Study on Mechanical Behavior of Coconut Fiber Composite as an Alternative Material for Mobile Phone Housing

Proksima Pub Date : 2023-10-31 DOI:10.31258/proksima.v1i2.10
Muftil Badri
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Abstract

Mobile phone is one of the most widely used electronic products. Housing is part of a very important component of mobile phone. Mobile phone housing refers to the outer housing of the device that encompasses its internal components. Mobile phone housing materials have been widely developed, such as polyester, polyurethane, carbon fiber, wood and leather. This paper proposes to conduct tensile tests and fabrication of mobile phone housing to determine the mechanical characteristics of coconut fiber composites as an alternative material for mobile phone product. Finite element simulation of drop test is then conducted to determine the impact robustness of a product. The investigation of tensile characteristics was carried out using variations in fiber direction. Vacuum assisted resin infusion is used as a method for manufacturing mobile phone housing product. Finite element simulation of mobile phone housing with various drop test positions was also conducted and the impact behaviour of coconut fiber composite housing materials was also obtained. It was shown that coconut fiber can be used as an alternative material for mobile phone housing. The design of the mobile phone housing also needs to be considered at the corner position of the housing because this is the location where the maximum impact stress occurs.
椰子纤维复合材料作为手机外壳替代材料的力学性能研究
手机是使用最广泛的电子产品之一。手机外壳是手机的一个非常重要的组成部分。移动电话外壳是指包含其内部组件的设备的外部外壳。手机外壳材料得到了广泛的发展,如聚酯、聚氨酯、碳纤维、木材和皮革。本文建议对手机外壳进行拉伸试验和制作,以确定椰子纤维复合材料作为手机产品替代材料的力学特性。然后进行了跌落试验的有限元模拟,以确定产品的冲击稳健性。利用纤维方向的变化对拉伸特性进行了研究。真空辅助树脂灌注是一种制造手机外壳产品的方法。对不同跌落试验位置的手机外壳进行了有限元模拟,得到了椰子纤维复合外壳材料的冲击性能。结果表明,椰子纤维可作为手机外壳的替代材料。手机外壳的设计还需要考虑外壳的转角位置,因为这是最大冲击应力发生的位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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