed the technical requirements (see 5:3:1,:2018 version 5:1:1:4); ---Changed "energy retention capability" to "energy retention and energy recovery capability", changed the technical requirements, and deleted "energy retention capability" "Strength" technical requirements (see 5:3:4, 5:1:1:7 of the:2018 version); ---Changed "high temperature charge and discharge performance" to "high temperature adaptability" and changed the technical requirements (see 5:4:1, 5:1:1:6 of the:2018 version); ---Changed "low temperature charge and discharge performance" to "low temperature adaptability" and changed the technical requirements (see 5:4:2, 5:1:1:5 of the:2018 version); ---Changed "resistance to mechanical damage" to "drop performance" and changed the corresponding technical requirements (see 5:6:1:6,:2018 version 5:2:1:5); ---Change "gas evolution amount" to "gas evolution rate" (see 5:6:1:7, 5:2:1:7 of the:2018 version), and change the technical requirements; ---Changed "Consistency" (see 5:3:5, 5:1:2:5 of the:2018 version), "Cycle Performance" (see 5:5, 5:3 of the:2018 version) and "Overcharge" "Performance" (see 5:6:1:1, 5:2:1:1 of the:2018 edition), "over-discharge performance" (see 5:6:1:2, 5:2:1:2 of the:2018 edition) technology Require; ---Deleted the "high power discharge" technical requirements (see 5:2:1:8 of the:2018 version); ---Deleted "ground short circuit resistance" (see 5:2:1:4 of the:2018 version); ---Deleted the "battery management system monitoring and alarm protection function" (see 5:2:3:3 of the:2018 version); ---Change "Appendix A (Normative Appendix) Test Method" to "6 Test Method" (see Chapter 6, Appendix A of the:2018 version); ---Change "test device" to "test equipment" and change the test equipment requirements (see 6:1:2, Appendix A:1:2 of the:2018 version); ---Changed the "Initial charge and discharge performance test" (see 6:4:1, A:2:3 of the:2018 version), "Energy retention and recovery ability test" (see 6:4:4, A:2:6 of the:2018 edition), “High temperature adaptability test” (see 6:5:1, A:2:5 of the:2018 edition), “Low temperature adaptability test” "Test" (see 6:5:2, A:2:4 of the:2018 edition), "Cycle performance test" (see 6:6, A:2:17 of the:2018 edition), "Overcharge "Over-discharge performance test" (see 6:7:1:1, A:2:7 of the:2018 edition), "Over-discharge performance test" (see 6:7:1:2, A:2:8 of the:2018 edition), "Insulation performance test" (see 6:7:1:4, A:3:4 of the:2018 edition), "Withstand voltage performance test" (see 6:7:1:5, A:3:4 of the:2018 edition) A:3:5), "Gas evolution rate test" (see 6:7:1:7, A:2:13 of the:2018 edition) test method, "Explosion-proof capability test" (See 6:7:1:8, A:2:16 of the:2018 edition), "Thermal runaway susceptibility test" (see 6:7:3:1, A:2:12 of the:2018 edition); ---Added "power characteristic test" (see 6:4:2), "rate charge and discharge performance test" (see 6:4:3), "high altitude initial charge and discharge performance" "Performance test" (see 6:5:3), "Short circuit performance test" (see 6:7:1:3), "Salt spray performance test" (see 6:7:2:1), "Alternating heat and humidity test" "High-altitude insulation performance test" (see 6:7:2:2), "High-altitude insulation performance test" (see 6:7:2:3), "High-altitude voltage withstand performance test" (see 6:7:2:4); ---Deleted "ground short circuit resistance test" (see A:2:10 of the:2018 version); ---Deleted the test method of "high power discharge test" (see A:2:14 of the:2018 version); ---Deleted "Battery management system monitoring function inspection" (see A:4:6 of the:2018 version) and "Overvoltage charging alarm protection function test" (See A:4:7 of the:2018 edition), "Overcurrent charging alarm protection function test" (See A:4:8 of the:2018 edition), "Undervoltage discharge alarm "Alarm protection function test" (see A:4:9 of the:2018 edition), "Overcurrent discharge alarm protection function test" (see the:2018 edition of A:4:10), "Over-temperature alarm protection function test" (see:2018 version of A:4:11), "Short-circuit protection function test" (see:2018 version of A:4:11) A:4:12 of the:2018 version), "Communication function check" (see A:4:13 of the:2018 version); ---Changed the rules for "factory inspection" (see 7:2, 6:2 of the:2018 edition); ---Change "type test" to "type inspection" and change the rules (see 7:3, 6:3 of the:2018 version); --- Added rules for "sampling inspection" (see 