961 resultados para Cu[100]


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Suomalaisen lakimiesyhdistyksen puheenjohtajan puhe yhdistyksen 100-vuotisjuhlassa 23.10.1998

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We deal with the hysteretic behavior of partial cycles in the two¿phase region associated with the martensitic transformation of shape¿memory alloys. We consider the problem from a thermodynamic point of view and adopt a local equilibrium formalism, based on the idea of thermoelastic balance, from which a formal writing follows a state equation for the material in terms of its temperature T, external applied stress ¿, and transformed volume fraction x. To describe the striking memory properties exhibited by partial transformation cycles, state variables (x,¿,T) corresponding to the current state of the system have to be supplemented with variables (x,¿,T) corresponding to points where the transformation control parameter (¿¿ and/or T) had reached a maximum or a minimum in the previous thermodynamic history of the system. We restrict our study to simple partial cycles resulting from a single maximum or minimum of the control parameter. Several common features displayed by such partial cycles and repeatedly observed in experiments lead to a set of analytic restrictions, listed explicitly in the paper, to be verified by the dissipative term of the state equation, responsible for hysteresis. Finally, using calorimetric data of thermally induced partial cycles through the martensitic transformation in a Cu¿Zn¿Al alloy, we have fitted a given functional form of the dissipative term consistent with the analytic restrictions mentioned above.

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Stress-strain trajectories associated with pseudoelastic behavior of a Cu¿19.4 Zn¿13.1 Al (at.%) single crystal at room temperature have been determined experimentally. For a constant cross-head speed the trajectories and the associated hysteresis behavior are perfectly reproducible; the trajectories exhibit memory properties, dependent only on the values of return points, where transformation direction is reverted. An adapted version of the Preisach model for hysteresis has been implemented to predict the observed trajectories, using a set of experimental first¿order reversal curves as input data. Explicit formulas have been derived giving all trajectories in terms of this data set, with no adjustable parameters. Comparison between experimental and calculated trajectories shows a much better agreement for descending than for ascending paths, an indication of a dissymmetry between the dissipation mechanisms operative in forward and reverse directions of martensitic transformation.

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This article reports positron annihilation spectroscopy and calorimetric measurements of the aging behavior in a Cu¿Al¿Be shape memory alloy. An excess of single vacancies is retained in the alloy as a result of a quench. All vacancies in excess disappear after long aging time, and a migration energy EM = 1.0±0.1 eV for this process has been found to be larger than in other Cu-based shape memory alloys. The good correlation found for the concentration of vacancies and the shift in the martensitic transition temperature demonstrates that, in Cu¿Al¿Be, changes in the transition after a quench are deeply related to the excess of vacancies.

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Monte Carlo calculations of the isothermal elastic constants of the beta-CuxZn1-x alloy system as a function of the composition have been carried out. We assume the atoms interact via a two-body Morse potential function and use numerical values for the potential parameters evaluated taking into account experimental data. We find a quite good agreement between our results and the expected experimental behavior.

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Nos laboratórios brasileiros, a determinação de micronutrientes para estudos de fertilidade de solos é realizada por extração com solução de Mehlich-1 (M-1), utilizando-se uma razão solo: extrator de 1:5 m/v e posterior quantificação por espectrometria de absorção atômica (AAS). No entanto, muitos laboratórios também empregam razão solo:extrator M-1 de 1:10 m/v para determinar macronutrientes e, ou, quantificar por espectrometria de emissão óptica com plasma indutivamente acoplado (ICP OES), em substituição ao AAS. Como estudos comparativos entre as concentrações de micronutrientes obtidos por esses métodos alternativos são escassos, o objetivo deste trabalho foi investigar se essas diferentes condições experimentais gerariam diferentes resultados. Os resultados foram estatisticamente tratados e revelaram que as concentrações de Fe e Mn, utilizando-se ambas as razões de solo:extrator M-1 (1:5 e 1:10 m/v) e de Zn, na razão solo:extrator M-1 de 1:10 m/v, foram estatisticamente iguais, enquanto as concentrações de Cu em ambas as razões solo:extrator M-1 e de Zn na razão solo:extrator de 1:5 m/v foram diferentes, quando as duas técnicas de quantificação (ICP OES e AAS) foram comparadas. Também, todas as concentrações de Cu, Fe, Mn e Zn obtidas utilizando razão solo:extrator M-1 de 1:5 m/v foram diferentes daquelas encontradas com a razão de 1:10 m/v, independentemente da técnica de quantificação. A maioria dessas concentrações foi maior quando se usou a razão de 1:5 m/v e alterou a classe de interpretação dos teores. Portanto, não recomenda-se o uso da razão solo:extrator de 1:5 para as extrações dos micronutrientes Cu, Fe, Mn e Zn com solução M-1 de amostras de solo.

