欢迎访问中科光析科学技术研究所官网!
免费咨询热线
400-635-0567
锂离子二次电池检测项目报价? 解决方案? 检测周期? 样品要求? |
点 击 解 答 ![]() |
GB 3883的本部分涉及电动机或电磁铁驱动的:--手持式电动工具(第2部分);--可移式电动工具(第3部分);--园林工具(第4部分)。以下简称“工具”。交流单相或直流工具的额定电压不大于250 V,交流三相工具的额定电压不大于440 V。大额定输入功率不超过3 700 W。本部分涉及人们在正常操作以及合理可预见的使用工具时遇到的由工具引发的危险。带电加热元件的工具属本部分范围。这些加热元件的要求在GB 4706的相关部分中规定。对于不与电网隔离、且基本绝缘由不按工具额定电压设计的电动机,其要求在附录B中规定。对于由可充电电池供电的电动机驱动或电磁铁驱动的工具以及用于这些工具的电池包,其要求在附录K中规定。对于能直接接在市电或非隔离电源上操作和/或充电的这类工具,其要求在附录L中规定。不用对工具自身作任何改造便能够安装到一个支架或工作台当作固定式工具使用的手持式电动工具属于本部分范围,由第3部分来规定。本部分不适用于:--在爆炸性环境(尘埃、蒸汽或气体)中使用的工具;--制备和加工食品用工具;--医疗用工具;--与化妆品和药品一起使用的工具;--加热工具;--电动机驱动的家用或类似用途电器;--工业机床用电气设备;--用来制作模型的由低压变压器驱动的小型台式工具,如制作遥控飞机模型或汽车模型等。
本标准规定了含碱性或其他非酸性电解质的蓄电池和蓄电池组的型号命名方法。本标准适用于含碱性或其他非酸性电解质的蓄电池和蓄电池组型号命名。
本标准规定了炭素材料术语的分类规则,炭素材料的原料术语、产品术语、表观质量术语、化学分析和物理检测术语。本标准适用于编制各种标准、技术性文件、资料、编写和翻译手册、教材及书刊等。
本标准规定了电池废料贮运的要求、贮存方式及设施、运输要求、运输方式及容器等。 本标准适用于电池废料的贮存与运输。
本标准规定了充电电池废料废件的分类、要求、试验方法、检验规则、包装、标志、运输、贮存及合同(或订货单)等。本标准适用于各生产工序、使用过程及流通领域产生的充电电池废料废件。
本标准规定了废弃电池化学品处理处置术语。本标准适用于废弃电池化学品的分类、收集、贮存、运输、回收、处理和处置及日常管理等相关活动。
本标准规定了电灭蚊拍的术语和定义、产品分类和型号命名、要求、试验方法、检验规则、标志、包装、运输和贮存。本标准适用于家用和类似用途的、额定充电电压不超过交流250V,或使用一次性电池的电灭蚊拍。本标准不适用于:——打算使用在经常产生腐蚀性或爆炸性气体(如灰尘、蒸气或可燃性气体)特殊环境场所的器具;——驱、灭蚊药片用恒温电加热器(QB/T1741);——电热片蚊香(GB 18417);——使用时与交流电网连接的灭蚊器具。本标准并未涉及:——无人照看的幼儿和残疾人使用器具时的危险;——幼儿玩耍器具的情况。
本标准规定了月球探测工程研制和应用的基本术语。本标准适用于月球探测工程及其有关领域。
本标准规定了平衡车用锂离子电池和电池组的术语和定义、要求、试验方法、质量评定及标识、包装、运输和储存。本标准适用于平衡车用锂离子电池和电池组。对于无自平衡功能的滑板车等类似产品的锂离子电池、电池组也参考适用。
本标准规定了车站因施工或其他原因导致全部或部分信号联锁失效时,采用无线传输方式反映道岔开通位置、进路状况的进路安全监督装置(以下简称“装置”)的基本功能、可选功能、技术要求、环境要求、试验方法、检测规则、标志、包装、运输、贮存。\t本标准适用于装置的研制、生产、检测、使用。
本标准规定电动车辆,包含电池动力车辆(battery electric vehicles, BEV)及混合动力车辆(hybrid electric vehicles, HEV)之推进用二次锂离子单电池,在性能及寿命方面之试验方法。制定本标准之目的系为电池动力车辆及混合动力车辆(以下称电动车辆)所使用之推进用二次锂离子单电池,针对电容量、电功率密度、能量密度、储存寿命及循环寿命等实质特性,订定试验程序。本标准为电动车辆推进用二次锂离子单电池,提供测试其基本性能特性之标准试验程序及试验条件,须透过此等试验,用以取得在不同设计之电池系统及电池组中之二次锂离子单电池之基本性能水准及必要数据。
本标准规定电动车辆,包含电池动力车辆(battery electric vehicles, BEV)及混合动力车辆(hybrid electric vehicles, HEV)之推进用二次锂离子单电池,作为评估(observe)其可靠度及异常使用效应(abuse)之试验程序。制定本标准之目的系为电动车辆(包含电池动力车辆及混合动力车辆)所使用之动力用二次锂离子单电池,针对其基本特性订定标准试验程序及试验条件,须透过此等试验,用以取得在不同设计之电池系统及电池组中之二次锂离子单电池之可靠度及异常使用效应方面之必要数据。本标准提供试验结果说明之标准分类,可用于电池系统或电池组之设计。
This part of IEC 62485 applies to the installation of one or more stationary secondary batteries having a maximum aggregate DC voltage of 1500 V to any DC part of the power network, and describes the principal measures for protections during normal operation or under expected fault conditions against hazards generated from: electricity; short-circuits; electrolyte; gas emission; fire; explosion. This document provides requirements on safety aspects associated with the installation, use, inspection, and maintenance and disposal of lithium ion batteries used in stationary applications. This document covers stationary batteries for industrial applications that are installed in separate closed buildings or housings as well as stationary batteries that are installed in public buildings, offices and private residences. This document also covers the maintenance and disposal of lithium ion batteries used in stationary applications. Batteries containing lithium metal are not covered by this document. Examples of the main applications are; telecommunications; power station operation; central emergency lighting and alarm systems; uninterruptible power supplies (UPS); stationary engine starting; photovoltaic systems. In general, the safety requirements for secondary batteries and battery installations - General safety information and definitions are specified for lead-acid, nickel-cadmium and nickel-metal hybrid batteries in accordance with IEC 62485-1.
