Tensile Strength of Coconut Coir Fiber Composite as an Alternative Material to Replace Fiberglass in Hard Socket

Nur Rachmat, Atika Febri Anggriani, Ahmad Hisyam, Doddy Suprayogi
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Abstract

Physically disabled is someone who has a movement system disorder or has physical abnormalities such as amputation, withering, stiffness, and others. The self-confidence of someone who has an amputee can be improved by having a prosthesis made, because it can replace the anatomical and functional functions of the body. The socket on the prosthesis is the most important component, because the use of the socket on the prosthesis is directly related to the patient's stump. One of the materials for making socket prosthesis is fiberglass. However, the use of fiberglass has a negative effect, namely it produces gas and dust emissions that can irritate stumps, is not a local product, and is difficult to recycle. Alternative fiber materials are using fibers from nature, coco fiber is an option as an alternative to fiberglass. The tensile strength test is the most basic test. The tensile strength test was carried out to determine the stress, strain, and elastic modulus of the fibrous polymer composites. The purpose of this study was to analyze and compare the tensile strength between fiberglass and coconut coir fiber, so as to find out which fiber material is suitable as an alternative to fiberglass in the manufacture of socket prosthesis. Using experimental quantitative methods. The composite material uses coconut coir fiber which was previously treated with 5% NaOH for 1 hour and then dried for 2-3 days. In the fabrication process using the vacuum bag method. Standard specimen refers to ASTM D3039/3039M. Tensile testing showed that the average tensile strength value of the coco fiber composite was 16.2 MPa and the average tensile strength value of the fiberglass composite was 30.2 MPa. This means that the value of the tensile strength of coco fiber is still below fiberglass and cannot be used as a substitute for fiberglass. However, coconut coir fiber can be used as an alternative to fiberglass, judging from the average maximum force that the coco fiber composite can withstand, which is 2630 N or equivalent to a load of 263 kg, this value is sufficient for the average adult weight in Indonesia with an average weight of 60 kg body
椰椰纤维复合材料在硬套筒中替代玻璃纤维的拉伸强度研究
身体残疾是指有运动系统障碍或身体异常的人,如截肢、萎缩、僵硬等。截肢者的自信可以通过假肢得到改善,因为它可以取代身体的解剖和功能功能。假体上的窝是最重要的部件,因为假体上的窝的使用直接关系到患者的残端。玻璃纤维是制造假体的材料之一。然而,使用玻璃纤维有一个负面影响,即它产生的气体和灰尘排放会刺激树桩,不是本地产品,而且很难回收。可替代纤维材料使用的是来自大自然的纤维,可可纤维是一种可替代玻璃纤维的选择。拉伸强度试验是最基本的试验。进行拉伸强度试验,测定纤维聚合物复合材料的应力、应变和弹性模量。本研究的目的是分析和比较玻璃纤维和椰子纤维的抗拉强度,以找出哪种纤维材料适合替代玻璃纤维用于制造假体。采用实验定量方法。复合材料采用椰壳纤维,经5% NaOH处理1小时后干燥2-3天。在制作过程中采用真空袋法。标准试样参照ASTM D3039/3039M。拉伸试验表明,可可纤维复合材料的平均抗拉强度值为16.2 MPa,玻璃纤维复合材料的平均抗拉强度值为30.2 MPa。这意味着可可纤维的抗拉强度值仍低于玻璃纤维,不能作为玻璃纤维的替代品。然而,椰子纤维可以作为玻璃纤维的替代品,从椰子纤维复合材料可以承受的平均最大力来看,它可以承受2630牛或相当于263千克的载荷,这个值对于印度尼西亚平均体重为60千克的成年人来说是足够的
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