Research Excellence Award

Hamid Reza Moetamedzadeh
Ardakan University, Iran

Hamid Reza Moetamedzadeh
Affiliation Ardakan University
Country Iran
Scopus ID 57095064000
Documents 5
Citations 50
h-index 3
Subject Area 3D/4D-Printing
Event Applied Scientist Awards
ORCID 0000-0003-2733-7917

Hamid Reza Moetamedzadeh, affiliated with Ardakan University, Iran, is presented in this academic recognition profile in the research area of 3D/4D-Printing. The profile summarizes the supplied scholarly indicators, research area, publication activity, and suitability for recognition under the Applied Scientist Awards framework. The available profile data indicate 5 documents, 50 citations, and an h-index of 3 in the supplied Scopus author record. [1]

Abstract

The Research Excellence Award profile for Hamid Reza Moetamedzadeh summarizes the supplied scholarly information associated with Ardakan University in Iran and the research subject of 3D/4D-Printing. According to the provided Scopus information, the researcher has 5 indexed documents, 50 citations, and an h-index of 3. [1] The research area represents an interdisciplinary field connecting additive manufacturing, digital fabrication, materials engineering, design optimization, and responsive structures. The profile also provides an ORCID identifier for researcher disambiguation and persistent scholarly identification. [2]

Keywords

3D Printing; 4D Printing; Additive Manufacturing; Advanced Manufacturing; Digital Fabrication; Smart Materials; Responsive Structures; Materials Engineering; Research Excellence; Additive Technologies

Introduction

Additive manufacturing has developed from a prototyping technique into a broad family of manufacturing processes used to fabricate complex geometries, customized components, and functional structures. 3D printing generally refers to layer-by-layer fabrication based on digital models, while 4D printing introduces a temporal dimension in which fabricated structures can change their shape, properties, or function in response to predefined stimuli.

Research Profile

Hamid Reza Moetamedzadeh is associated with Ardakan University in Iran. The supplied scholarly profile identifies 3D/4D-Printing as the principal subject area considered for this recognition profile. The provided Scopus author identifier is 57095064000, allowing the researcher record to be distinguished within the Scopus author-identification system. [5]

The researcher’s ORCID identifier, 0000-0003-2733-7917, provides an additional persistent identifier that can support accurate attribution of scholarly works across research systems. [2]

Research Contributions

The supplied research specialization places Moetamedzadeh within 3D/4D-printing research, an area characterized by the integration of digital design with advanced fabrication. Potential contribution dimensions within this field include the development or evaluation of printing processes, materials selection, fabrication accuracy, structural design, process parameters, and the creation of components with application-specific properties.

Publications

The supplied Scopus profile records 5 documents associated with the researcher identifier provided for this article. [3] These documents form the bibliographic basis for the reported citation count and h-index. The supplied information does not include the titles, journals, publication years, or individual DOI identifiers of the five documents; therefore, specific publication titles and article-level DOI claims are not introduced here.

DOIs are persistent identifiers commonly used to provide stable access to scholarly publications. Where individual publication DOI information becomes available, it can be incorporated into this section and independently verified through the DOI system. [4]

Research Impact

The supplied bibliometric indicators show 50 citations across 5 documents and an h-index of 3. [1] Within a scholarly profile, these indicators can be used to describe the visibility and citation activity of indexed research. They should, however, be considered alongside publication quality, research relevance, methodological rigor, collaboration, and practical or technological outcomes. [2]

Award Suitability

The supplied profile provides several elements that can be considered in an academic award assessment: a defined research specialization, an institutional affiliation, an identifiable Scopus author record, a documented publication count, citation activity, and an h-index. These elements provide a preliminary scholarly profile for consideration under a research excellence recognition category.

On the basis of the supplied information alone, the profile can be described as suitable for consideration for the Research Excellence Award, subject to the applicable nomination criteria, independent verification of the submitted evidence, and the formal evaluation process of the Applied Scientist Awards.

Conclusion

Hamid Reza Moetamedzadeh of Ardakan University is presented in this profile as a researcher working within the subject area of 3D/4D-Printing. The supplied Scopus indicators document 5 research documents, 50 citations, and an h-index of 3. [1] The research area connects additive manufacturing with advanced materials, digital fabrication, and emerging responsive manufacturing concepts.

References

  1. Elsevier. (n.d.). Scopus author details: Hamid Reza Moetamedzadeh, Author ID 57095064000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57095064000
  2. A Pourfard, H Moetamedzadeh, R Madoliat, E Khanmirza. (2019). Design of a neural network based predictive controller for natural gas pipelines in transient state.
    https://www.sciencedirect.com/science/article/pii/S1875510018305225
  3. HR Moetamedzadeh, E Khanmirza, A Pourfard, R Madoliat. 2019). Intelligent nonlinear model predictive control of gas pipeline networks.
    https://journals.sagepub.com/doi/abs/10.1177/0142331219864190
  4. R Madoliat, E Khanmirza, HR Moetamedzadeh. (2016). Transient simulation of gas pipeline networks using intelligent methods.
    https://www.sciencedirect.com/science/article/pii/S187551001630018X
  5. HR Moetamedzadeh, A Shams, H Jokar, M Evazzadeh, H Nosrati. (2026). AI-driven design and electrothermal actuation of 4D-Printed carbon fiber-reinforced composites.
    https://www.tandfonline.com/doi/abs/10.1080/19475411.2026.2714778
Hamid Reza Moetamedzadeh | 3D/4D-Printing | Research Excellence Award

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