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Note: Only one Fracture object is valid per Model. Insert an object into the tree by right-clicking on the Fracture object and selecting Insert Arbitrary Crack from the context menu. Alternatively, click the Arbitrary Crack button on the toolbar. An Arbitrary Crack definition must always be scoped to a single solid body. Use the Body selection filter to pick a body in the Geometry window, click the Geometry field in the Details View, and then click Apply. To further define the Arbitrary crack, use the following controls. These controls appear in the Details View of the Arbitrary Crack object.
As you specify values for the controls, the image in the Geometry window previews the entered data. An example of Arbitrary crack definition, including an image of the crack on the model, is illustrated below. The portion of the curve located inside the cylinder, including the intersection points, defines the shape of the crack front, as shown by the red line. Coordinate System: This property specifies the coordinate system that defines the orientation of the crack. The Y axis of the specified coordinate system must be directed towards the normal of the crack's top face. Crack Shape: Read-only property set to Arbitrary. Crack Surface: This property is used to scope the surface body to be used as the crack surface.
It can be scoped to single surface body only. Mesh Method: Read-only property set to Tetrahedrons. Largest Contour Radius: Specifies the largest contour radius for the crack shape. Enter a value greater than 0. Growth Rate Specifies the factor with which the mesh layers will grow along the radius of the crack. Specify a value greater than 1.
The default value is 1.2. The recommended value is equal to or greater than 1.1. Front Element Size Specifies the element size for the crack front. The default value is computed using the values of the Largest Contour Radius property and the Growth Rate property. Mesh Contours: Specifies the number of mesh contours for the crack shape. Your entry must be equal to or greater than 1. The default value is 6.
The Geometry window can display only a maximum of 100 mesh contours, but you can specify a higher value and fracture meshing will respect it. Note: You can use the graphics preview of an arbitrary crack to examine the relative effect of the mesh parameters on the generated crack mesh.
The first mesh contour's radius shown as a bull's-eye view in graphics window is equal to specified Front Element Size. The mesh contours grow at the rate of the specified Growth Rate value as seen in the image. Also, the generated crack mesh is an unstructured tetrahedron mesh and may not accurately compare to all the mesh parameters seen in the graphics window. Solution Contours: Specifies the number of mesh contours for which you want to compute the fracture result parameters. The value you enter must be less than or equal to the value of the Mesh Contours property, and cannot be greater than 99. By default, the value is set to Match Mesh Contours, indicating that the number of Solution Contours is equal to the number of Mesh Contours.
Entering 0 resets the value to Match Mesh Contours. Suppressed: Toggles suppression of the Arbitrary Crack object.
The default is No. The Arbitrary Crack object is suppressed automatically if both the scoped body and scoped crack surface are suppressed. Buffer Zone Scale Factors: Control the size of the buffer zone in the X, Y, and Z directions, relative to the crack surface geometry dimensions. For each scaling parameter, use the slider to set a value from 2 to 50. The default value is 2. The maximum dimension among the three dimensions of the crack surface geometry is multiplied by the corresponding scale factors to create a buffer zone.
Top Face Nodes: Identifies the Named Selection that is created automatically for the top face ( NS ArbCrack TopFace). This face is discontinuity plane 1.
Contains nodes used for applying a pressure to the top face. Bottom Face Nodes: Identifies the Named Selection that is created automatically for the bottom face ( NS ArbCrack BottomFace).
This face is discontinuity plane 2. Contains nodes used for applying a pressure to the bottom face. Select the Fracture object or Arbitrary Crack object in the tree Outline, right-click, and select Generate All Crack Meshes.
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