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  1. 2261
    “…The microstructure and phases of the prepared specimens have been characterized by using scanning electron microscopy (SEM), X-ray diffraction technique, and transmission electron microscopy (TEM). The sintered specimens consisted of Fe(2)AlCr, CrFeB-type boride, and TiB(2). …”
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  2. 2262
  3. 2263
    “…The objective of this article was to perform the surface characterization and determine the properties of Co-Cr alloy samples fabricated by the direct metal laser sintering (DMLS) process and coated by e-gun technology with thin films of Ta(2)O(5) and ZnO. …”
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  4. 2264
    “…NZSP, however, requires the high sintering temperature about 1200 °C and long sintering time in the conventional solid-state reaction (SSR) method. …”
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  5. 2265
    “…A Mn–Co spinel coating is processed on Crofer 22 APU substrates by electrophoretic deposition, and subsequently sintered, following both the one-step and two-step sintering, in order to obtain significantly different densification levels. …”
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  6. 2266
    “…NSCTO (Na(0.5)Sm(0.5)Cu(3)Ti(4)O(12)) ceramics have been prepared by reactive sintering solid-state reaction where the powder was prepared from the elemental oxides by mechanochemical milling followed by conventional sintering in the temperature range 1000–1100 °C. …”
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  7. 2267
    “…[Image: see text] Pristine and Co-doped MoS(2) nanosheets, containing a dominant 1T phase, have been densified by spark plasma sintering (SPS) to produce a nanostructured arrangement. …”
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  8. 2268
  9. 2269
    “…Mn(1.1)Co(1.5)Fe(0.4)O(4) ceramics with tailored sintering temperature, microstructure, and NTCR characteristics were prepared using Bi(2)O(3) sintering additive by a solid-state reaction route. …”
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  10. 2270
    “…In the current study, Bi(2/3)Cu(3)Ti(4)O(12) (BCTO) ceramics were prepared by mechanical ball mill of the elemental oxides followed by conventional sintering of the powder without any pre-sintering heat treatments. …”
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  11. 2271
  12. 2272
    “…At axial pressure above 16 kN, the Fe–Si powder melted partially, and the core–shell heterostructure collapsed due to overheating, caused by the gradient temperature field during the hot-press sintering. When the core–shell heterostructure was intact, the Fe–Si@SiO(2) SMPCs showed a permeability of over 38 with a wide and stable frequency range of 100–300 kHz, a saturation magnetisation of 231.7 emu g(−1), resistivity of 0.8 mΩ cm and total loss of 704.7 kW m(−3) at 10 mT and 100 kHz. …”
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  13. 2273
  14. 2274
  15. 2275
  16. 2276
    “…In this work, composites of the Y(2)O(3)-ZrO(2) matrix with graphene-augmented γ-Al(2)O(3) nanofibres (GAlN) were spark plasma sintered. The conductivity and electrical stability in cyclic experiments were tested using electrical impedance spectroscopy. …”
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  17. 2277
  18. 2278
  19. 2279
  20. 2280
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