Livro Hibbeler - 7ª ed Resistencia Materiais (Livro)

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RESPOSTAS 61 7 9.33. 9.34. 9.35. 9.37. 9.38. 9.39. 9.41. 9.42. 9.43. 9.45. 9.46. 9.47. 9.49. 9.50. 9.51. 9.53. 9.56. 9.57. 9.58. 9.59. 9.61. 9.62. 9.63. 9.65. 9.66. u" = 82,3 kPa u1 = cr, = 77: 2 ( 2 L - F} u2 = uy = O, T ;, , = 77 e L - F) 2 a) u1 = 24,51 MP a, u2 = -33,96 MP a, b) Tmáx = 29,24 MPa ,, U1 = Ux = 44,1 MPa, U2 = Uy = O, Tm,, = 22,1 MPa u 1 = 54,6 MP a, u2 = -59,8 MP a, T , = 57,2 MP a u1 = 198 MPa, u2 = -1,37 MPa '' u1 = 441,63 MPa, u2 = -229,42 MPa, (}Pt = 35,78°, (}Pz -54,22o = u1 = 314,07 MPa, u2 = -314,07 MPa, (}P1 = 45°, (}Pz -45 0 No = ponto A: u1 = u y = O, u2 = ux = -30,5 MP a, No ponto E: u1 = 0,541 MPa, u2 = -1,04 MPa, ep, = -54,2°, ep, = 35,8° = 23,2 MPa u1 = 0,863 MPa, u2 = -0,863 MPa u2 = 2,385 MPa, u2 = -0,523 MPa A: u1 = 0,494 MPa, u2 = 0,000 MPa B: u1 = 0,000 MPa, u2 = -0,370 MPa u, = 70,00 MPa, Txy = 98,99 MPa, M = 1,484 N·m, T= 4,199N·m U1 = Uy = O, U2 = Ux = -20 kPa, Tm,, = 10 kPa u1 = 74,6 kPa, u2 = -27,1 kPa, '' T."' = 50,9 kPa " u, . = -0,387 MPa, Tx 'y' = 0,455 MPa Tx 'y' = -4,052 MPa, Tx 'y' = -0,404 MPa u,. = 0,123 MPa, Tx'y' = 0,271 MPa u,· = 0,748 MPa, uy ' = -1,048 MPa, Tx 'y' = 0,345 MPa u,. = -0,0289 MPa, uy ' = 0,329 MPa, Tx 'y' = 0,0699 MPa u1 = 53,0 MPa, u2 = -68,0 MPa, (}pl = 14,9° anti-horário, T,"" = 60,5 MPa, uméd = -7,50MPa, (}sl = 30,1° horário u1 = 265 MPa, u2 = -84,9 MPa, (}P = 29,SO horário, T."' = 175 MPa, (J méd = 90 MPa, (}s = 15,5 6 ' anti-horário u1 = 4,21 MP a, u2 = -34,21 MP a, 'T máx = 19,21 MPa, Uméd= -15 MPa, 8p 2 = 19,330°, es, = 64,330° u,. = 4,986 MP a, U v • = -3,986 MP a, Tx 'y' = -1,457 MPa 9.67. 9.69. 9.70. 9.71. 9.73. 9.74. 9.75. 9.76. 9.77. 9.78. 9.79. 9.81. 9.82. 9.83. 9.84. 9.85. 9.86. 9.87. 9.88. 9.89. 9.90. u,· = -0,0228 MPa, uy ' = -0,0272 MPa, Tx'y' = -0,896 MPa u, · = -5,240 MPa, uy ' = 20,240 MPa, Tx'y' = 7,933 MPa a) u1 = 646 MPa, u2 = -496 MPa, ep, = 30,6° (anti-horário) b) Uméd = 75,0 MPa, = 571 MPa, (}s = 14,4° (horário) a) u1 = 114 MPa, u2 = -24,5 MPa, (} p, = 60,1 o (horário) b) uméd = 45,0 MPa, = -69,5 MPa, (}s = 15,1 o (horário) u1 = -5,53 MPa, u2 = -14,47 MPa, Tmáx = 4,47 MPa, Uméct= -10 MPa a) u1 = 88,1 MPa, u2 = -13,1 MPa, (}P = -40,7° b) = 50,6 MPa, u méd = 37,5 MP a, (} s = 4,27° u1 = 0,267 MPa, u2 = -0,267 MPa u1 = 115,60 MPa, (}s = 28,155° Tmáx = -63,10 MPa, Uz = -10,60 MPa uc = O MP a, R = 30 MP a a) uc = 0,1 MPa, R = 0,7 MPa b) uc = -1 MP a, R = 1 MP a c) Uc = O MPa, R = 20 MPa Ux • = 74,38 kPa, Uy • = -42,38 kPa, Tx'y' = 22,70 kPa u1 = 10,52 MPa, u2 = -0,165 MPa u1 = 0,560 MPa, u2 = -4,491 MPa u1 = 3,125 MPa, u2 = -9,375 MPa u1 = 40,224 MPa, u2 = -0,224 MPa Ux• = 11,0 kPa, Tx'y' = -22,6 kPa u_,. = -12,5 kPa, Tx'y' = 21,7 kPa No pontoA: u1 = O, u2 = -87,1 MPa, Tm, = 43,6 MPa, (}s = 45,0° (anti-horário), No ponto E: u1 = 93,9 MPa, u2 = O, = 47 ,O MP a, (}s = 45,0° (horário) a) Umáx = 6 MPa, Umín = O, Ujnt = () c) Umáx = 600 kPa, Umín = 100 kPa, Uint = 200 kPa d) Umáx = O, Umín = -9 MPa, Uint = -7 MPa a) u1 = 15 MPa, u2 = O, u3 = -15 MPa, Tm áx = 15 MPa Umáx = 98,94 MPa, uint = -88,94 MPa, Umín = -100,00 MPa, Tmáx = 99,47 MPa

