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After each process run the Recipe can be adjusted. Go here adjustments can either be done manually, based on the experience of a process engineer or with an extension not implemented to make adjustments automatically, based on an optimizing algorithm.

The software and its containing régime de modèle de piste skinny process for changing setup parameters in real time was demonstrated on an equipment emulation in order to not influence running processes on the Press Module used for other demonstrations. MBN produced TiSn metal alloy achieving the following targets: -Homogenous dispersion of Tin in alfa-Ti lattice -Avoid the presence of not alloyed low melting Tin phases that might be detrimental in the following sintering process -Good process yield in a fine granulometric fraction -Good morphology to provide enough flowability in connection with the fine size of particles requested -Fine powders with very high surface area that allow to obtain fully dense sintered components at lower temperatures Steel AISI has been selected for the demonstration due to its mechanical properties that fit the requirements for régime de modèle de piste skinny demonstrators: AISI was made by HEBM starting from a pre-alloyed FeCr based materials tuned in composition to reach the specified composition of commercial AISI NiTi shape memory alloy has been developed by mechanical alloying but the targeted phase distribution could not be achieved in the as MA material: this material was not selected for the sintering of final demonstrators and was tested only at lab-scale to régime de modèle de piste skinny the applicability of Micro-FAST technology in a wide range of materials.

Post treatment methodologies have been developed to achieve the particle size distribution required for the MicroFAST process by Matres and allow the complete handling of powder production under not oxidizing atmosphere. Flowability tests have been performed adapting new characterization methods properly developed for fine powders with the purpose to verify the suitability of the material for the feeding system developed by MicroLS.

Progress beyond the state of the art: The powder produced by MBN achieved a considerable progress beyond the state of the art for Titanium-Tin alloy powder compered to commercially available TiAlV alloy due to the achieved faster consolidation during the sintering process thanks to presence of Tin and presence of smaller grains that facilitate the material diffusion during the heating process.

Besides this, MBN has developed and optimized the production processes by mechanical alloying of specific powder materials for FAST sintering, learn more here high reliability and quality standards, high production yield and control of particle shape and size: this represent a relevant advancement in the production of powder with this method.

This to achieve powder with suitable flowability to feed to the micro-FAST press régime de modèle de piste skinny a size distribution to obtain a uniform packing. Various granulation methods were explored to this end such as spray-drying, vibrational droplet generation or aerodynamically assisted jetting. After the initial exploratory phase, spray-drying has been selected to prepare the granulates.

In this process, a suspension containing the ceramic powders and organic additives is sprayed into the chamber giving droplets that are dried in heated air. Due to the rapid evaporation of water during the flight spherical granules are formed. The focus has been to limit the amount of organics, while at the same time obtaining a stable and régime de modèle de piste skinny powder which can be fed to the micro-FAST machine and that avoids dust formation.

The remaining organic material was removed during a calcination step. The discarded material both the larger granules as the fines can easily be introduced in the process again after calcining. This ensures that almost no material is lost. The granules from the re-used material had exactly the same properties regarding size distribution, sphericity, density and material composition as the not re-used material. Micro-sized powders by hydrochemical synthesis IMNR A versatile hydrochemical process combined régime de modèle de piste skinny spray drying has been developed to synthesize different types of ceramic nanopowders with controlled chemical, structural and morphological composition.

régime de modèle de piste skinny

These methods proved particularly promising in terms of controlling the grain size, degree of agglomeration and purity of powders that can be sintered without significantly changing the phase composition by micro-FAST process. The filtered and washed precipitate obtained is re-dispersed in the presence of a small amount of organic binder and granulated by spray-drying at temperatures below Régime de modèle de piste skinny through a calibrated nozzle.

No further thermal treatment is required for crystallization, thus allowing one step synthesis of nanocrystalline powders with controlled degree of agglomeration. The régime de modèle de piste skinny is designed to minimize the wastes by a simple recycling loop of the by-products, while the agglomeration process eliminates the nano-toxicity risks during handling. All powders were delivered with safety data sheets. Two models micromechanical and diffusion bonding were developed, dealing respectively with pore diminishing and micro-voids closure that arise from powder stacking and powder surface roughness and source correspond to distinct length scales in size.

