1,632 research outputs found

    High resolution electron microscopy study of a high Cu variant of Weldalite (tm) 049 and a high strength Al-Cu-Ag-Mg-Zr alloy

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    Weldalite (trademark) 049 is an Al-Cu-Li-Ag-Mg alloy that is strengthened in artificially aged tempers primarily by very thin plate-like precipitates lying on the set of (111) matrix planes. This precipitate might be expected to be the T(sub 1) phase, Al2CuLi, which has been observed in Al-Cu-Li alloys. However, in several ways this precipitate is similar to the omega phase which also appears as the set of (111) planes plates and is found in Al-Cu-Ag-Mg alloys. The study was undertaken to identify the set of (111) planes precipitate or precipitates in Weldalite (trademark) 049 in the T8 (stretched and artificially aged) temper, and to determine whether T(sub 1), omega, or some other phase is primarily responsible for the high strength (i.e., 700 MPa tensile strength) in this Al-Cu-Li-Ag-Mg alloy

    Assisted reproduction: Deciding what\u27s best for the child, the family, and our society

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    The use of high-tech reproductive technologies to have children is widely practiced today in the United States. While state statutes regulate this industry to some extent, this field is largely self-governed, and disputes between individuals are usually resolved through the courts; In my thesis, I examine the inadequacy of public policy formation in the three more controversial areas of assisted reproduction: artificial insemination, in vitro fertilization, and surrogate motherhood. Policy-making is mostly done indirectly and haphazardly through the courts and some state and federal legislation. There has been no organized national dialogue; I recommend that moral consensus be sought on this issue through the formation of a national commission to study the current practice of assisted reproduction and to make recommendations for regulation, legislation, or further studies. The goal is to help build consensus on this important issue

    A Cross-cultural Anthology of Mythological Flood Stories

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    Interrupting the school-to-prison pipeline: Are we educating or incarcerating our youth

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    Zero tolerance policies in schools have led to substantial financial, personal, and social costs. These policies are widely criticized for being discriminatory, particularly among youth from minority backgrounds. The ways we have responded to behaviors in school has changed dramatically over the years. Today, harsh discipline measures result in lengthy out of school suspensions for minor infractions. This literature review examines the school-to-prison pipeline is and how zero tolerance policies have contributed to this social justice issue. Strategies designed to interrupt the school-to-prison pipeline are also discussed

    Natural aging and reversion behavior of Al-Cu-Li-Ag-Mg alloy Weldalite (tm) 049

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    This study was initiated to understand the natural aging and reversion behavior of Weldalite (trademark) 049 in tempers without cold work. Of particular interest are: (1) the microstructural basis for the high strength in the T4 condition; (2) an explanation of the reversion phenomenon; and (3) the effect of re-aging at room temperature after a reversion treatment. Mechanical properties were measured and transmission electron microscopy (TEM) analysis performed at various stages of microstructural development during aging, reversion, and subsequent re-aging

    Structure and properties during aging of an Al-Cu-Li-Ag-Mg alloy, Weldalite (tm) 049

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    An Al-Cu-Li-Ag-Mg alloy, Weldalite (trademark) 049, was recently introduced as an ultra-high strength alloy (7000 MPa yield strength in artificially aged tempers) with good weldability. In addition, the alloy exhibits an extraordinary natural aging response (440 MPa yield strength (YS) in the unstretch condition) and a high ductility reversion condition which may be useful as a cold-forming temper. In contrast to other Al-Li alloys, these properties can essentially be obtained with or without a stretch or other coldworking operation prior to aging. Preliminary studies have revealed that the T4 temper (no stretch, natural age) is strengthened by a combination of GP zones and delta prime (Al3Li). The T6 temper (no stretch, aged at 180 C to peak strength) was reported to be strengthened primarily by T(sub 1) phase (Al2CuLi) with a minor presence of a theta prime like (Al2Cu) phase. On the other hand, a similar but lower solute containing alloy was reported to contain omega, (stoichiometry unknown), theta prime, and S prime in the peak strength condition. The purpose of this study is to further elucidate the strengthening phases in Weldalite (trademark) 049 in the unstretched tempers, and to follow the development of the microstructure from the T4 temper through reversion (180 C for 5 to 45 minutes) to the T6 temper
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