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STRESS ANALYSIS FOR NOVICES USING AUTODESK INVENTOR

机译:使用AUTODESK Inventor的新产品应力分析

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Finite element analysis (FEA) is a numerical method for calculating stress and strain (and other quantities) in structures that cannot be easily analyzed any other way. FEA analysts use complex software to create a mathematic representation of the physical structure being studied, apply loads to the structure and then solve for the resulting displacements and stresses. In years past, FEA was performed by highly trained analysts with master's level engineering degrees or higher. Today, the combination of competitive market pressures, powerful computer hardware and well designed software has resulted in CAD designers being asked to perform FEA early in the design process. To enable these designers to perform FEA analysis, solid modeling software vendors have incorporated FEA into their solid modeling and design drafting packages. Autodesk Inventor Professional 9 now includes FEA capability from ANSYS, Inc. Earlier versions of this software (without FEA) were used at this University to instruct students in solid modeling and design drafting. With new and ever expanding software capabilities, faculty had to determine how to prepare engineering technology students to use the software appropriately. This paper begins with a discussion of the implementation of FEA in Inventor and strategies for educating engineering technology students in FEA. Then it describes an assignment that demonstrates the stress analysis capability of Inventor after the students have mastered solid modeling. This paper discusses the assignment and compares the results achieved by the students to the expected stress values. Each of the steps of the FEA procedure is examined; define the geometry and material, apply constraints, apply loads, solve and then interpret the results; and the likely areas of student error are discussed. Lastly is a description of the assessment, evaluation and planned improvements to the FEA assignments.
机译:有限元分析(FEA)是一种数值方法,用于计算无法通​​过其他任何方式轻易分析的结构中的应力和应变(及其他量)。 FEA分析师使用复杂的软件来创建要研究的物理结构的数学表示,将载荷施加到结构上,然后求解所产生的位移和应力。在过去的几年中,FEA是由训练有素的,具有硕士学位或更高水平的工程技术人员执行的。如今,竞争激烈的市场压力,强大的计算机硬件和精心设计的软件相结合,导致CAD设计师被要求在设计过程的早期执行FEA。为了使这些设计师能够执行FEA分析,实体建模软件供应商已将FEA纳入其实体建模和设计绘图套件中。 Autodesk Inventor Professional 9现在具有ANSYS公司提供的有限元分析功能。该软件的早期版本(不包含有限元分析)在该大学用于指导学生进行实体建模和设计绘图。随着新的和不断扩展的软件功能,教师必须确定如何为工程技术专业的学生做好准备以正确使用该软件。本文首先讨论了FEA在Inventor中的实施以及在FEA中教育工程技术学生的策略。然后,它描述了一个作业,该作业演示了学生掌握实体建模后Inventor的应力分析能力。本文讨论了作业,并将学生获得的结果与预期的压力值进行了比较。 FEA程序的每个步骤都经过检查;定义几何形状和材料,施加约束,施加载荷,求解,然后解释结果;并讨论了学生可能犯的错误。最后是对FEA任务的评估,评估和计划改进的描述。

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