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The raw material from the raw material bin is the starting point of the connecting rod manufacturing process.
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Models with different material bins were created for convergence study.
Data on the displacement were compared among the FE models with different material bins.
The maximum number of material bins that generated converged finite element solutions was obtained.
To determine the maximum number of material bins, convergence study was performed.
For convergence study in assigning the inhomogeneous material properties, 3D femur FE models with different material bins were created.
Therefore, in the assignment of material properties for all the cases, 50 discrete material bins were considered.
The results of the convergence study showed that the displacement did not change significantly with the number of material bins larger than 50.
For each FE model with different material bins, the maximum displacement at the smallest femoral neck cross-section was monitored under the same loading and boundary conditions.
To assign material properties, elements are grouped into a number of discrete material bins using Mimics (Materialise, Leuven, Belgium), to approximately represent the continuous distribution of the inhomogeneous bone mechanical properties.
Materials: Bins of common objects, drawing paper (8.5 × 11), crayons or color pencils.
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