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Issues
July 1995
ISSN 0094-4289
EISSN 1528-8889
In this Issue
Technical Papers
Modeling and Numerical Analysis of Compression Molding of Three-Dimensional Thin Parts With Curing Process
J. Eng. Mater. Technol. July 1995, 117(3): 239–254.
doi: https://doi.org/10.1115/1.2804536
Flow Instability in the Torsional Straining of Commercially Pure Titanium
J. Eng. Mater. Technol. July 1995, 117(3): 255–259.
doi: https://doi.org/10.1115/1.2804537
Topics:
Flow instability
,
Titanium
,
Shear (Mechanics)
,
Temperature
,
Adiabatic processes (Thermodynamics)
,
Deformation
,
Specific heat
,
Stress
,
Torsion
An Investigation of Transient Creep by Means of Endochronic Viscoplasticity and Experiment
J. Eng. Mater. Technol. July 1995, 117(3): 260–268.
doi: https://doi.org/10.1115/1.2804538
Topics:
Creep
,
Transients (Dynamics)
,
Viscoplasticity
,
Stress
,
Metals
,
Plasticity
,
Stainless steel
Deformation Analysis of Simple-Shear Sheet Specimens
J. Eng. Mater. Technol. July 1995, 117(3): 269–277.
doi: https://doi.org/10.1115/1.2804539
Compressive Stress-Strain Relations and Shock Hugoniot Curves of Flexible Foams
J. Eng. Mater. Technol. July 1995, 117(3): 278–284.
doi: https://doi.org/10.1115/1.2804540
Topics:
Foams (Chemistry)
,
Shock (Mechanics)
,
Stress-strain relations
,
Density
,
Porous materials
,
Shapes
,
Shock waves
,
Stress
Nonproportional Low Cycle Fatigue Criterion for Type 304 Stainless Steel
J. Eng. Mater. Technol. July 1995, 117(3): 285–292.
doi: https://doi.org/10.1115/1.2804541
Topics:
Low cycle fatigue
,
Stainless steel
,
Fatigue
,
Hardening
,
Cylinders
,
Fatigue life
,
Plasticity
,
Stress
,
Temperature
Corrosion Fatigue of AZ91E-T6 Cast Magnesium Alloy in a 3.5 Percent NaCl Aqueous Environment
J. Eng. Mater. Technol. July 1995, 117(3): 293–298.
doi: https://doi.org/10.1115/1.2804542
Topics:
Corrosion
,
Fatigue
,
Magnesium alloys
,
Fatigue life
,
Fatigue testing
,
Stress
,
Fatigue cracks
,
Fracture (Materials)
,
Low cycle fatigue
Characterization of Elevated Temperature Crack Growth in Hastelloy-X Using Integral Parameters
J. Eng. Mater. Technol. July 1995, 117(3): 299–304.
doi: https://doi.org/10.1115/1.2804543
Compressive Fatigue of a Plasma Sprayed Zr02-8 wt%Y203 and Zr02-10wt%NiCrAlCoY TTBC
J. Eng. Mater. Technol. July 1995, 117(3): 305–310.
doi: https://doi.org/10.1115/1.2804544
Topics:
Fatigue
,
Plasmas (Ionized gases)
,
Cycles
,
Cathode ray oscilloscopes
,
Coatings
,
Compressive strength
,
High cycle fatigue
,
Stress
,
Temperature
,
Cermets
A Phenomenological Model for Intergranular Failure by r-type and Wedge-Type Cavitation
J. Eng. Mater. Technol. July 1995, 117(3): 311–321.
doi: https://doi.org/10.1115/1.2804545
Topics:
Cavitation
,
Failure
,
Wedges
,
Creep
,
Cavities
,
Grain boundaries
,
Low cycle fatigue
,
Temperature
,
Compression
,
Diffusion (Physics)
Shearographic and Holographic Assessment of Defective Laminates With Bond-Lines of Different Elasticities
J. Eng. Mater. Technol. July 1995, 117(3): 322–329.
doi: https://doi.org/10.1115/1.2804546
Topics:
Laminates
,
Elasticity
,
Plates (structures)
,
Adhesives
,
Brittleness
,
Diffraction patterns
,
Holography
,
Metals
,
Pressure
,
Vacuum
Effect of Surface Asperity on Interfacial Contact Process Controlled by Power Law Creep—Numerical Study of Viscoplastic Adhering Process
J. Eng. Mater. Technol. July 1995, 117(3): 330–335.
doi: https://doi.org/10.1115/1.2804547
Topics:
Creep
,
Deformation
,
Finite element analysis
,
Shrinkage (Materials)
,
Stress
Experimental Study of Interfacial Contacting Process Controlled by Power Law Creep
J. Eng. Mater. Technol. July 1995, 117(3): 336–340.
doi: https://doi.org/10.1115/1.2804548
Topics:
Creep
,
Bonding
,
Copper
,
Deformation
,
Finite element model
,
High temperature
,
Oxygen
,
Pressure
,
Shapes
,
Vacuum
An Investigation of the Effect of Speeds of Work Rolls on Rolling Strip
J. Eng. Mater. Technol. July 1995, 117(3): 341–346.
doi: https://doi.org/10.1115/1.2804549
Topics:
Strips
,
Aluminum
,
Deformation
,
Hot rolling
,
Temperature
,
Coolants
,
Finite difference methods
,
Numerical analysis
,
Simulation
,
Thermoelasticity
Technical Brief
Effect of State of Stress on Compression Failure in Carbon/Epoxy Laminates
J. Eng. Mater. Technol. July 1995, 117(3): 347–350.
doi: https://doi.org/10.1115/1.2804550
Topics:
Carbon
,
Compression
,
Epoxy adhesives
,
Epoxy resins
,
Failure
,
Laminates
,
Stress
,
Composite materials
,
Fibers
,
Bond strength
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