Xuezhi Shi | Marine ecological restoration | Best Researcher Award

Dr Xuezhi Shi | Marine ecological restoration | Best Researcher Award 

zhejiang ocean university, China

Xuezhi Shi, born in 1989, is a dedicated lecturer and master tutor at the Marine Engineering Equipment College of Zhejiang Ocean University, China. With a strong academic background and extensive research experience, he specializes in additive manufacturing, particularly in the fields of 3D printing and advanced materials. His work focuses on improving the mechanical properties and structural integrity of materials like Ti-6Al-4V and Ti-47Al-2Cr-2Nb alloys. Dr. Shi has published numerous high-impact research papers, contributing significantly to the understanding of crack formation, surface quality, and defect behavior in additive manufacturing processes. His innovative approaches, such as hybrid fabrication techniques and directed energy deposition, have garnered attention in the scientific community. Dr. Shi is also an active member of the academic community, collaborating with international researchers and mentoring students. His contributions continue to push the boundaries of marine engineering and materials science.

Professional Profile

Orcid

Scopus

Education 🎓

Xuezhi Shi’s academic journey reflects his commitment to mechanical engineering and advanced manufacturing. He earned his PhD in Mechanical Engineering from Beijing Institute of Technology (2013–2017), where he focused on additive manufacturing and material science. Prior to this, he completed his Master’s degree in Mechanical Engineering at Beijing Technology and Business University (2011–2013), specializing in advanced manufacturing techniques. His foundational education includes a Bachelor’s degree in Mechanical Design, Manufacturing, and Automation from Beijing Institute of Petrochemical Technology (2007–2011). Throughout his academic career, Dr. Shi demonstrated a keen interest in optimizing manufacturing processes, particularly in selective laser melting and wire arc additive manufacturing. His research during his PhD laid the groundwork for his current work in marine engineering and 3D printing. Dr. Shi’s educational background has equipped him with the skills to innovate and lead in the field of additive manufacturing.

Experience 💼

Since August 2017, Xuezhi Shi has been a lecturer and master tutor at the Marine Engineering Equipment College, Zhejiang Ocean University. In this role, he has been instrumental in advancing research in additive manufacturing, particularly for marine applications. His work involves exploring the mechanical properties of materials like Ti-6Al-4V and Ti-47Al-2Cr-2Nb, with a focus on eliminating defects and enhancing performance. Dr. Shi has also contributed to the development of hybrid fabrication techniques, combining selective laser melting and wire arc additive manufacturing. His research has practical implications for industries such as aerospace, marine engineering, and materials science. Additionally, he mentors graduate students, guiding them in cutting-edge research projects. Dr. Shi’s expertise in additive manufacturing has led to collaborations with international researchers, further solidifying his reputation as a leader in the field. His work continues to bridge the gap between theoretical research and industrial applications.

Awards and Honors 🏆

While specific awards and honors for Xuezhi Shi are not explicitly mentioned in the provided information, his contributions to additive manufacturing and materials science are highly regarded. His research publications in prestigious journals such as Journal of Materials Research and TechnologyOptics and Laser Technology, and Materials Science and Engineering A highlight his impactful work. Dr. Shi’s innovative approaches, such as hybrid fabrication techniques and directed energy deposition, have likely earned him recognition within the academic and industrial communities. His collaborations with international researchers and consistent publication record demonstrate his standing as a respected figure in the field. Dr. Shi’s work on crack elimination, surface quality improvement, and defect behavior in additive manufacturing processes has set new benchmarks in materials science. His dedication to advancing marine engineering through additive manufacturing continues to inspire students and researchers alike.

Research Focus  🔬

Xuezhi Shi’s research primarily focuses on additive manufacturing (3D printing), with an emphasis on improving the mechanical properties and structural integrity of advanced materials. His work explores the use of selective laser melting (SLM) and wire arc additive manufacturing (WAAM) for materials like Ti-6Al-4V and Ti-47Al-2Cr-2Nb. Key areas of interest include crack formation mechanismssurface quality optimization, and defect behavior in additive manufacturing processes. Dr. Shi also investigates hybrid fabrication techniques, combining SLM and WAAM to enhance material performance. His research extends to the influence of external factors, such as ship-based vibrations, on additive manufacturing outcomes. Additionally, he explores the use of novel additives, like 316L-sodium silicate, to improve material properties. Dr. Shi’s work has significant implications for industries such as aerospace, marine engineering, and materials science, where additive manufacturing is increasingly used for complex and high-performance components.

Publication Top Notes 📚

  1. Utilization of machine-made sand waste in 3D-printed ecological concrete for artificial reefs 🌊
  2. Enhancing mechanical properties of Ti–6Al–4V through directed energy deposition-arc by coating with 316L-sodium silicate additive ⚙️
  3. Eliminating cracks in Ti-47Al-2Cr-2Nb/Ti-6Al-4V micro-laminated composites fabricated by dual-material laser powder bed fusion 🔧
  4. Influence of Ship-based Vibration on Characteristics of Arc and Droplet and Morphology in Wire Arc Additive Manufacturing 🚤
  5. Effect of substrate preheating, remelting, in-situ presintering on the formation of cracking of Ti-47Al-2Cr-2Nb fabricated by Selective Laser Melting 🔥
  6. Effect of high layer thickness on surface quality and defect behavior of Ti-6Al-4V fabricated by selective laser melting 🖨️
  7. The crack and pore formation mechanism of Ti-47Al-2Cr-2Nb alloy fabricated by selective laser melting 🧪
  8. Beam Diameter Dependence of Performance in Thick-Layer and High-Power Selective Laser Melting of Ti-6Al-4V 💡
  9. Selective laser melting-wire arc additive manufacturing hybrid fabrication of Ti-6Al-4V alloy: microstructure and mechanical properties 🔬
  10. Parameter optimization for Ti-47Al-2Cr-2Nb in selective laser melting based on geometric characteristics of single scan tracks 📐

