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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
51

The influence of microstructural features on the mechanical properties of Magsimal®-59

Fabian, Robert January 2021 (has links)
No description available.
52

Effects of Process Parameters, HIP Processing, Build Orientation, and Defects on S-N Fatigue and Fatigue Crack Growth of Selective Laser Melting-Processed AlSi10Mg

Sharpe, Collin 25 January 2022 (has links)
No description available.
53

Panting Fatigue of Welded Steel Tee Details

Shohel, Muhammad Shah Newaz 27 May 2015 (has links)
No description available.
54

田口式品質工程方法在電子業應用之研究-華通電腦公司個案研究 / Application Of Taguchi's Quality Engineering Method In Electronic Industry--A Case Study of COMPEQ

張金生, Chang, Chin-Sheng Unknown Date (has links)
近年來,我國對於田口式品質工程方法的運用,已漸漸普及於各個生產事 業。然而,在以往田口方法的應用實例中大多只使用一種數據分析法,即 傳統實驗設計的變異數分析法,或田口方法的信號雜音比( S/N ratio ),對於二者之間的比較及異同處,則較少提及﹔且絕大部分是只探討單 一品質特性最佳化的問題,對於同一製程中同時具有多個品質特性需最佳 化的問題,亦較少觸及。本研究首先分別引用二種數據分析法進行提昇自 動光學檢驗(AOI)偵測能力」}的數據解析、比較二種分析法在理論上及應 用上的差別,並依保守原則,初步決定各品質特性(本研究有三個品質特 性)的最佳因子水準組合。其次,針對各品質特性間因子水準互相矛盾的 情形,本文將引用下述3種分析方法於研究案例,並綜合各種方法的優缺 點及適用狀況,藉以找出多品質特性同時最佳化的因子水準組合。此三種 分析方法為: (1) 畫出各因子對個別品質特性之影響效果總調查表,再經 由人為的比較判斷後選取最佳的條件組合 (2) 以個別品質特性之信號雜 音比的加權和作分析 (3) 使用品質特性值標準化的方法做分析由分析結 果,吾人可知現有各種方法均有其優缺點,唯有熟悉各種方法並配合豐富 經驗與專業知識,視實驗狀況而選擇性的加以應用,方能獲致良好實驗效 果。
55

Experimental And Theoretical Studies In Fatigue Damage Modeling

Rambabu, Dabiru Venkata 08 1900 (has links)
This thesis has two parts. In the first part, we use the results of new fatigue experiments conducted with variable load levels as well as variable stress ratios to critically assess three (two old and one relatively new) cumulative fatigue damage models. These models are deterministic. Such models are usually tested using multiple blocks of periodic loading with differing amplitudes. However, available data pertains to zero-mean loading, and does not investigate the role of variable stress ratio (Smin/Smax). Here, we present experimental results for variable stress ratios. Two specimen geometries and two materials (Al 2014and Al 2024)are tested. Manson’s double linear damage rule (DLDR)gives the highest accuracy in predicting the experimental outcome, even in the presence of variable stress ratios, whereas predictions of the newer model (“A constructive empirical theory for metal fatigue under block cyclic loading,” Proceedings of the Royal Society A, 464 (2008), 1161-1179) are slightly inferior. The widely used Miner’s rule is least accurate in terms of prediction. The merits and drawbacks of these models, in light of the experimental results, are as follows. The DLDR, though accurate, has minor scientific inconsistencies and no clear generalization. The constructive model has possible generalizability and more appealing scientific consistency, but presently has poorer accuracy. Miner’s rule, least accurate, lies within the constructive approach for special parameter values. The DLDR can guide the new (constructive)approach through new parameter fitting criteria. In the second part of this thesis, we consider the scatter in fatigue life and use the Weibull distribution to describe ‘S-N-P’ curves. We first assume homoscedasticity (load-independent or constant variance) and present a way to draw a p-percentile line on a log-log load-life plot. Then heteroscedasticity (load-dependent variance) in fatigue life is incorporated and a simple statistical model is proposed, to obtain a straight line percentile plot at a pre-specified probability of survival ps. The proposed method is illustrated for Al 2014-T6 and Al 2024-T4 data sets (extracted manually) from MMPDS-01 (a data handbook).
56

Etude de comportement en fatigue des composites renforcés par fibres végétales : prise en compte de la variabilité des propriétés

