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Erschienen in: Acta Mechanica 12/2019

26.09.2019 | Original Paper

Fracture analysis of superconducting composites with a sandwich structure based on electromagnetic–thermal coupled model

verfasst von: Y. Q. Wang, K. F. Wang, B. L. Wang, L. Zheng, C. W. Zhang

Erschienen in: Acta Mechanica | Ausgabe 12/2019

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Abstract

This paper analyzes a multilayer structure with a superconducting layer in the center and strengthening layers in the outer part. This represents a generalized structural form of multilayered high-temperature superconducting cable structures for space solar power station application. An analytical model for considering the influences of thermal–mechanical–electrical–magnetic coupling and the temperature on the stress distribution will be developed. The superposition method is used to solve the temperature distribution problem. After the temperature field is calculated, the magnetic field using a critical state model that considers the temperature effect will be developed. Finally, we analyzed the influence of material properties on the thermal and magnetically induced stress intensity factors in trapped field, zero field cooling and field cooling. Results show that the stress intensity factors induced either by thermal stress or by the Lorentz force must not be neglected. If the elastic module or the thickness of substrate layer increases, the stress intensity factor induced by thermal stress increases, while the one induced by the Lorentz force declines. Importantly, when reducing the thickness of the substrate layer, the total stress intensity factor will decrease at the early stage of heat conduction but increase at the late stage of heat conduction. This fact indicates that that thicker substrate layer is not always good from the reliability point of view.
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Literatur
1.
Zurück zum Zitat Sakai, S., Oguni, K., Ohashi, S.: Effect of the magnetic configuration on the rotational motion in the attractive-type HTS-permanent magnet hybrid bearing. IEEE Trans. Appl. Supercond. 26(4), 1–4 (2016)CrossRef Sakai, S., Oguni, K., Ohashi, S.: Effect of the magnetic configuration on the rotational motion in the attractive-type HTS-permanent magnet hybrid bearing. IEEE Trans. Appl. Supercond. 26(4), 1–4 (2016)CrossRef
2.
Zurück zum Zitat Yang, Q., Le Blond, S., Liang, F., Yuan, W., Zhang, M., Li, J.: Design and application of superconducting fault current limiter in a multiterminal HVDC system. IEEE Trans. Appl. Supercond. 27(4), 1–5 (2017)CrossRef Yang, Q., Le Blond, S., Liang, F., Yuan, W., Zhang, M., Li, J.: Design and application of superconducting fault current limiter in a multiterminal HVDC system. IEEE Trans. Appl. Supercond. 27(4), 1–5 (2017)CrossRef
3.
Zurück zum Zitat Yang, Y., Zhang, Y., Duan, B., Wang, D., Li, X.: A novel design project for space solar power station (SSPS-OMEGA). Acta Astronaut. 121, 51–58 (2016)CrossRef Yang, Y., Zhang, Y., Duan, B., Wang, D., Li, X.: A novel design project for space solar power station (SSPS-OMEGA). Acta Astronaut. 121, 51–58 (2016)CrossRef
4.
Zurück zum Zitat Celentano, G., De Marzi, G., Fabbri, F., Muzzi, L., Tomassetti, G., Anemona, A., Della Corte, A.: Design of an industrially feasible twisted-stack HTS cable-in-conduit conductor for fusion application. IEEE Trans. Appl. Supercond. 24(3), 1–5 (2013)CrossRef Celentano, G., De Marzi, G., Fabbri, F., Muzzi, L., Tomassetti, G., Anemona, A., Della Corte, A.: Design of an industrially feasible twisted-stack HTS cable-in-conduit conductor for fusion application. IEEE Trans. Appl. Supercond. 24(3), 1–5 (2013)CrossRef
5.
