{"id":7331,"date":"2023-07-29T16:05:09","date_gmt":"2023-07-29T21:05:09","guid":{"rendered":"https:\/\/www.engineering.iastate.edu\/people\/?post_type=profile&#038;p=7331"},"modified":"2026-05-20T20:03:08","modified_gmt":"2026-05-21T01:03:08","slug":"binl","status":"publish","type":"profile","link":"https:\/\/www.engineering.iastate.edu\/people\/profile\/binl\/","title":{"rendered":"Li, Bin"},"author":3631,"template":"","affiliation":[4],"department":[1150,11],"group":[],"interest":[],"class_list":["post-7331","profile","type-profile","status-publish","hentry","affiliation-faculty","department-imse-faculty","department-imse"],"firstname":"Bin","key_research_area":["Advanced Materials & Manufacturing"],"netid":"binl","isu_title":"Associate Professor","email":"binl@iastate.edu","external_link":"","hide_isu_title":"1","nickname":"","info":"<a href=\"https:\/\/www.engineering.iastate.edu\/people\/files\/2024\/08\/LiBin_CV_2023-24.pdf\"><strong>Curriculum Vitae (PDF)<\/strong><\/a>\r\n\r\n<strong>Education <\/strong> Ph. D.\u00a0 Metallurgy and Materials Engineering, University of Connecticut, 1999-2004. M.S. Metallurgy and Materials Engineering, University of Connecticut, 1998-1999. M.S. Metallurgy, Institute of Metal Research, Chinese Academy of Sciences, 1993-1996. B.S. Mater Sci Eng, Huazhong Univ. of Sci. and Technol., China, 1986-1990.\r\n\r\n<strong>Projects<\/strong>\r\n<ol>\r\n \t<li>NSF, CMMI-2032483. PI. \u201cUnderstanding Dislocation Motion and Plasticity via First Principles Simulations Towards Manufacturing of High Ductility Magnesium Alloys\u201d. $469,200. Co-PI: Qi An. 09\/01\/2020 \u2013 08\/31\/2023.<\/li>\r\n \t<li>NSF, CMMI-2016263. PI. \u201cResolving Twin-Slip Interaction Mechanisms in Hexagonal Close-Packed Metals\u201d. $268,696. 08\/01\/2020 \u2013 07\/31\/2023.<\/li>\r\n \t<li>NSF, CMMI-1635088. PI. \u201cMEP \/ Design of Twinning Induced Plasticity (TWIP) Magnesium Alloys.\u201d $467,544. 08\/01\/2016 \u2013 07\/31\/2019.<\/li>\r\n \t<li>NSF, CMMI-1506944. Lead PI. \u201cCDS&amp;E \/ Collaborative Research: Fundamental Investigation of Zinc-Coating of Advanced High Strength Steels Directed by Multiscale Modeling and Experiments.\u201d $900,000. Other PIs: Mark Horstemeyer (Mississippi State University), Mohsen Zaeem (Missouri Institute of Science and Technology). 09\/01\/2015 \u2013 08\/31\/2018.<\/li>\r\n \t<li>NSF, CMMI-1726897. \u201cMRI: Acquisition of Focused Ion Beam-Scanning Electron Microscope for Nanofabrication and Characterization.\u201d $640,062. UNR cost share $274,312. PI: Dhanesh Chandra. Co-PI: Bin Li, Sid Pathak, Andrew Geraci, and Mario Alpuche. 08\/01\/2017 \u2013 07\/31\/2020.<\/li>\r\n \t<li>DOE, DE-NE0009022. \u201cInfrastructure Support for Nanoscale in-situ Transmission Electron Microscopy Examination of Structure, Composition &amp; Defects Evolution\u201d. $433,228. PI: Yufeng Zheng. Co-PI: Bin Li. 10\/01\/2020 \u2013 09\/30\/2023.<\/li>\r\n \t<li>International Zinc Association, \u201cSite-Specific Analytical Transmission Electron Microscopy Study on Inhibition Layer Formation and Galvanneal Growth on Advanced High Strength Steels\u201d. PI. $125,000. 2011-2014.<\/li>\r\n \t<li>Army Research Office (ARO), \u201cToward New Magnesium Alloy Design - Theoretical and Experimental Studies of the Influence of Alloying Elements on Deformation Twinning\u201d. Short Term Innovative Research (STIR). PI. $47,752. 2011-2012.