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COMPUTATIONAL STRATEGIES TO MINIMIZE TRANSIENT RESPONSE DURING TIME-DOMAIN ANALYSIS OF STRUCTURES UNDER VIBRATORY LOADING

机译:振动荷载作用下结构时域分析中的最小化瞬态响应的计算策略

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Time-domain dynamic analysis of vibratory systems becomes useful in finite element analysis (FEA) when the structure's response can no longer be assumed linear, as frequency-domain (spectral superposition) methods require. Time-domain analysis also permits the use of cycle-counting methods when assessing the vibration durability of electronic assemblies. The analyst is often limited to simulating only the first few cycles of the vibration response in very complex models, to minimize the computational burden. However, the accuracy of time domain analysis can be questionable during these first few cycles, due to unwanted transients, unless the initial conditions are properly modeled to correctly produce the steady state response. This paper explores this sensitivity to initial conditions for undamped and damped structures. Strategies for calculating and implementing proper initial conditions within FEA are discussed. Two illustrative examples are presented for simplicity. The first consists of a simple cantilever beam so that the numerical results can be compared to known analytic solutions and the basic theory can be demonstrated. The second example is a 2D representation of a circuit card assembly containing multiple leadless chip resistor components, so that implementation details can be demonstrated for more complex structures. This paper is intended to have tutorial value to FEA users who have to conduct time-domain dynamic analysis.
机译:当结构的响应不再假定为线性时,振动系统的时域动态分析将在有限元分析(FEA)中变得有用,这是频域(频谱叠加)方法所要求的。时域分析还允许在评估电子组件的振动耐久性时使用周期计数方法。分析人员通常仅限于在非常复杂的模型中仅模拟振动响应的前几个周期,以最大程度地减少计算负担。但是,由于不希望有的瞬变,在最初的几个周期内,时域分析的准确性可能会受到质疑,除非对初始条件进行了正确的建模以正确地产生稳态响应。本文探讨了对无阻尼和阻尼结构的初始条件的敏感性。讨论了在FEA中计算和实施适当的初始条件的策略。为了简单起见,给出了两个说明性示例。第一个由简单的悬臂梁组成,因此可以将数值结果与已知的解析解进行比较,并且可以证明基本理论。第二个示例是包含多个无引线芯片电阻器组件的电路卡组件的2D表示,因此可以为更复杂的结构演示实现细节。本文旨在为必须进行时域动态分析的FEA用户提供指导。

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