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Wilson Benesch : ウィキペディア英語版 | Wilson Benesch
Wilson Benesch is a manufacturer of high end audio loudspeakers and turntables for domestic and professional use, based in Sheffield, England. The company manufactures its components from raw materials under one roof on high precision CNC plant and equipment and precision dedicated moulding technologies. The company was founded in 1989. It is currently run by Christina Milnes (Managing Director) Craig Milnes (Design Director) and Luke Milnes (Media and Communications Manager). Wilson Benesch is located in the heart of England's industrial manufacturing, Sheffield. The company collaborates with scientists and engineers from Universities and advanced manufacturing organisations. The company manufactures all of its components from raw materials. The company has developed unique manufacturing technologies to process raw carbon fibre and resin systems as well as Pre preg systems and high temperature P.E.T. molten matrix systems to realise complex structures that are highly optimised in terms of specific stiffness. These systems are ideally suited to audio structures being Low mass, High stiffness, anisotropic, intrinsically self-damping structures. Other notable materials that have been exploited include the isotactic polypropylene that was developed in collaboration with the physicist Ian Ward of Leeds University who first formulated it. The development resulted in the world's first multi role drive unit, manifest as a Clamshell Isobaric system. ==Carbon fibre composites== Since 1989 Wilson Benesch has pioneered the use of carbon fibre based advanced composite structures in a number of audio designs. The company implemented the use on carbon nano tubes in the world's first carbon fibre / Nanotube matrix tonearm the Nanotube One. The advanced composite structures are called A.C.T. After launching turntables and tonearms made from carbon fibre the company launched its first loudspeaker design in 1995 when it launched the world's first curved floor standing loudspeaker made from carbon composite A.C.T. structures at the Frankfurt High End Show. The A.C.T. One has been superseded by The A.C.T. which is constructed from carbon composite and several alloys providing an extremely stiff highly damped shell structure. The company has also introduced numerous other materials technologies and manufacturing processes. The processes that have been developed have also focussed on manufacturing technologies that are not wasteful. High precision extruded sections for example reduce the need for waste and are precisely optimised according their particular function. 90%of the moulding that is created in the moulding process of for example the A.C.T. monocoque is used in the cabinet construction and requires minimal wasteful post machining. These increasingly important issues were considered at the inception of the design and development of the products in the early 1980s.
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