2023
DOI: 10.1016/j.compositesb.2023.110611
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Texture evolution, segregation behavior, and mechanical properties of 2060 Al-Li (aluminium-lithium) composites reinforced by TiC (titanium carbide) nanoparticles

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Cited by 14 publications
(2 citation statements)
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“…The strength and fracture toughness of this 3rd generation alloy depend upon the influence of cold deformation (cold rolling, stretching, and compressing), which are beneficial [45,46]. Nano-sized TiC-reinforced in 3rd-generation Al-Li alloy AA2060 prepared Particle-reinforced Metal Matrix Composites (PMMCs) were synthesized and analyzed for their physico-chemical properties through various techniques, including EPMA, DSC, EBSD, TEM, and simulations [47]. The 3rd-generation alloys became successful considering some of the advantages in aerospace point of view, which give rise to fuel efficiency, system lifetime, fracture toughness, corrosion resistance improved, fatigue crack growth resistance, thermal stability, and manufacturability.…”
Section: Rd-generation Al-li Alloy Productsmentioning
confidence: 99%
“…The strength and fracture toughness of this 3rd generation alloy depend upon the influence of cold deformation (cold rolling, stretching, and compressing), which are beneficial [45,46]. Nano-sized TiC-reinforced in 3rd-generation Al-Li alloy AA2060 prepared Particle-reinforced Metal Matrix Composites (PMMCs) were synthesized and analyzed for their physico-chemical properties through various techniques, including EPMA, DSC, EBSD, TEM, and simulations [47]. The 3rd-generation alloys became successful considering some of the advantages in aerospace point of view, which give rise to fuel efficiency, system lifetime, fracture toughness, corrosion resistance improved, fatigue crack growth resistance, thermal stability, and manufacturability.…”
Section: Rd-generation Al-li Alloy Productsmentioning
confidence: 99%
“…Achieving grain refinement in aluminum alloys during the solidification process can be accomplished by introducing Ti and B in the form of Al–Ti–B or Ti–C–Al intermediate alloys. [ 65–67 ] Typically, the concentration of Ti in the alloy solution is 0.05%. The intermediate alloys, in addition to aluminum‐rich solid solutions, consist of Al3Ti$\left(\text{Al}\right)_{3} \text{Ti}$, TiB2$\left(\text{TiB}\right)_{2}$ or TiC.…”
Section: Alloying Elements In Al–li Alloysmentioning
confidence: 99%