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6.9 : Method of Sections: Problem Solving II

Consider an arbitrary truss structure composed of diagonal, vertical, and horizontal members fixed to the wall. To calculate the force acting on members CB, GB, and GH, method of sections can be used. The loads and lengths of the horizontal and vertical members are known parameters, as shown in the figure.

Truss equilibrium diagram; force analysis with labeled distances, load distribution, static analysis.

To begin, a cut is made along a plane intersecting CB, GB, and GH members, and a free-body diagram of the right side section is drawn.

Static equilibrium diagram, ΣFx=0, ΣFy=0, truss forces F1=4kN, F2=2kN, method of joints analysis.

The moment equilibrium equation about point G is applied.

Static equilibrium equation showing F_CB and 2 kN at distances, diagram for force balance study.

The result gives the force along member CB as 4 kN, with a positive sign indicating tension in the member.

Now, FCB can be expressed using a slope triangle in BCG, while FGH can be expressed using a slope triangle in CEG. Considering the summation of vertical and horizontal forces, the force equilibrium equations can be written as the following:

Static equilibrium equation, ΣFy=0, formula in physics, includes forces F1, F2, FGB, FGH.

Static equilibrium equation; diagram of forces in balance, -FCB - FGHx - FGBx = 0.

The value of FCB is substituted, and the force equilibrium equations are solved simultaneously. The result yields the force FGH as -7.454 kN and FGB as 3.772 kN. The negative sign of FGH indicates that the force is compressive, while the positive sign for FGB indicates the tensile force.

Tagi

Method Of SectionsTruss StructureForce CalculationMembers CBGBGHFree body DiagramMoment EquilibriumTensionSlope TriangleForce Equilibrium EquationsCompressive ForceTensile Force

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