Pengaruh Beban Tersebar dan Terpusat Terhadap Lendutan (Cantilever) Batang Besi

Alfian Tri Des Wantoro, I. Qiram, Anas Mukhtar
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Abstract

In development planning in the mechanical industry or civil engineering construction, it is very common to use the properties of the iron rod material which can deflect or what is known as a cantilever. The factors that affect the size of the force exerted on the stem are directly proportional to the amount of deflection that occurs. In other words, the greater the load experienced by the rod, the greater the deflection. Deflection of rods plays an important role, especially in building construction, wherein certain parts such as the shaft, deflection is very undesirable. Because of deflection, the work of the shaft or construction will be abnormal so that it can cause damage to the construction or other parts. This study aims to find out how much deflection of cantilevered rods using metal plate material when given a distributed and concentrated load. Based on the data obtained from the research process, the results in this study indicate that there is an effect of slackening distance on the iron plate with 3 variations in loading. The results showed that the loading rate affected changes in the angle of deflection of the iron plate in every variation of the number of plates used. The greatest effect occurred in the plate variation size of 0.8 mm with a loading level of 3 kg, namely 3.64 x 10-5 and the smallest effect on plate variations was 1.8 mm with a loading rate of 3 kg, which was 0. The results showed that the loading rate was spread across 3 plate variations. with a load of 3 kg spread over 3 points with a distance of 15 cm from point 1 to point 3. The biggest deflection effect occurs in plate variations of 0.8 mm which is 3.64x10-5 and the smallest effect on plate variations is 1.8 mm with the same load of 0.
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在机械工业或土木工程建设的发展规划中,使用可以偏转或称为悬臂的铁棒材料的特性是非常常见的。影响施加在阀杆上的力的大小的因素与发生的挠度成正比。换句话说,杆承受的载荷越大,挠度就越大。杆的挠曲起着重要的作用,特别是在建筑施工中,其中某些部分,如轴,挠曲是非常不希望的。由于偏转,轴或构筑物的工作将出现异常,从而造成构筑物或其他部件的损坏。本研究的目的是找出使用金属板材料的悬臂杆在受到分布和集中荷载时的挠度。根据研究过程中获得的数据,本研究的结果表明,在3种载荷变化情况下,铁板存在松弛距离的影响。结果表明,在每一种板数变化的情况下,加载速率对铁板挠曲角的变化都有影响。加载水平为3 kg时,0.8 mm的板幅变化幅度最大,为3.64 × 10-5;加载率为3 kg时,1.8 mm的板幅变化幅度最小,为0。结果表明,加载速率分布在3个板的变化上。3公斤的载荷分布在3个点上,从点1到点3的距离为15厘米。当荷载为0时,板的挠度变化在0.8 mm时最大,为3.64 × 10-5,对板的挠度变化影响最小,为1.8 mm。
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