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New lead alloys for high-performance lead-acid batteries

机译:用于高性能铅酸电池的新型铅合金

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Consumers require lead-acid batteries with a high level of reliability, low cost and improved life, and/or with less weight and good tolerance to high-temperature operation. To reduce the thickness (weight) of the grids, the alloy materials must exhibit higher mechanical properties and improved corrosion resistance. In this study, the performance of negative and positive grids is evaluated in battery tests. The results demonstrate that continuously cast and expanded grids made from barium-doped lead-calcium-tin alloys meet performance requirements. For negative grids, improvement in the mechanical properties can lead to reliable thinner grids. For positive grids, the alloys exhibit improved mechanical properties and greater corrosion resistance. These features provide extremely good creep behaviour during battery operation such that performance under the hot SAE J240 test is superior to that achieved previously with expanded grids.
机译:消费者需要铅酸电池,该铅酸电池具有高水平的可靠性,低成本和改善的寿命,和/或具有更轻的重量和对高温操作的良好耐受性。为了减小格栅的厚度(重量),合金材料必须表现出更高的机械性能和改善的耐腐蚀性。在这项研究中,在电池测试中评估了负极和正极网格的性能。结果表明,由掺杂钡的铅钙锡合金制成的连续铸造和膨胀格栅可以满足性能要求。对于负极格栅,机械性能的改善可导致可靠的较薄格栅。对于正极格栅,合金表现出改善的机械性能和更大的耐腐蚀性。这些功能在电池运行期间提供了非常好的蠕变性能,因此在热SAE J240测试下的性能优于以前使用扩展网格实现的性能。

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