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  2. Fracture of bio-cemented sands Charalampos Konstantinoua, Emilio…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/405.pdf
    29 Sep 2023: Fracture of bio-cemented sands. Charalampos Konstantinoua, Emilio Martínez-Pañedab,1,, Giovanna Biscontinc, Norman A.Fleckc. aDepartment of Civil and Environmental Engineering, University of Cyprus, 1678 Nicosia, CyprusbDepartment of Civil and
  3. 1 Effect of water content on the constitutive response ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/398.pdf
    3 Apr 2023: as high density paper-board, along with experimental support. But there remains a lack. ... relationships that could have appeared to influence the work reported in this paper.
  4. 1 An assessment of a mechanism for void growth ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/376.pdf
    2 Aug 2023: The outline of the paper is as follows. We first calculate the interfacial flux in the presence of.
  5. Analysis of hydrogen diffusion in the three stage electro-permeation…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/393.pdf
    25 Jan 2023: Analysis of hydrogen diffusion in the three stage electro-permeation. test. Arun Rainaa, Vikram S. Deshpandea, Emilio Mart́ınez-Pañedab, Norman A. Flecka,. aDepartment of Engineering, Cambridge University, CB2 1PZ, Cambridge, UKbDepartment of
  6. 1 Vacancy diffusion and its consequences for void growth ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/401.pdf
    13 Dec 2023: 1. Vacancy diffusion and its consequences for void growth at the interface of a stripping. metal electrode and solid electrolyte. S.S. Shishvanb,a, N.A. Flecka, R.M. McMeekingc,d,e and V.S. Deshpandea. aDepartment of Engineering, University of
  7. Graphical Abstract The Transport of Water in a Cellulose ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/392.pdf
    2 Aug 2023: oceans [2–4]. Paper-based microfluidics devices µ-PADs are used as inexpensive medical. ... alternative mechanisms remains controversial, and the purpose of this paper is to report a.
  8. 1 EFFECT OF LITHIATION UPON THE SHEAR STRENGTH OF ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/385.pdf
    2 Aug 2023: Acta Mater., 161, 161 (2018). Deshpande and Fleck (2000). JMPS metal foam paper.
  9. 1 Compression of filled, open-cell, 3D-printed Kelvin lattices J. ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/404.pdf
    13 Dec 2023: 1. Compression of filled, open-cell, 3D-printed Kelvin lattices. J. Carlsson, A. Kuswoyo, A. Shaikeea and N. A. Fleck. Cambridge University Engineering Dept., Trumpington St., Cambridge, CB2 1PZ, UK. joint first author, corresponding author. 30
  10. Fracture testing of lithium‐ion battery cathode secondary particles…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/400.pdf
    14 Aug 2023: White Rose Research Online URL for this paper:https://eprints.whiterose.ac.uk/197956/. Version: Published Version.
  11. 1 The strength of a constrained lithium layer J.C. ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/402.pdf
    18 Jul 2023: 7. grinding with successively finer grades of silicon carbide paper (Metprep, UK) to produce a.
  12. Size effects in a power law creeping layer under compression or…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/403.pdf
    1 Sep 2023: The present paper builds upon previous experiments and analyses of. constrained compression and shear of a thin, rate independent solid. ... dictates the degree of build-up of back-stress to dislocation pile-ups. The outline of the present paper is as
  13. 1 Chemo-mechanical analysis of lithiation/delithiation of Ni-rich…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/395.pdf
    7 Apr 2023: mechanical fracture during cycling. For this reason, the present paper focuses on large single. ... battery’ to avoid possible confusion. 4. The outline of the remainder of the paper is as follows.
  14. 1 The compressive response of the filled Kelvin foam ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/394.pdf
    1 Aug 2023: We. shall address this question in the main body of the paper. ... Upper bounds have been obtained. in the same manner described in the body of the paper for the Kelvin foam.
  15. 1 Void growth in metal anodes in solid-state batteries: ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/396.pdf
    29 Mar 2023: 1. Void growth in metal anodes in solid-state batteries: recent progress and gaps in. understanding. S.S. Shishvana,b, N.A. Flecka, R.M. McMeekingc and V.S. Deshpandea. a Department of Engineering, University of Cambridge, Cambridge CB2 1PZ, UK b
  16. 1/09/2019 Page 1 of 39 The swelling of cellulose ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/360.pdf
    22 Feb 2023: 1/09/2019. Page 1 of 39. The swelling of cellulose foams due to liquid transport. Morad Mirzajanzadeh, Vikram S. Deshpande, Norman A. Fleck. Engineering Department, Cambridge University, Trumpington Street, Cambridge CB2 1PZ, UK. Abstract.
  17. Molecular dynamics simulations of ultrathin PMMA films Lili Zhang1 ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/374.pdf
    2 Aug 2023: Molecular dynamics simulations of ultrathin PMMA films. Lili Zhang1 and Norman A. Fleck. Cambridge University, Engineering Department, Trumpington Street, Cambridge, CB2 1PZ, UK. Corresponding authors: lz399@cam.ac.uk (L. Zhang) and naf1@cam.ac.uk (N
  18. 1 MECHANICAL PROPERTIES OF CATHODE MATERIALS FOR LITHIUM ION ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/384.pdf
    14 Aug 2023: 1. MECHANICAL PROPERTIES OF CATHODE MATERIALS FOR LITHIUM ION BATTERIES. J.C. Stallard1, L. Wheatcroft2, S.G. Booth2, R. Boston2. S.A. Corr2, M.F.L De Volder1, B.J. Inkson2, N.A. Fleck1. 1Department of Engineering, University of Cambridge.
  19. 1 The in-plane, elastic-plastic response of a filled hexagonal ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/391.pdf
    2 Aug 2023: 1. The in-plane, elastic-plastic response of a filled hexagonal honeycomb at finite strain. J. Carlssona, K. Lia,b, V. S. Deshpandea and N. A. Flecka. a Cambridge University Engineering Dept., Trumpington St., Cambridge, CB2 1PZ, UK. b Now at School
  20. 1 Void growth within Li electrodes in solid electrolyte ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/390.pdf
    2 Aug 2023: 1. Void growth within Li electrodes in solid electrolyte cells. J.A.B. Agiera, S.S. Shishvanb,a, N.A. Flecka and V.S. Deshpandea. a Department of Engineering, University of Cambridge, Cambridge CB2 1PZ, UK. b Department of Structural Engineering,
  21. Graphical Abstract Stabilization of ultrathin nanowires by…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/383.pdf
    2 Aug 2023: a vector throughout this paper. Assume that the dominant surface flux is in265.
  22. Operando visualisation of kinetically-induced lithium heterogeneities …

