Paper
16 December 2021 Development of a simulation system platform for the practical operation of shuttle kiln ceramic firing based on VR technology
Jiachun Li
Author Affiliations +
Proceedings Volume 12153, International Conference on Artificial Intelligence, Virtual Reality, and Visualization (AIVRV 2021); 121530M (2021) https://doi.org/10.1117/12.2626654
Event: International Conference on Artificial Intelligence, Virtual Reality, and Visualization (AIVRV 2021), 2021, Sanya, China
Abstract
Aiming at the problems of uncontrollable factors such as many steps, long firing cycle, high cost and great danger in the ceramic kiln firing process of the shuttle kiln, the traditional theoretical explanation, physical operation and other unidirectional teaching methods have poor effects. This article is based on the real three-dimensional model and space layout of the shuttle kiln scene in Jingdezhen, and the teaching content is planned according to the syllabus and assessment requirements. Based on the Unity 3D software, the simulation teaching of shuttle kiln ceramic firing with high simulation and full scale physical equipment is developed. The platform expounds the functional innovation design of the simulation system, and introduces the development process and key technical points of the simulation system. The results show that using VR technology training, students repeatedly perform virtual operations, multiple people participate, low equipment loss, and reduce teaching costs. At the same time, it provides learners with a self-supporting learning platform, and also provides convenience for the teaching of experimenting with "interactive" lessons.
© (2021) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jiachun Li "Development of a simulation system platform for the practical operation of shuttle kiln ceramic firing based on VR technology", Proc. SPIE 12153, International Conference on Artificial Intelligence, Virtual Reality, and Visualization (AIVRV 2021), 121530M (16 December 2021); https://doi.org/10.1117/12.2626654
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KEYWORDS
Ceramics

Virtual reality

3D modeling

Instrument modeling

Solid modeling

Software development

Safety

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