The yield surface can be used to optimize the loading path for powder compaction in order to achieve a uniform relative density, while the contact read more serve as inputs for the diffusion bonding model that calculates the time required for full micro-void closure at powder interface and hence is capable of guiding the optimisation of sintering process. The scientific combination of electro-thermal-mechanical and diffusion models results in an integrated software that can be used for optimisation of Micro-FAST process to efficiently produce high-quality components.

The inputs of software are macroscopic parameters, such as operating temperature, compaction speeds, applied pressure, holding time, and the outputs are parameters related to component quality such as porosity as well as the amount and régime de modèle de piste skinny of micro-voids.

A micro-scale model can be extracted from the macroscopic model of the Micro-FAST process and then used to improve parameters and thus obtain a quality régime de modèle de piste skinny of the entire part. Description of the result and key achievements For the micro-scale modelling, a representative volume element RVE with periodic boundary conditions PBC and material properties of bulk TiSn were implemented régime de modèle de piste skinny the finite element method.

Two Régime de modèle de piste skinny configurations were utilised to mimic particle spatial arrangements: hexagonal close-packed HCP and face-centred cubic FCC crystallographic structures, which allowed an infinite number of particles modelled due to PBC. Initially, a purely mechanical simulation was performed and the results were compared to various analytical solutions in order to validate the model.

A coupled thermal-electric-structural finite element model with the RVE, in which a current direct or pulsed and pressure are simultaneously applied, allowed the contact stress and temperature parameters needed to calculate the bonding status of particles within the assemblage to be predicted. A macroscopic finite element model was developed in order to simulate the sintering of entire part geometries.

The modified Gurson equation described the material behaviour which was then calibrated to the stress-strain curves of the bulk TiSn in order to determine the parameters q1 and q2, where higher q1 values induced a stronger softening response and q2 reduces the yield limit as it is increased.

The diffusion bonding DB model was based on power law creep and interface source diffusion theories, and relates the bonding time i. Régime de modèle de piste skinny numerical model was developed to simulate diffusion bonding during the direct powder forging process.

A set of analytical equations was derived and implemented via a user-defined subroutine in the finite element software Abaqus. The DB model was validated using a simple two-hemisphere compression simulation. The numerical results demonstrated that the DB model has the ability to: 1 determine the bonding status between powder particles during the forging process, and 2 predict the optimum value for key powder forging process parameters.

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This model was incorporated with a physical model two hemispheres being compressed, and then later the RVE in the finite element software. The combined multi-scale model uses the output parameters of temperature and contact stress in regions of interest of régime de modèle de piste skinny macroscopic part geometry which then serve as boundary conditions which can be applied to the RVE with the DB model to determine the bonding status at these particle régime de modèle de piste skinny.

Progress beyond the state of the art The RVE and DB models are the foundation for development of multi-scale modelling software. The simulations predict the relative density, temperature distribution, and bonding status of powder particle assemblage allowing the optimum parameters to be inversely determined and thus be effectively used régime de modèle de piste skinny the design of the Micro-FAST process.

The model can be used to easily determine how the mechanical and thermal response varies during the Micro-FAST process for different metals by simply changing the input material properties, hence being time, cost and waste effective. Overall, the multi-scale model quantifies the link between powder, the Micro-FAST process and sintered material properties leading to the optimisation of the final component formed.

The parts of these tool-sets were made from various tool-materials to meet different functionalities of the toolings, including graphite, tool steel, Tungsten Carbide, TZM and ceramics. These tool-sets represent innovation of forming-tool designs for powder sintering and forming which have not been seen before. The toolings have been tested with Micro-FAST dieta chetogenica per donne di 50 anni and different demonstrator components have been formed.

Further effort on tool-design is being made to address challenges of forming high-temperature régime de modèle de piste skinny with the Micro-FAST machine. AN innovative process chain for the tool production was demonstrated to fabricate punches suitable for ETA components: 1.

Progress beyond the state of the art The micro-FAST tool is developed along with the Micro-FAST press, which is considered as the first of this kind machine and tool for industrial forming of micro-component directly from powder material without pre- or régime de modèle de piste skinny.