7:4); ---Changed "marking" (see 8:1, 7:1 of the:2018 edition), "packaging" (see 8:2, 7:2 of the:2018 edition), and "transportation" (see 8:3,:2018 edition 7:3 of the:2018 edition) and "storage" (see 8:4, 7:4 of the:2018 edition) requirements: Please note that some content in this document may be subject to patents: The publisher of this document assumes no responsibility for identifying patents: This document is proposed by the China Electricity Council: This document is under the jurisdiction of the National Electric Power Storage Standardization Technical Committee (SAC/TC550): This document was drafted by: Zhejiang Nandu Power Supply Co:, Ltd:, China Electric Power Research Institute Co:, Ltd:, Zhejiang Huayun Cleaning Energy Co:, Ltd:, China Southern Power Grid Electric Power Technology Co:, Ltd:, State Grid Hunan Electric Power Co:, Ltd: Electric Power Research Institute, Tianneng Battery Group Co:, Ltd:, State Grid Zhejiang Electric Power Co:, Ltd: Electric Power Research Institute, Zhejiang Chaowei Yuanli Energy Co:, Ltd:, Shuangdeng Group Co:, Ltd:, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Shandong Sacred Sun Power Supply Co:, Ltd: The main drafters of this document: Tan Jianguo, Yang Baofeng, Zhou Yufeng, Xiang Wenmin, Xu Junjie, Xu Song, Zhong Guobin, Zhang Xuesong, Yan Jingwang, Yuan Guanrui, Xu Dongming, Tang Mingyue, Guan Yibiao, Zhang Hengshan, Hu Juan, Huidong, Hu Chen, Yin Zheng, Shen Shaoping, Mao Shuyan, Shang Xiaoli, Guo Cuijing, Dong Dong, Chen Lingyu, Zhao Bo, Wan Tao, Wang Chao, Xu Kaiqi, Wang Jinsheng, Yang Shiyin, Huang Jian, Zheng Qiong: The previous versions of this document and the documents it replaces are as follows: ---First published in:2018 as GB/T 36280-2018; ---This is the first revision: Lead-carbon batteries for power storage1 ScopeThis document specifies the appearance, size and quality, electrical performance, environmental adaptability, cycle performance of lead-carbon batteries for power energy storage (referred to as "lead-carbon batteries"): Performance, safety performance and other requirements, describe the corresponding test methods, stipulate coding, normal working environment, inspection rules, marking, packaging, transportation and storage etc: This document applies to the design, manufacturing, testing, inspection, operation, maintenance and overhaul of lead-carbon batteries for power energy storage:2 Normative reference documentsThe contents of the following documents constitute essential provisions of this document through normative references in the text: Among them, the dated quotations For undated referenced documents, only the version corresponding to that date applies to this document; for undated referenced documents, the latest version (including all amendments) applies to this document: GB/T 191 Packaging, storage and transportation pictorial mark GB/T 2408-2021 Horizontal and vertical methods for determination of combustion properties of plastics GB/T 2828:1 Enumeration sampling inspection procedures Part 1: Batch-by-batch inspection sampling plan retrieved by acceptance quality limit (AQL) GB/T 5398 Test methods for large transport packages GB/T 16471 Transport packaging size and quality limits DL/T 2528 Basic terminology of electric energy storage 3 Terms, definitions and symbols 3:1 Terms and definitions The terms and definitions defined in DL/T 2528 and below apply to this document: 3:1:1 initializedcharginginitializedcharging Under specified conditions, the battery is discharged to the discharge cut-off condition and then charged to the charge cut-off condition: 3:1:2 Under specified conditions, the battery is charged to the charging cut-off condition and then discharged to the discharge cut-off condition: 3:1:3 The process of charging and discharging the battery with a power value higher than the rated power under specified conditions: 3:1:4 Shell shell Encapsulating components used to prevent the internal materials and components of the battery cell from direct contact with the outside: 3:1:5 fire Continuous burning occurs in any part of the battery, excluding sparks, flashovers and arcing: ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 36280-2023_English be delivered?Answer: Upon your order, we will start to translate GB/T 36280-2023_English as soon as possible, and keep you informed of the progress. 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