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The effects of geometrical and process variables on the quality of cast-on-strap joints

机译:几何和工艺变量对铸带接头质量的影响

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An automated laboratory-scale, cast-on-strap joining process for lead/acid batteries has been developed. This allows tight control of relevant casting parameters such as strap mould and metal temperature, lug immersion speed, and the time between strap filling and lug entry into the molten strap. The joining of lead-antimony or lead-tin strap alloys with lead-antimony or lead-calcium-tin lugs is studied. It is found that lead-tin is not suitable as a strap alloy for the alloy combinations and joining conditions that have been investigated. Penetration depth of the lug into the strap is found to be critical and may be optimized for a given lug thickness under fixed process conditions. The joint quality improves with a deeper penetration of the thicker lugs for the geometrical configurations studied in this work. It is far easier to form a sound joint with thin lugs as these are not as sensitive as thick lugs to variations in the joining conditions.
机译:已经开发出用于铅/酸电池的自动化实验室规模的带上浇铸连接工艺。这样就可以严格控制相关的铸造参数,例如带钢模具和金属温度,凸耳的浸入速度以及填充带钢和凸耳进入熔融带钢之间的时间。研究了铅锑合金或铅锡带状合金与铅锑合金或铅钙锡合金耳的连接。发现铅-锡不适合作为已研究的合金组合和连接条件的带状合金。凸耳进入带中的渗透深度是至关重要的,并且可以在固定的工艺条件下针对给定的凸耳厚度进行优化。对于这项工作中研究的几何构型,随着厚突耳的更深穿透,接头质量得到改善。用薄的凸耳形成可靠的接头要容易得多,因为它们对接合条件的变化不如厚的凸耳那么敏感。

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