Ditemukan 4 dokumen yang sesuai dengan query
Avrutin, S.
Moscow: Peace Publishers, [Date of publication not identified]
621.91 AVR f
Buku Teks SO Universitas Indonesia Library
Fakultas Teknik Universitas Indonesia, 1992
S35802
UI - Skripsi Membership Universitas Indonesia Library
Lee D. Wilson
"The machining of complex sculptured surfaces is a global technological topic, in modern manufacturing with relevance in both industrialized and emerging in countries, particularly within the moulds and dies sector whose applications include highly technological industries such as the automotive and aircraft industry. Machining of complex sculptured surfaces considers new approaches to the manufacture of moulds and dies within these industries. The traditional technology employed in the manufacture of moulds and dies combined conventional milling and electro-discharge machining (EDM) but this has been replaced with high-speed milling (HSM) which has been applied in roughing, semi-finishing and finishing of moulds and dies with great success.
Machining of complex sculptured surfaces provides recent information on machining of complex sculptured surfaces including modern CAM systems and process planning for three and five axis machining as well as explanations of the advantages of HSM over traditional methods ranging from work piece precision and roughness to manual polishing following machining operations."
London : Springer, 2012
e20425850
eBooks Universitas Indonesia Library
Tiara Dwi Aisha
"
Masalah limbah elektronik (e-waste) yang terus meningkat, Printed Circuit Board (PCB), menjadi tantangan signifikan dalam pengelolaan sampah di seluruh dunia. Papan sirkuit yang kompleks ini, komponen penting untuk barang elektronik modern, menumpuk dengan kecepatan yang mengkhawatirkan, dan pembuangannya menimbulkan masalah lingkungan yang serius. Oleh karena itu, penting untuk mengembangkan solusi yang aman dan bertanggung jawab untuk pengelolaan dan pembuangan limbah elektronik. Penelitian ini berfokus pada eksplorasi parameter optimal metode dry milling, termasuk durasi milling, kecepatan milling, dan ball-to-powder ratio (BPR). Penelitian ini juga menyelidiki evolusi ukuran partikel selama proses milling PCB. Hasil penelitian menunjukkan korelasi yang jelas antara durasi milling dan distribusi ukuran partikel. Seiring dengan bertambahnya waktu milling, ukuran partikel menjadi semakin kecil. Namun, penelitian ini menunjukkan kemungkinan peningkatan ukuran partikel awal selama tahap awal milling. Proses milling menggunakan shaker mill yang dilengkapi dengan media bola stainless steel. Distribusi ukuran partikel yang dihasilkan dari material yang di-milling dikarakterisasi menggunakan Particle Size Analyzer. Milling selama 3 jam menghasilkan distribusi ukuran partikel terkecil, dengan ukuran partikel rata-rata 991,3 nm. Sembilan puluh persen (90%) partikel berukuran di bawah 564,6 nm dengan Polydispersity Index (PDI) berada di rentang menengah yaitu sekitar 0,69.
The growing problem of electronic waste (e-waste), particularly printed circuit boards (PCBs), is posing a significant challenge to waste management around the world. These complex boards, crucial for modern electronics, are accumulating at an alarming rate, and their disposal presents a serious environmental concern. Therefore, it is crucial to develop safe and responsible solutions for managing and disposing of e-waste. This research focuses on exploring the optimum parameter of dry milling method, including milling duration, milling speed, and ball-to powder ratio. It investigates the evolution of particle size during the milling process of PCBs. The results showed a clear correlation between milling duration and particle size distribution. As milling time increased, particles became progressively smaller. However, this study suggests a possible initial increase in particle size during the first stage of milling. The milling process utilized a shaker mill equipped with stainless steel ball media. The resulting particle size distribution of the milled material was characterized using a Particle Size Analyzer. Milling for 3 hours achieved the smallest particle size distribution, with an average particle size of 991,3 nm. Ninety percent (90%) of the particles are under 564.6 nm in size, with a Polydispersity Index (PDI) in the medium range, approximately 0.69."
Depok: Fakultas Teknik Universitas Indonesia, 2024
T-pdf
UI - Skripsi Membership Universitas Indonesia Library