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Development of new positive-grid alloy and its application to long-life batteries for automotive industry

机译:新型正极合金的开发及其在汽车工业长寿命电池中的应用

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摘要

Positive-grid corrosion and its resulting creep or growth is one of the major causes of the failure of automotive lead-acid batteries. The importance of grid corrosion and growth is increasing given the tendency for rising temperatures in the engine compartments of modern vehicles. In order to cope with this situation, a new lead alloy has been developed for positive-grids by utilizing an optimized combination of lead-calcium-tin and barium. In addition to enhanced mechanical strength at high temperature, the corrosion-resistance of the grid is improved by as much as two-fold so that the high temperature durability of batteries using such grids has been demonstrated in both hot SAE J240 tests and in field trials in Japan and Thailand. A further advantage of the alloy is its recycleability compared with alloys containing silver. The new alloy gives superior performance in both 12-V flooded and 36-V valve-regulated lead-acid (VRLA) batteries.
机译:正极格栅腐蚀及其导致的蠕变或增长是汽车铅酸蓄电池失效的主要原因之一。考虑到现代车辆的发动机室中温度升高的趋势,格栅腐蚀和生长的重要性日益增加。为了应对这种情况,已经通过利用铅钙锡和钡的优化组合开发了一种用于正极板的新型铅合金。除了提高高温下的机械强度外,栅极的耐腐蚀性能也提高了两倍,因此在热SAE J240测试和现场试验中都证明了使用这种栅极的电池的高温耐久性在日本和泰国。与含银的合金相比,该合金的另一个优点是其可回收性。这种新型合金在12V溢流和36V阀控铅酸(VRLA)电池中均具有出色的性能。

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