Zurück zum Zitat Fujishiro, H., Ainslie, M.D., Takahashi, K., Naito, T., Yanagi, Y., Itoh, Y., Nakamura, T.: Simulation studies of mechanical stresses in REBaCuO superconducting ring bulks with infinite and finite height reinforced by metal ring during field-cooled magnetization. Supercond. Sci. Technol. 30(8), 085008 (2017)CrossRef Fujishiro, H., Ainslie, M.D., Takahashi, K., Naito, T., Yanagi, Y., Itoh, Y., Nakamura, T.: Simulation studies of mechanical stresses in REBaCuO superconducting ring bulks with infinite and finite height reinforced by metal ring during field-cooled magnetization. Supercond. Sci. Technol. 30(8), 085008 (2017)CrossRef
6.
Zurück zum Zitat Cook, R.F., Dinger, T.R., Clarke, D.R.: Fracture toughness measurements of YBa2Cu3Ox single crystals. Appl. Phys. Lett. 51(6), 454–456 (1987)CrossRef Cook, R.F., Dinger, T.R., Clarke, D.R.: Fracture toughness measurements of YBa2Cu3Ox single crystals. Appl. Phys. Lett. 51(6), 454–456 (1987)CrossRef
7.
Zurück zum Zitat Fujimoto, H.: Preparation and mechanical properties of large single domain GdBaCuO superconductor with low void density. IEEE Trans. Appl. Supercond. 19(3), 2933–2936 (2009)CrossRef Fujimoto, H.: Preparation and mechanical properties of large single domain GdBaCuO superconductor with low void density. IEEE Trans. Appl. Supercond. 19(3), 2933–2936 (2009)CrossRef
8.
Zurück zum Zitat Li, L., Zhong, L., Duan, X., Song, M., Shi, Z., Hu, N., Lin, Y.: Study on heat transfer characteristics of stainless steel wrapped YBCO strip under liquid nitrogen. In: 2018 International Conference on Power System Technology (POWERCON). IEEE, pp. 4229–4234(2018) Li, L., Zhong, L., Duan, X., Song, M., Shi, Z., Hu, N., Lin, Y.: Study on heat transfer characteristics of stainless steel wrapped YBCO strip under liquid nitrogen. In: 2018 International Conference on Power System Technology (POWERCON). IEEE, pp. 4229–4234(2018)
9.
Zurück zum Zitat Ma, G.T., Rauh, H.: Thermo-electromagnetic properties of a magnetically shielded superconductor strip: theoretical foundations and numerical simulations. Supercond. Sci. Technol. 26(10), 105001 (2013)CrossRef Ma, G.T., Rauh, H.: Thermo-electromagnetic properties of a magnetically shielded superconductor strip: theoretical foundations and numerical simulations. Supercond. Sci. Technol. 26(10), 105001 (2013)CrossRef
10.
Zurück zum Zitat Miyamoto, T., Nagashima, K., Sakai, N., Murakami, M.: Measurements of the thermal stresses in large-grain Y–Ba–Cu–O superconductors. Physica C Supercond. 349(1–2), 69–74 (2001)CrossRef Miyamoto, T., Nagashima, K., Sakai, N., Murakami, M.: Measurements of the thermal stresses in large-grain Y–Ba–Cu–O superconductors. Physica C Supercond. 349(1–2), 69–74 (2001)CrossRef
11.
Zurück zum Zitat Gao, Z.W., Zhou, Y.H.: Fracture behaviors induced by thermal stress in an anisotropic half plane superconductor. Phys. Lett. A 372(32), 5261–5264 (2008)CrossRef Gao, Z.W., Zhou, Y.H.: Fracture behaviors induced by thermal stress in an anisotropic half plane superconductor. Phys. Lett. A 372(32), 5261–5264 (2008)CrossRef
12.
Zurück zum Zitat Zhao, Y., Liu, H., Xu, C.: Effect of thermal stress on crack growth in inhomogeneous cylindrical superconductor. J. Therm. Stress. 42, 254–264 (2019)CrossRef Zhao, Y., Liu, H., Xu, C.: Effect of thermal stress on crack growth in inhomogeneous cylindrical superconductor. J. Therm. Stress. 42, 254–264 (2019)CrossRef
13.
Zurück zum Zitat Yang, Y., Chai, X.: Viscous flux flow velocity and stress distribution in the Kim model of a long rectangular slab superconductor. Supercond. Sci. Technol. 31(5), 055005 (2018)CrossRef Yang, Y., Chai, X.: Viscous flux flow velocity and stress distribution in the Kim model of a long rectangular slab superconductor. Supercond. Sci. Technol. 31(5), 055005 (2018)CrossRef
14.
Zurück zum Zitat Yong, H., Zhou, Y.: Crack problem for thin superconducting strip in a perpendicular magnetic field. IEEE Trans. Appl. Supercond. 22(2), 8400905–8400905 (2012)CrossRef Yong, H., Zhou, Y.: Crack problem for thin superconducting strip in a perpendicular magnetic field. IEEE Trans. Appl. Supercond. 22(2), 8400905–8400905 (2012)CrossRef
15.
