Grain-boundary engineering applied to grain growth in a high temperature material
Creators
- 1. Dawood Coll. of Engineering and Technology, Karachi (Pakistan). Dept. of Metallurgical Engineering
Description
Crystallography of grain boundaries are determined for a high temperature material, before and after grain growth processes, so as to study the induction of special properties useful for application in components of a gas-turbine engine. The philosophy of grain-boundary engineering is applied to grain growth in APK-6, a powder formed nickel-base superalloy so as to establish the possible structure/property relationships. The alloy in the as received condition is shown to possess a strong texture and contained coincident site lattices (CSL) boundaries with most boundaries having sigma values in the range of 3 > sigma > 25. A normal grain-growth heat treatment result in a good population of low angle grain boundaries, and drastically reduces the proportion of CSL boundaries. A strong [011] annealing texture is observed after an intermediate grain growth; most grain boundaries, here, tend to be high angle indicating a possibility of possessing special properties. (author)
Additional details
Publishing Information
- Publisher
- Dr. A.Q. Khan Research Laboratories Rawalpindi Pakistan.
- Imprint Place
- Islamabad (Pakistan)
- ISBN
- 969-8122-03-6
- Imprint Title
- Advanced materials-93
- Imprint Pagination
- 792 p.
- Journal Page Range
- p. 391-400.
Conference
- Title
- 3. International Symposium on Advanced Materials.
- Dates
- 20-24 Sep 1993.
- Place
- Islamabad (Pakistan).
INIS
- Country of Publication
- Pakistan
- Country of Input or Organization
- Pakistan
- INIS RN
- 26046297
- Subject category
- S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY; S36: MATERIALS SCIENCE;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- ANNEALING; GRAIN BOUNDARIES; GRAIN GROWTH; GRAIN SIZE; HIGH-TC SUPERCONDUCTORS; LATTICE PARAMETERS; TEXTURE
- Descriptors DEC
- CRYSTAL STRUCTURE; HEAT TREATMENTS; MICROSTRUCTURE; SIZE; SUPERCONDUCTORS