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VERICUT and AML join forces to simplify complex machining demands

VERICUT from CGTech is a key component of business success at this rapidly expanding precision machining company


After a decade of using VERICUT machine simulation, verification and optimisation software, Advanced Manufacturing (Sheffield) Ltd (AML) is extolling the virtues of providing industry-leading protection for its high-value capital assets and expensive parts. VERICUT from CGTech is a key component of business success at this rapidly expanding precision machining company, which serves a plethora of customers in sectors such as aerospace, energy and defence. More recently, AML has embraced the efficiency and productivity gains offered by VERICUT’s Force™ module, which is driving tool life gains and cycle time reductions in the order of 30-40%.

Originally a spin-out from the award-winning Advanced Manufacturing Research Centre (AMRC) at the University of Sheffield, AML is today a recognised market leader in delivering flexible manufacturing capability at the leading edge of machining technologies and efficiencies. The company is AS9100-certified and carries a Rolls-Royce Certificate of Approval. In addition, AML is part of the SC21 framework for ’21st Century supply chains’ to accelerate the competitiveness of aerospace and defence companies.

To manufacture the market’s highest quality precision parts, the company utilises the very latest technologies, including VERICUT simulation, verification and optimisation software from CGTech.

“We’ve had VERICUT from day one of manufacturing at AML, which dates back around a decade,” explains Engineering Manager Jason Mills. “VERICUT is our safety net; it looks after our complex components, some of which are machined from expensive forgings that cost in excess of £50,000 before we’ve even drilled a hole. There is no margin for error. We use all of the features in VERICUT, including gouge detection, collision detection and, more recently, the FORCE module. The software also looks after our machine tools through virtual simulations, which are critical because a replacement spindle could cost around £40,000 for the hardware alone.”

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