Xianfeng Jiang
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Also affiliated: Dalian University of Technology (2017); Logistics University of People's Armed Police Force (2018); Tianjin Fourth Central Hospital (2019); Tianjin Fourth Hospital (2019); Chinese People's Armed Police Force (2021); China Railway Rolling Stock Corporation Zhuzhou Institute (China) (2025); Zhejiang University of Technology (2003–2023); Tianjin Medical University (2018)
Research Areas
Biomedical Subjects
Links
Biography and Research Information
OverviewAI-generated summary
Xianfeng Jiang's research focuses on the application of advanced manufacturing techniques, specifically three-dimensional (3D) printing, for biomedical applications. His work involves the design, fabrication, and biomechanical analysis of novel porous implants. Jiang has investigated the use of materials such as titanium alloys (Ti6Al4V) and polyetherketoneketone (PEKK) for applications including mandibular reconstruction and spinal cord injury repair.
His publications detail the topological optimization of implant designs to improve biomechanical performance. Jiang has also explored the combination of tissue scaffolds, such as the NeuroRegen scaffold, with mesenchymal stem cells for the repair of spinal cord injuries, reporting on long-term clinical observations. His research extends to the accuracy of robotic systems in dental implant surgery and the effect of processing parameters on the mechanical properties of 3D-printed materials.
Metrics
- h-index: 15
- Publications: 62
- Citations: 965
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
- A Generic Transient DC Bias Elimination Method for Dual- and Triple-Active Bridge Converters
- 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
- 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
- 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
- A Generic Transient DC Bias Elimination Method for Dual- and Triple-Active Bridge Converters
- A Generic Transient DC Bias Elimination Method for Dual- and Triple-Active Bridge Converters
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