Metal Surfaces : Metal Surfaces |
Autore | Montanari Roberto |
Pubbl/distr/stampa | Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021 |
Descrizione fisica | 1 electronic resource (146 p.) |
Soggetto topico | Technology: general issues |
Soggetto non controllato |
mechanical alloying
nanocrystalline alloys corrosion polarization EIS TiAl-based alloys hydrogen-induced softening dynamic recrystallization cracking molybdenum nuclear fusion reactors laser surface damage microstructure bipolar electrochemistry erosion-corrosion oil and gas impact wear steel hardness toughness micro fatigue cracks martensitic stainless steel Cr segregation fracture Charpy test XPS surface analysis metals and alloys metal coatings AES SPEM laser micromachining surface texturing surface roughness biomedical engineering tribology |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Altri titoli varianti | Metal Surfaces |
Record Nr. | UNINA-9910557790903321 |
Montanari Roberto
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Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021 | ||
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Lo trovi qui: Univ. Federico II | ||
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Polymer Processing and Surfaces |
Autore | Sedlačík Michal |
Pubbl/distr/stampa | Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 |
Descrizione fisica | 1 electronic resource (436 p.) |
Soggetto topico |
Research & information: general
Biology, life sciences |
Soggetto non controllato |
thermoplastic polyurethanes blends
pressure sensitive adhesives viscoelastic properties adhesion properties tack creep cohesion properties nano-structure functional film magnetron sputtering cellulose insulation polymer space charge hydrophobicity zinc oxide polytetrafluoroethylene bromoisobutyryl esterification cornstarch synthesis process past stability adhesion film properties mullite whiskers nonaqueous precipitation method aluminum fluoride polar transformation screw aspect ratio carbon nanotube dispersion masterbatch nanocomposite polyamide polyamide 6 halloysite nanotube functionalizing agent in situ polymerization melt blending polymorphism hydrothermal ageing polymers octaglycidyl-POSS DGEBA dicyandiamide accelerators corrosion protective coatings infrared spectroscopy rheology poplar wood waterborne UV lacquer product wood modification contact angle spectroscopy super-hydrophobic coating elastic sensor carbon nanotubes wearable electronics monitoring of breathing strain sensor polymer composite CNTs construction composite friction resistance surface state low dielectric constant PI irradiation dielectric loss tin compounds valsartan poly(vinyl chloride) additives average molecular weight weight loss functional group index PET polymer plasma jet tilted application ROS distribution UV VUV epoxy Joule heating fast curing accelerated forming shape memory Acrylonitrile Butadiene Styrene sound absorption 3D printing technology frequency thickness air gap polyvinyl alcohol cationic polyacrylamide polyvinyl chloride azodicarbonamide micro-structure diffusion plate micro injection molding grinding ethylene-octene-copolymer carbon fibers polyaniline polypyrrole thermoelectric composites surface coating dopamine hydrochloride graphene oxide surgical suture friction Poly(vinylidene chloride-co-acrylonitrile) (P(VDC-co-AN )) thermo-dynamic surface characterization surface free energy inverse gas chromatography visual traits computer vision and image processing basalt fiber epoxy composite glass transition temperature DMA TMA creep recovery stress-relaxation heterogeneous nucleation cell morphology injection molding foaming composite materials visualization gloss transition defect surface defect surface gloss shrinkage mold surface replication surface analysis injection molding polymer surface modification hydrophobic properties optimization mathematical modeling poly(ethylene glycol) (PEG) conjugation N,N′-disuccinimidyl carbonate (DSC) immobilization surface modification ultra-high molecular weight polyethylene cellulose nanofiber bionanocomposite melt-blending ethanol mixing |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Record Nr. | UNINA-9910566465503321 |
Sedlačík Michal
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Basel, : MDPI - Multidisciplinary Digital Publishing Institute, 2022 | ||
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Lo trovi qui: Univ. Federico II | ||
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Textile-Based Advanced Materials : Construction, Properties and Applications |
Autore | Bechtold Thomas |
Pubbl/distr/stampa | Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021 |
Descrizione fisica | 1 electronic resource (248 p.) |
Soggetto topico | History of engineering & technology |
Soggetto non controllato |
Polyimide fiber
thermal stability swelling agent dyeability carbon textile reinforced mortar uniaxial tensile tests debonding failure steel fibers prestress multi-cracking pattern polyacrylonitrile polyaniline conductive fibers flax fiber-reinforced composite strain rate effect Johnson-Cook model lattice structure failure mechanism textiles composite preforming mechanical properties shear behavior surface analysis picture frame test kinematic draping simulation textile PET biomaterials iPS-cells cardiomyocytes maturation gene expression electronic textiles AMOLED OTFTs OLEDs textile displays organic thin film graft polymerization surface modification hydrogels gamma irradiation silver nanoparticles antibacterial activity temperature sensor conductivity coatings deposition thermocouple material characterization smart clothing temperature sensing wearable technology nanomaterials environmental impacts toxicity health and safety conductive fibres cellulose fibres pressure sensor smart textiles viscose fibres carbon black biocementation MICP jute fibres unconfined compressive strength urea hydrolysis sustainable geotechnics self-healing |
Formato | Materiale a stampa ![]() |
Livello bibliografico | Monografia |
Lingua di pubblicazione | eng |
Altri titoli varianti | Textile-Based Advanced Materials |
Record Nr. | UNINA-9910557430603321 |
Bechtold Thomas
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Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2021 | ||
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Lo trovi qui: Univ. Federico II | ||
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