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/386.pdf
    1 Aug 2023: Operando visualisation of kinetically-induced lithium heterogeneities in. single-particle layered Ni-rich cathodes. Chao Xu1,2,3,4,6, Alice J. Merryweather1,2,3,6, Shrinidhi S. Pandurangi3,5,6, Zhengyan Lun1,2,3,. David S. Hall1,3, Vikram S.
  23. 1 Ingress of Li into solid electrolytes: cracking and ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/399.pdf
    2 Aug 2023: 1. Ingress of Li into solid electrolytes: cracking and sparsely filled cracks. D. Mukherjeea, S. Haob,c, P.R. Shearingb,d, R.M. McMeekinge, N.A. Flecka,d,. and V.S. Deshpandea,d. a Department of Engineering, University of Cambridge, Cambridge CB2 1PZ
  24. 1 The initiation of void growth during stripping of ...

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/378.pdf
    2 Aug 2023: 1. The initiation of void growth during stripping of Li electrodes in solid electrolyte cells. Siamak S. Shishvana,b, Norman A. Fleckb and Vikram S. Deshpandeb. a Department of Structural Engineering, University of Tabriz, Tabriz, Iran b Department
  25. Perspectives for Next Generation Lithium-ion Battery Cathode…

    www-mech.eng.cam.ac.uk/profiles/fleck/papers/379.pdf
    4 Aug 2023: Perspectives for Next Generation Lithium-ion Battery Cathode Materials. Samuel G. Booth,1,15,(a,b) Alisyn J. Nedoma,1,15(a,b) Nirmalesh N. Anthonisamy,1,15 Peter J. Baker,2,15 Rebecca Boston,3,15 Hugo Bronstein,4,15 Simon J. Clarke,5,15 Edmund J.

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