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Invented in 1963 in 1963, in 1963, the Company was founded in 1963 by Dr. Alvin Roth. Dr. Roth had been a practicing dentist before discovering that his interest in the development of dental plastic products lead him to create this unique, patent-pending technology that is now used in the manufacturing of all the advanced Quadrant engineering plastic parts. The most notable of Roth’s innovations are: The discovery of a simple method to extend the length of the material that is used in our components He was the first person to use 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. Continue reading to learn more about these and other noteworthy accomplishments.
Nylon Stock Shapes – Roth invented the nylon stock shape. With the help of nitrogen-filled injection mold technology, he discovered that his nylon stock shapes were almost invulnerable to break. Roth initially designed the stock shapes to save space. The stock shapes are available for many of our most sought-after products like bumpers, knobs and slides. They are strong and practically indestructible. Nylon stock shapes can be created in large quantities using regular CNC machines. They are also very easy to work with. These stock shapes and other innovative nylon plastic parts are the reason our equipment is sturdy, reliable, and long-lasting.
PVC (Polyvinyl chloride) and STP (styrene) Composites invented by Roth the two groundbreaking engineering plastics opened the way to various other polymer composites. They are now used in high-tech equipment and industrial batteries, among many other applications. PVC and STP Composites are combined to create durable, lightweight, strong industrial parts that can be used to make numerous products.
Ultraviolet Silicone – Roth is the next global leader in high-performance engineering plastics. It has revolutionized the global supply chain by offering high resistance to UV light, specifically ultraviolet B rays. This makes Ultraviolet Silicone ideal for sun-damaged outdoor signs and bumpers, and also ensures that it can be utilized in thermal insulating material, as well as for lubricants used in the engine’s components. This versatile product can be utilized in a myriad of applications that include air bags, solar signs, and high-performance engineering plastics.
Flexible Plastic Materials – Another one of the few engineering plastics that has been a leader in global supply chain. By providing a wider range of applications across different industries, this product was able to differentiate itself from other options. Its durability and flexibility make it a great choice for a wide range of applications. UHP and ULP materials can be used in a variety of different applications, such as bumpers and shock-absorbing liners as as mechanical parts as well as engineering plastics with high performance.
Roth introduced Colloidal Polymer in 1998. It is a leading player in the global supply chain of engineering plastics. Colloidal Polymer has a natural appearance and is durable, flexible, and safe. It exhibits a long-lasting cure time and comes in a variety of particles, including PMMA, and polyimide. It is resistant to ultraviolet light and can endure wear and tear. The material is suitable for a wide range of applications, such as in cosmetics, pharmaceuticals, detergents, and food preparation.
Nylon Fiber – Nylon Fiber is the fourth most popular fiber in the world. It is a strong fiber with durability and strength as well as low maintenance. Nylon Fiber has the highest modulus of tensile force with lower compressive strength as well as tensile strength. It is commonly used for industrial, aerospace, automotive as well as household applications. One of the major advantages of Nylon Fiber is that it provides greater creep resistance, which translates into a longer endurance. It has excellent chemical and thermal properties, which make it a preferred choice for numerous industries. Nylon is the fastest-growing fiber, yet it has the weakest compressive strength rating.
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