618 RESISTÊNCIA DOS MATERIAIS 9.91 O"máx = 7 MPa, O"int = 5 MPa, O"mín = -5 MPa, Tmáx = 6 MPa 9.93. Para oplanox-y: O"méd = O, Tm,, = 40,0 MPa Para o plano y-z: (T méd = -4Ó:o MP a, Tmh = o Paraoplanox-z: O"méct = O, Tmu = 40, Ó, MPa c' 9.95. No pontoA: O"máx = 5,50 MPa, O"int =O, O"mín = -0,611 MPa, 7::;;, = 3,06 MPa, No pontoS: O"máx = 1,29 MPa, O"int = O, O"mín = -1,29 MPa, = 1,29 MPa 9.96. O"máx = 441,63 MPa, O"int = 0,00 MPa, O"mín = -229,42 MPa, Tmáx = 335,53 MPa 9.97. O"máx = 314,07 MPa, O"int = 0,00 MPa, O"mín = -314,07 MPa, Tmáx = 314,07 MPa 9.98. O"máx = 75,44 MPa, O"int = -95,44 MPa, O"mín = -120,00 MPa, Tmáx = 97,72 MPa 9.99. O"x' = 187,5 MPa, Tx'y' = -62,5 MPa 9.100. t:T,· = -0,611 MP a, t:Ty • = -3,389 MPa, Tr'y' = 7,878 MPa 9.101. Tmáx = 4,03 MPa 9.102. Tmáx = 3,41 MPa 9.103. t:T,· = -0,898 MPa, t:Ty ' = 0,598 MPa, r'y' = 0,605 MPa Capítulo 1 O 10.2. Ex' = 77,4(10-6), 'Yx'y' = 1,279(10-6), Ey' = 383(10-6) 10.3, Ex• = 55,1(10-6), 'Yx'y' = 133(10-6), Ey' = 325(10-6) 10.5. Ex' = 649(10-6), 'Yx'y' = -85,1(10-6), Ey' = 201(10-6) 10.6. a) E1 = 138(10-6), E2 = -198(10-6), (}Pi = 13Y, (Jp, = -76,7°, b) = 335(10-6), Eméd = -30,0(10-6), (Js = -31,7° e 58Y 10.7, a) El = 1039(10-6), E2 = 291(10-6), {Jpl = 30,2°, {Jp2 = 120°, b) '}1mm = 748(10-6), "' Eméd = 665(10-6), (Js = -14,8° e 75,2° 10.9. a) E1 = 441(10-6), E2 = -641(10-6), (} P i = -24,8°, (}Pl = 65,2°, b) ')'mü = 1,08(10-3), ,, (Js = 20,2° e -69,8°, Eméct = -100(10-6) 10.10. a) El = 283(10-6), E2 = -133(10-6), (Jpl = 84,8°, (Jp2 = -5,18°, b) y.,, = 417(10-6), "' Eméd = 75,0(10-6), (JS = 20,2° e (JS = 110° 10.11. a) E1 = 441(10-6), E2 = -641(10-6), (}Pi = -24,8°, (}Pl = 65,2°, b) 'Y "' = ;: 1.082(10-6), {JS = 20,2° e -69,8°, Eméd= -100(10-6) 10.13. a) E1 = 713(10-6), E2 = 36,6(10-6), (Jp = 42,9°, b) ('Yx'y')máx = 677(10-6), Eméd= 375(10-6), {JS = -2,120 10.15. Ex' = 77,4(10-6), 'Yx'y' = 1.279(10-6), Ey' = 383(10-6) 10.17. Ex' = 55,1(10-6), 'Yx'y' = 133(10-6), Ey' = 325(10-6) 10.18. Ex' = 649(10-6), Yx'y' = -85,1(10-6), Ey' = 201(10-6) 10.19. a) E1 = 138(10-6), E2 = -198(10-6), (}Pi = 13Y, (Jp = -76,7°, b) y.,, = 335(10-6), 2 ,, Eméd = -30,0(10-6), (-)s = -31,7° e58Y 10.21. Et = 1039(10-6), E2 = 291(10-6), (Jp = 30,2° ')'.,, = 748(10-6), Eméd = ,, 665(10-6), (JS = -14,8° 10,22, E1 = 441(10-6), E2 = -641(10-6), (Jp = -24,8° = 1,08(10-3), Eméd = -100(10-6), (JS = 20,2° 10.23, a) E1 = 773(10-6), E2 = 76,8(10-6), b) 'Y·" = 696(10-6), c) = 773(10-6) ,, , 10.25. ')'me, = -985(10-6), Emáx = 437(10-6), Eint = O, "' Emín = -547(10-6), Y:;; , = 985(10-6) 10,26, a) E! = 192(10-6), E2 = -152(10-6), b e c) y,,, = 'Ymm = 344(10-6) m.i2: pi 10.27. 'Ymáx = 2,7083 X 10-5 10.29. a) El = 862(10-6), E2 = -782(10-6), (}Pi = 88,0° (horário), b) Eméd = 40,0(10-6), y., = -1644(10-6), (Js = 43,0° (horário) "' 10.30, a) El = 889(10-6), E2 = -539(10-6), 8p, = 59,4° (anti-horário), b) Eméd = 175(10-6), ')'." = 1428(10-6), 8, = 14,4° (anti-horári)

