Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 3American Society of Mechanical Engineers, 1990 - Arctic regions |
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Page 277
Sut a , a * compressive , tensile ultimate strength uncorrected , corrected thread profile coefficient in Otaki's theory thread half angle coefficient of angle of friction Poisson's ratio Some methods for predicting the fatigue limits ...
Sut a , a * compressive , tensile ultimate strength uncorrected , corrected thread profile coefficient in Otaki's theory thread half angle coefficient of angle of friction Poisson's ratio Some methods for predicting the fatigue limits ...
Page 278
appropriate theories or empirical laws to calculate the load along the thread helix followed by the maximum stress concentration and then the fatigue limit . The object of this paper is to compare these methods and to assess them ...
appropriate theories or empirical laws to calculate the load along the thread helix followed by the maximum stress concentration and then the fatigue limit . The object of this paper is to compare these methods and to assess them ...
Page 281
The reason for the latter is possibly that Birger's theory , unlike Sopwith's , calculates the load on the nth turn of the thread . Consequently the highest load found will be for a whole turn of thread and will be lower than the ...
The reason for the latter is possibly that Birger's theory , unlike Sopwith's , calculates the load on the nth turn of the thread . Consequently the highest load found will be for a whole turn of thread and will be lower than the ...
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Contents
ADVANCED COMPOSITES | 1 |
P R Godfrey and A G Davis | 15 |
Low Cost Manufactruring Technology for FireResistant Phenolic Matrix Composites | 21 |
Copyright | |
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analysis applications approach axial behaviour bending brace calculated chord combined compared components composite compression concrete connection considered construction corrosion crack growth critical curve cycles damage depth determined direction distribution effect element Engineering experimental factor failure fatigue fiber Figure finite element force fracture fracture mechanics geometry increase indicate influence initial internal intersection length limit load lower material maximum mean measured mechanics metal method mode nodes nominal normal notch observed obtained offshore offshore structures parameters performance pipe plate position predicted present pressure procedure production properties range ratio reinforcement Research resistance seal shear shell shown shows specimens steel stiffener strain strength stress concentration structures surface Table technique temperature tension thickness thread tube tubular joints weight weld