Prediction of Density for Prevention of Settling of Hygroscopic and Nonhygroscopic Loose-fill Insulation in Walls

T. V. Rasmussen
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引用次数: 8

Abstract

This paper discusses the prediction of the density necessary for the prevention of the settling of hygroscopic and nonhygroscopic loose-fill insulation in walls, when the criteria for creep in granular materials are applied. The practical use of a theoretical framework presented earlier and the material characteristics used to develop an equation from which the necessary density can be predicted, are described. The empirical framework allows a quantitative approach to the problem of achieving nonsettling of a loose-fill insulation material in a given wall. The study involves the use of empirically derived equations to predict the density of a loose-fill insulation material required to ensure volume stability in a wall exposed to one type of cyclical humidity conditions. An empirical model for predicting the creep of materials has been developed in earlier papers. The creep was determined from the corresponding tests. The use of the method is demonstrated by showing the results from a full-scale wall test. The method is applied for different cavity sizes together with the associated characteristics of four hygroscopic and one nonhygroscopic loose-fill insulation materials exposed to the same climatic conditions. In addition, it is shown that for many repeated cyclical humidity conditions, the creep of the hygroscopic and nonhygroscopic loose-fill insulation materials asymptotically approached equilibrium.
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防吸湿与不吸湿松散填充墙体保温材料沉降的密度预测
本文讨论了在应用颗粒材料蠕变准则时,防止吸湿性和非吸湿性松散填充墙体保温材料沉降所需密度的预测。描述了先前提出的理论框架的实际应用,以及用于开发可以预测必要密度的方程的材料特性。经验框架允许定量方法来解决在给定墙壁中实现松散填充绝缘材料不沉降的问题。该研究涉及使用经验推导的方程来预测松散填充绝缘材料的密度,以确保暴露在一种周期性湿度条件下的墙壁的体积稳定性。预测材料蠕变的经验模型已在较早的论文中提出。蠕变由相应的试验确定。通过展示全尺寸墙体试验的结果来演示该方法的使用。该方法适用于不同空腔尺寸以及暴露在相同气候条件下的四种吸湿性和一种非吸湿性松散填充保温材料的相关特性。此外,研究表明,在许多重复循环湿度条件下,吸湿性和非吸湿性松散填充绝缘材料的蠕变渐近于平衡。
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