Burger体模型在确定定向刨花板蠕变行为中的可用性

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES
N. Yildirim, S. Shaler, W. West, Ema Gajic, Russell Edgar
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引用次数: 3

摘要

在这项工作中,Burger体模型(BBM)用于确定定向刨花板(osb)在长期载荷下的行为的可用性进行了评估。在恒定环境条件下(25±2°C和50%相对湿度),将实际弯曲应变数据与预测应变数据作为不同应力水平和加载时间的函数进行了比较。根据ASTM相关标准进行短期弯曲试验和长期蠕变断裂弯曲试验两组试验。将试件随机分为三组,分别按平均静态短期抗弯强度的47% (132.2 kg)、51% (137.4 kg)和55% (154.9 kg)加载。使用自动测量系统监测试样蠕变10,000小时。在2000-h的时间间隔内获得了所有样品的四参数BBM参数,提供了五种不同的估计值。将实测应变值与BBM应变预测值进行比较,目的是评估实验长度对预测精度的影响。基于实际应变值与预测应变值之间的误差,每个应力水平提供了统计差异。与1组和2组相比,3组误差最小。与6000、4000和2000小时的数据相比,10,000和8000小时的加载提供了最准确的预测。总的来说,实际数据收集的时间越长,预测就越准确。结果表明,BBM是预测osb在不同载荷和载荷持续时间下蠕变行为的有效工具。实际载荷持续时间的增加使预测误差最小化。因此,建议使用BBM来预测osb在8000 h载荷持续时间内的蠕变行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The usability of Burger body model on determination of oriented strand boards’ creep behavior
In this work, the usability of the Burger body model (BBM) for determining the behavior of oriented strand boards (OSBs) under long-term loads was evaluated. The actual bending strain data and predicted strain data as a function of different stress levels and load durations under constant environmental conditions (25 ± 2°C and 50% relative humidity) were compared. Two test groups, short-term bending tests and long-term creep-rupture bending tests, were performed according to relevant ASTM standards. Specimens were randomly assigned to three groups and loaded at 47% (132.2 kg), 51% (137.4 kg), or 55% (154.9 kg) of the mean static short-term flexural strength. Specimen creep was monitored for 10,000 h using an automated measurement system. The four-parameter BBM parameters were obtained for all specimens at 2000-h time intervals, providing five different estimates. Measured strain values were compared with strain predictions from the BBM and with the goal of evaluating length of experiment on prediction accuracy. Each stress level provided statistical differences based on the error between the actual strain and predicted strain values. Group 3 provided minimum error compared to group 1 and group 2. The 10,000 and 8000 h loading provided the most accurate predictions compared to 6000, 4000, and 2000 h of data. Overall, the longer the actual data is collected the more accurate predictions were obtained. As a result, the BBM was found useful tool for predicting the creep behavior of OSBs under different loads and load durations. It was also shown that the increased duration of practical loading minimizes the error between the prediction. Therefore, the BBM is suggested for use predicting the creep behavior of OSBs over 8000 h load durations.
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来源期刊
Advanced Composites Letters
Advanced Composites Letters 工程技术-材料科学:复合
自引率
0.00%
发文量
0
审稿时长
4.2 months
期刊介绍: Advanced Composites Letters is a peer reviewed, open access journal publishing research which focuses on the field of science and engineering of advanced composite materials or structures.
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