Each phase of a crystalline material will produce a unique diffraction pattern. An XRD pattern is a plot of diffracted X-ray intensity vs. Important material information can be gleaned from an X-ray diffraction (XRD) pattern. Process development for ceramic materials and alloys.Verification of raw materials, such as ores, minerals, etc.Identification of unknown corrosion products or contaminants.The data collection and reduction software developed at Lambda can be tailored for specific applications allowing detection of extremely broad peaks and deconvolution of overlapping peaks.All diffractometers are calibrated to the NIST mica and silicon standards (SRM 675 and 640) and corrected for angular error using algorithms unique to Lambda Research’s data collection software.Graphite monochromators provide virtual immunity to fluorescence from the sample for optimum detection limits and precision.Corrosion products and coatings may be identified in-situ on the surface of substrates using the bulk mounting capability.Samples may be tested nondestructively.Large and small samples of polycrystalline materials down to fractions of grams can be analyzed using the diffractometer systems. The characteristic lattice spacings and intensities are used to search through nearly a half-million JCPDS data sets for known phases. Qualitative phase analysis software has been written for data collection and preprocessing to strip background and detect diffraction peaks using first and second derivative algorithms.Ĭommercial search/match software is used for searching the full Joint Committee for Powder Diffraction Standards (JCPDS) data file system, including organic, inorganic, mineral, and alloy systems. Lambda Technologies provides X-ray diffraction qualitative phase analysis using diffractometer techniques. From the knowledge of the crystalline structure, the temperatures, pressures, and other aspects of formation can often be deduced. The molecular components and crystalline structures are determined, allowing individual components of a mixture, such as an oxide and sulfide, to be identified. While elemental analysis obtained by spectroscopy or wet chemistry can identify the elemental constituents of a component or mixture, XRD provides far more information. The diffracted peak positions and intensities from a particular material phase serve as a fingerprint that can be compared to a database of reference patterns to identify a phase or phases of solids, powders, thin films, or suspensions. Qualitative Phase Analysis provides material information gleaned from an X-ray diffraction (XRD) pattern and a pattern plot of diffracted X-ray intensity vs. What is X-Ray Diffraction Qualitative Phase Analysis?
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