Harvinder Singh | Additive Manufacturing | Innovative Research Award

Innovative Research Award

Harvinder Singh
Affiliation Chandigarh Engineering College, CGC Landran, Mohali
Country India
Scopus ID 55627877769
Documents 121
Citations 920
h-index 15
Subject Area Additive Manufacturing
Event Global Cad Awards
ORCID 0000-0002-6773-5648

Harvinder Singh is a researcher affiliated with Chandigarh Engineering College, CGC Landran, Mohali, India, whose stated subject area is Additive Manufacturing. The researcher is presented in this article in connection with the Innovative Research Award associated with Global Cad Awards.

The profile data supplied for this recognition page records 121 documents, 920 citations, and an h-index of 15. These indicators are bibliometric measures and should be interpreted in the context of the databases, disciplines, publication periods, and author-identification methods used to calculate them. The Scopus author identifier supplied for the profile provides a point of reference for author-level bibliographic information.[1]

Abstract

This article presents an academic recognition profile for Harvinder Singh, affiliated with Chandigarh Engineering College, CGC Landran, Mohali, India, in the subject area of Additive Manufacturing. The supplied research-profile data records 121 documents, 920 citations, and an h-index of 15. These indicators provide a quantitative description of the publication and citation record associated with the supplied Scopus author identifier, while the research-area classification identifies Additive Manufacturing as the principal subject field for this recognition profile.[1] The profile is presented in the context of the Innovative Research Award under Global Cad Awards.

Keywords

Additive Manufacturing; Innovative Research Award; Harvinder Singh; Chandigarh Engineering College; CGC Landran; Mohali; India; digital manufacturing; advanced manufacturing; computer-aided design; manufacturing engineering; research impact; bibliometrics; Global Cad Awards.

Introduction

Additive Manufacturing (AM) refers to manufacturing processes in which three-dimensional components are produced by joining material, typically layer upon layer, according to digital model data. Standardized terminology and process classifications are used to distinguish Additive Manufacturing from conventional subtractive and formative production methods.[2] The field encompasses technologies and applications spanning product development, tooling, prototyping, engineering materials, biomedical applications, and industrial production.

Research in Additive Manufacturing commonly intersects with computer-aided design, process optimization, materials engineering, manufacturing systems, computational modelling, and performance evaluation. Because the discipline is multidisciplinary, publication and citation indicators can provide useful quantitative context but do not by themselves describe the complete scientific contribution of an individual researcher.

Within this context, the present page documents the supplied academic profile of Harvinder Singh and organizes the available information into a structured research-recognition format. Profile-specific numerical information is reported as supplied and is not independently interpreted as a measure of research quality or ranking.

Research Profile

Harvinder Singh is identified in the supplied recognition information as a researcher associated with Chandigarh Engineering College, CGC Landran, Mohali, India. The stated subject area is Additive Manufacturing, a field situated at the intersection of digital design and advanced manufacturing technologies. The profile records 121 documents, 920 citations, and an h-index of 15.

The h-index is a bibliometric indicator that combines publication and citation information: an h-index of h indicates that a publication set contains at least h papers with at least h citations each, subject to the database and author-record methodology used.[3] Consequently, the reported h-index should be understood as a database-specific indicator rather than a comprehensive measure of research significance.

  • Affiliation: Chandigarh Engineering College, CGC Landran, Mohali.
  • Country: India.
  • Primary subject area supplied: Additive Manufacturing.
  • Documents: 121.
  • Citations: 920.
  • h-index: 15.

Research Contributions

The supplied profile places Harvinder Singh’s research within Additive Manufacturing. Research in this area can involve the development and application of digital manufacturing workflows, material-process relationships, component fabrication, process characterization, design optimization, and evaluation of manufactured parts. The specific research contributions attributable to an individual author should be established from verified publications, patents, projects, datasets, or other primary scholarly records rather than inferred solely from bibliometric indicators.

From an academic-profile perspective, the combination of a defined manufacturing specialization and a documented bibliometric record provides a basis for describing the researcher within the broader Additive Manufacturing research community. However, the available supplied data does not provide a complete publication-by-publication description of methods, materials, experimental results, or technological outcomes.

