919 resultados para ROTATING SPIRALS


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The demand for alternative sources of energy drives the technological development so that many fuels and energy conversion processes before judged as inadequate or even non-viable, are now competing fuels and so-called traditional processes. Thus, biomass plays an important role and is considered one of the sources of renewable energy most important of our planet. Biomass accounts for 29.2% of all renewable energy sources. The share of biomass energy from Brazil in the OIE is 13.6%, well above the world average of participation. Various types of pyrolysis processes have been studied in recent years, highlighting the process of fast pyrolysis of biomass to obtain bio-oil. The continuous fast pyrolysis, the most investigated and improved are the fluidized bed and ablative, but is being studied and developed other types in order to obtain Bio-oil a better quality, higher productivity, lower energy consumption, increased stability and process reliability and lower production cost. The stability of the product bio-oil is fundamental to designing consumer devices such as burners, engines and turbines. This study was motivated to produce Bio-oil, through the conversion of plant biomass or the use of its industrial and agricultural waste, presenting an alternative proposal for thermochemical pyrolysis process, taking advantage of particle dynamics in the rotating bed that favors the right gas-solid contact and heat transfer and mass. The pyrolyser designed to operate in a continuous process, a feeder containing two stages, a divisive system of biomass integrated with a tab of coal fines and a system of condensing steam pyrolytic. The prototype has been tested with sawdust, using a complete experimental design on two levels to investigate the sensitivity of factors: the process temperature, gas flow drag and spin speed compared to the mass yield of bio-oil. The best result was obtained in the condition of 570 oC, 25 Hz and 200 cm3/min, temperature being the parameter of greatest significance. The mass balance of the elementary stages presented in the order of 20% and 37% liquid pyrolytic carbon. We determined the properties of liquid and solid products of pyrolysis as density, viscosity, pH, PCI, and the composition characterized by chemical analysis, revealing the composition and properties of a Bio-oil.

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A self-flotator vibrational prototype electromechanical drive for treatment of oil and water emulsion or like emulsion is presented and evaluated. Oil production and refining to obtain derivatives is carried out under arrangements technically referred to as on-shore and off-shore, ie, on the continent and in the sea. In Brazil 80 % of the petroleum production is taken at sea and area of deployment and it cost scale are worrisome. It is associated, oily water production on a large scale, carrier 95% of the potential pollutant of activity whose final destination is the environment medium, terrestrial or maritime. Although diversified set of techniques and water treatment systems are in use or research, we propose an innovative system that operates in a sustainable way without chemical additives, for the good of the ecosystem. Labyrinth adsor-bent is used in metal spirals, and laboratory scale flow. Equipment and process patents are claimed. Treatments were performed at different flow rates and bands often monitored with control systems, some built, other bought for this purpose. Measurements of the levels of oil and grease (OGC) of efluents treaty remained within the range of legal framework under test conditions. Adsorbents were weighed before and after treatment for obtaining oil impregna-tion, the performance goal of vibratory action and treatment as a whole. Treatment technolo-gies in course are referenced, to compare performance, qualitatively and quantitatively. The vibration energy consumption is faced with and without conventional flotation and self-flotation. There are good prospects for the proposed, especially in reducing the residence time, by capillary action system. The impregnation dimensionless parameter was created and confronted with consecrated dimensionless parameters, on the vibrational version, such as Weber number and Froude number in quadratic form, referred to as vibrational criticality. Re-sults suggest limits to the vibration intensity