<\/li>\r\n \t<li>US Army Engineering Research and Development Center (ERDC), \u201cMulti-Scale Material Modeling of Lightweight Metals under High Rate Loading Conditions\u201d. $197,500. PI: Mark Horstemeyer. Co-PI: Bin Li, Hongjoo Rhee. 2011-2014.<\/li>\r\n<\/ol>","middle_name":"","isu_office":"Black Engr $ 2529 Union Dr # Ames, IA 500112030","uid":[],"hide_isu_office":"1","lastname":"Li","publications":"<p><strong>Journal Publications:<\/strong><\/p><ol><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Wang Y, Li B*, Liao Y. A new mechanism for nucleation of {11-22}<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%; font-family: 'MS Gothic';\">\u3008<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">11-2-3<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%; font-family: 'MS Gothic';\">\u3009<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">twinning via interaction of {11-21}<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%; font-family: 'MS Gothic';\">\u3008<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">11-2-6<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%; font-family: 'MS Gothic';\">\u3009<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">twin variants in hexagonal close-packed metals. <strong>Acta Materialia.<\/strong> 2025 Jan 1;282:120480.<\/span><\/span><\/span><\/span><\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Chen Y, Ma Y, Zhou J, Zhang B, Wang Y, Li B, Wang L, Qiao L, Wang L, Guo T, He Y. {20-21} Twinning in hexagonal close-packed Re nanocrystals mediated by {10-11}|{10-10} interfacial facets. <strong>Acta Materialia.<\/strong> 2025 Jan 1;282:120445.<\/span><\/span><\/span><\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Chen P, Li B. Transmutation of zonal twinning dislocations during non-cozone {10-11} twin-twin interaction in magnesium. <strong>Journal of Magnesium and Alloys.<\/strong> 2025 Feb 1;13(2):681\u201396.<\/span><\/span><\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Zhou S, Chen P, Zhang X, Li B, Wang HY. Prismatic dislocation-{11-21} twin interaction as a source of uncommon pyramidal-&lt;a&gt; d<\/span><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">islocation in HCP metals. <strong>Materials Research Letters.<\/strong> 2025, 13(4):1\u201310.<\/span><\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">He Y, Fang Z, Li B*, Wang C, Mao SX. <em style=\"font-size: 12pt; text-indent: -0.25in;\">In-situ<\/em><span style=\"font-size: 12pt; text-indent: -0.25in;\"> HRTEM observations of intermediate phase transformation in lattice reorientation in HCP rhenium. <strong>Journal of Materials Science &amp; Technology.<\/strong> 2025 Jan 20;206:15\u201325.<\/span><\/span><\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Liao Y, Rubbi F, Mao B, Li B, Delzendehrooy F, Haque MM. A novel solid-state metal additive manufacturing process \u2013 Laser-induced Supersonic Impact Printing (LISIP): Exploration of process capability. <strong>Additive Manufacturing.<\/strong> 2024 Aug 5;93:104356.<\/span><\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\"><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Chulist R, W\u00f3jcik A, Sozinov A, Tokarski T, Faryna M, Schell N, Skrotzki W, Li B, Sehitoglu H, Li X, Maziarz W. Adaptive Phase or Variant Formation at the Austenite\/Twinned Martensite Interface in Modulated Ni\u2013Mn\u2013Ga Martensite. <strong>Advanced Functional Materials.<\/strong> 2024;34(22):2307322.