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journal article EST
/
journal article ENG
Creep and high temperature fatigue performance of as build selective laser melted Ti-based 6Al-4V titanium alloy
Viespoli, Luigi Mario
;
Bressan, Stefano
;
Itoh, Takamoto
;
Hiyoshi, Noritake
;
Prashanth, Konda Gokuldoss
;
Berto, Filippo
Engineering failure analysis
2020
/
art. 104477, 9 p. : ill
https://doi.org/10.1016/j.engfailanal.2020.104477
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journal article EST
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journal article ENG
Number of records 1, displaying
1 - 1
keyword
124
1.
surface defect
2.
defect and failure analysis
3.
defect characterization
4.
defect detection
5.
defect identification
6.
Defect states
7.
marginal defect
8.
point defect
9.
antimicrobial surface
10.
Au surface
11.
autonomous surface vessel
12.
autonomous surface vessels
13.
bionic surface texturing
14.
body surface area
15.
bulk and surface damage
16.
conductor surface
17.
digital surface model (DSM)
18.
fibre surface
19.
flat surface
20.
flotation and surface chemistry processes
21.
free-surface flow
22.
gas-liquid contact surface
23.
groundwater/surface water interactions
24.
high surface area carbon
25.
Hirshfeld surface
26.
indentational surface fatigue
27.
macro mechanical testing and green surface tribology
28.
magnetization surface
29.
mapping of road surface
30.
micro characterization and surface roughness measurement
31.
pavement surface
32.
pavement surface characteristics
33.
potential energy surface
34.
powder surface cleaning
35.
response surface methodology
36.
Response Surface Methodology (RSM)
37.
response surface modelling
38.
road surface condition monitoring
39.
road surface markings
40.
sea surface
41.
sea surface height
42.
sea surface heights
43.
sea surface observations
44.
sea surface salinity
45.
sea surface semperature (SST)
46.
sea surface temperature
47.
sea surface temperature (SST)
48.
sea surface topography
49.
sea-surface salinity
50.
specific surface area
51.
spherical surface harmonics
52.
split-p triply periodic minimal surface
53.
sub-surface chlorophyll maxima
54.
surface acoustic wave
55.
surface acoustic wave sensor
56.
surface active ionic liquids
57.
surface active substances
58.
surface amine group
59.
surface area
60.
surface basis-cubic spline
61.
surface characteristics
62.
surface characterization
63.
surface charge
64.
surface chemical composition
65.
surface clusters
66.
surface coating
67.
surface contamination
68.
surface currents
69.
surface deposition
70.
surface discharge
71.
surface drifter trajectories
72.
surface drifters
73.
surface EMG
74.
surface engineering
75.
surface fatigue
76.
surface fatigue wear
77.
surface film
78.
surface fire
79.
surface gravity waves
80.
surface hydrophobicity
81.
surface imprinting
82.
surface influence
83.
surface interactions
84.
surface melting
85.
surface models
86.
surface modification
87.
surface morphology
88.
Surface motion
89.
surface partial discharge
90.
surface permanent magnet machine (SPM)
91.
surface permanent magnet synchronous machines (SPMSM)
92.
surface photovoltage
93.
surface plasmon resonance
94.
surface plasmon resonance effect
95.
surface plasmon resonance imaging
96.
Surface pollution
97.
surface preparation
98.
surface pre-treatment
99.
surface properties
100.
surface roughness
101.
surface states
102.
surface stress
103.
surface structure
104.
surface temperature
105.
surface tension
106.
Surface topography
107.
surface treatment
108.
surface treatments
109.
surface water monitoring
110.
surface water-groundwater interactions
111.
surface wave analysis
112.
surface waves
113.
surface waves and tides
114.
surface waves in water
115.
surface wind
116.
surface vs. crown fires
117.
surface-active ionic liquids (SAILs)
118.
surface-mount technology
119.
Surface-sediment
120.
waves on the surface
121.
vertical surface well hydraulic fracturing
122.
wetted surface
123.
3D areal surface texture parameters
124.
3D surface patterns
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