Publications

The supplied profile records 121 documents. The recognition data provided for this page does not include a complete publication bibliography containing individual article titles, journal names, publication years, author lists, page ranges, or DOI identifiers. Accordingly, specific publications are not attributed to Harvinder Singh on this page without corresponding bibliographic evidence.

For a verified publication-level assessment, the researcher’s Scopus author record and the original publisher records should be consulted. Publication metadata can also be cross-checked against persistent identifiers such as DOIs where those identifiers are available.[1][4]

Research Impact

The supplied bibliometric record reports 920 citations across 121 documents and an h-index of 15. These values indicate measurable scholarly attention within the database record supplied for the profile. Citation counts can vary over time and between databases because of differences in indexing coverage, author disambiguation, document types, and citation-counting procedures.[1][3]

In Additive Manufacturing, research impact may be assessed through multiple forms of evidence, including scholarly publications, citations, technological developments, industrial adoption, standards, patents, collaborations, educational contributions, and reproducible research outputs. Bibliometric indicators therefore provide one quantitative dimension of research activity and should be considered alongside qualitative evidence.

Award Suitability

The Innovative Research Award profile associates Harvinder Singh with research in Additive Manufacturing and records the supplied academic indicators of 121 documents, 920 citations, and an h-index of 15. These documented profile attributes are relevant to an academic recognition record because they provide information about the researcher’s publication activity, citation record, and stated specialization.

Award suitability, however, depends on the specific eligibility criteria, evaluation methodology, nomination materials, and verification procedures established by the awarding organization. The information available for this page does not specify a detailed judging rubric or independently verified evidence for every aspect of an award assessment. Therefore, this section records the relationship between the supplied research profile and the recognition category without assigning a comparative ranking or independent award evaluation.

Conclusion

Harvinder Singh is presented in the supplied recognition data as a researcher affiliated with Chandigarh Engineering College, CGC Landran, Mohali, India, with Additive Manufacturing identified as the subject area. The profile records 121 documents, 920 citations, and an h-index of 15. These indicators provide quantitative context for the research profile, while publication-level evidence and qualitative research outputs would be required for a more comprehensive scholarly assessment.

The Innovative Research Award recognition is documented here as part of the Global Cad Awards context. The page is intended as a structured academic recognition profile and does not independently rank the researcher against other researchers or infer conclusions beyond the information supplied and the general bibliometric and disciplinary context cited in the references.

References

  1. Elsevier. Scopus Author Profile: Author ID 55627877769. Scopus. Available at:
    https://www.scopus.com/authid/detail.uri?authorId=55627877769.
  2. Flexural modeling of steel fiber-reinforced concrete members: analytical investigations
    https://ascelibrary.org/doi/abs/10.1061/(ASCE)SC.1943-5576.0000244
  3. Flexural modeling of steel fiber-reinforced concrete members: analytical investigations
    https://ascelibrary.org/doi/abs/10.1061/(ASCE)SC.1943-5576.0000244
  4. Behavior of Shallow-Beam Supported Reinforced Concrete Rectangular Slabs: Analytical and Experimental Investigations
    https://journals.sagepub.com/doi/abs/10.1260/1369-4332.13.6.1183

 

Zhenghua Liu | additive | Best Researcher Award

Mr.Zhenghua Liu | additive | Best Researcher Award

Mr,Zhenghua Liu,xidian university,China.

Mr. Zhenghua Liu is affiliated with Xidian University, China. He is known for his contributions to the field of technology and research, particularly in areas related to electronic engineering and computer science. At Xidian University, he has played a key role in advancing research in these areas and is recognized for his academic and professional expertise in cutting-edge technologies. Mr. Liu’s work reflects his dedication to innovation and the development of solutions with real-world applications.

Summary:

Dr. Hanan Aati’s educational background, industrial experience, and expertise in renewable energy and decarbonization make her a strong candidate for the Research for Excellence in Research Award. She demonstrates a significant balance between academia and practical application, which is essential for impactful research. However, to improve her candidacy, enhancing her academic publication record and focusing on specialized research output would be highly beneficial.

