Register      Login
Australian Journal of Physics Australian Journal of Physics Society
A journal for the publication of original research in all branches of physics

Articles citing this paper

The Plastic Resistance of Crystals

JJ Gilman
13(2) pp.327 - 346


128 articles found in Crossref database.

Pressure Dependence of the Mobility of Dislocations in Lithium Fluoride Crystals
Haworth W. L., Davis L. A., Gordon R. B.
Journal of Applied Physics. 1968 39(8). p.3818
Low-temperature deformation mechanisms in LiF single crystals
Fotedar H. L., Stoebe T. G.
Physica Status Solidi (a). 1975 31(2). p.399
Mechanical behavior of Li-ion-conducting crystalline oxide-based solid electrolytes: a brief review
Wolfenstine Jeff, Allen Jan L., Sakamoto Jeff, Siegel Donald J., Choe Heeman
Ionics. 2018 24(5). p.1271
A prototypical model of a dislocation source capable of generating shear band structures in crystalline solids during shock or impact
Coffey C. S.
Journal of Applied Physics. 1989 66(4). p.1654
Consequences of asymmetric energy barriers to dislocation motion
Li J.C.M
Acta Metallurgica. 1970 18(10). p.1099
The influence of a limiting dislocation flux on the mechanical response of polycrystalline metals
Kelly James M., Gillis Peter P.
International Journal of Solids and Structures. 1974 10(1). p.45
Encyclopedia of Materials: Science and Technology (2001)
Gilman J.J.
Mechanical properties of the solid Li-ion conducting electrolyte: Li0.33La0.57TiO3
Cho Yong-Hun, Wolfenstine Jeff, Rangasamy Ezhiylmurugan, Kim Hyunjoong, Choe Heeman, Sakamoto Jeff
Journal of Materials Science. 2012 47(16). p.5970
Dislocations and plasticity in [113] CoSi2 single crystals between room temperature and 1173 K
Anongba P. N. B., Steinemann S. G.
Physica Status Solidi (a). 1993 140(2). p.391
Stress relaxation and the use of the Johnston-Gilman equation in the analysis of thermally activated flow in α-iron
Kelly P.M., Round J.M.
Scripta Metallurgica. 1969 3(2). p.85
Dislocation Mobility in Crystals
Gilman J. J.
Journal of Applied Physics. 1965 36(10). p.3195
Dislocation dynamics and the theory of the plasticity of single crystals
Lardner R. W.
Zeitschrift für angewandte Mathematik und Physik ZAMP. 1969 20(4). p.514
Microhardness of tetrahedrally bonded semiconductors
Garbato L., Ruucci A.
Philosophical Magazine. 1977 35(6). p.1681
(1962)
Gilman J.J., Johnston W.G.
Encyclopedia of Continuum Mechanics (2019)
Lea Lewis J., Walley Stephen M.
Spark plasma sintering of ductile ceramic particles: study of LiF
Marder R., Estournès C., Chevallier G., Kalabukhov S., Chaim R.
Journal of Materials Science. 2014 49(15). p.5237
CRSS anisotropy and tension/compression asymmetry of a commercial superalloy
Nitz A., Lagerpusch U., Nembach E.
Acta Materialia. 1998 46(13). p.4769
On stress relaxation of titanium
Medrano R.E.
Scripta Metallurgica. 1972 6(9). p.771
Microyielding in iron at low temperatures
Kossowsky R., Brown N.
Acta Metallurgica. 1966 14(2). p.131
Dislocations Observed in NaF Crystals. I. Rosette Structure and Its Changes under External Stress
Kubo Kazuko
Journal of the Physical Society of Japan. 1970 28(1). p.177
Theory of Dislocation Mobility in Semiconductors
Celli V., Kabler M., Ninomiya T., Thomson R.
Physical Review. 1963 131(1). p.58
Approaching Practically Accessible Solid-State Batteries: Stability Issues Related to Solid Electrolytes and Interfaces
Chen Rusong, Li Qinghao, Yu Xiqian, Chen Liquan, Li Hong
Chemical Reviews. 2020 120(14). p.6820
Physical chemistry of intrinsic hardness
Gilman John J.
Materials Science and Engineering: A. 1996 209(1-2). p.74
Dislocation Dynamics and Precursor Attenuation
Kelly James M., Gillis Peter P.
