Deputy General Manager Yi Xingzhong
Yi Xingzhong is a male member of the Communist Party of China. He holds a Bachelor’s degree in Ocean Engineering from Tianjin University and a Master’s degree in Architecture and Civil Engineering from Tongji University. He is a senior engineer at the researcher level, a Grade-I Construction Engineer specializing in architectural engineering and mechanical and electrical engineering, and currently serves as the Deputy General Manager, Chief Engineer, and Head of the Technical Quality Department at Nantong Construction Engineering Group Co., Ltd.
Honors:
Recipient of the Jiangsu Province Multi-Year Award for Outstanding Contributions to Advances in Construction Technology and Scientific and Technological Innovation; also honored as a National Model Individual for Progress in Construction Technology and Technological Innovation, a National Model Individual for Progress in Construction Technology and Technological Innovation during the 11th Five-Year Plan period, an Outstanding Communist Party Member of Chongchuan District, Nantong City, and an Outstanding Communist Party Member within the Nantong Municipal Construction System.
Nantong City’s Sixth Batch of Top Scientific and Technological Talents;
Nantong City’s First Outstanding Professional and Technical Talent;
Top Ten Science and Technology Stars in Jiangsu Province’s Construction Industry (3rd Session);
Recipient of the Jiangsu Province May Day Labor Medal;
Innovative Contributor to the Nantong City Construction Iron Army;
Young and mid-career scientific and technological leader under the Jiangsu Province “333 High-Level Talent Cultivation Program”;
Leading Young and Mid-career Innovators and Entrepreneurs under Nantong City’s “226 High-Level Talent Cultivation Program.”
Major Scientific and Technological Achievements:
The Jiangsu Provincial Science and Technology Program project in the construction sector (Project No. JS200349)—“Research on Construction Techniques for Large Cantilevered Transfer Slabs in Super-Tall Buildings”—led by the principal investigator, has passed provincial-level appraisal, achieving a domestically leading level, and was awarded the Third Prize for Scientific and Technological Progress of the Huaxia Construction Award by the Ministry of Construction (ranked first).
The Jiangsu Provincial Construction Industry Science and Technology Program project led by the principal investigator—Research and Application of Spatial Safety and Stability Construction Techniques for Suspended Structural Formwork Support Systems (Project No.: JG2007-01)—has passed provincial-level appraisal and attained a domestically leading level.
The project “Spatial Suspension-Structure Formwork Support Platform and Its Application Technology,” which was led and completed, was awarded the Third Jiangsu Provincial Workers’ Top Ten Scientific and Technological Achievements Award (ranked first).
Has chaired or participated in the implementation of numerous provincial-level demonstration projects for the application of new technologies and science-and-technology planning projects. Specifically, the “Key Construction Technologies and Science-and-Technology Demonstration for Wuxi Sanyang Urban Garden” was awarded the Third Prize for Scientific and Technological Progress in Construction by Jiangsu Province (ranked 2nd); the “Integrated Application of New Building Technologies at Wuxi Gymnasium” received the Fourth Prize for Scientific and Technological Progress from Nantong City (ranked 4th); and the “Standardization Study on Groundless Scaffolding for High-Rise Buildings” was awarded the Third Prize for Scientific and Technological Progress by Nantong City (ranked 6th).
Has presided over the completion of numerous national- and provincial/ministerial-level construction methods, among which the “Construction Method for High-Position Large Cantilevered Transfer Thick Slabs,” the “Construction Method for Mobile Scaffolding Used in the Installation of Curved Steel Space Frames for Large-Span Steel Coal Sheds,” and the “Construction Method for Suspended Reinforced Concrete Structures of Tower-Type Buildings and Structures” have been recognized as national-level construction methods in the civil engineering and architectural fields.
Has served as the principal inventor and obtained three national invention patents and more than ten utility model patents.
Representative Works:
In recent years, the author has published several representative works in national-level professional academic journals, including: “Construction Technology for High-Position Large Cantilever Transfer Thick Slabs,” “Construction Method Using Mobile Scaffolding for Installing Curved Steel Space Frames in Large-Span Dry Coal Sheds,” “A Discussion on Relevant Issues in the Current ‘Safety Technical Code for Cuplock Scaffolding in Building Construction,’” “Construction Technology for Tall Steel Structural Towers on the Roofs of Super-Tall Buildings,” “Design and Calculation of Formwork Support Systems for a 74.97-Meter-Span Suspended Structure,” “Foundation and Attachment Design for Tower Cranes under Complex Environmental Conditions,” and “Construction Technology for Hoisting Heavy Steel Structural Masts.”
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