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ELENCO MEDICI ADERENTI PRESA in CARICO Dato Aggiornato Al 30 Settembre 2019
ELENCO MEDICI ADERENTI PRESA IN CARICO Dato aggiornato al 30 Settembre 2019 MEDICO DI MEDICINA GENERALE MEDICO IN SEDE AMBULATORIO COGNOME NOME (MMG) o COOPERATIVA/MEDICO COOPERATIVA DI APPARTENENZA PRINCIPALE PEDIATRA DI IN FORMA SINGOLA LIBERA SCELTA (PLS) ABBATE LUIGI MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA CHIARI ABENI FRANCESCO MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA RODENGO SAIANO ACERBIS FABRIZIO MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA PONTEVICO ADINOLFI ALDO MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA OFFLAGA ADINOLFI BARBARA PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI SALO' MEDICO IN FORMA AGAZZANI DAVIDE MMG BRESCIA SINGOLA ALESSI MARIA ADELE MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA BRESCIA AMADORI ANNALISA PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI BRESCIA AMICABILE ADRIANO MMG MEDICO IN COOPERATIVA BRESCIA WAY DESENZANO DEL GARDA ANDALORO STEFANIA ANTONELLA MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA OSPITALETTO ANDREOLI SIMONA MMG MEDICO IN COOPERATIVA I.M.L. INIZIATIVA MEDICA LOMBARDA BRESCIA ANDREOLLI CAMILLO MARIA MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA BOVEZZO 1 ANGELI AGNESE PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI BRESCIA ANTONELLI UMBERTO MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA ROCCAFRANCA ANTONIOLI CECILIA MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA CALVISANO ARCANGELI GUIDO PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI BRESCIA ARCHETTI FRANCESCA PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI PALOSCO ARCHETTI GIUSEPPE MMG MEDICO IN COOPERATIVA IN.SALUTE BRESCIA RODENGO SAIANO ARDIGO' LEONARDO MMG MEDICO IN COOPERATIVA BRESCIA WAY SALO' ARPINO CATELLA PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI DESENZANO DEL GARDA ARRIGHETTI ALESSANDRA PLS MEDICO IN COOPERATIVA PEDIATRI RIUNITI RODENGO SAIANO ASSONI VALTER CLAUDIO MMG MEDICO IN COOPERATIVA BRESCIA WAY PALAZZOLO SULL'OGLIO ASTORI PAOLA MMG MEDICO IN COOPERATIVA I.M.L. -
Declaration of Acceptance of Candidature to Become a Member of the Board of Arbitrators of UBI Banca S.C.P.A
Unione di Banche Italiane S.c.p.a Piazza Vittorio Veneto, 8 24122 Bergamo Declaration of acceptance of candidature to become a member of the Board of Arbitrators of UBI Banca S.c.p.a. I the undersigned GIAMPIERO DONATI Date of birth: 5-10-1935 Place of birth: Bergamo as a candidate to the position of member of the Board of Arbitrators of UBI Banca, in accordance with article 51, paragraph 3 of the Articles of Association di UBI Banca, HEREBY DECLARE that I accept my candidature and in this respect attach my personal and professional details (curriculum vltae). I the undersigned hereby declare that if I am elected I shall accept the appointment and shall elect domicile at the registered offices of UBI Banca at 8, Piazza Vittorio Veneto, Bergamo for all documents relating to the position and also in compliance with and for the purposes of supervisory provisions. Finally, I the undersigned declare that I am aware that this declaration together with my curriculum vitae will be disclosed to the public in accordance with current legislation and regulations in force. Place and date Signature Bergamo 24-3-2015 (signature on original Italian document) Information pursuant to article 23 of Legislative Decree No. 196/2003 - I authorise UBI Banca to process my personal data contained in this application for the purposes stated in the information received and also for other purposes provided for by law. CURRICULUM VITAE AVV. GIAMPIERO DONATI Admitted to the Milan bar Association in 1962, I still practice as a lawyer today. I became a member of the Board of Arbitrators of Banca Popolare di Bergamo in 1978 and subsequently Chairman of that board and then Chairman of the Board of Arbitrators of BPU Banca and then of UBI Banca. -
