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    Investigation of reinforced sic particles percentage on machining force of metal matrix composite

    , Article Modern Applied Science ; Volume 6, Issue 8 , 2012 , Pages 9-20 ; 19131844 (ISSN) Fathipour, M ; Zoghipour, P ; Tarighi, J ; Yousefi, R ; Sharif University of Technology
    MAS  2012
    Abstract
    In this study two-dimensional finite element models of Al/SiC metal matrix composites (MMC) by using of ABAQUS Explicit software are investigated. Chip formations and machining forces for three types of MMC with 5, 15 and 20% of SiC reinforcement particles were studied and compared with experimental data. The resulted chips in simulation and the generated chips in experiments have both continuous and saw tooth in appearance. On the other hand, the variation of the cutting forces with the cutting time in simulation and experiment have fluctuating diagram. This is due to the interaction between cutting tool and SiC particles during chip formation. ABAQUS explicit software was used for... 

    Investigation of cutting model in machining of Al/SiC p metal matrix composite

    , Article Applied Mechanics and Materials, 18 November 2011 through 20 November 2011, Shenzhen ; Volume 117-119 , 2012 , Pages 1465-1470 ; 16609336 (ISSN) ; 9783037852804 (ISBN) Nikouei, S. M ; Kouchakzadeh, M. A ; Yousefi, R ; Kadivar, M. A ; Sharif University of Technology
    2012
    Abstract
    Prediction of shear plane angle is a way for prediction of the mechanism of chip formation, machining forces and so on. In this study, Merchant and Lee-Shaffer theories are used to predict the shear plane angles and cutting forces in machining of Al/SiC p MMC. The experimental cutting forces are compared with the calculated cutting force based on shear plane angles extracted from Merchant and Lee-Shaffer theories. The variation of these cutting forces with cutting speed, feed rate and depth of cut has been discussed. The results show that Merchant theory may be used as a good method for prediction of chip formation in machining of Al/SiC p MMC  

    Cutting model in machining of Al/SiC p metal matrix composite

    , Article Advanced Materials Research, 15 December 2011 through 18 December 2011, Hong Kong ; Volume 410 , 2012 , Pages 291-297 ; 10226680 (ISSN) ; 9783037853160 (ISBN) Nikouei, S. M ; Yousefi, R ; Kouchakzadeh, M. A ; Kadivar, M. A ; Sharif University of Technology
    2012
    Abstract
    Prediction of shear plane angle is a way for prediction of the mechanism of chip formation, machining forces and so on. In this study, Merchant and Lee-Shaffer theories are used for prediction of shear plane angles and cutting forces in machining of Al/SiC p MMC with 20% of SiC as reinforcement particles. The experimental cutting forces are compared with the calculated cutting force based on shear plane angles extracted from Merchant and Lee-Shaffer theories. The variation of these cutting forces with cutting speed, feed rate and depth of cut has been discussed. The results showed that Merchant theory may be used as a good method for prediction of chip formation in machining of Al/SiC p MMC  

    Chatter Phenomena Prediction in Two-dimensional Milling Process from Chip Formation by Using Finite Element Method

    , M.Sc. Thesis Sharif University of Technology Tavassoli, Meysam (Author) ; Movahhedy, Mohammad Reza (Supervisor)
    Abstract
    Chattering in cutting process is one of the destructive phenomena in machining, which results in ripple of workpiece surfaces. In this phenomenon, the displacement of the tool tip moves towards instability and the tool vibration continues. Eventually, the tool jumps or breaks out with relatively large shear forces, which leads to a reduction in the rate of production and machining. Since machining processes are very widespread, phenomenological studies of chatter have progressed in the field of modeling and empirical experiments. Research in the field of modeling is mainly intended to examine the dynamics of the tool in two ways: analytic and finite element. In these methods, there are... 

    Finite element simulation of ultrasonic-assisted machining: a review

    , Article International Journal of Advanced Manufacturing Technology ; Volume 116, Issue 9-10 , 2021 , Pages 2777-2796 ; 02683768 (ISSN) Lotfi, M ; Akbari, J ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2021
    Abstract
    Ultrasonic-assisted machining is an advanced method which could improve the process of machining. Besides, simulation modeling process is a method to help the researchers analyze different aspects of the process with more details in a shorter time. Simulation of ultrasonic-assisted machining is also a field of research that is of interest to researchers working in the field of machining processes. In recent years, a variety of papers have been published where cutting forces, chip formation, tool wear and temperature, and microstructure changes were simulated. That being the case, a review paper is required to represent the advances implemented by researchers in the simulation of... 

    Investigation of thermal effects on machining chatter based on FEM simulation of chip formation

    , Article CIRP Journal of Manufacturing Science and Technology ; Vol. 7, issue. 1 , 2014 , p. 1-10 Hajmohammadi, M. S ; Movahhedy, M. R ; Moradi, H ; Sharif University of Technology
    Abstract
    In this paper, thermo mechanical finite element analysis of orthogonal machining process with a flexible tool is carried out to study the dynamic behaviour of the machining system and its stability against chatter vibration. By combining the simulation of chip formation in metal cutting with the dynamic phenomena leading to chatter development, the influence of various phenomena, including thermal effects resulting from friction and plastic deformations on the stability of the process are investigated. The novelty of this model is in its ability to evaluate the effect of temperature rise in the cutting zone on the stability of cutting process. Process stability is analyzed and compared for... 