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La vulnérabilité est l’attribut fondamental justifiant le passage des frontières du refuge canadien (Rousseau et al., 2002 ; Clément et Bolduc, 2004). Elle est preuve d’insécurité pour la victime requérant l’asile ; elle est aussi porteuse d’espérance de sécurité en terre hospitalière. Elle est pourtant potentiel réactualisé dans l’insécurité d’un statut incertain en terre d’accueil (Agamben, 1997 ; D’Halluin, 2004). Violente immersion. En attendant que les preuves de sa vulnérabilité originelle soient validées, le demandeur d’asile se retrouve dans un entre-deux a-territorial et atemporel (Agier, 2002 ; Le Blanc, 2010) et dans une précarité tout aussi dangereuse (Ouimet et al., 2009). Des besoins émergent en cette terre inconnue, or l’accès aux soins de santé lui est limité par des textes de lois ambigus et leurs interprétations maladroites (Harris et Zuberi, 2015). Ainsi lorsqu’il se heurte à des barrières érigées par une transmission d’informations défectueuse, sa précarité ne fait qu’empirer. Tel un boomerang, ce paradoxe cultive leur vulnérabilité. Alors que les recherches interrogent les divers intervenants en santé (Asgary et Smith, 2013), j’ai choisi de donner la parole aux premiers concernés et de relayer leur vécu par rapport à leur propre personne. Deux objectifs principaux guident la recherche : documenter dans un premier temps leur parcours de quête de soins à partir de la circulation des informations formelles et informelles dans le but de sonder leur avis sur la vulnérabilité qui leur est attribuée ; documenter dans un second temps leur parcours migratoire de quête de soi afin de mettre en lumière les stratégies alternatives d’entrée en contact avec la société d’accueil pour négocier voire rejeter cette identité vulnérable. J’ai rencontré pour cela des demandeurs d’asile lors d’un terrain de huit mois au sein d’un organisme communautaire d’hébergement à Montréal. Dans ce contexte d’accompagnement et de stabilité spatiale, accalmie bienvenue au terme d’un itinéraire semé d’embûches, les ressources informationnelles sont à leur disposition et la reconnaissance sociale est à l’honneur. En parallèle, beaucoup témoignent de la diminution de leurs besoins de soins de santé. En cette communauté thérapeutique (Pocreau, 2005), véritable tremplin vers la société d’accueil en attendant un statut reconnu, ils bénéficient d’une possibilité de participation sociale et d’un sentiment d’appartenance valorisant. Si des conditions précaires peuvent aggraver la vulnérabilité, le bricolage de conditions positives favorise la résilience (Cleveland et al., 2014), créant un environnement revitalisant qui leur permet de rebondir.

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Designing turbines for either aerospace or power production is a daunting task for any heat transfer scientist or engineer. Turbine designers are continuously pursuing better ways to convert the stored chemical energy in the fuel into useful work with maximum efficiency. Based on thermodynamic principles, one way to improve thermal efficiency is to increase the turbine inlet pressure and temperature. Generally, the inlet temperature may exceed the capabilities of standard materials for safe and long-life operation of the turbine. Next generation propulsion systems, whether for new supersonic transport or for improving existing aviation transport, will require more aggressive cooling system for many hot-gas-path components of the turbine. Heat pipe technology offers a possible cooling technique for the structures exposed to the high heat fluxes. Hence, the objective of this dissertation is to develop new radially rotating heat pipe systems that integrate multiple rotating miniature heat pipes with a common reservoir for a more effective and practical solution to turbine or compressor cooling. In this dissertation, two radially rotating miniature heat pipes and two sector heat pipes are analyzed and studied by utilizing suitable fluid flow and heat transfer modeling along with experimental tests. Analytical solutions for the film thickness and the lengthwise vapor temperature distribution for a single heat pipe are derived. Experimental tests on single radially rotating miniature heat pipes and sector heat pipes are undertaken with different important parameters and the manner in which these parameters affect heat pipe operation. Analytical and experimental studies have proven that the radially rotating miniature heat pipes have an incredibly high effective thermal conductance and an enormous heat transfer capability. Concurrently, the heat pipe has an uncomplicated structure and relatively low manufacturing costs. The heat pipe can also resist strong vibrations and is well suited for a high temperature environment. Hence, the heat pipes with a common reservoir make incorporation of heat pipes into turbo-machinery much more feasible and cost effective.

