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A Component-Centric Approach to Structural Analysis of Mechanisms

机译:以构件为中心的机构结构分析方法

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Structural analyses of mechanisms with components that move relative to each other provide a unique problem to the analyst building and running structural models. In these situations, the analyst usually has to either simplify the problem to a point where the results are unusable or maintain multiple models, which will take more effort to maintain and more resources to run the models. If a mechanism is simplified down to just analyzing one component at a time without regard for the other components in the system, the results will not be accurate because the loading effects of the other components will not be accounted for. In cases where all the components are included in the model the loading effects from the other components will be accounted for, however, a separate model will be required for each position. This paper presents a method of breaking down the complex mechanism into a component level model for each part of the assembly, while still accounting for all loading effects of the other components; in the Pivot Method the component under analysis stays stationary and the loading moves around the component to represent the different positions that it can take. In order to accomplish this task, a simplified model is used to generate loads at each of the joints. Once the pivot loads are known, a spreadsheet can be used to transform the loads to a coordinate system in which the individual component is being modeled. With the pivot loads known and all the loads transformed into the proper coordinate system the structural analysis of the component under investigation can continue. The intention of this paper is to introduce the Pivot Method and to demonstrate that it provides a good trade off between both the complexity of methods that model the assembly as a system, and those that focus on the component under question alone. To accomplish this, the analysis results of the Pivot Method models will be compared to results obtained from other methods, with the intention of showing that the Pivot Method will provide the same results while requiring less effort to model and less resources to run.
机译:具有相互相对移动的组件的机制的结构分析为分析师建立和运行结构模型提供了一个独特的问题。在这种情况下,分析人员通常必须将问题简化到无法使用结果的程度,或者必须维护多个模型,这将花费更多的精力进行维护并需要更多的资源来运行模型。如果将一种机制简化为仅一次分析一个组件而不考虑系统中的其他组件,则结果将是不准确的,因为不会考虑其他组件的加载效果。如果所有组件都包含在模型中,则将考虑其他组件的加载效果,但是,每个位置都需要一个单独的模型。本文提出了一种将复杂机制分解为组件每个部分的组件级模型的方法,同时仍然考虑了其他组件的所有加载效果。在枢轴方法中,被分析的组件保持静止,并且载荷在组件周围移动以表示其可以采取的不同位置。为了完成此任务,使用简化的模型在每个关节处生成载荷。一旦知道了枢轴载荷,便可以使用电子表格将载荷转换为坐标系,在该坐标系中对单个零部件进行建模。有了已知的枢轴载荷并将所有载荷转换为适当的坐标系,就可以继续对被调查零件进行结构分析。本文的目的是介绍枢轴方法,并证明它在将装配体建模为系统的方法的复杂性与仅关注所讨论组件的方法的复杂性之间取得了不错的平衡。为此,将数据透视方法模型的分析结果与从其他方法获得的结果进行比较,以表明数据透视方法将提供相同的结果,同时需要较少的建模工作量和较少的运行资源。

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