• Acta Physica Sinica
  • Vol. 68, Issue 21, 217501-1 (2019)
Guo-Qiang Liu1, Ya-Jiao Ke2, Kong-Bin Zhang1, Xiong He1, Feng Luo1, Bin He1, and Zhi-Gang Sun1、*
Author Affiliations
  • 1State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, China
  • 2College of Science, Wuhan University of Technology, Wuhan 430070, China
  • show less
    DOI: 10.7498/aps.68.20191139 Cite this Article
    Guo-Qiang Liu, Ya-Jiao Ke, Kong-Bin Zhang, Xiong He, Feng Luo, Bin He, Zhi-Gang Sun. Research progress of physical model of full-solid-state magnetic refrigeration system[J]. Acta Physica Sinica, 2019, 68(21): 217501-1 Copy Citation Text show less
    References

    [1] Franco V, Blázquez J S, Ipus J J, Law J Y, Moreno-Ramirez L M, Conde A[J]. Prog. Mater. Sci., 93, 112(2018).

    [2] Osmann S, Mohamed B[J]. Int. J. Refrig., 37, 8(2014).

    [3] Warburg E[J]. Ann. Phys., 13, 141(1881).

    [4] Giauque W F, MacDougall D P[J]. J. Am. Chem. Soc., 57, 1175(1935).

    [5] Brown G V[J]. J. Appl. Phys., 47, 3673(1976).

    [6] Steyert W A[J]. J. Appl. Phys., 49, 1216(1978).

    [7] Barclay J A[J]. J. Appl. Phys., 53, 2887(1982).

    [8] Barclay J A, Steyert W A[J]. U. S. Patent 4 332 135(1982).

    [9] Chen F C, Murphy R W, Mei V C[J]. J. Eng. Gas. Turb. Powe., 114, 715(1992).

    [10] Zimm C, Jastrab A, Sternberg A, Pecharsky V, Gschneidner Jr K, Osborne M, Anderson I[J]. Adv. Cryog. Eng., 43, 1759(1998).

    [11] Lawton Jr M L, Zimm C B, Jastrab A G[J]. U. S. Patent 5 934 078(1999).

    [12] Yu B F, Gao Q, Zhang B, Meng X Z, Chen Z[J]. Int. J. Refrig., 26, 622(2003).

    [13] Gschneidner K A J, Pecharsky V K[J]. Int. J. Refrig., 31, 945(2008).

    [14] Yu B F, Liu W, Egolf P W, Kitanovski A[J]. Int. J. Refrig., 33, 1029(2010).

    [15] Gomez J R, Garcia R F, Carril J C, Gomez M R[J]. Renew. Sust. Energ. Rev., 17, 74(2013).

    [16] Jacobs S, Auringer J, Boeder A, Chell J, Komorowski L, Leonard J, Russek S, Zimm C[J]. Int. J. Refrig., 37, 84(2014).

    [17] Li Z X, Li K, Shen J, Dai W, Jia J C, Guo X H, Gao X Q, Gong M Q[J]. Cryogenics, 1, 13(2017).

    [18] Teyber R, Holladay J, Meinhardt K, Polikarpov E, Thomsen E, Cuid J, Rowee A, Barclay J[J]. Appl. Energ., 236, 426(2019).

    [19] Kitanovski A, Egolf P W[J]. Int. J. Refrig., 33, 449(2010).

    [20] Aliev A M, Batdalov A B, Khanov L N, Koledov V V, Shavrov V G, Tereshina I S, Taskaev S V[J]. J. Alloy. Compd., 676, 601(2016).

    [21] Tomc U, Tušek J, Kitanovski A, Poredoš A[J]. Appl. Therm. Eng., 58, 1(2013).

    [22] Kitanovski A, Plaznik U, Tomc U, Poredoš A[J]. Int. J. Refrig., 57, 288(2015).

    [23] Monfared B[J]. Int. J. Refrig., 74, 324(2017).

    [24] Wu J H, Lu B W, Liu C P, He J[J]. Appl. Therm. Eng., 137, 836(2018).

    [25] Kitanovski A, Tušek J, Tomc U, Plaznik U, Ožbolt M, Poredoš A[J]. Magnetocaloric Energy Conversion (vol.preface)(2015).

    [26] Tomc U, Tušek J, Kitanovski A, Poredoš A[J]. Int. J. Refrig., 37, 185(2014).

    [27] Egolf P W, Gravier L, Francfort T, Pawlowski A G, Courret G, Croci M[J]. Int. J. Refrig., 37, 176(2014).

    [28] de Vries W, [J]. Appl. Therm. Eng., 111, 377(2017).

    [29] Tasaki Y, Takahashi H, Yasuda Y, Okamura T, Ito K[J]. Fifth ⅡF-ⅡR International Conference on Magnetic Refrigeration at Room Temperature, Thermag V, 445(2012).

    [30] Olsen U L, Bahl C R H, Engelbrecht K, Nielsen K K, Tasaki Y, Takahashi H[J]. Int. J. Refrig., 37, 194(2014).

    [31] Lu B W, Wu J H, He J, Huang J H[J]. Int. J. Refrig., 98, 42(2019).

    [32] Silva D J, BordaloB D, Pereira A M, Ventura J, Araújo J P[J]. Appl. Ener., 93, 570(2012).

