SEW launches Australian-assembled Mining Drive
The Mining Drive features bevel-helical technologies and is suitable for motor powers up to 1500kW. Assembled with a purpose designed thermal housing, the Mining Drive is set to make a significant reduction to energy usage in heavy industry through the lessening of thermal losses. With torque ratings ranging from 58-465kNm, local-assembly of the Mining Drive will include eight sizes, taking torque range assembled to 175,000Nm.
SEW-EURODRIVE’s new IG facility, measuring 10,000m2, is being fitted out to assemble and service the largest drives available in Australasia. The state of the art fit out includes cranes capable of handling 50 tonne loads and a storage capacity in excess of 3000 pallets. The grand opening of the facility will coincide with the company’s 30th anniversary celebrations later this year.
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SEW’s latest investment in Australia’s manufacturing sector exudes a refreshing confidence at a time of global financial uncertainty.
“Increasing our local assembly capability will provide a real advantage to Australia’s industrial and mining sector,” says SEW-EURODRIVE national industrial gears product manager Ian Tribe.
“We are continuing to enhance our technological edge and enviable track-record of local assembly capabilities, to provide users with fast-tracked drive solutions. It’s this ability to provide a locally-assembled end-to-end drive solution in quick time that differentiates us from our competitors.”
According to Ian, the Australian-assembled Mining Drive boasts a modular design and is assembled from a range of standard components.
“The modularity of the Mining Drive allows for shortened delivery times, as units are assembled from stock parts,” says Ian.
“Unlike gear units manufactured overseas, the Australian-assembled Mining Drive can be supplied in just a few weeks, allowing users to streamline their own projects timelines.”
Ian says that along with the purpose-designed cast-iron housing, the Mining Drive incorporates several internal energy reducing features that are selected specifically for each application, depending on the operating conditions.
“These features result in less heat to be dissipated by the housing,” he says.
“The special housing is then designed with larger dimensions and extensive ribbing on both sides and underneath in order to dissipate the heat that is generated more effectively.”
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