Shenzhen, China

Xiaoyong Wen


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Xiaoyong Wen: A Pioneer in Supporting Device Technology

Introduction: Xiaoyong Wen, an inventive engineer based in Shenzhen, China, has made significant strides in the field of structural engineering. With a keen eye for innovation, he has developed a unique supporting device designed to enhance jacking force calculations, which is crucial for various construction applications.

Latest Patents: Xiaoyong Wen holds one patent titled "Supporting device and method for calculating jacking force thereof." This invention is a lightweight multifunctional supporting device that enhances the efficiency of construction processes. The device comprises a supporting frame coupled with a jacking device, which includes a vertically fixed screw rod and a jacking seat with a vertical threaded hole. The ingenious design facilitates lateral rotation and threaded connections, supporting effective calculation and application of jacking force.

Career Highlights: Xiaoyong Wen is currently employed at China Construction Steel Structure Corporation Limited, a prominent player in the construction industry. His role involves pioneering innovative solutions that push the boundaries of engineering safety and efficiency. His dedication to enhancing construction methodologies reflects his commitment to advancing the field.

Collaborations: Throughout his career, Xiaoyong has worked closely with notable colleagues, including Chuntian Li and Biao Liao. Their collaborative efforts in research and development underscore a shared vision of innovation and excellence within their projects.

Conclusion: Xiaoyong Wen stands out as a forward-thinking inventor whose contributions to the construction industry through his patented innovations highlight the importance of creativity in engineering. As he continues to refine his techniques and collaborate with industry experts, Wen's work promises to influence future developments in structural engineering methodologies.

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