Journal of Applied Physics. 1967 38(10). p.4044
On the use of the stress relaxation testing method in studies of the mechanical behaviour of geological materials
Rutter E. H., Atkinson B. K., Mainprice D. H.
Geophysical Journal International. 1978 55(1). p.155
Understanding size effects on the strength of single crystals through high-temperature micropillar compression
Soler Rafael, Wheeler Jeffrey M., Chang Hyung-Jun, Segurado Javier, Michler Johann, Llorca Javier, Molina-Aldareguia Jon M.
Acta Materialia. 2014 81 p.50
Hardness of Crystals with NaCl Structure and the Significance of the GILMAN‐CHIN Parameter
Sirdeshmukh D. B., Subhadra K. G., Kishan Rao K., Thirmal Rao T.
Crystal Research and Technology. 1995 30(6). p.861
Chemistry and Physics of Mechanical Hardness (2009)
Order strengthening: recent developments, with special reference to aluminium–lithium-alloys
Nembach Eckhard
Progress in Materials Science. 2000 45(4). p.275
Tensile properties of a high-purity iron from -196°C to 200°C at two rates of strain
Pugh H. Ll. D., Chang S. S., Hopkins B. E.
Philosophical Magazine. 1963 8(89). p.753
The critical resolved shear stress of a superalloy as a combination of those of its γ matrix and γ′ precipitates
Nitz Astrid, Nembach Eckhard
Metallurgical and Materials Transactions A. 1998 29(3). p.799
Extension of Unoriented Nylon 66 Filaments. III. Superposition of Data
Williams Malcolm L., Bender Malcolm F.
Journal of Applied Physics. 1965 36(10). p.3044
Plasticity (1960)
GILMAN J.J.
The mechanics and physics of high-speed dislocations: a critical review
Gurrutxaga–Lerma Beñat, Verschueren Jonas, Sutton Adrian P., Dini Daniele
International Materials Reviews. 2021 66(4). p.215
Electronic mechanism of hardness enhancement in transition-metal carbonitrides
Jhi Seung-Hoon, Ihm Jisoon, Louie Steven G., Cohen Marvin L.
Nature. 1999 399(6732). p.132
Effects of alloying elements on elastic properties of Ni by first-principles calculations
Kim DongEung, Shang Shun-Li, Liu Zi-Kui
Computational Materials Science. 2009 47(1). p.254
Dynamic Transverse Deflection of a Free Mild-Steel Plate
Bish Robert L.
World Journal of Mechanics. 2013 03(09). p.339
Stress dependences of dislocation velocities
Gillis Peter P., Gilman John J., Taylor John W.
Philosophical Magazine. 1969 20(164). p.279
Stress Relaxation in Crystals
Dotsenko V. I.
physica status solidi (b). 1979 93(1). p.11
Dynamic dislocation behavior in ``pure'' magnesium oxide single crystals
Singh R. N., Coble R. L.
Journal of Applied Physics. 1974 45(3). p.981
Plastic deformation of FeNi invar alloys
Flor H, Gudladt H.J, Schwink Ch
Acta Metallurgica. 1980 28(12). p.1611
Dislocation mobility in potassium and iron single crystals
Urabe N, Weertman J
Materials Science and Engineering. 1975 18(1). p.41
Dislocation Velocities in a Linear Chain
Weiner J. H.
Physical Review. 1964 136(3A). p.A863
Formation of plastic enclaves at running brittle cracks
Dvorak G. J.
International Journal of Fracture Mechanics. 1971 7(3). p.251
Radiation Hardening in Alkali-Halide Crystals
Nadeau John S.
Journal of Applied Physics. 1964 35(4). p.1248
High-Pressure Shock Compression of Solids III (1998)
Coffey C. S.
The localization of energy and plastic deformation in crystalline solids during shock or impact
Coffey C. S.
Journal of Applied Physics. 1991 70(8). p.4248
Low-temperature elastic properties of four austenitic stainless steels
Ledbetter H. M., Weston W. F., Naimon E. R.
Journal of Applied Physics. 1975 46(9). p.3855
Defects in the sphalerite structure
Holt D.B.
Journal of Physics and Chemistry of Solids. 1962 23(10). p.1353
Review: Indentation size effect, indentation cracks and microhardness measurement of brittle crystalline solids – some basic concepts and trends
Sangwal K.
