vigas

18
METRADO DE LAS VIGAS PRINCIPALES a)CARGA M UERTA (CM ): DESCRIPCIÓN PARÁM ETRO S TOTAL Peso propio ( 7.85 Tn/m 3 ) * ( 0.25 * 0.45 ) 0.8831 Tn/m Losa ( 0.30 Tn/m 2 ) * ( 1.875 ) 0.5625 Tn/m Acabados ( 0.10 Tn/m 2 ) * ( 1.875 + 0.25 ) 0.2125 Tn/m Tabiquería M óvil ( 0.10 Tn/m 2 ) * ( 1.875 + 0.25 ) 0.2125 Tn/m C.M . 1.8706 Tn/m b)CARGA VIVA (S/C): DESCRIPCIÓN PARÁM ETRO S TO TAL S/C ( 0.20 Tn/m 2 ) * ( 1.875 + 0.25 ) 0.425 Tn/m S/C 0.425 Tn/m RESISTENCIA REQUERIDA (U): DESCRIPCIÓN TO TAL U 3.341 Tn/m VP (01) (0.25* 0.45)

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CALCULO DE VISAS

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METRADO DE LAS VIGAS PRINCIPALES

a) CARGA MUERTA (CM):

DESCRIPCIÓN PARÁMETROS TOTAL

Peso propio ( 7.85 Tn/m3 ) * ( 0.25 * 0.45 ) 0.8831 Tn/m

Losa ( 0.30 Tn/m2 ) * ( 1.875 ) 0.5625 Tn/m

Acabados ( 0.10 Tn/m2 ) * ( 1.875 + 0.25 ) 0.2125 Tn/m

Tabiquería Móvil ( 0.10 Tn/m2 ) * ( 1.875 + 0.25 ) 0.2125 Tn/m

C.M. 1.8706 Tn/m

b) CARGA VIVA (S/C):

DESCRIPCIÓN PARÁMETROS TOTAL

S/C ( 0.20 Tn/m2 ) * ( 1.875 + 0.25 ) 0.425 Tn/m

S/C 0.425 Tn/m

RESISTENCIA REQUERIDA (U):

DESCRIPCIÓN TOTAL

U 3.341 Tn/m

VP (01) (0.25* 0.45)

DISEÑO DE LAS VIGAS PRINCIPALES:VP (01) (0.25* 0.45) TRAMO 1

3.34 Tn/m

↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓

9.44 9.44

5.65 m

DFC: (TN)9.44

9.44

DIAGRAMAS:

DMF: (TN.m)

Mmáx 13.33 TN.m

CONVERTIR

Mmáx 13.33 TN.m x 7.22 = 96.26 Kip.ft V 9.44 TN x 2.2046 = 20.81 Kip

HALLANDO EL MÓDULO DE ELASTICIDAD

= 96.26 x 12 = 25.67 in^30.9 x 50

ELEGIMOS:

W 6 X 9

102 Kip.ft > 96.26 Kip.ft

63.48 Kip

φ 0.9

Fy 50 0.6

d 8.25 tw 0.285

Aw 2.351

PARAMETROS DE ESBELTEZ

h 8.25tw 0.285 28.95

E 29000 59.00Fy 50

CUMPLE!!!

SECCIÓN ESBELTA

PARAMETROS DE ESBELTEZ

bf 6.535 7.0tf 0.465

E 29000 9.2Fy 50

CUMPLE!!!

ESBELTEZ DEL PATIN

h 8.25 28.95tw 0.285

E 29000 90.55Fy 50

CUMPLE!!!

