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PERILAKU TEKUK (BUCKLING) PADA BAMBU PETUNG BENTUK BILAH
The Compressed bar at the frame, columns, and other structures is always probably happened buckling. The experiment is conducted to investigate the behavior of buckling at the bar of lath shaped bamboo petung and the buckling strength of the experiment result with the theory result (the equation of tetmayer and euler, proposal of morisco, and atrops (D/T=0)). In the research, it is conducted testing of the mechanic character of bamboo and wood specimens, testing of resin, and buckling testing with the compressed testing principle. The testing result showed that buckling happened at the lath shaped bamboo petung is influenced by the length of bar, the resin strength, and the quality of work. The buckling stress of the experiment result was higher than the result of morisco proposal, but it’s less than the result of tetmayer and atrops (D/T=0), so that the equation of morisco proposal is safe to used at the compressed bar design.
PERILAKU TEKUK (BUCKLING) PADA BAMBU PETUNG BENTUK BILAH
The Compressed bar at the frame, columns, and other structures is always probably happened buckling. The experiment is conducted to investigate the behavior of buckling at the bar of lath shaped bamboo petung and the buckling strength of the experiment result with the theory result (the equation of tetmayer and euler, proposal of morisco, and atrops (D/T=0)). In the research, it is conducted testing of the mechanic character of bamboo and wood specimens, testing of resin, and buckling testing with the compressed testing principle. The testing result showed that buckling happened at the lath shaped bamboo petung is influenced by the length of bar, the resin strength, and the quality of work. The buckling stress of the experiment result was higher than the result of morisco proposal, but it’s less than the result of tetmayer and atrops (D/T=0), so that the equation of morisco proposal is safe to used at the compressed bar design.
PERILAKU TEKUK (BUCKLING) PADA BAMBU PETUNG BENTUK BILAH
Gunawan, Agustin (author)
2018-05-31
doi:10.33369/ijts.1.2.1-9
Inersia: Jurnal Teknik Sipil; Vol 1, No 2 (2010); 1-9 ; 2686-5017 ; 2086-9045
Article (Journal)
Electronic Resource
English
DDC:
690