Crystal Research and Technology. 2009 44(10). p.1019
Advances in Cryogenic Engineering (1978)
Ledbetter H. M.
Mechanical properties of NaSICON: a brief review
Wolfenstine Jeff, Go Wooseok, Kim Youngsik, Sakamoto Jeff
Ionics. 2023 29(1). p.1
Visco-elastic model of a moving dislocation
Sleeswyk A.W.
Scripta Metallurgica. 1970 4(8). p.599
Dislocation mobility in crystals containing small amounts of impurities
Ishii K.
Philosophical Magazine. 1976 33(6). p.909
Constitutive Relations under Impact Loadings (2014)
Pęcherski Ryszard B., Nalepka Kinga, Frąś Teresa, Nowak Marcin
Влияние примеси свинца на разрушение кристаллов NaCl под действием излучения рубинового лазера
Набатов В. В., Беляев Л. М., Дыменко Н. Н., Воска Р.
Acta Physica Academiae Scientiarum Hungaricae. 1979 47(1-3). p.107
Deformation of Ceramic Materials (1975)
Chin G. Y.
Magnetar activity mediated by plastic deformations of neutron star crust
Lyutikov Maxim
Monthly Notices of the Royal Astronomical Society. 2015 447(2). p.1407
Dynamic formation and release of a dislocation pile-up against a viscous obstacle
Gerstle F. P., Dvorak G. J.
Philosophical Magazine. 1974 29(6). p.1337
The Chemical Structure of Solids (1973)
Wernick J. H.
Comment on the relation between dislocation velocity and stress
Li J.C.M.
Scripta Metallurgica. 1970 4(12). p.991
Mechanical Behavior of Materials under Dynamic Loads (1968)
Gilman J. J.
Ternary Chalcopyrite Semiconductors: Growth, Electronic Properties, and Applications (1975)
SHAY J.L., WERNICK J.H.
Dislocation Dynamics and Single-Crystal Constitutive Relations: Shock-Wave Propagation and Precursor Decay
Johnson J. N., Jones O. E., Michaels T. E.
Journal of Applied Physics. 1970 41(6). p.2330
LiCoPO4 mechanical properties evaluated by nanoindentation
Wolfenstine J., Allen J.L., Jow T.R., Thompson T., Sakamoto J., Jo H., Choe H.
Ceramics International. 2014 40(8). p.13673
Stability of superconducting magnet systems subject to thermal disturbances
Chechetkin V.R., Sigov A.S.
Physics Reports. 1989 176(1-2). p.1
Effect of internal stresses on the apparent stress dependence of dislocation velocities
Nix William D., Coghlan William A., Barrett Craig R.
Materials Science and Engineering. 1969 4(2-3). p.98
Mechanisms Underlying Hardness Numbers
Gilman John J.
MRS Proceedings. 2004 841
Dislocations and stacking faults
Christian J W, Vítek V
Reports on Progress in Physics. 1970 33(1). p.307
Metallurgical Effects at High Strain Rates (1973)
Gillis Peter P., Kelly James M., Vreeland T., Jassby K. M., McClintock Frank A.
Electronic Basis of the Strength of Materials (2001)
Dislocation Velocities
GILLIS PETER P.
Nature. 1966 209(5028). p.1119
Operational nucleation in martensitic transformations
Cohen Morris
Metallurgical Transactions. 1972 3(5). p.1095
Superconductivity of Transition Metals (1982)
Vonsovsky Serghey V., Izyumov Yuri. A., Kurmaev Ernst Z.
Dynamical Dislocation Theory of Crystal Plasticity. I. The Yield Stress
Gillis Peter P., Gilman John J.
Journal of Applied Physics. 1965 36(11). p.3370
On the nature of the stress function for thermally activated flow
Padmanabhan K.A.
Scripta Metallurgica. 1973 7(2). p.137
Origins of strengthening and toughening effects in twinned nanocrystalline alloys of low stacking fault energy with heterogeneous grain structure
Gan Kefu, Yan Dingshun, Zhang Yong, Li Zhiming
Journal of the Mechanics and Physics of Solids. 2023 176 p.105305
Shock Compression of Condensed Matter–1991 (1992)
COFFEY Charles S., DAVIS Jeffery J., WOODY Diana L.
