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Issues
October 1978
ISSN 0094-4289
EISSN 1528-8889
In this Issue
Editorial
“Proof of the Pudding”; “Form Follows Function”
J. Eng. Mater. Technol. October 1978, 100(4): 337.
doi: https://doi.org/10.1115/1.3443500
Reports
Fifth Henniker Conference on National Materials Policy
J. Eng. Mater. Technol. October 1978, 100(4): 337.
doi: https://doi.org/10.1115/1.3443501
Research Papers
Factors Affecting the Notch Toughness of Carbon and Low-Alloy Steel Forgings for Pressure Vessel and Piping Applications
J. Eng. Mater. Technol. October 1978, 100(4): 338–347.
doi: https://doi.org/10.1115/1.3443502
Topics:
Alloys
,
Carbon
,
Forgings (Products)
,
Fracture toughness
,
Pipes
,
Pressure vessels
,
Steel
,
Forging
,
Heat treating (Metalworking)
,
Chemistry
Notch Effects, Stress State, and Ductility
J. Eng. Mater. Technol. October 1978, 100(4): 348–355.
doi: https://doi.org/10.1115/1.3443503
Topics:
Ductility
,
Stress
,
Tension
,
Design
,
Failure
,
Fracture (Materials)
,
Fracture (Process)
,
Geometry
,
Hydrostatics
,
Metals
Thermal Stresses in a Submerged-Arc Welded Joint Considering Phase Transformations
J. Eng. Mater. Technol. October 1978, 100(4): 356–362.
doi: https://doi.org/10.1115/1.3443504
Topics:
Finite element model
,
Phase transitions
,
Steel
,
Stress
,
Temperature
,
Temperature distribution
,
Thermal stresses
,
Transients (Dynamics)
,
Welded joints
,
Welding
An Analysis of High Temperature Metal Creep—Part I: Experimental Definition of an Alloy
J. Eng. Mater. Technol. October 1978, 100(4): 363–370.
doi: https://doi.org/10.1115/1.3443505
Topics:
Alloys
,
Creep
,
High temperature
,
Metals
,
Stress
,
Databases
,
Modeling
,
Temperature
An Analysis of High Temperature Metal Creep—Part II: A Constitutive Formulation and Verification
J. Eng. Mater. Technol. October 1978, 100(4): 371–380.
doi: https://doi.org/10.1115/1.3443506
Topics:
Creep
,
High temperature
,
Metals
,
Stress
,
Dimensions
,
Flow (Dynamics)
,
Viscoelasticity
Crack Growth Behavior in Alloy 718 at 425°C
J. Eng. Mater. Technol. October 1978, 100(4): 381–387.
doi: https://doi.org/10.1115/1.3443507
Topics:
Fracture (Materials)
,
Indium alloys
,
Stress
,
Cycles
,
Temperature
,
Alloys
,
Fracture mechanics
,
Fracture toughness
,
High temperature
Viscoplastic Constitutive Equations for Copper With Strain Rate History and Temperature Effects
J. Eng. Mater. Technol. October 1978, 100(4): 388–394.
doi: https://doi.org/10.1115/1.3443509
Topics:
Constitutive equations
,
Copper
,
Temperature effects
,
Temperature
A State Variable Interpretation of Some Rate-Dependent Inelastic Properties of Steel
J. Eng. Mater. Technol. October 1978, 100(4): 395–401.
doi: https://doi.org/10.1115/1.3443510
Topics:
Boundary-value problems
,
Creep
,
Stainless steel
,
Steel
,
Stress
,
Temperature
Dynamic Finite Element Analyses of Two Compact Specimens
J. Eng. Mater. Technol. October 1978, 100(4): 402–410.
doi: https://doi.org/10.1115/1.3443511
Topics:
Finite element analysis
,
Fracture (Materials)
,
Wedges
,
Stress
,
Crack propagation
,
Numerical analysis
,
Steel
Helium Blistering in Metals
J. Eng. Mater. Technol. October 1978, 100(4): 411–415.
doi: https://doi.org/10.1115/1.3443512
Topics:
Helium
,
Metals
,
Skin
,
Atoms
,
Bubbles
,
Contamination
,
Erosion
,
Fusion reactors
,
Plasmas (Ionized gases)
,
Pressure
Application of the R-Curve Concept to Fatigue Crack Growth
J. Eng. Mater. Technol. October 1978, 100(4): 416–420.
doi: https://doi.org/10.1115/1.3443513
Topics:
Fatigue cracks
,
Fracture (Materials)
,
Stress
,
Fatigue
,
Aluminum
,
Cycles
Plastic Deformation of Anisotropic Tubes in Hydraulic Bulging
J. Eng. Mater. Technol. October 1978, 100(4): 421–425.
doi: https://doi.org/10.1115/1.3443514
Topics:
Anisotropy
,
Deformation
,
Tension
,
Copper
,
Stress
,
Stress-strain curves
,
Theoretical analysis
Technical Briefs
The Stress Controlled High Cycle Fatigue Response of a Metastable Beta Titanium Alloy as Influenced by Several Test Variables
J. Eng. Mater. Technol. October 1978, 100(4): 426–428.
doi: https://doi.org/10.1115/1.3443515
Topics:
High cycle fatigue
,
Stress
,
Titanium alloys
On the Eversion of a Superplastic, Thin Walled Tube
J. Eng. Mater. Technol. October 1978, 100(4): 428–430.
doi: https://doi.org/10.1115/1.3443516
Topics:
Superplasticity
A Comparative Study of Various Empirical Relations Applicable in Hot Strip Rolling
J. Eng. Mater. Technol. October 1978, 100(4): 430–431.
doi: https://doi.org/10.1115/1.3443517
Topics:
Hot rolling
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