Bresciaeprovincia
I S T I T U Z I O N I S C O L A S T I C H E S T A T A L I - B R E S C I A E P R O V I N C I A - A.S. 2019 2020 COMUNE INDIRIZZO COD. MECCAN. TELEFONO-FAX-EMAIL PLESSI - CODICI INDIRIZZI D.S.G.A. DIRIGENTE SCOL. ISTITUTO COMPRENSIVO 0307356669 Sc. Infanzia Adro Bosio Elida Poli Giampietro 0307356653 Sc. Primaria Adro (Ass. Amm.) 1 ADRO Via Nigoline, 16 Sc. Sec. 1° Adro 25030 Adro BSIC835008 [email protected] ISTITUTO COMPRENSIVO 0364591528 Sc. Infanzia Beata Polimeni Valeria Marafante Simonettta 0364599060 Sc. Primaria Artogne-Piancamuno-Beata-Vissone (3 fascia) 2 ARTOGNE Via C. Golgi, 1 Sc. Sec. 1° Artogne 25040 Artogne BSIC80800X [email protected] ISTITUTO COMPRENSIVO 0309747012 Sc. Infanzia Capriano d/C Caprio Gina Festa Federica 0309748870 Sc. Primaria Azzano M.-Capriano d/C-Fenili B.-Mairano 3 AZZANO MELLA Via Paolo VI, 1 Sc. Sec. 1° Azzano 25020 Azzano Mella BSIC89000R [email protected] ISTITUTO COMPRENSIVO 0306821272 Sc. Infanzia Zona Est-Zona Ovest Speranza Eleonora Scaglia Rita Sc. Primaria Via 26 aprile-Via Bellavere (Ass. Amm.) 4 BAGNOLO MELLA Viale Europa, 15 Sc. Sec. 1° Bagnolo M. 25021 Bagnolo Mella BSIC844003 [email protected] ISTITUTO COMPRENSIVO 036599190 - 0365903868 Sc. Infanzia Idro-Anfo-Treviso B. Vaglia Daria Mattina Aristo Pietro Andus 036599121 Sc. Primaria Bagolino-Ponte Caffaro-Idro-Capovalle-Treviso B. (Ass. Amm.) (Reggente) 5 BAGOLINO Via Lombardi, 18 Sc. Sec. 1° Bagolino-Ponte Caffaro-Idro 25072 Bagolino BSIC806008 [email protected] ISTITUTO COMPRENSIVO 030674036 Sc. -
Effect of Heat Treatment and Cryogenics on Hardness Of
Eastern-European Journal of Enterprise Technologies ISSN 1729-3774 2/12 ( 92 ) 2018 UDC 664.6:664.95 Описано результати досліджень мож- DOI: 10.15587/1729-4061.2018.129013 ливостей підвищення механічних власти- востей чавунів з кулястим графітом марки FCD-50 шляхом комбінованої термічної оброб- EFFECT OF HEAT ки. Запропоновано схему багатоступінчастої термічної обробки, характерною особливістю TREATMENT AND якої є операція охолодження у рідкому азоті. Використання такої схеми дозволяє отрима- CRYOGENICS ON ти підвищені характеристики твердості HRC. Дослідженням мікроструктури чавунів, обро- HARDNESS OF блених за такою схемою, доведена ефектив- ність кріогенного етапу термічної обробки та DUCTILE CAST IRON визначено її раціональні режими. Ключові слова: FCD-50, чавун з кулястим MICROSTRUCTURE графітом, термічна обробка, криогенна оброб- ка, твердість, мікроструктура (FCD-50) Suriansyah Sabarudin Master Описаны результаты исследований воз- Department of Mechanical Engineering можностей повышения механических свойств University of Widyagama Malang чугунов с шаровидным графитом марки FCD- Jalan. Borobudur., 35, Malang, Indonesia, 65128 50 путем комбинированной термической обра- Е-mail: [email protected] ботки. Предложена схема многоступенчатой Pratikto термической обработки, характерной особен- Doctorate, Professor* ностью которой является операция охлаж- Е-mail: [email protected] дения в жидком азоте. Использование такой Agus Suprapto схемы позволяет получить повышенные харак- Doctorate, Professor теристики твердости -
Review on Cryogenic Trearment of Steels
