3 research outputs found

    GW190814: gravitational waves from the coalescence of a 23 solar mass black hole with a 2.6 solar mass compact object

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    We report the observation of a compact binary coalescence involving a 22.2–24.3 Me black hole and a compact object with a mass of 2.50–2.67 Me (all measurements quoted at the 90% credible level). The gravitational-wave signal, GW190814, was observed during LIGO’s and Virgo’s third observing run on 2019 August 14 at 21:10:39 UTC and has a signal-to-noise ratio of 25 in the three-detector network. The source was localized to 18.5 deg2 at a distance of - + 241 45 41 Mpc; no electromagnetic counterpart has been confirmed to date. The source has the most unequal mass ratio yet measured with gravitational waves, - + 0.112 0.009 0.008, and its secondary component is either the lightest black hole or the heaviest neutron star ever discovered in a double compact-object system. The dimensionless spin of the primary black hole is tightly constrained to �0.07. Tests of general relativity reveal no measurable deviations from the theory, and its prediction of higher-multipole emission is confirmed at high confidence. We estimate a merger rate density of 1–23 Gpc−3 yr−1 for the new class of binary coalescence sources that GW190814 represents. Astrophysical models predict that binaries with mass ratios similar to this event can form through several channels, but are unlikely to have formed in globular clusters. However, the combination of mass ratio, component masses, and the inferred merger rate for this event challenges all current models of the formation and mass distribution of compact-object binaries

    Tendências no desenvolvimento de gases de proteção utilizados na soldagem MIG/MAG Trends in the development of protective gases used in GMAW welding

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    Este trabalho tem como objetivo apresentar uma revisão do estado da arte sobre os gases de proteção usados nos processos de soldagem a arco elétrico, com ênfase na soldagem MIG/MAG do aço. São apresentados os principais conceitos da física do arco e as propriedades relacionadas aos gases de proteção. O modelo de atmosfera ligeiramente oxidante para os gases de proteção é discutido, sendo mostradas as formulações dos gases estudados em artigos científicos e em patentes depositadas, bem como as reivindicações (vantagens) requeridas. Também são mencionados alguns poucos estudos usando adições de gases não convencionais. Foi observado que no desenvolvimento de gases de proteção para soldagem MIG/MAG do aço predomina o modelo da formação de atmosfera ligeiramente oxidante. A maioria das formulações propostas envolve o uso de misturas binárias, ternárias e até quaternárias dos gases Ar, He, CO2 e O2. Em aplicações específicas, adições de N2 e H2 foram usadas. Neste sentido, pouca inovação foi identificada, sendo atribuídas possíveis razões a este fato. A tendência observada para o desenvolvimento de gases de proteção parece ser o uso de misturas ricas em gases inertes, com adições calibradas de elementos oxidantes, sempre atendendo a aplicações específicas.<br>This paper has as objective to present a state of the art review on the shielding gases used in the electric arc welding processes, with emphasis on GMAW welding of steel. There are shown the main concepts of arc physics and properties related to shielding gases. The model of slightly oxidizing atmosphere for shielding gases is discussed, and the formulations of the gases studied in scientific articles and in deposited patents, as well as the claims (benefits) required. It also mentions some few studies using additions of non-conventional gases. It was observed that for the development of shielding gases for the GMAW steel welding the model of slightly oxidizing atmosphere is predominant. Most of proposed formulations involve the use of binary, ternary or even quaternary mixtures of the gases Ar, He, CO2 and O2. For specific aplications, additions of N2 e H2 were used. In this meaning, few innovations were identified, and possible reasons were attributed. The trend observed for the development of shielding gases seems to be the use of mixtures rich in inert gases, with calibrated additions of oxidizing elements, always looking for specific applications
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