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La vulnérabilité est l’attribut fondamental justifiant le passage des frontières du refuge canadien (Rousseau et al., 2002 ; Clément et Bolduc, 2004). Elle est preuve d’insécurité pour la victime requérant l’asile ; elle est aussi porteuse d’espérance de sécurité en terre hospitalière. Elle est pourtant potentiel réactualisé dans l’insécurité d’un statut incertain en terre d’accueil (Agamben, 1997 ; D’Halluin, 2004). Violente immersion. En attendant que les preuves de sa vulnérabilité originelle soient validées, le demandeur d’asile se retrouve dans un entre-deux a-territorial et atemporel (Agier, 2002 ; Le Blanc, 2010) et dans une précarité tout aussi dangereuse (Ouimet et al., 2009). Des besoins émergent en cette terre inconnue, or l’accès aux soins de santé lui est limité par des textes de lois ambigus et leurs interprétations maladroites (Harris et Zuberi, 2015). Ainsi lorsqu’il se heurte à des barrières érigées par une transmission d’informations défectueuse, sa précarité ne fait qu’empirer. Tel un boomerang, ce paradoxe cultive leur vulnérabilité. Alors que les recherches interrogent les divers intervenants en santé (Asgary et Smith, 2013), j’ai choisi de donner la parole aux premiers concernés et de relayer leur vécu par rapport à leur propre personne. Deux objectifs principaux guident la recherche : documenter dans un premier temps leur parcours de quête de soins à partir de la circulation des informations formelles et informelles dans le but de sonder leur avis sur la vulnérabilité qui leur est attribuée ; documenter dans un second temps leur parcours migratoire de quête de soi afin de mettre en lumière les stratégies alternatives d’entrée en contact avec la société d’accueil pour négocier voire rejeter cette identité vulnérable. J’ai rencontré pour cela des demandeurs d’asile lors d’un terrain de huit mois au sein d’un organisme communautaire d’hébergement à Montréal. Dans ce contexte d’accompagnement et de stabilité spatiale, accalmie bienvenue au terme d’un itinéraire semé d’embûches, les ressources informationnelles sont à leur disposition et la reconnaissance sociale est à l’honneur. En parallèle, beaucoup témoignent de la diminution de leurs besoins de soins de santé. En cette communauté thérapeutique (Pocreau, 2005), véritable tremplin vers la société d’accueil en attendant un statut reconnu, ils bénéficient d’une possibilité de participation sociale et d’un sentiment d’appartenance valorisant. Si des conditions précaires peuvent aggraver la vulnérabilité, le bricolage de conditions positives favorise la résilience (Cleveland et al., 2014), créant un environnement revitalisant qui leur permet de rebondir.

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We measured the distribution in absolute magnitude - circular velocity space for a well-defined sample of 199 rotating galaxies of the Calar Alto Legacy Integral Field Area Survey (CALIFA) using their stellar kinematics. Our aim in this analysis is to avoid subjective selection criteria and to take volume and large-scale structure factors into account. Using stellar velocity fields instead of gas emission line kinematics allows including rapidly rotating early-type galaxies. Our initial sample contains 277 galaxies with available stellar velocity fields and growth curve r-band photometry. After rejecting 51 velocity fields that could not be modelled because of the low number of bins, foreground contamination, or significant interaction, we performed Markov chain Monte Carlo modelling of the velocity fields, from which we obtained the rotation curve and kinematic parameters and their realistic uncertainties. We performed an extinction correction and calculated the circular velocity v_circ accounting for the pressure support of a given galaxy. The resulting galaxy distribution on the M-r - v(circ) plane was then modelled as a mixture of two distinct populations, allowing robust and reproducible rejection of outliers, a significant fraction of which are slow rotators. The selection effects are understood well enough that we were able to correct for the incompleteness of the sample. The 199 galaxies were weighted by volume and large-scale structure factors, which enabled us to fit a volume-corrected Tully-Fisher relation (TFR). More importantly, we also provide the volume-corrected distribution of galaxies in the M_r - v_circ plane, which can be compared with cosmological simulations. The joint distribution of the luminosity and circular velocity space densities, representative over the range of -20 > M_r > -22 mag, can place more stringent constraints on the galaxy formation and evolution scenarios than linear TFR fit parameters or the luminosity function alone.

