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Dr. Alvin Roth founded the Company in 1963. Dr. Roth had been a practicing dentist before discovering that his passion for developing dental plastic products lead him to create this unique, patent-pending, technology that is used in the manufacturing of all of Quadrant’s advanced engineering plastic components. The most notable of Roth’s innovations are: His discovery of a method to extend the length of the material that is used in many of our components He was the first to utilize the actual ingredient in nylon, he was responsible for the creation of the nylon powder composition and manufacturing process; and was the sole designer of the sandwich made from nylon. Check out the complete story on these and other notable achievements.

Nylon Stock Shapes – Roth invented the nylon stock shape. With the help of nitrogen-filled injection molding technology, he realized that the shapes of his nylon stock were almost impossible to break. Originally, Roth designed these stock shapes as a way to save space. The stock shapes are available on many of our most well-known products, including bumpers, knobs and slides. They are strong and virtually indestructible. Shapes made of nylon can be produced on a large scale using regular CNC machines. They are also very easy to work with. These stock shapes and many other innovative nylon plastic components are what make our equipment durable long-lasting, reliable, and reliable.

PVC (Polyvinyl chloride) and STP (styrene) Composites invented by Roth the two groundbreaking engineering plastics have paved the way for many other types of polymer composites. They are used today in high-tech equipment and industrial batteries, among numerous other applications. PVC and STP Composites combine to make robust, lightweight, and durable industrial parts that can be used to build many different products.

UV Sensitive Materials – The next global top-performing engineering plastic, Ultraviolet Silicone, was developed by Roth. It is an ingenious material that has transformed the supply chains of the world due to its high resistance to UV light, particularly ultraviolet B rays. Ultraviolet Silicone is ideal for outdoor signs and bumpers that have been damaged by the sun. It can also be used as thermal insulation materials as well as engine lubricants. The product’s versatility is now extensively used in a broad range of applications, from air bags, solar signs, to high-performance engineering plastics.

Flexible Plastic Materials – This is another one of the few engineering plastics that have made itself a leader in the global supply chain. Because it offers a wider array of applications across different industries it was able to distinguish itself from other alternatives. Its versatility and durability make it an ideal choice for many applications. UHP and ULP materials can be used in many different applications, such as bumpers and shock-absorbing liners as as mechanical parts and engineering plastics with high performance.

Roth introduced Colloidal Polymer in 1998. It is a renowned leading player in the global supply chain of engineering plastics. The Colloidal Polymer has a natural look and is strong, flexible, and safe. It is an extremely long-lasting cure and is available in a variety of particles that include PMMA and polyimide. It is also impervious to UV light and has high resistance to wear and tear. This material can be used in a wide variety of applications, like in cosmetics, pharmaceuticals detergents, and food items.

Nylon Fiber – Nylon Fiber is the fourth most favored fiber in the world. It offers high strength and durability and low maintenance. Nylon Fiber is a good modulus of tensile and compressive strength, but low tensile and tensile strengths. It is widely used in industrial, aerospace, automotive and household applications. Nylon Fiber has a significant advantage: it is resistant to creep, which means it can last longer. Nylon Fiber is a sought-after choice for many industries because of its superior chemical and thermal characteristics. Nylon is the fastest growing fiber, but it has the weakest compressive strength rating.

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