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Waveform Effect on Fatigue Behaviour of Laterally Loaded Nailed Timber Joints

机译:波形对侧向受力钉木节点疲劳行为的影响

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Cyclic fatigue is a damage process that can occur in structural timber joints during events such as cyclones and earthquakes. The loading waveform is a crucial factor controlling the rate of damage accumulation and study of that is essential for complete understanding of the process. In the study reported here repetitive square, sinusoidal and triangular loading waveforms were applied to timber joints with one laterally loaded steel nail. Two load levels and two loading frequencies were employed and hysteresis loop areas analyzed to describe in-elastic energy losses. Major findings were: (1) the waveform and frequency governed the fatigue lives of joints, (2) the square waveform was the most damaging amongst those investigated, (3) the dominant ultimate failure mechanisms were ductile necking of nails and brittle planar fracturing of nails, and (4) fatigue processes were not uniform across the loading variables of frequency, waveform and peak load level.
机译:循环疲劳是在飓风和地震等事件发生时,结构木材接头中可能发生的破坏过程。加载波形是控制损伤累积速率的关键因素,对其进行研究对于全面了解过程至关重要。在这里报告的研究中,重复的方形,正弦和三角形加载波形应用于带有一个侧向加载的钢钉的木材连接处。采用了两个载荷水平和两个载荷频率,并分析了磁滞回线面积以描述弹性内能量损失。主要发现是:(1)波形和频率决定了关节的疲劳寿命;(2)方波在所研究的那些波形中最具破坏性;(3)主要的最终破坏机制是韧性的颈缩颈钉和脆性的平面断裂。 (4)疲劳过程在频率,波形和峰值载荷水平的载荷变量之间不均匀。

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