Works matching DE "CREEP (Materials)"
Results: 3378
Study the Effects of Casting Revert–Virgin Alloy with Different Portion of Return (Revert) Materials on Microstructure, Mechanical Properties, and Creep Resistance of Inconel 713LC.
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- International Journal of Metalcasting, 2025, v. 19, n. 1, p. 432, doi. 10.1007/s40962-024-01304-w
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Microstructurally Adaptive Model for Evolution of Creep Due to Aging in SnAgCu Solder Alloys: Microstructurally Adaptive Model...: S. C. Chavali et al.
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- Journal of Electronic Materials, 2025, v. 54, n. 3, p. 2404, doi. 10.1007/s11664-024-11701-w
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About the Journal Mechanics of Composite Materials (MCM).
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- Mechanics of Composite Materials, 2025, v. 60, n. 6, p. 1041, doi. 10.1007/s11029-025-10243-4
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- Article
A Multiscale Model of Creep in Steels with Account for the Microstructure.
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- Physics of Metals & Metallography, 2024, v. 125, n. 11, p. 1291, doi. 10.1134/S0031918X24601616
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The influence of dispersoids and solutes on the recovery processes of creep deformation in an Al–Si–Mg–Cu (Mo, Mn) diesel engine alloy.
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- Journal of Materials Science, 2025, v. 60, n. 5, p. 2554, doi. 10.1007/s10853-024-10566-y
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The tensile behaviour of paper under high loading rates.
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- Cellulose, 2025, v. 32, n. 2, p. 1201, doi. 10.1007/s10570-024-06266-0
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Comparative Study on the Creep Behavior of a Hybrid Composite Material Doped with Nano Material.
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- International Journal on Advanced Science, Engineering & Information Technology, 2024, v. 14, n. 6, p. 1951, doi. 10.18517/ijaseit.14.6.15958
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Calibration strategies for long-term strain forecasting in high-rise building columns.
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- Structural Health Monitoring, 2024, v. 23, n. 5, p. 2653, doi. 10.1177/14759217231207762
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Long-term creep monitoring of composite wing leading edge using embedded fiber Bragg grating.
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- Structural Health Monitoring, 2024, v. 23, n. 4, p. 2001, doi. 10.1177/14759217231202919
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Reliability analysis of complex structures based on Bayesian inference.
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- Structural Health Monitoring, 2023, v. 22, n. 5, p. 3481, doi. 10.1177/14759217231152798
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Analysis of Steel Fiber-Reinforced Concrete Elements Subjected to Shear.
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- ACI Structural Journal, 2016, v. 113, n. 2, p. 275, doi. 10.14359/51688474
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Long-Term Performance of Adhesive Bonded Anchors.
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- ACI Structural Journal, 2016, v. 113, n. 2, p. 251, doi. 10.14359/51688060
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Modeling of Near-Surface-Mounted Carbon Fiber- Reinforced Polymer for Strengthening Reinforced Concrete Beams in Sustained Load.
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- ACI Structural Journal, 2015, v. 112, n. 6, p. 805, doi. 10.14359/51687659
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Pervasiveness of Excessive Segmental Bridge Deflections: Wake-Up Call for Creep.
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- ACI Structural Journal, 2011, v. 108, n. 6, p. 766, doi. 10.14359/51683375
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Room temperature nanoindentation creep of nitrocarburised AISI 4140 steel.
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- Surface Engineering, 2019, v. 35, n. 8, p. 719, doi. 10.1080/02670844.2018.1564994
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Influence of Media–Thermal Ageing on the Long‐Term Creep Behavior of Polypropylene.
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- Macromolecular Symposia, 2022, v. 403, n. 1, p. 1, doi. 10.1002/masy.202200099
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Advanced Short‐Term Approaches to Estimate the Long‐Term Mechanical Behavior of Polymers at Static Loading Conditions.
