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This paper investigates the effect of depth of cut on chip formation mechanism in machining of CFRP by the orthogonal cutting method.
This paper aims to investigate effects of friction modeling at the tool chip workpiece interfaces on chip formation process in predicting forces, temperatures and other field variables such as normal stress and shear stress on the tool by using advanced finite element (FE) simulation techniques.
Chavoshi et al. [17] studied the effect of anisotropy in silicon on chip formation mechanism.
The effect of feed rate on chip formation and tool wear was analyzed.
Many photomicrographs of very satisfactory results were obtained, showing that this device successfully served the purpose of providing a research instrument for the study on chip formation.
The works reveal the effects of various parameters, such as cutting speed, depth of cut, width of cut, crystal orientation, and rake angle, on chip formation and cutting force development.
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The signals taken by acoustic emission (AE) sensor represent the effect of chip formation on the tool state.
The influence of the tool and the fiber orientation on delamination, chip formation and surface quality were studied.
Initially, the temperature rise during drilling and the effect of temperature on the chip formation are investigated by contact and non-contact measurement techniques.
The paper focuses on mechanical properties, fracture mechanism and machinability of ceramic-reinforced MMCs, with significant emphasis on the chip formation mechanism considering different dominant effects, such as materials strengthening mechanisms, micro-structural effect, size effect and minimum chip thickness effect.
Accordingly, in this work the finite element analysis (FEA) is performed to investigate the influence of combination of tool flank and crater wear on the local or global variables such as cutting forces, tool temperature, chip formation on the one hand and the effects of the oxidized adhesion layer considered as oxide (Fe2O3/Fe3O4/FeO) on the heat transfer in cutting insert on the other hand.
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