9-UG NX 有限元仿真 高级仿真 解算及解算过程Solutions and solution processes.docxVIP

9-UG NX 有限元仿真 高级仿真 解算及解算过程Solutions and solution processes.docx

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9-UG NX 有限元仿真 高级仿真 解算及解算过程Solutions and solution processes

Solutions and solution processesEstimated time to complete this course: 5–6 hoursThis course provides an overview of the solutions and solution processes available in Advanced Simulation. You will learn about:Setting up and solving your model.Performing a variety of structural analysis types, including linear statics, normal modes, thermal, and linear buckling.Performing material plasticity and geometric nonlinear analysis.Using advanced nonlinear analysis to evaluate large displacements.Evaluating static or dynamic response to transient, frequency, random, response spectrum, DDAM, or Quasi-Static events.Analyzing the dynamic characteristics of flexible components in the context of a mechanism. Optimizing your model to meet a given design goal.Setup informationPart folder: simulation NX role: Advanced with full menus System preparationIn this lessonThis lesson reviews the steps of finalizing the model, refining your solution, and solving the model. When you complete this lesson, you should understand all the elements that lead to a successful solve.Solving overviewAfter you prepare your FE model by defining a mesh and applying boundary conditions, you can solve the model.A solve formats the bulk data deck or input file and then automatically begins processing. You can also choose to write out the solver input file without solving it.Check the model before solvingIn the Simulation Navigator, select the solution node. Right-click and choose Model Setup Check. Examine the Information window and fix any problems that are reported. Solutions and subcasesA solution, which is stored in the Simulation file, contains a set of loads, constraints, and simulation objects. Each solution contains additional storage elements called steps or subcases, depending on the solver. Each step or subcase holds solution entities such as loads, constraints, and simulation objects. NX Nastran structural solves: constraints can be stored in the main solution or in the subcases; loads are store

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