Guangzhou, China

Zhiying Wang

USPTO Granted Patents = 1 

Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Innovations of Zhiying Wang in Magnetic Materials

Introduction

Zhiying Wang is a notable inventor based in Guangzhou, China. She has made significant contributions to the field of magnetic materials, particularly through her innovative patent. Her work focuses on developing materials that possess dual magnetic properties, which have various applications in technology and industry.

Latest Patents

Zhiying Wang holds a patent for an amphoteric magnetic material and its manufacturing method. This magnetic material consists of 5% to 88% of a permanent magnetic material, 5% to 88% of a soft magnetic material, 6% to 16% of a binder, and 1% to 10% of an auxiliary agent. The unique aspect of this invention is that it allows for the mixing of two phases without microscopic intergranular exchange coupling interaction. This results in unexpected effects, such as an expanded range of magnetically attracted objects and a more uniform magnetic attraction force. The design enables the performance of two layers of soft and permanent magnets to be achieved with a single layer structure.

Career Highlights

Zhiying Wang is currently employed at Guangzhou Newlife New Material Co., Ltd. Her role at the company allows her to further explore and develop her innovative ideas in magnetic materials. With her expertise, she has contributed to advancing the company's research and development efforts.

Collaborations

Zhiying Wang collaborates with talented individuals in her field, including her coworkers Xiaoming Wang and Huayi Zhao. These collaborations enhance the research environment and foster innovation within the company.

Conclusion

Zhiying Wang's contributions to the field of magnetic materials through her innovative patent demonstrate her expertise and commitment to advancing technology. Her work has the potential to impact various industries and improve the functionality of magnetic materials.

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