NASA NTRS ยท 19840020575
Real-time X-ray Diffraction: Applications to Materials Characterization
Abstract
With the high speed growth of materials it becomes necessary to develop measuring systems which also have the capabilities of characterizing these materials at high speeds. One of the conventional techniques of characterizing materials was X-ray diffraction. Film, which is the oldest method of recording the X-ray diffraction phenomenon, is not quite adequate in most circumstances to record fast changing events. Even though conventional proportional counters and scintillation counters can provide the speed necessary to record these changing events, they lack the ability to provide image information which may be important in some types of experiment or production arrangements. A selected number of novel applications of using X-ray diffraction to characterize materials in real-time are discussed. Also, device characteristics of some X-ray intensifiers useful in instantaneous X-ray diffraction applications briefly presented. Real-time X-ray diffraction experiments with the incorporation of image X-ray intensification add a new dimension in the characterization of materials. The uses of real-time image intensification in laboratory and production arrangements are quite unlimited and their application depends more upon the ingenuity of the scientist or engineer.
Keep this discovery
Explore connections, maps & timelines
Rosemeier, R. G.. 1984-04-15. Real-time X-ray Diffraction: Applications to Materials Characterization. https://ntrs.nasa.gov/citations/19840020575
Cite the original work for its findings. Save a collection to share your selection of sources.