Reliability of Fitness Equipment Safety Checking Calculation and Reliability Research of the Electric Retractable Machine Stand Framework to be Reactivated after the Arrest
DOI: 10.23977/jemm.2022.070203 | Downloads: 10 | Views: 130
TianBiao Huang 1, Xuan Bao 1, Houyun Liang 1
1 Zhejiang Ocean University Donghai Science and Technology College, Zhejiang, China
Corresponding AuthorTianBiao Huang
Humans have a gregarious nature. After the arrest of the COVID-19 epidemic, the will of the people to resume or carry out healthy physical and mental activities will be strengthened. From the view of safety and health of facilities and equipment for collective activities, this paper provides a method of safety checking calculation and simulation based on the telescopic underframe of electric grandstand equipment, which can provide reference for similar facilities and equipment. According to "building structure load code (GB50009-2001)", using ANSYS software to analyze the internal force of structure under external load; According to the Technical Code of cold-formed thin-wall steel structures (GB50018-2002), the strength and stability of the members were Checking. According to the Technical Code of cold-formed thin-wall steel structures (GB50018-2002), which is the national standard of the People's Republic of China, the strength and stability of the members are checked. It could help engineers predict electric grandstand effectively, ensure its load bearing was safe and reliable, and prevent accidents such as the stand gave way all of a sudden. This paper has certain reference value for the safety checking calculation, reliability confirmation, design and production of the same kind of products.
KEYWORDSCOVID-19, Sports activities, Venue, Machinery, Safety, Check
CITE THIS PAPER
TianBiao Huang, Xuan Bao, Houyun Liang, Reliability of Fitness Equipment Safety Checking Calculation and Reliability Research of the Electric Retractable Machine Stand Framework to be Reactivated after the Arrest. Journal of Engineering Mechanics and Machinery (2022) Vol. 7: 17-26. DOI: http://dx.doi.org/10.23977/jemm.2022.070203.
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