ESBELTEZ DEL ALMA

L 5.65 0.02

FLECHA PERMISIBLE

b 6.535 74.1d 8.25

w 3.34L 5.65E 29000I 98

0.000231295

DEFLEXIONES MAXIMAS

DIAGRAMAS:

TRAMO 2

3.34 Tn/m

↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓

7.02 7.02

4.2 m

DFC: (TN)7.02

7.02

DMF: (TN.m)

Mmáx 7.37 TN.m

CONVIRTIENDO

Mmáx 7.37 TN.m x 7.22 = 53.19 Kip.ft

V 7.02 TN x 2.2046 = 15.47 Kip

HALLANDO EL MÓDULO DE ELASTICIDAD

= 53.19 x 12 = 14.18 in^30.9 x 50

ELEGIMOS:

W 6 X 9

60 Kip.ft > 53.19 Kip.ft

62.0379 Kip

φ 0.9

Fy 50 0.6

d 9.99 tw 0.23

Aw 2.2977

PARAMETROS DE ESBELTEZ

h 9.99tw 0.23 43.43

E 29000 59.00Fy 50

CUMPLE!!!

PARAMETROS DE ESBELTEZ

bf 4 6.1tf 0.33

E 29000 9.2Fy 50

ESBELTEZ DEL PATIN

CUMPLE!!!

h 9.99 43.43tw 0.23

E 29000 90.55Fy 50

ESBELTEZ DEL ALMA

CUMPLE!!!

L 4.2 0.01

FLECHA PERMISIBLE

b 4 66.5d 9.99

w 3.341L 4.2E 29000I 68.9

9.01599E-05

DEFLEXIONES MAXIMAS

VS (01) (0.25* 0.30)TRAMO 1

1.86 Tn/m

↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓

3.40 3.40

3.65 m

DFC: (TN)3.40

3.40

DMF: (TN.m)

Mmáx 3.10 TN.m

DIAGRAMAS:

CONVERTIR

Mmáx 3.10 TN.m x 7.22 = 22.41 Kip.ft

V 3.40 TN x 2.2046 = 7.501 Kip

HALLANDO EL MÓDULO DE ELASTICIDAD

= 22.41 x 12 = 5.977 in^30.9 x 50

ELEGIMOS:W 6 X 9

23.4 Kip.ft > 22.41 Kip.ft

27.081 Kip

φ 0.9 Fy 50

0.6

d 5.9 tw 0.17

Aw 1.003

PARAMETROS DE ESBELTEZ

h 5.9tw 0.17 34.71

E 29000 59.00Fy 50

CUMPLE!!!

PARAMETROS DE ESBELTEZ

bf 3.94 9.2tf 0.215

E 29000 9.2Fy 50

ESBELTEZ DEL PATIN

CUMPLE!!!

h 5.9 34.71tw 0.17

E 29000 90.55Fy 50

ESBELTEZ DEL ALMA

CUMPLE!!!

L 3.65 0.01

FLECHA PERMISIBLE

b 3.94 22.9d 5.9

w 1.864 0L 3.65E 29000I 16.4

DEFLEXIONES MAXIMAS

TRAMO 2

1.86 Tn/m

↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓↓

3.31 3.31

3.55 m

DFC: (TN)3.31

3.31DMF: (TN.m)

Mmáx 2.94 TN.m

DIAGRAMAS:

CONVIRTIENDO

Mmáx 2.94 TN.m x 7.22 = 21.20 Kip.ft

V 3.31 TN x 2.2046 = 7.295 Kip

HALLANDO EL MÓDULO DE ELASTICIDAD

= 21.20 x 12 = 5.654 in^30.9 x 50

ELEGIMOS:

W 6 X 9

23.4 Kip.ft > 21.20 Kip.ft

27.081 Kip

φ 0.9

Fy 50 0.6

d 5.9 tw 0.17

Aw 1.003

h 5.9tw 0.17 34.71

E 29000 59.00Fy 50

CUMPLE!!!

PARAMETROS DE ESBELTEZ

bf 3.94 9.2tf 0.215

E 29000 9.2Fy 50

ESBELTEZ DEL PATIN

CUMPLE!!!

PARAMETROS DE ESBELTEZ

h 5.9 34.71tw 0.17

E 29000 90.55Fy 50

ESBELTEZ DEL ALMA

CUMPLE!!!

L 3.55 0.01

FLECHA PERMISIBLE

b 3.94 22.9d 5.9

w 1.864L 3.55E 29000I 16.4

3.7059E-05

DEFLEXIONES MAXIMAS