Analisis Kegagalan Rantai Timing Sepeda Motor Bebek Akibat Beban Tarik dengan Metode Tensile Test

Bhagaskara Teguh Samudra, A. Irwan, D. A. Ritonga
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Abstract

The timing chain is one of the components that play a major role in determining how the engine works by receiving rotation from the crankshaft. This rotation is useful for moving the camshaft which is located in the cylinder head. when the timing chain is loose it often gives an unexpected sound response that can cause the timing chain to quickly stretch. the timing chain will quickly stretch on a motorcycle that rarely gets new and fresh engine oil intake. lack of maintenance on engine oil will have an impact on many things. In addition to the timing chain which is easily loosened due to the lack of a lubricant formula in the engine oil, the research begins with finding and studying various supporting theories related to the strength and elongation of the timing chain. the method used in this research is the tensile test method using the UTM machine. universal testing machine. Material testing machine with a length of 26.5 mm. The research results have 5 specimens for the first specimen on the timing chain having a tensile stress with a value of 2,00 Mpa, a tensile strain with a value of 1,07 and a modulus of elasticity with a value of 1,86 Mpa. the second specimen on the timing chain has a tensile stress with a value of 1.4 Mpa, a tensile strain with a value of 1.07 and a modulus of elasticity with a value of 1.33 Mpa. The third specimen in the timing chain has a tensile stress with a value of 1.79 Mpa, a tensile strain with a value of 1.07 and a modulus of elasticity with a value of 1.67 Mpa. the fourth specimen in the timing chain has a tensile stress with a value of 1.96 Mpa, a tensile strain with a value of 1.15 and a modulus of elasticity with a value of 1.70 Mpa. the fifth specimen in the timing chain has a tensile stress with a value of 5.79 Mpa, a tensile strain with a value of 1. and a modulus of elasticity with a value of 5.79 Mpa.
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这是对鸭子摩托车负重以肌腱测试的分析
正时链是决定发动机如何工作的主要部件之一,通过接收曲轴的旋转。这种旋转有助于移动位于气缸盖内的凸轮轴。当正时链松动时,它通常会产生意想不到的声音响应,从而导致正时链迅速拉伸。正时链条将迅速伸展的摩托车,很少得到新的和新鲜的发动机机油的进气。缺乏对发动机油的保养会对很多事情产生影响。除了正时链由于机油中缺乏润滑油配方而容易松动外,本研究还从寻找和研究与正时链强度和延伸率相关的各种支持理论开始。本研究采用的方法是利用UTM试验机进行拉伸试验。万能试验机。长度26.5 mm的材料试验机。研究结果表明,正时链上的第一个试件有5个试件,拉伸应力为2000 Mpa,拉伸应变为1.07,弹性模量为1.86 Mpa。正时链上第二个试件的拉应力为1.4 Mpa,拉应变为1.07,弹性模量为1.33 Mpa。正时链中第三个试件的拉应力为1.79 Mpa,拉应变为1.07,弹性模量为1.67 Mpa。正时链中第四个试件的拉伸应力为1.96 Mpa,拉伸应变为1.15,弹性模量为1.70 Mpa。正时链中第五个试样的拉伸应力为5.79 Mpa,拉伸应变为1。弹性模量为5.79 Mpa。
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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