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La fiabilité anticipe et prévoit le futur en vue d’améliorer les performances et le niveau de sûreté par l’optimisation des stratégies d’exploitation. Elle a fait preuve d’une évolution notable au niveau des matériaux et des structures. Largement inspiré des modèles de la mécanique de rupture, cet ouvrage présente les cas les plus significatifs dont l’encadrement de la probabilité de rupture par les bornes simples, la méthode Bayésienne appliquée, les chaînes de Markov, les indices de fiabilité de Cornell et de Hasofer-Lind ou l’intégrale indicatrice du dommage et de la simulation de Monte Carlo. Ce volume insiste sur le calcul des incertitudes au sens de la méthode GUM (Guide to the expression of Uncertainty in Measurement) en respectant le vocabulaire international de métrologie. Destiné aux universitaires et aux professionnels, Fiabilité mécanique appliquée se caractérise par son approche pédagogique des méthodes statistiques, structurées autour de cas concrets et illustrées d’applications corrigées et commentées. Ce volume apportera une aide précieuse aux concepteurs et aux décideurs.
De tout temps l’homme a sans doute voulu construire des choses fiables. Mais les évaluations quantifiées, probabilisées ont vu le jour récemment d’abord pour systèmes militaires (missiles, satellites) puis nucléaires, automobiles et les biens d’équipements. On peut citer que dès 1906 les constructeurs de tubes à vides américains se sont préoccupés de fiabilité, de là est née la fiabilité électronique, puis mécanique, informatique et humaine des systèmes et composants. Cette évolution contemporaine a produit de nombreux outils, concepts et méthodes. Ces développements sont au centre de l’ouvrage. Fiabilité Technique et Humaine rassemble les concepts, techniques et outils de la fiabilité des composants et systèmes en considérant toutes les technologies et dimensions, notamment la mécanique, l’électronique, l’informatique et les aspects humains. En effet, les erreurs humaines sont à l’origine de nombreuses défaillances et de ce fait ne peuvent être ignorées lors de la conception ou du maintien des installations. Les diverses formes de fiabilité, prévisionnelle, expérimentale et opérationnelle sont explicitées et illustrées aux travers d’applications industrielles. Les concepts, outils et techniques de fiabilité les plus complexes sont présentés à partir d’exemples permettant au lecteur de se familiariser avec ce domaine. La présentation très didactique de ces concepts, étayée par plus de 100 exercices et problèmes corrigés en fait un ouvrage incontournable pour la maîtrise de la fiabilité technique et humaine.
Science is a quest for certainty, but lack of certainty is the driving force behind all of its endeavors. This book, specifically, examines the uncertainty of technological and industrial science. Uncertainty and Mechanics studies the concepts of mechanical design in an uncertain setting and explains engineering techniques for inventing cost-effective products. Though it references practical applications, this is a book about ideas and potential advances in mechanical science.
Mechanical Vibration and Shock Analysis, Second Edition Volume 5: Specification Development This volume focuses on specification development in accordance with the principle of tailoring. Extreme response and the fatigue damage spectra are defined for each type of stress (sinusoidal vibration, swept sine, shock, random vibration, etc.). The process for establishing a specification from the life cycle profile of the equipment which will be subject to these types of stresses is then detailed. The analysis takes account of the uncertainty factor, designed to cover uncertainties related to the real-world environment and mechanical strength, and the test factor, which takes account of the number of tests performed to demonstrate the resistance of the equipment. The Mechanical Vibration and Shock Analysis five-volume series has been written with both the professional engineer and the academic in mind. Christian Lalanne explores every aspect of vibration and shock, two fundamental and extremely significant areas of mechanical engineering, from both a theoretical and practical point of view. The five volumes cover all the necessary issues in this area of mechanical engineering. The theoretical analyses are placed in the context of both the real world and the laboratory, which is essential for the development of specifications.
This second book of a 3-volume set on Fracture Mechanics completes the first volume through the analysis of adjustment tests suited to correctly validating the justified use of the laws conforming to the behavior of the materials and structures under study. This volume focuses on the vast range of statistical distributions encountered in reliability. Its aim is to run statistical measurements, to present a report on enhanced measures in mechanical reliability and to evaluate the reliability of repairable or unrepairable systems. To achieve this, the author presents a theoretical and practice-based approach on the following themes: criteria of failures; Bayesian applied probability; Markov chains; Monte Carlo simulation as well as many other solved case studies. This book distinguishes itself from other works in the field through its originality in presenting an educational approach which aims at helping practitioners both in academia and industry. It is intended for technicians, engineers, designers, students, and teachers working in the fields of engineering and vocational education. The main objective of the author is to provide an assessment of indicators of quality and reliability to aid in decision-making. To this end, an intuitive and practical approach, based on mathematical rigor, is recommended.
The objective of the book is to provide all the elements to evaluate the performance of production availability and reliability of a system, to integrate them and to manage them in its life cycle. By the examples provided (case studies) the main target audience is that of the petroleum industries (where I spent most of my professional years). Although the greatest rigor is applied in the presentation, and justification, concepts, methods and data this book is geared towards the user.
In this book, the authors present in detail several recent methodologies and algorithms that we have developed during the last fifteen years. The deterministic methods account for uncertainties through empirical safety factors, which implies that the actual uncertainties in materials, geometry and loading are not truly considered. This problem becomes much more complicated when considering biomechanical applications where a number of uncertainties are encountered in the design of prosthesis systems. This book implements improved numerical strategies and algorithms that can be applied only in biomechanical studies.