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Some design aspects and the role of AGM separator in VRLA batteries

机译:VRLA电池中AGM隔板的一些设计方面和作用

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Valve regulated lead acid batteries (VRLA) have continued to find acceptance in the marketplace. However, over the past few years premature performance shortfall (PPS) has tarnished the image of these batteries. While no manufacturer has been immune from this condition it appears to have affected some manufacturers more than others. It is generally believed that PPS is due to either a loss of water from the electrolyte or is associated with the mechanical instability of the AGM (absorbent glass mat) separator. Several independent tests on commercially available batteries were made in an effort to investigate simulated dry-out conditions, i.e., the same conditions that are presumed to promote PPS. The parameters investigated in these tests include differing electrolyte and sulfate levels as well as tests on the mechanical properties of the acid wetted AGM separator. A final test suggests the importance of proper charging towards maintaining capacity. None of the simulated conditions could initiate PPS in the battery. When properly designed, the AGM mat is found to retain adequate resiliency. The test results suggest that PPS may be primarily attributed to mechanical battery design factors. A generic problem of separator shrinkage causing PPS in VRLA batteries made with AGM mat could not be detected.
机译:阀控式铅酸蓄电池(VRLA)一直在市场上获得认可。但是,在过去的几年中,过早的性能下降(PPS)损害了这些电池的形象。尽管没有制造商能够幸免于这种情况,但似乎对某些制造商的影响比对其他制造商的影响更大。通常认为PPS是由于电解质中水分的流失或与AGM(吸收性玻璃垫)隔板的机械不稳定性有关。为了研究模拟的变干条件,即假定促进PPS的相同条件,对市售电池进行了几次独立测试。在这些测试中研究的参数包括不同的电解质和硫酸盐含量,以及对酸浸湿的AGM隔板的机械性能进行的测试。最终测试表明正确充电对维持容量的重要性。任何模拟条件都无法启动电池中的PPS。如果设计正确,则可以发现AGM垫保留了足够的弹性。测试结果表明,PPS可能主要归因于机械电池的设计因素。无法检测到由AGM垫制成的VRLA电池中导致PPS的隔板收缩的一般问题。

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