SUSMEL, Luca
 Distribuzione geografica
Continente #
NA - Nord America 6.334
EU - Europa 1.699
AS - Asia 1.582
SA - Sud America 154
AF - Africa 16
Continente sconosciuto - Info sul continente non disponibili 5
OC - Oceania 3
Totale 9.793
Nazione #
US - Stati Uniti d'America 6.323
CN - Cina 750
UA - Ucraina 477
SG - Singapore 448
IT - Italia 278
TR - Turchia 272
DE - Germania 242
GB - Regno Unito 216
FI - Finlandia 147
BR - Brasile 137
SE - Svezia 103
PL - Polonia 99
FR - Francia 57
BE - Belgio 16
ID - Indonesia 16
JP - Giappone 15
HK - Hong Kong 14
IN - India 13
NL - Olanda 12
CA - Canada 10
RU - Federazione Russa 9
ES - Italia 8
IQ - Iraq 7
IR - Iran 7
KR - Corea 7
MY - Malesia 6
RO - Romania 6
TN - Tunisia 6
VN - Vietnam 6
BD - Bangladesh 5
SI - Slovenia 5
CO - Colombia 4
CZ - Repubblica Ceca 4
GR - Grecia 4
PE - Perù 4
PT - Portogallo 4
UZ - Uzbekistan 4
AR - Argentina 3
AU - Australia 3
CL - Cile 3
DK - Danimarca 3
EG - Egitto 3
MA - Marocco 3
A2 - ???statistics.table.value.countryCode.A2??? 2
AO - Angola 2
AT - Austria 2
EU - Europa 2
NO - Norvegia 2
NP - Nepal 2
VE - Venezuela 2
AE - Emirati Arabi Uniti 1
AM - Armenia 1
AP - ???statistics.table.value.countryCode.AP??? 1
BG - Bulgaria 1
CH - Svizzera 1
CI - Costa d'Avorio 1
CY - Cipro 1
DO - Repubblica Dominicana 1
EC - Ecuador 1
GE - Georgia 1
IE - Irlanda 1
IL - Israele 1
KH - Cambogia 1
LT - Lituania 1
OM - Oman 1
PK - Pakistan 1
QA - Qatar 1
RS - Serbia 1
TW - Taiwan 1
ZA - Sudafrica 1
Totale 9.793
Città #
Fairfield 791
Woodbridge 773
Houston 548
Jacksonville 535
Chandler 448
Ashburn 378
Santa Clara 341
Ann Arbor 335
Wilmington 323
Seattle 311
Cambridge 282
Singapore 218
Izmir 178
Nanjing 155
Beijing 141
Princeton 125
Warsaw 96
Boardman 89
Milan 79
San Diego 68
Shanghai 56
Nanchang 47
Los Angeles 41
Shenyang 40
Hebei 38
Changsha 29
Ferrara 29
Lappeenranta 27
San Mateo 27
Hangzhou 25
Jinan 25
Tianjin 25
Falkenstein 21
Falls Church 21
Helsinki 19
London 19
Mountain View 19
Jiaxing 18
Redwood City 16
Zhengzhou 16
Kunming 15
Brussels 14
Jakarta 14
Norwalk 14
Rome 14
Council Bluffs 12
Guangzhou 12
Istanbul 12
Lanzhou 12
Auburn Hills 11
Brasília 11
Tappahannock 11
Philadelphia 10
Verona 10
Chicago 9
Ningbo 9
Redmond 9
Rio de Janeiro 9
Changchun 8
Hong Kong 8
Chengdu 7
Dearborn 7
Des Moines 7
Taizhou 7
Washington 7
Bremen 6
Haikou 6
Indiana 6
New York 6
Orange 6
São Paulo 6
Belo Horizonte 5
Bourg-la-reine 5
Frankfurt am Main 5
Ljubljana 5
Mandi 5
Padova 5
Pisa 5
Sheffield 5
Toronto 5
Turin 5
Baghdad 4
Bari 4
Dong Ket 4
Nuremberg 4
Petaling Jaya 4
San Francisco 4
Tashkent 4
Betim 3
Brest 3
Central District 3
Chelyabinsk 3
Collesalvetti 3
Curitiba 3
Delft 3
Gafsa 3
Iasi 3
Kilburn 3
Lima 3
Montreal 3
Totale 7.181
Nome #
Crack initiation and propagation paths in small diameter FSW 6082-T6 aluminium tubes under fatigue loading 173
High-Cycle Fatigue Crack Paths in Specimens having Different Stress Concentration Features 167
A Stress-Based Method to Predict Lifetime under Multiaxial Fatigue Loadings 161
A unifying approach to estimate the high-cycle fatigue strength of notched components subjected to both uniaxial and multiaxial cyclic loadings 161
A novel formulation of the Theory of Critical Distances to estimate Lifetime of Notched Components in the Medium-Cycle Fatigue Regime 160
Designing aluminium friction stir welded joints against multiaxial fatigue 159
A simplified approach to apply the theory of critical distances to notched components under torsional fatigue loading 147
Multiaxial fatigue of aluminium friction stir welded joints: Preliminary results 145
