Zhang, Q.;                     Zhu, K.;                     Singaravelu, A.S.S.;                     Sun, W.;                     Jing, T.;                     Chawla, N.    
        Three-Dimensional (3D) Microstructure-Based Modeling of a Thermally-Aged Cast Duplex Stainless Steel Based on X-ray Microtomography, Nanoindentation and Micropillar Compression. Metals 2019, 9, 688.
    https://doi.org/10.3390/met9060688
    AMA Style
    
                                Zhang Q,                                 Zhu K,                                 Singaravelu ASS,                                 Sun W,                                 Jing T,                                 Chawla N.        
                Three-Dimensional (3D) Microstructure-Based Modeling of a Thermally-Aged Cast Duplex Stainless Steel Based on X-ray Microtomography, Nanoindentation and Micropillar Compression. Metals. 2019; 9(6):688.
        https://doi.org/10.3390/met9060688
    
    Chicago/Turabian Style
    
                                Zhang, Qingdong,                                 Kai Zhu,                                 Arun Sundar S. Singaravelu,                                 Weizhao Sun,                                 Tao Jing,                                 and Nikhilesh Chawla.        
                2019. "Three-Dimensional (3D) Microstructure-Based Modeling of a Thermally-Aged Cast Duplex Stainless Steel Based on X-ray Microtomography, Nanoindentation and Micropillar Compression" Metals 9, no. 6: 688.
        https://doi.org/10.3390/met9060688
    
    APA Style
    
                                Zhang, Q.,                                 Zhu, K.,                                 Singaravelu, A. S. S.,                                 Sun, W.,                                 Jing, T.,                                 & Chawla, N.        
        
        (2019). Three-Dimensional (3D) Microstructure-Based Modeling of a Thermally-Aged Cast Duplex Stainless Steel Based on X-ray Microtomography, Nanoindentation and Micropillar Compression. Metals, 9(6), 688.
        https://doi.org/10.3390/met9060688