The materials design ontology

Author:

Lambrix Patrick123,Armiento Rickard34,Li Huanyu13,Hartig Olaf1,Abd Nikooie Pour Mina13,Li Ying13

Affiliation:

1. Department of Computer Science, Linköping University, Sweden

2. Department of Building Engineering, Energy Systems and Sustainability Science, University of Gävle, Sweden

3. The Swedish e-Science Research Centre, Linköping University, Sweden

4. Department of Physics, Chemistry and Biology, Linköping University, Sweden

Abstract

In the materials design domain, much of the data from materials calculations is stored in different heterogeneous databases with different data and access models. Therefore, accessing and integrating data from different sources is challenging. As ontology-based access and integration alleviates these issues, in this paper we address data access and interoperability for computational materials databases by developing the Materials Design Ontology. This ontology is inspired by and guided by the OPTIMADE effort that aims to make materials databases interoperable and includes many of the data providers in computational materials science. In this paper, first, we describe the development and the content of the Materials Design Ontology. Then, we use a topic model-based approach to propose additional candidate concepts for the ontology. Finally, we show the use of the Materials Design Ontology by a proof-of-concept implementation of a data access and integration system for materials databases based on the ontology.11 This paper is an extension of (In The Semantic Web – ISWC 2020 – 19th International Semantic Web Conference, Proceedings, Part II (2000) 212–227 Springer) with results from (In ESWC Workshop on Domain Ontologies for Research Data Management in Industry Commons of Materials and Manufacturing 2021 1–11) and currently unpublished results regarding an application using the ontology.

Publisher

IOS Press

Subject

Computer Networks and Communications,Computer Science Applications,Information Systems

Reference50 articles.

1. M. Abd Nikooie Pour, H. Li, R. Armiento and P. Lambrix, A first step towards extending the materials design ontology, in: ESWC Workshop on Domain Ontologies for Research Data Management in Industry Commons of Materials and Manufacturing, S. Chiacchiera, M.T. Horsch, J.F. Morgado and G. Goldbeck, eds, 2021, pp. 1–11.

2. M. Abd Nikooie Pour, H. Li, R. Armiento and P. Lambrix, A first step towards a tool for extending ontologies, in: Proceedings of the Sixth International Workshop on the Visualization and Interaction for Ontologies and Linked Data Co-Located with the 20th International Semantic Web Conference (ISWC 2021), Virtual Conference, 2021, P. Lambrix, C. Pesquita and V. Wiens, eds, CEUR Workshop Proceedings, Vol. 3023, CEUR-WS.org, 2021, pp. 1–12, http://ceur-ws.org/Vol-3023/paper2.pdf.

3. Perspective: Materials informatics and big data: Realization of the fourth paradigm of science in materials science;Agrawal;APL Materials,2016

4. M. Alam, H. Birkholz, D. Dessì, C. Eberl, H. Fliegl, P. Gumbsch, P. von Hartrott, L. Mädler, M. Niebel, H. Sack and A. Thomas, Ontology modelling for materials science experiments, in: Joint Proceedings of the Semantics Co-Located Events: Poster & Demo Track and Workshop on Ontology-Driven Conceptual Modelling of Digital Twins Co-Located with Semantics 2021, CEUR Workshop Proceedings, Vols 2941, CEUR-WS.org, 2021, http://ceur-ws.org/Vol-2941/paper11.pdf.

5. OPTIMADE, an API for exchanging materials data

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