967 resultados para Additive Manufacturing 3D Printing FDM TPU nanocompisiti


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Three dimensional (3D) printers of continuous fiber reinforced composites, such as MarkTwo (MT) by Markforged, can be used to manufacture such structures. To date, research works devoted to the study and application of flexible elements and CMs realized with MT printer are only a few and very recent. A good numerical and/or analytical tool for the mechanical behavior analysis of the new composites is still missing. In addition, there is still a gap in obtaining the material properties used (e.g. elastic modulus) as it is usually unknown and sensitive to printing parameters used (e.g. infill density), making the numerical simulation inaccurate. Consequently, the aim of this thesis is to present several work developed. The first is a preliminary investigation on the tensile and flexural response of Straight Beam Flexures (SBF) realized with MT printer and featuring different interlayer fiber volume-fraction and orientation, as well as different laminate position within the sample. The second is to develop a numerical analysis within the Carrera' s Unified Formulation (CUF) framework, based on component-wise (CW) approach, including a novel preprocessing tool that has been developed to account all regions printed in an easy and time efficient way. Among its benefits, the CUF-CW approach enables building an accurate database for collecting first natural frequencies modes results, then predicting Young' s modulus based on an inverse problem formulation. To validate the tool, the numerical results are compared to the experimental natural frequencies evaluated using a digital image correlation method. Further, we take the CUF-CW model and use static condensation to analyze smart structures which can be decomposed into a large number of similar components. Third, the potentiality of MT in combination with topology optimization and compliant joints design (CJD) is investigated for the realization of automated machinery mechanisms subjected to inertial loads.

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Il sistema muscolo scheletrico è costituito dall’insieme di ossa, cartilagini e tessuti molli come muscoli, tendini e legamenti, che presentano una diversa struttura e differenti proprietà meccaniche tra loro. La sua principale funzione è quella di fornire supporto, forma e garantire il movimento fisiologico del corpo. Per questa ragione, il sistema muscolo scheletrico e continuamente sollecitato e di conseguenza molto soggetto a traumi o infortuni. Un’alternativa all’approccio chirurgico tradizionale è l’ingegneria tissutale che permette di creare scaffold in grado di promuovere la rigenerazione dei tessuti naturali. Negli ultimi decenni si è riscontrato un forte incremento dell’utilizzo della stampa 3D e dell’elettrofilatura come tecniche di fabbricazione di questi scaffold grazie ai loro diversi vantaggi. La stampa 3D presenta diversi benefici, tra cui la possibilità di creare costrutti personalizzati in grado di riprodurre similmente la geometria del tessuto nativo con efficienza dei costi e tempi di produzione ridotti rispetto alle tecniche tradizionali. Tuttavia, questa tecnica presenta ancora una limitata risoluzione sufficiente, ad esempio, per riprodurre la struttura e le proprietà del tessuto osseo, ma non idonea al raggiungimento della scala nanometrica, tipica dei tessuti fibrosi muscolo scheletrici. Al contrario, l’elettrofilatura è in grado di produrre fibre nanometriche che riescono a mimare la matrice extracellulare di questi tessuti. Tuttavia, si riscontrano ancora alcune difficoltà nel controllare la struttura tridimensionale e le proprietà meccaniche di questi scaffold nella scala micro e macrometrica. Lo scopo di questa tesi è quello di analizzare gli studi che utilizzano un approccio combinato tra stampa 3D ed elettrofilatura per la produzione di scaffold per la rigenerazione del tessuto muscolo scheletrico, definendo lo stato dell’arte dei vari processi di produzione e le possibili prospettive future.