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As organizações participam em ambientes que, além de complexos, são repletos de ambiguidade e de exigências contraditórias. A capacidade de trabalhar com os paradoxos é necessária para responder a essa complexidade ambiental. Este artigo discute como esse desafio pode ser levado a cabo. Começa por esclarecer a diferença entre processos por vezes equiparados a paradoxos por envolverem contradições, nomeadamente dilemas e dialéticas. Trata, depois, de diferentes possibilidades de resposta às situações paradoxais. Discute, finalmente, como dessas respostas podem resultar círculos viciosos versus virtuosos.

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Observations of jets in X-ray binaries show a correlation between radio power and black hole spin. This correlation, if confirmed, points toward the idea that relativistic jets may be powered by the rotational energy of black holes. In order to examine this further, we perform general relativistic radiative transport calculations on magnetically arrested accretion flows, which are known to produce powerful jets via the Blandfordâ Znajek (BZ) mechanism. We find that the X-ray and γ-ray emission strongly depend on spin and inclination angle. Surprisingly, the high-energy power does not show the same dependence on spin as the BZ jet power, but instead can be understood as a redshift effect. In particular, photons observed perpendicular to the spin axis suffer little net redshift until originating from close to the horizon. Such observers see deeper into the hot, dense, highly magnetized inner disk region. This effect is largest for rapidly rotating black holes due to a combination of frame dragging and decreasing horizon radius. While the X-ray emission is dominated by the near horizon region, the near-infrared (NIR) radiation originates at larger radii. Therefore, the ratio of X-ray to NIR power is an observational signature of black hole spin.

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Introducción: La relación entre el sueño y la calidad de vida constituye una de las problemáticas de gran importancia en el ámbito de las condiciones de trabajo de funcionarios y personal médico de las unidades prestadoras de servicios hospitalarios. Estudios han evidenciado una relación entre la calidad del sueño y la calidad de vida y la falta de sueño se ha asociado con errores en los procedimientos y lesiones ocupacionales. Objetivo: Relacionar la calidad del sueño con la calidad de vida en personal de salud de una Institución de IV nivel, en la ciudad de Caracas (Venezuela). Materiales y métodos: Estudio de corte transversal con datos secundarios del personal de salud de un Hospital de IV nivel (93 registros) en la ciudad de Caracas (Venezuela). Se emplearon variables sociodemográficas, las relacionadas con calidad del sueño y provenientes de la encuesta “Índice de calidad de sueño de Pittsburgh” y con calidad de vida incluidas en el cuestionario SF-36. Se utilizo el programa estadístico SPSS para el análisis y se obtuvieron medidas de tendencia central y dispersión. Para relacionar las variables se emplearon las pruebas de Shapiro Wilk y el coeficiente de correlación de Spearman. Resultados: El total de los trabadores que ingresaron al estudio tuvieron un rango de edad entre 19 y 70 años y una desviación estándar de 10,9 años. Respecto al género, el 79,6% (n=74) fueron mujeres, y el 20,4% (n=19) fueron hombres. Con relación al componente de calidad de vida, se encontró que la mayor puntuación se asocia con el desempeño emocional (61,3%), la Vitalidad (73,5%), la Función Física (91%), el Dolor Físico (100%) y la Función Social (100%). Igualmente, se encontró que la totalidad de los trabajadores encuestados refirieron ser malos dormidores (91.4%). Al correlacionar la calidad de sueño con la calidad de vida, se encontró una asociación estadísticamente significativa, específicamente con el componente Latencia de sueño (p=0.008), Eficiencia habitual de sueño (p=0,001), Perturbaciones del Sueño (p=0,040) y Disfunción diurna (p= 0,008). Conclusión Este estudio reporto que la falta de sueño tiene relación con la calidad de vida del personal de salud y que la totalidad de los trabajadores de este estudio refirieron ser malos dormidores, hechos que demandan la atención de los programas de salud de las empresas, para promover medidas preventivas y correctivas respecto a las condiciones laborales como parte del bienestar de las personas.