<\/span><\/span><\/li><li><span style=\"text-indent: -0.25in; font-size: 12pt; line-height: 107%;\">Zhang F, Ren Y, Pei Z, Gao Q, Lu Z, Wang B, Xue Y, Cao X, Du K, Yang Y, Li B, Cheng X, Chen M. Cooperative dislocations for pressure-dependent sequential deformation of multi-principal element alloys under shock loading. <strong>Acta Materialia.<\/strong> 2024 Sep 1;276:120150.<\/span><\/li><li>Zhou S, Chen P, Zha M, Zhu Y, Li B, Wang H. Sequential transmutation of prismatic dislocations during {11-22} twin-slip interaction in titanium. <strong>Scripta Mater<\/strong> 236 (2023) 115678.<\/li><li>Li B*, Chen K. <em>Grain boundary migration facilitated by phase transformation and twinning in face-centered cubic metals<\/em>. J Mater Sci. 2023 Oct 1;58(37):14740\u201357.<\/li><li>Yang Y, Liu F, Chen KF, Liu BY, Shan ZW, Li B*. <em>Dissociation of edge and screw pyramidal I and II dislocations in magnesium<\/em>. <strong>Journal of Magnesium and Alloys. <\/strong> 11 (2023) 4498-4512.<\/li><li>Li B*, Goldman A, Xu J. Reactive diffusion of lithium in silicon in anode materials for Li-ion batteries. <strong>Materialia. <\/strong>2023 Jun 1;29:101796.<\/li><li>Zhou S, Chen P, Zha M, Zhu Y, Li B, Wang HY. Sequential transmutation of prismatic dislocations during {11-22} twin-slip interaction in titanium. <strong>Scripta Materialia.<\/strong> 2023 Nov 1;236:115678.<\/li><li>Li B*, Chen KF. <em>Asymmetric (11-21)[11-2-6] twin boundary and migration mechanism in hexagonal close-packed titanium<\/em>. <strong>Acta Materialia<\/strong>. 2022 Jun 15;232:117943.<\/li><li>Chen KF, Mun S, Baskes M, Horstemeyer MF, Li B*. <em>Development of 2NN MEAM potential for Fe-Al and atomistic investigation of surface and interface properties of the inhibition layer in galvanized Fe<\/em>. <strong>Modelling and Simulation in Materials Science and Engineering.<\/strong> 2022, 30:045001.<\/li><li>Liu BY, Zhang Z, Yang N, Liu F, Li B, Chen P, Wang Y, Peng JH, Li J, Ma E, Shan ZW. <em>Rejuvenation of plasticity by deformation graining in magnesium<\/em>. <strong>Nature Communications<\/strong>. 2022, 13(1):1060.<\/li><li>Li J, Sui M*, Li B*. <em>A half-shear-half-shuffle mechanism and the single-layer twinning dislocation for {11-22}&lt;11-2-3&gt; mode in hexagonal close-packed titanium<\/em>. <strong>Acta Materialia<\/strong>. 2021 Sep 1;216:117150.<\/li><li>Li B*, Sun Q, Zhang XY. <em>Lattice correspondence analysis on the formation mechanism for partial stacking faults in hexagonal close-packed metals<\/em>. <strong>Computational Materials Science<\/strong>. 2021 Oct 1;198:110684.<\/li><li>Li B*, Leung J. <em>Lattice transformation in grain boundary migration via shear coupling and transition to sliding in face-centered-cubic copper<\/em>. <strong>Acta Materialia<\/strong>. 2021 Aug 15;215:117127.<\/li><li>Chen K, Aslam I, Li B*, Goodwin FE, Horstemeyer M. <em>Effect of Fuel-to-Air Ratio on Oxidation and Interfacial Structure in Galvanizing of a Dual-Phase Steel<\/em>. <strong>SAE Int J Mater Manuf<\/strong>. 2021 Apr 19;14(3):05-14-03\u20130021.<\/li><li>Y. He, B. Li, C. Wang, S.X. Mao. <em>Direct observation of dual-step twinning nucleation in hexagonal close-packed crystals<\/em>. <strong>Nature Communications<\/strong>. 2020 May 18;11(1):2483.<\/li><li>B. Li*, Y.D. Shen, Q. An. <em>Structural origin of reversible martensitic transformation and reversible twinning in NiTi shape memory alloy<\/em>. <strong>Acta Materialia<\/strong>. 2020 Oct 15;199:240\u201352.<\/li><li>P. Chen, J. Ombogo, B. Li*. <em>Dislocation \u2194 twin transmutations during interaction between prismatic slip and {10-11} twin in magnesium<\/em>. <strong>Acta Materialia<\/strong>. 