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"Waterproof and Water Repellent Textiles and Clothing provides systematic coverage of the key types of finishes and high performance materials, from conventional wax and silicone, through controversial, but widely used fluoropolymers and advanced techniques, such as atmospheric plasma deposition and sol-gel technology. The book is an essential resource for all those engaged in garment development, production and finishing, and for academics engaged in research into apparel technology and textile science. Rapid innovation in this field is driving new performance demands in many areas, including the sporting and military sectors. However, another innovation driver is the regulatory framework in the USA, Europe and globally, addressing both health concerns (e.g. with PFOS / PFOA) and environmental impacts (e.g. C8 fluorocarbon finishes). Both of these aspects are fully covered, along with the replacement materials / technologies currently available and under development. In addition, oleophobic and multifunctional coatings are discussed, as are aspects of performance, testing and applications in sportswear, protective clothing, and footwear. Introduces innovative materials and technologies, exploring their current and potential use across different sectors Provides expert guidance on the health and environmental aspects of key waterproof materials and coatings and their associated regulations Demystifies testing processes and design principles"--
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Microclimate for Cultural Heritage
Conservation. Restoration --- conservation [discipline] --- cultural heritage --- Microclimatology --- Art - Conservation and restoration --- Architecture - Conservation and restoration --- Architecture --- Art --- 551.5 --- 69.059.2 --- 699.82 --- 699.83 --- 72.025.4 --- 72.025.4 Monumentenzorg: reinigen; herstellen; restauratie; vernieuwing --- Monumentenzorg: reinigen; herstellen; restauratie; vernieuwing --- 699.83 Protection against weathering, wind, storms. Weather-proof construction --- Protection against weathering, wind, storms. Weather-proof construction --- 699.82 Protection against moisture. Damp-proof and waterproof construction --- Protection against moisture. Damp-proof and waterproof construction --- 69.059.2 Damage. Dilapidation. Repair --- Damage. Dilapidation. Repair --- 551.5 Meteorology --- Meteorology --- Climatology --- Ecology --- Buildings --- Buildings, Restoration of --- Conservation of buildings --- Restoration of buildings --- Conservation and restoration --- Restoration --- Repair and reconstruction --- Microclimatology. --- Conservation and restoration.
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Throughout their life cycles—from production, usage, through to disposal—materials and products interact with the environment (water, soil, and air). At the same time, they are exposed to environmental influences and, through their emissions, have an impact on the environment, people, and health. Accelerated experimental testing processes can be used to predict the long-term environmental consequences of innovative products before these actually enter the environment. We are living in a material world. Building materials, geosynthetics, wooden toys, soil, nanomaterials, composites, wastes and more are research subjects examined by the authors of this book. The interactions of materials with the environment are manifold. Therefore, it is important to assess the environmental impact of these interactions. Some answers to how this task can be achieved are given in this Special Issue.
Research & information: general --- Environmental economics --- environmental simulations --- polymer-based products --- artificial weathering --- degradation --- leaching --- soil contact --- carbon concrete composite --- irrigated construction elements --- environmental compatibility --- irrigated building materials --- environmental assessment --- evaluation concepts --- bio-based insulation --- earthen building materials --- volatile organic compounds --- semi-volatile organic compounds --- formaldehyde --- radon --- wooden toys --- emission test chamber --- flask method --- EN 717-3 --- microchamber --- Enchytraeids --- waterproof building materials --- ecotoxicology --- biotest --- geosynthetics --- geotextiles --- dynamic surface leaching test --- artificial ageing --- marine littering --- batch leaching test --- liquid-solid ratio --- column percolation test --- advection-dispersion model --- adsorption–desorption equilibrium --- clinoptilolite --- soil --- water --- CEC --- specific surface --- zeolitization --- hydrogen storage --- kinetics --- material life cycle assessment --- Eco-Indicator 99’ --- CML 2001 --- calcium phosphate --- calcium carbonate --- recycling --- environmental problems --- seashell --- leaching test --- equilibrium condition --- non-equilibrium condition --- modelling --- sorption kinetics --- non-linear sorption --- heterogeneity --- mineral recycling material --- compliance testing --- nano titanium dioxide (nTiO2) --- engineered nanomaterial (ENM) --- sewage sludge incineration (SSI) --- ENM containing sewage sludge ash (SSA) --- column elution --- agricultural use --- n/a --- adsorption-desorption equilibrium --- Eco-Indicator 99'
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Advances in miniaturization of sensors, actuators, and smart systems are receiving substantial industrial attention, and a wide variety of transducers are commercially available or with high potential to impact emerging markets. Substituting existing products based on bulk materials, in fields such as automotive, environment, food, robotics, medicine, biotechnology, communications, and other technologies, with reduced size, lower cost, and higher performance, is now possible, with potential for manufacturing using advanced silicon integrated circuits technology or alternative additive techniques from the mili- to the nano-scale. In this Special Issue, which is focused on piezoelectric transducers, a wide range of topics are covered, including the design, fabrication, characterization, packaging, and system integration or final applications of mili/micro/nano-electro-mechanical systems based transducers.