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Introducción: Se considera el trabajo rotativo nocturno como aquel que se lleva a cabo fuera de las horas laborales diurnas. Se ha planteado que el trabajo en horas nocturnas podría estar relacionado con diversos desordenes, dentro de ellos un incremento en el índice de masa corporal con el consecuente desarrollo de sobrepeso y obesidad. El objetivo de este estudio es realizar una revisión de la literatura existente, acerca del trabajo rotativo nocturno y su relación con el índice de masa corporal (IMC) en trabajadores de la salud. Métodos: Se realizó una revisión sistemática de información publicada en los últimos 10 años en la base de datos PUBMED y se seleccionaron únicamente los artículos de texto completo relacionados con este tema en los idiomas inglés, español e italiano. Resultados: A través de la búsqueda se encontraron 10 artículos que cumplieron los criterios de inclusión definidos. Predominantemente se obtuvieron estudios de diseño transversal. Tres de estos estudios encontraron una asociación entre trabajo rotativo nocturno actual e incremento en el IMC y por el contrario dos estudios no hallaron esta asociación. Por otro lado, seis estudios coinciden en una asociación positiva entre mayor tiempo acumulado en trabajo rotativo nocturno y un incremento en el IMC. Conclusiones: Los hallazgos encontrados en los estudios analizados apuntan a la existencia de una estrecha relación entre el aumento del Índice de Masa Corporal (IMC) con los turnos nocturnos (o rotativos que incluyen este horario) llevados a cabo de manera prolongada, en los trabajadores de la salud, en comparación con los trabajadores que realizan turnos diurnos regulares.

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In recent years, haying has extended to Iberian Mediterranean dry grasslands potentially threatening grassland birds. We evaluate the between and within-year effects of haying on grassland birds in Alentejo region, Portugal. Our main goals were: (1) to investigate variations on bird abundance and species richness in the fields hayed, with respect to past haying events occurred in a field and its surroundings and (2) to investigate the shifts in bird abundance, species richness and spatial dynamics resulting from haying a field and its surrounding area in a given year. We conducted grassland bird censuses during the breeding season through point counts from 2012 to 2015. The relationship between bird abundance/richness and past haying events was investigated using Generalized Linear Models whereas within-year effects of haying were analysed using Generalized Additive Models. Bird abundance in a field was positively related with the surface hayed in the vicinity of that field in the previous year. However, contrasting yearly effects were found for non passerines. Also, some species prefer fields with less haying events or surface hayed, whereas others occur mostly in fields frequently managed for haying. Haying a field leads, in the short term, to its abandonment by birds, and thus to a decrease in bird abundance and, for some species, to spatial concentration in surrounding fields offering suitable habitat. We conclude that within-year effects of haying have higher impact on grassland birds than between-year effects. Maintaining haying at low levels by rotating haying yearly through the different fields in each farm and using partial haying may be an adequate way to ensure an effective management of grassland bird populations.

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In a study of the vanadyl (VO2þ)-humic acids system, the residual vanadyl ion suppressed fluorescence and specific electron paramagnetic resonance (EPR) and NMR signals. In the case of NMR, the proton rotating frame relaxation times (T1qH) indicate that this suppression is due to an inefficient H-C cross polarization, which is a consequence of a shortening of T1qH. Principal components analysis (PCA) facilitated the isolation of the effect of the VO2þ ion and indicated that the organic free radical signal was due to at least two paramagnetic centres and that the VO2þ ion preferentially suppressed the species whose electronic density is delocalized over O atoms (greater g-factor). additionally, the newly obtained variables (principal components ? PC) indicated that, as the result of the more intense tillage a relative increase occurred in the accumulation of: (i) recalcitrant structures; (ii) lignin and long-chain alkyl structures; and (iii) organic free radicals with smaller g-factors.

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Le attività di ricerca svolte nel corso del dottorato di ricerca, sono state focalizzate principalmente sullo studio dell’evoluzione microstrutturale, delle proprietà meccaniche e tribologiche di una particolare lega da fonderia, EV31A, con alte percentuali di terre rare (Nd e Gd > 4% in peso). Le analisi microstrutturali sono state eseguite tramite microscopia ottica (OM), elettronica in scansione (SEM) ed elettronica in trasmissione (TEM), mentre le proprietà meccaniche sono state determinate attraverso prove di trazione e prove di fatica a flessione rotante. Al fine di incrementare le proprietà tribologiche delle leghe di magnesio è stata valutata l’efficacia del trattamento PEO sia sulla lega EV31A, sia sulle più comuni leghe AZ80 e AZ91D, effettuando test tribologici in modalità pattino su cilindro (Block on Ring). Infine è stato condotto uno studio sull’efficacia del trattamento di fusione superficiale laser (LSM), analizzandone gli effetti sia sull’evoluzione microstrutturale, sia sulle proprietà meccaniche e sulla resistenza a corrosione. Le attività svolte nel corso del dottorato di ricerca sono state svolte presso il Dipartimento di Ingegneria Industriale DIN della Scuola di Ingegneria e Architettura dell’Università di Bologna sotto la supervisione della Prof. ssa Lorella Ceschini.