Dislocation Mobility in Germanium
Kabler M. N.
Physical Review. 1963 131(1). p.54
Correlating the effect of dopant type (Al, Ga, Ta) on the mechanical and electrical properties of hot-pressed Li-garnet electrolyte
Han Gigap, Kinzer Bryan, Garcia-Mendez Regina, Choe Heeman, Wolfenstine Jeff, Sakamoto Jeff
Journal of the European Ceramic Society. 2020 40(5). p.1999
Velocity of moving edge dislocations in a crystalline solid
Coffey C. S.
Physical Review B. 1986 34(8). p.5674
On stress relaxation of zirconium tubing
Medrano R.E.
Journal of Nuclear Materials. 1976 60(3). p.306
A Pelletizing Model and Its Application to Radioactive Waste Treatment
Chino Koichi, Matsuda Masami, Kawamura Fumio, Yusa Hideo, Horiuchi Susumu, Kikuchi Makoto
Nuclear Technology. 1984 67(3). p.429
Hardness and bounding in A15 superconducting compounds
Chin G. Y., Wernick J. H., Geballe T. H., Mahajan S., Nakahara S.
Applied Physics Letters. 1978 33(1). p.103
Stress relaxation from initial stress levels below yield
Gillis Peter P., Sargent Gordon A.
Materials Research Bulletin. 1971 6(6). p.451
Molybdenum effect on Fe–Cr–Ni-alloy elastic constants
Ledbetter H. M., Kim S. A.
Journal of Materials Research. 1988 3(1). p.40
Young-modulus determination of an orthotropic thin plate in the through-thickness direction
Kim Sudook, Ledbetter Hassel
Journal of Applied Physics. 1999 85(12). p.8490
Plane strain plasticity of single crystals
Lardner R.W.
International Journal of Engineering Science. 1969 7(4). p.417
The Theory of Transformations in Metals and Alloys (2002)
CHRISTIAN J.W.
Plasticity of bcc micropillars controlled by competition between dislocation multiplication and depletion
Ryu Ill, Nix William D., Cai Wei
Acta Materialia. 2013 61(9). p.3233
Review on current state, challenges, and potential solutions in solid-state batteries research
Moradi Zahra, Lanjan Amirmasoud, Tyagi Ramavtar, Srinivasan Seshasai
Journal of Energy Storage. 2023 73 p.109048
Elastic Properties of Metal-Oxide Superconductors
Ledbetter Hassel
JOM. 1988 40(1). p.24
Deformation strengthening of beryllium
Khristenko I. N., Papirov I. I.
Strength of Materials. 1975 7(11). p.1397
Superplasticity, creep and grain-boundary sliding
Gifkins R.C.
Scripta Metallurgica. 1973 7(1). p.27
Materials at Low Temperatures (1983)
Ledbetter H. M.
Mechanical hardness: A semiempirical theory based on screened electrostatics and elastic shear
Clerc D.G., Ledbetter H.M.
Journal of Physics and Chemistry of Solids. 1998 59(6-7). p.1071
Compressibility and hardness of Co-based bulk metallic glass: A combined experimental and density functional theory study
Wang Jianfeng, Li Ran, Xiao Ruijuan, Xu Tao, Li Yan, Liu Zengqian, Huang Lu, Hua Nengbin, Li Gong, Li Yanchun, Zhang Tao
Applied Physics Letters. 2011 99(15).
Mechanisms Underlying Hardness Numbers
Gilman John J.
MRS Proceedings. 2004 843
Equivalence of and T in plastic deformation of B.C.C. metals
Sleeswyk A.W.
Scripta Metallurgica. 1970 4(3). p.225
Dynamics of Materials (2019)
Temperature dependence of yielding and work-hardening rates in magnesium oxide single crystals
Srinivasan M., Stoebe T. G.
Journal of Materials Science. 1974 9(1). p.121
Notice of Violation of IEEE Publication Principles - The first principles study on the effects of alloying element on elastic properties of Ni
2011 International Conference on Remote Sensing, Environment and Transportation Engineering (2011)
Yongjun Jiang
The rheological properties of annealed tantalum
Hoge K. G., Gillis P. P.
