Samenvatting

High Temperature Miniature Specimen Test Methods focuses on a comprehensive and thorough introduction to a range of high temperature, miniaturized test methods at elevated temperatures which are used to obtain “bulk” creep or fatigue properties from a small volume of material. The book will be of use to a wide range of audience of engineers (e.g., designers, manufacturers, metallurgists, stress analysts), researchers (e.g., materials scientists) and students (undergraduate and postgraduate) in the field of high-temperature material and structural integrity assessment. Specific novel features include 1] theoretical basis of each method; 2], data interpretation method of each test, and 3] specific applications.

Specificaties

ISBN13:9780443218972
Taal:Engels
Bindwijze:Paperback

Inhoudsopgave

<p>1. Outlines test types and data processing used to estimate the material constants<br>2. The most popular small punch test method, i.e. the small punch test<br>3. Introduces the impression creep test method using a rectangular indenter<br>4. Theoretical methods for data interpretation and typical test data are described<br>5. These include the miniature ring creep test methods<br>6. The miniature bar-type creep test method<br>7. Miniature bending creep tests<br>8. The more recently developed miniature thin-plate test creep and low cycle fatigue test methods <br>9. A specific topic related to the data interpretation is addressed in this chapter, in which the concept of the Equivalent Gauge Length (EGL) is introduced<br>10. The determination of material properties from the miniature specimen<br>11. Focuses on a specific application field on structural assessment of aero-engine gas turbine blades, where the assessment of anisotropy and lifing of service-aged gas turbine blades made of single-crystal nickel-based superalloy is particularly discussed<br>12. Briefly addresses several requirements for the future development of the miniaturized specimen test method, which is related to material property characterization, component assessment, size effect and multi-scale modelling, as well as standardization</p>
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        High Temperature Miniature Specimen Test Methods