There are several technical challenges of the tool design, include powder feeding, high temperature resistance, high strength and good electrical conductivity required in the core die part, and electrical insulation with other parts of the tool, as well as a combined part ejector in the tool. It has been approved that the tool is performed well with the designed functional requirement. The room temperature tribological performance of CMLC has been improved after plasma co-alloying with vanadium and nitrogen i.

Their poor oxidation resistance at ambient environment needs to be addressed by controlled atmosphere and surface treatment, and their poor tribological performance needs to be improved by surface modification process. TZM punches have been duplex treated with plasma nitriding and PVD mono composite and multilayer régime de modèle de piste skinny, the nitride layer and the diffusion zone provides a strong support for PVD coating to improve the oxidation resistance and tribological properties of TZM alloys at elevated temperatures.

Progress beyond the state of the art Plasma nitriding treatment on TZM punches and tools entitles the tool with a hard layer supported by a hard diffusion zone with a significant thickness therefore the load bearing capacity and wear resistance of the tool is greatly enhanced.

Together with the PVD coating, it will improve the oxidation resistance and more info resistance, therefore makes TZM tools to replace the exisiting graphite tools possible and increases the tool life greatly. The novel plasma co-alloying simultaneously with both interstitial element N i. Qualità, design, i materiali, tutti i criteri sono stati attentamente esaminati.

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Pneumatico Schwalbe Nobby Nic 2. A first assessment is made of the historical and future changes in air pollutants from models participating in the 6th Coupled Model Intercomparison Project CMIP6. Substantial benefits to future air quality can be achieved in future scenarios that implement measures to mitigate climate, as well as reductions in air pollutant emissions, particularly methane. Important differences in the future prediction of air pollutants are shown between models over certain regions.

Christopher J. Smith, Ryan J. For the case of CO 2 it is likely that model radiation parameterisations have improved. Tropospheric and stratospheric radiative adjustments to the forcing behave differently for different forcing agents, and there is still significant diversity in how clouds respond to forcings, particularly for total anthropogenic forcing. Data Discuss. Measurements of the porosity of three polar firns have been conducted in the 's by Jean-Marc Barnola using the method of gas pycnometry.

From these data, a parametrization of firn pore closure has been produced and used in different published articles. However, the data have not been published in their own right yet. We have made the data publicly accessible on the PANGAEA database and propose here to describe how they were obtained and used to produce the pore closure parametrization. Schaller, Rebecca J.

Understanding gas trapping in polar ice is essential to study the relationship between greenhouse gases and past climates. New data of bubble closure, used in a simple gas-trapping model, show inconsistency with the final air content in ice. This suggests gas trapping is not fully understood. We also use a combination of high-resolution measurements to investigate the effect of polar snow stratification on learn more here trapping and find that all strata have similar pores, but that some close in advance.

Christiaan T. Model Dev. Climate models are often limited to régime de modèle de piste skinny simple snow albedo schemes. Therefore, we have developed the SNOWBAL module to couple a climate model with a physically based wavelength dependent snow albedo model. We describe the different parameterizations for aerosol sources, sinks, and how the aerosols are integrated in the larger atmospheric composition forecasting system.

The Green Edge initiative was developed to understand the processes controlling the primary productivity and the fate of organic matter produced during the Arctic spring bloom PSB. In this article, we present an overview of an extensive and comprehensive data set acquired during two expeditions conducted in and on landfast ice southeast of Qikiqtarjuaq Island in the Baffin Bay.

Régime de modèle de piste skinny retained in forest canopy snow interception drives spatial variability of sub canopy snow accumulation. As such, accurately describing snow interception in models is of importance for various applications such as hydrological, weather and climate predictions.

Régime de modèle de piste skinny developed descriptions for the spatial mean and variability of snow interception. An independent evaluation demonstrated that the novel models can be applied in coarse land surface model grid cells. The results of two sampling campaigns conducted on landfast sea ice in Baffin Bay show that the melt season can be divided into four main phases during which surface albedo and snow properties show distinct signatures.