2020 Mar 1;186:291\u2013307.<\/li><li>F. Zhang, Y. Ren, Z. Yang, H. Su, Z. Lu, C. Tan, H. Peng, K. Watanabe, B. Li, M.R. Barnett, M. Chen. <em>The interaction of deformation twins with long-period stacking ordered precipitates in a magnesium alloy subjected to shock loading<\/em>. <strong>Acta Materialia<\/strong>. 2020 Apr 15;188:203\u201314.<\/li><li>L. Williams, C. Kale, S.A. Turnage, L.S. Shannahan, B. Li, K.N. Solanki, R. Becker, T.C. Hufnagel, K.T. Ramesh. <em>Real-time observation of twinning-detwinning in shock-compressed magnesium via time-resolved in situ synchrotron XRD experiments<\/em>. <strong>Phys Rev Materials<\/strong>. 2020 Aug 21;4(8):083603.<\/li><li>B.Y. Liu, F.L. Liu, N. Yang, X.B. Zhai, L. Zhang, Y. Yang, B. Li*, J. Li, E. Ma, J.F. Nie*, Z.W. Shan*. <em>Large Plasticity in Magnesium Mediated by Pyramidal Dislocations.<\/em><strong> Science<\/strong>. 365 (2019) 73-75.<\/li><li>F. Chen, I. Aslam, B. Li*, R.L. Martens, J.R. Goodwin, F. Goodwin, M.F. Horstemeyer. <em>Lift-off of surface oxides during hot-dip galvanizing of a dual-phase steel in a zinc bath with 0.125% aluminum<\/em>. <strong>Met Trans A<\/strong>. 59 (2019)3748-3757.<\/li><li>D. Shen, H.W. Yang, B. Li, Q. An. <em>First principles high-throughput screening to enhance the ductility of lightweight magnesium alloys.<\/em> <strong>Phys Rev Mater.<\/strong> 3 (2019) 053603.<\/li><li>P. Chen, F. Wang, B. Li*. <em>Transitory phase transformations during {10-12} twinning in titanium<\/em>. <strong>Acta Mater.<\/strong> 171 (2019) 65\u201378.<\/li><li>P. Chen, F. Wang, B. Li*. <em>Dislocation absorption and transmutation at {10-12} twin boundaries in deformation of magnesium<\/em>. <strong>Acta Mater.<\/strong> 164 (2019) 440\u2013453.<\/li><li>P. Chen, F. Wang, B. Li*. <em>Misfit strain induced phase transformation at a basal\/prismatic twin boundary in deformation of magnesium<\/em>. <strong>Comput Mater Sci.<\/strong> 164 (2019) 186\u2013194.<\/li><li>P. Chen, F. Wang, J. Ombogo, B. Li*. <em>Formation of 60\u00b0&lt;01-10&gt; boundaries between {10-12} twin variants in deformation of a magnesium alloy<\/em>. <strong>Mater Sci Eng A.<\/strong> 739 (2019) 173\u2013185.<\/li><li>B. Mao, Y. Liao, B. Li, <em>Abnormal twin-twin interaction in an Mg-3Al-1Zn magnesium alloy processed by laser shock peening<\/em>, <strong>Scripta Mater.<\/strong> 165 (2019) 89\u201393.<\/li><li>B. Mao, A. Siddaiah, X. Zhang, B. Li, P.L. Menezes, Y. Liao, <em>The influence of surface pre-twinning on the friction and wear performance of an AZ31B Mg alloy<\/em>, <strong>Applied Surface Science<\/strong>. 480 (2019) 998\u20131007.<\/li><li>B. Mao, B. Li, D. Lin, Y. Liao, <em>Enhanced room temperature stretch formability of AZ31B magnesium alloy sheet by laser shock peening<\/em>, <strong>Mater Sci Eng A.<\/strong> 756 (2019) 219\u2013225.<\/li><li>B. Mao, Y. Liao, B. Li, <em>Gradient twinning microstructure generated by laser shock peening in an AZ31B magnesium alloy<\/em>, <strong>Applied Surface Science<\/strong>. 457 (2018) 342\u2013351.<\/li><li>P. Chen, B. Li*, D. Culbertson, Y. Jiang. <em>Negligible effect of twin-slip interaction on hardening in deformation of a Mg-3Al-1Zn alloy<\/em>. <strong>Mater Sci Eng A.<\/strong> 729 (2018) 285\u2013293.<\/li><li>X. Wang, B. Li*. <em>Atomistic calculations of surface and interfacial energies of Mg17Al12\u2013Mg system<\/em>. <strong>Journal of Magnesium and Alloys.