Ditemukan 12351 dokumen yang sesuai dengan query
Lefteri, Chris
Switzerland: Rotovision, 2006
620.11 LEF m
Buku Teks Universitas Indonesia Library
Ashby, Michael F.
Amsterdam: Elsevier, 2005
620.112 3 ASH m
Buku Teks Universitas Indonesia Library
Maguire, J.R
London: Thomas Telford Ltd., 2000
R 620.104 MAG i
Buku Referensi Universitas Indonesia Library
"This volume gives an overview on recent developments for various applications of modern engineering design. Different engineering disciplines such as mechanical, materials, computer and process engineering provide the foundation for the design and development of improved structures, materials and processes. The modern design cycle is characterized by an interaction of different disciplines and a strong shift to computer-based approaches where only a few experiments are performed for verification purposes. A major driver for this development is the increased demand for cost reduction, which is also connected to environmental demands. In the transportation industry (e.g. automotive or aerospace), this is connected with the demand for higher fuel efficiency, which is related to the operational costs and the lower harm for the environment. One way to fulfil such requirements are lighter structures and/or improved processes for energy conversion. Another emerging area is the interaction of classical engineering with the health and medical sector. In this book, many examples of the mentioned design applications are presented."
Lengkap +
Switzerland: Springer Cham, 2019
e20501083
eBooks Universitas Indonesia Library
Boston: McGraw-Hill, 1999
620.11 SCI
Buku Teks Universitas Indonesia Library
Boston: McGraw-Hill, 1999
620.11 SCI
Buku Teks Universitas Indonesia Library
Evi Rositawati
"Salah satu aktivitas yang memegang peranan penting dalam menjamin kualitas packaging material yang akan dipakai pada proses produksi adalah aktivitas inspeksi. Dalam proses inspeksi selalu muncul situasi yang dinamis. Penelitian ini dilakukan untuk melakukan perancangan simulasi inspection plan aktivitas packaging material. Pemodelan simulasi dilakukan menggunakan software Plant Simulation. Model simulasi yang dibuat yaitu model simulasi dengan kondisi yang berjalan saat ini serta model dengan penentuan sampel menggunakan metode MIL STD 1916. Hasil penelitian ini adalah model dengan penentuan sampel yang berjalan saat ini, 1096 sampel bisa diselesaikan dengan 5 orang inspektor yang bekerja 1 shift. Sedangkan dengan penentuan sampel MIL STD 1916, 2120 sampel bisa diselesaikan dengan 6 orang inspektor yang bekerja 3 shift setiap hari.
One of the main activity that has important impact to make sure packaging materials quality that would be used in production process is inspection activity. In the inspection process always appear dynamic situation. This study was conducted to simulate the design of packaging material inspection plan activity. Simulation modeling performed using the Plant Simulation software. The simulation model that created is a simulation model using current conditions and model with sample size using MIL STD 1916 method. Results of this study was to define model using the sample size current condition, 1096 samples could be completed by 5 inspectors who work one shift. While using the sample size MIL STD 1916 method, 2120 samples could be completed by 6 inspectors who work 3 shifts per day."
Lengkap +
Depok: Fakultas Teknik Universitas Indonesia, 2015
T44537
UI - Tesis Membership Universitas Indonesia Library
Swanson, Stephen R.
New York: Prentice-Hall, 1997
620.118 SWA i
Buku Teks Universitas Indonesia Library
Syahrial Nurul Huda
"Telah dibuat sebuah rancang bangun sistem pengendali temperatur dengan sensor termokopel tipe-k dengan memanfaatkan perkembangan mikrokontroler, yaitu Mikrokontroler ATmega 16. Keluaran yang sangat kecil berorde mikrovolt yang keluar dari termokopel akan dikompensasi dan diperkuat oleh operational amplifier TL081. Sinyal analog yang berasal dari perangkat keras kemudian diubah menjadi sinyal digital oleh ADC internal 10 bit pada mikrokontroler. Selanjutnya Graphical User Interface (GUI) yang dibuat dengan software LabView 8.5 digunakan untuk pengolahan data dan menampilkan data hasil pengendalian sistem dalam bentuk data serta grafik. Pengambilan data dilakukan di Pusat Penelitian Material Sains dan Teknik Kampus UI Salemba dengan menggunakan fasilitas furnace yang memadai.
Has created a design of furnace temperature controller system by using thermocouple type-k sensor and microcontroller ATmega 16. A very small output, in microvolt order, will be compensated and amplified by an operational amplifier TL081 with variable-amplification setting. An analog signal from hardware then converted to be a digital signal by 10 bit internal ADC in microcontroller Atmega 16. After that, Graphical User Interface (GUI) assosiated by LabView 8.5 software has builded to processing data and displaying and also representing the output sensor into data and graphical view. Data experiment has taken in Research Center for Material Science and Engineering, Universitas Indonesia, Kampus Salemba with a good furnace plant facility."
Lengkap +
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2011
S960
UI - Skripsi Open Universitas Indonesia Library
Farag, Mahmoud M.
London: Prentice-Hall, 1997
620.11 FAR m
Buku Teks Universitas Indonesia Library