Liang, Shaoxiong 05 November 2012 (has links) (PDF)
L'étude présentée porte sur la caractérisation et la comparaison des propriétés quasi-statiques et en fatigue de composites à fibres de lin et de verre avec une matrice époxy. Une importante campagne d'essais de fatigue a été réalisée à partir des propriétés quasi-statiques de traction et cisaillement plan mesurées. Il apparaît que les caractéristiques en statique et en fatigue du verre/époxy sont supérieures à celles du lin/époxy à taux de fibres et stratification identiques. Cependant, en raison de la faible densité des renforts de lin, les écarts entre les propriétés spécifiques des deux matériaux sont faibles. La mesure de l'évolution des propriétés en fatigue a mis à jour des comportements phénoménologiques particuliers tels que la diminution de l'amortissement et l'augmentation de la rigidité des lin/époxy ayant des fibres parallèles à la direction du chargement, au cours de la vie des éprouvettes. Le suivi de l'endommagement par la mesure des densités de fissures montre que celle-ci augmente avec le chargement et le nombre de cycles appliqués. Les simulations par éléments finis de la durée de vie des composites lin/époxy, intégrant la variabilité des paramètres du modèle par la méthode Monté-Carlo, donnent des courbes de Wöhler conservatives par rapport aux données expérimentales. Conformément aux mesures expérimentales, la variabilité des durées de vie calculées diminue lorsque le chargement baisse
57

Spectroscopic characterization of transiting exoplanets : A study of the possibility to detect atmospheres around exoplanets using SIMPLE

Waldén, Pierre, Aronson, Erik January 2011 (has links)
This report describes simulations of observations with the near-infrared high-resolution spectrometer SIMPLE that is proposed to the ESO telescope E-ELT. We simulate M4 and G2 stars with transiting Earth-like planets and the goal is to distinguish spectral features originating from the atmosphere of the exoplanet. Noise levels of different magnitudes are added to the simulations and the minimal signal-to-noise required for detection of the atmosphere is estimated. Our conclusion is that detection of atmospheric features looks promising using this setup.
58

Novel properties of interacting particles in small low-dimensional systems.

Romanovsky, Igor Alexandrovich 11 July 2006 (has links)
This work is about the properties of several low dimensional, small systems of interacting particles. We demonstrate that interaction between particles in the low dimensional small systems can lead to many unexpected effects. We considered electrons in a Luttinger liquid, in a superconducting state, and atoms in a magneto-optical trap. Using bosonization techniques we calculated the thermopower of a Luttinger liquid wire with an impurity. We predicted the appearance of a phase dependent force and resonant phase dependent magnetization in the nanoscopic superconductor - normal metal superconductor (or superconductor - two dimensional electron gas - superconductor) junction. We also considered plasma oscillations inside thin superconducting tubes and rings and predicted that the velocities of the plasmons in these systems are periodic functions of the magnetic flux. By considering neutral atoms in a harmonic trap we discovered that strongly repelling atoms do not form Bose-Einstein condensate at zero temperature but tend to occupy different orbitals with small mutual overlap, forming crystallite structures similar to Wigner molecules of electrons inside a quantum dot.
59

Characterization and Modeling of Transformation Induced Fatigue of Shape Memory Alloy Actuators

