952 resultados para Fe-Rh alloy


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Experimental trials of autogenous deep penetration welding between dissimilar cast Ni-based superalloy K418 and alloy steel 42CrMo flat plates with 5.0 mm thickness were conducted using a 3 kW continuous wave (CW) Nd:YAG laser. The influences of laser output power, welding velocity and defocusing distance on the morphology, welding depth and width as well as quality of the welded seam were investigated. Results show that full keyhole welding is not formed on both K4.18 and 42CrMo side, simultaneously, due to the relatively low output power. Partial fusion is observed on the welded seam near 42CrMo side because of the large disparity of thermal-physical and high-temperature mechanical properties of these two materials. Tile rnicrohardness of the laser-welded joint was also examined and analyzed. It is suggested that applying negative defocusing in the range of Raylei length can increase the welding depth and improve tile coupling efficiency of the laser materials interaction. (c) 2007 Elsevier Ltd. All rights reserved.

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Al leer nuestro Código Civil –y legislación en general–, encontramos muchas veces en el articulado el término “buena fe”, al cual por lo general no analizamos en profundidad, dado que lo consideramos como algo que está sobreentendido, o que tal vez no necesite definirse. Ahora bien, ¿cuál es el significado del mismo?, ¿qué aplicación tiene en nuestro ordenamiento jurídico?, ¿sigue vigente en el nuevo Anteproyecto de Código Civil y Comercial de la Nación? Son las preguntas que intentaremos respondernos a lo largo de este artículo.

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There are very strong interests in improving the high-temperature wear resistance of the y-TiAl intermetallic alloy, especially when applied as tribological moving components. In this paper, microstructure, high-temperature dry sliding wear at 600 degrees C and isothermal oxidation at 1000 degrees C on ambient air of laser clad gamma/W2C/TiC composite coatings with different constitution of Ni-Cr-W-C precursor mixed powders on TiAl alloy substrates have been investigated. The results show that microstructure of the laser fabricated composite coatings possess non-equilibrium microstructure consisting of the matrix of nickel-base solid solution gamma-NiCrAl and reinforcements of TiC, W2C and M23C6 carbides. Higher wear resistance than the original TiAl alloy is achieved in the composite coatings under high-temperature wear test conditions. However, the oxidation resistance of the laser clad gamma/W2C/TiC composite coatings is deceased. The corresponding mechanisms resulting in the above behaviors of the laser clad composite coatings are discussed. (c) 2006 Elsevier B.V. All rights reserved.

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Introducción: A lo largo de su obra, J. Ratzinger ha destacado la dimensión histórica de la revelación divina como un rasgo esencial de la religión de Israel y, de un modo específico, de la fe cristiana. En las últimas décadas el hoy Papa Benedicto XVI ha renovado esta afirmación, ante interpretaciones que correrían el riesgo de oscurecer dicha dimensión del obrar divino como objeto de fe. Sus expresiones recientes podrían ponerse en relación con otras tempranas sobre santo Tomás de Aquino, al compararlo con representantes de la tradición platónico-agustiniana, como san Buenaventura. En esta presentación haremos referencia sucesivamente a algunas de dichas observaciones tempranas de J. Ratzinger, a la vinculación entre el misterio de Dios y obrar divino en la creación y en la historia en algunos textos del Aquinate, y a expresiones más recientes de Benedicto XVI, que permiten percibir un cierto diálogo subyacente con sus fuentes, así como la actualidad del tema.

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Resumen: Sin pretender “espiritualizar” la teología del padre Rafael Tello, este artículo ofrece algunas de las vertientes en las que abreva la espiritualidad de la pastoral popular de la que el teólogo argentino es uno de sus más originales representantes. Indagaremos en ciertos núcleos teologales y teológicos que nos permitirán registrar una continuidad entre teología y vida, al tiempo que nos dejarán en el umbral de una propuesta evangelizadora que no es posible comprender sin esta manera de vivir la fe cristiana. De la mano de figuras tradicionales de la mística y de la teología como san Juan de la Cruz y santo Tomás de Aquino, el padre Tello nos propone recrear la vivencia del evangelio para los tiempos actuales.