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The present work aims to provide a deeper understanding of thermally driven turbulence and to address some modelling aspects related to the physics of the flow. For this purpose, two idealized systems are investigated by Direct Numerical Simulation: the rotating and non-rotating Rayleigh-Bénard convection. The preliminary study of the flow topologies shows how the coherent structures organise into different patterns depending on the rotation rate. From a statistical perspective, the analysis of the turbulent kinetic energy and temperature variance budgets allows to identify the flow regions where the production, the transport, and the dissipation of turbulent fluctuations occur. To provide a multi-scale description of the flows, a theoretical framework based on the Kolmogorov and Yaglom equations is applied for the first time to the Rayleigh-Bénard convection. The analysis shows how the spatial inhomogeneity modulates the dynamics at different scales and wall-distances. Inside the core of the flow, the space of scales can be divided into an inhomogeneity-dominated range at large scales, an inertial-like range at intermediate scales and a dissipative range at small scales. This classic scenario breaks close to the walls, where the inhomogeneous mechanisms and the viscous/diffusive processes are important at every scale and entail more complex dynamics. The same theoretical framework is extended to the filtered velocity and temperature fields of non-rotating Rayleigh-Bénard convection. The analysis of the filtered Kolmogorov and Yaglom equations reveals the influence of the residual scales on the filtered dynamics both in physical and scale space, highlighting the effect of the relative position between the filter length and the crossover that separates the inhomogeneity-dominated range from the quasi-homogeneous range. The assessment of the filtered and residual physics results to be instrumental for the correct use of the existing Large-Eddy Simulation models and for the development of new ones.

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L’attività svolta durante il dottorato è stata incentrata su due tematiche riguardanti: (i) la modifica della composizione chimica delle classiche leghe di alluminio da fonderia per incrementarne la resistenza e stabilità termica; (ii) lo studio del comportamento a fatica di acciai innovativi alto-resistenziali, allo scopo di valutarne il loro utilizzo per la produzione di alberi motore e distribuzione in sostituzione dei tradizionali acciai utilizzati dopo bonifica e trattamento superficiale di nitrurazione. La messa a punto di una lega di alluminio da fonderia con elevata resistenza in temperatura ha richiesto, oltre all’individuazione della composizione chimica, l’ottimizzazione del trattamento termico e una completa caratterizzazione meccanica statica a fatica sia a temperatura ambiente sia a 200°C. L’attività ha permesso di sviluppare una lega, ottenuta aggiungendo 1,3% in peso di rame alla classica lega A357 (Al-Si-Mg), cha ha mostrato avere proprietà meccaniche superiori a quelle delle tradizionali leghe Al-Si-Mg-Cu quali la A354 e C355 sia a temperatura ambiente che a 200 °C dopo lunga esposizione in temperatura. Per quanto riguarda gli acciai innovativi, dopo una preliminare analisi di mercato per individuare quali acciai potessero essere oggetto di studio, è stato valutato come migliorarne le prestazioni a fatica, anche in presenza d’intaglio, attraverso la scelta del trattamento termico più opportuno e del processo di pallinatura. I risultati delle caratterizzazioni microstrutturale e meccanica svolte hanno permesso di individuare due acciai (nomi commerciali K890 e ASP2017) ottenuti per metallurgia delle polveri, ad oggi utilizzati solo per la produzione di stampi e/o utensili, in grado di sostituire gli acciai con cui vengono oggi realizzati i componenti, senza la necessità di eseguire il trattamento di nitrurazione