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- Macromolecular Symposia, 2018, v. 379, n. 1, p. 1, doi. 10.1002/masy.201700007
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Accelerated Tests for Lifetime Prediction of PE-HD Pipe Grades.
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- Macromolecular Symposia, 2017, v. 373, n. 1, p. n/a, doi. 10.1002/masy.201600096
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Time-Lapsing Evaluation of the Retardation Behaviour of Polypropylene Homo- and Copolymers using the Stepped Isothermal Method based on Depth-Sensing Macroindentation.
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- Macromolecular Symposia, 2017, v. 373, n. 1, p. n/a, doi. 10.1002/masy.201600137
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Creep-Fatigue Relationship in Polymer: Molecular Dynamics Simulations Approach.
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- Macromolecular Theory & Simulations, 2015, v. 24, n. 1, p. 65, doi. 10.1002/mats.201400041
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Numerical Simulation of Water Flow from the Coal Seam Floor in a Deep Longwall Mine in China.
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- Mine Water & the Environment, 2016, v. 35, n. 2, p. 243, doi. 10.1007/s10230-016-0385-5
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Aging behavior of fully 3D printed microfluidic devices.
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- International Journal of Advanced Manufacturing Technology, 2024, v. 134, n. 1/2, p. 569, doi. 10.1007/s00170-024-14149-8
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Creep anisotropy reduction and improvement via post-heat treatment in yttrium-added Hastelloy-X fabricated by laser powder bed fusion.
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- International Journal of Advanced Manufacturing Technology, 2023, v. 126, n. 3/4, p. 1593, doi. 10.1007/s00170-023-11237-z
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An efficient closed-form solution for springback prediction and compensation in elastic–plastic creep age forming.
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- International Journal of Advanced Manufacturing Technology, 2023, v. 125, n. 3/4, p. 1115, doi. 10.1007/s00170-022-10607-3
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Creep behavior of polyamide 12, produced by selective laser sintering with different build orientations.
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- International Journal of Advanced Manufacturing Technology, 2022, v. 121, n. 5/6, p. 3285, doi. 10.1007/s00170-022-09446-z
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Experimental comparative investigation on creep behavior of mineral cast, ultra-high-performance concrete, and natural stone for precision machinery structures.
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- International Journal of Advanced Manufacturing Technology, 2021, v. 117, n. 7/8, p. 2073, doi. 10.1007/s00170-021-07118-y
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Comparative evaluation of creep response of X20 and P91 steam piping networks in operation.
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- International Journal of Advanced Manufacturing Technology, 2020, v. 109, n. 7/8, p. 1987, doi. 10.1007/s00170-020-05727-7
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An accelerated springback compensation method for creep age forming.
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- International Journal of Advanced Manufacturing Technology, 2019, v. 102, n. 1-4, p. 121, doi. 10.1007/s00170-018-3175-3
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Development of similarity-based scaling criteria for creep age forming of large/extra-large panels.
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- International Journal of Advanced Manufacturing Technology, 2019, v. 101, n. 5-8, p. 1537, doi. 10.1007/s00170-018-2976-8
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Towards the understanding of creep-feed deep grinding of DD6 nickel-based single-crystal superalloy.
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- International Journal of Advanced Manufacturing Technology, 2019, v. 100, n. 1-4, p. 445, doi. 10.1007/s00170-018-2686-2
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Improving the performance of profile grinding wheels with helical grooves.
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- International Journal of Advanced Manufacturing Technology, 2018, v. 97, n. 5-8, p. 2331, doi. 10.1007/s00170-018-2098-3
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Experimental study of chemical mechanical polishing of the final surfaces of cemented carbide inserts for effective cutting austenitic stainless steel.
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- International Journal of Advanced Manufacturing Technology, 2018, v. 95, n. 9-12, p. 4129, doi. 10.1007/s00170-017-1493-5
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Investigation on the creep-age forming of an integrally-stiffened AA2219 alloy plate: experiment and modeling.
