Xianfeng Jiang
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: Zhejiang University of Science and Technology (2006); Dalian University of Technology (2017); Chinese People's Armed Police Force Medical College Affiliated Hospital (2019); Dalian University (2017–2019); Logistics University of People's Armed Police Force (2012–2018); Tianjin Fourth Central Hospital (2019); Ministry of Education (2020–2023); Pingjin Hospital (2012–2019); Chinese People's Armed Police Force (2012–2021); Zhejiang University of Technology (2003–2023); Tianjin Medical University (2018); Zhejiang University (2010)
Faculty Researcher
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Xianfeng Jiang's research focuses on the application of advanced manufacturing techniques and biomechanical analysis to address challenges in medical reconstruction and treatment. His work includes the design and evaluation of 3D-printed implants for mandibular reconstruction, utilizing materials such as PEKK and titanium. Jiang investigates the biomechanical performance of these implants through finite element analysis and experimental validation, examining factors like topology optimization and porosity to enhance integration and function.
His research also extends to spinal cord injury treatment, involving the long-term clinical observation of patients receiving scaffold transplantation. Jiang has explored the mechanics of orthodontic treatments, including miniscrew-supported lingual retraction systems, through detailed finite element modeling. Additionally, his work has addressed temperature fields in bone during robotic dental implant drilling, combining theoretical modeling with in vitro experiments. Jiang has authored 74 publications and has an h-index of 14.
Metrics
- h-index: 14
- Publications: 74
- Citations: 945
Selected Publications
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Integrating solar and wind power in buildings: Concepts and methods with practical applications (2026)
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A Generic Transient DC Bias Elimination Method for Dual- and Triple-Active Bridge Converters (2026)
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Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block (2025)
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Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications (2025)
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Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters (2025)
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Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field (2025)
Collaboration Network
Top Collaborators
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Optimization of Fully Integrated Double-Sided LCC with Reduced Stray Field
- Enhanced Triple Phase Shift Modulation with Loss Redistribution for Dual-Active-Bridge DC-DC Converters
- Circulating Current Suppression for Three-Level Inverters in High-Power High-Density Grid-Connected Applications
- Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block
- Performance Evaluation of High Power Hybrid Active Neutral Point Clamped Converters: Three-Phase Integrated Power Stage vs. Single-Phase Power-Electronic Building Block