Structural Analysis of a Household Refrigerator by Autodesk Fusion 360

Cathrin Nikitha R., E. Rajkumar

Abstract


The main objective of this paper is to analyse and discuss the stress distribution of a household refrigerator under a given load and decide whether the material of the model is suitable and feasible for household conditions or not. In this paper, static stress analysis is done on the tray of the household refrigerator. The geometric model used for analysis is created using Autodesk Fusion 360 and the analysis is done by Finite Element Analysis (FEA) using Finite Element Method (FEM) in the Simulation tab of Autodesk Fusion 360 itself. The material used here for the tray of the household refrigerator is Aluminium 5454 O Cold Formed. Rather than using Aluminium 5454, Aluminium 5454 hardened by cold working to the form of Aluminium 5454 O Cold Formed is used. Aluminium 5454 O Cold Formed has better strength than Aluminium 5454. Since the household refrigerator will be used in almost every household all over the world, the boundary conditions used here, the pressure on the tray and the fixed supports at the bases, are chosen after careful consideration of actual household conditions. After the pressure is applied and fixed supports are applied at the bases, the household refrigerator is studied under static stress analysis. A report is then generated by Autodesk Fusion 360 after the analysis is completed. After the observing the results of safety factor, structural deformation and Von-Mises stresses from the report by Autodesk Fusion 360, the selected material is discussed about and is finalized. This study may be used for future references.

Keywords


Household refrigerator, Fusion 360, stress analysis, deformation, structural analysis.

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References


Shanmugasundaram, Sivarajan & Anand, Nischay. (2018). Design Optimization and Testing of

Structure of a Single Door Refrigerator.

Hongling Y, Guoquan F. Refrigerator cabinet foaming mold accurate design and manufacture

based on the vacuum Deformation mechanism. In2nd International Conference on Electronic & Mechanical Engineering and Information Technology 2012 Sep (pp. 1342-1346).

Rao A.S., Khatawate V.H., Mane S. (2020) Design and Development of Easy Access Crisper/Shelf

in a Refrigerator. In: Vasudevan H., Kottur V., Raina A. (eds) Proceedings of International

Conference on Intelligent Manufacturing and Automation. Lecture Notes in Mechanical

Engineering. Springer, Singapore. [Available from] https://doi.org/10.1007/978-981-15-4485-

_60

Tian XL, Tang XJ, Hu ZX, Yu AB. Precision Machining of Si3N4 Refrigerator Friction Couple

Based on FEA. KEM 2007;336–338:1451–4. [Available from]

https://doi.org/10.4028/www.scientific.net/kem.336-338.1451.

Zhu HY, Zhang CL, Wang WX. Optimization of Refrigerator Door Structure Based on ABAQUS.

AMM 2012;226–228:807–11. [Available from]

https://doi.org/10.4028/www.scientific.net/amm.226-228.807.

Fusion 360 (2.0.12392), Autodesk, 2021, [Available from] https://fusion.online.autodesk.com/,

Last visited: 10.03.2022.

Lee B-Y. Analysis of Door Height Difference and Door Flatness Difference of Built-in Side-bySide Refrigerator Using Cabinet-Door Integrated Model [Internet]. Vol. 17, The Korean Society of

Manufacturing Process Engineers. The Korean Society of Manufacturing Process Engineers; 2018.

p. 76–83. [Available from]: http://dx.doi.org/10.14775/ksmpe.2018.17.5.076

Swindell TR, Sisson CW, Ocharzak DJ (1997) Adjustable refrigerator shelf, US Patent US5913584

Jeong G-E, Kang P, Youn S-K, Yeo I, Song T-H, Kim JO, et al. Study of Structural Stiffness of

Refrigerator Cabinet Using the Topology Optimization of a Vacuum Insulated Panel (VIP)

[Internet]. Vol. 32, Journal of the Korean Society for Precision Engineering. Korean Society of

Precision Engineering; 2015. p. 727–34. [Available from]:

http://dx.doi.org/10.7736/KSPE.2015.32.8.727

Suriyanarayanan V., Nagarajan A., Fiori M., Mahajan P., Nalwade A. (2020) Refrigerator

Structural Stability Analysis and Correlation. In: Li C., Chandrasekhar U., Onwubolu G. (eds)

Advances in Engineering Design and Simulation. Lecture Notes on Multidisciplinary Industrial

Engineering. Springer, Singapore.




DOI: https://doi.org/10.37591/tmd.v8i3.6221

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