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395 -0056 Volume: 03 Issue: 10 | Oct -2016 www.irjet.net p-ISSN: 2395-0072 REVIEW ON CRYOGENIC TREARMENT OF STEELS Vengatesh.M1, Srivignesh.R2, Pradeep balaji.T3, N.R.Karthik4, 1,2,3 B.E- Final year, Department of Mechanical Engineering, Sri Ramakrishna Engineering College, Coimbatore, Tamilnadu, India. E-mail Id: [email protected] 4 Assistant Professor, Department of Mechanical Engineering, Sri Ramakrishna Engineering College, Coimbatore, Tamilnadu, India. E-mail Id: [email protected] ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract - Cryogenic treatment (CT) is the supplementary The complete treatment process of the steels consists of process in the heat treatment process; by which the materials hardening that is austenitizing and quenching, cryo- were subjected to sub-zero temperatures to improve treatment or deep cryogenic treatment (DCT), and mechanical and physical properties. Various advantages like tempering. To achieve better microstructure of the steel and increase in hardness, increase in wear resistance, reduced to get most desired properties, it is recommended by the residual stresses, increase in fatigue Resistance, increased most researchers to execute DCT after completion of dimensional stability, increased thermal conductivity, quenching and before tempering in conventional heat- toughness were absorbed by the transformation of retained treatment cycle as. The complete process sequentially austenite to martensite, eta-carbide formation, precipitation consists of the steps austenitizing, quenching, of ultrafine carbides, and homogeneous crystal structure. CT cryoprocessing and tempering. Fig 1 shows the time taken used to treat many type of steels like tool steels, die steels etc. vs temperature curve. This paper aims to review about various CT involved in treating various steels and their impact on their properties. -
187 Gas Nitriding with Deep Cryogenic Treatment Of
Acta Metallurgica Slovaca, Vol. 24, 2018, No. 2, p. 187-193 187 GAS NITRIDING WITH DEEP CRYOGENIC TREATMENT OF HIGH-SPEED STEEL David Hradil1)*, Michal Duchek1), Taťána Hrbáčková1), Aleksander Ciski2) 1) COMTES FHT, Dobřany, Czech Republic 2) Institute of Precision Mechanics, Warsaw, Poland Received: 12.03.2018 Accepted: 28.05.2018 *Corresponding author: e-mail: [email protected], Tel.:+420 377 197 365, COMTES FHT, Průmyslová 995, 334 41 Dobřany, Czech Republic Abstract Nitriding with subsequent heat treatment in combination with deep cryogenic treatment (DCT) produces nitrided layers with specific properties. Layers with unique properties result from the dissolution of subsurface layers of iron nitrides and subsequent nitrogen diffusion into the substrate during austenitisation. Fine precipitates of carbonitrides eventually form during DCT and tempering. Intermediate deep cryogenic treatment was performed between the quenching and tempering steps. This work is based on comparing nitrided layers obtained using conventional treatment parameters with nitrided layers from novel processes. The experimental material was DIN 1.3343 (Czech Standard 41 9830) high-speed steel. Several treatment methods were compared in terms of the resulting hardness and metallographic characteristics. Keywords: Deep Cryogenic Treatment, Nitriding, Metallography, Hardness 1 Introduction Steels are nitrided in the machinery and toolmaking industries to obtain better tribological properties and fatigue performance, which result from compressive stresses generated in the surface [1, 2, 3]. Typical nitrided products include a variety of cutting tools, drills, dies, injection moulds, valves and many machine parts, such as gears, crankshafts and spring [4]. In nitriding, nitrogen is introduced into the surface of steel over a period of several tens of hours. -
