J. Mater. Sci. Technol. ›› 2026, Vol. 254: 81-93.DOI: 10.1016/j.jmst.2025.08.006
• Research Article • Previous Articles Next Articles
Fang Lina, Jie Wana,*, Deyu Yanga, Yubin Keb, Haiou Yanga, Xin Lina, Yuzeng Chena,c,d,*
Received:2025-04-29
Revised:2025-06-16
Accepted:2025-08-09
Online:2026-05-08
Contact:
*E-mail addresses: Fang Lin, Jie Wan, Deyu Yang, Yubin Ke, Haiou Yang, Xin Lin, Yuzeng Chen. Achieving high strength and low thermal expansion coefficient in additively manufactured Invar alloys by leveraging the effect of alloying elements[J]. J. Mater. Sci. Technol., 2026, 254: 81-93.
| [1] P. Entel, E. Hoffmann, P. Mohn, K. Schwarz, V.L. Moruzzi, Condens Matter 47 (1993) 8706-8720. [2] A. Sahoo, V.R. Medicherla, Mater. Today: Proc 43 (2021) 2242-2244. [3] G. Kim, Curr. Appl. Phys. 38 (2022) 76-80. [4] W.S. Park, M.S. Chun, M.S. Han, M.H. Kim, J.M. Lee, Mater. Sci. Eng. A 528 (2011) 5790-5803. [5] V.I. Chermenskii, I.V. Konchakovskii, A.R. Ushakov, M.D. Kharchuk, Met. Sci. Heat Treat. 61 (2020) 563-568. [6] Y.C. Xu, C. Hu, L. Liu, J. Wang, W.F. Rao, J.W. Morris, Acta Mater. 171 (2019) 240-252. [7] M. Yakout, A. Cadamuro, M.A. Elbestawi, S.C. Veldhuis, Int. J. Adv. Manuf.Tech- nol. 92 (2017) 2081-2098. [8] A. Vinogradov, S. Hashimoto, V.I. Kopylov, Mater. Sci. Eng. A 355 (2003) 277-285. [9] J.F. Zhang, Y.F. Tu, J. Xu, J.S. Zhang, J.L. Zhang, J. Iron Steel Res. Int. 15 (2008) 75-78. [10] T.K. Ha, K.D. Lee, J.H. Song, H.T. Jeong, Key Eng. Mater.345-346 (2007) 109-112. [11] T. Morikawa, T. Moronaga, K. Higashida, Mater. Sci.Forum 503-504 (2006) 895-900. [12] K. Nakama, K. Sugita, Y. Shirai, Microstruct. Anal. 2 (2013) 383-387. [13] T.K. Ha, S.H. Min, Mater. Sci. Forum 804 (2014) 293-296. [14] H. Liu, Z. Sun, G. Wang, X. Sun, J. Li, F. Xue, H. Peng, Y. Zhang, Mater. Sci. Eng. A 654 (2016) 107-112. [15] Q.S. Sui, J.X. Li, Y.Z. Zhai, Z.H. Sun, Y.F. Wu, H.T. Zhao, J.H. Feng, M.C. Sun, C. L. Yang, B.A. Chen, H.F. Peng, Materialia 8 (2019) 100474. [16] C. Wang, S.Q. Yuan, C.G. Yao, Z.P. Feng, Adv. Mater. Res.690-693 (2013) 290-293. [17] A .A. Gulyaev, E.L. Svistunova, Scr. Metall. Mater. 33 (1995) 1497-1503. [18] K. Sridharan, F.J. Worzala, R.A. Dodd, Mater. Charact. 29 (1992) 321-327. [19] Q. Wang, Y. Dong, Z. Jiang, T. Zou, Y. Liu, Y. Wu, H. Qing, Mater. Charact. 207 (2024) 113584. [20] A. Arora, S. Mula, Mater. Sci. Eng. A 856 (2022) 143972. [21] C. Qiu, Y. Liu, H. Liu, Addit. Manuf. 48 (2021) 102457. [22] Z. Rao, D. Ponge, F. Körmann, Y. Ikeda, O. Schneeweiss, M. Friák, J. Neugebauer, D. Raabe, Z. Li, Intermetallics 111 (2019) 106520. [23] X. Rao, Y. Ru, F. Guo, Y. Ren, L. Cui, K. Yu, Scr. Mater. 220 (2022) 114942. [24] Z. Sun, X. Tan, S.B. Tor, W.Y. Yeong, Mater. Des. 104 (2016) 197-204. [25] Y. Han, Y. Zhang, H. Jing, D. Lin, L. Zhao, L. Xu, P. Xin, Addit. Manuf. 34 (2020) 101381. [26] G. He, X. Peng, H. Zhou, G. Huang, Y. Xie, Y. He, H. Liu, K. Huang, Mater. 