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| Suggested format for citation of papers in this volume: |
| List all author names: Title of article, in Fundamentals of Nanoindentation and Nanotribology III, edited by Kathryn J. Wahl, Norbert Huber, Adrian B. Mann, David F. Bahr, and Y.-T. Cheng (Mater. Res. Soc. Symp. Proc. 841, Warrendale, PA , 2005), insert paper number. |
Measurement of Crystal Lattice Rotations Under Nanoindents in Copper R1.3
Kirsten K. McLaughlin, Nadia A. Stelmashenko, Stephen J. Lloyd, Luc J. Vandeperre, and William J. Clegg
An Experimental Evaluation of the Constant ß Relating the Contact Stiffness to the Contact Area in Nanoindentation R1.4
Jeremy H. Strader, Sanghoon Shim, Hongbin Bei, W.C. Oliver, and G.M. Pharr
The Mechanics of Nanoimprint Forming R1.6
Graham L. W. Cross, Richard M. Langford, Barry S. O'Connell, and John B. Pethica
Correlated Single Molecule Fluorescence and Scanning Probe Microscopies: Applications to the Study of Soft Materials R2.1/Y2.1
Andrea L. Slade, James E. Shaw, Guocheng Yang, Neetu Chhabra, and Christopher M. Yip
Nanomechanical and Microstructural Properties of Bombyx mori Silk Films R2.2/Y2.2
Donna M. Ebenstein, Jaehyung Park , David L. Kaplan, and Kathryn J. Wahl
Nanoscale Characterisation of Salivary Pellicle R2.3/Y2.3
Michelle E. Dickinson and Adrian B. Mann
Nanomechanical Testing of Hydrated Biomaterials: Sample Preparation, Data Validation and Analysis R2.5/Y2.5
Jessica D. Kaufman and Catherine M. Klapperich
Elastic Modulus of Dental Enamel: Effect of Enamel Prism Orientation and Mineral Content R2.7/Y2.7
V.L. Ferguson, Alan Boyde, and Andrew J. Bushby
Contribution of Collagen, Mineral and Water Phases to the Nanomechanical Properties of Bone R2.8/Y2.8
Amanpreet K. Bembey, Vanessa Koonjul, Andrew J. Bushby, Virginia L. Ferguson, and Alan Boyde
Nanoindentation of Bone in a Physiological Environment R2.9/Y2.9
R. Akhtar, S. Morse, and P.M. Mummery
Effect of Fluoride on Mechanical Properties of Teeth Demineralized by Use of Orthodontic Appliances R3.3/Y3.3
Claudia Centeno, Ulises Ruiz, Oscar Contreras, and Enrique C. Samano
Effects of Osteopontin Deficiency and Aging on Nanomechanics of Mouse Bone R3.5/Y3.5
B. Kavukcuoglu, C. West, D.T. Denhardt, and A.B. Mann
Spatially Dependent Mechanical Properties of Rat Whiskers for Tactile Sensing R3.6/Y3.6
E.K. Herzog, D.F. Bahr, C.D. Richards, R.F. Richards, and D.M. Rector
Nano-Mechanical Investigation of the Byssal Cuticle, A Protective Coating of a Bio-Elastomer R3.7/Y3.7
Niels Holten-Andersen, Nelle Slack, Frank Zok, and J. Herbert Waite
On the Measurement of Creep by Nanoindentation With Continuous Stiffness Techniques R4.2
Andrei Rar, Sangjoon Sohn, Warren C. Oliver, David L. Goldsby, Terry E. Tullis, and George M. Pharr
Multiple-Frequency Nanoindentation Testing
A.C. Fischer-Cripps R4.3
Measurements of Viscoelastic Properties of SWNT/Polymer Composite Films Using Nanoindentation R4.5
Hongbing Lu, Gang Huang, Bo Wang, Arif Mamedov, and Sachin Gupta
Displacement Modulation Based Dynamic Nanoindentation for Viscoelastic Material Characterization R4.6
Sehaj P. Singh, Raman P. Singh, and James F. Smith
On the Measurement of Material Creep Parameters by Nanoindentation R4.7
J.A. LaManna, W.C. Oliver, and G.M. Pharr
High Temperature Nanoindentation for the Study of Flow Defects R4.8
C.A. Schuh, J.K. Mason, A.C. Lund, and A.M. Hodge
High Temperature Deformation of AlN/CrN Multilayers Using Nanoindentation R4.9
F. Giuliani, A. Goruppa, S.J. Lloyd, D. Teer, and W.J. Clegg
Molecular Mobility and Confined Plasticity in NEMS Applications R5.1
René M. Overney and Scott Sills
On Factors Affecting the Extraction of Elastic Modulus by Nanoindentation of Organic Polymer Films R5.2
F. Iacopi, M. Laknin, A. Mulloy, J.M.J. den Toonder, D. Vanhaeren, and S.H. Brongersma
Viscoelastic Characterization of Polymers Using Dynamic Instrumented Indentation R5.3
C.C. White, P.L. Drzal, and M.R. VanLandingham
Nanomechanical Quantification of Polymer Energy Absorption R5.6
Catherine A. Tweedie, James F. Smith, and Krystyn J. Van Vliet
Spherical Indentation Creep Following Ramp Loading R5.9
