Sub-structure and mechanical properties of twist channel angular pressed aluminium
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- Type
- article
- Published
- 2016-09-01
- Cited by
- 42
- References
- 44
- OpenAlex
- https://openalex.org/W2484869214
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:138277033
Keywords
Materials science, Pressing, Indentation hardness, Aluminium, Ultimate tensile strength
References
- Microstructure and texture evolution of Al-7075 alloy processed by equal channel angular pressing
- FEA of plastic flow in AZ63 alloy during ECAP process
- Microstructural and texture changes during equal channel angular pressing of an Al–Mg–Sc alloy
- Review: Overcoming the paradox of strength and ductility in ultrafine-grained materials at low temperatures
- Simple shear model of twist extrusion and its deviations
- Feasibility of attaining uniform grain structure and enhanced ductility in aluminum alloy by employing a beveled punch in equal-channel angular pressing
- Introduction to texture analysis : macrotexture, microtexture and orientation mapping
- Structure-Property Relations in Nonferrous Metals
- Principles of equal-channel angular pressing as a processing tool for grain refinement
- A model of grain fragmentation based on lattice curvature
- Microtexture and microstructure evolution during processing of pure aluminum by repetitive ECAP
- Equal channel angular pressing die to extrude a variety of materials
- Fabrication and characterization of cold-swaged multilayered Al–Cu clad composites
- Effect of the route and strain of equal-channel angular pressing on structure and properties of oxygen-free copper
- Numerical and experimental analysis of twist channel angular pressing (TCAP) as a SPD process
- Influence of ECAP processing parameters on texture and microstructure of commercially pure aluminum
- ECAP with back pressure for optimum strength and ductility in aluminium alloy 6016. Part 1: microstructure
- A hybrid model on severe plastic deformation of copper
- Useful properties of twist extrusion
- Metals and alloys nanostructured by severe plastic deformation: Commercialization pathways
Cited by
- Improvement of mechanical and electrical properties of rotary swaged Al-Cu clad composites
- Advances in metals and alloys for joint replacement
- Effect of ECAP process on structure and hardness of AlMg3 aluminium alloy
- Microstructure and creep behaviour of P92 steel after HPT
- Natural ageing of aluminium processed by twist channel angular pressing
- Deformation behaviour of Cu-Al clad composites produced by rotary swaging
- Characterization of innovative rotary swaged Cu-Al clad composite wire conductors
- Microstructure, grain refinement and hardness of Al-3%Mg aluminium alloy processed by ECAP with helical die
- Improving the combination of electrical conductivity and tensile strength of Al 1070 by rotary swaging deformation
- Study of structure of naturally aged aluminium after twist channel angular pressing
- Mechanical behavior and texture evolution of aluminum alloys subjected to strain path changes: Experiments and modeling
- Optimization of die design parameters and experimental validation on twist channel angular pressing process of AA6061-T6 aluminium alloy
- Analysis of Deformation Behaviour and Residual Stress in Rotary Swaged Cu/Al Clad Composite Wires
- Fatigue Life of 7475-T7351 Aluminum After Local Severe Plastic Deformation Caused by Machining
- Influence of Multiaxial Cryoforging on Microstructural, Mechanical, and Corrosion Properties of Copper-Titanium Alloy
- Affecting Structure Characteristics of Rotary Swaged Tungsten Heavy Alloy Via Variable Deformation Temperature
- Correlating Microstrain and Activated Slip Systems with Mechanical Properties within Rotary Swaged WNiCo Pseudoalloy
- Effect of Temperature on Strength and Hardness in Multi-pass Equal Channel Angular Pressing (ECAP) of Aluminum Alloys
- Decade of Twist Channel Angular Pressing: A Review
- Texture and Differential Stress Development in W/Ni-Co Composite after Rotary Swaging
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