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Perancangan Sistem Monitoring pada Mesin Stamping (Studi Kasus: PT. Mekar Armada Jaya)
Bibliografi
Author:
PURNOMO, TEJO EKO
;
Hidayat, Trifenaus Prabu
(Advisor)
Topik:
Downtime
;
Monitoring
;
Temperature
Bahasa:
(ID )
Penerbit:
Program Studi Teknik Industri Fakultas Teknik Unika Atma Jaya
Tempat Terbit:
Jakarta
Tahun Terbit:
2010
Jenis:
Theses - Undergraduate Thesis
Fulltext:
Tejo Eko Purnomo's Undergraduated Theses.pdf
(1.8MB;
10 download
)
Ketersediaan
Perpustakaan Pusat (Semanggi)
Nomor Panggil:
FTI-588
Non-tandon:
tidak ada
Tandon:
1
Lihat Detail Induk
Abstract
PT. Mekar Armada Jaya is a manufacturing company engaged in the vehicles manufacture order (Stamping & Tools) by producing Dies, Jig, Checking Fixtures and Press Part Components. The problem that occurs is the problem of machine downtime, where the big press machine downtime from month to month tends to increase where the amount of downtime is always at the limit downtime to be achieved by the company that is 240 minutes per month. The height of this problem shows that the system downtime maintenance performed by Plant Services is still not functioning well enough to overcome the downtime occurred. Therefore, downtime issues and trends to increase this should immediately be treated with care system reform by Plant Services. Machine that becomes the object of research is stamping press machine with a label A3 (KOMATSU E4G600) where the value of downtime that happened was the highest value of downtime between other machines, it is reached 718 minutes during the period January to June 2008. Mecchanical problems that resulted in the length of time the improvement is caused by the overheat problem that occurred in the oil system where this has resulted in pressure from the engine to be reduced and result in damage to the hydraulic system so that when the fast is not anticipated to cause further damage. Temperature has a value that changes the actual amount, because it requires handling of continuous monitoring to monitor the actual. Continuous monitoring in this matter is a handler that incorporates preventive and predictive. Temperature monitoring is done by using a thermistor sensor in which the thermistor will be active when the temperature reaches 86 degrees Celsius and sending the signal using wireless TLP434A with a radius of up to 200 m. Views monitoring using visual basic software that can read ports on the computer and can present the appearance of downtime calculations automatically. The design of this monitoring can help in Plant Service to monitor temperature conditions for the anticipated temperature limit on the verge.
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