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Baden Ayunay
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Baden Ayunay
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Author:
Wermer Melgar Gutierrez
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MEMORIA DE CALCULO BADEN AYUNAY (r=25.00m, (r=25.00 m, LT= 55.00 m ) ( KM 126+562.50 - KM 126+617.50 )
0.40 0.60
L = 35.00
METRADO DE CARGA SOBRE LA LOSA CARGA MUERTA Peso propio de losa
(DC):
0.40 x 2400 =
0.96 Tn/m2 (se incluye en el Software)
CARGA VIVA VEHICULAR (LL): Camión HL-93K
Tandem HL-93M
CARGA DINÁMICA aplicada a los efectos del camión Factor de presencia Multiple
=
(IM) =
3 3%
1.00
(02 vías)
PRESI N HI HIDRA LICA Presiones del agua ( WA) : Peso del Agua: W a = P.e.agua H
0.60 Tn/m2
Metodo de Análisis: Diseño con Fundación Elástica b
K
a
a
a
a
a
a
a
Coef. de balasto del suelo Rigidez del resorte (suelo) :
a
Ks =
a
a
...
a
a
a
a
a
a
a
a
a
a
a
a
a
a
10.00 E06 kg/m3 K = Ks . a . b
Combinaciones de carga a emplear: (Estado Límite: RESISTENCIA I --> AASHTO - LRFD ) Q = n Σ γi qi
n = nD. nR. nI = COMB. I COMB. I I COMB. I I I COMB. ENVOLV.
1.05 x 1.05 x 0.95 = 1.047 > 0.95
Q = 1.047[ 1.25 DC + 1.75 LL + WA ] Q = 1.047[ 1.25 DC + 1.75 LL ] Q = 1.047[ 0.90 DC + 1.75 LL ] COMB I V = COMB I + COMB I I + COMB I I I
Diseño del Concreto Armado: Consideraciones previas: Concreto Acero corrugado Modulo de elasticidad
f'c = fy = Ec =
280 Kg/cm2 4200 Kg/cm2 217370 Kg/cm2
Losa Baden
h= d= b=
40 cm 32.5 cm 100 cm
De acuerdo a las envolventes máximas se obtiene: Armadura longitudinal
(+) cara inferior = (-) cara superior =
M t-m 6.98 2.20
As cm2 5.77 1.80
As mín cm2 3.60 3.60
As diseño cm2 5.77 3.60
M t-m 6.75 2.40
As cm2 5.58 1.96
As mín cm2 3.60 3.60
As diseño cm2 5.58 3.60
Usaremos Ø 1/2" @ .20 Ø 3/8" @ .20
Armadura transversal
(+) cara inferior = (-) cara superior =
nota: - Los momentos máximos y mínimos M (t-m) se han obtenido literalmente del SAP2000 Acero minimo en losas = Cara Inferior = Cara Superior =
0.0018 x b x h 3.60 cm2 3.60 cm3
Verificación del esfuerzo cortante
Baden
Vu (tn)
Mu(tn-m) 8.58
φ Vc = φ (0.178 f ' c
+
32
As V u d e bd e M u
)bd e
=
0.55
32.29 tn
--> Vu < ØVc
ok
Usaremos Ø 1/2" @ .20 Ø 3/8" @ .20
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