Cryogenic Quenching of Steel Revisited
Cryogenic Quenching of Steel Revisited Zbigniew Zurecki Air Products and Chemicals, Inc., Pennsylvania, USA Abstract Subject to a continuing debate, cryogenic treatments of alloy quenching temperature and wear rates [5]. However, a steels have been claimed to significantly increase wear cryogenic treatment study on M2 tool steel, which involved a resistance and toughness through the interplay of three effects: week-long soaking, found only carbon clustering effect that completing martensitic transformation, promoting uniform resulted in increasing carbide density in the subsequent heat precipitation of fine carbides and imparting residual stresses. treatment [6]. Clustering of interstitial carbon at cryogenic This study reexamines effects of various heat-treatment temperature, as opposed to a more complete aging process at schedules including liquid nitrogen (-196oC) and liquid helium room temperature was confirmed by Barbe studying (-269oC) quenching on microstructure and selected properties metastable austenite in low-alloyed TRIP steels [7]. Presented of A2-grade tool steel. Examination methods include SEM, scatter in the published results on cryogenic treatments EDS, microhardness, Charpy impact and wear resistance indicates that still more experimental data is needed in order to measured using the standard pin-on-disk as well as a diamond assist engineers in optimizing conditions for the industrial stylus micro-scratching technique adopted from the field of practice. The objective of this work is to reexamine various thin-film technologies. Results confirm the cryo-treatment heat-treatment schedules involving cryogenic quenching step enhanced precipitation in the subsequent tempering step of using an air-hardenable AISI/UNS A2 tool steel, the grade what turns out to be 100-250 nm alloy-depleted carbides, and reported to be the best responder to the cryogenic treatment moderate improvements in wear resistance and hardness, both from the wear resistance standpoint [8]. -
European Conference on Heat Treatment 2015 22Nd IFHTSE
VENICE (ITALy) 20-22 MAY 2015 European Conference on Heat Treatment 2015 & 22nd IFHTSE Congress Heat Treatment and Surface Engineering From tradition to innovation Final Programme & Exhibition Catalogue Organised by Associazione Italiana di Metallurgia In cooperation with Event no. 395 1 of the EFC TIME TABLE Tuesday, 19 May 2015 17.00 OPENING 18.30 OF THE REGISTRATION Wednesday, 20 May 2015 8.00 Registration ROOM A 9.30 OPENING SESSION 10.00 Keynote Lecture 10.45 OPENING OF THE EXHIBITION and Coffee break ROOM A ROOM B 11.10 Massive heat treatments: microstructural Tool Steels properties and transformations 12.50 Lunch 14.10 Massive heat treatments: relationship Quenching and heat transfer between process and final properties 15.30 coffee break 15.50 Nitriding and nitrocarburizing Quenching media and process Application and combined processes 17.30 END OF THE FIRST DAY Thursday, 21 May 2015 ROOM A ROOM B 9.00 Massive heat treatments Industrial heat treatment equipment of special components and process innovation 10.40 coffee break 11.10 Quality and accreditation Industrial heat treatment equipment and process innovation 12.50 Lunch 14.00 Stainless steels Applications 16.00 coffee break 16.20 Carburizing processes and properties Non ferrous processes and properties ROOM A 17.40 Keynote lecture 18.15 END OF THE SECOND DAY 19.00 Social event Friday, 22 May 2015 ROOM A ROOM B 9.00 Nitriding and nitrocarburizing Coatings properties and characterization Application and combined processes 10.20 coffee break 10.50 Coatings processes and applications -