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Ogni giorno, nel mondo, si verificano migliaia di fratture ossee e la maggior parte di esse, con il passare del tempo, riescono a rimarginarsi in modo autonomo. In casi più importanti, le fratture ossee necessitano di interventi chirurgici. Per queste motivazioni, affianco ad autoinnesti, alloinnesti e xenoinnesti, negli ultimi anni si è iniziato a parlare in modo sempre più frequente di ingegneria tissutale. In questo tipo di ingegneria, vengono sviluppate delle impalcature in grado di emulare il tessuto osseo naturale. Lo scopo di questa tesi è analizzare le varie tipologie di produzione di scaffold ossei che si ottengono attraverso la tecnologia della stampa 3D. Nella parte introduttiva dell’elaborato, viene inserita una descrizione del tessuto osseo visto sia dal punto di vista cellulare e della composizione, sia dal punto di vista delle proprietà meccaniche. Successivamente, parlando di medicina rigenerativa, vengono descritti i mezzi di osteosintesi, gli innesti e le impalcature, o scaffold, da impiantare nel sito di interesse. Per quanto riguarda gli scaffold, devono soddisfare diversi requisiti, tra cui la biomimetica, la compatibilità con l’attività cellulare, requisiti di progettazione e proprietà meccaniche adeguate. Tali scaffold possono essere realizzati attraverso diverse geometrie interne. Nella seconda parte dell’elaborato, vengono analizzate le geometrie a cubo semplice, a cubo a faccia centrata/a diamante, a cubo a corpo centrato, a dodecaedro rombico, a traliccio di ottetto, a cubo troncato, modellate attraverso il metodo delle superfici minime triplamente periodiche e con tassellatura di Voronoi. Per i vari articoli analizzati sono stati investigati i metodi di produzione e i risultati ottenuti confrontando vantaggi e svantaggi fra le differenti geometrie.

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This study investigates the effect of an additive process in manufacturing of thick composites. Airstone 780 E epoxy resin and 785H Hardener system is used in the analysis since it is widely used wind turbine blade, namely thick components. As a fiber, fabric by SAERTEX (812 g/m2) with a 0-90 degrees layup direction is used. Temperature overshoot is a major issue during the manufacturing of thick composites. A high temperature overshoot leads to an increase in residual stresses. These residual stresses are causing warping, delamination, dimensional instability, and undesired distortion of composite structures. A coupled thermo-mechanical model capable of predicting cure induced residual stresses have been built using the commercial FE software Abaqus®. The possibility of building thick composite components by means of adding a finite number of sub-laminates has been investigated. The results have been compared against components manufactured following a standard route. The influence of pre-curing of the sub-laminates has also been addressed and results compared with standard practice. As a result of the study, it is found that introducing additive process can prevent temperature overshoot to occur and benefits the residual stresses generation during the curing process. However, the process time required increases by 50%, therefore increasing the manufacturing costs. An optimized cure cycle is required to minimize process time and cure induced defects simultaneously.

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La tesi di laurea, di tipo sperimentale, nasce dall’esigenza di progettare un sistema di force feedback da installare sui comandi di un simulatore di volo per elicottero, prevedendo di utilizzare tecnologie additive per la produzione dei componenti. Sono state, quindi, presentate alcune proposte per il soddisfacimento dei requisiti di progetto. Tra le due soluzioni progettuali individuate, una è stata scartata, mentre l'altra, basata su un collare da montare sul comando del ciclico e su un disegno per il supporto del sistema di ritenuta, è stata sviluppata. Sono state fatte, di conseguenza, assieme a quelle di tipo progettuale, alcune scelte legate alla pianificazione meccanica (ad esempio, scelta delle viti e delle molle). Il risultato finale è un sistema di force feedback funzionante, in cui la leva del comando ciclico del simulatore di volo per elicottero oppone uno sforzo in seguito ad una deflessione da parte del pilota.

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Il progetto si presenta come un miglioramento di una particolare terapia sanitaria, dove la maggior parte dei pazienti, soprattutto quelli in un’età delicata, possono avvertire determinati problemi fisici o psicologici. La terapia in questione è la Chemioterapia, che consiste nella somministrazione di una o più sostanze capaci di aggredire le cellule tumorali che si moltiplicano grazie a una fleboclisi, ovvero una procedura che è in grado di somministrare via endovenosa una sostanza come il trattamento appena citato, sfruttando alcune vene solide del braccio come la Basilica. Grazie a un’esperienza personale, pareri (dottoressa Antonella Sau) e coinvolgimenti di altri pazienti dell’associazione AGBE che hanno avuto un problema simile, è stato possibile progettare e inventare un tutore polimerico ad alta compatibilità dermatologica, in grado di immobilizzare l’arto usato nella terapia regalando una maggiore comodità e stabilità sia della fleboclisi che del braccio stesso. Inizialmente il tutore sarà ideato prendendo specifiche misure dell’avambraccio/gomito del singolo paziente, per poi stamparlo in 3D e portarlo ad effettuare i cicli somministrati per combattere la malattia. A fine di tutto, il paziente avrà sostenuto una cura delicata come la Chemioterapia con un maggiore comfort, maggiore stabilità psicologica e soprattutto meno complicanze come stravaso, infezioni varie, fuoriuscite di sostante chemioterapeutiche, gonfiori, depressione e irritazioni endovenose.