Zurück zum Zitat Zhou, Y.H., Yong, H.D.: Crack problem for a long rectangular slab of superconductor under an electromagnetic force. Phys. Rev. B 76(9), 094523 (2007)CrossRef Zhou, Y.H., Yong, H.D.: Crack problem for a long rectangular slab of superconductor under an electromagnetic force. Phys. Rev. B 76(9), 094523 (2007)CrossRef
16.
Zurück zum Zitat Zeng, J., Zhou, Y.H., Yong, H.D.: Kim model for stress distribution in a hollow cylindrical superconductor. Physica C Supercond. 469(14), 822–826 (2009)CrossRef Zeng, J., Zhou, Y.H., Yong, H.D.: Kim model for stress distribution in a hollow cylindrical superconductor. Physica C Supercond. 469(14), 822–826 (2009)CrossRef
17.
Zurück zum Zitat Feng, W.J., Gao, S.W., Li, Y.S.: An inner annular crack in a superconducting cylinder and its crack front properties under applied magnetic field. Appl. Math. Model. 40(4), 2529–2540 (2016)MathSciNetCrossRef Feng, W.J., Gao, S.W., Li, Y.S.: An inner annular crack in a superconducting cylinder and its crack front properties under applied magnetic field. Appl. Math. Model. 40(4), 2529–2540 (2016)MathSciNetCrossRef
18.
Zurück zum Zitat Miyazato, T., Hojo, M., Sugano, M., Adachi, T., Inoue, Y., Shikimachi, K., Nagaya, S.: Mode I type delamination fracture toughness of YBCO coated conductor with additional Cu layer. Physica C Supercond. Appl. 471(21–22), 1071–1074 (2011)CrossRef Miyazato, T., Hojo, M., Sugano, M., Adachi, T., Inoue, Y., Shikimachi, K., Nagaya, S.: Mode I type delamination fracture toughness of YBCO coated conductor with additional Cu layer. Physica C Supercond. Appl. 471(21–22), 1071–1074 (2011)CrossRef
19.
Zurück zum Zitat Kesgin, I., Khatri, N., Liu, Y., Delgado, L., Galstyan, E., Selvamanickam, V.: Influence of superconductor film composition on adhesion strength of coated conductors. Supercond. Sci. Technol. 29(1), 015003 (2015)CrossRef Kesgin, I., Khatri, N., Liu, Y., Delgado, L., Galstyan, E., Selvamanickam, V.: Influence of superconductor film composition on adhesion strength of coated conductors. Supercond. Sci. Technol. 29(1), 015003 (2015)CrossRef
20.
Zurück zum Zitat Wang, K.F., Wang, B.L.: A double cantilever beam model for fracture toughness analysis of superconductors. Physica C Supercond. Appl. 558, 38–43 (2019)CrossRef Wang, K.F., Wang, B.L.: A double cantilever beam model for fracture toughness analysis of superconductors. Physica C Supercond. Appl. 558, 38–43 (2019)CrossRef
21.
Zurück zum Zitat Duan, Y., Ta, W., Gao, Y.: Numerical models of delamination behavior in 2G HTS tapes under transverse tension and peel. Physica C Supercond. Appl. 545, 26–37 (2018)CrossRef Duan, Y., Ta, W., Gao, Y.: Numerical models of delamination behavior in 2G HTS tapes under transverse tension and peel. Physica C Supercond. Appl. 545, 26–37 (2018)CrossRef
22.
Zurück zum Zitat Yong, H.D., Jing, Z., Zhou, Y.H.: Crack problem for superconducting strip with finite thickness. Int. J. Solids Struct. 51(3–4), 886–893 (2014)CrossRef Yong, H.D., Jing, Z., Zhou, Y.H.: Crack problem for superconducting strip with finite thickness. Int. J. Solids Struct. 51(3–4), 886–893 (2014)CrossRef
23.
Zurück zum Zitat Yong, H., Zhou, Y.: Interface crack between superconducting film and substrate. J. Appl. Phys. 110(6), 063924 (2011)CrossRef Yong, H., Zhou, Y.: Interface crack between superconducting film and substrate. J. Appl. Phys. 110(6), 063924 (2011)CrossRef
24.
Zurück zum Zitat Feng, W.J., Yan, Z.: Fracture analysis on an arc-shaped interfacial crack between a superconducting cylinder and its functionally graded coating with transport currents. Compos. Struct. 185, 338–347 (2018)CrossRef Feng, W.J., Yan, Z.: Fracture analysis on an arc-shaped interfacial crack between a superconducting cylinder and its functionally graded coating with transport currents. Compos. Struct. 185, 338–347 (2018)CrossRef
25.