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Where the level of agricultural technology is higher, common bean cultivars with a higher yield potential possibly require greater amounts of micronutrients. In Brazil however, there is a lack of information about the micronutrient extraction and exportation by the main grown cultivars. The objective of this study was to evaluate micronutrient (B, Cu, Fe, Mn, and Zn) extraction and exportation by common bean cultivars Pérola and IAC Alvorada, under different levels of NPK fertilization, on a dystroferric Red Nitosol, in Botucatu, São Paulo State, Brazil. The experiment was arranged in a randomized complete block (split plot) design with four replications. The plots consisted of six treatments based on a 2 x 3 factorial model, represented by two cultivars and three NPK levels (PD0 - 'Pérola' without fertilization, PD1 - 'Pérola' with 50 % of recommended fertilization, PD2 - 'Pérola' with 100 % of recommended fertilization, AD0 - 'IAC Alvorada' without fertilization, AD1 - 'IAC Alvorada' with 50 % of recommended fertilization, and AD2 - 'IAC Alvorada' with 100 % of recommended fertilization) and subplots sampled seven times during the cycle. Higher levels of NPK fertilization increased micronutrient extraction by both cultivars, and treatments with 100 % of recommended NPK fertilization extracted on average 167 g B, 58 g Cu, 1,405 g Fe, 1,213 g Mn and 211 g Zn per hectare. Regardless of the treatment, the highest demand period for B, Cu, Fe, Mn and Zn in both cultivars occurred at the R7 stage (pod formation), i.e. 42 to 55 days after emergence (DAE). The amount of B, Cu, Fe, Mn and Zn exported depended mainly on the level of NPK fertilization used, with values per hectare ranging from 38 to 90 g of B, 12 to 26 g of Cu, 222 to 568 g of Fe 234 to 467 g of Mn, and 40 to 96 g of Zn.

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A eficiência da adubação nitrogenada para gramados pode ser aumentada com a utilização de fontes de liberação lenta, como composto de lodo de esgoto, que, em razão das suas características, pode ser um substituto de parte ou do total da adubação inorgânica para as gramas. Não foram encontrados resultados referentes à utilização de lodo compostado na cultura da grama, no Brasil. Objetivou-se com este trabalho avaliar o efeito de doses de composto de lodo de esgoto na produção da grama esmeralda Imperial. Os tratamentos foram constituídos de cinco doses de composto de lodo de esgoto (0, 12, 24, 36 e 48 Mg ha-1, base seca), mais um tratamento com adubação inorgânica (300 kg ha-1 N, 80 kg ha-1 P2O5 e 200 kg ha-1 K2O). Os compostos orgânicos presentes no composto têm diferentes taxas de mineralização, liberando aos 120 dias após a aplicação do lodo mais Mg (100 %), K (90 %) e N (67 %) do que S (57 %), P (40 %) e Ca (31 %). A utilização do composto de lodo na cultura da grama Imperial proporcionou adequado fornecimento de nutrientes, quando aplicado superficialmente, em doses maiores que 36 Mg ha-1. As doses de composto proporcionaram, após a colheita do tapete, aumento linear da acidez potencial e do teor de matéria orgânica, P, S, Fe, Cu, Mn, Zn, As, Cu e Ni e redução linear do pH, do teor de Ca e Mg e da saturação por bases do solo. O aumento das doses do composto de 0 a 48 Mg ha-1 reduziu a massa dos tapetes de grama, atingindo valores de 4,0 kg/tapete, quando a maior dose foi aplicada. Altas doses também proporcionaram os maiores valores de resistência dos tapetes na ordem de 35 e 33 kgf, com as doses de 36 e 48 Mg ha-1, respectivamente.

