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Aluminium alloy has been widely used in the engineering applications due to high strength and light weight.
Due to high strength and ductility, AISI 4141 alloy steel is widely used in many industrial applications, such as gears and blades.
Hybrid aluminum metal matrix composites reinforced with silicon carbide (SiC) and graphite (Gr) are extensively used due to high strength and wear resistance.
The blade made up of composite materials can have thin walls due to high strength to weight ratio of the materials.
The utilization of epoxy shape memory polymer composite (SMPCs) as engineering materials for deployable structures has attracted considerable attention in recent decades due to high strength and satisfactory stiffness in comparison with shape memory polymers (SMPs).
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Due to high strength-to-stiffness ratio of composites and thin-walled sectional geometry of FRP shapes, buckling is the most likely mode of failure before material failure.
Recent developments in the field of composites influence aerospace applications, due to high strength-to-weight, thermal resistance, and wear resistance compared to conventional materials.
Hardness was unchanged after peening due to higher strength of the alloy.
The results reveal that SMATed material exhibits higher cyclic stress amplitude due to higher strength of the SMAT affected region.
Due to higher strength and compressive residual stresses introduced by plasma nitriding procedure, the subsurface fish-eye cracks were initiated inside the specimen bulk as a dominant failure mechanism.
This is due to higher strength of sulfonic acids based than carboxylic ones.
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due to high toughness
due to high turbulence
due to high demand
due to high foreclosure
due to different strength
due to high energy
due to mechanical strength
due to compressive strength
due to high aerosol
due to high altitude
due to high air
due to high blood
due to high bias
due to high traffic
due to expected strength
due to high tuition
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