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Additional resources for Processing and Properties of Advanced Ceramics and Composites VII: Ceramic Transactions, Volume 252
The drawback to these probes is the maximum usage temperature around 200°C. Since most high temperature microwave heating goes to temperatures well beyond 200°C conducted at much higher temperatures, Measurements at room temperature and 200°C many times are inadequate to make predictions for behaviour at high temperatures. In addition accurate measurements require a wide range to give accurate coverage for many materials. A new dielectric property probe was developed that addresses these shortcomings.
Figure 4 shows the M-H plots at room temperature after each process. Compared to conventional heating, the values of saturation magnetization obtained after E- and H-field irradiations were small and large, respectively (Fig. 4 (a)). Figure 4 (b) shows an enlarged view of the M-H plots. After E-field irradiation, the coercivity did not change to that of conventionally heated samples (about 90 Oe). However, the coercivity decreased to about 70 Oe after H-field irradiation. Theoretically, coercivity (HC) is defined as, Processing and Properties of Advanced Ceramics and Composites VII · 37 Synthesis of Copper Spinels by Microwave Irradiation where HA is an anisotropic magnetic field, Ku is the uniaxial magnetic anisotropy and, M is the saturation magnetization, respectively.
Extremely high heating rates can be obtained at those limited geometrical spots by inductors, but the presence of high eletrical conducting materials (metal, carbon fibers) is essential. Infrared, Laser and UV (as well e-beam) work directed in optically localized manners. HF-technology is the only technology that can process a part in a volumetric and holistic manner where the physical action is not bound to surface interactions. Fig. 000 components a year) a comparison of costs savings using IR and HF-Processing as an example.