DISSERTATION

Effect of overloading and Band overloading on fatigue crack growth of aluminum alloy 7075-T651

Abstract

Plant viruses cause severe damages to crop productions each year worldwide. To prevent the losses caused by plant viruses, it is necessary to develop specific and efficient diagnostic tools to detect viruses. Among the current virus detection techniques, serological detection methods are considered to be rapid, simple, sensitive, and high throughput. Therefore, serological detection methods such as double antibody sandwich enzyme-linked immunosorbent assay (DAS-ELISA), triple antibody sandwich ELISA (TAS-ELISA), antigen coated plate-ELISA (ACP-ELISA), Dot-ELISA and tissue print-ELISA as well as colloidal gold immunochromatographic strip are now wildly used to detect viruses in plants. In this chapter, we describe the DAS-ELISA and Dot-ELISA methods, and their applications in the detection of Tomato spotted wilt virus (TSWV) infection in plants. These two methods can be easily adapted for diagnosis of other plant viruses.

Keywords:
Materials science Paris' law Alloy Stress (linguistics) Monotonic function Aluminium Crack closure Structural engineering Composite material Fracture mechanics Mathematics

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Topics

Fatigue and fracture mechanics
Physical Sciences →  Engineering →  Mechanics of Materials
Aluminum Alloy Microstructure Properties
Physical Sciences →  Engineering →  Aerospace Engineering
High Temperature Alloys and Creep
Physical Sciences →  Engineering →  Mechanical Engineering

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