首页> 外文期刊>Journal of power sources >Development of high power VRLA batteries using novel materials and processes
【24h】

Development of high power VRLA batteries using novel materials and processes

机译:使用新型材料和工艺开发高功率VRLA电池

获取原文
获取原文并翻译 | 示例
       

摘要

Nowadays UPS manufacturers demand batteries with very high specific power and relatively low specific energy, because most mains failures can be defined as "microfailures", usually of the order of seconds. Due to this fact, it is not necessary to provide energy but power. Within a 3-year EU funded project, a new AGM valve-regulated lead-acid battery with weight and volume substantially reduced, as well as a substantial improvement in its reliability, is under development. These aspects can provide the achievement of a more efficient, safe and economic energy supply. Battery specific power is practically related to electrode area, so that its increase, and therefore an electrode thickness reduction, appear essential to achieve the project objectives. Furthermore, it is necessary to achieve a similar reduction in the conventional glass microfibre separator. But such thin material should have improved mechanical properties and can make the battery more prone to develop short circuits across the separator. In order to avoid this problem, a new microporous polyethylene membrane has been developed and tested, with excellent mechanical properties, high porosity and low pore size. For these reasons, the final separator configuration includes a combination of both materials, improved non-woven glass microfibre and the polyethylene membrane. Batteries are designed and assembled by Tudor (Exide Technologies) as battery manufacturer and will be tested in real conditions by MGE UPS Systems as end user. Daramic for the membrane and Bernard Dumas for the glass microfibre mat, have developed and supplied the separators, while the Inorganic Chemistry Department of Cordoba University carries out fundamental research studies on very thin electrodes.
机译:如今,UPS制造商要求电池具有很高的比功率和相对较低的比能量,因为大多数主电源故障都可以定义为“微故障”,通常为几秒钟。由于这个事实,没有必要提供能量而是提供能量。在一项由欧盟资助的为期3年的项目中,正在开发一种新型AGM阀控式铅酸电池,该电池重量和体积均显着降低,并且可靠性大大提高。这些方面可以提供更有效,安全和经济的能源供应。电池的比功率实际上与电极面积有关,因此它的增加以及因此电极厚度的减小对于实现项目目标显得至关重要。此外,有必要在传统的玻璃微纤维分离器中实现类似的减小。但是这种薄材料应该具有改善的机械性能,并且可以使电池更容易在隔板上产生短路。为了避免该问题,已经开发并测试了具有优异的机械性能,高孔隙率和低孔径的新型微孔聚乙烯膜。由于这些原因,最终的隔板构造包括两种材料的组合,改进的无纺玻璃微纤维和聚乙烯膜。电池由Tudor(Exide Technologies)作为电池制造商设计和组装,并将由MGE UPS Systems作为最终用户在真实条件下进行测试。隔膜的Daramic和玻璃微纤维垫的Bernard Dumas已开发并提供了隔膜,而科尔多瓦大学无机化学系则对非常薄的电极进行了基础研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号