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I've selected the origin point on the crack face, generated a nodal selection, but the pre meshed crack module doesn't like this selection. I've also tried to manually select the crack face in the mesh elements.
For users of the Structural Mechanics Module, COMSOL Multiphysics® version 5.6 includes dynamic contact analysis, built-in functionality for modeling cracks, and new methods for analyzing mechanical wear. Learn about these and many other Structural Mechanics updates below.
In the Beam and Pipe Mechanics interfaces, the Prescribed Displacement/Rotation node has been augmented with an option called Limited Displacement. When this option is selected, you can define an upper and lower limit for the displacement. In particular, this facilitates the modeling of beams resting on unidirectional supports.
A new material model, Section Stiffness, has been introduced in the Beam interface. Here, you directly enter data such as axial stiffness, bending stiffness, etc. The purpose of this material model is to facilitate modeling of complex beam cross sections, where the stiffness properties cannot be deduced from a single elastic material, and the geometrical properties of the cross section, as is the case for composite beams.
Additionally, industry pressure has added more superalloy powders to the available processing including AM108. It is not only the Print operation and orientation that provides a change in material properties, it is also the required post processing via Hot Isostatic Pressure (HIP) Heat Treat and shot peen that change mechanical properties to a level of noticeable difference in comparison to equiaxed cast or wrought materials. Based on research done at the Tokyo Metropolitan University, it is shown that creep rupture and ductility are typically lower for additive printed Ni based superalloys compared to wrought or cast material. The directionality of print is a major influencing factor along with grain size. Additionally, wear properties are typically better as seen with the studies done on additive Inconel 718 due to surface condition; the study also demonstrated the laser power's influence on density and microstructure. Material Density that is generated during the laser processing parameters can further influence crack behavior such that crack reopening post HIP process is reduced when density is increased. It is critical to have a full overview of the material along with its processing from print to required post-print to be able to finalize the mechanical properties for design use.
For the reasons above, the mechanical properties of alloys produced by SLM can deviate substantially from those conventionally manufactured counterparts in their as-built state. A central characteristic of SLM-manufactured alloys is large anisotropy in mechanical properties . While the grain structure in cast metals is typically characterized by roughly uniform, isotropic grains, alloys manufactured using SLM exhibit substantial elongation of grains in the build direction. The anisotropy in grain structure is associated with anisotropy in the distribution of defects, the direction of crack propagation, and ultimately the mechanical properties.
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