16 (2023) 4433. [27] M. Onoue, G. Trimarchi, A.J. Freeman, V. Popescu, M.R. Matsen, J. Appl. Phys. 117 (2015) 043912. [28] Q. Yang, K. Wei, Z. Qu, X. Yang, D. Fang, Addit. Manuf. 83 (2024) 104072. [29] G. Huang, G. He, X. Gong, Y. He, Y. Liu, K. Huang, J. Mater. Res.Technol. 30 (2024) 1241-1268. [30] C. Qiu, N.J. Adkins, M.M. Attallah, Acta Mater. 103 (2016) 382-395. [31] M. Yakout, M.A. Elbestawi, S.C. Veldhuis, J. Mater.Process Technol. 266 (2019) 397-420. [32] K. Wei, Q. Yang, B. Ling, X. Yang, H. Xie, Z. Qu, D. Fang, Mater. Sci. Eng. A 772 (2020) 138799. [33] G. Jiao, X. Fang, X. Chen, N. Xi, M. Zhang, Y. Liu, H. Wu, K. Huang, J. Mater.Process Technol. 317 (2023) 117994. [34] Q. Yang, K. Wei, X. Yang, H. Xie, Z. Qu, D. Fang, Mater. Charact. 166 (2020) 110409. [35] H. Asgari, M. Salarian, H. Ma, A. Olubamiji, M. Vlasea, Mater. Des. 160 (2018) 895-905. [36] N.J. Harrison, I. Todd, K. Mumtaz, J. Mater. Sci. 52 (2017) 10517-10525. [37] G. Huang, G. He, Y. Liu, K. Huang, Addit. Manuf. 82 (2024) 104025. [38] B. He, C. Bi, X. Li, W. Wang, G. Yang, Int. J. Mater. Form. 16 (2022) 7. [39] J. Wang, Z. Yang, Z. Ma, H. Duan, J. Zhang, D. Tao, J. Li, Mater. Res. Express. 8 (2021) 036503. [40] C. Tan, K. Zhou, M. Kuang, W. Ma, T. Kuang, Sci. Technol. Adv. Mater. 19 (2018) 746-758. [41] Z. Qu, Z. Zhang, R. Liu, L. Xu, Y. Zhang, X. Li, Z. Zhao, Q. Duan, S. Wang, S. Li, Y. Ma, X. Shao, R. Yang, J. Eckert, R.O. Ritchie, Z. Zhang, Nature 626 (2024) 999-1004. [42] Q. Yang, S. Yang, S. Ma, J. Zhou, Y. Zhou, R. Huang, K. Wei, Z. Qu, X. Yang, J. Mater. Sci.Technol. 175 (2024) 29-46. [43] T. Voisin, J.-B. Forien, A.Perron, S. Aubry, N. Bertin, A. Samanta, A. Baker, Y. M. Wang, Acta Mater. 203 (2021) 116476. [44] L. Liu, Q. Ding, Y. Zhong, J. Zou, J. Wu, Y.L. Chiu, J. Li, Z. Zhang, Q. Yu, Z. Shen, Mater. Today 21 (2018) 354-361. [45] S. Chen, G. Ma, G. Wu, A. Godfrey, T. Huang, X. Huang, Mater. Sci. Eng. A 832 (2022) 142434. [46] T. Simson, A. Emmel, A. Dwars, J. Böhm, Addit. Manuf. 17 (2017) 183-189. [47] K.M. Bertsch, G.M. Bellefon, B. Kuehl, D.J. Thoma, Acta Mater. 199 (2020) 19-33. [48] H. Zhang, H. Peng, P.A.J.Bagot, Y. Wang, D.A. Venero, S. Robertson, G.M. Fallah, H. Guo, M.P. Moody, B. Chen, Acta Mater. 270 (2024) 119834. [49] T. Liu, G.M. Hu, Y.J. Wang, J.R. Zeng, Q. Dong, F.J. Bian, Z.P. Cao, N. Meng, J. Zhang, B.D. Sun, Trans. Nonferrous Met. Soc. China 33 (2023) 1305-1317. [50] A. Deschamps, F.D. Geuser, J. Appl. Cryst. 44 (2011) 343-352. [51] X. Wu, B. Wang, C. Rehm, H. He, M. Naeem, S. Lan, Z. Wu, X.L. Wang, Acta Mater. 222 (2022) 117446. [52] C. Ioannidou, A.N. López, A. Rijkenberg, R.M. Dalgliesh, S. Koelling, C. Pappas, J. Sietsma, A.V. Well, S.E. Offerman, Acta Mater. 201 (2020) 217-230. [53] Q. Wang, Y. Dong, Z. Jiang, J. Huang, Mater. Des. 226 (2023) 111644. [54] S. Rajasekhara, P.J. Ferreira, L.P. Karjalainen, A. Kyröläinen, Metall. Mater. Trans. A 38 (2007) 1202-1210. [55] Y.Z. Li, S.L. Zhao, S.H. He, C.P. Huang, M.X. Huang, Int. J. Plast. 