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Residual stress is a crucial factor when assessing the integrity of engineering components and welded assemblies.
Fretting in high strength metalline materials is one of primary failure mechanics that reduces the structural integrity of engineering component.
The integrity of engineering structures can be often compromised under cyclic loading due to the propagation of the pre-existing cracks.
A series of examples is provided to demonstrate how the present developments can be applied for treating not only secondary stresses but also externally applied stresses, as well as their combined effects on the structural integrity of engineering components.
Ultrasonic non-destructive testing has been widely used in assessing the integrity of engineering materials such as high-temperature alloys and structures such as pipelines, bridges, and other load-bearing structures.
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Fracture toughness is an important material property used to perform the integrity assessment of engineering components containing cracks.
The measurement of weld material fracture toughness properties is important for the structural integrity assessment of engineering components.
Integrity assessment of engineering components in power plants and process industries has attracted global attention from the viewpoint of safety and economy for their optimum utilization.
The structural integrity assessment of engineering plant is based on the principles of fracture mechanics that assume defects to be sharp cracks.
Transferability of fracture toughness data obtained on small scale specimens to a full-scale cracked structure is one of the key issues in integrity assessment of engineering structures.
Crack monitoring of concrete is crucial for the integrity of civil engineering structures.
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