Zurück zum Zitat Liu, Q.F., Yan, Z., Feng, W.J.: Fracture behaviors for a functionally graded superconducting cylinder with a cylindrical crack. Mech. Adv. Mater. Struct. 24(2), 176–182 (2017)CrossRef Liu, Q.F., Yan, Z., Feng, W.J.: Fracture behaviors for a functionally graded superconducting cylinder with a cylindrical crack. Mech. Adv. Mater. Struct. 24(2), 176–182 (2017)CrossRef
26.
Zurück zum Zitat Anderson, P.W., Kim, Y.B.: Hard superconductivity: theory of the motion of Abrikosov flux lines. Rev. Modern Phys. 36(1), 39 (1964)CrossRef Anderson, P.W., Kim, Y.B.: Hard superconductivity: theory of the motion of Abrikosov flux lines. Rev. Modern Phys. 36(1), 39 (1964)CrossRef
27.
Zurück zum Zitat Schönborg, N., Hörnfeldt, S.: Model of the temperature dependence of the hysteresis losses in a high-temperature superconductor. Physica C Supercond. 372, 1734–1738 (2002)CrossRef Schönborg, N., Hörnfeldt, S.: Model of the temperature dependence of the hysteresis losses in a high-temperature superconductor. Physica C Supercond. 372, 1734–1738 (2002)CrossRef
28.
Zurück zum Zitat Wang, Y.Q., Wang, B.L., Wang, K.F., Zheng, L.: Effect of temperature-dependent critical current density on the fracture behavior for a rectangular superconducting slab with a center crack. Physica C Supercond. Appl. 556, 36–42 (2019)CrossRef Wang, Y.Q., Wang, B.L., Wang, K.F., Zheng, L.: Effect of temperature-dependent critical current density on the fracture behavior for a rectangular superconducting slab with a center crack. Physica C Supercond. Appl. 556, 36–42 (2019)CrossRef
29.
Zurück zum Zitat Liu, L., Kardomateas, G.A.: Thermal stress intensity factors for a crack in an anisotropic half plane. Int. J. Solids Struct. 42(18–19), 5208–5223 (2005)CrossRef Liu, L., Kardomateas, G.A.: Thermal stress intensity factors for a crack in an anisotropic half plane. Int. J. Solids Struct. 42(18–19), 5208–5223 (2005)CrossRef
30.
Zurück zum Zitat Wang, B.L., Li, J.E.: Hyperbolic heat conduction and associated transient thermal fracture for a piezoelectric material layer. Int. J. Solids Struct. 50(9), 1415–1424 (2013)CrossRef Wang, B.L., Li, J.E.: Hyperbolic heat conduction and associated transient thermal fracture for a piezoelectric material layer. Int. J. Solids Struct. 50(9), 1415–1424 (2013)CrossRef
31.
Zurück zum Zitat Kim, Y.B., Hempstead, C.F., Strnad, A.R.: Critical persistent currents in hard superconductors. Phys. Rev. Lett. 9(7), 306 (1962)CrossRef Kim, Y.B., Hempstead, C.F., Strnad, A.R.: Critical persistent currents in hard superconductors. Phys. Rev. Lett. 9(7), 306 (1962)CrossRef
32.
Zurück zum Zitat Yong, H.D., Zhou, Y.H., Zeng, J.: Crack problem in a long cylindrical superconductor. J. Appl. Phys. 104, 448 (2008) Yong, H.D., Zhou, Y.H., Zeng, J.: Crack problem in a long cylindrical superconductor. J. Appl. Phys. 104, 448 (2008)
33.
Zurück zum Zitat Ozisik, M.N., Tzou, D.Y.: On the wave theory in heat conduction. Heat Transf. Trans. ASME 116, 526–535 (1994)CrossRef Ozisik, M.N., Tzou, D.Y.: On the wave theory in heat conduction. Heat Transf. Trans. ASME 116, 526–535 (1994)CrossRef
34.
Zurück zum Zitat Berger, K., Lévêque, J., Netter, D., Douine, B., Rezzoug, A.: Influence of temperature and/or field dependences of the E-J power law on trapped magnetic field in bulk YBaCuO. IEEE Trans. Appl. Supercond. 17(2), 3028–3031 (2007)CrossRef Berger, K., Lévêque, J., Netter, D., Douine, B., Rezzoug, A.: Influence of temperature and/or field dependences of the E-J power law on trapped magnetic field in bulk YBaCuO. IEEE Trans. Appl. Supercond. 17(2), 3028–3031 (2007)CrossRef
Metadaten
Titel
Fracture analysis of superconducting composites with a sandwich structure based on electromagnetic–thermal coupled model
verfasst von
Y. Q. Wang
K. F. Wang
B. L. Wang
L. Zheng
C. W. Zhang
Publikationsdatum
26.09.2019
Verlag
Springer Vienna
Erschienen in
Acta Mechanica / Ausgabe 12/2019
Print ISSN: 0001-5970
Elektronische ISSN: 1619-6937
DOI
https://doi.org/10.1007/s00707-019-02510-y

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