Oshawa, Canada

Reza Rizvi


Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2022

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Reza Rizvi in Composite Material Manufacturing

Introduction

Reza Rizvi, an inventive mind based in Oshawa, Canada, has made significant contributions to the field of composite materials through his innovative patent. With a keen focus on enhancing footwear functionality, his work encapsulates the essence of modern manufacturing techniques designed to improve safety and performance.

Latest Patents

Rizvi holds a notable patent titled "Methods of manufacturing a high friction composite material for footwear." This invention outlines a meticulous method for producing a composite material that includes:

a) Melt blending a matrix with fibers to create a melted composite.

b) Injecting this melted composite into a mold to solidify it.

c) Removing a portion of the outermost layer, allowing the fibers to protrude from the composite's surface.

The resulting composite consists of both soft and hard fibers embedded in a soft rubber-like matrix, where the protruding fibers enhance the slip-resistant qualities of the product. Specifically, it includes carbon fibers and PBO (poly(p-phenylene-2,6-benzobisoxazole)) fibers within a thermoplastic polyurethane (TPU) matrix.

Career Highlights

Rizvi’s work is primarily affiliated with the University Health Network, where he leverages his knowledge and skills in a collaborative research environment. His dedication to developing advanced composite materials reflects his commitment to innovation within the field.

Collaborations

In his pursuit of innovation, Rizvi collaborates with esteemed colleagues such as Zahra S. Bagheri and Ali O. Anwer. Their combined expertise enhances the research output and contributes to the significant advancements in composite material technologies.

Conclusion

Reza Rizvi's innovative patent showcases his role as a forward-thinking inventor in the manufacturing of high friction composite materials. His work not only signifies a personal achievement but also represents a vital step toward enhancing safety and efficacy in footwear design. With ongoing collaborations and research at the University Health Network, Rizvi continues to be a pivotal figure in the evolution of composite materials.

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