Numerical Simulation Analysis of Influence Factors to Shearing Force of Rolling Shear

2011 ◽  
Vol 18 (8) ◽  
pp. 30-36 ◽  
Author(s):  
Li-feng Ma ◽  
Jian-mei Wang ◽  
Qing-xue Huang ◽  
Yuan-hua Shuang
2010 ◽  
Vol 102-104 ◽  
pp. 88-92
Author(s):  
Chun Xiang ◽  
Fu Qiang Ying

In this paper , the author analyzed the influence factors of protection gas flow field, then established the model in a design of the optimized protection gas porous shunt, which is used in magnesium alloys furnace, Numerical simulation analysis optimizes the supplying system of protection gas. The shunt improves the uniformity and validity of the gas which is above the magnesium and reduces the gas consumption. The conclusion is that porous shunt usage will further promote the development and application of magnesium alloy in all fields.


2014 ◽  
Vol 522-524 ◽  
pp. 1403-1409
Author(s):  
Zhong Ping Guo ◽  
Wan Peng Huang ◽  
Fan Feng ◽  
Sha Sha Yan ◽  
Chun Han

There are many factors that influence filling body stability in partial-filling mining. In deep mining, filling rate and internal friction angle of filling body are the main factors that greatly influence both sides of plasticity zone breadth in the process of filling bodys deformation and destruction. Taking filling rate and friction angle as the main variables to make a numerical simulation analysis on the deep mine working face, we can find a conclusion that it shows a concave-down power exponent relationship between the width of plasticity zone and the filling rate; With lower filling rate, it shows a concave-up power exponent relationship with friction angle, and the relationship of power exponent will change into the linearity as the filling rate increase.


Author(s):  
Luan Labigalini ◽  
Ricardo Salvo ◽  
Rafael Sene de Lima ◽  
Ismael Marchi Neto ◽  
Rodrigo Corrêa da Silva

2021 ◽  
Vol 11 (11) ◽  
pp. 5283
Author(s):  
Jui-Ching Chou ◽  
Hsueh-Tusng Yang ◽  
Der-Guey Lin

Soil-liquefaction-related hazards can damage structures or lead to an extensive loss of life and property. Therefore, the stability and safety of structures against soil liquefaction are essential for evaluation in earthquake design. In practice, the simplified liquefaction analysis procedure associated with numerical simulation analysis is the most used approach for evaluating the behavior of structures or the effectiveness of mitigation plans. First, the occurrence of soil liquefaction is evaluated using the simplified procedure. If soil liquefaction occurs, the resulting structural damage or the following mitigation plan is evaluated using the numerical simulation analysis. Rational and comparable evaluation results between the simplified liquefaction analysis procedure and the numerical simulation analysis are achieved by ensuring that the liquefaction constitutive model used in the numerical simulation has a consistent liquefaction resistance with the simplified liquefaction analysis procedure. In this study, two frequently used liquefaction constitutive models (Finn model and UBCSAND model) were calibrated by fitting the liquefaction triggering curves of most used simplified liquefaction analysis procedures (NCEER, HBF, JRA96, and T-Y procedures) in Taiwan via FLAC program. In addition, the responses of two calibrated models were compared and discussed to provide guidelines for selecting an appropriate liquefaction constitutive model in future projects.


2014 ◽  
Vol 953-954 ◽  
pp. 1638-1642
Author(s):  
Ai Qing Liu ◽  
Jian Zhang ◽  
Peng Cheng ◽  
Yu Hai Zhang

Prestress is a key parameter in bolting, while the cohesive force of layers in the compound roof strata is low and prone to separation, causing the prestress proliferation very poor. With the method of numerical simulation analysis,the location of separation in compound roof to affect the performance of bolting support was researched. It is concluded the roof separation in the edge of anchorage zone, the prestress field superpose, but is away from the deep surrounding rock and shows poor stability,however the role of cable can make up for the defect of rockbolts support. It has been found the highly prestressed strength bolting system adapts to the compound roof.


2013 ◽  
Vol 631-632 ◽  
pp. 518-523 ◽  
Author(s):  
Xiang Li ◽  
Min You

Owing to the lack of a good theory method to obtain the accurate equivalent elastic constants of hexagon honeycomb sandwich structure’s core, the paper analyzed mechanics performance of honeycomb sandwich structure’s core and deduced equivalent elastic constants of hexagon honeycomb sandwich structure’s core considering the wall plate expansion deformation’s effect of hexagonal cell. And also a typical satellite sandwich structure was chose as an application to analyze. The commercial finite element program ANSYS was employed to evaluate the mechanics property of hexagon honeycomb core. Numerical simulation analysis and theoretical calculation results show the formulas of equivalent elastic constants is correct and also research results of the paper provide theory basis for satellite cellular sandwich structure optimization design.


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