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    Optimal hard milling: Classic versus modern

    An analysis of cost-effectiveness, efficiency and surface quality

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    This part was manufactured in 48 HRC cold-working steel using classic and modern methods – with surprising results.

    New technologies offer the opportunity to optimize manufacturing, while proven approaches also have their advantages. How can we resolve what seems like a conflict? How can parts be optimally manufactured to the last detail? What does "optimal" actually mean?

    A practical experiment in cost-effectiveness, efficiency and surface quality: 

    • Machining a part in 48 HRC cold-working steel for the best possible high-gloss quality, quickly and cost-effectively and with as little (manual) effort possible
    • First using the proven traditional approach, and then using modern strategies and technology. 

    Parts can only be optimally manufactured to the nth degree if your machine, tools and programming system are seamlessly coordinated . The experts discuss their experimental results in this 30-minute video podcast. They examine the steps in detail, from roughing to finishing – with surprising results. Take a look!

    Optimal hard milling: classic or modern? 

    • How can programming strategies, machining tools and machines be optimally combined?
    • How can reworking and manual polishing be avoided?
    • What factors affect different changes in the result?
    • Where are the pitfalls in time and cost, and where are the opportunities?