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Online since: December 2009
Authors: O. Kessler, Michael Reich, S. Schöne, M. Nowak, O. Grydin, F. Nürnberger, Mirko Schaper
AWcritical
cooling rate
[K/s]
temperature
range of
precipitation [°C]
6060 (Al MgSi) 0.8 ca. 200-470
6063 (Al Mg0.7Si) 1.7 200-470
6005A (Al SiMg(A)) 6.3 220-500
6082 (Al Si1MgMn) 12 200-540
density
[kg /m³]
thermal
conductivity
[W/mK]
specific heat
capacity
[J/kgK]
ca. 900
900
170-220
205-220
2.70
896
ca. 900
200-220
2.70
2.70
2.70
200-220wrought alloy EN AW-6082 EN AW-6082
profile velocities 1.5 m/min to 6 m/min 5 m/min to 11 m/min.
Online since: January 2013
Authors: Ming Shu Wang, An Chun Cheng, Jie Gao
Virus name
SeqLen (bp)
CAIa)
Ncb)
GC(%)
GC3S(%)c)
Alpha
herpesvirus
EU195086
Duck plague virus
720
0.665
53.618
45.97
40.42
NC 001806
Human herpesvirus 1
1311
0.726
47.574
64.15
70.71
NC_001798
Human herpesvirus 2
896
0.737
44.755
64.21
72.82
NC_006273
Human herpesvirus 5
600
0.776
45.271
54.50
76.00
AY368490
Suid herpesvirus 1
113
0.819
32.321
70.27
100.00
AY665713
Equine herpesvirus 1
1257
0.691
53.011
58. 87
66.35
NC_001844
Equine herpesvirus 4
975
0.689
56.012
44.10
48.31
NC_011644
Equine herpesvirus 9
891
0.706
57.025
54.66
56.90
NC_006623
Gallid herpesvirus 1
1706
0.692
55.275
56.40
56.16
AF243438
Gallid herpesvirus 2
813
0.743
52.089
44.77
51.29
NC_002577
Gallid herpesvirus 3
2069
0.662
58.101
47.75
47.31
NC_001847
Bovine herpesvirus 1
1875
0.704
49.963
68.11
66.56
NC_005261
Bovine herpesvirus 5
1573
0.646
50.861
73.09
59.92
NC_014567
Saimiriine herpesvirus 1
909
0.703
48.281
65.90
66.67
NC 002641
Meleagrid herpesvirus 1
996
0.702
59.136
46.79
Online since: February 2025
Authors: Kornely Grigoriev Grigorov, Felipe Muniz do Amaral Pereira, Rodolfo Luiz Prazeres Gonçalves, Carlos Alberto Monezi, Marcos Massi, Suzana Noronha Ferreira Ribeiro, Antonio Augusto Couto
Evaluation of Tribological Performance of TiN Films Doped with Copper Deposited by Magnetron Sputtering
Suzana Noronha Ferreira Ribeiro1,a, Felipe Muniz do Amaral Pereira1,b, Rodolfo Luiz Prazeres Gonçalves1,c, Carlos Alberto Monezi1,d,
Antonio Augusto Couto1,e, Korneli Grigoriev Grigorov2,f, Marcos Massi1,g *
1Mackenzie Presbyterian University, School of Engineering-PPGEMN,
Rua da Consolação, 896 - 01302-907 - São Paulo, SP – Brazil
2Space Research and Technology Institute, Bulgarian Academy of Sciences,
Acad.
Online since: February 2014
Authors: Vladimir Luzin, Kevin Spencer, Michael Saleh
Material Data for Al-6061
JC [20]
EOS [21]
, (kg/m3)
2770
A (MPa)
324
Csp (m/s)
5240
G (GPa)
26.4
B (MPa)
114
S1
1.4
E (GPa)
68.9
n
0.42
S2
0.0
0.33
C
0.002
S3
0.0
0.9
m
1.34
1.97
Cp (J/kg.K)
896
Tr, (K)
300
Tm, (K)
925
Experimental and modelling Results
Fig. 3.
Online since: March 2015
Authors: Shu Mei Lou, Chun Jian Su, Yong Xiao Wang, Shuai Lu
Table 1 Material properties of AA6061 and H13
Material
Young’s Modulus
Poisson’s Ratio
Density
[Kg/m³]
Specific Heat
[J/Kg·K]
Conductivity
[W/m·K]
AA6061
4.0E+10
0.35
2700
896
180
H13
2.1E+11
0.35
7870
460
24.3
Process parameter.