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Effect of film properties on formability of aluminum pouch for secondary battery

机译:薄膜性能对二次电池铝袋铸造性的影响

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The present study was conducted to investigate the effect of film properties on the formability of aluminum pouches for secondary batteries. Among the physical properties of the film, the effects of the friction coefficient and the elongation rate on the formability were investigated. The purpose of this study is to draw the improvement of formability according to the physical properties of the films for constructing the aluminum pouch on the assumption that the Friction resistance between the mold and material in the forming process and the Tensile resistance generated when the material is deformed by the punch will affect the formability. The results showed that the formability was better when the friction coefficient was lower. Specially, the formability is improved more in the sample that had the nylon film with a reduced friction coefficient than in the sample with the CPP film that had a reduced friction coefficient. This indicates that the limit of bending deformation was extended as the friction coefficient of the nylon film get lower. In addition, we found that the formability depends on the elongation property. The formability is improved when the nylon film with isotropic property and a CPP film with stable elongation property were applied. In a sample NY.2/CPP.2 manufactured by using an isotropic nylon and a stably elongated CPP film, the formability has maximum forming depth of 5.5 mm. This result verified that materials that have low friction coefficient, isotropy and a stable elongation property may be applied to improve the formability.
机译:进行本研究以研究膜性能对二次电池铝袋的成形性的影响。在薄膜的物理性质中,研究了摩擦系数的影响和伸长率对成形性的伸长率。本研究的目的是根据用于构造铝袋的薄膜的物理性质的可成形性的改善,以使模具和材料中的模具和材料之间的摩擦阻力和材料所产生的拉伸电阻由冲头变形会影响成形性。结果表明,当摩擦系数较低时,可成形性更好。特别地,在具有比样品中具有减小的摩擦系数的样品中具有降低的摩擦系数的样品中的可成形性更高。这表明弯曲变形的极限随着尼龙薄膜的摩擦系数而延长。此外,我们发现可成形性取决于伸长性。当采用具有稳定伸长性能的各向同性性能和具有稳定延伸性的CPP膜时,可以改善可成形性。在通过使用各向同性尼龙和稳定细长的CPP膜制造的样品中,可成形性具有5.5mm的最大成形深度。该结果证明了具有低摩擦系数,各向同性和稳定的伸长性能的材料以改善可成形性。

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