<\/strong> 6 (2018) 375\u2013383.<\/li><li>X. Wang, B. Li*, Origin of deflection of precipitates during interaction with a migrating twin boundary in magnesium alloys, <strong>Comput Mater Sci.<\/strong> 154 (2018) 472\u2013480.<\/li><li>P. Chen, B. Li*, D. Culbertson, Y. Jiang. <em>Contribution of extension twinning to plastic strain at low stress stage deformation of a Mg-3Al-1Zn alloy<\/em>. <strong>Mater Sci Eng A<\/strong>. 709 (2017) 40-45.<\/li><li>Q. Sun, Q.W. Zhang, B. Li*, X.Y. Zhang. <em>Non-dislocation-mediated basal stacking faults inside <\/em> <em>twins<\/em>. <strong>Scripta Mater.<\/strong> 141 (2017) 85-88.<\/li><li>B. Li*, Q.W. Zhang, S.N. Mathaudhu. <em>Basal-pyramidal dislocation lock in deformed magnesium<\/em>. <strong>Scripta Mater.<\/strong> 134 (2017) 37-41.<\/li><li>A. Brauer, W.R. Whittington, K.L. Johnson, B. Li, H. Rhee, P.G. Allison, C.K. Crane, M.F. Horstemeyer. <em>Strain Rate and Stress-State Dependence of Gray Cast Iron<\/em>. <strong>Journal of Engineering Materials and Technology.<\/strong> 139 (2017) 021013.<\/li><li>H.C. Pan, Q. Huang, G. Qin, H. Fu, M. Xu, Y. Ren, J. She, B. Song, B. Li, <strong>Journal of Alloys and Compounds<\/strong>. 692 (2017) 898\u2013902.<\/li><li>I. Aslam, B. Li*, R.L. Martens, J.R. Goodwin, H.J. Rhee, F. Goodwin. <em>Transmission electron microscopy characterization of the interfacial structure of a galvanized dual-phase steel<\/em>. <strong>Materials Characterization.<\/strong> 120 (2016) 63\u201368.<\/li><li>B. Li* and X.Y. Zhang*. <em>Twinning with zero twinning shear<\/em>. Viewpoint Paper. <strong>Scripta Mater<\/strong> 125 (2016) 73-79.<\/li><li>X.Y. Zhang, B. Li*, and Q. Liu. <em>Non-equilibrium basal stacking faults in hexagonal close-packed metals<\/em>. <strong>Acta Mater<\/strong>90\u00a0(2015) 140-150.<\/li><li>Y. Zhang, B. Li*, J. Tu, Q. Sun, and Q. Liu. <em>Non-classical Twinning Behavior in Dynamically Deformed Cobalt<\/em>. <strong>Materials Research Letters<\/strong> 3 (2015) 142-148.<\/li><li>B. Li*, M. Liao, Q. Ma, and Z. McClelland. <em>Structure of grain boundaries with 30\u00b0[0001] misorientation in dynamically recrystallized magnesium alloys<\/em>. <strong>Comput Mater Sci.<\/strong>101\u00a0(2015) 175-180.<\/li><li>W. Zhang, B. Li*. <em>Torsional behavior of single-walled carbon nanotubes<\/em>. <strong>Carbon<\/strong> 94 (2015) 826-835.<\/li><li>Z. McClelland, B. Li*, S.J. Horstemeyer, S. Brauer, A.A. Adedoyin, L.G. Hector, Jr., M.F. Horstemeyer. <em>Geometrically necessary twins in bending of a magnesium alloy<\/em>. <strong>Mater Sci Eng A.<\/strong> 645 (2015) 298-305.<\/li><li>Y. Liu, J. Wang, B. Li, E. Ma, J. Sun, X.Y. Zhang, Z.W. Shan. <em>Twinning-like lattice reorientation without a crystallographic twinning plane<\/em>. <strong>Nature Communications<\/strong> 5 (2014) 3297.<\/li><li>Eswar Prasad, B. Li, N. Dixit, M. Shaffer, S.N. Mathaudhu, K.T. Ramesh. <em>The dynamic flow and failure behavior of magnesium and magnesium alloys.<\/em> <strong>JOM<\/strong> 66 (2014) 291 - 304.<\/li><li>B. Li*, Z. McClelland, S.J. Horstemeyer, I. Aslam, P.T. Wang, M.F. Horstemeyer. <em>Time dependent springback of a magnesium alloy.<\/em> <strong>Materials and Design<\/strong> 2015 (66) 575-580.<\/li><li>Q. Ma, B. Li, W.R. Whittington, A.L. Oppedal, E.B. Marin, P.T. Wang, M.F. Horstemeyer. <em>Texture evolution during dynamic recrystallization in a magnesium alloy at 450 \u00b0C.<\/em> <strong>Acta Mater <\/strong>67 (2014) 102-115.