155 (2022) 103334. [56] B.I. Rodgers, P.B. Prangnell, Acta Mater. 108 (2016) 55-67. [57] Y. Li, Y. Lu, W. Li, M. Khedr, H. Liu, X. Jin, Acta Mater. 158 (2018) 79-94. [58] T. Ungár, Mater. Sci. Eng.A 309-310 (2001) 14-22. [59] Y.Q. Wang, S.J. Clark, V. Janik, R.K. Heenan, D.A. Venero, K. Yan, D.G.McCartney, S.Sridhar, P.D. Lee, Acta Mater. 145 (2018) 84-96. [60] R. Zhao, Y. Zhao, M. Qin, Y. Jia, K. Feng, Z. Li, U. Ramamurty, R. Xie, Addit. Manuf. 92 (2024) 104404. [61] C. Chen, Y. Xie, L. Liu, R. Zhao, X. Jin, S. Li, R. Huang, J. Wang, H. Liao, Z. Ren, J. Mater. Sci.Technol. 72 (2021) 39-51. [62] Y. Yao, Q. Zhao, C. Zhang, J. He, Y. Wu, G. Meng, C. Chen, Z. Sun, H. Peng, J. Mater. Res.Technol. 19 (2022) 3046-3058. [63] I. Rishmawi, A. Rogalsky, M. Vlasea, M. Salarian, S. Bakhshivash, J. Mater. Eng.Perform. 31 (2022) 9727-9739. [64] H. Tan, Y. Wang, G. Wang, F. Zhang, W. Fan, Z. Feng, X. Lin, J. Mater. Res.Tech- nol. 9 (2020) 5827-5839. |
| [1] | Zhanxuan Wang, Yongkang Zhou, Heling Zheng, Mingyang Wang, Xintian Li, Xiancheng Li, Zhengkun Li, Zhonghua Du, Lizhi Xu, Zhengwang Zhu. Mechanical response and deformation mechanism of Zr-Ti-Nb-Ta-Al refractory high-entropy alloy under the synergistic effects of temperature and strain rate [J]. J. Mater. Sci. Technol., 2026, 240(0): 65-79. |
| [2] | Yitong Zou, Langlang Huo, Bing Liu, Mengdong Ma, Song Zhao, Guangqian Li, Zitai Liang, Yuqing Chang, Baozhong Li, Hao Ding, Ke Tong, Lei Sun, Zewen Zhuge, Hang Zhou, Zhisheng Zhao, Yongjun Tian. Disordered graphitic carbon/nanodiamond composites: A material of exceptional strength and electrical conductivity [J]. J. Mater. Sci. Technol., 2026, 240(0): 80-86. |
| [3] | Yi Zhou, Guangjie Huang, Shiwei Pan, Yunchang Xin, Xinde Huang, Yu Cao. Revisiting the homogenization process in 2024 Al alloy: Role of temperatures on phase transformation and mechanical performance [J]. J. Mater. Sci. Technol., 2026, 240(0): 129-143. |
| [4] | Jietao Feng, Canfeng Fang, Rong Wang, Yuanjiang Tu, Xiao Feng, Wu Gao, Min Liu, Yingmin Wang. Modification of detrimental π-Fe phase in Al-7Si-0.6Mg alloy [J]. J. Mater. Sci. Technol., 2026, 240(0): 313-322. |
| [5] | Hongyu Chen, Xiaofeng Yang, Dongdong Gu, Yang Liu, Shengze Yang, Xiyu Chen, Konrad Kosiba, Yufei Chen, Junhang Du, Konda Gokuldoss Prashanth, Yonggang Wang, Tiwen Lu. Unusual deformation substructure and strain hardening in an additively manufactured CoCrFeMnNi high entropy alloy under high-velocity impact loading [J]. J. Mater. Sci. Technol., 2026, 241(0): 35-51. |
| [6] | Guidong Chen, Fei Liu, Yuanbiao Tan, Hao Fu, Wei Shi, Siyuan Wei, Song Xiang, Upadrasta Ramamurty. Heterogeneous grains and coherent nanoprecipitates imparting ultrahigh strength-ductility synergy in multi-principal element alloys at 77 K [J]. J. Mater. Sci. Technol., 2026, 252(0): 163-179. |
