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- W2327837054 abstract "To analyse cutting mechanics, a new geometrical model was assumed for the deformation of a chip, and called a complex model of chip formation in Report 1.This model has to be ensured by experiments whether it is useful for the practical cutting process or not. For this purpose the strain-circle technique was applied to analyse the strains of orthogonal machining.The strain-circles were stamped on the inner side of two laminate lead plates, and were deformed to ellipses with the progress of orthogonal machining, and secondly flow-deformations took place at the side of tool-chip contact by a frictional force.After stopping machining, the major axes and the minor axes of ellipses were measured by a tool microscope, and shear strains were calculated from the next equations when the strain-circles became ellipses.1+e1=√ γs2/4 +1+γs/2 =a/R1+e2_=√ γs2/4 +1-γs/2 =b/Rπa, b =πR2i.e.γs=e1-e2=1/R(a-b)=R/b-b/RThe strain-circle technique ensured that the orthogonal machining of two laminate plates could be treated approximately as a typical problem of plain-strain, and also that the complex model of chip formation was better for making out orthogonal machining mechanics than a simple model of chip formation.The experiments of the orthogonal machining with the strain-circle technique were performed at very low cutting speed of 50mm/min by a milling machine while the orthogonal machining of lead cylinders at the cutting speed of 4m/min by a lathe.The shear strain in both cases was very approximate, and it was found that the straincircle technique at very low cutting speed was useful to analyse the practical cutting mechanics." @default.
- W2327837054 created "2016-06-24" @default.
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- W2327837054 date "1963-01-01" @default.
- W2327837054 modified "2023-10-18" @default.
- W2327837054 title "Report 2 : Analysis of Cutting Strain" @default.
- W2327837054 doi "https://doi.org/10.2493/jjspe1933.29.129" @default.
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