![]() If you have previously created folders, then you can select them from this same interface. ![]() You can name and populate these different folders based on a type of material, specific projects, or other systems You can create up to five folders with up to 20 data sheets per folder. Create a new Folder: The next step to the export process is to create a new Folder, or use the default "My Folder".įind the Use Folder section, Select "New" from the "Other Tasks" list, Type in a name in the "New Folder Name" field, andĬlick the "Save Changes" button.This is one place where users create and maintain Folders (for exporting and comparing material data). Visit the Advanced Search interface or any search results page.Click here for more detailed import instructions.xml, and find the location you saved the file from MatWeb and select it. In the Material Browser window, click the "Import Material Library" button.Select the Materials Tab, and then Browse Materials.Keep in mind that COMSOL will point to this file, so save your files in a folder you'll remember with unique file names.Import the file into COMSOL Multiphysics:.This example's file isĪvailable for free at the top of the page. Save the file in a place you'll remember. A window will open asking you to save a.From atop a search results page, select "Export to COMSOL Multiphysics" in the "Other Tasks" drop-down box.You may add up to 20 to each library folder, using the results of multiple searches. Perform a Search: Run a search using any of MatWeb's search options.Ĭheck the box next to the material data sheet names on the search result to add that material to your active Folder for export.Register as a Premium member and then log in to MatWeb.New Registration Download an example in COMSOL Multiphysics format (right click and "save as") (Installation Instructions Here) Express Instructions (Instructions for Full Export Capabilities) The appropriate property values in the correct units are automatically added to the file with ease and accuracy. Material library format from MatWeb's collection of over 175,000 material data sheets. Users can create and export libraries of 20 materials at a time in COMSOL This is a new feature of our Premium membership availableįor only $99.95 for a one year subscription!Ī complete list of Premium features and membership options is available Springer, Berlin, Heidelberg.Users of COMSOL MULTIPHYSICS software can now export technical datasheets from MatWeb's collection Among groups of processing parameters, the deformation reaches the minimum when the initial temperature of alloy and shell are 1500 \(^\) physical simulator, pp 347–376. With elastoplastic model for alloy, considering the deformability of shell with elastic model, the maximum error is limited to 0.34 mm. Different thermal-mechanical models of both alloy and shell are compared. The measured yield stress and plastic modulus are imported into the database for numerical simulation. To obtain the thermal-mechanical behavior of K4169 from solid region to semi-solid zone, physical simulated uniaxial compression is performed. This study focuses specifically on the deformation of ring-to-ring castings with Ni-based superalloy K4169. ![]() The elastoplastic behavior of superalloy in a semi-solid zone is critical to the deformation during solidification. In order to accurately predict the deformation of castings, it is crucial to develop and apply mechanical models of both alloy and shell. ![]() The deformation in superalloy investment casting under thermal-mechanical coupled stress results in significant waste of materials and energy.
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