618 RESISTÊNCIA DOS MATERIAIS<br />

9.91 O"máx = 7 MPa, O"int = 5 MPa, O"mín = -5 MPa,<br />

Tmáx = 6 MPa<br />

9.93. Para oplanox-y: O"méd = O, Tm,, = 40,0 MPa<br />

Para o plano y-z: (T méd = -4Ó:o MP a, Tmh = o<br />

Paraoplanox-z: O"méct = O, Tmu = 40, Ó, MPa<br />

c'<br />

9.95. No pontoA: O"máx = 5,50 MPa, O"int =O,<br />

O"mín = -0,611 MPa, 7::;;, = 3,06 MPa,<br />

No pontoS: O"máx = 1,29 MPa, O"int = O,<br />

O"mín = -1,29 MPa, = 1,29 MPa<br />

9.96. O"máx = 441,63 MPa, O"int = 0,00 MPa,<br />

O"mín = -229,42 MPa, Tmáx = 335,53 MPa<br />

9.97. O"máx = 314,07 MPa, O"int = 0,00 MPa,<br />

O"mín = -314,07 MPa, Tmáx = 314,07 MPa<br />

9.98. O"máx = 75,44 MPa, O"int = -95,44 MPa,<br />

O"mín = -120,00 MPa, Tmáx = 97,72 MPa<br />

9.99. O"x' = 187,5 MPa, Tx'y' = -62,5 MPa<br />

9.100. t:T,· = -0,611 MP a, t:Ty • = -3,389 MPa,<br />

Tr'y' = 7,878 MPa<br />

9.101. Tmáx = 4,03 MPa<br />

9.102. Tmáx = 3,41 MPa<br />

9.103. t:T,· = -0,898 MPa, t:Ty ' = 0,598 MPa,<br />

r'y' = 0,605 MPa<br />

Capítulo 1 O<br />

10.2. Ex' = 77,4(10-6), 'Yx'y' = 1,279(10-6),<br />

Ey' = 383(10-6)<br />

10.3, Ex• = 55,1(10-6), 'Yx'y' = 133(10-6),<br />

Ey' = 325(10-6)<br />

10.5. Ex' = 649(10-6), 'Yx'y' = -85,1(10-6),<br />

Ey' = 201(10-6)<br />

10.6. a) E1 = 138(10-6), E2 = -198(10-6), (}Pi = 13Y,<br />

(Jp, = -76,7°, b) = 335(10-6),<br />

Eméd = -30,0(10-6), (Js = -31,7° e 58Y<br />

10.7, a) El = 1039(10-6), E2 = 291(10-6),<br />

{Jpl = 30,2°, {Jp2 = 120°, b) '}1mm = 748(10-6),<br />

"'<br />

Eméd = 665(10-6), (Js = -14,8° e 75,2°<br />

10.9. a) E1 = 441(10-6), E2 = -641(10-6), (} P i = -24,8°,<br />

(}Pl = 65,2°, b) ')'mü = 1,08(10-3),<br />

,,<br />

(Js = 20,2° e -69,8°, Eméct = -100(10-6)<br />

10.10. a) El = 283(10-6), E2 = -133(10-6), (Jpl = 84,8°,<br />

