Analisis Struktur dan Desain Delay Detonator Non Electric (Nonel) terhadap Distribusi Fragmentasi Hasil Peledakan dengan Menggunakan Model Kuz-Ram di PT. Mandiri Sejahtera Sentra, Kabupaten Purwakarta, Provinsi Jawa Barat

Beni Taufik Hidayatuloh, Yuliadi Yuliadi, Linda Pulungan

Abstract


PT. Mandiri Sejahtera Sentra is a subsidiary of PT. Indocement Tunggal Prakarsa Tbk, which engages in mining of andesite rock. The Andesit exploitation done by using blasting technique, using peledak ANFO andDayagel Permitted 0,2 gr explosives, at the beginning blasting isNon Electric Detonator with  delay 17sm, 25ms, 42ms, 67ms that combined with electric detonator as explosive trigger. The application of geometry and detonator delay at the moment not to care about blasting directions and discontinuities orientation, so needs to reconsideration or be adapted with pit shape orientation to geological structure orientation to get optimum fragmentation.Geometry improvement done by using blastability index accordance with geological structure conditions, which then designing the blasting geometry using equation C.J. Konya. At the end blasting geometry design and non electric delay detonator design which applied can get optimum fragmentation on geological structure condition. On JPO 20 with blasting orientation cutting the discontinuities orientation (joints) delay detonator design at betwen 31,66 ms – 42,31 ms for control row and52,9 ms – 106,02 ms for control wing obtainable general fragmentation distribution with fragmentation percentage at size ≤ 50 cm is 99,18 %, size 50 cm < x ≤ 80 cm is 0,77 %, and size > 80 cm (boulder) is 0,05 %.

 

PT. Mandiri Sejahtera Sentra merupakan anak perusahaan PT. Indocement Tunggal Prakarsa Tbk, yang bergerak dibidang penambangan batu andesit. Pembongkaran batuan andesit dari batuanan induknya dilakukan dengan kegiatan peledakan menggunakan bahan peledak ANFO dan Dayagel Permitted 0,2 gr pada penggalak awal berupa Detonator Non Electric pada delay 17sm, 25ms, 42ms, 67ms yang dikombinasikan dengan detonator elektrik sebagai pemicu ledak. Penerapan geometri dan delay detonator saat ini kurang memperhatikan arah peledakan dan orientasi bidang lemah, sehingga perlu peninjauan ulang atau disesuaikan dengan orientasi bentuk pit terhadap orientasi struktur geologi untuk mendapat hasil fragmentasi yang lebih optimum. Perbaikan geometri dilakukan memanfaatkan blastability index sesuai dengan kondisi struktur geologi dilapangan, yang kemudian dilakukan pendesainan geometri peledakan menggunakan persamaan C.J. Konya. Pada akhirnya desain geometri peledakan dan desain delay detonator non electric (nonel)  yang diterapkan dapat memperoleh tingkat fragmentasi yang optimum pada kondisi struktur geologi dilapangan. Pada JPO 20 dengan arah peledakan memotong arah umum bidang lemah (kekar) dengan desain  delay detonator pada kisaran antara 31,66 ms – 42,31 ms untuk control row dan 52,9 ms – 106,02 ms untuk control wing diperoleh distribusi fragmentasi umum dengan persentase fragmentasi pada ukuran ≤ 50 cm sebesar  99,18 %, ukuran 50 cm < x ≤ 80 cm sebesar 0,77 %, dan ukuran > 80 cm (boulder) sebesar 0,05 %.

 


Keywords


Structure Orientation, Design Delay Detonator, Blasting Geometry, Fragmentation

References


Anonim, 1987. “Anzomex Primersâ€, the new generation, ICI Australia Operation, Pty. Ltd. Explosive Division.

Anonim, 1977,. “Blasters’ Handbook, Du Pont, 16th edâ€, Sales Development Section, Explosives Products Division, E.I. du Pont de Nemours & Co.(Inc), Wilmington, Delaware, pp. 87 – 142.

Anonim, 1988. “Blasting Explosives and Accessoriesâ€, ICI Australia Operation, Pty. Ltd. Explosive Division, pp. 1 – 17.

Anonim, 1987. “Detonating Cordâ€, the new product for better blasting, ICI Australia Operation, Pty. Ltd. Explosive Division, pp. 1 – 16.

Anonim, 1987. “Primadet, Initiating Systemâ€, ICI Australia Operation, Pty. Ltd. Explosive Division, pp. 1 – 13.

Anonim, 1987. Siderdeck, “Reel off in-hole delay initiation systemâ€, ICI Australia Operation, Pty. Ltd. Explosive Division.

Anonim, 2004. “Modul Juru Ledak Kelas IIâ€. PUSDIKLAT Teknologi Mineral dan Batubara. Bandung.

Ash, R.L., 1990. “Design of Blasting Round, Surface Miningâ€. B.A. Kennedy Editor, Society for Miining, Metallurgy and Explotion.

Bieniawski Z.T. “Engineering Rock Mass Classificationâ€. John Wiley & Sons. New York.

Hagan, T.N. 1983. “The Influence of Controlable Blast Parameter on Fragmentation and Mining Costâ€. Proceedings oh the 1st int.Symp. on Rock Fragmentation by Blasting. Lulea, Sweden.

Jemino, Lopez. Carlos. 1995, “Drill and Blast of Rockâ€. Revised and Updated Eddition by A.A Blaskena:Rotterdam, Netherlands.

Konya, CJ. And Walter EJ. 1990. “Surface Blast Designâ€. Prentice Hall, Englewood Chiffs, New Jersey.




DOI: http://dx.doi.org/10.29313/pertambangan.v0i0.5749

Flag Counter    Â