A radiative transfer model was used to successfully reconstruct the albedo from snow properties. This modeling work highlights that only little changes on the very surface of the snowpack are able to dramatically change the albedo, a key element for the energy budget of sea ice. To study how snow accumulates in Antarctica, we analyze daily surface elevation recorded by an automatic laser scanner.

We show that new snow often accumulates in thick patches covering a small fraction of the surface. Most patches are removed by erosion within weeks, implying that only a few contribute to the snowpack. This explains the heterogeneity on the surface and in the snowpack. These findings are important for surface mass and energy balance, photochemistry, and ice core interpretation. This study investigates the snow régime de modèle de piste skinny of ski resorts in the Pyrenees France, Spain and Andorra and the French Alps under past and future conditions — using state-of-the-art climate projections and snowpack modelling accounting for snow management, i.

The snow reliability of ski resorts shows strong elevation and regional differences, and our study quantifies changes in snow reliability induced by snowmaking under various climate scenarios.

A significant régime de modèle de piste skinny gradient of the forcing at TOA is observed. An intense positive forcing is simulated over Gabon. Results highlight the significant effect of enhanced moisture on BBA extinction. The surface dimming modifies the energy budget.

The snow density close to the surface has been retrieved from satellite observations at Dome C on the Antarctic Ice Sheet. This trend has been confirmed by in situ measurements and other satellite observations though no read article meteorological evolution has been found.

These results have implications for surface mass balance and energy budget. Hazards Earth Syst. Inthe European Avalanche Warning Services agreed upon a common danger scale to describe the regional avalanche hazard: the European Avalanche Danger Scale.

See more published avalanche forecasts, we explored whether forecasters use the scale consistently.

We noted differences in the use visit web page the danger levels, some of which could be see more to the size of the regions a regional danger régime de modèle de piste skinny is issued for.

We recommend further harmonizing the avalanche forecast products in the Alps. The model régime de modèle de piste skinny built from separate, interconnecting modules to make it easy to compare different aspects of the theory.

SMRT is the first model to allow a choice of how to represent the microstructure of the snow, which is extremely important, and has been used to unite multiple previous studies. This model régime de modèle de piste skinny ultimately be used to observe snow from space. We introduced a new module of water vapor diffusion into the snowpack model Crocus. Vapor transport locally modifies the density of snow layers, possibly influencing compaction. It also affects the régime de modèle de piste skinny isotopic signature of snow layers.

Thus, other processes are required to explain the total attenuation. This paper presents surface mass balance measurements from both GPR and ice core data collected during a traverse in a so-far-unexplored area between the DC and Vostok stations. Results presented here will contribute to a better knowledge of the global mass balance of the Antarctic ice sheet and thus help in constraining its contribution to sea level rise.

Régime de modèle de piste skinny novelty of the paper resides in the comprehensive error budget régime de modèle de piste skinny for the method used for inferring accumulation rates.

In Antarctica, the seasonal cycle of the backscatter behaves régime de modèle de piste skinny at high and low frequencies, peaking in winter and in summer, respectively. At the intermediate frequency, some areas behave analogously to low frequency in terms of the seasonal cycle, but other areas behave analogously to high frequency.

This calls into question the empirical relationships often used to correct elevation changes from radar penetration into the snowpack using backscatter. Ice core isotopic records rely on the knowledge of the processes involved in the archival processes of the snow.

In the East Antarctic Plateau, post-deposition processes strongly affect the signal found in the surface and buried snow compared to the initial climatic signal. We evaluate régime de modèle de piste skinny different contributions to the surface snow isotopic composition between the régime de modèle de piste skinny and the exchanges with the atmosphere and the variability of the isotopic signal found in profiles from snow pits.

Beyond scenario-based approach, global temperature levels on the order of 1. This paper makes a rather exhaustive overview of current knowledge of past, current, and future aspects of cryospheric issues in continental Europe and makes a number of reflections of areas of uncertainty requiring more attention in both scientific and policy terms. The review paper is completed by a bibliography containing recent references that will certainly be of value to scholars engaged in the fields of glacier, snow, and permafrost research.

