814 research outputs found

    Failure analysis of fillet welds with premature corrosion in 316L stainless steel slide gates using constitution diagrams

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    Las condiciones de servicio de compuertas deslizantes en una planta de tratamiento de aguas residuales pueden causar corrosión localizada en las soldaduras.  Se realizó un análisis de falla para determinar las causas de corrosión prematura en las soldaduras en filete de varias compuertas antes de su servicio.  El contratista de las compuertas afirmó que las fabricó en acero inoxidable ASTM A240 Tipo 316L y las soldó con proceso GMAW y electrodo ER316LSi.  Después de una inspección visual, se extrajeron dos muestras de metales fundidos de las compuertas y se analizaron utilizando medición de ferrita, espectrometría de emisión óptica, análisis químico, examen metalográfico y SEM con microanálisis.  El análisis, usando los diagramas de Schaeffler y WRC-92, mostró que la composición química estimada para el metal de aporte difiere de la reportada en el WPS, sugiriendo que durante la construcción de las compuertas se usó un electrodo incorrecto de acero al carbono.The service environment of the slide gates may cause localized corrosion at welds.  In this work, a failure analysis was conducted to determine the causes of the premature corrosion of the fillet welds before the commissioning. According to the contractor, the slide gates were manufactured in ASTM A240 Type 316L stainless steel and welded with GMAW using an ER316LSi filler metal.  Test samples of the fillet weld metals were extracted from gates after a preliminary visual inspection.  The samples were analyzed using ferrite number measurements, Optical Emission Spectrometry, chemical analysis, metallographic examination and Scanning Electron Microscopy with microanalysis. The analysis of results using the Schaeffler and WRC-92 constitution diagrams showed that the estimated chemical composition of the filler metal differs with the filler metal specified in the WPS suggesting that an incorrect carbon steel filler metal was used during the construction of the gates

    CloSer, we make achievement and collaboration the main drivers of personal growth

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    ClosSer es una espacio para que las personas denominadas millenial de 27 a 36 años puedan facilitar el logro de sus metas a través de la colaboración con otros y el autonocimiento por medio de talleres experienciales. Los talleres experienciales se dividen en etapas que son : Visualiza tu viaje, ¡Prepara tu maleta! , Iniciando el viaje y Disfruta el recorrido. Por medio de los talleres se busca que los integrantes reconozcan sus logros y fortalezas y los sueños que cada uno tiene , de esa manera , crear una comunidad que busca colaborar para la consecución de objetivos comunes entre todosMillenialsClosSer is a space for millennials from 27 to 36 years old to facilitate the achievement of their goals through collaboration with others and self-knowledge through experiential workshops. The experiential workshops are divided into stages that are: Visualize your trip, Prepare your suitcase! Start your trip and Enjoy the journey. Through the workshops we seek that the members recognize their achievements and strengths and the dreams that each one has, thus, creating a community that seeks to collaborate for the achievement of common goals among all.Magíster en Administración de EmpresasMaestrí

    VIII Semana de la Facultad de Educación : Desafíos de las pedagogías, las prácticas y las perspectivas investigativas en el siglo XXI.

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    Estas memorias de la viii Semana de la Educación Desafíos de las pedagogías, las prácticas y las perspectivas investigativas en el siglo XXI, publicadas por la editorial de la Corporación Universitaria Minuto de Dios (uniminuto), contienen las ponencias, los talleres y los foros sobre las tendencias actuales de la pedagogía, las prácticas y la investigación que desarrollan los maestros y estudiantes de licenciaturas en las instituciones educativas a nivel preescolar, básica, media y superior. Son ponencias con carácter innovador e incluyente, que responden a los retos actuales de la sociedad y que conducen a la mejora de las condiciones de formación de los ciudadanos que requiere el país, dadas las particularidades de pluralismo propias de nuestras regiones. Durante el encuentro, también se compartieron experiencias artísticas, culturales y deportivas

    VIII Semana de la Facultad de Educación : Desafíos de las pedagogías, las prácticas y las perspectivas investigativas en el siglo XXI.

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    Estas memorias de la viii Semana de la Educación Desafíos de las pedagogías, las prácticas y las perspectivas investigativas en el siglo XXI, publicadas por la editorial de la Corporación Universitaria Minuto de Dios (uniminuto), contienen las ponencias, los talleres y los foros sobre las tendencias actuales de la pedagogía, las prácticas y la investigación que desarrollan los maestros y estudiantes de licenciaturas en las instituciones educativas a nivel preescolar, básica, media y superior. Son ponencias con carácter innovador e incluyente, que responden a los retos actuales de la sociedad y que conducen a la mejora de las condiciones de formación de los ciudadanos que requiere el país, dadas las particularidades de pluralismo propias de nuestras regiones. Durante el encuentro, también se compartieron experiencias artísticas, culturales y deportivas

    Delayed colorectal cancer care during covid-19 pandemic (decor-19). Global perspective from an international survey

