The Research of Processing Methods of Thin-Walled Waffle Constructions Taking into Account Technological Deformations

Article Preview

Abstract:

Technologists often notice deformations after machining waffle construction of the shell. In that case, size characteristics go beyond tolerance field. Waffle constructions are widely used in aviation and rocket science, because thin-walled constructions allow decreasing mass of products. Results of calculations of standard machining parameters are given in the article. Review of literature sources allow to summarize the main solutions of the problems with deformations. Author has made a conclusion of technological restrictions and field of application of selected approaches.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

157-162

Citation:

Online since:

February 2020

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2020 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Lizin V T, Pyatkin V A Design of thin-walled structures. M., Mechanical Engineering,, 1976, 408 p.

Google Scholar

[2] S V Grubyi, Cutting Characteristics in the End Milling of Stainless Steel // Russian Engineering Research. 2017. Vol. 37. No. 2. pp.125-133.

DOI: 10.3103/s1068798x17020083

Google Scholar

[3] A I Kondakov, Productivity as Measure of Multiproduct Metal Processing Production Efficiency // Procedia Engineering. 2016. Vol. 150. pp.987-991.

DOI: 10.1016/j.proeng.2016.07.151

Google Scholar

[4] V M Utenkov, A G Shirshov, P A Bykov, V V Osipov, Computer-Aided Modeling of the Milled Groove Side Surface, Journal of Machinery Manufacture and Reliability. 2017. Vol. 46. No. 6, p.589–595.

DOI: 10.3103/s1052618817060140

Google Scholar

[5] P A Eremeykin, A D Zhargalov, S S Gavriushin, A Software System for Thin-walled Parts Deformation Analysis, Advances in Artificial Systems for Medicine and Education. AIMEE 2017. Advances in Intelligent Systems and Computing, vol 658. pp.259-265.

DOI: 10.1007/978-3-319-67349-3_24

Google Scholar

[6] Zaitsev A M Working out of directions of increase of efficiency of technological preparation of manufacture of details and knots of rocket-space technics: the dissertation on competition of a scientific degree of the candidate of engineering sciences. Bauman Moscow State Technical University, Moscow, (2016).

Google Scholar

[7] Khairul Akmal Shamsuddin, A R, Ab-Kadir, Mohd Hairizal Osman, A comparison of milling cutting path strategies for thin-walled alluminium alloys fabrication. The International Journal of Engineering And Science (IJES) .2013.2 (3) .P.01-08.

Google Scholar

[8] Eremeykin P A, Zhargalova A D, Gavriushin S S Raschetno-eksperimental'naya otsenka tekhnologicheskikh deformatsii pri «myagkikh» rezhimakh tokarnoi obrabotki tonkostennykh detalei [Empirical evaluation of technological deformations for soft, cutting modes during thin-walled parts turning]. Obrabotka metallov (tekhnologiya, oborudovanie, instrumenty) = Metal Working and Material Science, 2018, vol. 20, no. 1, p.22–32.

DOI: 10.17212/1994-6309-2018-20.1-22-32

Google Scholar

[9] R Izamshah, S Ding, John P T Mo, Finite element analysis of machining thin-wall parts // Key Engineering Materials.2011.Vol.458. P.283-288.

DOI: 10.4028/www.scientific.net/kem.458.283

Google Scholar

[10] Y Huang, X Zhang, Y Xiong, Finite element analysis of machining thin-wall parts: error prediction and stability analysis // Finite Element Analysis - Applications in Mechanical Engineering.2012.Vol. 392. InTech. Rijeka. Crotia.

DOI: 10.5772/50374

Google Scholar

[11] A P Kuznetsov, V M Utenkov, A G Shirshov, Thermal Assessment of Metal-Cutting Machines // Russian Engineering Research. 2015. Vol. 35. No. 1. pp.8-13.

DOI: 10.3103/s1068798x15010177

Google Scholar