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Dr. Alvin Roth founded the Company in 1963. Dr. Roth had been a dentist for a while before he realized that his interest in the development of dental plastic products led him to create this unique, patent-pending technology that is now used in the manufacturing of all Quadrant’s high-tech engineering plastic components. Roth was the primary driver behind a variety of inventions, including the discovery of a simple way to lengthen nylon material; the development of nylon powder composition and process; as well as the creation of the nylon sandwich. Check out the full story about these and other significant accomplishments.

Nylon Stock Shapes – Roth invented the shape of the nylon stock. With the aid of nitrogen-filled mold technology, he realized that the shapes of his nylon stock were virtually unbreakable. Roth initially created these stock shapes to help save space. The designs of our most well-known products, such as bumpers and knobs as well as slides, are available in stock shapes that last and virtually indestructible. Shapes made of nylon are simple to work with, and can be made on a large scale using conventional CNC machines. These stock shapes, as well as many other innovative nylon plastic components are the reason in making our equipment durable and reliable.

PVC (Polyvinyl chloride), and STP (styrene), Composites – These two revolutionary engineering plastics were developed by Roth. They paved the way to many different types of polymer composites. They are now very useful in high-tech accessories as well as industrial batteries and many more applications. Together, PVC and STP composites provide durable, lightweight and robust industrial components that allow you to produce a wide range of products.

Ultraviolet Silicone – Roth is the next global leader in high performance engineering plastics. It is a revolutionary material that has revolutionized the global supply chains by its superior resistance to UV light, particularly ultraviolet B radiations. This makes Ultraviolet Silicone ideal for sun-damaged outdoor signs and bumpers, and also guarantees that the material can be used in thermal insulating material, as well as for lubricants that are used in engine components. The versatile material can be utilized in a variety of applications such as air bags, solar signs and high-performance engineering plastics.

Flexible Plastic Materials – Another one of the few engineering plastics that have been a leader in global supply chain. By providing a wider range of uses in different industries the product was able to distinguish itself from other options. Its durability and flexibility make it an ideal option for a variety of applications. From its use in bumpers and shock absorbing liners, to mechanical parts as well as high-performance engineering plastics, UHP and ULP materials are currently being used in a wide variety of applications.

Colloidal Polymer – Another rising leader in the global supply chain of engineering plastics, Colloidal Polymer was first introduced by Roth in 1998. With its distinctive, natural appearance and natural appearance, Colloidal Polymer is a flexible, durable, and safe. It has an extended cure time and is available in a variety of particles including PMMA and polyimide. It is also resistant to UV light and has a high resistance to wear and tear. This material can be used in a variety of ways including pharmaceuticals, cosmetics and detergents as well as food.

Nylon Fiber – As the fourth largest company in the world, Nylon Fiber offers high strength and durability with low maintenance requirements. Nylon Fiber has an extremely high modulus of tensile strength with lower compressive strength as well as Tensile strength. It is widely used in automotive, aerospace, industrial, and household applications. One of the major advantages of Nylon Fiber is that it has superior creep resistance, which translates into a longer endurance. Nylon Fiber is a popular choice for many industries due to its outstanding chemical and thermal characteristics. Nylon is the fastest-growing fiber yet has the weakest compressive strength rating.

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