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    Background The widespread nature of coronavirus disease 2019 (COVID-19) has been unprecedented. We sought to analyze its global impact with a survey on colorectal cancer (CRC) care during the pandemic. Methods The impact of COVID-19 on preoperative assessment, elective surgery, and postoperative management of CRC patients was explored by a 35-item survey, which was distributed worldwide to members of surgical societies with an interest in CRC care. Respondents were divided into two comparator groups: 1) ‘delay’ group: CRC care affected by the pandemic; 2) ‘no delay’ group: unaltered CRC practice. Results A total of 1,051 respondents from 84 countries completed the survey. No substantial differences in demographics were found between the ‘delay’ (745, 70.9%) and ‘no delay’ (306, 29.1%) groups. Suspension of multidisciplinary team meetings, staff members quarantined or relocated to COVID-19 units, units fully dedicated to COVID-19 care, personal protective equipment not readily available were factors significantly associated to delays in endoscopy, radiology, surgery, histopathology and prolonged chemoradiation therapy-to-surgery intervals. In the ‘delay’ group, 48.9% of respondents reported a change in the initial surgical plan and 26.3% reported a shift from elective to urgent operations. Recovery of CRC care was associated with the status of the outbreak. Practicing in COVID-free units, no change in operative slots and staff members not relocated to COVID-19 units were statistically associated with unaltered CRC care in the ‘no delay’ group, while the geographical distribution was not. Conclusions Global changes in diagnostic and therapeutic CRC practices were evident. Changes were associated with differences in health-care delivery systems, hospital’s preparedness, resources availability, and local COVID-19 prevalence rather than geographical factors. Strategic planning is required to optimize CRC care

    Development of the CMS detector for the CERN LHC Run 3

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    International audienceSince the initial data taking of the CERN LHC, the CMS experiment has undergone substantial upgrades and improvements. This paper discusses the CMS detector as it is configured for the third data-taking period of the CERN LHC, Run 3, which started in 2022. The entire silicon pixel tracking detector was replaced. A new powering system for the superconducting solenoid was installed. The electronics of the hadron calorimeter was upgraded. All the muon electronic systems were upgraded, and new muon detector stations were added, including a gas electron multiplier detector. The precision proton spectrometer was upgraded. The dedicated luminosity detectors and the beam loss monitor were refurbished. Substantial improvements to the trigger, data acquisition, software, and computing systems were also implemented, including a new hybrid CPU/GPU farm for the high-level trigger

    Development of the CMS detector for the CERN LHC Run 3

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    Since the initial data taking of the CERN LHC, the CMS experiment has undergone substantial upgrades and improvements. This paper discusses the CMS detector as it is configured for the third data-taking period of the CERN LHC, Run 3, which started in 2022. The entire silicon pixel tracking detector was replaced. A new powering system for the superconducting solenoid was installed. The electronics of the hadron calorimeter was upgraded. All the muon electronic systems were upgraded, and new muon detector stations were added, including a gas electron multiplier detector. The precision proton spectrometer was upgraded. The dedicated luminosity detectors and the beam loss monitor were refurbished. Substantial improvements to the trigger, data acquisition, software, and computing systems were also implemented, including a new hybrid CPU/GPU farm for the high-level trigger.Since the initial data taking of the CERN LHC, the CMS experiment has undergone substantial upgrades and improvements. This paper discusses the CMS detector as it is configured for the third data-taking period of the CERN LHC, Run 3, which started in 2022. The entire silicon pixel tracking detector was replaced. A new powering system for the superconducting solenoid was installed. The electronics of the hadron calorimeter was upgraded. All the muon electronic systems were upgraded, and new muon detector stations were added, including a gas electron multiplier detector. The precision proton spectrometer was upgraded. The dedicated luminosity detectors and the beam loss monitor were refurbished. Substantial improvements to the trigger, data acquisition, software, and computing systems were also implemented, including a new hybrid CPU/GPU farm for the high-level trigger

    Development of the CMS detector for the CERN LHC Run 3

    Full text link
    International audienceSince the initial data taking of the CERN LHC, the CMS experiment has undergone substantial upgrades and improvements. This paper discusses the CMS detector as it is configured for the third data-taking period of the CERN LHC, Run 3, which started in 2022. The entire silicon pixel tracking detector was replaced. A new powering system for the superconducting solenoid was installed. The electronics of the hadron calorimeter was upgraded. All the muon electronic systems were upgraded, and new muon detector stations were added, including a gas electron multiplier detector. The precision proton spectrometer was upgraded. The dedicated luminosity detectors and the beam loss monitor were refurbished. Substantial improvements to the trigger, data acquisition, software, and computing systems were also implemented, including a new hybrid CPU/GPU farm for the high-level trigger

    Development of the CMS detector for the CERN LHC Run 3

    Full text link
    International audienceSince the initial data taking of the CERN LHC, the CMS experiment has undergone substantial upgrades and improvements. This paper discusses the CMS detector as it is configured for the third data-taking period of the CERN LHC, Run 3, which started in 2022. The entire silicon pixel tracking detector was replaced. A new powering system for the superconducting solenoid was installed. The electronics of the hadron calorimeter was upgraded. All the muon electronic systems were upgraded, and new muon detector stations were added, including a gas electron multiplier detector. The precision proton spectrometer was upgraded. The dedicated luminosity detectors and the beam loss monitor were refurbished. Substantial improvements to the trigger, data acquisition, software, and computing systems were also implemented, including a new hybrid CPU/GPU farm for the high-level trigger

    Development of the CMS detector for the CERN LHC Run 3

    Full text link
    Since the initial data taking of the CERN LHC, the CMS experiment has undergone substantial upgrades and improvements. This paper discusses the CMS detector as it is configured for the third data-taking period of the CERN LHC, Run 3, which started in 2022. The entire silicon pixel tracking detector was replaced. A new powering system for the superconducting solenoid was installed. The electronics of the hadron calorimeter was upgraded. All the muon electronic systems were upgraded, and new muon detector stations were added, including a gas electron multiplier detector. The precision proton spectrometer was upgraded. The dedicated luminosity detectors and the beam loss monitor were refurbished. Substantial improvements to the trigger, data acquisition, software, and computing systems were also implemented, including a new hybrid CPU/GPU farm for the high-level trigger
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