Works matching DE "RADIATION shielding"
Results: 1269
Corrosion of novel Pb-Mg-Al-B nuclear shielding alloy in fluoride medium.
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- Corrosion Engineering, Science & Technology, 2015, v. 50, n. 1, p. 34, doi. 10.1179/1743278214Y.0000000175
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Wearable Janus‐Type Film with Integrated All‐Season Active/Passive Thermal Management, Thermal Camouflage, and Ultra‐High Electromagnetic Shielding Efficiency Tunable by Origami Process.
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- Advanced Functional Materials, 2023, v. 33, n. 18, p. 1, doi. 10.1002/adfm.202212776
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Light Gold: A Colloidal Approach Using Latex Templates.
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- Advanced Functional Materials, 2020, v. 30, n. 9, p. 1, doi. 10.1002/adfm.201908458
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Fabrication of high-performance lignin/PHBH biocomposites with excellent thermal, barrier and UV-shielding properties.
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- Journal of Polymer Research, 2022, v. 29, n. 12, p. 1, doi. 10.1007/s10965-022-03378-8
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Polarizability, metallization criterion, and radiation attenuation performance of pure and Ag-doped poly (vinyl alcohol) polymers for advanced shielding applications.
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- Journal of Polymer Research, 2021, v. 28, n. 10, p. 1, doi. 10.1007/s10965-021-02749-x
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Metal-polymer composites for radiation protection: a review.
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- Journal of Polymer Research, 2021, v. 28, n. 10, p. 1, doi. 10.1007/s10965-021-02751-3
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Evaluation of silicone rubber shielding material composites enriched with BaSO<sub>4</sub> and Bi<sub>2</sub>O<sub>3</sub> particles for radiation shielding properties.
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- Materials Research Innovations, 2023, v. 27, n. 5, p. 296, doi. 10.1080/14328917.2022.2141953
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Mechanical and gamma radiation shielding properties of natural rubber composites: effects of bismuth oxide (Bi<sub>2</sub>O<sub>3</sub>) and lead oxide (PbO).
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- Materials Research Innovations, 2022, v. 26, n. 1, p. 8, doi. 10.1080/14328917.2020.1853383
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Versatile epoxy/polyaniline and derived nanocomposite: from strategic design to advance application.
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- Materials Research Innovations, 2021, v. 25, n. 6, p. 321, doi. 10.1080/14328917.2020.1813452
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Nanodiamond integrating poly(methyl methacrylate) nanocomposites intending for technological innovations.
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- Materials Research Innovations, 2021, v. 25, n. 5, p. 310, doi. 10.1080/14328917.2020.1812928
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Holistic analysis of nanocomposites of carbon nanotube with polypropylene.
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- Materials Research Innovations, 2021, v. 25, n. 3, p. 186, doi. 10.1080/14328917.2020.1766645
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- Article
Detonation initiation in shielded thin layers of explosives by shaped-charge jets.
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- Combustion, Explosion, & Shock Waves, 2015, v. 51, n. 3, p. 358, doi. 10.1134/S0010508215030120
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1-(4-CHLOROPHENYL) PIPERAZINE: FT-IR, RAMAN, NMR AND THEORETICAL STUDIES.
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- Eskişehir Technical University Journal of Science & Technology A - Applied Sciences & Engineering, 2019, v. 20, n. 2, p. 133, doi. 10.18038/aubtda.376154
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An Alternative Radiation Shielding Material Based on Barium-Sulphate (BaSO 4)-Modified Fly Ash Geopolymers.
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- Gels (2310-2861), 2022, v. 8, n. 4, p. 227, doi. 10.3390/gels8040227
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锂辉石粉对防辐射超高性能混凝土 性能的影响研究.
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- New Building Materials / Xinxing Jianzhu Cailiao, 2022, n. 7, p. 12
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ZnO/CeO<sub>2</sub>空心球的制备及其紫外屏蔽性能.
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- Journal of the Chinese Society of Rare Earths, 2017, v. 35, n. 5, p. 599, doi. 10.11785/S1000-4343.20170506
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Soft Magnetic Properties and Electromagnetic Shielding Performance of Fe<sub>40</sub>Ni<sub>40</sub>B<sub>20</sub> Microfibers.
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- Advanced Electronic Materials, 2023, v. 9, n. 8, p. 1, doi. 10.1002/aelm.202300178
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ADIATION SHIELDING: THE PAST, THE PRESENT, AND THE FUTURE.
