Nykarleby, Finland

Christer Kavander

USPTO Granted Patents = 2 

 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2018-2025

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2 patents (USPTO):Explore Patents

**Title: Innovations by Inventor Christer Kavander**

Introduction

Christer Kavander, a notable inventor from Nykarleby, Finland, has made a significant impact in the field of materials science with his innovative ideas. With a focused expertise on composite materials, he has developed a patent that combines advanced materials for practical applications in grinding and polishing.

Latest Patents

Christer Kavander holds a patent for a "Composite Body and Method of Manufacturing It." This innovative composite body incorporates nanofibrillar cellulose (NFC) and abrasive particles (AP). The NFC forms a three-dimensional connecting network to support the abrasive particles, which boast a hardness greater than 7 on the Mohs scale. The resultant composite body serves practical purposes in various industrial applications, particularly for grinding, polishing, or cutting tasks.

Career Highlights

Throughout his career, Kavander has worked with prestigious companies such as UPM-Kymmene Corporation and Mirka Ltd. His experience in these renowned organizations has undoubtedly influenced his inventive mindset and commitment to developing high-performance materials.

Collaborations

Kavander has had the opportunity to collaborate with talented colleagues such as Hans Hede and Mats Sundell. These collaborative efforts have likely contributed to the refinement and advancement of his patent, ultimately leading to innovative solutions in the field of abrasive materials.

Conclusion

In summary, Christer Kavander stands out as an accomplished inventor committed to advancing material science through innovation. His patented method for creating composite bodies reflects his dedication to finding practical solutions within the grinding and polishing industries. As innovations continue to evolve, Kavander's contributions will undoubtedly play a significant role in the future of abrasive material technology.

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