A Bi-Parametric Modified Wöhler Curve for High Cycle Multiaxial Fatigue Assessment 144
Crack path and fracture analysis in FSW of small diameter 6082-T6 aluminium tubes under tension–torsion loading 144
A simple and efficient reformulation of the classical manson-coffin curve to predict lifetime under multiaxial fatigue loading. Part I: plain materials 141
Semiautomatic friction stir welding of 38 mm OD 6082-T6 aluminium tubes 140
Multiaxial Notch Fatigue: from nominal to local stress-strain quantities 138
Intrinsic material length, Theory of Critical Distances and Gradient Mechanics: analogies and differences in processing linear-elastic crack tip stress fields 134
A simple and efficient numerical algorithm to determine the orientation of the critical plane in multiaxial fatigue problems 131
A stress invariant based criterion to estimate fatigue damage under multiaxial loading 130
A simple and efficient reformulation of the classical Manson-Coffin curve to predict lifetime under multiaxial fatigue loading. Part II: notches 128
An integrated data acquisition system for on-water measurement of performance in rowing 127
A critical distance/plane method to estimate finite life of notched components under variable amplitude uniaxial/multiaxial fatigue loading 124
An elasto-plastic reformulation of the Theory of Critical Distances to estimate lifetime of notched components failing in the low/medium-cycle fatigue regime 124
Modified Wöhler Curve Method, Theory of Critical Distances and EUROCODE 3: a novel engineering procedure to predict the lifetime of steel welded joints subjected to both uniaxial and multiaxial fatigue loading 123
Application of the Theory of Critical Distance to fretting fatigue 123
On the use of the Theory of Critical Distances to predict static failures in ductile metallic materials containing different geometrical features 123
Multiaxial Fatigue Limits and Material Sensitivity to Non-Zero Mean Stresses Normal to the Critical Planes 123
Fatigue Design in the Presence of Stress Concentrations 122
The theory of critical distances to predict static strength of notched brittle components subjected to mixed-mode loading 122
Accuracy of the Modified Wöhler Curve Method applied along with the rref=1 mm concept in estimating lifetime of welded joints subjected to multiaxial fatigue loading 119
A novel engineering method based on the critical plane concept to estimate lifetime of weldments subjected to variable amplitude multiaxial fatigue loading 119
On the Use of The Theory of Critical Distances and the Modified W�hler Curve Method to estimate Fretting Fatigue Strength of Cylindrical Contacts 118
Estimating fatigue damage under variable amplitude multiaxial fatigue loading 117
The Modified Wöhler Curve Method calibrated by using standard fatigue curves and applied in conjunction with the Theory of Critical Distances to estimate fatigue lifetime of aluminium weldments 116
Local and structural multiaxial stress states in welded joints under fatigue loading 116
Estimating the orientation of Stage I crack paths through the direction of maximum variance of the resolved shear stress 114
Estimation of the fatigue strength of light alloy welds by an equivalent notch stress analysis 113
Fatigue behaviour of AA356-T6 cast aluminium alloy weakened by cracks and notches 113
The Theory of Critical Distances to estimate the static strength of notched samples of Al6082 loaded in combined tension and torsion. Part II: Multiaxial static assessment 111
The Theory of Critical Distances: a review of its applications in fatigue 111