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- Aerospace Medicine & Human Performance, 2024, v. 95, n. 8, p. 512
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Shielding properties of composite materials based on epoxy resin with graphene nanoplates in the microwave frequency range.
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- Technical Physics Letters, 2016, v. 42, n. 12, p. 1141, doi. 10.1134/S1063785016120129
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Chaotic signal generation in low-voltage vircator with electron source shielded from external magnetic field.
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- Technical Physics Letters, 2011, v. 37, n. 2, p. 144, doi. 10.1134/S106378501102009X
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- Article
Nanocarbon and macrocarbonaceous filler–reinforced epoxy/polyamide: A review.
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- Journal of Thermoplastic Composite Materials, 2022, v. 35, n. 12, p. 2620, doi. 10.1177/0892705720930810
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- Article
Fabrication of magnetite nanoparticles/polyvinylpyrrolidone composite nanofibers and their application as electromagnetic interference shielding material.
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- Journal of Thermoplastic Composite Materials, 2018, v. 31, n. 4, p. 431, doi. 10.1177/0892705717704488
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- Article
Design of a Tri-band Double Wire Square Loop Frequency Selective Surface for Mobile Signal Shielding.
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- Journal of Engineering Research & Technology, 2017, v. 4, n. 1, p. 1
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Radiation shielding design and development of Bi/Ta/PU lead-free flexible textile composites.
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- Journal of Industrial Textiles, 2023, p. 1, doi. 10.1177/15280837231151221
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Space-structure-fabricated and Ni Film-deposited hybrid fabrics for enhanced electromagnetic interference shielding.
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- Journal of Industrial Textiles, 2019, v. 49, n. 5, p. 621, doi. 10.1177/1528083718792678
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The X-ray attenuation and the flexural properties of lead-free coated fabrics.
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- Journal of Industrial Textiles, 2017, v. 47, n. 2, p. 252, doi. 10.1177/1528083716644287
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Relation between shielding effectiveness and tightness of electromagnetic shielding fabric.
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- Journal of Industrial Textiles, 2013, v. 43, n. 2, p. 302, doi. 10.1177/1528083713477440
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- Article
Flexible electromagnetic interference shields in S band region from textile materials.
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- Journal of Industrial Textiles, 2013, v. 43, n. 2, p. 215, doi. 10.1177/1528083712452898
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- Article
Properties of (Ni--P)--ZnO Electroless Nanocoating on PET Fabrics.
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- Journal of Industrial Textiles, 2010, v. 40, n. 1, p. 85, doi. 10.1177/1528083709350186
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- Article
Emerging polyimide and graphene derived nanocomposite foam: research and technical tendencies.
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- Journal of Macromolecular Science: Pure & Applied Chemistry, 2021, v. 58, n. 10, p. 643, doi. 10.1080/10601325.2021.1934011
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Application of personal non-lead nano-composite shields for radiation protection in diagnostic radiology: a systematic review and meta-analysis.
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- Nanomedicine Journal, 2020, v. 7, n. 3, p. 170, doi. 10.22038/nmj.2020.07.0001
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- Article
Structure and properties of Ni coated B<sub>4</sub>C/PbSb<sub>8</sub> shielding composite.
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- Powder Metallurgy, 2007, v. 50, n. 2, p. 153, doi. 10.1179/174329007X161991
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- Article
Pb-free Radiation Shielding Glass Using Coal Fly Ash.
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- Journal of Mathematical & Fundamental Sciences, 2015, v. 47, n. 3, p. 309, doi. 10.5614/j.math.fund.sci.2015.47.3.8
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Synthesis structural optical and mechanical properties of Nb<sup>3</sup>⁺ doped Zinc Borophosphate glass for radiation shielding application.
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- Zeitschrift für Physikalische Chemie, 2024, v. 238, n. 3, p. 459, doi. 10.1515/zpch-2023-0473
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- Article
Effect of ilmenite on the attenuation coefficient of gamma ray shielding cementious matrix.
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- Radiation Effects & Defects in Solids: Incorporating Plasma Techniques & Plasma Phenomena, 2015, v. 170, n. 11, p. 876, doi. 10.1080/10420150.2015.1123260
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- Article
Comparison of radiation shielding ratios of nano-sized bismuth trioxide and molybdenum.
