Stresses occurring on a cylinder with annular B4C, Tİ and AL (2024) materials

  • Hüseyin Fırat Kayiran ARDSI Mersin Provincial Coordination Unit, Bahçelievler Neighborhood, Huseyin Okan Merzeci Boulevard
Ariticle ID: 401
33 Views, 18 PDF Downloads
Keywords: mathematical formulation, annular disk, stress analysis

Abstract

In this study, the calculated thermal stresses on a layered annular circular disk were analyzed analytically. At the end of the analysis, it was observed that the thermal tensile strength of the boron carburetor (B4C) with a high modulus of elasticity is higher than titanium, and titanium is more than aluminum. The results obtained are shared with the literature and presented with graphs.

References

Öz A, Demir A, Sağıroğlu S, et al. Experimental Investigation of Braking Performance of Brake Disc Coated with Cr2O3 by Plasma Spray Technique (Turkish). European Journal of Science and Technology. 2019: 394-403. doi: 10.31590/ejosat.522361

Apte AA, Ravi H. FE Prediction of Thermal Performance and Stresses in a Disc Brake System. SAE Technical Paper. 2006.

Sivri RK, Keles İ. Thermo-Mechanical Analysis of Heavy Vehicle Brake Disc with Finite Elements (Turkish). Black Sea Journal of Engineering and Science. 2023; 6(1): 44-52. doi: 10.34248/bsengineering.1205606

Jung SP, Kim YG, Park TW. A study on thermal characteristic analysis and shape optimization of a ventilated disc. International Journal of Precision Engineering and Manufacturing. 2012; 13(1): 57-63. doi: 10.1007/s12541-012-0008-4

Kayiran HF. Usabilitiy of Chebyshev Pseudospectral method with finite element method on circular discs. Published online May 25, 2022. doi: 10.5281/ZENODO.6580397

Kayiran HF. Numerical analysis of composite disks based on carbon/aramid—epoxy materials. Emerging Materials Research. 2022; 11(1): 155-159. doi: 10.1680/jemmr.21.00052

Kayiran HF. Rotating brake discs with carbon laminated composite and e-glass epoxy material: A mathematical modeling. Iranian Polymer Journal. 2022; 1-12.

Kulkarni VS, Deshmukh KC. Quasi-static thermal stresses in a thick circular plate. Applied Mathematical Modelling. 2007, 31(8): 1479-1488.

Lee ZY, Chen C.K, Hung CL. Transient Thermal stress analysis of multilayered hollow cylinder. Acta Mechanica. 2001, 151(1): 75-88.

Bousahla AA. et al. On thermal stability of plates with functionally graded coefficient of thermal expansion. Structural Engineering and Mechanics, An Int'l Journal. 2016, 60(2): 313–335.

Azom. Properties: Boron Carbide (B4C)—Properties and Information about Boron Carbide. 2023.

Kyocera. Titanium Properties—Kyocera SGS Europe. 2023.

ASM Mterial. ASM Material Data Sheet. 2023.

Manthena VR, Srinivas VB, Kedar GD. Analytical solution of heat conduction of a multilayered annular disk and associated thermal deflection and thermal stresses. Journal of Thermal Stresses. 2020; 43(5): 563-578. doi: 10.1080/01495739.2020.1735975

Hosseini M, Arani AG, Karamizadeh M, et al. Static and dynamic stability analysis of thick CNT reinforced beams resting on Pasternak foundation under axial and follower forces. Journal of Solid Mechanics. 2022; 14(1): 1-16.

Lu X, Tervola P, Viljanen M. An efficient analytical solution to transient heat conduction in a one dimensional hollow composite cylinder. Journal of Physics A Mathematical and General. 2005, 38-47: 10145.

Malzbender J. Mechanical and thermal stresses in multilayered materials. Journal of Applied Physics. 2004, 95(4): 1780-1782.

Published
2023-12-31
How to Cite
Kayiran, H. F. (2023). Stresses occurring on a cylinder with annular B4C, Tİ and AL (2024) materials. Nano Carbons, 1(1), 401. https://doi.org/10.59400/n-c.v1i1.401
Section
Original Research Article