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  • Diffractometer
    Diffractometer
    1. The accuracy of Diffractometer is high. 2. The application range of Diffractometer is wide. 3. Diffractometer is easy to operate, convenient and efficient.
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  • Single Crystal XRD
    Single Crystal XRD
    1.The single crystal machine adopts PLC control technology. 2.Modular design, accessories plug and play. 3.Electronic lead door interlocking equipment with double protection. 4.Single crystal X-ray tube: a variety of targets can be selected, such as Cu, Mo,etc. 5. Single crystal adopts four-circle concentric technology to ensure that the center of no goniometer remains unchanged.
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  • Series X-ray Crystal Analyzer
    Series X-ray Crystal Analyzer
    1. X-ray instrument is easy to operate and fast to detect. 2. X-ray instrument is accurate and reliable, with excellent performance. 3. X-ray instrument has various functional accessories to meet the needs of different testing purposes.
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  • Powder Diffractometer
    Powder Diffractometer
    1. Detector type: Array detector or SDD detector; 2. PLC automatic control calculus, Integration mode conversion, PLC automatically performs PHA, dead time correction 3.Sample measurement type: powder sample, liquid samples, melt-state samples, viscous samples, loose powders, bulk solid samples 4.Available with a variety of diffractometer accessories 5.Maximum output powder: 3kW
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Application of XRD technology in ceramic materials

2024-02-26

Ceramic materials refer to a class of inorganic non-metallic materials made of natural or synthetic compounds by forming and sintering at high temperature,XRD technology plays an important role in the research and development process of ceramic materials. 

XRD

Common applications:

1. Crystal phase identification: XRD can determine the crystal phase present in the ceramic material to help confirm the chemical composition and crystal structure of the material.

2. Measurement of lattice parameters: XRD can determine the crystal lattice constant. Understand the crystal structure and lattice distortion of ceramic materials.

3. Crystal orientation and preferred orientation: XRD can study the orientation distribution of grains in ceramic materials, helping to understand the formation mechanism of crystal orientation and the influence of crystal orientation on material properties.

4. Crystal defect analysis: XRD can detect crystal defects in ceramic materials and provide information on the quality and performance of the material.

5. Structural phase transition research: XRD can be used to study the structural phase transition and phase transition mechanism of ceramic materials under different temperature and pressure conditions.


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