(Jp2 = -5,18°, b) y.,, = 417(10-6),<br />

"'<br />

Eméd = 75,0(10-6), (JS = 20,2° e (JS = 110°<br />

10.11. a) E1 = 441(10-6), E2 = -641(10-6), (}Pi = -24,8°,<br />

(}Pl = 65,2°, b) 'Y "' = ;:<br />

1.082(10-6), {JS = 20,2°<br />

e -69,8°, Eméd= -100(10-6)<br />

10.13. a) E1 = 713(10-6), E2 = 36,6(10-6), (Jp = 42,9°,<br />

b) ('Yx'y')máx = 677(10-6), Eméd= 375(10-6),<br />

{JS = -2,120<br />

10.15. Ex' = 77,4(10-6), 'Yx'y' = 1.279(10-6),<br />

Ey' = 383(10-6)<br />

10.17. Ex' = 55,1(10-6), 'Yx'y' = 133(10-6),<br />

Ey' = 325(10-6)<br />

10.18. Ex' = 649(10-6), Yx'y' = -85,1(10-6),<br />

Ey' = 201(10-6)<br />

10.19. a) E1 = 138(10-6), E2 = -198(10-6), (}Pi = 13Y,<br />

(Jp = -76,7°, b) y.,, = 335(10-6),<br />

2<br />

,,<br />

Eméd = -30,0(10-6), (-)s = -31,7° e58Y<br />

10.21. Et = 1039(10-6), E2 = 291(10-6), (Jp = 30,2°<br />

')'.,, = 748(10-6), Eméd =<br />

,,<br />

665(10-6), (JS = -14,8°<br />

10,22, E1 = 441(10-6), E2 = -641(10-6), (Jp = -24,8°<br />

= 1,08(10-3), Eméd = -100(10-6), (JS = 20,2°<br />

10.23, a) E1 = 773(10-6), E2 = 76,8(10-6),<br />

b) 'Y·" = 696(10-6), c) = 773(10-6)<br />

,, ,<br />

10.25. ')'me, = -985(10-6), Emáx = 437(10-6), Eint = O,<br />

"'<br />

Emín = -547(10-6), Y:;; , = 985(10-6)<br />

10,26, a) E! = 192(10-6), E2 = -152(10-6),<br />

b e c) y,,, = 'Ymm = 344(10-6)<br />

m.i2:<br />

pi<br />

10.27. 'Ymáx = 2,7083 X 10-5<br />

10.29. a) El = 862(10-6), E2 = -782(10-6),<br />

(}Pi = 88,0° (horário),<br />

b) Eméd = 40,0(10-6), y., = -1644(10-6),<br />

(Js = 43,0° (horário) "'<br />

10.30, a) El = 889(10-6), E2 = -539(10-6),<br />

8p, = 59,4° (anti-horário),<br />

b) Eméd = 175(10-6), ')'." = 1428(10-6),<br />

8, = 14,4° (anti-horári)

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