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Resumen: Este texto muestra la importancia de la conversión como parte esencial de la tarea pensante de la teología a la hora de la Nueva Evangelización. El autor relaciona la eficacia de la palabra teológica en diálogo con la actual cultura posmoderna, con la exigencia –para la teología– de superar críticamente sus propias posibles idolatrías, entrando decidida y gozosamente en la via eminentiae, en el camino incesante hacia el “Dios siempre mayor”, que es, a la vez, el camino hacia lo auténticamente humano. El itinerario del apóstol Pedro ilustra ejemplarmente el planteo que propone el autor.

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Molecular dynamics simulations are carried out in order to study the atomic structure of crystalline component, of nanocrystalline alpha-Fe when it is consolidated from small grains. A two-dimensional computational block is used to simulate the consolidation process. All the preset dislocations in the original grains glide out of them in the consolidation process, but new dislocations can generate when the grain size is large enough. It shows that dislocations exist in the consolidated material rather than in the original grains. Whether dislocations exist in the crystalline component of the resultant model nana-material depends upon grain size. The critical value of grain size for dislocation generation appears to be about 9 nm. This result agrees with experiments qualitatively.

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The pure diffusion process has been often used to study the crystal growth of a binary alloy in the microgravity environment. In the present paper, a geometric parameter, the ratio of the maximum deviation distance of curved solidification and melting interfaces from the plane to the radius of the crystal rod, was adopted as a small parameter, and the analytical solution was obtained based on the perturbation theory. The radial segregation of a diffusion dominated process was obtained for cases of arbitrary Peclet number in a region of finite extension with both a curved solidification interface and a curved melting interface. Two types of boundary conditions at the melting interface were analyzed. Some special cases such as infinite extension in the longitudinal direction and special range of Peclet number were reduced from the general solution and discussed in detail.

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The nucleation of microdamage under dynamic loading was investigated through planar impact experiments accomplished with a light gas gun. The microscopic observation of recovered and sectioned specimens showed that microcracks were nucleated only by cracking of brittle particles inside material. However, for comparison the in situ static tensile tests on the same material conducted with a scanning electron microscope showed that the microcracks were nucleated by many forms those were fracture of ductile matrix, debonding particles from matrix and cracking of brittle particles. The quantitative metallographic observations of the specimens subjected to impact loading showed that most of the cracked particles were situated on grain boundaries of the aluminium matrix. These facts suggested the concept of critical size and incubation time of submicroscopic cavities in the dynamic case and the mechanism of embryo-damage induced nucleation by fracture of brittle particles in the aluminium alloy under impact loading was proposed.

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A void growth relations for ductile porous materials under intense dynamic general loading condition is presented. The mathematical model includes the influence of inertial effects, material rate sensitivity, as well as the contribution of void surface energy and material work-hardening. Numerical analysis shows that inertia appears to resist the growth of voids. The inertial effects increase quickly with the loading rates. The theoretical analysis suggests that the inertial effects cannot be neglected at high loading rates. Plate-impact tests of aluminum alloy are performed with light gas gun. The processes of dynamic damage in aluminum alloy are successfully simulated with a finite-difference dynamic code in which the theoretical model presented in this paper is incorporated.

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A new interrupting method was proposed and the split Hopkinson torsional bar (SHTB) was modified in order to eliminate the effect of loading reverberation on post-mortem observations. This makes the comparative study of macro- and microscopic observations on tested materials and relevant transient measurement of tau - gamma curve possible. The experimental results of the evolution of shear localization in in Ti-6Al-4V alloy studied with the modified SHTB are reported in the paper. The collapse of shear stress seems to be closely related to the appearance of a certain critical coalescence of microcracks. The voids may form within the localized shear zone at a quite early stage. Finally, void coalescence results in elongated cavities and their extension leads to fracture along the shear band.