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The fracture of wood under torsional loading

机译:扭转载荷作用下的木材断裂

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A series of experiments have been carried out on hardwood (red lauan) and softwood (sitka spruce) test pieces using static and cyclic torsional loading under displacement control. Measurements of the applied torque, the corresponding angle of twist and the number of cycles to failure were recorded. It was found that under static torsional loading, the strength of both hardwood and softwood reduced as the grain orientation of the sample to the axis of twist increased from 0 degrees to 90 degrees with a corresponding decrease of elastic modulus. Hardwood is stronger than softwood. In the fatigue test, when the torsional load is plotted against cycle number, the results showed that under displacement control stress relaxation occurs. The S-N curve for softwood has a shallower gradient than that of hardwood, indicating that the torsional strength of softwood is less affected by fatigue loading than hardwood. In both static and cyclic torsional loading tests, the failure mode of hardwood is slow and incomplete, whereas, softwood fails suddenly and completely. The crack growth is along the tangential direction in the hardwood cross-section and in the radial direction in the cross-section.
机译:在位移控制下,使用静态和循环扭转载荷对硬木(红la)和软木(云杉)试件进行了一系列实验。记录施加的扭矩,相应的扭转角和故障循环次数的测量值。发现在静态扭转载荷下,硬木和软木的强度随着样品相对于扭转轴的晶粒取向从0度增加到90度而降低,并且弹性模量相应降低。硬木比软木强。在疲劳试验中,当将扭转载荷与循环次数作图时,结果表明在位移控制下会发生应力松弛。软木的S-N曲线比硬木的S-N曲线浅,表明软木的扭转强度受疲劳载荷的影响比硬木小。在静态和循环扭转载荷测试中,硬木的破坏模式是缓慢且不完整的,而软木的破坏则是突然而完全的。裂纹在硬木横截面中沿切线方向并且在横截面中沿径向方向生长。

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