Cladding is a proven method that boosts the surface qualities of mechanical parts by applying a layer of more durable material over a base substrate. This work responds to the needs of offshore and pressure vessels sectors by focusing on cladding a super austenitic steel onto low‐carbon steel through gas tungsten arc welding.
E. J. da Cruz Junior +6 more
wiley +1 more source
Comparative analysis of copper and graphite electrodes in EDM of Al-SiC metal matrix composites. [PDF]
Shahapur B +5 more
europepmc +1 more source
Al-Mg-MoS2 Reinforced Metal Matrix Composites: Machinability Characteristics. [PDF]
Shanmugavel R +8 more
europepmc +1 more source
A micromechanics-based strength prediction methodology for notched metal matrix composites [PDF]
An analytical micromechanics based strength prediction methodology was developed to predict failure of notched metal matrix composites. The stress-strain behavior and notched strength of two metal matrix composites, boron/aluminum (B/Al) and silicon ...
Bigelow, C. A.
core +1 more source
Numerical Modeling of Tank Cars Carrying Hazardous Materials With and Without Composite Metal Foam
Large‐scale puncture models consisting of hazardous materials (HAZMATs) tank car with protective steel–steel composite metal foam (S–S CMF) are solved numerically. Tank car plate with added 10.91–13.33 mm thick S–S CMF layer does not puncture. Protective S–S CMF absorbs impact energy, reduces plate deformation, and prevents shear bands formation ...
Aman Kaushik, Afsaneh Rabiei
wiley +1 more source
Mechanical and Microstructural Investigations of AA2124/SiC Metal Matrix Composites After Creep. [PDF]
Rutecka A, Makowska K, Kowalewski ZL.
europepmc +1 more source
Influence of High-Pressure Torsion Processing on the Tribological Properties of Aluminum Metal Matrix Composites. [PDF]
El Aal MIA +3 more
europepmc +1 more source
Strain intensity factor approach for predicting the strength of continuously reinforced metal matrix composites [PDF]
A method was previously developed to predict the fracture toughness (stress intensity factor at failure) of composites in terms of the elastic constants and the tensile failing strain of the fibers.
Poe, C. C., Jr.
core +1 more source
Mg–Zn composites with a thickness of 0.21 mm were fabricated using roll bonding of a kirigami‐patterned Mg alloy inlay within a Zn matrix. Thermal activation following this process led to the formation of tailored intermetallic structures, which provided the composite with enhanced flexural strength.
Yaroslav Frolov +4 more
wiley +1 more source
Comprehensive Analysis of Elastic-Plastic Behavior in Hybrid Metal Matrix Composites with Varied Reinforcement Geometry. [PDF]
Mieczkowski G, Szpica D, Borawski A.
europepmc +1 more source