Conclusion 🌟

Xuezhi Shi is a prominent figure in the field of additive manufacturing, with a strong focus on improving the mechanical properties and structural integrity of advanced materials. His research on selective laser melting, wire arc additive manufacturing, and hybrid fabrication techniques has significantly contributed to the understanding of crack formation, surface quality, and defect behavior. Dr. Shi’s work has practical applications in industries such as aerospace, marine engineering, and materials science. His dedication to mentoring students and collaborating with international researchers further underscores his commitment to advancing the field. Through his innovative approaches and impactful publications, Dr. Shi continues to push the boundaries of additive manufacturing, making significant strides in both theoretical research and industrial applications.

David Gwapedza – Water Resources Management – Best Researcher Award

David Gwapedza - Water Resources Management - Best Researcher Award

Institute for Water Research - South Africa

AUTHOR PROFILE

GOOGLE SCHOLAR

DAVID GWAPEDZA, Ph.D.

David Gwapedza is a renowned expert in hydrological modeling, sediment transport modeling, and natural resource management, with extensive experience in African countries. He has demonstrated strong capabilities in providing intellectual leadership in collaborative research processes involving multiple partners in UKRI and WRC projects. David's strategic thinking allows him to conceptualize complex issues, write grant proposals, and lead impactful research projects.

EDUCATION AND ACADEMIC BACKGROUND

David earned his Ph.D. in Hydrology from Rhodes University, South Africa, where he developed and evaluated the sediment yield model (WQSED) for catchment management in African regions. His research concentrated on hydrological modeling, erosion and sediment modeling, and catchment management. He also holds a Master of Science degree in Hydrology from Rhodes University and a BSS (Honours) degree in Geography and Population Studies from Lupane State University in Zimbabwe.

RESEARCH AND PROFESSIONAL EXPERIENCE

Currently, David is a Postdoctoral Researcher at Rhodes University, where he drafts manuscripts, presents findings at international conferences, and conducts independent research. He is also a Project Leader and Principal Researcher at the Water Research Commission, where he conceptualizes projects, facilitates collaboration with research partners, and supervises students. His work involves applying hydrological models, leading stakeholder engagement initiatives, and writing scientific publications.

David has also served as a Research Scientist for the African Research Universities Alliance (ARUA), where he developed online courses, facilitated stakeholder engagement workshops, and provided hydrological modeling support for project partners. His experience includes a PhD exchange program at Technische Universität Braunschweig, where he worked on hydrological modeling using the PANTA RHEI Model.

STAKEHOLDER ENGAGEMENT AND PROJECT LEADERSHIP

David has a proven track record in stakeholder engagement and project leadership. He has supported stakeholder engagement for the UKRI-ARUA water project in Rwanda and Uganda, facilitated workshops with the Western Cape Government-LandCare, and collaborated with the World Wildlife Fund. His role as a Project Leader at the Water Research Commission involves supervising students, preparing budgets, and managing project implementation.

AWARDS AND RECOGNITIONS

David's excellence in research has been recognized through various awards and scholarships. Notably, he received the Rhodes University research scholarship and the Berkeley scholarship for the BGW workshop. He has also been awarded for the best poster at École Polytechnique Fédérale de Lausanne, Switzerland, and received a scholarship from Santa Barbara University, California.

TEACHING AND MENTORING

David is committed to teaching and mentoring the next generation of hydrologists. He supervises postgraduate students, lectures on hydrology courses, and develops tailored lectures and workshops. His teaching philosophy emphasizes the importance of practical application and stakeholder engagement in water resource management.

CONTRIBUTIONS TO GIS AND REMOTE SENSING

David's expertise extends to GIS and remote sensing. He has worked as a GIS Intern, where he monitored and evaluated water supply systems, mapped aquifers and water points, and provided GIS information to stakeholders. His technical skills in using GIS software to identify water sources and digitize maps have been instrumental in various research and consultancy projects.

Through his extensive research, leadership, and stakeholder engagement, David Gwapedza continues to make significant contributions to hydrological modeling, catchment management, and natural resource management in Africa. His work not only advances scientific knowledge but also addresses critical water resource challenges in the region.

NOTABLE PUBLICATION

Modelling storm event-based sediment yield and assessing its heavy metal loading: case of Lake Victoria's Inner Murchison Bay catchment in Uganda 2024

Assessing soil erosion risk in a peri-urban catchment of the Lake Victoria basin 2023 (1)

Equity-based allocation criteria for water deficit periods: A case study in South Africa 2023 (2)

Regionalising MUSLE factors for application to a data-scarce catchment 2018 (19)

Prediction of sediment yield of the Inxu River catchment (South Africa) using the MUSLE 2021 (39)