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Advanced Ways and Experimental Methods in Self-Propagating High-Temperature Synthesis (SHS) of Inorganic Materials

机译:无机材料自蔓延高温合成(SHS)的高级方式和实验方法

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New experimental methods for investigations of phase formation during SHS have been established. First experiments using penetrating synchrotron radiation and energy dispersive detectors for different classes of complex inorganic materials were carried out at ESRF (Grenoble, France) and Daresbury (UK). A new and very sensitive thermal imaging method (Thermal Imaging Technique (TIT)) based on continuous registration of the whole combustion process by using highly sensitive IR-camera and software developed by MIKRON Instruments Co. (USA) was used for precise registration of the combustion parameters. SHS was performed on different types of pure and doped complex inorganic materials in pellet and powder form in a range of dc magnetic fields up to 20 T and in electrical field strengths up to ±220 kV/m. The dc magnetic field was applied during the reaction, supplied either by a permanent magnet (transverse, up to 1.1 T) or by an electromagnet (longitudinal, up to 20 T). The dc electrical field was applied along the direction of the combustion wave front propagation. The combined processes of SHS and SLS (Selective Laser Sintering) of 3D articles for different powdered compositions were optimized with laser irradiation power.
机译:已经建立了SHS期间相形成的新试验方法。在ESRF(Grengoble,France)和Daresbury(UK)中进行了使用针对不同类别的复杂无机材料进行不同类别复杂无机材料的渗透同步辐射和能量分散探测器的第一次实验。基于使用高敏感的IR相机和Mikron Instruments Co.(USA)的全燃烧过程连续登记的新的和非常灵敏的热成像方法(热成像技术(山雀))用于精确登记燃烧参数。在一系列直流磁场的颗粒和粉末形式的不同类型的纯净和掺杂的复杂无机材料上进行SHS在直流磁场范围内,高达20t和电场强度高达±220 kV / m。在反应过程中施加直流磁场,通过永磁体(横向,高达1.1吨)或通过电磁铁(纵向,高达20t)供应。沿燃烧波正面传播的方向施加DC电场。用激光照射功率优化不同粉末组合物的3D制品的SHS和SLS(选择性激光烧结)的组合过程。

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