Abstract
Tensile fatigue performances of selected natural rattan strips (NRSs) and synthetic rattan strips (SRSs) were evaluated by subjecting them to zero-to-maximum constant amplitude cyclic tensile loading. Experimental results indicated that a fatigue life of 25,000 cycles began at the stress level of 50% of rattan material ultimate tensile strength (UTS) value for NRSs evaluated. Rattan core strips’ fatigue life of 100,000 cycles started at the stress level of 30% of its UTS value. Rattan bast strips could start a fatigue life of 100,000 cycles at a stress level below 30% of material UTS value. SRSs didn’t reach the fatigue life of 25,000 cycles until the applied stress level reduced to 40% of material UTS value and reached the fatigue life of 100,000 cycles at the stress level of 40% of material UTS value. It was found that NRSs’ S-N curves (applied nominal stress versus log number of cycles to failure) could be approximated by S =σou (1 − H × log10 · Nf ). The constant H values in the equation were 0.10 and 0.08 for bast and core materials, respectively.
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CITATION STYLE
Gu, Y., & Zhang, J. (2022). Fatigue Performance of Natural and Synthetic Rattan Strips Subjected to Cyclic Tensile Loading. Forests, 13(1). https://doi.org/10.3390/f13010076
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