Bayer Makrolon Polycarbonate Sheets offering light weight and break resistance

Polycarbonate plastic materials offer a unique balance of beneficial features which include high temperature resistance, impact resistance and optical properties position polycarbonates between commodity plastic materials and engineering plastics.
Polycarbonate is definitely a high quality material. Though it features high impact-resistance, it's got reduced scratch-resistance and thus a hard coating typically is applied to polycarbonate eyeglasses lenses as well as polycarbonate exterior automobile equipment. The properties associated with polycarbonate tend to be similar to that of those of common Acrylic materials, although polycarbonate is definitely stronger, it is usable in a wider temperature range and is a bit more expensive. This plastic polymer is highly transparent to visible light and it has better light transmission characteristics than many different types of glass.
Polycarbonate carries a glass transition temperature of approximately 150 °C (302 °F), as a result it softens gradually above this point and flows above about 300°C (572 °F). Tools will have to be held at higher temperatures, generally above 80 °C (176 °F) in order to make strain- and almost stress free products.
Unlike most other thermoplastics, polycarbonate can undergo dramatic deformations without cracking. Due to this fact, it can be processed and formed   at room temperature using sheet metal techniques, such as forming bends on a brake. For even sharp angle bends with a tight radius, no heating is generally necessary. This makes it valuable in prototyping applications where transparent or electrically non-conductive parts are essential, which cannot be created from sheet metal. Understand that PMMA/Plexiglas, which is similar in appearance to polycarbonate, but it's brittle and cannot be bent unless it is heated.
Polycarbonate is commonly used in eye protection, in addition to other projectile-resistant optical type applications that would normally require the use of glass, but require higher impact-resistance. Many different types of lenses are produced from polycarbonate, including automotive headlamp lenses, lighting lenses, sunglass/eyeglass lenses, swimming and SCUBA goggles, and safety visors for use in sporting helmets/masks and police riot gear. Windscreens in small motorized vehicles are normally made up of polycarbonate, such as for motorcycles, ATVs, golf carts, and small planes and helicopters.


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