Title | Image | Source | Short Description |
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Development of sialon ceramics for lubricated sliding applications | MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK 36 (2005), 3-4, 117–121 |
Development of sialon ceramics for lubricated sliding applications. |
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Effect of AlN-content on the microstructure and fracture toughness of hot-pressed and heat-treated LPS-SiC ceramics | JOURNAL OF THE EUROPEAN CERAMIC SOCIETY 25 (2005), 6, 801–807 |
Effect of AlN-content on the microstructure and fracture toughness of hot-pressed and heat-treated LPS-SiC ceramics. |
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Effect of temperature on grain size, phase composition, and electrical properties in the relaxor-ferroelectric-system Pb(Ni1/3Nb2/3)O-3-Pb(Zr,Ti)O-3 | JOURNAL OF APPLIED PHYSICS 98 (2005), 2 |
Effect of temperature on grain size, phase composition, and electrical properties in the relaxor-ferroelectric-system Pb(Ni1/3Nb2/3)O-3-Pb(Zr,Ti)O-3. |
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Electrical conductivity and stability of concentrated aqueous alumina suspensions | JOURNAL OF COLLOID AND INTERFACE SCIENCE 286 (2005), 2, 579–588 |
Electrical conductivity and stability of concentrated aqueous alumina suspensions. |
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Experimental measurement of stress at a four-domain junction in lead zirconate titanate | JOURNAL OF APPLIED PHYSICS 97 (2005), 9 |
Experimental measurement of stress at a four-domain junction in lead zirconate titanate. |
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Exploring the morphotropic phase boundary in copper(II)-modified Pb[Zr0.54Ti0.46]O-3 ferroelectrics | APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING 80 (2005), 1, 51–54 |
Exploring the morphotropic phase boundary in copper(II)-modified Pb[Zr0.54Ti0.46]O-3 ferroelectrics. |
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High-field/high-frequency EPR of paramagnetic functional centers in Cu2+- and Fe3+-modified polycrystalline Pb[ZrxTi1-x]O-3 ferroelectrics | MAGNETIC RESONANCE IN CHEMISTRY 43 (2005), S166-S173 |
High-field/high-frequency EPR of paramagnetic functional centers in Cu2+- and Fe3+-modified polycrystalline Pb[ZrxTi1-x]O-3 ferroelectrics. |
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Influence of the matrix microstructure on the mechanical properties of CVI-infiltrated carbon fiber felts | CARBON 43 (2005), 9, 1954–1960 |
Influence of the matrix microstructure on the mechanical properties of CVI-infiltrated carbon fiber felts. |
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Influence of the rare-earth element on the mechanical properties of RE-Mg-bearing silicon nitride | JOURNAL OF THE AMERICAN CERAMIC SOCIETY 88 (2005), 9, 2485–2490 |
Influence of the rare-earth element on the mechanical properties of RE-Mg-bearing silicon nitride. |
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On the effect of local grain-boundary chemistry on the macroscopic mechanical properties of a high-purity Y2O3-Al2O3-containing silicon nitride ceramic: Role of oxygen | JOURNAL OF THE AMERICAN CERAMIC SOCIETY 88 (2005), 7, 1900–1908 |
On the effect of local grain-boundary chemistry on the macroscopic mechanical properties of a high-purity Y2O3-Al2O3-containing silicon nitride ceramic: Role of oxygen. |
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Quality assurance of test pieces as a basis for adequate significance of test results | MATERIALWISSENSCHAFT UND WERKSTOFFTECHNIK 36 (2005), 3-4, 177–182 |
Quality assurance of test pieces as a basis for adequate significance of test results. |
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Rare earth containing sialons: Microstructure, mechanical and tribological properties | ADVANCED SI-BASED CERAMICS AND COMPOSITES 287 (2005), 282–292 |
Rare earth containing sialons: Microstructure, mechanical and tribological properties. |
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Rare-earth adsorption at intergranular interfaces in silicon nitride ceramics: Subnanometer observations and theory | PHYSICAL REVIEW B 72 (2005), 14 |
Rare-earth adsorption at intergranular interfaces in silicon nitride ceramics: Subnanometer observations and theory. |
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The effect of nitrogen on viscosity of La-Si-Mg-O-N glasses by compressive creep and dilatometry | JOURNAL OF MATERIALS SCIENCE 40 (2005), 1, 47–51 |
The effect of nitrogen on viscosity of La-Si-Mg-O-N glasses by compressive creep and dilatometry. |
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Three-dimensional organization of rare-earth atoms at grain boundaries in silicon nitride | APPLIED PHYSICS LETTERS 87 (2005), 6 |
Three-dimensional organization of rare-earth atoms at grain boundaries in silicon nitride. |