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DT912D TUNNELING JUMBO

Sandvik DT912D is a self-contained, air-mist flushing, diesel-hydraulic high reach single boom jumbo, offering high quality drilling. It's designed for fast and accurate drifting and production drilling of 12 to 125 m² cross sections, and the 24 ton jumbo combines Sandvik's own technology, creativity and expertise with the vast experience gained over the decades in the field. Sandvik DT912D is an optimal machine for multifaceted operations, especially in limestone applications.

DT912D TUNNELING JUMBO
Sandvik DT912D is a self-contained, air-mist flushing, diesel-hydraulic high reach single boom jumbo, offering high quality drilling. It's designed for fast and accurate drifting and production drilling of 12 to 125 m² cross sections, and the 24 ton jumbo combines Sandvik's own technology, creativity and expertise with the vast experience gained over the decades in the field. Sandvik DT912D is an optimal machine for multifaceted operations, especially in limestone applications.
 
Sandvik DT912D features a 25 kW high frequency RD525 rock drill for superior drilling performance with long lifetime, as well as a Tier 4 Final engine with 205 kW. The machine is highly productive with low fuel consumption, enabling optimal return on investment. In addition, the intelligent control system will bring high quality and increased efficiency in both tunneling and underground mine production.
 
Advantages
 
Completely self-contained; efficient onboard compressor and extra-large water tank allow the DT912D to operate independently from the mine or tunnel infrastructure
Powerful Tier 4 Final engine offers productivity with low fuel consumption and cut-down emissions
New articulated carrier enables operation in tight tunnels and narrow corners
Brand new cabin design for improved ergonomics and maximized safety; noise levels under 73 dB at all times
New intelligent drilling control system with nine different hole type settings and three alternative control methods
New cabin lifting system for improved visibility and adaptivity