Michelle L. Oyen
Nanomechanical Properties of UV Degraded TiO2/Epoxy Nanocomposites R5.10
Stephanie Scierka, Peter L. Drzal, Amanda L. Forster, and Stephanie Svetlik
Some Issues of Rough Surface Contact Plasticity at Micro- and Nano-Scales R7.3
Y.F. Gao, A.F. Bower, and K.-S. Kim
Mechanical Properties of Wear Tested LIGA Nickel R7.8
N.R. Moody, J.M. Jungk, M.S. Kennedy, S.V. Prasad, D.F. Bahr, and W.W. Gerberich
Nano Scratching of Clear Coats and Relation to Mechanical Material Properties R8.3
Rolf Nothhelfer-Richter, Eugen Klinke, and Claus D. Eisenbach
Initial Contact Behavior of Nanograined Ni-25at.%Al Film During Nanoindentation R8.7
Han. Li and Alfonso H.W. Ngan
Acoustic Emission Analysis of Nanoindentation-Induced Fracture Events R8.10
Pawel Dyjak and Raman P. Singh
Aspects of Tip Shape Characterization for Nanoindentation of Compliant Materials R9.2
Mark R. VanLandingham, Thomas F. Juliano, and Matthew J. Hagon
Effects of Surface Stress on the Load-Depth Curves of Depth-Sensing Indentation R9.4
Q. Wang and K. Ozaki
A Critical Examination of the Berkovich vs. Conical Indentation Based on 3D Finite Element Calculation R9.5
Sanghoon Shim, Warren C. Oliver, and George M. Pharr
TEM Observation of Microstructural Change of Silicon Single Crystal Caused by Scratching Tests Using SPM R9.12
M. Takagi, K. Onodera, H. Iwata, T. Imura, K. Sasaki, and H. Saka
The Atomic Scale Removal Mechanism During Chemomechanical Polishing of Silicon: An Atomic Force Microscopy Study R9.13
Futoshi Katsuki and Junji Watanabe
Fracture Mechanisms of GaAs Under Nanoscratching R9.15
J.-M. Solletti , M. Parlinska-Wojtan, J. Tharian, K. Wasmer, J. Michler, C. Ballif, D. Schulz, and A. Karimi
Friction and Wear Properties of ALD Coated MEMS R9.16
Corina Nistorica, Igor Gory, George D. Skidmore, Fadziso M. Mantiziba, and Bruce E. Gnade
Nanoindentation of Ion Implanted and Deposited Amorphous Silicon R10.3/T6.3
J.S. Williams, B. Haberl, and J.E. Bradby
In-Situ Infrared (IR) Detection and Heating of the High Pressure Phase of Silicon During Scratching Test R10.5/T6.5
Lei Dong, John A. Patten, and Jimmie A. Miller
Micro-Raman Mapping and Analysis of Indentation-Induced Phase Transformations in Germanium R10.9/T6.9
Jae-il Jang, M.J. Lance, Songqing Wen, J.J. Huening, R.J. Nemanich, and G.M. Pharr
Mechanisms Underlying Hardness Numbers R10.11/T6.11
John J. Gilman
Modeling Indentation in Linear Viscoelastic Solids R11.2
Yang-Tse Cheng and Che-Min Cheng
Dislocation Nucleation at a Surface Step by a Multiscale Approach R11.3
Chengzhi Li, Darren Segall, and Guanshui Xu
Determination of Plastic Properties of Polycrystalline Metallic Materials by Nanoindentation-Experiments and Finite Element Simulations R11.4
Karsten Durst, Björn Backes, and Mathias Göken
Modeling of Nanoindentation and Microstructural Ductile Behavior in Metallic Material Systems R11.9
Jeong Beom Ma, W. Ashmawi, M.A. Zikry, D. Schall, and D.W. Brenner
An Analytical Approach for Relating Hardness and Yield Strength for Materials With High Ratio of Yield Strength to Young Modulus R11.10
Luc J. Vandeperre, Finn Giuliani, and William J. Clegg
On the Mechanics of Indentation Induced Lateral Cracking R11.11
Xi Chen
An Investigation of Non-linear Stress-Strain Behavior of Thin Metal Films R12.2
N. Huber, T. Dietz, and E. Tyulyukovskiy
Nanoindentation of Multilayer PZT/Pt/SiO2 Thin Film Systems on Silicon Wafers for MEMS Applications R12.3
C. Chima-Okereke, M.J. Reece, A.J. Bushby, R.W. Whatmore, and Q. Zhang
Microbridge Nanoindentation Testing of Plasma-Enhanced Chemical Vapor Deposited Silicon Oxide Films R12.4
Zhiqiang Cao, Tong-Yi Zhang, and Xin Zhang
Investigation of Indentation Methods for Properties Determination in Hard Film - Soft Substrate Systems R12.7
M.S. Kennedy, N.R. Moody, and D.F. Bahr
Non-Destructive Measurement of the Density of Thin Coatings by a Combination of Instrumented (Nano) Indentation and Acoustical Techniques R12.8
Nigel M. Jennett, Giles Aldrich-Smith, and Antony S. Maxwell
A Nanoindentation Study of Thermally-Grown-Oxide Films on Silicon R12.10
Fatih Helvaci and Junghyun Cho
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