Selective emitters for thermophotovoltaic systems consisting of directionally solidified Al2O3-ME3Al5O12 (ME: Y, Er and Yb) eutectic coatings on Al2O3 substrates were produced and characterizated. Coatings were deposited by dip-coating on cylindrical substrates. After sintering, a continuous-wave CO2 laser was used to produce the surface resolidification. The optimization of the processing parameters yielded dense eutectic coatings with good adhesion to the substrate and with 90–200 µm in thickness. All coatings were free of voids and showed a eutectic microstructure consisting of a three dimensional interpenetrated network of Al2O3 and ME3Al5O12. The mechanical properties of the coatings (hardness and fracture toughness) were evaluated by ...
Thermophotovoltaic (TPV) systems represent an indirect, and potentially highly efficient, means to c...
In the work we describe the use of Al2O3–Y2O3 glass microspheres with high alumina contents prepared...
Laser zone melting (LZM) was employed in this work to prepare Ln-Al-O coatings on polycrystalline Al...
Selective emitters for thermophotovoltaic systems consisting of directionally solidified Al2O3-ME3Al...
Directionally solidified eutectic rods of Al2O3-Y3−xErxAl5O12 (0 ≤ x ≤ 3) composition have been grow...
Directionally solidified eutectic rods of Al2O3-Y3-xErxAl5O12 (0 = x = 3) composition have been grow...
Al2O3-Yb3Al5O12 eutectic rods were directionally solidified using the laser floating zone method at ...
In this work Al2O3-Er3Al5O12 eutectic composite was manufactured in planar geometry departing from e...
科研費報告書収録論文(課題番号:11555057・基盤研究(B)(2)・H11~H13/研究代表者:湯上, 浩雄/太陽熱光起電力による高温輻射-電力直接変換システムの開発
Cobalt-doped MgO-MgAl2O4 eutectic composites were explored for their use as selective emitters for t...
The development of solid-state lasers with emission in the eye safe region of 1.5 μm is interesting ...
Selective emitters for thermophotovoltaics have been produced by vacuum plasma-spray coating of erbi...
Neodymium aluminate coatings have been prepared in-situ by the laser zone melting (LZM) method, usin...
Nanofibrillar Al2O3–Y3Al5O12–ZrO2 eutectic rods were manufactured by directional solidification from...
Ceramics rods of binary (Al2O3–Y3Al5O12) and ternary (Al2O3–Y3Al5O12–ZrO2) eutectic ceramic oxides w...
Thermophotovoltaic (TPV) systems represent an indirect, and potentially highly efficient, means to c...
In the work we describe the use of Al2O3–Y2O3 glass microspheres with high alumina contents prepared...
Laser zone melting (LZM) was employed in this work to prepare Ln-Al-O coatings on polycrystalline Al...
Selective emitters for thermophotovoltaic systems consisting of directionally solidified Al2O3-ME3Al...
Directionally solidified eutectic rods of Al2O3-Y3−xErxAl5O12 (0 ≤ x ≤ 3) composition have been grow...
Directionally solidified eutectic rods of Al2O3-Y3-xErxAl5O12 (0 = x = 3) composition have been grow...
Al2O3-Yb3Al5O12 eutectic rods were directionally solidified using the laser floating zone method at ...
In this work Al2O3-Er3Al5O12 eutectic composite was manufactured in planar geometry departing from e...
科研費報告書収録論文(課題番号:11555057・基盤研究(B)(2)・H11~H13/研究代表者:湯上, 浩雄/太陽熱光起電力による高温輻射-電力直接変換システムの開発
Cobalt-doped MgO-MgAl2O4 eutectic composites were explored for their use as selective emitters for t...
The development of solid-state lasers with emission in the eye safe region of 1.5 μm is interesting ...
Selective emitters for thermophotovoltaics have been produced by vacuum plasma-spray coating of erbi...
Neodymium aluminate coatings have been prepared in-situ by the laser zone melting (LZM) method, usin...
Nanofibrillar Al2O3–Y3Al5O12–ZrO2 eutectic rods were manufactured by directional solidification from...
Ceramics rods of binary (Al2O3–Y3Al5O12) and ternary (Al2O3–Y3Al5O12–ZrO2) eutectic ceramic oxides w...
Thermophotovoltaic (TPV) systems represent an indirect, and potentially highly efficient, means to c...
In the work we describe the use of Al2O3–Y2O3 glass microspheres with high alumina contents prepared...
Laser zone melting (LZM) was employed in this work to prepare Ln-Al-O coatings on polycrystalline Al...