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1960s and 1970sImage:Close view of artificial turf.jpg Close view from a water-based field hockey artificial turf David Chaney -- who moved to Raleigh in 1960 and later served as dean of the North Carolina State University College of Textiles -- headed the team of RTP researchers who created the famous artificial turf. That accomplishment led Sports Illustrated magazine to declare that Chaney was the man "responsible for indoor major league baseball and millions of welcome mats." Artificial turf first came to prominence in 1965, when AstroTurf was installed in the newly-built Astrodome in Houston, Texas. The use of AstroTurf and similar surfaces became widespread in the 1970s and was installed in both indoor and outdoor stadiums used for baseball and gridiron football in the United States and Canada. Maintaining a grass playing surface indoors, while technically possible, is prohibitively expensive, while teams who chose to play on artificial surfaces outdoors did so because of the reduced maintenance cost, especially in colder climates with urban multi-purpose "cookie cutter" stadiums such as Cincinnati's River front Stadium, Pittsburgh's Three Rivers Stadium and Philadelphia's Veterans Stadium. 1980s and 1990sImage:Kunstgress.JPG Modern artificial grass
In 1981, London soccer club Queens Park Rangers dug up its grass pitch and installed an artificial one. Others followed, and by the mid-1980s there were four plastic grass pitches in operation in the English league. They soon became a national joke: the ball pinged round like it was made of rubber, the players kept losing their footing, and anyone who fell over risked carpet burns. Unsurprisingly, fans complained that the football was awful to watch and, one by one, the clubs went back to natural grass. [1] In the 1990s many North American soccer clubs also removed their artificial surfaces and re-installed grass, while others moved to new stadiums with state-of-the-art grass surfaces that were designed to withstand cold temperatures where the climate demanded it. The use of artificial turf was later banned by FIFA, UEFA and by many domestic football associations, though, in recent years, both governing bodies have expressed an interest in resurrecting the use of artificial surfaces as the related technologies continue to evolve (see below 21st century). 21st centuryImage:Modernartificialgrass2.png Modern artificial grass In the early 21st century, new artificial playing surfaces using sand and/or rubber infill were developed. These "next generation", or Artificial Grass, surfaces are often virtually indistinguishable from grass when viewed from any distance, and are generally regarded as being about as safe to play on as a typical grass surface — perhaps even safer in cold conditions. Many clubs have installed the new synthetic turf surfaces (most commonly as part of an all-weather training capability), while some clubs which have maintained grass surfaces are now re-considering artificial turf. With football clubs in Europe looking to reduce both maintenance costs and the number of winter matches that are cancelled due to frozen pitches, the issue has also been re-visited by that sport's governing bodies.
"The most common type uses polyethylene "grass" about 5 centimetres long, which is lubricated with silicone and sewn into a rubberised plastic mat. The whole thing is then "infilled" with a 4-centimetre layer of sand and rubber granules, which keeps the fibres upright and provides the right level of shock absorbency and deformability. The majority of the 15 or so turf manufacturers approved by FIFA use this technology. The other sort, typified by Dunfermline's pitch, has a base of expanded polypropylene, a foamy material originally developed as a shock absorber for the car industry (see diagram). The grass is also made of lubricated polyethylene fibres, but they are shorter and more densely packed than on an infilled pitch, and are also interspersed with short, curly, spring-like fibres that keep the blades upright. The finishing touch is an 8-millimetre filling of rubber granules." [2] According to FIFA[3], the installation at the Borussia-Park in Mönchengladbach is another major step in the quality and development of artificial turf surfaces. UEFA have since announced that starting in the 2005-06 season, approved artificial surfaces will be permitted in their competitions. Field hockey
The introduction of synthetic surfaces has significantly changed the sport of field hockey. Since being introduced in the 1970s, competitions in western countries are now mostly played on artificial surfaces. This has increased the speed of the game considerably, and changed the shape of hockey sticks to allow for different techniques, such as reverse stick trapping and hitting. Due to the cost of installing synthetic pitches, India and Pakistan have lost their once dominant position in international competition. Field hockey artificial turf differs from soccer and football artificial turf in the way that it does not try to reproduce a grass 'feel', being made of shorter fibres similar to the ones used on Dunfermline's pitch. This shorter fibre structure allows the improvement in speed brought by earlier artificial turfs to be retained. This development in the game is however problematic for many local communities who often cannot afford to build two artificial pitches: one for field hockey and one for other sports. The FIH and manufacturers are driving research in order to produce new pitches that will be suitable for a variety of sports. The different categories of pitches include:
ApplicationsSince the late 1990s, the use of synthetic grass has moved rapidly beyond athletic fields to residential and commercial landscaping artificial lawns. This trend has been driven primarily by two functions: the quality and variety of synthetic grasses that are available has improved dramatically, and cities and water conservation organizations have begun realizing the value of artificial grass as a conservation measure. Advantages and disadvantagesAdvantages
Disadvantages
See also
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