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Online since: July 2008
Authors: Luis Héctor Hernández-Gómez, G. Urriolagoitia-Calderón, E.A. Merchán-Cruz, Juan Alfonso Beltrán-Fernández, G. Urriolagoitia-Sosa, A. González-Rebatú, M. Dufoo-Olvera, R.G. Rodríguez-Cañizo
González-Rebatú, "Comportamiento mecánico estructural de un injerto
óseo en una unidad de carga para la sección cervical C3-C5 bajo la acción de cargas de
compresión, empleando el Método del Elemento Finito", XV International Materials Research
Congress 2006, symposium 14 Mecánica de Fractura, Academia Mexicana de Ciencia de
Materiales, Cancún, Quintana Roo, México, 20- 24 Agosto. (2006)
[6] J.
González-Rebatú, "Distribución de esfuerzos por la acción de cargas de compresión en la vértebra cervical C5, empleando el Método del Elemento Finito" Científica, Vol. 9, núm. 3, Julio-Septiembre del 2005, ISSN 1665-0654, p.135-142
Dufoo-Olvera, Análisis biomecánico de un disco intervertebral porcino lesionado - estudio experimental, 8º CONGRESO IBEROAMERICANO DE INGENIERÍA MECÁNICA, (Cusco, Perú), 23 al 25 de Octubre, (2007).
González-Rebatú, "Distribución de esfuerzos por la acción de cargas de compresión en la vértebra cervical C5, empleando el Método del Elemento Finito" Científica, Vol. 9, núm. 3, Julio-Septiembre del 2005, ISSN 1665-0654, p.135-142
Dufoo-Olvera, Análisis biomecánico de un disco intervertebral porcino lesionado - estudio experimental, 8º CONGRESO IBEROAMERICANO DE INGENIERÍA MECÁNICA, (Cusco, Perú), 23 al 25 de Octubre, (2007).
Online since: July 2015
Authors: Alain Kusmoko, Hui Jun Li
Nominal compositions (wt%) of the P91 (9Cr-1Mo) and Stellite 6 alloy [8]
(%)
Co
Cr
Fe
W
Ni
C
Si
Mn
Stellite 6
60
27
2.5
5
2.5
1
1
1
P91
9.08
0.08
0.09
0.45
0.46
(%)
P
S
Mo
V
Al
Ti
Nb
B
Stellite 6
P91
0.96
0.19
0.08
Characterisation of Stellite Coated Samples.
El-Azim, O.
El-Desoky, H.
El-Azim, O.
El-Desoky, H.
Online since: May 2015
Authors: Qumrul Ahsan, Noraiham Mohamad, Tiak Chuan Soh
Liu et al. [14] showed that exfoliated clay platelets that construct physical networks with carbon black can form a micro-barrier to enhance tear resistance.
Abd El-Aziz, Effect of filler concentration on the physico-mechanical properties of super abrasion furnace black and silica loaded styrene butadiene rubber, Mater.
El-Sebaie, Rubber-filler interactions and its effect in rheological and mechanical properties of filled compounds, J.
Abd El-Aziz, Effect of filler concentration on the physico-mechanical properties of super abrasion furnace black and silica loaded styrene butadiene rubber, Mater.
El-Sebaie, Rubber-filler interactions and its effect in rheological and mechanical properties of filled compounds, J.
Online since: October 2015
Authors: A.V. Duvanskii, Ludmila Khirunenko, Mikhail Sosnin, Helge Riemann, N.V. Abrosimov
The samples were irradiated with 5-MeV electrons at the temperature T≈80 K with the dose (5÷6)·1017 el.
In Fig. 1 the fragments of the absorption spectra in the range of 700 – 800 cm-1 for various Si samples irradiated with dose 6∙1017 el∙cm-2 are shown.
As was noted above, the EPR and DLTS studies carried out by Watkins et al. showed that Bi is annealed at a temperature of about 240 K [1,4,5].
In Fig. 1 the fragments of the absorption spectra in the range of 700 – 800 cm-1 for various Si samples irradiated with dose 6∙1017 el∙cm-2 are shown.
