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1941por Papadimitriou, Dimitrios T., Kleanthous, Kleanthis, Manolakos, Emmanouil, Tiulpakov, Anatoly, Nikolopoulos, Thomas, Delides, Alexandros, Voros, Gerasimos, Dinopoulos, Argyrios, Zoupanos, George, Papadimitriou, Anastasios, Mastorakos, Georgios, Urano, FumihikoEnlace del recurso
Publicado 2019
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1942por Mumith, Aadil, Cheong, Vee San, Fromme, Paul, Coathup, Melanie J., Blunn, Gordon W.“…In this study, laser sintered Ti6Al4V implants with pore sizes of Ø 700 μm and Ø 1500 μm were electrochemically coated with HA, silicon-substituted HA (SiHA), and strontium-substituted HA (SrHA), and implanted in ovine femoral condylar defects. …”
Publicado 2020
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1943“…To apply laser-sintered titanium (Ti) materials to dental prostheses with a three-dimensional structure such as partial dentures, we examined the microstructures and mechanical properties of commercially pure (CP) Ti grade (G) 2 annealed after laser sintering and laser-sintered (as-built) Ti-6Al-4V alloy. …”
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1944“…The effect Spark Plasma Sintering (SPS) parameters and Nd:YAG laser welding parameters such as sintering temperature, sintering time, welding power, welding speed, on Vickers hardness mechanical properties of the Weld Zone(WZ) was statistically investigated. …”
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1945“…In situ HfB(2)–SiC–VSi(2) composite was fabricated by reactive pressureless sintering at the temperature of 2150 °C for 4 h under a vacuum atmosphere. …”
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1946“…This study investigates the effects of Multistage Heat Treatment (MSHT) on the development of an oxide-scale layer on the surface of FeCrAl sintered-metal-fibers. The oxide-scale layer was developed using an MSHT cycle at 930 °C for 1 h, followed by 960 °C for 1 h, and finally at 990 °C for 2 h. …”
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1947“…HfB(2), Si, and activated carbon powders were selected to fabricate 0–30 vol% SiC reinforced HfB(2)-based composite. Pressureless sintering process was performed at 2050 °C for 4 h under a vacuum atmosphere. …”
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1948por Hong, Young-Kyu, Kim, Jin-Wook, Kim, Hyuck-Soo, Lee, Sang-Phil, Yang, Jae-E., Kim, Sung-Chul“…The main objective of this study was to evaluate heavy metal adsorbents by modifying industrial byproducts. The bottom ash was sintered and evaluated for Cd and Pb sorption. Three adsorbents (bottom ash, sintered bottom ash (SBA), and SBA mixed with microorganisms (SBMA)) were tested to evaluate the sorption kinetics and mechanism using a lab-scale batch experiment. …”
Publicado 2021
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1949por Chiu, Po-Hsiang, Cheng, Wei-Han, Lee, Ming-Tsang, Yasuda, Kiyokazu, Song, Jenn-Ming“…Copper oxide particles of various sizes and constituent phases were used to form conductive circuits by means of photonic sintering. With the assistance of extremely low-energy-density xenon flash pulses (1.34 J/cm(2)), a mixture of nano/submicron copper oxide particles can be reduced in several seconds to form electrical conductive copper films or circuits exhibiting an average thickness of 6 μm without damaging the underlying polymeric substrate, which is quite unique compared to commercial nano-CuO inks whose sintered structure is usually 1 μm or less. …”
Publicado 2021
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1950por Gao, Zeng, Yin, Congxin, Cheng, Dongfeng, Feng, Jianguang, He, Peng, Niu, Jitai, Brnic, Josip“…The microstructure analysis demonstrated that the joint was achieved by metallurgical bonding at contact interface, and the sintered layer was composed of polycrystals. The distribution of Ga was quite homogenous in both of sintered layer and joint area. …”
Publicado 2021
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1951por Păcurar, Răzvan, Berce, Petru, Petrilak, Anna, Nemeş, Ovidiu, Borzan, Cristina Ştefana Miron, Harničárová, Marta, Păcurar, Ancuţa“…Polyamide 12 (PA 22000) is a well-known material and one of the most biocompatible materials tested and used to manufacture customized medical implants by selective laser sintering technology. To optimize the implants, several research activities were considered, starting with the design and manufacture of test samples made of PA 2200 by selective laser sintering (SLS) technology, with different processing parameters and part orientations. …”
Publicado 2021
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1952
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1953por Kafle, Abishek, Luis, Eric, Silwal, Raman, Pan, Houwen Matthew, Shrestha, Pratisthit Lal, Bastola, Anil Kumar“…In this review, we present three different early adopted, however, widely used, polymer-based 3D printing processes; fused deposition modelling (FDM), selective laser sintering (SLS), and stereolithography (SLA) to create polymeric parts. …”
Publicado 2021
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1954por Gueche, Yanis Abdelhamid, Sanchez-Ballester, Noelia M., Bataille, Bernard, Aubert, Adrien, Rossi, Jean-Christophe, Soulairol, Ian“…In selective laser sintering (SLS), the heating temperature is a critical parameter for printability but can also be deleterious for the stability of active ingredients. …”
Publicado 2021
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1955
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1958“…A powder-based 3D printing technology, selective laser sintering (SLS), is a novel strategy of manufacturing complex components with specially tailored properties, including mechanical properties, as well as thermal and electrical conductivity. …”
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1959por Nedelcu, Liviu, Burdusel, Mihail, Grigoroscuta, Mihai Alexandru, Geambasu, Cezar Dragos, Enculescu, Monica, Badica, Petre, Banciu, Marian Gabriel“…Zr(0.8)Sn(0.2)TiO(3) (ZST) powders synthesized by solid-state reaction were subject to processing by spark plasma sintering (SPS). A single-phase ceramic with a high relative density of 95.7% and 99.6% was obtained for sintering temperatures of 1150 °C and 1200 °C, respectively, and for a dwell time of 3 min. …”
Publicado 2022
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1960por Kosenko, Alexandra, Pushnitsa, Konstantin, Kim, Artem, Novikov, Pavel, Popovich, Anatoliy A.“…The foams were fabricated by two different methods: spark plasma sintering and replication on a polyurethane template. …”
Publicado 2022
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