cylindrical composite --- piezoceramic/epoxy composite --- electromechanical characteristics --- transducer --- piezoelectric actuators --- positioning --- trajectory control --- numerical analysis --- trajectory planning --- square piezoelectric vibrator --- resonance --- piezoelectric diaphragm pump --- flexible support --- piezoelectric resonance pump --- piezoelectric ceramics actuators --- hysteresis modeling --- Bouc–Wen model --- P-type IL --- MFA control --- SM control --- evidence theory --- active vibration control --- piezoelectric smart structure --- piezoelectric material --- multiphysics simulation --- finite element method (FEM) --- fluid–structure interaction (FSI) --- micro electromechanical systems (MEMS) --- traveling waves --- piezoelectric --- microactuator --- MEMS --- piezoelectric current sensing device --- two-wire power cord --- cymbal structure --- force amplification effect --- sensitivity --- ciliary bodies touch beam --- piezoelectric tactile feedback devices --- anisotropic vibration tactile model --- human factor experiment --- nondestructive testing --- maturity method --- concrete early-age strength --- SmartRock --- ultrasonic waves --- PZT (piezoelectric) sensors --- structural health monitoring --- AlN thin film --- piezoelectric effect --- resonant accelerometer --- z-axis --- debonding --- non-destructive testing --- electromechanical impedance --- damage detection --- impedance-based technique --- damage depth --- piezoelectric vibration energy harvester --- frequency up-conversion mechanism --- impact --- PZT thick film --- piezoelectric ceramic materials --- Duhem model --- hysteresis model --- class-C power amplifier --- diode expander --- piezoelectric transducers --- point-of-care ultrasound systems --- transverse impact --- frequency up-conversion --- piezoelectric bimorph --- human-limb motion --- hybrid energy harvester --- cascade-connected transducer --- low frequency --- small size --- finite element --- acoustic telemetry --- measurement while drilling --- energy harvesting --- pipelines --- underwater networks --- wireless sensor networks --- control algorithm --- waterproof --- coating --- reliability --- flexible micro-devices --- aqueous environments --- seawater --- capacitive pressure sensors --- in-situ pressure sensing --- sensor characterization --- physiological applications --- cardiac output --- aluminum nitride --- resonator --- damping --- quality factor --- electromechanical coupling --- implantable middle ear hearing device --- piezoelectric transducer --- stimulating site --- finite element analysis --- hearing compensation --- adaptive lens --- piezoelectric devices --- fluid-structure interaction --- moving mesh --- thermal expansion --- COMSOL --- petroleum acoustical-logging --- piezoelectric cylindrical-shell transducer --- center-frequency --- experimental-measurement --- piezoelectricity --- visual servo control --- stepping motor --- nano-positioner --- stick-slip --- piezoelectric energy harvester --- cut-in wind speed --- cut-out wind speed --- energy conservation method --- critical stress method --- piezoelectric actuator --- lever mechanism --- analytical model --- stick-slip frication --- nanopositioning stage --- piezoelectric hysteresis --- mark point recognition --- piecewise fitting --- compensation control --- piezo-electromagnetic coupling --- up-conversion --- vibration energy harvester --- multi-directional vibration --- low frequency vibration --- hysteresis compensation --- single-neuron adaptive control --- Hebb learning rules --- supervised learning --- vibration-based energy harvesting --- multimodal structures --- frequency tuning --- nonlinear resonator --- bistability --- magnetostatic force --- robot --- miniature --- traveling wave --- leg --- piezoelectric actuators (PEAs) --- asymmetric hysteresis --- Prandtl–Ishlinskii (PI) model --- polynomial-modified PI (PMPI) model --- feedforward hysteresis compensation --- PIN-PMN-PT --- 1-3 composite --- high frequency --- phased array --- n/a --- Bouc-Wen model --- fluid-structure interaction (FSI) --- Prandtl-Ishlinskii (PI) model
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