Zhaoyuan, China

Liqiang Dong

USPTO Granted Patents = 1 

 

Average Co-Inventor Count = 8.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Liqiang Dong

Introduction

Liqiang Dong is a notable inventor based in Zhaoyuan, China. He has made significant strides in the field of materials science, particularly in the development of advanced rubber compounds. His work focuses on enhancing the thermal conductivity of materials, which has important applications in various industries.

Latest Patents

Liqiang Dong holds a patent for a "Process for manufacturing an ultra-high thermally conductive graphene curing bladder." This innovative process involves several steps, including pre-mixing ultra-high thermally conductive graphene with rubber to create a master batch. The process continues with granulation or cutting to form a solid, which is then mixed in a rubber mixing mill to produce a rubber compound. The compound is extruded into a rubber strip, which is then processed into a rubber blank and cured to create the final product. This patent showcases his expertise in combining advanced materials with practical manufacturing techniques. He has 1 patent to his name.

Career Highlights

Liqiang Dong is currently employed at Shandong Linglong Tyre Co., Ltd., a company known for its innovation in tire manufacturing. His role involves research and development, where he applies his knowledge of materials to improve product performance. His contributions have been instrumental in advancing the company's technological capabilities.

Collaborations

Liqiang Dong collaborates with talented colleagues, including Feng Wang and Haitao Sui. Together, they work on various projects that aim to push the boundaries of material science and engineering.

Conclusion

Liqiang Dong's innovative work in the field of thermally conductive materials exemplifies the impact of dedicated inventors on industry advancements. His patent for the graphene curing bladder process highlights his commitment to improving material properties for practical applications.

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