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- International Journal of Advanced Manufacturing Technology, 2018, v. 95, n. 5-8, p. 2015, doi. 10.1007/s00170-017-1248-3
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Stress corrosion cracking: characteristics, mechanisms and experimental study.
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- International Journal of Advanced Manufacturing Technology, 2017, v. 93, n. 9-12, p. 3567, doi. 10.1007/s00170-017-0709-z
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Investigation of creep-age forming of aluminum lithium alloy stiffened panel with complex structures and variable curvature.
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- International Journal of Advanced Manufacturing Technology, 2017, v. 91, n. 9-12, p. 3265, doi. 10.1007/s00170-017-0004-z
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CAF-a simplified approach to calculate springback in Al 7050 alloys.
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- International Journal of Advanced Manufacturing Technology, 2017, v. 91, n. 9-12, p. 3273, doi. 10.1007/s00170-016-9839-y
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On the creep problem of soft-rigid interfaces: analysis of the normal contact behavior and application of creep models.
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- Granular Matter, 2024, v. 26, n. 1, p. 1, doi. 10.1007/s10035-023-01377-0
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Mobility in granular materials upon cyclic loading.
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- Granular Matter, 2018, v. 20, n. 4, p. 1, doi. 10.1007/s10035-018-0838-6
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Examining the mechanisms of sand creep using DEM simulations.
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- Granular Matter, 2014, v. 16, n. 5, p. 733, doi. 10.1007/s10035-014-0514-4
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Time-dependent behavior of fine-grained model material in resonant column experiments.
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- Granular Matter, 2004, v. 6, n. 4, p. 195, doi. 10.1007/s10035-004-0178-6
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- Article
The Rheological Models of Becker, Scott Blair, Kolsky, Lomnitz and Jeffreys Revisited, and Implications for Wave Attenuation and Velocity Dispersion.
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- Surveys in Geophysics, 2024, v. 45, n. 3, p. 695, doi. 10.1007/s10712-024-09830-2
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- Article
Deformation and Permeability Evolution of Petroleum Cement Paste Subjected to Chemical Degradation Under Temperature.
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- Transport in Porous Media, 2011, v. 86, n. 3, p. 719, doi. 10.1007/s11242-010-9648-y
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The small and large lags of the elastic and anelastic tides.
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- Astronomy & Astrophysics / Astronomie et Astrophysique, 2015, v. 579, p. 1, doi. 10.1051/0004-6361/201525900
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Turbulent creep.
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- Nature, 2001, v. 410, n. 6829, p. 647, doi. 10.1038/35070701
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Memories of paste.
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- Nature, 2001, v. 410, n. 6824, p. 32, doi. 10.1038/35065199
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The Structural-Mechanical State of 12Kh1MF Steel of TPP Pipeline Bend after Long-Term Operation.
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- Materials Science, 2023, v. 59, n. 3, p. 320, doi. 10.1007/s11003-024-00780-z
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Acoustic-Emission Method for Determining Residual Life of Power Equipment with Creep Cracks Under Static Load.
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- Materials Science, 2023, v. 59, n. 1, p. 103, doi. 10.1007/s11003-023-00750-x
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Behaviors of (Ti, C)-Containing Cast (Co, Ni)-Based Superalloys in Oxidation and Creep at 1200°C.
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- Materials Science, 2023, v. 58, n. 5, p. 609, doi. 10.1007/s11003-023-00706-1
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Creep Resistance of Ti–Al–Si–X Titanium Alloys in Short-Term Bending Tests.
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- Materials Science, 2022, v. 57, n. 5, p. 716, doi. 10.1007/s11003-022-00600-2
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Modeling of the Deformation of Structural Elements Under the Conditions of Creep, Corrosion Cracking, and Hydrogenation.
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- Materials Science, 2022, v. 57, n. 4, p. 557, doi. 10.1007/s11003-022-00578-x
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