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This study evaluated the effect of specimens' design and manufacturing process on microtensile bond strength, internal stress distributions (Finite Element Analysis - FEA) and specimens' integrity by means of Scanning Electron Microscopy (SEM) and Laser Scanning Confocal Microscopy (LCM). Excite was applied to flat enamel surface and a resin composite build-ups were made incrementally with 1-mm increments of Tetric Ceram. Teeth were cut using a diamond disc or a diamond wire, obtaining 0.8 mm² stick-shaped specimens, or were shaped with a Micro Specimen Former, obtaining dumbbell-shaped specimens (n = 10). Samples were randomly selected for SEM and LCM analysis. Remaining samples underwent microtensile test, and results were analyzed with ANOVA and Tukey test. FEA dumbbell-shaped model resulted in a more homogeneous stress distribution. Nonetheless, they failed under lower bond strengths (21.83 ± 5.44 MPa)c than stick-shaped specimens (sectioned with wire: 42.93 ± 4.77 MPaª; sectioned with disc: 36.62 ± 3.63 MPa b), due to geometric irregularities related to manufacturing process, as noted in microscopic analyzes. It could be concluded that stick-shaped, nontrimmed specimens, sectioned with diamond wire, are preferred for enamel specimens as they can be prepared in a less destructive, easier, and more precise way.

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The sustainability of intensive swine production demands alternative destinations for the generated residues. Ashes from swine rice husk-based deep bedding were tested as a mineral addition for cement mortars. The ashes were obtained at 400 to 600ºC, ground and sieved through a 325 mesh sieve (# 0.045 mm). The characterization of the ashes included the determination of the index of pozzolanic activity with lime. The ashes were also tested as partial substitutes of Portland cement. The mortars were prepared using a cement:sand proportion of 1:1.5, and with water/cement ratio of 0.4. Three percentages of mass substitution of the cement were tested: 10, 20 and 30%. Mortar performances were assessed at 7 and 28 days determining their compressive strength. The chosen condition for calcinations at the laboratory scale was related to the maximum temperature of 600ºC since the resulting ashes contained vitreous materials and presented satisfactory values for the pozzolanic index under analysis. The pozzolanic activity indicated promising results for ashes produced at 600ºC as a replacement of up to 30% in cement masses.

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The aim of this study was to evaluate the viability of the use of spent laying hens' meat in the manufacturing of mortadella-type sausages with healthy appeal by using vegetable oil instead of animal fat. 120 Hy-line® layer hens were distributed in a completely randomized design into two treatments of six replicates with ten birds each. The treatments were birds from light Hy-line® W36 and semi-heavy Hy-line® Brown lines. Cold carcass, wing, breast and leg fillets yields were determined. Dry matter, protein, and lipid contents were determined in breast and leg fillets. The breast and legg fillets of three replicates per treatment were used to manufacture mortadella. After processing, sausages were evaluated for proximal composition, objective color, microbiological parameters, fatty acid profile and sensory acceptance. The meat of light and semi-heavy spent hens presented good yield and composition, allowing it to be used as raw material for the manufacture of processed products. Mortadellas were safe from microbiological point of view, and those made with semi-heavy hens fillets were redder and better accepted by consumers. Values for all sensory attributes were evaluated over score 5 (neither liked nor disliked). Both products presented high polyunsaturated fatty acid contents and good polyunsaturated to saturated fatty acid ratio. The excellent potential for the use of meat from spent layer hens of both varieties in the manufacturing of healthier mortadella-type sausage was demonstrated.

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An important approach to cancer therapy is the design of small molecule modulators that interfere with microtubule dynamics through their specific binding to the ²-subunit of tubulin. In the present work, comparative molecular field analysis (CoMFA) studies were conducted on a series of discodermolide analogs with antimitotic properties. Significant correlation coefficients were obtained (CoMFA(i), q² =0.68, r²=0.94; CoMFA(ii), q² = 0.63, r²= 0.91), indicating the good internal and external consistency of the models generated using two independent structural alignment strategies. The models were externally validated employing a test set, and the predicted values were in good agreement with the experimental results. The final QSAR models and the 3D contour maps provided important insights into the chemical and structural basis involved in the molecular recognition process of this family of discodermolide analogs, and should be useful for the design of new specific ²-tubulin modulators with potent anticancer activity.