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O pinhão-manso (Jatropha curcas L.) é uma espécie oleaginosa perene que tem despertado interesse econômico para produção de biodiesel. A fim de viabilizar o cultivo dessa espécie, é fundamental determinar, entre outras coisas, as suas demandas nutricionais. Objetivou-se avaliar o crescimento inicial e a nutrição mineral do pinhão-manso, bem como a fertilidade do solo em razão da adubação fosfatada. O estudo foi desenvolvido sob estufa plástica, em delineamento experimental de blocos casualizados com quatro repetições. As plantas foram cultivadas em vasos plásticos preenchidos com 50 dm³ de um Latossolo Vermelho. Foram avaliadas as doses de 0, 50, 100, 150 e 200 mg dm-3 P, além de um tratamento-controle. Mensalmente, realizou-se a avaliação da altura e do diâmetro de colo das mudas. O estudo foi encerrado 150 dias após o transplantio das mudas, quando se determinaram a área foliar, a massa de matéria seca, os teores foliares e o acúmulo total de macro (N, P, K, Ca, Mg e S) e micronutrientes (B, Cu, Fe, Mn e Zn), além dos atributos químicos do solo. A ausência somente da adubação fosfatada é tão limitante ao crescimento inicial do pinhão-manso quanto a ausência simultânea da adubação e correção do solo. A dose de 57 mg dm-3 de P pode ser indicada para o crescimento inicial do pinhão-manso. O acúmulo total de nutrientes nas mudas de pinhão-manso apresentou a seguinte ordem: K>N>Mg>Ca>P>S>Fe>Mn>B>Zn>Cu. A adubação fosfatada promoveu aumento da capacidade de troca de cátions do solo (CTC).

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We study the effect of a magnetic field on the martensitic transition of a Cu-Al-Mn shape-memory alloy. The martensitic transition has been studied through resistance measurements under applied magnetic fields ranging from 0 to 50 kOe. Negative magnetoresistance showing an almost linear dependence with the square of the magnetization has been observed. This magnetoresistive effect is associated with the existence of small ferromagnetic Mn-clusters. Its strength and thermal dependence is different in both phases. The martensitic transition temperature is slightly increased and its spread in temperature significantly reduced upon increasing the field. These results show the existence of magnetoelastic coupling, which favors the nucleation of those martensitic variants with the easy magnetization axis aligned with the field.

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Several ribbons of composition Fe73.5Cu1Nb 3Si16.5B6 and Fe73.5Cu1 Nb3Si13.5B9 were prepared by annealing the as-quenched samples between 525°C and 700°C; which induced nucleation of nanocrystallites of Fe bcc-type composition. Mean grain sizes were obtained from X-ray diffraction. Static magnetic properties were measured with both a Magnet Physik Hysteresis-Graph (up to 200 Oe) and a SHE SQUID magnetometer (up to 50 kOe). Soft magnetic parameters (coercive field and initial permeability) were very sensitive to grain size. The ZFC magnetization at low field showed a broad peak at a temperature TM, thus signalling a certain distribution of nanocrystalline sizes, and TM strongly decreased when the mean grain size decreased. Isothermal magnetization curves at low temperature showed the expected asymptotic behavior of a random magnet material at low and high fields.

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CoFe-Ag-Cu granular films, prepared by rf sputtering, displayed magnetic domain microstructures for ferromagnetic concentrations above about 32% at, and below the percolation threshold. All samples have a fcc structure with an (111) texture perpendicular to the film plane. Magnetic force microscopy (MFM) showed a variety of magnetic domain microstructures, extremely sensitive to the magnetic history of the sample, which arise from the balance of the ferromagnetic exchange, the dipolar interactions and perpendicular magnetocrystalline anisotropy, MFM images indicate that in virgin samples, magnetic bubble domains with an out-of-plane component of the magnetization are surrounded by a quasicontinuous background of opposite magnetization domains. The application of a magnetic field in different geometries drastically modifies the microstructure of the system in the remanent state: i) for an in-plane field, the MFM images show that most of the magnetic moments are aligned along the film plane, ii) for an out-of-plane field, the MFM signal increases about one order of magnitude, and out-of-plane striped domains with alternating up and down magnetization are stabilized. Numerical simulations show that a variety of metastable domain structures (similar to those observed experimentally) can be reached, depending on magnetic history, in systems with competing perpendicular anisotropy, exchange and dipolar interactions.