Hwaseong-si, South Korea

Jung Min Park


Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: Jung Min Park: Innovator in Low-Melting Adhesive Films

Introduction

Jung Min Park is an accomplished inventor based in Hwaseong-si, South Korea. With a focus on adhesive technologies, he has made significant contributions to the field through his patented innovation, showcasing his expertise and commitment to advancing industrial applications.

Latest Patents

Jung Min Park holds a notable patent for a low-melting adhesive film. This innovative film comprises a first adhesive layer made of thermoplastic polyurethane and a second adhesive layer featuring an aromatic-based hot-melt thermoplastic polyurethane, specifically designed for low-temperature adhesion starting at 60°C or higher. Furthermore, the design includes a polyethylene (PE)-based protective film layer. The primary application of this low-melting adhesive film is to adhere carpet fabric to sound-absorbing materials, leading to the creation of an integrated sound-absorbing and proofing composite carpet.

Career Highlights

Throughout his career, Jung Min Park has been associated with prominent automotive manufacturers, including Hyundai Motor Company and Kia Motors Corporation. His work in these organizations allowed him to apply his innovative ideas in practical settings, further enhancing his experience and expertise in the industry.

Collaborations

Jung Min Park has collaborated with notable coworkers Ho Dal Lee and Jong Heon Lee. Their joint efforts reflected a collective ambition to push the boundaries of adhesive technology and contribute to the innovative landscape of materials science.

Conclusion

Jung Min Park's contributions as an inventor have made a meaningful impact in the realm of adhesive technologies. His patented low-melting adhesive film serves as a testament to his innovative capabilities and dedication to solving practical challenges in sound absorption and material adhesion. As he continues to innovate, his work is expected to influence future advancements in various industrial applications.

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