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Online since: July 2007
Authors: Eiichi Sato, S. Sawai, K. Uesugi, T. Takami, K. Furukawa, M. Kamada, M. Kondo
Alloy Tensile Strength (MPa) Yield Strength (MPa) Elongation (�)
Ti-6Al-4V Min 896 Min 827 Min 12
Ti-4.5Al-3V-2Fe-2Mo Min 1007 Min 932 Min 10
Fig.2 Optical micrographs of as-received materials.
Online since: February 2011
Authors: Qing Hua Yu, Ze Yue Gu, Jian Fang
item
stature
1735.5
36.2
1844.0
1680.0
1687.0
1730.0
1811.0
eye height
1619.0
38.7
1738.0
1463.0
1564.0
1614.0
1694.0
tragion height
1599.1
37.1
1712.0
1530.0
1546.0
1593.0
1674.0
ganthion height
1512.2
44.3
1786.0
1388.0
1454.0
1508.0
1586.0
shoulder height
1435.5
47.4
1560.0
1022.0
1384.0
1433.0
1504.0
crotch height
847.1
31.0
961.0
780.0
802.0
845.0
900.0
trochanter height
882.7
37.0
1012.0
763.0
825.0
880.0
944.0
popliteal eight
451.5
23.1
515.0
404.0
415.0
450.0
489.0
medial alleolus height
68.4
6.7
90.0
49.0
58.0
68.0
80.0
upper extremity length
762.5
29.4
848.0
581.0
718.0
764.0
805.0
upperarm length
342.0
26.7
424.0
151.0
313.0
344.0
375.0
forearm length
250.3
18.8
296.0
211.0
219.0
250.0
281.0
lower extremity length
947.4
39.1
1086.0
716.0
887.0
947.0
1006.0
thigh length
491.8
37.5
581.0
352.0
407.0
496.0
541.0
leg length
369.7
26.5
462.0
310.0
326.0
368.0
411.0
neck circumference
361.2
17.4
422.0
323.0
336.0
360.0
396.0
chest circumference
892.0
55.6
1071.0
673.0
810.0
896.0
979.0 waist circumference 772.8 53.1 1031.0 643.0 700.0 767.0 864.0 hip circumference 928.8 46.9 1270.0 739.0 866.0 926.0 993.0 biceps circumference 278.7 20.8 361.0 206.0 248.0 277.0 313.0 least rorearm circumference 257.0 13.8 302.0 218.0 236.0 256.0 284.0 wrist circumference 166.8 8.8 193.0 128.0 154.0 166.0 182.0 thigh circumference 536.6 30.0 629.0 451.0 493.0 534.0 587.0 calf circumference 374.4 21.6 452.0 307.0 341.0 374.0 410.0 ankle circumference 222.8 12.8 264.0 190.0 202.0 223.0 249.0 spinal breadth 240.5 20.5 307.0 187.0 206.0 239.0 273.0 chest breadth standing 285.0 22.2 346.0 235.0 255.0 283.0 324.0 akimodo 896.8 32.5 990.0 796.0 837.0 896.0 947.0 arms span 1724.2 51.1 1865.0 1571.0 1640.0 1723.0 1811.0 functional arms span 1477.3 51.1 1613.0 1337.0 1404.0 1477.0 1563.0 middle fingertip height ,over head 2159.7 80.2 2670.0 1571.0 2079.0 2154.0 2262.0 functional upwad reach with both arms 2033.9 56.6 2217.0 1763.0 1962.0 2026.0 2133.0 Table 2.
979.0 waist circumference 772.8 53.1 1031.0 643.0 700.0 767.0 864.0 hip circumference 928.8 46.9 1270.0 739.0 866.0 926.0 993.0 biceps circumference 278.7 20.8 361.0 206.0 248.0 277.0 313.0 least rorearm circumference 257.0 13.8 302.0 218.0 236.0 256.0 284.0 wrist circumference 166.8 8.8 193.0 128.0 154.0 166.0 182.0 thigh circumference 536.6 30.0 629.0 451.0 493.0 534.0 587.0 calf circumference 374.4 21.6 452.0 307.0 341.0 374.0 410.0 ankle circumference 222.8 12.8 264.0 190.0 202.0 223.0 249.0 spinal breadth 240.5 20.5 307.0 187.0 206.0 239.0 273.0 chest breadth standing 285.0 22.2 346.0 235.0 255.0 283.0 324.0 akimodo 896.8 32.5 990.0 796.0 837.0 896.0 947.0 arms span 1724.2 51.1 1865.0 1571.0 1640.0 1723.0 1811.0 functional arms span 1477.3 51.1 1613.0 1337.0 1404.0 1477.0 1563.0 middle fingertip height ,over head 2159.7 80.2 2670.0 1571.0 2079.0 2154.0 2262.0 functional upwad reach with both arms 2033.9 56.6 2217.0 1763.0 1962.0 2026.0 2133.0 Table 2.
Online since: July 2014
Authors: Lei Dai, Xiao Xuan Deng
(a) (b) (c)
Fig.1 Unconfined compressive strength for stabilized soils
Table1 Ions concentration in pore solution and pH value of soils in different cement content(mmol/l)
Soil
Cement (%)
pH
K+
Na+
Ca2+
Al3+
OH-
S2-
Si2-
K++Na+
BT
10
12.4
8·785
25·800
2·919
0·247
41·782
0·498
0·708
34·585
BT
12
12.6
12·985
33·896
2·089
0·300
73·93
1·003
1·022
46·880
BT
15
13.1
19·718
68·652
1·672
0·378
155·89
1·441
0·470
88·370
TT2
12
12.1
2.033
14.057
5.701
0.571
19.461
4.056
1.908
16.090
TT2
15
12.3
3.021
22.074
4.728
0.549
35.894
4.297
1.267
25.725
TT2
18
12.7
9.964
46.017
3.546
0.489
90.894
5.066
0.787
55.980
WT
12
12.0
29.297
57.991
2.660
2.500
37.024
0.656
0.473
87.289
WT
15
12.4
44.967
65.809
2.363
3.755
59.106
0.918
0.180
110.78
WT
18
12.8
69.346
91.596
1.961
8.125
127.34
1.070
1.096
160.94
TT1
15
12.2
7.095
31.465
2.924
2.632
46.888
7.589
1.296
38.56
TT1
18
12.5
8.672
56.704
2.727
3.669
62.011
7.292
2.307
65.376
TT1
20
12.8
19.485
90.661
Online since: April 2015
Authors: Agnieszka Szkliniarz
Mechanical properties of Ti-8Al-1Mo-1V-0.2C tested in ambient temperature
Alloy
State
UTS [MPa]
YS [MPa]
EL [%]
RA [%]
Ti-8Al-1Mo-1V-0.2C
DA
1181
1141
17.6
33.9
STA
1258
1222
13.7
18.7
Ti-8Al-1Mo-1V [14÷17]
DA
896÷950
827÷890
10.0
-
STA
1180
1070
17.0
26.0
Short-term creep tests (Fig. 5) carried out for the tested alloy at 500ºC and 300 MPa show that its creep resistance is higher in state after duplex annealing (DA).
Online since: October 2006
Authors: Won Ho Yang, Myoung Rae Cho, Jae Soon Jang, Cheol Kim
Yang: Finite element analysis of the residual stress by
cold expansion method under the influence of adjacent holes, Journal of Materials Processing
Technology, 153-154 (2004) 896-991
[7] "Standard Test Method for Measurement of Fatigue Crack Growth Rates", ASTM (1993) E
647-93