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Contact Name
Asnawi
Contact Email
mjmst@unimal.ac.id
Phone
+6282162006677
Journal Mail Official
mjmst@unimal.ac.id
Editorial Address
Malikussaleh Journal of Mechanical Science and Technology (MJMST) Mechanical Engineering Laboratory, 2nd Floor, Kampus Bukit Indah, Universitas Malikussaleh, Aceh, Indonesia Jl. Kompleks Bukit Indah, Muara Satu, Kota Lhokseumawe, Provinsi Aceh, Indonesia, 24352 Email: mjmst@unimal.ac.id | Homepage : https://ojs.unimal.ac.id/mjmst/index
Location
Kota lhokseumawe,
Aceh
INDONESIA
Malikussaleh Journal of Mechanical Science Technology
ISSN : 23376945     EISSN : 28282922     DOI : 10.29103
MJMST (Malikussaleh Journal of Mechanical Science and Technology) is a national research journal and invites contributions of original research articles as well as review articles in several areas of mechanical and material science. Published by Department Mechanical engineering, Faculty of engineering, Malikussaleh University, MJMST has been register as journal publication with ISSN number for printed version 2337-6945. The journal aims to publish refereed, high-quality research papers with significant novelty and short communications in all branches of mechanical science. Manuscripts which describe the novel theory and its application to practice are welcome, as are those which illustrate the transfer of techniques from other disciplines. Malikussaleh Journal of Mechanical Science and Technology is applying double-blind peer-review process for the publication. Both the reviewer and author are anonymous. Each article is at least reviewed by two reviewers, which has high competency in the field of Mechanical Engineering MJMST calls for papers that cover the following fields: Materials & Mechanics Materials & Processing Fluids Engineering Thermal Engineering Engine Systems Power & Energy Systems Dynamics, Measurement & Control Robotics & Mechatronics Micro-Nano Science & Technology Computational Mechanics Machine Design & Tribology Design & Systems Manufacturing & Machine Tool Manufacturing Systems Information, Intelligence & Precision Equipment Bioengineering and Biomechanics Sports Engineering and Human Dynamics Environmental Engineering Industrial & Safety Transportation & Logistics Space Engineering Technology & Society Law & Technology
Articles 3 Documents
Search results for , issue "Vol 5, No 1 (2017): Malikussaleh Journal of Mechanical Science and Technology" : 3 Documents clear
Design of Quarter Car Test Bench to Measure Forces on the Tire Contact Path B Bukhari
Malikussaleh Journal of Mechanical Science and Technology Vol 5, No 1 (2017): Malikussaleh Journal of Mechanical Science and Technology
Publisher : Malikussaleh University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29103/mjmst.v5i1.10883

Abstract

Suspension system that located between vehicle body and wheels are designed to absorb shock from road surface. The dynamic behavior of the suspension and tire is depends on many factors. Some of the main factors are the vehicle load, speed, steering angle and the magnitude of the elasticity of the tire. The position of the tire-road contact is also always changed when the vehicle running make it difficult to observe the dynamic response of tires. To overcome this problem, in this paper, an in-door test-rig model is designed and evaluated experimentally. This study was conducted by five methods, namely; design, simulation, production, and experimentally test. The dynamic response evaluated includes geometric change of tires and the change of camber angle. The model build consist of framework components, the sprung mass as a representation of aquarter car body and un-sprung mass which are components of the suspension system, wheels and tires. The results show that the proposed design construction is not only saved to handle all forces and moments but alsocan fulfilled functions to simulate the dynamic response of ¼ car model. 
Uji Stress-Strain Mekanik Komposit Polymeric Foam Diperkuat Serat Tandan Kosong Kelapa Sawit (TKSS) Akibat Pembebanan Statis Z Zulfahmi
Malikussaleh Journal of Mechanical Science and Technology Vol 5, No 1 (2017): Malikussaleh Journal of Mechanical Science and Technology
Publisher : Malikussaleh University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29103/mjmst.v5i1.10885

Abstract

Polimer resin BQTN – Ex 157, isosianate, dan poliol sebagai matriks formulasi kompositas polymeric foam, selanjutnya memanfaatkan bahan reinforced serat alam Serat Tandan Kelapa Sawir (TKKS) yang merupakan limbah industri Pabrik Kelapa Sawit diproses secara alkalisasi 1% NaOH menghasilkan benang seratyang terbebas dari unsur sellulossa dan unsur lain yang melekat pada geometri TKKS. Penelitian ini fokus mengetahui nilai ketangguhan tegangan yang terjadi akibat pembebanan mekanik pada spesimen komposit polymeric foam ASTM D-620 menggunakan alat uji servopulser . Hasil pengujian diporeleh tegangan σmax = 9,863 MPa, rengangan ε max = 0,04581 mm / mm, modulus elastisitas Emax = 215,2368MPa, elongasi maksimum sebesar 4,271 %, Rerata nilai stress-strain mekanik komposit polimeric foam diperkuat serat Tandan Kosong Kelapa Sawit (TKKS) sebesar σ = 6,5537 MPa, serta ε = 0,039705 MPa
Economic Empowerment for Santri By Making Pulp Paper in Dayah of Ulumuddin, Lhokseumawe Akhyar Ibrahim; Ilyas Yusuf; Cut Aja Rahmawati
Malikussaleh Journal of Mechanical Science and Technology Vol 5, No 1 (2017): Malikussaleh Journal of Mechanical Science and Technology
Publisher : Malikussaleh University

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29103/mjmst.v5i1.10881

Abstract

Ulumuddin foundation situated between the coastal area and forest area is surrounded bytraditional and industry plantation. The foundation has been holding some bording school education such as SDIT, MTs, MA, and SMK, and esspecially Traditional Islamic School (Dayah). Most of santri look like lack ofliving cost because they only hope the morney from their parent who is only pre whealfers’ family. Given thesecircumstances, an effort was needed to improve the santris’ life. A partnership in technology, mentoring andcapital provision was taken through the Ipteks bagi Masyarakat (IbM) Program. A design of big blender wasprepared and introduced to two group of santri. A group of ten santri was involved to the program of makingpulp system technology aimed to increase the partners’ revenue. The results of the cost analysis concluded thatthe rate of return was 30%; the Break Event Point (BEP) was Rp.7.500/kg pulp; and return of inverment periodwas 0.6 years in-service. Copyright © 2017 Department of Mechanical Engineering. All rights reserved.

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