Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang

In this paper was studied the design of feeding material system using four bars linkage mechanism. It was carried out dimensional synthesis of the mechanism based on the complex number method. This synthesis is applied to determine the length of crank, coupler, follower and dyad that control of feed...

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Main Authors: Syamsul Huda, Muhammad Jihad Islami, Mulyadi Bur
Format: Article
Language:English
Published: Department of Mechanical Engineering, Faculty of Engineering, Universitas Andalas 2019-07-01
Series:Metal: Jurnal Sistem Mekanik dan Termal
Subjects:
Online Access:https://metal.ft.unand.ac.id/index.php/metal/article/view/82
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author Syamsul Huda
Muhammad Jihad Islami
Mulyadi Bur
author_facet Syamsul Huda
Muhammad Jihad Islami
Mulyadi Bur
author_sort Syamsul Huda
collection DOAJ
description In this paper was studied the design of feeding material system using four bars linkage mechanism. It was carried out dimensional synthesis of the mechanism based on the complex number method. This synthesis is applied to determine the length of crank, coupler, follower and dyad that control of feeding weight. Base on the results, it is obtained that the dimension of the four bars linkage and dyad to control 250 kg weight of feeding material  reprsented by lengths of crank, coupler and follower are 1 m, 2 m, and 1 m rspectively and two links of dyad 0.2 m and 0.75 m. It was also determined the constant of spring to support the opening of the feeding material, 23,18 kN/m  and input torque, 1083 Nm.
format Article
id doaj-art-f66cf50cc2c44220bc34aec09751f0a3
institution Kabale University
issn 2598-1137
2597-4483
language English
publishDate 2019-07-01
publisher Department of Mechanical Engineering, Faculty of Engineering, Universitas Andalas
record_format Article
series Metal: Jurnal Sistem Mekanik dan Termal
spelling doaj-art-f66cf50cc2c44220bc34aec09751f0a32025-02-01T10:20:39ZengDepartment of Mechanical Engineering, Faculty of Engineering, Universitas AndalasMetal: Jurnal Sistem Mekanik dan Termal2598-11372597-44832019-07-0131172810.25077/metal.3.1.17-28.201948Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat BatangSyamsul Huda0Muhammad Jihad Islami1Mulyadi Bur2Mechanical Engineering Department Andalas UniversityUniversitas AndalasMechanical Engineering Department Andalas UniversityIn this paper was studied the design of feeding material system using four bars linkage mechanism. It was carried out dimensional synthesis of the mechanism based on the complex number method. This synthesis is applied to determine the length of crank, coupler, follower and dyad that control of feeding weight. Base on the results, it is obtained that the dimension of the four bars linkage and dyad to control 250 kg weight of feeding material  reprsented by lengths of crank, coupler and follower are 1 m, 2 m, and 1 m rspectively and two links of dyad 0.2 m and 0.75 m. It was also determined the constant of spring to support the opening of the feeding material, 23,18 kN/m  and input torque, 1083 Nm.https://metal.ft.unand.ac.id/index.php/metal/article/view/82kinematic dan dinamik, mekanisme empat batang, peralatan pengumpan material
spellingShingle Syamsul Huda
Muhammad Jihad Islami
Mulyadi Bur
Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang
Metal: Jurnal Sistem Mekanik dan Termal
kinematic dan dinamik, mekanisme empat batang, peralatan pengumpan material
title Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang
title_full Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang
title_fullStr Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang
title_full_unstemmed Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang
title_short Desain Kinematik Alat Pengumpan Material Berbasis Mekanisme Empat Batang
title_sort desain kinematik alat pengumpan material berbasis mekanisme empat batang
topic kinematic dan dinamik, mekanisme empat batang, peralatan pengumpan material
url https://metal.ft.unand.ac.id/index.php/metal/article/view/82
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AT muhammadjihadislami desainkinematikalatpengumpanmaterialberbasismekanismeempatbatang
AT mulyadibur desainkinematikalatpengumpanmaterialberbasismekanismeempatbatang