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A Phenomenological Approach to Obtaining Correlations between Accelerated and Outdoor Exposure Test Results for Organic Materials

机译:一种获得有机材料加速和室外暴露测试结果之间相关性的现象学方法

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Two approaches are commonly used to derive correlations between in-service and accelerated exposure test results. When detailed degradation mechanisms are well understood, a deterministic formalism can be applied in which a precise damage function model is utilized. If failure mechanisms are not known or multiple mechanisms interact in a complicated manner that makes it difficult and tedious to treat them explicitly, a probabilistic procedure can be used. Observed failures are fit to appropriate life distributions to obtain expressions for related failure rates. A third approach uses a phenomenological methodology. This procedure is similar to the deterministic approach in that damage functions are hypothesized, except that they are based on macroscopic observations and effects, rather than on microscopic mechanisms. The phenomenological approach is used herein to describe results accurately from a number of highly accelerated exposure tests of organic materials. The ensuing damage function models are then used to predict real-world behavior. Excellent agreement is demonstrated between these predictions and actual measured data, thereby validating the phenomenological approach and providing a very useful way to estimate service life of organic-based materials.
机译:通常使用两种方法来得出在役和加速暴露测试结果之间的相关性。当详细了解降解机制时,可以采用确定性形式,其中使用了精确的损伤函数模型。如果故障机制未知,或者多种机制以复杂的方式相互作用,这使得很难明确地处理它们,那么就可以使用概率过程。观察到的故障适合于适当的寿命分布,以获得有关故障率的表达式。第三种方法使用现象学方法。此过程与确定性方法相似,只是假设了破坏函数,只是它们是基于宏观的观察和影响,而不是基于微观的机制。本文使用现象学方法来准确描述许多有机材料的高度加速暴露测试的结果。随后使用损坏函数模型来预测现实世界的行为。这些预测与实际测量数据之间显示出极好的一致性,从而验证了现象学方法,并提供了一种非常有用的方法来估算有机基材料的使用寿命。

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