Sheathing-fastener connection strength based design method for sheathed CFS point-symmetric wall frame studs

Structures ◽  
2021 ◽  
Vol 33 ◽  
pp. 1473-1494
Author(s):  
Sivaganesh Selvaraj ◽  
Mahendrakumar Madhavan ◽  
Hieng Ho Lau
Author(s):  
Fuzhong Nian ◽  
Li Luo ◽  
Xuelong Yu ◽  
Xin Guo

The iterative propagation of information between nodes will strengthen the connection strength between nodes, and the network can evolve into different groups according to difference edge strength. Based on this observation, we present the user engagement to quantify the influences of users different propagation modes to network propagation, and construct weight network to simulate real social network, and proposed the community detection method in social networks based on information propagation and user engagement. Our method can produce different scale communities and overlapping community. We also applied our method to real-world social networks. The experiment proved that the network spread and the community division interact with each other. The community structure is significantly different in the network propagation of different scales.


2009 ◽  
Vol 16-19 ◽  
pp. 363-367
Author(s):  
Yan Yan Shi ◽  
Zhi Li Sun ◽  
Guo Quan Li ◽  
Feng Mu

In this paper, a method of analyzing the reliability of tooth surface contact strength was presented and several kinds of errors of tooth shape were taken into consideration. In the method, experimental design method and Finite Element Method (FEM) were used to get the samples of tooth surface contact stress, and then Weibull distribution was used to fit these samples. On the basis of both stress and strength obeying to Weibull distribution, the reliability of tooth surface contact strength was calculated. The result of the calculation example indicates that the method is correct and effective.


2008 ◽  
Author(s):  
Patton O. Garriott ◽  
Keisha M. Love ◽  
Kenneth M. Tyler ◽  
Deneia M. Thomas ◽  
Carrie L. Brown

2011 ◽  
Author(s):  
R. Bruce Thompson ◽  
Maryann Corsello ◽  
Samuel McReynolds ◽  
Bernice Conklin-Powers ◽  
Brittany Morley

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