    Investigation of Chip Formation Theories in Machining of Al/SiCp Metal Matrix Composite

    , M.Sc. Thesis Sharif University of Technology Nikouei, Mohammad (Author) ; Koochakzadeh, Mohammad Ali (Supervisor) ; Yousefi, Reza (Supervisor)
    Abstract
    Prediction of shear plane angle is a way for prediction of the mechanism of chip formation, machining forces and so on. In this study, Merchant, Corrected Merchant, Lee and Shaffer, Lee and Shaffer with Built up Edge, Corrected Lee and Shaffer and Slip line theories are used for prediction of shear plane angles and cutting forces in machining of Al/SiCp metal matrix composite. The experimental cutting forces are compared with the calculated cutting force based on shear plane angles extracted from Merchant, Corrected Merchant, Lee and Shaffer, Lee and Shaffer with Built up Edge, Corrected Lee and Shaffer and Slip line theories. The variation of these cutting forces with cutting speed, feed... 

    Study of Dry and Cryogenic Milling of Porous Titanium with the Purpose of Keeping Pores Open

    , M.Sc. Thesis Sharif University of Technology Goldoust, Mohaddeseh (Author) ; Akbari, Javad (Supervisor)
    Abstract
    Today, titanium and its alloys are the most widely used metals in manufacturing of biomedical implants. But unfortunately, most of bulk (nonporous) titanium alloys implants are facing problems such as stress shielding. If titanium is produced in such a way that has sufficient amount of porosity on the surface and inside of the sample, it provides sufficient space for connection and proliferation of new bone tissues and transmission of body fluids. However, machining of porous titanium causes pore closing. Due to the importance of recognizing the machining mechanism of materials such as porous titanium for manufacturing of implants, in this study micromachining of porous titanium with the... 

    Investigation of thermal effects on machining chatter using FEM simulation of chip formation

    , Article Procedia CIRP ; Volume 1, Issue 1 , 2012 , Pages 50-55 ; 22128271 (ISSN) Hajmohammadi, M. S ; Movahhedy, M. R ; Sharif University of Technology
    2012
    Abstract
    Chatter vibration is a major cause of limitations in increasing material removal rate in machining. Machining chatter is caused by the interaction between tool and work-piece. Various nonlinear phenomena in the machining process affect the occurrence of chatter. Finite element simulation of chip formation allows for incorporation of various factors in the chip formation process. It can therefore be used to simulate the occurrence of chatter in practical conditions and to predict the conditions that lead to stable cutting. In this paper, a one degree of freedom dynamic model of the cutting tool is used to simulate the interaction of machining dynamics with the thermo-mechanical chip formation... 

    Application of FEM simulation of chip formation to stability analysis in orthogonal cutting process

    , Article Journal of Manufacturing Processes ; Volume 14, Issue 3 , 2012 , Pages 188-194 ; 15266125 (ISSN) Mahnama, M ; Movahhedy, M. R ; Sharif University of Technology
    Elsevier  2012
    Abstract
    Models for chatter prediction in machining often use a mechanistic force model that calculate the force as the product of a material dependent cutting constant and chip area. However, in reality, the forces are the result of complex interaction between the tool and the chip, and are affected by many factors. The effects of these complex, and often nonlinear, factors on the machining dynamics may only be included in chatter prediction if the chip formation process is simulated concurrently with simulation of the machining dynamics. In this paper, finite element simulation of the chip formation process is combined with simulation of chatter dynamics and the inter-relationship between the chip... 

    FEM analysis of single grit chip formation in creep-feed grinding of Inconel 718 superalloy

    , Article Advanced Materials Research, 18 September 2011 through 21 September 2011, Stuttgart ; Volume 325 , 2011 , Pages 128-133 ; 10226680 (ISSN) ; 9783037852316 (ISBN) Zahedi, A ; Akbari, J ; Sharif University of Technology
    2011
    Abstract
    Recent advances in materials science have necessitated the development and understanding of manufacturing processes for safe and repeatable utilization. Grinding is shown to be a promising material removal process especially for brittle and hard to cut materials such as superalloys. Grinding has always been associated with analysis and modeling complications regarding its nature which has limited its extension and reliability of use. The first step in analysis of grinding is considering the action of a single abrasive grit on workpiece surface. In this work the action of a single CBN abrasive grit in creep-feed grinding process of Inconel 718 superalloy is modeled and analyzed using a 3D FEM... 

    Prediction of machining chatter based on FEM simulation of chip formation under dynamic conditions

    , Article International Journal of Machine Tools and Manufacture ; Volume 50, Issue 7 , July , 2010 , Pages 611-620 ; 08906955 (ISSN) Mahnama, M ; Movahhedy, M. R ; Sharif University of Technology
    2010
    Abstract
    Machining chatter is an inherently nonlinear phenomenon that is affected by many parameters such as cutting conditions, tool geometry e.g., nose radius and clearance angle and frictional conditions at the tool/workpiece interface. Models for chatter prediction often ignore nonlinearities or introduce them through simple models for friction and geometry. In particular, the effect of chiptool interaction on the occurrence of chatter is not investigated thoroughly. This paper presents a novel approach for prediction of chatter vibration and for investigation of the effects of various conditions on the onset of chatter. This approach uses finite element simulation to investigate the...