World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
41
Citations
5735
World Ranking
7066
National Ranking
1301

Overview

Fenggui Lu is affiliated with Shanghai Jiao Tong University in China and has contributed extensively to the field of engineering, with a focus on mechanical engineering and related subfields. Their research primarily addresses aspects of welding technology, materials science, and mechanical properties of metals, reflected in a substantial publication record.

The main fields of study for Fenggui Lu include:

  • Engineering

Within engineering, their subfields of specialization cover:

  • Mechanical Engineering
  • Mechanics of Materials
  • Aerospace Engineering
  • Computational Mechanics
  • Materials Chemistry

Research topics frequently tackled encompass:

  • Welding Techniques and Residual Stresses
  • Advanced Welding Techniques Analysis
  • Microstructure and Mechanical Properties of Steels
  • Additive Manufacturing Materials and Processes
  • High Temperature Alloys and Creep
  • Fatigue and fracture mechanics
  • High Entropy Alloys Studies

Fenggui Lu has collaborated repeatedly with several coauthors, including:

  • Chendong Shao
  • Haichao Cui
  • Ninshu Ma
  • Yaqi Wang
  • Xinhua Tang

Their work is disseminated through various publication venues, with notable contributions to:

  • Journal of Materials Processing Technology
  • Journal of Manufacturing Processes
  • Journal of Materials Research and Technology
  • SSRN Electronic Journal
  • International Journal of Heat and Mass Transfer

Selected recent papers exemplifying Fenggui Lu's research output include:

  • Migration behavior of IMC layer in twin-spot laser welding-brazing of aluminum to steel (2020), published in Materials & Design
  • Weld bead characteristics for full-penetration laser welding of aluminum alloy under electromagnetic field support (2020), published in Journal of Materials Processing Technology
  • Mechanism study of thermal fluid flow and weld root hump suppression in full penetration laser welding of Al alloy with alternating magnetic field support (2020), published in International Journal of Heat and Mass Transfer
  • Measurement and analysis of welding deformation in arc welded lap joints of thin steel sheets with different material properties (2020), published in Journal of Manufacturing Processes
  • Effect of solidified grain boundary on interfacial creep failure behavior for steel/nickel dissimilar metal welded joint (2020), published in Materials Science and Engineering A

Best Publications

  • Microstructure and corrosion properties of CrMnFeCoNi high entropy alloy coating

    Qingfeng Ye;Kai Feng;Zhuguo Li;Fenggui Lu

  • Dendritic microstructure and hot cracking of laser additive manufactured Inconel 718 under improved base cooling

    Yuan Chen;Fenggui Lu;Ke Zhang;Pulin Nie

  • Numerical study of keyhole dynamics and keyhole-induced porosity formation in remote laser welding of Al alloys

    Runqi Lin;Hui-ping Wang;Fenggui Lu;Joshua Solomon

  • Improved high-temperature hardness and wear resistance of Inconel 625 coatings fabricated by laser cladding

    Kai Feng;Yuan Chen;Pingshun Deng;Yuyan Li

  • Analysis of Al-steel resistance spot welding process by developing a fully coupled multi-physics simulation model

    Jin Wang;Hui-Ping Wang;Fenggui Lu;Blair E. Carlson

  • Modeling and finite element analysis on GTAW arc and weld pool

    Fenggui Lu;Shun Yao;Songnian Lou;Yongbing Li

  • Numerical simulation on interaction between TIG welding arc and weld pool

    Fenggui Lu;Xinhua Tang;Hailiang Yu;Shun Yao

  • Formation and influence mechanism of keyhole-induced porosity in deep-penetration laser welding based on 3D transient modeling

    Fenggui Lu;Xibin Li;Zhuguo Li;Xinhua Tang

  • Study on welding process and prosperities of AA5754 Al-alloy welded by double pulsed gas metal arc welding

    Anhua Liu;Xinhua Tang;Fenggui Lu

  • Interface characterization and mechanical properties of dual beam laser welding-brazing Al/steel dissimilar metals

    Rui Yuan;Shengjie Deng;Haichao Cui;Yunxia Chen

  • Arc profile characteristics of Al alloy in double-pulsed GMAW

    Anhua Liu;Xinhua Tang;Fenggui Lu

  • Laser synthesis and microstructure of micro- and nano-structured WC reinforced Co-based cladding layers on titanium alloy