This part of IEC 62485 applies to battery installations used for electric off-road vehicles; it does not cover the design of such vehicles. Examples of the main applications are: industrial; cleaning machines; trucks for material handling, for example, lift trucks, tow trucks, automatic guided vehicles; electrically propulsed lifting platforms; other applications; electric powered boats and ships. This document covers the safety aspects of battery installations in such applications. This document does not cover railway vehicles, for traction railway application, see IEC 62928. This document does not cover batteries and battery installations for the propulsion of electric road vehicles. In the event of there being a variation of requirements between this document and those of a relevant product standard (e. g. goods vehicles, bicycles, wheel chairs, golf carts), then the product standard requirements take precedence. Lithium ion cells and batteries used in traction industrial application are intended to fulfil safety requirements in accordance with IEC 62619. The maximum voltages are limited to AC 1000 V and to DC 1500 V, and the principal measures for protection against hazards, generally from electricity, gas emission and electrolyte to prevent fire and explosion are described. This document provides requirements on safety aspects associated with the installation, use, inspection, maintenance and disposal of lithium ion batteries. Batteries containing lithium metal are not covered by this document. In general, the safety requirements for secondary batteries and battery installations - General safety information and definitions are specified for lead-acid, nickel-cadmium and nickel-metal hybrid batteries in accordance with IEC 62485-1.
1.1 These requirements cover self-contained drinking-water coolers which employ hermetic refrigerantmotor-compressors and which are designed for connection to alternating-current circuits rated not greaterthan 600 volts in accordance with the National Electrical Code, NFPA 70. The requirements also apply towater coolers which supply both hot and cold water.1.2 These requirements do not include additional requirements applicable to equipment designed for usein hazardous locations as defined in the National Electrical Code, NFPA 70.1.3 A product that contains features, characteristics, components, materials, or systems new or differentfrom those covered by the requirements in this standard, and that involves a risk of fire, electric shock, orinjury to persons shall be evaluated using the appropriate additional component and end-productrequirements as determined necessary to maintain the acceptable level of safety as originally anticipatedby the intent of this standard. A product whose features, characteristics, components, materials, orsystems conflict with specific requirements or provisions of this standard cannot be judged to comply withthis standard. Where considered appropriate, revision of requirements shall be proposed and adopted inconformance with the methods employed for development, revision, and implementation of this standard.