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Metamaterials are achieved due to addition of an, often periodic, grid of resonant structures to a host material or structure.
Apart from initiating fracture, holes can, if judiciously placed and of the right dimensions, improve the durability of a material or structure and generate information about its state of strain.
While there will be a chance for you to put your mathematical skills obtained in 18.01, 18.02, and eventually 18.03 to use in this subject, the emphasis is on the physical understanding of why a material or structure behaves the way it does in the engineering design of materials and structures.
Fatigue is the phenomenon through which failure is induced by subjecting the material or structure to repeated subcritical loads [22, 23].
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It assists us to understand and design the new high strength-to-weight ratio of composite materials or structure.
The performance can be improved by material selection or structure design.
S N curve is the main tool to analyze and predict fatigue lifetime of a metallic material, component or structure.
An important characteristic of the periodic materials or structures is the existence of bandgap.
Cohesive interfaces appear in many materials or structures, e.g. composites or adhesive bonds.
It is useful for temperature compensation of distributed strain measurement in smart materials or structures health monitoring.
Since most hydrides show low intrinsic heat conductivities, auxiliary materials or structures inside the reaction zone are beneficial.
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