MATHEMATICAL MODEL OF THE MACHINING PROCESS FOR NON-RIGID CYLINDRICAL PRODUCTS MADE OF POLYMER COMPOSITES ACCORDING TO THE INTEGRATED KINEMATIC SCHEME OF CUTTING

Journal Title: Молодий вчений - Year 2017, Vol 6, Issue 46

Abstract

Polymer composites allow improving various designs in diverse fields of industry. However, a great spectrum of designs made of polymer composites have more elastic properties than those made of metals and their alloys, which complicates their machining, in particular that of cylindrical products, and the key instrument for assigning most advantageous technological parameters and rational modes of cutting for this class of products is mathematical modeling of the machining process. Thus, the article proposes a generalized mathematical model of the machining process for non-rigid cylindrical products according to the integrated kinematic scheme of cutting allowing to mutually compensate cutting forces and torque and to improve the machined surface quality and efficiency of the cutting process due to the provision of relevant terms of machining, with peak-to-peak amplitude of products in the cutting area not exceeding the size of roving, which reinforces the product in the directions of normal to the machined surface.

Authors and Affiliations

V. V. Samchuk, A. L. Prylypko

Keywords

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  • EP ID EP623839
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How To Cite

V. V. Samchuk, A. L. Prylypko (2017). MATHEMATICAL MODEL OF THE MACHINING PROCESS FOR NON-RIGID CYLINDRICAL PRODUCTS MADE OF POLYMER COMPOSITES ACCORDING TO THE INTEGRATED KINEMATIC SCHEME OF CUTTING. Молодий вчений, 6(46), 371-378. https://europub.co.uk/articles/-A-623839