<\/li><li>M. Liao, B. Li, M.F. Horstemeyer. <em>Interaction between a basal dislocation and a Mg<sub>17<\/sub>Al<sub>12<\/sub> precipitate.<\/em> <strong>Metall Mater Trans A<\/strong> 45A (2014) 3661-3669.<\/li><li>I. Aslam, B. Li, Z. McClelland, S.J. Horsteme yer, Q. Ma, P.T. Wang, M.F. Horstemeyer. <em>Three point bending behavior of a ZEK100 Mg alloy at room temperature.<\/em> <strong>Mater Sci Eng A<\/strong> 590 (2014) 168-173.<\/li><li>B. Li*, X.Y. Zhang*. <em>Global strain generated by shuffling-dominated <\/em> <em>twinning<\/em>. <strong>Scripta Mater<\/strong> 71 (2014) 45-48.<\/li><li>M. Pozuelo, S.N. Mathaudhu, S. Kim, B. Li, W.H. Kao, J.-M. Yang. <em>Deformation Twins in a Nanocrystalline Magnesium Alloy Processed by Cryomilling.<\/em> <strong>Phil Mag Lett<\/strong> 93 (2013) 640-647.<\/li><li>Q. Ma, B. Li, Z. McClelland, S.J. Horstemeyer. <em>Negative strain rate sensitivity of twinning in a magnesium alloy at high temperature.<\/em> <strong>Metall Mater Trans A<\/strong> 44A (2013) 4480-4485.<\/li><li>M. Liao, B. Li, M.F. Horstemeyer. <em>Interaction between a prismatic dislocation and a Mg<sub>17<\/sub>Al<sub>12<\/sub> precipitate in magnesium.<\/em> <strong>Computational Mater Sci<\/strong> 79 (2013) 534-539.<\/li><li>B. Li. <em>Formation of helicity in an armchair single-walled carbon nanotube during tensile loading.<\/em> <strong>Computational Mater Sci<\/strong> 74 (2013) 27-32.<\/li><li>Q. Ma, W. Mao, B. Li, P.T. Wang, M.F. Horstemeyer. <em>Substructure and texture evolution in an annealed aluminum alloy at medium Strains.<\/em> <strong>Metall Mater Trans A<\/strong> 44 (2013) 4404-4415.<\/li><li>B. Li*, Q. Ma, Z. McClelland, S.J. Horstemeyer, W.R. Whittington, S. Brauer, P.G. Allison. <em>Twin-like domains and fracture in deformed magnesium.<\/em> <strong>Scripta Mater<\/strong> 69 (2013) 493-496.<\/li><li>M. Liao, B. Li, M.F. Horstemeyer. <em>Unstable dissociation of a prismatic dislocation in magnesium.<\/em> <strong>Scripta Mater<\/strong> 69 (2013) 246-249.<\/li><li>Q. Ma, B. Li, A.L. Oppedal, W. Whittington, S.J. Horstemeyer, E.B. Marin, P.T. Wang, M.F. Horstemeyer. <em>Strain rate dependence of twinning and effect on microstructure at 450 \u00b0C in a magnesium alloy<\/em>. <strong>Mater Sci Eng A<\/strong> <strong>559<\/strong> (2013) 314-318.<\/li><li>Y. Zhang, B. Li*, X.L. Wu, Y.T. Zhu, Q. Ma, Q. Liu, P.T. Wang, M.F. Horstemeyer. <em>Twin boundaries showing very large deviations from the twinning plane<\/em>. <strong>Scripta Mater<\/strong> <strong>67<\/strong> (2012) 862-865.<\/li><li>B. Li*, S.P. Joshi, O. Almagri, Q. Ma, K.T. Ramesh, T. Mukai. <em>Rate-Dependent Hardening Due to Twinning in Ultrafine-Grained Magnesium Alloy<\/em>. <strong>Acta Mater 60<\/strong>, 2012: 1818-1826.<\/li><li>C. Baird, B. Li, S. Yazdan Parast, S.J. Horstemeyer, L.G. Hector Jr., P.T. Wang, M.F. Horstemeyer. <em>Localized Twin Bands in Sheet Bending of A Magnesium Alloy<\/em>. <strong>Scripta Mater 67<\/strong>, 2012: 471-474.<\/li><li>Q. Ma, H. El Kadiri, A.L. Oppedal, J.C. Baird, B. Li, M.F. Horstemeyer, S.C. Vogel. <em>Twinning Effects in a Rod-Textured AM30 Magnesium Alloy<\/em>. <strong>Int J Plasticity 29 <\/strong>(2012) 60-76.<\/li><li>B. Li*, H. El Kadiri, M.F. Horstemeyer. <em>Extended Zonal Dislocations Mediating <\/em> <em>twinning in Titanium<\/em>. <strong>Philo Mag<\/strong> <strong>92<\/strong>, 2012: 1006-1022.