Bertacchini, Olivier Walter 2009 December 1900 (has links)
The main focus of this research is the transformation induced fatigue behavior of shape memory alloy (SMA) actuators undergoing thermally induced martensitic phase transformation. The recent development of aerospace applications employing shape memory alloys (SMAs) has expanded the need for fatigue life characterization and modeling. Lightweight, compact and with a great work output, SMAs are ideal materials for actuated structural components. However, fatigue life becomes a key factor in applications such as commercial airplanes. Therefore, it is necessary to not only perform fatigue testing but also to investigate the causes of fatigue failure. As a new class of materials, SMAs have unique characteristics and require novel test methodologies to conduct repeatable and reliable fatigue testing. For this research, two materials are being investigated: TiNiCu and Ni-rich NiTi. The experiments performed on the first selected alloy, i.e. TiNiCu SMA, explore three major parameters: the applied stress level, the amount of actuation, and the corrosive nature of the environment. Experimental results show that SMAs undergoing transformation induced fatigue exhibit a low-cycle fatigue behavior and the measurement of the accumulated plastic strain at failure is associated to a Manson-Coffin type failure criterion. Investigations conducted on the post-mortem microstructure showed evidence of a multiphysical coupling between corrosion and cyclic phase transformation, from which a novel cyclic damage mechanism is proposed and explained using the micromechanical shear lag model accounting for actuation and accumulated plastic strains. Thereafter, based upon the identified failure mechanism and considering damage accumulation through crack formation, a stress renormalization procedure is proposed in combination with the Miner’s rule to predict the reduction of number of cycles to failure due to cyclic phase transformation and corrosion. A direct method is first presented and the predictions show good agreement with experimental results. However, both corrosion and corrosion-free fatigue data are required. Therefore, a new approach is proposed: the inverse Miner’s rule, which requires corrosion fatigue data only to predict corrosion-free life. The new and attractive properties of the selected second alloy, i.e. Ni-rich NiTi SMA, have revived the motivation of the aerospace industry to design SMA actuators. One particular property is cyclic stability generated by precipitation hardening mechanism using precipitates. However, are also precipitates due to high Nickel content (60 wt.% or 55 at.%). Parameters such as processing, heat treatments, size effects, surface quality and environment are investigated. Thermomechanical response and fatigue life are discussed and the greatest impact is found to come from specimen surface quality. Finally, a detailed fractography presents the different microstructural aspects of the fatigue damage and concludes to a precipitation driven fatigue failure mechanism cause by precipitates.
60

Ermüdung des Verbundes von Stahlbeton unter Querzug / Bond fatigue in reinforced concrete under transverse tension

Lindorf, Alexander 28 February 2012 (has links) (PDF)
Im Mittelpunkt der vorliegenden Arbeit steht die gezielte Analyse des Verbundverhaltens zwischen Bewehrungsstahl und Beton unter kombinierter Beanspruchung aus Ermüdung und Querzug. Den Hintergrund bilden Stahlbetonbauteile, wie z. B. Fahrbahnplatten von Verbundbrücken, welche einen zweiaxialen Lastabtrag unter nicht vorwiegend ruhenden Belastungen aufweisen. Die Untersuchungen für normal- und hochfesten Beton erfolgten an Ausziehkörpern mit einem durch Querzugspannungen hervorgerufenen Längsriss entlang des Bewehrungsstabes. Das Versuchsprogramm beinhaltete hochzyklische Schwellversuche mit unterschiedlichen Schwingspielen und variierenden Längsrissbreiten bis zu einer Million Lastwechseln. Anhand der Entwicklung des Schlupfes zwischen Bewehrungsstab und Beton konnte eine deutliche Abhängigkeit des Verbundwiderstandes vom Querzug beobachtet werden. Aufbauend auf der Schlupfentwicklung erfolgt die Ableitung von normierten Wöhlerlinien der Verbundermüdung. Diese Wöhlerlinien können direkt in Beziehung zu den Wöhlerlinien der Betonstahlermüdung gesetzt werden und vereinfachen die Erstellung von Dauerfestigkeitsdiagrammen für Bemessungszwecke. Es wird deutlich, dass die Ermüdungsfestigkeit des Verbundes durch das Vorhandensein eines Längsrisses gegenüber der Betonstahlermüdung verstärkt an Bedeutung gewinnt. / The main focus of the present work is the specific analysis of the bond behaviour between reinforcement and concrete under combined loading due to fatigue and transverse tension. The background is formed by reinforced concrete elements such as bridge decks of steel-concrete composite bridges, which show a biaxial load bearing behaviour under not predominantly monotonic loading. The investigations for both normal strength and high performance concrete were conducted on pull-out specimens with a longitudinal crack along the reinforcing bar caused by transverse tensile stresses. The experimental program included high cyclic tests with different stress ranges and varying longitudinal crack widths up to one million load cycles. By means of the slip development, a definite dependency of the bond strength on the transverse tension could be observed. Based on the slip development, normalised S-N curves for bond fatigue have been deduced. These S-N curves can be set in direct relation to the S-N curves for steel fatigue and simplify creating constant life diagrams for design purposes. It becomes clear that the bond fatigue strength, due to an existing longitudinal crack, gains in importance in comparison to the fatigue strength of the reinforcing steel.

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