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- Radiation Effects & Defects in Solids: Incorporating Plasma Techniques & Plasma Phenomena, 2015, v. 170, n. 7/8, p. 651, doi. 10.1080/10420150.2015.1080703
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- Article
Changes in entrance surface dose in relation to the location of shielding material in chest computed tomography.
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- Radiation Effects & Defects in Solids: Incorporating Plasma Techniques & Plasma Phenomena, 2015, v. 170, n. 7/8, p. 645, doi. 10.1080/10420150.2015.1078803
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- Article
Study on γ-ray exposure buildup factors and fast neutron-shielding properties of some building materials.
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- Radiation Effects & Defects in Solids: Incorporating Plasma Techniques & Plasma Phenomena, 2014, v. 169, n. 6, p. 547, doi. 10.1080/10420150.2014.905942
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- Article
Monte Carlo calculations of the energy deposited in biological samples and shielding materials.
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- Radiation Effects & Defects in Solids: Incorporating Plasma Techniques & Plasma Phenomena, 2014, v. 169, n. 3, p. 232, doi. 10.1080/10420150.2013.841161
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- Article
Investigation of the radiation shielding efficiency of Bi<sub>2</sub>O<sub>3</sub>-doped borosilicate glasses.
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- Radiochimica Acta, 2025, v. 113, n. 2, p. 159, doi. 10.1515/ract-2024-0348
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- Article
Effect of ZnO particle size on the radiation shielding efficiency of B<sub>2</sub>O<sub>3</sub>–BaO–ZnO glass system.
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- Radiochimica Acta, 2025, v. 113, n. 1, p. 79, doi. 10.1515/ract-2024-0312
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- Article
The effect of rare earths (Nd<sup>3+</sup>, Er<sup>3+</sup>, Yb<sup>3+</sup>) additives on the radiation shielding properties of the tungsten oxide modified tellurite glasses.
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- Radiochimica Acta, 2024, v. 112, n. 12, p. 1015, doi. 10.1515/ract-2024-0297
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- Article
A closer inspection of the structural, mechanical, optical and radiation shielding properties of GeO<sub>2</sub>-doped magnesium-telluroborate glasses.
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- Radiochimica Acta, 2023, v. 111, n. 9, p. 713, doi. 10.1515/ract-2023-0140
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- Article
Grafting of heavy metal oxides onto pure polyester for the interest of enhancing radiation shielding performance.
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- Radiochimica Acta, 2023, v. 111, n. 6, p. 495, doi. 10.1515/ract-2023-0001
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- Article
Effect of WO<sub>3</sub> on the radiation shielding ability of TeO<sub>2</sub>–TiO<sub>2</sub>–WO<sub>3</sub> glass system.
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- Radiochimica Acta, 2023, v. 111, n. 5, p. 401, doi. 10.1515/ract-2022-0057
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- Article
Variation in gamma ray shielding properties of glasses with increasing boron oxide content.
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- Radiochimica Acta, 2023, v. 111, n. 3, p. 217, doi. 10.1515/ract-2022-0108
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- Article
Radiation attenuation attributes for BaO-TiO<sub>2</sub>-SiO<sub>2</sub>-GeO<sub>2</sub> glass series: a comprehensive study using Phy-X software.
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- Radiochimica Acta, 2023, v. 111, n. 3, p. 211, doi. 10.1515/ract-2022-0095
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- Article
Comparative simulations study of radiations shielding properties of 69P<sub>2</sub>O<sub>5</sub>–10Gd<sub>2</sub>O<sub>3</sub>/10GdF<sub>3</sub>–10BaO–10ZnO–1Er<sub>2</sub>O<sub>3</sub> glasses.
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- Radiochimica Acta, 2023, v. 111, n. 3, p. 203, doi. 10.1515/ract-2022-0087
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Bi<sub>2</sub>O<sub>3</sub>–PbO–CdO–B<sub>2</sub>O<sub>3</sub> glasses: competent candidates for radiation shielding.
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- Radiochimica Acta, 2022, v. 110, n. 11, p. 937, doi. 10.1515/ract-2022-0046
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Determination of biological radioprotective characteristics of some natural organic compounds for radiation shielding applications.
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- Radiochimica Acta, 2022, v. 110, n. 11, p. 925, doi. 10.1515/ract-2022-0028
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