scholarly journals Experimental and Theoretical Investigation of Ultimate Strength of Rectangular Hollow Section Tapered Columns

2013 ◽  
Vol 15 (AEROSPACE SCIENCES) ◽  
pp. 1-12
Author(s):  
A. Salem ◽  
N. Abdelmtaal ◽  
M. Abd Al-whhab ◽  
Z. Al-Yassin
2020 ◽  
Vol 39 (1) ◽  
pp. 63-76
Author(s):  
A. S. Abdel-zaher ◽  
L. M. Abdel-Hafez ◽  
Y. R. Tawfic ◽  
M. E. Abdel-fattah

2012 ◽  
Vol 166-169 ◽  
pp. 645-648
Author(s):  
Wei Ning Sui ◽  
Xin Long Zhang ◽  
Guo Chang Li ◽  
Xue Bai

Abstract: In order to study static strength of doubler plate reinforced circular hollow section (CHS) K-joints, experimental and numerical studies conducted by the authors. The effects of parameters Δ (the ratio between the length of doubler plate and the diameter of the brace) and α (the width of the doubler plate) on CHS K-joints subjected to bending load have been investigated and reported by the authors. It is found that the ultimate strength of a CHS K-joints reinforced with appropriately proportioned doubler plates can be up to 2 ratio to its un-reinforced counterpart. Reasonable geometric parameters of the doubler plate can make the chord, brace and doubler plate work together to bear the external bending load. The width and length parameter of the doubler plate, however, have no effect on the stiffness of the reinforced K-joints.


Author(s):  
Siti Amirah Azra Khairuddin ◽  
Norashidah Abd Rahman ◽  
Norwati Jamaluddin ◽  
Zainorizuan Mohd Jaini ◽  
Noorwirdawati Ali

2020 ◽  
Vol 4 (2) ◽  
pp. 112-121
Author(s):  
Greg Wheatley ◽  
Rendage Sachini Sandeepa Chandrasiri

High density polyethylene (HDPE) is a thermoplastic polymer which is classified as one of the highly consumed types of plastics. One major advantage of thermoplastic materials is their ability of recycling and reprocessing which will bring considerable economicand environmental benefits. The present paper, therefore, endeavours to explore the practical possibility of using recycled HDPE hollow section as a replacement of virgin HDPE made by the extrusion process. The main focus of the study was to evaluate the mechanical performance of the recycled HDPE and compare the results with virgin or non-recycled HDPE.  The modulus of elasticity, tensile yield and ultimate strength, compressive yield and ultimate strength, flexural yield and ultimate strength and the coefficient of thermal expansion were the main parameters to be checked against the respective mechanical properties. Thus, pursuant to the rsults, it was found out  that the modulus of elasticity and the tensile yield strength are lower in recycled HDPE compared to the non-recycled HDPE. However, there is no significant difference between the recycled and non-recycled HDPE for the tensile ultimate strength, compressive yield strength and compressive ultimate strength. The flexural yield strength and flexural ultimate strength properties of the recycled HDPE proved to be superior to those of the non-recycled HDPE. The coefficient of linear thermal expansion of the recycled HDPE sample was 130 μm/(m.°C) and that for the non-recycled HDPE was 142 μm/(m.°C).


2021 ◽  
pp. 341-347
Author(s):  
L.H. Lu ◽  
G.D. de Winkel ◽  
Y. Yu ◽  
J. Wardenier

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