Metallurgical Transactions. 1971 2(1). p.261
Dislocation dynamics and mechanical properties of crystals
Nadgornyi E.
Progress in Materials Science. 1988 31 p.1
Facile synthesis of powder-based processing of porous aluminum nitride
Nam Kyungju, Hong Kicheol, Park Hyeji, Choe Heeman
Journal of the European Ceramic Society. 2018 38(4). p.1164
Direct observations of the geometry of defects in germanium
Holt D. B., Dangor A. E.
Philosophical Magazine. 1963 8(95). p.1921
Mechanics of Generalized Continua (1968)
Mura T.
On the analysis of stress relaxation data
Povolo F.
Journal of Nuclear Materials. 1981 96(1-2). p.178
The Shape of Stress Relaxation Curves and the Mechanical Equation of State in Molybdenum
Tanoue Koji, Nakano Osamu, Matsuda Hidehiko
Transactions of the Japan Institute of Metals. 1983 24(4). p.205
Growth path of a martensitic particle
Raghavan V, Cohen M
Acta Metallurgica. 1972 20(6). p.779
Effect of Hydrostatic Pressure on Dislocation Mobility in Lithium Fluoride
Hanafee J. E., Radcliffe S. V.
Journal of Applied Physics. 1967 38(11). p.4284
Influence of sintering temperature on conductivity and mechanical behavior of the solid electrolyte LATP
Yan Gang, Yu Shicheng, Nonemacher Juliane Franciele, Tempel Hermann, Kungl Hans, Malzbender Jürgen, Eichel Rüdiger-A., Krüger Manja
Ceramics International. 2019 45(12). p.14697
Factors affecting the mechanical behavior of lithium fluoride single crystals
Fotedar H.L., Stoebe T.G.
Scripta Metallurgica. 1968 2(8). p.443
Microhardness of AN−1 BN + 1 C Chalcopyrite Semiconductors
Kumar V., Prasad G. M., Chandra D.
physica status solidi (b). 1992 170(1). p.77
Properties of Materials for Liquefied Natural Gas Tankage (1975)
Weston WF, Naimon ER, Ledbetter HM
Stress relaxation in bending of type AISI 304 and A-286 steels at 773 K
Povolo F., Tinivella R.
Journal of Materials Science. 1984 19(6). p.1851
On the Kinetics of Plastic Deformation of Some Alkali Halide Crystals
Komnik S. N., Bengus V. Z., Lyak E. D.
physica status solidi (b). 1967 19(2). p.533
Microhardness and bulk modulus of binary tetrahedral semiconductors
Kumar V., Prasad G.M., Chetal A.R., Chandra Dinesh
Journal of Physics and Chemistry of Solids. 1996 57(4). p.503
The Gilman Drag Stress commercially pure aluminum
Gillis Peter P., Hockett John E.
Materials Science and Engineering. 1971 7(2). p.71
Debris Mechanism of Strain-Hardening
Gilman J. J.
Journal of Applied Physics. 1962 33(9). p.2703
Dislocation acceleration
Gillis Peter P., Kratochvil Jan
The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics. 1970 21(170). p.425
Hardness, yield strength and young's modulus in Halide crystals
Chin G.Y., Van Uitert L.G., Green M.L., Zydzik G.
Scripta Metallurgica. 1972 6(6). p.475
Dislocation Multipoles and Their Role in Strain-Hardening
Chen H. S., Gilman J. J., Head A. K.
Journal of Applied Physics. 1964 35(8). p.2502
Encyclopedia of Continuum Mechanics (2020)
Lea Lewis J., Walley Stephen M.
Experimental Study of Mobile Dislocation Densities and Velocities through Transient Mechanical Tests
Piccolo B. Lo, Martin J.L., Bonneville J.
MRS Proceedings. 1999 578
Finite-temperature stress calculations in atomic models using moments of position
Parthasarathy Ranganathan, Misra Anil, Ouyang Lizhi
Journal of Physics: Condensed Matter. 2018 30(26). p.265901
Effects of grain size on dynamic yielding in explosively loaded mild steel
Jones O.E, Holland J.R
Acta Metallurgica. 1968 16(8). p.1037
Chemistry and Physics of Mechanical Hardness (2009)
Abstract Export Citation

Share

Share on Facebook Share on Twitter Share on LinkedIn Share via Email