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Original Articles

Effects of fractional and two-temperature parameters on stress distributions for an unbounded generalized thermoelastic medium with spherical cavity

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Pages 302-310 | Received 27 Dec 2018, Accepted 07 May 2019, Published online: 27 Jun 2019

Figures & data

Figure 1. (a) Variation of radial stress τrr with r for ω = 0.0. (b) Variation of circumferential stress τφφ with r for ω = 0.0.

Figure 1. (a) Variation of radial stress τrr with r for ω = 0.0. (b) Variation of circumferential stress τφφ with r for ω = 0.0.

Figure 2. (a) Variation of radial stress τrr with r for ω = 0.1. (b) Variation of circumferential stress τφφ with r for ω =0.1.

Figure 2. (a) Variation of radial stress τrr with r for ω = 0.1. (b) Variation of circumferential stress τφφ with r for ω =0.1.

Figure 3. (a) Variation of radial stress τrr with r for α = 0.5. (b) Variation of circumferential stress τφφ with r for α = 0.5.

Figure 3. (a) Variation of radial stress τrr with r for α = 0.5. (b) Variation of circumferential stress τφφ with r for α = 0.5.

Figure 4. (a) Variation of radial stress τrr with r for α = 1.0. (b) Variation of circumferential stress τφφ with r for α = 1.0.

Figure 4. (a) Variation of radial stress τrr with r for α = 1.0. (b) Variation of circumferential stress τφφ with r for α = 1.0.

Figure 5. (a) Variation of radial stress τrr with r for α = 1.2. (b) Variation of circumferential stress τφφ with r for α =1.2.

Figure 5. (a) Variation of radial stress τrr with r for α = 1.2. (b) Variation of circumferential stress τφφ with r for α =1.2.