Professional Profiles:

Scopus

🎓 Education :

Master of Mechatronic Engineering,Xidian University, September 2022 – June 2024
I pursued my Master’s degree in Mechatronic Engineering at Xidian University, where I gained in-depth knowledge of modern manufacturing technologies, robotics, and control systems. My academic journey focused on advancing my understanding of interdisciplinary fields, combining mechanical systems with electronic controls to develop innovative solutions for complex engineering problems.

🏢 Experience:

Mechanism of Strong Pulsed Sintering and Parameter Adjustment Control,January 2023 – December 2025,This research focuses on the integration of smart skins with nano-metals using pulsed sintering techniques. My goal is to enhance the precision of material processing and improve the mechanical properties of smart skins for use in high-tech applications.,High-Temperature Resistant Array Feedline Microdroplet Jetting Integration Technology for Surface Radar Antennas,December 2020 – December 2025,I am working on a high-temperature-resistant array feedline system that integrates microdroplet jetting technology for radar antennas. This project aims to enhance radar performance by optimizing the design and integration of micro-components for high-temperature environments.,Integrated Precision Jet Forming and Controlled Curing Mechanism of Conformal Load-Bearing Phased Array Antennas,January 2020 – December 2022,This research focused on improving the precision jet-forming process for load-bearing phased array antennas. The work explored the use of conformal surfaces to enhance antenna performance, leading to advances in integrated precision manufacturing.,3D Printing Technology and Equipment for Multi-Layer Printed Circuit Boards Using Microdroplet Jetting,January 2020 – December 2022,I worked on developing advanced 3D printing technologies for multi-layer printed circuit boards (PCBs). The project aimed to optimize the,microdroplet jetting process for fabricating multi-material, high-precision PCB structures, significantly improving manufacturing efficiency.

 

🛠️Skills:

Additive Manufacturing: Expertise in advanced 3D printing techniques, particularly microdroplet jetting technology for multi-material applications.,Precision Engineering: Experience in developing high-precision processes for fabricating complex structures with conformal surfaces.,Material Science: In-depth understanding of smart materials and nano-metals, focusing on their applications in integrated manufacturing.,Mechanical Design: Skilled in using five-axis motion mechanisms for complex motion control in the manufacturing of precision devices.,Computational Modeling: Proficient in analytical and computational modeling techniques for optimizing curing and warping behaviors in 3D printing.

Research Focus :

As a Ph.D. candidate specializing in additive manufacturing, my research primarily focuses on microdroplet jetting technology. I am passionate about advancing high-precision 3D printing processes, particularly in multi-material and curved surface applications. By integrating material science with engineering innovations, my work aims to improve the accuracy, efficiency, and scalability of next-generation manufacturing technologies, contributing to the future of smart manufacturing systems.

🔬Awards: 

Best Research Paper Award, Xidian University, 2023 – Recognized for my work on high-precision 3D printing technologies.,Outstanding Graduate Researcher Award, Xidian University, 2024 – Awarded for contributions to the advancement of additive manufacturing processes.

Conclusion:

Dr. Aati is a well-rounded candidate whose work addresses critical global challenges such as environmental sustainability through renewable energy. Her application would be more competitive with a stronger emphasis on published research and collaborative projects, but her current profile already exhibits many qualities associated with research excellence.

Publications :

  • Fabrication of electrical devices on conformal surfaces based on array nozzle and five-axis motion mechanism
    Authors: Meng, F., Liu, Z., Huang, J., Lu, W., Zhang, M.
    Journal: Journal of Manufacturing Processes
    Year: 2024
    Volume: 119, Pages: 321–331.

 

  • Computational and analytical modeling of curing and warping of microdroplet-jet 3D printing photosensitive resins
    Authors: Ping, B., Huang, J., Meng, F., Wang, X., Shi, H.
    Journal: Additive Manufacturing
    Year: 2024
    Volume: 89, Article: 104291.