Did you know ...?!

The chipless reduction of the cross section along the corresponding material forming has a positive effect upon the grain flow of the metal.

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Rotary swaging does not require any specific surface treatment like phosphating, soaping etc.

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Rotary swaging machines can form both steel and non-ferrous material by hot or cold working methods. There are no temperature limitations.

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Generally dies are changed within five minutes per station. Hydraulic feeds additinal movements are continuously variable and can be optimised for each workpiece.

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Depending on the shape of the workpiece, a pass-through method is used (load from front - unload from rear), or in the case of single ended cross sectional reduction an in-line transfer system is utilised. Small workpieces are formed on our rotary transfer machines. All automatic systems incorporate appropriate magazines (wire straightening and cutting machines, tube and bar stocking with vibration feeder). Multi-station machines can be designed with either in-line or rotary transfer. These machines can be equipped with additional machining stations (turning, milling, drilling) and forming stations (production of outside splines, bending, thread forming, flaring, etc.).

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Unlike most other shaping methods, workpieces do not require a layer of lubricant medium. The coolant, if necessary, is located in a closed cycle.

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Contrary to chipping production, the material is transformed. This means considerably better use of materials. Costs for collecting, handling and disposal of chips are saved.

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The external and internal shapes are finished in a single step if the workpiece is formed over a mandrel. Non-round internal forms, for example splines, can be easily produced using a profiled mandrel. Furthermore, tapers, reductions and stretching can be performed simultaneously. Internal helixes can be worked in without additional effort.

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Rotary swaging improves the surface finish (roughness) and tensile strength and ensures close tolerances. This will substantially improve the physical properties of the material in terms of compression, tension, bending and torsion.

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