60 N - m Since each of the shafts 144 N - m, AB, BC and CD shown in 48 N - m \dcp=21 mm the figure consists of a solid circular bar, determine the magnitude of the stress in the shaft (MPa) at which...


60 N - m<br>Since each of the shafts<br>144 N - m,<br>AB, BC and CD shown in<br>48 N - m<br>\dcp=21 mm<br>the figure consists of a<br>solid circular bar,<br>determine the magnitude<br>of the stress in the shaft<br>(MPa) at which the<br>dBc = 18 mm<br>B<br>d A = 15 mm<br>Formüller:<br>F.L<br>O = E.ɛ, ɛ=-<br>AL = a.L.AT , AL<br>F<br>O =-<br>maximum shear stress<br>%3D<br>A.E '<br>AV<br>T.L<br>T.P<br>occurs.<br>V<br>GJ<br>M<br>O=--<br>F<br>6, =lo, -v(0, +0,), o:<br>M<br>A<br>

Extracted text: 60 N - m Since each of the shafts 144 N - m, AB, BC and CD shown in 48 N - m \dcp=21 mm the figure consists of a solid circular bar, determine the magnitude of the stress in the shaft (MPa) at which the dBc = 18 mm B d A = 15 mm Formüller: F.L O = E.ɛ, ɛ=- AL = a.L.AT , AL F O =- maximum shear stress %3D A.E ' AV T.L T.P occurs. V GJ M O=-- F 6, =lo, -v(0, +0,), o: M A

Jun 11, 2022
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