Brescia-Iseo-Edolo.Pdf
EDOLO - ISEO - BRESCIA Genere di treno RRRRRRAUTO R AUTO RRRAUTO R RRRRRRRRRR R RRRR R RRR R Numero del treno 1007 2007 1009 2009 1011 6011 1013A 1013 2013A 2013 1015 1017 1019A 1019 2021 1025 2029 1031 1033 1037 2037 1041 2041 6043 6045 1045 1049 1055 2053 1057 2059 2061 2065 1065 Giorno di circolazione F6(1) FT(2) F6(1) FT(2) F6(1) P(3) F6(1) F6(1) FT(2) FT(2) F6(1) F6(1) F6(1) F6(1) FT(2) F6(1) FT(2) F6(1) F6(1) F6(1) FT(2) F6(1) FT(2) P(3) P(3) F6(1) F6(1) F6(1) FT(2) F6(1) FT(2) FT(2) FT(2) F6(1) [31] [38] [31] [38] Nota commerciale [38] [38] [31] [43] [31] [38] [43] [38] [31] [43] [38] [38] [38] [38] [38] [38] [31] [38] [31] [38] [38] [38] [38] [31] [38] [40] [42] Classe 222222 2 2 2 2 2 2222222222 2 2222 2 222 2 EDOLO 5.24 5.30 6:10 6.41 7:35 9:35 9:49 12:20 13:24 15:35 16:32 16.35 18:35 18:42 Sonico 5.28 5.34 6:14 6.45 (F) (F) (F) (F) 13:28 (F) (F) (F) (F) (F) Malonno 5.35 5.41 6:21 6.52 7:45 9:45 9:59 12:30 13:35 15:45 16:42 16:45 18:45 18:52 Forno Allione | | (F) 6.56 (F) (F) (F) (F) (F) (F) (F) (F) (F) (F) Cedegolo 5.45 5.51 6:30 7.02 7:54 9:54 10:08 12:39 13:44 15:54 16:51 16:54 18:54 19:04 Sellero 5.48 | (F) 7.05 (F) (F) (F) (F) 13:47 (F) (F) (F) (F) (F) Capo di Ponte 5.53 5.58 6:37 7.10 8:02 10:02 10:16 12:47 13:55 16:02 16:59 17:02 19:02 19:12 Ceto-Cerveno 5.58 6.04 6:43 7.15 8:08 10:08 10:21 12:52 14:01 16:08 17:04 17:08 19:08 19:17 Niardo-Losine | | | | | | | | | | | | | | Breno 6.05 6.10 6:49 7.22 8:14 10:14 10:27 12:58 14:07 16:14 17:10 17:14 19:14 19:23 Breno 6:08 6:14 6:49 7:25 8:15 10:15 10:28 12:59 13:30 14:08 16:15 -
Preliminary Program
PRELIMINARY PROGRAM MONDAY, 26 June 2017 16.00-18.00 : Opening of the registration 18.00-19.00 : Welcome event & Cocktail TUESDAY, 27 June 2017 ROOM A 08.00 REGISTRATION 09.00 Opening Ceremony by A3TS President and IFHTSE President. KEYNOTES LECTURES 09.20 Landing Gear Technologies : From The Beginning To Tomorrow P. Taylor - Safran Landing Systems - Oloron Sainte Marie (France) 10.00 Materials Engineering for Automotive challenges Y. Chastel - Groupe Renault – Guyancourt (France) 10.40 Focused Ion Beam methods for micro-scale residual stress assessment E. Bemporad - University Roma 3 - Rome (Italy) 11.20 Thermochemical Surface Engineering: A Playground for Science and Innovation M.A.J. Somers - Technical University of Denmark - Kongens Lyngby (Denmark) 12.00 END OF THE KEYNOTES LECTURES 12.30 LUNCH ROOM A ROOM B SESSION S1: FUNDAMENTAL AND PROPERTIES SESSION S9 : MODELING 14.00 Thermochemical treatments applications for helicopter gas turbine engines Prediction of grain size evolution during thermal and thermomechanical treatments at C. Vernault, Safran Helicopter Engines - Bordes (France) the mesoscopic scale: numerical improvements and industrial examples A. Settefrati 1, B. Scholtes 1, N. Bozzolo 2, E. Perchat 1, M. Bernacki 2 1Transvalor SA - Mougins (France), 2Mines ParisTech, PSL Research University, CEMEF - Sophia Antipolis (France) 14.20 Influence of the microstructure on local deformations of a homogeneously nitrided steel Numerical modelling of heat treated welded joint F. Godet 1, L. Barrallier 2, S. Jégou 2, S. Thibault 3 B. Smoljan, D. Iljkic, L. Štic, S. Smokvina Hanza, N. Tomašic Faculty of Engineering, 1IRT-M2P - Metz (France), 2MSMP Laboratory - Aix-En-Provence (France), 3SAFRAN TECH - University of Rijeka - Rijeka (Croatia) Magny-Les-Hameaux (France) 14.40 TEM investigation of the semi-coherent precipitation in a nitrided Fe-3Cr alloy Experimental Study and Modelling of Phase Transformation Kinetics During Austenite O. -
