2020
DOI: 10.1016/j.conbuildmat.2020.118759
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Compression resistance of short members as the basis for structural grading of Guadua angustifolia

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Cited by 28 publications
(42 citation statements)
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“…Bamboo stems, or culms, are often used as columns or compression elements in trussed structures [1]. The diameter (D) of Guadua bamboo culm is relatively large (59 mm < D < 137 mm), while its wall thickness ( ) ranges from thin to thick (5 mm < < 23 mm), and its diameter to thickness ratio (D/ ) range is from 4.7 to 16.2 [2]. The cross-section of Guadua bamboo culm is similar to a hollow tube, which inherently has a high second moment of area (or moment of inertia, I).…”
Section: Nomenclaturementioning
confidence: 99%
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“…Bamboo stems, or culms, are often used as columns or compression elements in trussed structures [1]. The diameter (D) of Guadua bamboo culm is relatively large (59 mm < D < 137 mm), while its wall thickness ( ) ranges from thin to thick (5 mm < < 23 mm), and its diameter to thickness ratio (D/ ) range is from 4.7 to 16.2 [2]. The cross-section of Guadua bamboo culm is similar to a hollow tube, which inherently has a high second moment of area (or moment of inertia, I).…”
Section: Nomenclaturementioning
confidence: 99%
“…Several studies on short bamboo culms subjected to axial compressive load have been conducted previously [2,8]. Compressive load acting on a long column is considered as an interaction between axial compression and bending, thus the resulting failure may be due to plasticity (crushing) or elasticity (buckling).…”
Section: Nomenclaturementioning
confidence: 99%
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“…where μ is the mean of the normal distribution; σ is the standard deviation of the normal distribution; K N is the confidence level factor of the normal distribution; μ In is the Advances in Civil Engineering mean of the lognormal distribution; σ In is the standard deviation of the lognormal distribution; K In is the confidence level factor of the lognormal distribution;X is the mean of the Weibull distribution; S is the standard deviation of the Weibull distribution; and K W is the confidence level factor of the Weibull distribution. e EBC strength grading was conducted using a confidence band approach as described by Bahtiar et al [16]. Statistical analysis was developed using correlation and linear regression.…”
Section: Discussionmentioning
confidence: 99%
“…For bamboo culm, Trujillo et al [13] indicated that grading could be utilized based on physical properties and flexural stiffness. Nurmadina et al [14] and Bahtiar [15,16] studied several potentials, including Mc, density, and linear mass, for bamboo culm both in flexural and compressive strength grading. e grading of timber and bamboo are constantly studied, but the strength grading of EBC subject to compressive properties is still missed.…”
Section: Introductionmentioning
confidence: 99%