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Fatigue behaviour of a PET-Geogrid under cyclic loading

机译:PET-Geogrid在循环载荷下的疲劳行为

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The lines of 'damage-begin' and 'specimen-break' for dynamic loading of a geogrid were determined in a series of laboratory testing. The cyclic load ratio was set to R = 0.5, loading frequency f= 10 Hz and f= 3 Hz. The test results show clearly that the chosen procedure for the determination and analysis of the beginning of damage and break is reproducible and allow for safe extrapolation for lower load levels. Furthermore the method chosen enables explicit decrease of the required testing time. The assumption of linear damage accumulation was examined in two-step-trials. The number of load cycles to 'break' evaluated in 'one-step-tests' compared with those of 'two-step-loading' are practically the same. The existence of 'damage-lines' for the examined geogrid under a dynamic pulsating load of 10 Hz and 3 Hz and a R-value of 0.5 could be verified. Damage of the specimens occurs only for load-cycles lying between the 'damage-line' and the 'stress-cycle-diagram' ('Woehler-curve'). When it comes to dimensioning against 'damage-beginning' or 'break', higher loading frequencies present the critical case.
机译:在一系列实验室测试中确定了土工格栅的动态加载的“破坏开始”和“试样破坏”线。循环负载比设为R = 0.5,负载频率f = 10 Hz,f = 3 Hz。测试结果清楚地表明,所选择的确定和分析损伤和破坏开始的程序是可重复的,并且可以为较低的载荷水平进行安全的推断。此外,所选择的方法可以显着减少所需的测试时间。线性损伤累积的假设在两步试验中进行了检验。与“两步加载”相比,在“一步测试”中评估的“断裂”加载循环数实际上是相同的。可以验证在10 Hz和3 Hz的动态脉动载荷和R值为0.5的情况下,被检土工格栅存在“损伤线”。仅在“损伤线”和“应力循环图”(“ Woehler曲线”)之间的载荷循环下才发生样品损坏。当涉及“破损开始”或“破损”的尺寸确定时,较高的加载频率是关键情况。

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