Two methods for predicting the multiaxial fatigue limits of sharp notches 110
Fatigue behaviour and life assessment of composites under multiaxial loadings 108
On the Prediction of High-Cycle Fretting Fatigue Strength: Theory of Critical Distances vs. Hot Spot Approach 107
Eurocode 3’s standard curves and Theory of Critical Distances to estimate fatigue lifetime of steel weldments 107
The Theory of Critical Distances to estimate the static strength of notched samples of Al6082 loaded in combined tension and torsion. Part I: Material cracking behaviour 107
The mean stress effect on the high-cycle fatigue strength from a multiaxial fatigue point of view 106
Modified Wöhler Curve Method and multiaxial fatigue assessment of thin welded joints 104
On the estimation of notch fatigue limits by using the Theory of Critical Distances: L, a0 and open notches 103
The Theory of Critical Distances as an alternative experimental strategy for the determination of KIc and DKth 103
Material fatigue properties for assessing mechanical components weakened by notches and defects 102
null 102
Sulla stima della vita a fatica di giunti saldati soggetti a carichi multiassiali ad ampiezza variabile 102
Non-propagating Cracks and High-Cycle Fatigue Failures in Sharply Notched Specimens under In-Phase Mode I and II loading 100
Four stress analysis strategies to use the Modified Wöhler Curve Method to perform the fatigue assessment of weldments subjected to constant and variable amplitude multiaxial fatigue loading 99
On the use of the modified Wöhler curve method to estimate fatigue lifetime of aluminium weldments 98
On the use of the Modified Wöhler Curve Method to Estimate Notch Fatigue Limits 98
The Modified Wo¨ hler Curve Method applied along with the Theory of Critical Distances to estimate finite life of notched components subjected to complex multiaxial loading paths 95
Estimating fatigue lifetime of steel weldments locally damaged by variable amplitude multiaxial stress fields 95
Sulla stima della vita a fatica di giunti saldati soggetti a carichi multiassiali ad ampiezza variabile 94
A spectral method for multiaxial random loads 92
A novel approach to predict fatigue lifetime of notched components under multiaxial fatigue loading 92
Le verifiche di resistenza a fatica in sollecitazioni multiassiali ad ampiezza variabile 91
Can the conventional High-Cycle Multiaxial Fatigue Criteria be re-interpreted in terms of the Theory of Critical Distances? 90
An invariant-based fatigue life prediction method for multiaxial random loads 86
Resistenza a fatica e criteri di previsione per laminati in materiale composito in presenza di sollecitazioni multiassiali 86
Friction stir welds in aluminium: Design S‐N curves from statistical analysis of literature data 86
On the use of the Theory of Critical Distances to estimate fatigue strength of notched components in the medium-cycle fatigue regime 79
The Theory of Critical Distances and the estimation of notch fatigue limits: L, a0 and open notches 79
Three different ways of using the Modified Wöhler Curve Method to perform the multiaxial fatigue assessment of steel and aluminium welded joints 79
Fatigue assessment of welded connections 77
Analisi delle prestazioni di imbarcazioni da canottaggio e indici di efficienza 75
The Theory of Critical Distances to Predict Fatigue Lifetime of Notched Components 74
On the use of the conventional high-cycle multiaxial fatigue criteria re-interpreted in terms of the Theory of Critical Distances 72
Formulazione di un criterio agli invarianti per la stima del danno prodotto da sollecitazioni affaticanti multiassiali 71
