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36   TECHNOLOGY                                                                   JUL/AUG 2026 FDM ASIA | www.fdmasia.com






         Nodin Cutfeet                                       prescribed displacement in the direction of loading. The FEM
                                                             model was evaluated under two loading conditions.
                                                                In  the  first  loading  condition,  the  model  was  loaded  by
                                                             the experimentally determined displacement corresponding to
                                                             40 percent of the maximum experimental load.
                                                                This displacement-controlled state was used to evaluate

                                                             the pre-failure contact response of the joint and to identify
                                                             the load-transfer mechanism at the connector-wood interface
                                                             before dominant damage occurred.
                                                                Three contact parameters were evaluated: contact pressure,
                                                             frictional stress, and sliding distance. In the second loading
                                                             condition, the model was loaded by the mean maximum
          separation, or local infill damage.                experimental force of the corresponding connector configuration.
            The contact between the FDM-printed connector and the   This loading state was used to evaluate stress fields and
          walls of the wooden slot was defined as frictional contact   compare them with the experimentally observed damage.

          with a coefficient of friction of 0.6.                In the FDM-printed connector, equivalent von Mises stress
            The selected value is comparable in magnitude to the   was evaluated. In the wooden members, normal and shear
          experimentally determined coefficient reported in the literature   stresses were evaluated in the local material coordinate system
          for frictional contact in beech mortise-and-tenon joints.   because of the orthotropic nature of beech wood.
            The contact pairs were solved using the Augmented
          Lagrange formulation. To eliminate small numerical gaps   Mechanical Performance and Material Efficiency
          between the connector and the slot, the Adjust to Touch   The  mass  of  the  printed  connectors  ranged  from  2.57  g

          option was applied, and the pinball radius was set to 0.5 mm.   (1P20) to 5.09 g (5P40), with increasing perimeter count
            This contact definition allowed load transfer through contact   and infill density resulting in a gradual increase in material
          pressure and friction while permitting local sliding between   consumption. The maximum bending moment of the joints
          the connector and the wood.                        ranged from 9,109 N·mm to 14,998 N·mm.
            The finite element mesh was generated in ANSYS Mechanical.   The highest mean rotational stiffness was recorded for
          A global element size of 2 mm was applied, and adaptive   configuration 3P30 (6,172 N·mm/deg), whereas the lowest
          mesh refinement was used in regions of curvature and contact.   value was observed for configuration 5P40 (4,476 N·mm/deg).
            Mesh convergence was assessed for  the representative   The specific bending moment ranged from 2,608 N·mm/g
          3P30 configuration, and the 2 mm mesh was retained as   to 3,903 N·mm/g, with the highest mean value achieved by

          sufficiently converged.                            configuration 3P20.
            The boundary conditions were defined according to the   The two-way ANOVA revealed statistically significant effects
          experimental test configuration. The supported arm was   of both perimeter count and infill density on the specific
          represented by a Remote Displacement boundary condition,   bending moment (p < 0.001 for both factors).
          with translations constrained and rotation about the vertical   The results indicate that, among the tested configurations,
          axis left free.                                    specific combinations of perimeter count and infill density
            The load was applied at the end of the second arm as a   provided a more favourable balance between mechanical
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