



X-ray diffractometer (XRD) can be divided into X-ray powder diffractometer and X-ray single crystal diffractometer, the basic physical principle of the two is the same.
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XRD is a means of research which is Diffraction by X-Ray diffraction of a material to analyze its diffraction pattern to obtain information such as the composition of the material, the structure or shape of atoms or molecules inside the material.
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It is necessary to reduce the harmful residual stress and predict the distribution trend and value of residual stress. In this paper, the non-destructive testing method of residual stress testing is introduced.
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Nondestructive testing is based on the development of modern science and technology. With the development of modern industry, the application of non-destructive testing is more and more popular.
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X-ray crystallography is a technique used to determine the atomic and molecular structure of a crystal, where the crystal structure causes the incident X-ray beam to diffract into many specific directions.
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Based on Bragg's Law, in-situ X-ray diffraction (XRD) can be used to monitor the change of phase and its lattice parameters in the electrode or electrode-electrolyte interface in real time during the charge-discharge cycle of a battery.
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X-ray testing is a non-destructive testing method that does not damage the object itself, and has been widely used in material testing (QC), failure analysis (FA), quality control (QC), quality assurance and reliability (QA/QC), research and development (R&D) and other fields.
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X-ray crystal analyzer is a kind of large analytical instrument for studying the internal microstructure of substances, mainly used in single crystal orientation, defect detection, residual stress determination, single crystal dislocation and so on.
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XRF instruments use X-rays to "excite" a material in order to characterize its composition by identifying elements in the sample (qualitative analysis) or by determining the strength of an element in the sample (quantitative analysis)
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