As was noted above, the EPR and DLTS studies carried out by Watkins et al. showed that Bi is annealed at a temperature of about 240 K [1,4,5].
Online since: August 2013
Authors: Rike Yudianti, Sudirman Sudirman, A. Mahendra, Erizal Erizal, Emil Budianto
Tomar et. al. also found that salt solution could decrease the swelling ratio of superabsorbent poly(AAM-co-AA) alone significantly.
[4] Abd El-Rehim HA, Hegazy ESA, abd El Mohdy HL: J Apply Polym Sci. (2004) 93:1360-1371 [5] Bakass M, Mokhlisse A, Lalleman M: J.Appl.Polym.
[4] Abd El-Rehim HA, Hegazy ESA, abd El Mohdy HL: J Apply Polym Sci. (2004) 93:1360-1371 [5] Bakass M, Mokhlisse A, Lalleman M: J.Appl.Polym.
Online since: August 2004
Authors: Sam Hong Song, Cheol Woong Kim, Dong Joon Oh
The previous researches are as follows:
Lee et al. [1] designed the shape of the walking device using FEM and the Taguchi method.
Table 2 shows that the laminate except [0]4 has EL = ET, υ12 = υ21.
As the load was increased, Bij ≠ 0 of [0/90/+45/-45] made the stacking sequence more Mechanical properties [0]4 [0/90]S [+45/-45]S [0/90/+45/-45] EL (GPa) 49.3 32.3 20.0 26.9 ET (GPa) 14.7 32.3 20.0 26.9 υ12 0.30 0.14 0.47 0.28 υ21 0.09 0.14 0.47 0.28 G12 (GPa) 6.80 6.80 14.2 10.5 kx (1/m) 1520 1660 3964 2591 ky (1/m) -450 -380 -1551 -963 kxy (1/m) 0 0 -1132 555 Rx (mm) 0.66 0.60 0.25 0.39 Ry (mm) -2.22 -2.63 -0.64 -1.04 Rxy (mm) ∞ ∞ -0.88 1.8 εx (x106 S) 10 15 25 -521502 εy (x106 S) -3 -2 -12 277079 εz (x106 S) 0 0 0 -74477 Title of Publication (to be inserted by the publisher) asymmetric.
Table 2 shows that the laminate except [0]4 has EL = ET, υ12 = υ21.
As the load was increased, Bij ≠ 0 of [0/90/+45/-45] made the stacking sequence more Mechanical properties [0]4 [0/90]S [+45/-45]S [0/90/+45/-45] EL (GPa) 49.3 32.3 20.0 26.9 ET (GPa) 14.7 32.3 20.0 26.9 υ12 0.30 0.14 0.47 0.28 υ21 0.09 0.14 0.47 0.28 G12 (GPa) 6.80 6.80 14.2 10.5 kx (1/m) 1520 1660 3964 2591 ky (1/m) -450 -380 -1551 -963 kxy (1/m) 0 0 -1132 555 Rx (mm) 0.66 0.60 0.25 0.39 Ry (mm) -2.22 -2.63 -0.64 -1.04 Rxy (mm) ∞ ∞ -0.88 1.8 εx (x106 S) 10 15 25 -521502 εy (x106 S) -3 -2 -12 277079 εz (x106 S) 0 0 0 -74477 Title of Publication (to be inserted by the publisher) asymmetric.
Online since: December 2010
Authors: Jun Ma, Yan Jiang Chen, Li Peng Liu
Hajjar et al. [3,4] studied the CFST columns' hysteretic behavior due to
cyclic loads with a 3D nonlinear fiber element.
In this case, the El Centro wave is adopted whose duration is 40s, time increment is 0.02s.
a. north-south direction b. west-east direction c. up-down direction Fig.7 the Acceleration curves of El-Centro Wave 3.
In this case, the El Centro wave is adopted whose duration is 40s, time increment is 0.02s.
a. north-south direction b. west-east direction c. up-down direction Fig.7 the Acceleration curves of El-Centro Wave 3.