| [7] | Kai Yang, Zexin Liu, Shuaiqi Chang, Li Fang, Jian Huang, Yue Yue, Zhiqiang Wang, Dongdong Chen, Guoqing Xin. Stretching ink-induced three-dimensional printing of biomimetic hierarchical nanocomposites with high toughness [J]. J. Mater. Sci. Technol., 2026, 252(0): 180-189. |
| [8] | Cui Zhou, Luchao Sun, Tiefeng Du, Jie Li, Jiemin Wang, Jialin Li, Jingyang Wang. Microstructure, crystallographic texture and mechanical properties of directionally solidified high-entropy (Y0.2Gd0.2Ho0.2Er0.2Yb0.2)AG/Al2O3 eutectic oxides: Insights of growth rate control [J]. J. Mater. Sci. Technol., 2026, 252(0): 232-244. |
| [9] | Ziwei Liu, Zhen Tan, Dingyong He, Yunfei Xue, Wei Shao, Zheng Zhou, Haihua Yao, Lijia Chen, Ying Yang, Yingkai Shao, Li Cui. High-cycle fatigue behaviors of Al-Cr-Fe-Ni-V high-entropy alloy prepared by laser powder bed fusion: Roles of dislocation cell substructure and multi-precipitates [J]. J. Mater. Sci. Technol., 2026, 253(0): 25-38. |
| [10] | Yanzhi Cai, Yalong Chai, Laifei Cheng, Hongfeng Yin, Xue Huang, Haiming Yu, Shaoxiong Ren, Mingxing Chen, Zixuan Yu, Mingtao Qiao. Directionally pressurized filtrated nitrogen-doped CNTs/RGO/carbon hollow sphere/CoNi sandwich buckypaper with superflexible, high-strength mechanical, and excellent microwave-absorbing properties [J]. J. Mater. Sci. Technol., 2026, 253(0): 146-158. |
| [11] | Xiaoye Zhao, Hanwen Yang, Emanuel Bruno Ferreira Dos Santos, Paulo Dangelo Costa Assunção, Muhammad Shehryar Khan, Adrian Gerlich, Y. Norman Zhou. Influence of galvannealed zinc coating on refining microstructure and enhancing mechanical performance of laser brazed DP600 and DP980 steels [J]. J. Mater. Sci. Technol., 2026, 254(0): 12-28. |
| [12] | Jiawen Zhu, Yejia Lin, Chuanqiang Li, Naiguang Wang, Binqing Shi, Zhengrong Zhang. Predicting mechanical properties of as-rolled eutectic Mg-8Li alloy via machine learning [J]. J. Mater. Sci. Technol., 2026, 254(0): 45-60. |
| [13] | Cleiton C. Silva, Rafaella S. Silva, Émerson M. Miná, Marcelo F. Motta, Hélio C. Miranda, Giovani Dalpiaz, Ricardo R. Marinho, Marcelo T.P. Paes, Alisson Kwiatkowski da Silva, Irina Wossack, Christian H. Liebscher. Heterogeneously structured Ni-based alloy obtained by wire-arc additive manufacturing overcomes the strength-ductility trade-off [J]. J. Mater. Sci. Technol., 2026, 254(0): 168-179. |
| [14] | Moxi Yele, Gegen Sarula, Jie Yang, Long Yang, Hao Zhang, Longfu Chen, Xiangmei Zhang, Jiahui Wang, Tianyu Wang, Chengzhong Jin, Benliang Liang, Luting Yan. Integrated structural-functional MXene-GNs/ANF flexible composite film with enhanced thermal conductivity and electromagnetic interference shielding performance [J]. J. Mater. Sci. Technol., 2026, 241(0): 200-210. |
| [15] | Yue Li, Liuyong Wang, Haoyue Wu, Feng Ding, Min Lei, Jin Yang, J.P. Oliveira, Ming Yan, Wei Guo, Yulong Li. High strength, low modulus, and ductile metastable beta Ti-Nb-Zr-Fe alloys by laser powder bed fusion in-situ alloying [J]. J. Mater. Sci. Technol., 2026, 241(0): 270-283. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||
WeChat