<\/li><li>E. Huskins, B.Y. Cao, B. Li, K.T. Ramesh. <em>Temperature-Dependent Mechanical Response of an UFG Aluminum Alloy at High Rates<\/em>. <strong>Experimental Mechanics<\/strong> <strong>52<\/strong>, 2012: 185-194.<\/li><li>C. Ma, B. Li, E. Marin, S.J. Horstemeyer. <em>Twinning Induced Dynamic Recrystallization in a Magnesium Alloy Extruded at 450\u00baC<\/em>. <strong>Scripta Mater 65<\/strong> (2011) 823-826.<\/li><li>Q. Li, B. Li, Y.B. Wang, M.L. Sui, E. Ma. <em>Twinning mechanism via synchronized activation of partial dislocations in face-centered-cubic materials<\/em>. <strong>Scripta Mater 64<\/strong> (2011) 852-855.<\/li><li>B. Li*, P.F. Yan, M.L. Sui, E. Ma. <em>Transmission electron microscopy study of stacking faults and their interaction with pyramidal dislocations in deformed magnesium<\/em>. <strong>Acta Mater 58<\/strong> (2010) 173-179.<\/li><li>B. Li*, E. Ma. <em>Atomic shuffling dominated mechanism for deformation twinning in magnesium<\/em>. <strong>Phys Rev Lett<\/strong> <strong>103<\/strong> (2009) 035503.<\/li><li>B. Li*, E. Ma. <em>Zonal dislocations mediating <\/em> <em>twinning in magnesium<\/em>. <strong>Acta Mater 57<\/strong>, 2009: 1734-1743.<\/li><li>Q. Li, M.L. Sui, B. Li, E. Ma, S.X. Mao. <em>Re<\/em> <em>versible twinning in pure aluminum<\/em>, <strong>Phys Rev Lett 103<\/strong> (2009) 205504.<\/li><li>B. Li*, B.Y. Cao, K.T. Ramesh, E. Ma. <em>A nucleation mechanism of deformation twins in pure aluminum<\/em>. <strong>Acta Mater 57<\/strong> (2009) 4500-4507.<\/li><li>B. Li*, E. Ma. <em>Pyramidal slip in magnesium: dislocations and stacking fault on the <\/em> <em>plane<\/em>. <strong>Philo Mag 89<\/strong> (2009) 1223-1235.<\/li><li>M. Byer, B. Li, B.Y. Cao, K.T. Ramesh. <em>Microcompression of single crystal magnesium<\/em>. <strong>Scripta Mater<\/strong> <strong>62<\/strong>, 2010: 536-539.<\/li><li>B. Li*, S. Joshi, K. Azevedo, E. Ma, K.T. Ramesh, R.B. Figueiredo, T.G. Langdon. <em>Dynamic testing at high strain rates of an ultrafine-grained magnesium alloy processed by ECAP<\/em>. <strong>Mater Sci Eng A 517<\/strong>, 2009: 24-29.<\/li><li>X.L. Wu, B. Li, E. Ma. <em>Vacancy clusters in ultra-fine grained Al by severe plastic deformation<\/em>. <strong>Appl Phys Lett 91<\/strong>, 2007: 141908.<\/li><li>B. Li*, E. Ma, K.T. Ramesh. <em>Dislocation configurations in an extruded ZK60 magnesium alloy<\/em>. <strong>Metall Mater Trans A<\/strong>, 39A, 2008: 2607.<\/li><li>B. Li*, H.D. Brody and A. Kazimirov. <em>Real time observation of dendrite coarsening in Sn-13%Bi alloy by synchrotron microradiography.<\/em> <strong>Phys Rev E 70<\/strong>, 2004: 062602.<\/li><li>B. Li*, H.D. Brody and A. Kazimirov. <em>Real time study of dendrite coarsening in Sn-13%Bi alloy by synchrotron microradiography. <\/em><strong>Metall Mater Trans A<\/strong> <strong>38A<\/strong>, 2007: 599.<\/li><li>B. Li*, H.D. Brody and A. Kazimirov. <em>Synchrotron microradiography of temperature gradient zone melting in Sn-13%Bi alloy. <\/em><strong>Metall Mater Trans A<\/strong> <strong>37A<\/strong>, 2006: 1039.<\/li><li>B. Li*, H.D. Brody, D.R. Black, H.E. Burdette, C. Rau. <em>Real time observation of dendritic solidification in alloys by synchrotron microradiography. <\/em><strong>J Phys D: Appl. Phys<\/strong>, 39, 2006: 4450.<\/li><li>B. Li*, H.D. Brody, D.R. Black, H.E. Burdette, C. Rau. <em>A compact design of a temperature gradient furnace for synchrotron microradiography.<\/em> <strong>Meas Sci Technol 17<\/strong>, 2006: 1883.<\/li><li>B. Li*, X.M. Zhang, P.C. Clapp and J.A. Rifkin. <em>Molecular dynamics simulation of effects of lattice defects on martensite nucleation.