Figure shows a composite rod consisting of segments AB and BC. The properties of the segments...
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Figure shows a composite rod consisting of segments AB and BC. The properties of the segments are shown above. Assuming the assembly is suitably braced against buckling: - draw the free-body diagram for each of the segments AB and BC, indicating the axial forces acting on each segment. State whether is the tensile or compressive. calculate the total change in length (AL) of the composite rod in mm. Gold E= 78 x 10 N/m² Cross-sectional Area = 620 x 106 m² 20 kN A 100 kN 4m B Aluminium E69 x 10 N/m² Cross-sectional Area = 680 x 106 m² Figure 3. 5m C 80 KN Figure shows a composite rod consisting of segments AB and BC. The properties of the segments are shown above. Assuming the assembly is suitably braced against buckling: - draw the free-body diagram for each of the segments AB and BC, indicating the axial forces acting on each segment. State whether is the tensile or compressive. calculate the total change in length (AL) of the composite rod in mm. Figure shows a composite rod consisting of segments AB and BC. The properties of the segments are shown above. Assuming the assembly is suitably braced against buckling: - draw the free-body diagram for each of the segments AB and BC, indicating the axial forces acting on each segment. State whether is the tensile or compressive. calculate the total change in length (AL) of the composite rod in mm. Gold E= 78 x 10 N/m² Cross-sectional Area = 620 x 106 m² 20 kN A 100 kN 4m B Aluminium E69 x 10 N/m² Cross-sectional Area = 680 x 106 m² Figure 3. 5m C 80 KN Gold E= 78 x 10 N/m² Cross-sectional Area = 620 x 106 m² 20 kN A 100 kN 4m B Aluminium E69 x 10 N/m² Cross-sectional Area = 680 x 106 m² Figure 3. 5m C 80 KN
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A To draw the freebody diagrams for segments AB and BC we need to consider the axial forces acting on each segment For segment AB There is a compressi... View the full answer
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