Influence of Cryogenic Treatment on Wear Resistance And
metals Article Influence of Cryogenic Treatment on Wear Resistance and Microstructure of AISI A8 Tool Steel Pello Jimbert * , Maider Iturrondobeitia, Julen Ibarretxe and Roberto Fernandez-Martinez Faculty of Engineering in Bilbao, UPV/EHU, 48013 Bilbao, Spain; [email protected] (M.I.); [email protected] (J.I.); [email protected] (R.F.-M.) * Correspondence: [email protected]; Tel.: +34-94-601-4308 Received: 16 October 2018; Accepted: 5 December 2018; Published: 7 December 2018 Abstract: The effects of deep cryogenic treatment (DCT) on the wear behavior of different tool steels have been widely reported in the scientific literature with uneven results. Some tool steels show a significant improvement in their wear resistance when they have been cryogenically treated while others exhibit no relevant amelioration or even a reduction in their wear resistance. In this study, the influence of DCT was investigated for a grade that has been barely studied in the scientific literature, the AISI A8 air-hardening medium-alloy cold work tool steel. Several aspects were analyzed in the present work: the wear resistance of the alloy, the internal residual stress, and finally the secondary carbide precipitation in terms of lengths and occupied area and its distribution into the microstructure. The results revealed a reduction in the wear rate of about 14% when the AISI A8 was cryogenically treated before tempering. The number of carbides that precipitated into the microstructure was 6% higher for the cryogenically treated samples, increasing from 0.68% to 0.73% of the total area they covered. Furthermore, the distribution of the carbides into the microstructure was more homogenous for the cryogenically treated samples. -
Industry News
INDUSTRY NEWS ECM Celebrates 10 Metallurgical High Vacuum Years in the U.S. ECM USA, Kenosha, Wis., Expands Headquarters established in 1997 by Metallurgical High Vacuum Corp. ECM-France, Vandoeuvre lès Nancy, to promote (MVH), Fennville, Mich., a low-pressure carburizing supplier in the vacuum-technology in North America, celebrates its tenth year in 2 industry, opened a new 2,400 ft the U.S. ECM-USA focuses Engineering Design Center. on sales, installation, and The facility is equipped with the service operations, and is set up for testing all latest 3-D CAD systems that customer programs in accommodate all vacuum pump North America with full and system engineering. MHV metallurgical support. www.ecm-usa.com. now offers high quality vacuum MHV new office and Engineering Design Center. pumps and process equipment from vacuum ultrasonic inspection and heat-treated forged Praxair Increases coating systems to chambers for thermal products at its Samara manufacturing facility in Prices Praxair Inc., Danbury, processing of metals, and provides in-depth Russia. The Samara plant became the second Conn., and Praxair engineering, design, and services on a wide Russian production facility to acquire the right to Canada Inc., Mississauga, range of high-vacuum equipment, including enter the world aerospace market and work with Ontario, increased prices of industrial gases remanufacturing of vacuum, booster, and such customers as Airbus and Boeing. Alcoa’s effective January 1, 2008, diffusion pumps and blowers. ww.methivac.com. Belaya Kalitva heat-treated