    Wei Li;Peiquan Xu;Peiquan Xu;Yueyue Wang;Yun Zou

  • Effect of preheating on the defects and microstructure in NG-GMA welding of 5083 Al-alloy

    Chenxiao Zhu;Xinhua Tang;Yuan He;Fenggui Lu

  • Laser powder deposition of carbon nanotube reinforced nickel-based superalloy Inconel 718

    Yuan Chen;Fenggui Lu;Ke Zhang;Pulin Nie

  • Porosity formation mechanism and its prevention in laser lap welding for T-joints

    Wei Meng;Zhuguo Li;Fenggui Lu;Yixiong Wu

  • Creep behavior and microstructure evaluation of welded joint in dissimilar modified 9Cr–1Mo steels

    Wen Liu;Xia Liu;Fenggui Lu;Xinhua Tang

  • Study of molten pool dynamics and porosity formation mechanism in full penetration fiber laser welding of Al-alloy

    Ruolin Zhang;Xinhua Tang;Lidong Xu;Fenggui Lu

  • A comparative study on fiber laser and CO2 laser welding of Inconel 617

    Wenjie Ren;Fenggui Lu;Renjie Yang;Xia Liu

  • Investigation of dendritic growth and liquation cracking in laser melting deposited Inconel 718 at different laser input angles

    Yuan Chen;Fenggui Lu;Ke Zhang;Pulin Nie

  • Research on narrow-gap GMAW with swing arc system in horizontal position

    Unknown

  • Numerical modeling on the formation process of keyhole-induced porosity for laser welding steel with T-joint

    Xibin Li;Fenggui Lu;Haichao Cui;Xinhua Tang

  • Characteristics and formation mechanism of sidewall pores in NG-GMAW of 5083 Al-alloy

    Chenxiao Zhu;Xinhua Tang;Yuan He;Fenggui Lu

  • Liquation cracking in fiber laser welded joints of inconel 617

    Wenjie Ren;Fenggui Lu;Renjie Yang;Xia Liu

  • Effect of subatmospheric pressure on plasma plume in fiber laser welding

    Yan Luo;Xinhua Tang;Fenggui Lu;Qintao Chen

  • Study on fatigue property and microstructure characteristics of welded nuclear power rotor with heavy section

    Peng Liu;Fenggui Lu;Xia Liu;Huijun Ji

  • Microstructure, wear, and oxidation resistance of nanostructured carbide-strengthened cobalt-based composite coatings on Invar alloys by laser cladding

    Yun Zou;Binghui Ma;Haichao Cui;Fenggui Lu

  • Gleeble simulation of the HAZ in Inconel 617 welding

    Wen Liu;Fenggui Lu;Renjie Yang;Xinhua Tang

  • Analysis of energy flow in gas metal arc welding processes through self-consistent three-dimensional process simulation

    Fenggui Lu;Hui-Ping Wang;Anthony B. Murphy;Blair E. Carlson

Frequent Co-Authors

Zhuguo Li
Zhuguo Li Shanghai Jiao Tong University
Kai Feng
Kai Feng Shanghai Jiao Tong University
Blair E. Carlson
Blair E. Carlson General Motors (United States)
Paul K. Chu
Paul K. Chu City University of Hong Kong
Christoph Schick
Christoph Schick University of Rostock
Anthony B. Murphy
Anthony B. Murphy Commonwealth Scientific and Industrial Research Organisation
Yanna Nuli
Yanna Nuli Shanghai Jiao Tong University
Seiji Katayama
Seiji Katayama Osaka University
Suck-Joo Na
Suck-Joo Na Xi'an Jiaotong University

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring online education options can open doors to a variety of career paths in Engineering and Technology. For those seeking quick entry into the job market, there are 12 month certificate programs that pay well—ideal for acquiring in-demand skills without committing to a lengthy degree.

Flexibility is essential for many learners, such as parents. The best degrees for stay at home moms focus on programs that offer adaptability to busy schedules, making it easier to balance family and education.

For those looking to upskill quickly, some institutions offer 6 week courses covering core technology and engineering topics. Such accelerated courses can provide a competitive advantage or help meet prerequisites for advanced studies.

If speed and market demand are top priorities, consider pursuing the fastest finance degree online. These options blend technical, analytical, and business skills, relevant for tech-driven sectors.

Whether you need short certifications or full degrees, online pathways offer flexible, affordable, and fast tracks to new opportunities in Engineering and Technology fields.

Best Scientists Citing Fenggui Lu

Trending Scientists

Recently Published Articles