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Academic Journal of Engineering and Technology Science, 2023, 6(6); doi: 10.25236/AJETS.2023.060609.

Application of Multimedia Virtual Technology in Mechanical Engineering Display Design

Author(s)

Yihui Chen

Corresponding Author:
Yihui Chen
Affiliation(s)

Tangshan Polytechnic College, Tangshan, 063299, China

Abstract

Virtualization technology is one of the high and new technologies nowadays, and it is extremely important for the design of application products and mechanical objects. This provides a good design platform and development space for designers of application products and mechanical structures, more clearly and intuitively, it shows a self-virtualized simulation scene of people's future virtual products and mechanical engineering models, unknown virtual products and mechanical engineering models, ideal virtual products and mechanical engineering models or all real things that people imagine creating and show. The interaction between mobile virtual and reality is constantly developed and respected, and the man-machine interaction operation mode is realized. This paper introduces the system dynamics formula of the barge system in the upper block on the offshore electric platform and the calculation of acceleration and inertia force in its inertial load. In the virtual system, the dynamic model is used to calculate the kinetic energy and potential energy of mechanical engineering, and the algorithm model is applied to the angle and acceleration of joints on the robot. Three kinds of network models are simplified by simplification algorithm, and the models are compared in two aspects of visual geometry error and visual error. Finally, the video quality is reacted by different users, and the model performance is compared.

Keywords

mechanical engineering, virtual technology, vision, video quality

Cite This Paper

Yihui Chen. Application of Multimedia Virtual Technology in Mechanical Engineering Display Design. Academic Journal of Engineering and Technology Science (2023) Vol. 6, Issue 6: 58-64. https://doi.org/10.25236/AJETS.2023.060609.

References

[1] Morani Federica. Integrative Organelle-Based Functional Proteomics: In Silico Prediction of Impaired Functional Annotations in SACS KO Cell Model. [J]. Biomolecules, 2022, 12(8)

[2] Zhu Sanfan. Limit Carrying Capacity Calculation of Two-Way Slabs with Three Simply Supported Edges and One Clamped Edge under Fire [J]. Applied Sciences, 2022, 12(3): 1561-1561.

[3] Chuantao Chen and Mingzhong Gao and Ao Zhang. New Calculating Approach for the Ultimate Bearing Capacity of a Shallow Foundation [J]. International Journal of Geomechanics, 2020, 20(6).

[4] Lianheng Zhao and Feng Yang. Construction of improved rigid blocks failure mechanism for ultimate bearing capacity calculation based on slip-line field theory[J]. Journal of Central South University, 2013, 20(4): 1047-1057.

[5] Yaoze Liang, Jian Zhen, Baiguo Liang. Study and Application on Computational Methods for Ultimate Bearing Capacity of Single Pile [J]. Key Engineering Materials, 2008, 400-402(400-402): 329-334. 

[6] Zhenzhou Sun et al. Experimental Analysis on Dynamic Responses of an Electrical Platform for an Offshore Wind Farm under Earthquake Load [J]. Journal of Marine Science and Engineering, 2019, 7(8): 279-279.

[7] Honggang Yang and Shujie Wang and Yirong Xie. Parametric Design of Crankshaft Based on CATIA Secondary Development Platform [J]. Applied Mechanics and Materials, 2014, 3365(602-605): 287-290.

[8] Chepurnenko Anton et al. Simplified 2D Finite Element Model for Calculation of the Bearing Capacity of Eccentrically Compressed Concrete-Filled Steel Tubular Columns[J]. Applied Sciences, 2021, 11(24): 11645-11645.

[9] Mazurak Andrii et al. Methods of Calculation the Increased Reinforced Concrete Elements by Carrying Capacity of Slope Sections [J]. IOP Conference Series: Materials Science and Engineering, 2021, 1203(2)

[10] Millán Miguel Angel and Galindo Rubén and Alencar Ana. Application of discontinuity layout optimization method to bearing capacity of shallow foundations on rock masses [J]. ZAMM ‐ Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik, 2021, 101(10).

[11] He Qinghua et al. Algorithm for Vertical Bearing Capacity Calculation of Rock-Socketed Piles in Karst Area Based on Load Transfer Method[J]. IOP Conference Series: Earth and Environmental Science, 2021, 719(4)

[12] Xiao Wang and Min Pang and Mingzhi Zhao. Pollution Load Capacity Calculation Study Based on Multi-objective System in Trans-boundary Area, Plain River Network[J]. Bulletin of Environmental Contamination and Toxicology, 2021, 106(4): 1-8.

[13] Qinke Wang. Calculation method and influencing factors of uplift bearing capacity of rock-socketed pedestal pile[J]. Arabian Journal of Geosciences, 2021, 14(4): 1-15.

[14] Shkurupiy A A. Theoretical basis of bearing capacity calculation of the statically indeterminate reinforced concrete beams and its experimental research[J]. IOP Conference Series: Materials Science and Engineering, 2021, 1021(1).