Raptis, Fragiskos Pierros, and Pierre Nabat. In this work we present surface solar radiation data since and reconstructed data since We have attempted to show and discuss the long-term changes in solar surface radiation over Athens, Greece, using these unique datasets. We present a new water percolation routine added to the Crocus model. The new routine is physically based, describing motion of water through a layered snowpack considering capillary-driven and gravity flow.

We tested the routine on two data sets.

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Wet-snow layers were régime de modèle de piste skinny to reach higher saturations than the empirical routine. Meaningful applicability is limited until new and graisse corporelle pour perdre du poids parameterizations of water retention are developed, and feedbacks are adjusted to handle higher saturations.

Global warming projections still suffer from a limited representation of the permafrost—carbon feedback. This study assesses the capacity of snow-soil coupled models to simulate the permafrost thermal regime at Bylot Island, a high Arctic site.

Significant flaws are found in the description of Arctic snow properties, resulting in erroneous heat transfers between the soil and the snow in simulations. Improved snow schemes are needed to accurately predict the future of permafrost.

The production of machine-made snow is generalized in ski resorts and represents the most common adaptation method to mitigate effects of climate variability and its projected changes. However, the actual snow mass that can be recovered from a given water continue reading used for snowmaking remains poorly known.

Abbatt, Andreas B. Herber, Amir A. Aliabadi, and Éric Girard. The first airborne measurements performed with the FIRR are presented. Vertical profiles of régime de modèle de piste skinny spectral radiance in the far-infrared are régime de modèle de piste skinny in the Arctic atmosphere for the first time.

They show the impact of the temperature inversion on the radiative budget of the atmosphere, especially in the far-infrared. The presence of ice clouds also significantly alters the far-infrared budget, highlighting the critical interplay between water vapour and clouds in this very dry region.

Warming-induced shrub growth in the Arctic traps snow and modifies snow properties, hence the permafrost thermal regime. In the Canadian high Arctic, we measured snow physical properties in the presence and absence of willow shrubs Salix richardsonii.

Shrubs dramatically reduce snow density and thermal conductivity, seriously limiting soil winter cooling. Ice core isotopic records rely on the knowledge of the processes involved in the archival of the snow.

régime de modèle de piste skinny

The absorption of visible light in ice is very weak but its precise value is unknown. We replicated their experiment on link large number of samples and found that ice absorption is at least 10 times stronger.

The paper explores various potential physical and statistical biases that could impact the experiment. We develop a physically based parameterisation of the co-condensation process.

Our model includes solid-state diffusion within a snow grain. It reproduces with good agreement the nitrate measurement in surface snow. Winter and summer concentrations are driven respectively by thermodynamic equilibrium and co-condensation. Adsorbed nitrate likely accounts for a minor part. This work shows that co-condensation is required to explain the chemical composition of snow undergoing régime de modèle de piste skinny gradient.

A cost-effective automatic laser scan has been built to measure snow depth spatio-temporal variations. These high performances are particularly suited at Dome C, where it was possible to reveal that most of here accumulation in the year stems from a single régime de modèle de piste skinny.

Here we present a radiometer, FIRR, aimed at measuring atmospheric radiation in the far infrared, an underexplored region of the Earth spectrum. Preliminary in situ measurements compare well with radiative transfer simulations. This highlights the high sensitivity of the FIRR to water vapor content and cloud physical properties, paving the way for new retrieval algorithms.

We analyze how snowpack processes and soil properties impact the soil temperature profiles over northern Eurasian regions using a land surface model. A correct representation of snow compaction is critical in winter régime de modèle de piste skinny snow albedo is dominant in spring. In summer, soil temperature is more affected by soil organic carbon content, which strongly influences the maximum thaw depth in permafrost regions.

This work was done to improve the representation of boreal region processes in climate models. Mallet, F. Dulac, P. Formenti, P. Nabat, J. Sciare, G.

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Roberts, J. Pelon, G. Ancellet, D. Tanré, F. Parol, C. Denjean, G. Brogniez, A. Alados-Arboledas, J. Arndt, F. Auriol, L. Blarel, T. Bourrianne, P. Chazette, Régime de modèle de piste skinny.

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