The Modified Wöhler Curve Method applied along with the Reference Radius Concept to Design Welded Joints against Multiaxial Fatigue 68
Advanced in Fracture and Damage Mechanics VI 67
Safe notches: optimising the design and manufacturing of fillets 67
Biaxial Non-Proportional Variable Amplitude Testing and Analysis on Bicycle Welded Components for the Definition of a Safety Standard 66
Studio degli Approcci in Frequenza nella Fatica Multiassiale ad Ampiezza Variabile 66
On the use of the Theory of Critical Distances to estimate KIc and ΔKth from experimental results generated by testing standard notches 66
Multiaxial fatigue behaviour of composite laminates 65
Resistenza a fatica di giunzioni saldate tubolari sollecitate a torsione 64
The modified Manson-Coffin method to estimate low-cycle fatigue damage in notched cylindrical bars 63
On the use of the modified Manson-Coffin curves to predict fatigue lifetime in the low-cycle fatigue regime 63
The Theory of Critical Distances to predict Static Failures in Notched Brittle Components subjected to Multiaxial Loading 63
Sulla propagazione della resistenza a fatica di giunzioni saldate sollecitate da carichi multiassiali 63
On the Static Assessment of Notched Ductile Materials Subjected to Multiaxial Loading 63
Notch and defect sensitivity under any kind of fatigue loading: an unifying approach 61
Estimating the notch and mean stress effect in fatigue through the degree of multiaxiality of the local elasto-plastic stress/strain fields 60
Critical Distance Theories of Fracture 59
The Modified Wöhler Curve Method to perform the multiaxial fatigue assessment of steel and aluminium welded joints. Part II: The Theory of Critical Distances 58
Verifica sperimentale della resistenza a fatica di sedili in composito per imbarcazioni da canottaggio 58
Verifica sperimentale della resistenza a fatica di bracci in alluminio saldato per imbarcazioni da canottaggio 57
The combined effect of non-zero mean stresses, out-of-phase angles and stress concentrators in metallic materials subjected to multiaxial fatigue loading 57
On the use of the Modified Wöhler Curve Method applied in terms of the Reference Radius Concept to perform the multiaxial fatigue assessment of welded joints 57
Progettazione a fatica in presenza di multiassialità tensionali 55
The Theory of Critical Distances: application in fatigue 53
On the use of the Modified Manson-Coffin Curve Method to estimate low-cycle fatigue lifetime of notched components subjected to multiaxial cyclic loading 49
Progettazione a Fatica di Giunzioni Saldate (… e non) 46
null 45
Problematiche di Frattura nei Materiali per l’Ingegneria: Aspetti Teorici e Risvolti Applicativi 44
Special Issue: “Fatigue of Welded Joints - Current State-of-the-Art” 40
The Modified Wöhler Curve Method to perform the multiaxial fatigue assessment of steel and aluminium welded joints. Part I: Nominal and Hot-Spot stresses 38
Totale 9.731
Categoria #
all - tutte 46.227
article - articoli 0
book - libri 0
conference - conferenze 0
curatela - curatele 0
other - altro 0
patent - brevetti 0
selected - selezionate 0
volume - volumi 0
Totale 46.227


Totale Lug Ago Sett Ott Nov Dic Gen Feb Mar Apr Mag Giu
2019/2020454 0 0 0 0 0 0 0 0 143 185 95 31
2020/20211.349 126 117 31 164 68 162 67 160 34 198 154 68
2021/20221.063 40 151 107 12 59 48 65 50 41 71 110 309
2022/20231.065 125 51 39 138 178 169 51 92 119 9 51 43
2023/2024465 68 61 26 25 24 34 15 19 16 23 40 114
2024/20251.209 49 55 150 50 278 201 85 161 180 0 0 0
Totale 9.876