BORDIN, ALBERTO
 Distribuzione geografica
Continente #
NA - Nord America 1.379
EU - Europa 211
AS - Asia 94
Totale 1.684
Nazione #
US - Stati Uniti d'America 1.378
IT - Italia 84
CN - Cina 63
DE - Germania 42
FI - Finlandia 37
GB - Regno Unito 23
SE - Svezia 17
VN - Vietnam 10
IN - India 6
SG - Singapore 6
ID - Indonesia 5
AT - Austria 2
IE - Irlanda 2
PT - Portogallo 2
CA - Canada 1
GR - Grecia 1
JP - Giappone 1
KR - Corea 1
NP - Nepal 1
RU - Federazione Russa 1
TW - Taiwan 1
Totale 1.684
Città #
Fairfield 253
Woodbridge 146
Houston 129
Ann Arbor 119
Seattle 108
Wilmington 95
Ashburn 92
Chandler 92
Cambridge 85
Padova 31
San Diego 22
Helsinki 20
Medford 20
Princeton 20
Des Moines 18
Boardman 10
Dong Ket 10
London 8
New York 8
Nanjing 7
Zhengzhou 7
Beijing 6
Cagliari 6
Kunming 6
Jakarta 5
Phoenix 5
Tianjin 5
Munich 4
Shenyang 4
Hebei 3
Jinan 3
Orange 3
Rende 3
Sheffield 3
Singapore 3
Barletta 2
Battipaglia 2
Dublin 2
Hefei 2
Kaiserslautern 2
Nanchang 2
Ogden 2
Redwood City 2
Rockville 2
Roxbury 2
Rubano 2
San Marzano sul Sarno 2
Selvazzano Dentro 2
Taizhou 2
Tappahannock 2
Treviso 2
Turin 2
Venice 2
Vicenza 2
Voghera 2
Akishima 1
Baotou 1
Bengaluru 1
Berlin 1
Borås 1
Camponogara 1
Chongqing 1
Columbus 1
Falls Church 1
Fuzhou 1
Guangzhou 1
Hangzhou 1
Indiana 1
Jawalakhel 1
Karlsruhe 1
Kilburn 1
Lanzhou 1
Leeds 1
Miami Beach 1
Moscow 1
New Bedfont 1
Ningbo 1
Palermo 1
Pescara 1
Prescot 1
Quzhou 1
Rostock 1
Rovigo 1
Serra San Bruno 1
Shanghai 1
Shaoxing 1
Sorbolo 1
Stockholm 1
Taipei 1
Tamm 1
Vibo Valentia 1
Vienna 1
Villorba 1
Wenzhou 1
Totale 1.438
Nome #
Fretting Corrosion Behavior of Additive Manufactured and Cryogenic-Machined Ti6Al4V for Biomedical Applications 126
Finite element simulation of semi-finishing turning of Electron Beam Melted Ti6Al4V under dry and cryogenic cooling 112
Experimental investigation on the feasibility of dry and cryogenic machining as sustainable strategies when turning Ti6Al4V produced by Additive Manufacturing 108
Analysis of the Surface Integrity in Cryogenic Turning of Ti6Al4 v Produced by Direct Melting Laser Sintering 105
Analysis of tool wear in cryogenic machining of additive manufactured Ti6Al4V alloy 95
Influence of the machining parameters and cooling strategies on the wear behavior of wrought and additive manufactured Ti6Al4V for biomedical applications 95
Comparison between wrought and EBM Ti6Al4V machinability characteristics 94
Feasibility of Cryogenic Cooling in Finishing Turning of Acetabular Cups Made of Additive Manufactured Ti6Al4V 94
3D finite element modelling of surface modification in dry and cryogenic machining of EBM Ti6Al4V alloy 93
The Influence of Material Properties on the Tool Crater Wear When Machining Ti6Al4 v Produced by Additive Manufacturing Technologies 89
Numerical modelling of orthogonal cutting of Electron Beam Melted Ti6Al4V 89
Machinability characteristics of wrought and EBM CoCrMo alloys 85
3D FE simulation of semi-finishing machining of Ti6Al4V additively manufactured by direct metal laser sintering 81
Effect of the Process Parameters on the Machinability Characteristics of a CoCrMo Alloy 75
Machining Simulation of Ti6Al4V under Dry and Cryogenic Conditions 71
Experimental analysis on semi-finishing machining of Ti6Al4V additively manufactured by direct melting laser sintering 66
Machinability of the EBM Ti6Al4V in cryogenic turning 62
A machining strategy to fulfil geometrical quality requirements in cryogenic turning of acetabular cups made of Additive Manufactured Ti6Al4V 60
The effect of cutting speed and feed rate on the surface integrity in dry turning of CoCrMo alloy 59
Machinability of Ti6Al4V alloy produced by electron beam melting under different lubricating conditions 50
Totale 1.709
Categoria #
all - tutte 5.664
article - articoli 1.530
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 3.046
Totale 10.240


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2018/2019129 0 0 0 0 0 0 0 0 0 0 65 64
2019/2020381 48 12 6 24 49 33 37 57 38 25 45 7
2020/2021263 9 10 4 25 11 16 6 13 32 67 51 19
2021/2022290 13 21 40 32 22 15 11 40 12 11 23 50
2022/2023220 35 6 4 43 45 31 3 14 27 2 5 5
2023/202499 6 11 32 17 4 9 6 10 4 0 0 0
Totale 1.709