    [33] Silva D J, VenturaJ , Araújo J P, Pereira A M[J]. Appl. Ener., 113, 1149(2014).

    [34] Silva D J, Bordalo B D, Pereira A M, Ventura J, , Araújo J P[J]. Appl. Therm. Eng., 99, 514(2016).

    [35] Silva D J, Ventura J, Amaral J S, Amaral V S[J]. Int. J. Energy. Res., 43, 742(2019).

    [36] Zhang M, Momen A M, Abdelaziz O[J]. 16th International Refrigeration and Air Conditioning Conference at Purdue, 1758(2016).

    [37] Utaka Y, Hua K, Chen Z H, Zhao Y J[J]. Appl. Therm. Eng., 155, 196(2019).

    [38] Wehmeyer G, Yabuki T, Monachon C, Wu J Q, Dames C[J]. Appl. Phys. Rev., 4, 041304(2017).

    [39] Salamon M B, Jaime M[J]. Rev. Mod. Phys., 73, 583(2001).

    [40] Jeong T, Moneck M T, Zhu J G[J]. IEEsran. Magn., 48, 3031(2012).

    [41] Kimling J, Nielsch K, Rott K, Reiss G[J]. Phys. Rev. B, 87, 134406(2013).

    [42] Aprea C, Maiorino A[J]. Appl. Ener., 87, 2690(2010).

    [43] Liu M, Yu B F[J]. Int. J. Refrig., 34, 617(2011).

    [44] Vuarnoz A, Kawanami T[J]. Appl. Therm. Eng., 37, 388(2012).

    [45] Lozano J A, Engelbrecht K, Bahl C R H, Nielsen K K, Barbosa J R, Prata A T, Pryds N[J]. Int. J. Refrig., 37, 92(2014).

    [46] Eriksen D, Engelbrecht K, Bahl C R H[J]. Int. J. Refrig., 58, 14(2015).

    [47] Lionte S, Vasile C, Siroux M[J]. Appl. Therm. Eng., 75, 871(2015).

    [48] Lozano J A, Capovilla M S, Trevizoli P V, Engelbrecht K, Bahl C R H, Barbosa J R[J]. Int. J. Refrig., 68, 187(2016).

    [49] Lei T, Engelbrecht K, Nielsen K K, Christian T, Veje C T[J]. Appl. Therm. Eng., 111, 1232(2017).

    [50] Aprea C, Greco A, Maiorino A, Masselli C[J]. Appl. Therm. Eng., 91, 767(2015).

    [51] Govindappa P, Trevizoli P V, Campbel O, Niknia , I , Christiaanse T V, Teyber R, Misra S, Schwind M A, van Asten D, Zhang L[J]. J. Phys. D: Appl. Phys., 50, 315001(2017).

    [52] Navickaite K, Bez H N, Lei T, Barcza A, Vieyra H, Bahl C, Engelbrecht K[J]. Int. J. Refrig., 86, 322(2018).

    [53] Pecharsky V K, Gschneidner J K A[J]. Phys. Rev. Lett., 78, 4494(1997).

    [54] de Oliveira N A, von Ranke P J[J]. Phys. Rep., 489, 89(2010).

    [55] Shen B G, Sun J R, Hu F X, Zhang H W, Cheng Z H[J]. Adv. Mater., 21, 4545(2009).

    [56] Tusek J, Kitanovski A, Tomc U, Favero C, Poredoš A[J]. Int. J. Refrig., 37, 117(2014).

    [57] Wang Y X, Zhang H, Liu E K, Zhong X C, Tao K, Wu M L, Xing C F, Xiao Y N, Liu J, Long Y[J]. Adv. Electron. Mater., 4, 1700636(2018).

    [58] Balli M, Jandl S, Fournier P, Kedous-Lebouc A[J]. Appl. Phys. Rev., 4, 021305(2017).

    [59] Smith A, Bahl C R H, Bjørk R, Engelbrecht K, Nielsen K K, Pryds N[J]. Adv. Energy. Mater., 2, 1288(2012).

    [60] Zhao W Y, Liu Z Y, Sun Z G, Zhang Q J, Wei P, Mu X, Zhou H Y, Li C C, Ma S F, He D Q, Ji P X, Zhu W T, Nie X L, Su X L, Tang X F, Shen B G, Dong X L, Yang J H, Liu Y, Shi J[J]. Nature, 549, 247(2017).

    [61] Li H B, Jiang Q, Xu X D, Lu D W[J]. Cryogenics, 5, 51(2016).

    [62] Blumenthal P, Raatz A[J]. Europhys. Lett., 115, 17004(2016).

    [63] Hess T, Maier L M, Corhan P, Schäfer-Welsen O, Wöllenstein J, Bartholomé K[J]. Int. J. Refrig., 103, 215(2019).

    [64] Qiao K M, Hu F X, Liu Y, Li J, Kuang H, Zhang H R, Liang W H, Wang J, Sun J R, Shen B G[J]. Nano Energy, 59, 285(2019).

    Guo-Qiang Liu, Ya-Jiao Ke, Kong-Bin Zhang, Xiong He, Feng Luo, Bin He, Zhi-Gang Sun. Research progress of physical model of full-solid-state magnetic refrigeration system[J]. Acta Physica Sinica, 2019, 68(21): 217501-1
    Download Citation