CN2419691Y - 高倍率镉镍电池极板钢带 - Google Patents

高倍率镉镍电池极板钢带 Download PDF

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Publication number
CN2419691Y
CN2419691Y CN 00200685 CN00200685U CN2419691Y CN 2419691 Y CN2419691 Y CN 2419691Y CN 00200685 CN00200685 CN 00200685 CN 00200685 U CN00200685 U CN 00200685U CN 2419691 Y CN2419691 Y CN 2419691Y
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cadmium
batteries
nickel
magnification
utility
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蒋聚培
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Abstract

本实用新型涉及一种用于制造高倍率镉镍碱性袋式电池极板的钢带,钢带上冲有多数个均匀分布的圆孔,孔密度大于500个/平方厘米,孔率在25%以上。这种高倍率镉镍电池极板钢带能够满足制造高倍率镉镍电池时对极板的要求。用其制成的电池放电时间可达到8分钟,放电容量可达到5C5A,与烧结型高倍率镉镍电池相比,成本几乎要降低一半。

Description

高倍率镉镍电池极板钢带
本实用新型涉及一种用于制造高倍率镉镍碱性袋式电池极板的钢带。
镉镍袋式电池的极板常用钢带来制造。首先在钢带上冲孔,然后制成袋状或盒状,再把粉末状或片状活性物质放于其中,最后将口封上,即可制成极板。通过极板上的密集小孔,活性物质与浸没极板的电解液接触,发生电化学反应,从而产生电流。钢带上孔密度及孔率的高低不同,则极板上发生电化学反应的有效面积不同,造成放电倍率的高低不同。孔密度及孔率越高,放电倍率越高。所谓孔密度,即每平方厘米的钢带上的小孔的数量。所谓孔率,即每平方厘米的钢带上的小孔面积数值之和的百分比。所谓放电倍率,即放电电流强度在数值上等于该电池额定容量的倍数。目前,冲孔型镉镍电池只有低倍率和中倍率两种规格,而无高倍率规格。其主要原因之一是钢带上的孔密度与孔率较低。例如,低倍率袋式电池的孔密度大约为200个/平方厘米,孔率为10~14%。中倍率袋式电池的孔密度大约为400个/平方厘米,孔率为20~22%。而烧结型高倍率镉镍电池的成本较高,很少被采用。因此造成了高倍率袋式镉镍电池的短缺。
本实用新型的目的是提供一种成本较低,并适于制造高倍率镉镍电池极板的钢带。
为了达到上述目的,本实用新型采用适当的冲孔方法,使钢带上的孔密度提高到500个/平方厘米以上,孔率提高到25%以上。
下面结合具体实施例对本实用新型高倍率镉镍电池极板钢带做进一步的详细说明。
图1为本实用新型高倍率镉镍电池极板钢带的结构示意图。
参考图1本实用新型高倍率镉镍电池极板钢带1上冲有多数个均匀分布的小孔2,小孔2呈圆形。小孔密度大于500个/平方厘米,孔率在25%以上。由于钢带1的孔密度与孔率较高,用其制成的电池极板的有效面积大于中、低倍率电池的极板,适于高倍率大电流放电。
这种高倍率镉镍电池极板钢带能够满足制造高倍率镉镍电池时对极板的要求。经测试,用这种钢带制成的电池放电时间已超过了国际IEC标准(5分钟),最高可达到8分钟,放电容量可达到5C5A。用其制成的电池与烧结型高倍率镉镍电池相比,成本几乎要降低一半。

Claims (1)

1.一种高倍率镉镍电池极板钢带,钢带上冲有多数个均匀分布的圆孔,本实用新型的特征为孔密度大于500个/平方厘米,孔率在25%以上。
CN 00200685 2000-01-18 2000-01-18 高倍率镉镍电池极板钢带 Expired - Fee Related CN2419691Y (zh)

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CN 00200685 CN2419691Y (zh) 2000-01-18 2000-01-18 高倍率镉镍电池极板钢带

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105870374A (zh) * 2016-05-31 2016-08-17 河南省恒明风云电源有限公司 一种袋式碱性蓄电池镀镍穿孔钢带

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105870374A (zh) * 2016-05-31 2016-08-17 河南省恒明风云电源有限公司 一种袋式碱性蓄电池镀镍穿孔钢带

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