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The aim of this study was to evaluate the stress distribution in the cervical region of a sound upper central incisor in two clinical situations, standard and maximum masticatory forces, by means of a 3D model with the highest possible level of fidelity to the anatomic dimensions. Two models with 331,887 linear tetrahedral elements that represent a sound upper central incisor with periodontal ligament, cortical and trabecular bones were loaded at 45º in relation to the tooth's long axis. All structures were considered to be homogeneous and isotropic, with the exception of the enamel (anisotropic). A standard masticatory force (100 N) was simulated on one of the models, while on the other one a maximum masticatory force was simulated (235.9 N). The software used were: PATRAN for pre- and post-processing and Nastran for processing. In the cementoenamel junction area, tensile forces reached 14.7 MPa in the 100 N model, and 40.2 MPa in the 235.9 N model, exceeding the enamel's tensile strength (16.7 MPa). The fact that the stress concentration in the amelodentinal junction exceeded the enamel's tensile strength under simulated conditions of maximum masticatory force suggests the possibility of the occurrence of non-carious cervical lesions such as abfractions.

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A phase shift proximity printing lithographic mask is designed, manufactured and tested. Its design is based on a Fresnel computer-generated hologram, employing the scalar diffraction theory. The obtained amplitude and phase distributions were mapped into discrete levels. In addition, a coding scheme using sub-cells structure was employed in order to increase the number of discrete levels, thus increasing the degree of freedom in the resulting mask. The mask is fabricated on a fused silica substrate and an amorphous hydrogenated carbon (a:C-H) thin film which act as amplitude modulation agent. The lithographic image is projected onto a resist coated silicon wafer, placed at a distance of 50 mu m behind the mask. The results show a improvement of the achieved resolution - linewidth as good as 1.5 mu m - what is impossible to obtain with traditional binary masks in proximity printing mode. Such achieved dimensions can be used in the fabrication of MEMS and MOEMS devices. These results are obtained with a UV laser but also with a small arc lamp light source exploring the partial coherence of this source. (C) 2010 Optical Society of America

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The aim of the present study was to evaluate the heterosis effects on weaning weight at 205 days (WW, N = 146,464), yearling weight at 390 days (YW, N = 69,315) and weight gain from weaning to yearling (WG, N = 59,307) in composite beef cattle. The fixed models were: RM, which included contemporary groups, class of age of dam, outcrossing percentages for direct and maternal effects, and additive direct and maternal ( AM) breed effects; R, RM model, minus AM breed effects, and H, RM model, minus additive breed effects. The estimates for W205 were in general positive (P < 0.01). The R and H models resulted in similar estimates, but they were very different from the ones estimated by the RM model. For W390, the R and H models resulted in general positive estimates (P < 0.05). For WG, the RM model resulted in general significant heterosis effects (P < 0.05). It can be concluded that the RM model seems to supply estimates of better quality (P < 0.01).

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Survival or longevity is an economically important trait in beef cattle. The main inconvenience for its inclusion in selection criteria is delayed recording of phenotypic data and the high computational demand for including survival in proportional hazard models. Thus, identification of a longevity-correlated trait that could be recorded early in life would be very useful for selection purposes. We estimated the genetic relationship of survival with productive and reproductive traits in Nellore cattle, including weaning weight (WW), post-weaning growth (PWG), muscularity (MUSC), scrotal circumference at 18 months (SC18), and heifer pregnancy (HP). Survival was measured in discrete time intervals and modeled through a sequential threshold model. Five independent bivariate Bayesian analyses were performed, accounting for cow survival and the five productive and reproductive traits. Posterior mean estimates for heritability (standard deviation in parentheses) were 0.55 (0.01) for WW, 0.25 (0.01) for PWG, 0.23 (0.01) for MUSC, and 0.48 (0.01) for SC18. The posterior mean estimates (95% confidence interval in parentheses) for the genetic correlation with survival were 0.16 (0.13-0.19), 0.30 (0.25-0.34), 0.31 (0.25-0.36), 0.07 (0.02-0.12), and 0.82 (0.78-0.86) for WW, PWG, MUSC, SC18, and HP, respectively. Based on the high genetic correlation and heritability (0.54) posterior mean estimates for HP, the expected progeny difference for HP can be used to select bulls for longevity, as well as for post-weaning gain and muscle score.

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We analyze the breaking of Lorentz invariance in a 3D model of fermion fields self-coupled through four-fermion interactions. The low-energy limit of the theory contains various submodels which are similar to those used in the study of graphene or in the description of irrational charge fractionalization.