<\/em> <strong>J Appl Phys 95<\/strong>, 2004: 1698.<\/li><li>B. Li*, P.C. Clapp, J.A. Rifkin and X.M. Zhang. <em>Molecular dynamics simulation of stick-slip<\/em><em>,<\/em> <strong>J Appl Phys 90<\/strong>, 2001: 3090.<\/li><li>B. Li*, P.C. Clapp, J.A. Rifkin and X.M. Zhang. <em>Molecular dynamics calculation of heat dissipation during sliding friction, <\/em><strong>International Journal of Heat and Mass Transfer 46<\/strong>, 2003: 37.<\/li><li>X.M. Zhang, J. Fernandez, J.M. Guilemany, B. Li, M. Liu and X.W. Sha. <em>Nature of two-way shape memory effect in shape memory alloys<\/em>, <strong>Recent Research Developments in Materials Science 2<\/strong>, 2001: 79.<\/li><li>X.M. Zhang, B.Li, X.W. Sha, Z.Q. Sun, R. Li. <em>Simulations of martensite nucleation at dislocations.<\/em> <strong>Journal of Materials Science and Technology 16<\/strong>, 2000: 370.<\/li><li>Li, X.M. Zhang and Y.Y. Li. <em>Molecular dynamics simulation of low angle boundaries<\/em>. <strong>Acta Physica Sinica Acta Physica Sinica <\/strong>(overseas edition), 7(8), 1998: 583.<\/li><li>Sha Xianwei, Li Bin, Zhang Xiumu and Li Yiyi, <em>Simulation of transformation mechanism of martemsites in Ni<sub>62.5<\/sub>Al<sub>37.5<\/sub> Alloy<\/em>, <strong>Science in China E<\/strong> (overseas edition), 28<\/li><\/ol>","user_image":{"ID":"10541","post_author":"2162","post_date":"2024-03-19 14:26:00","post_date_gmt":"2024-03-19 19:26:00","post_content":"","post_title":"Bin Li College of Engineering new faculty 2014","post_excerpt":"","post_status":"inherit","comment_status":"closed","ping_status":"closed","post_password":"","post_name":"bin-li-college-of-engineering-new-faculty-2014","to_ping":"","pinged":"","post_modified":"2024-03-19 14:26:11","post_modified_gmt":"2024-03-19 19:26:11","post_content_filtered":"","post_parent":"7331","guid":"https:\/\/www.engineering.iastate.edu\/people\/files\/2023\/07\/Bin-Li-688.jpg","menu_order":"0","post_type":"attachment","post_mime_type":"image\/jpeg","comment_count":"0","pod_item_id":"10541"},"user_title":"Associate Professor","phone_number":"515-294-1248","fax":"","office":"2154 Therkildsen Industrial Engineering Building\r\n531 Bissell Road\r\nAmes, IA 50011-1096","_links":{"self":[{"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/profile\/7331","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/profile"}],"about":[{"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/types\/profile"}],"author":[{"embeddable":true,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/users\/3631"}],"version-history":[{"count":5,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/profile\/7331\/revisions"}],"predecessor-version":[{"id":17008,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/profile\/7331\/revisions\/17008"}],"wp:attachment":[{"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/media?parent=7331"}],"wp:term":[{"taxonomy":"affiliation","embeddable":true,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/affiliation?post=7331"},{"taxonomy":"department","embeddable":true,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/department?post=7331"},{"taxonomy":"group","embeddable":true,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/group?post=7331"},{"taxonomy":"interest","embeddable":true,"href":"https:\/\/www.engineering.iastate.edu\/people\/wp-json\/wp\/v2\/interest?post=7331"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}