Developing Algorithm for Technological Processes Optimization
Authors: Sultan-Zadeh N.M., Amirov F.G. | Published: 19.09.2013 |
Published in issue: #7(640)/2013 | |
Category: Technology and Process Machines | |
Keywords: automatic lines, technological process, processing step and working operations, single-cutter and single-side machines |
Synthesis method of a structural configuration by criterion of the maximum use of design capacity for given technological processes allows at technical project stage choosing the optimal structure that provides the design capacity of re-adjustable automatic lines. Automatic line means that the structural configuration, the flow structure of a switch, if necessary, at any level of the solution is carried out and machine is built in accordance with the different stages of technological processes. Research shows that the algorithm in this case is that, at the time of technological transition in order to check in advance with the maximum possibility for a tool that is performed on the block. The total number of block instruments shall be determined at this time, which is determined to carry out the design capacity. In the article the algorithmization of optimization of technological processes and tools is considered as well as optimization of the number of blocks. A method for optimization of technological processes by minimizing of technological equipment for the re-adjustable automatic lines is developed.
References
[1] Dem’ ianiuk F.S. Tekhnologicheskie osnovy potochno-avtomatizirovannogo proizvodstva [Technological bases of thread-aided manufacturing]. Moscow, Vysshaia shkola publ., 1968. 700 p.
[2] Balakshin B.S. Osnovy tekhnologii mashinostroeniia [Fundamental s of Mechanical Engineer ing] . Moscow, Mashinostroenie publ., 1969. 559 p.
[3] Sultan-zade N.M., Zagidul l in R.R. Povyshenie proizvoditel’nosti GPS putem optimizatsii raspisanii [Increase productivity by optimizing the scheduling of GPS]. Moscow, STIN publ., 1996, no. 12, pp. 9—13.
[4] Amirov F.G. Klassifikatsiia detalei po razmeram, sposobu postroeniia sistemy koordinat detali dlia geometricheskogo modelirovanie [Classification of parts by size, method of constructing a system of part coordinates for geometric simulation]. Izvestiya Vysshikh Uchebnykh Zavedenii. Mashinostroenie [Proceedings of Higher Educational Institutions. Маchine Building]. 2012, no. 8, pp. 32—35.
[5] Amirov F.G. Opt imizat s i ia rezhimov rezani ia tekhnologicheskikh perekhodov pri ikh posledovatel ’noi kontsentratsii na odnoi pozitsii [Optimization of the cutting process transitions in their consistent focus on one position]. Izvestiia Azerbaidzhanskogo Natsional’nogo Aerokosmicheskogo Agentstva [Proceedings of the Azerbaijan National Aerospace Agency]. 2013, no. 3, pp. 67—73.
[6] Sultan-zade N.M. Metod opt imizat siistrukturnoi komponovki avtomaticheskikh linii [The method of optimizing the structural layout of automatic lines]. Sbornik Sistemy upravleniia stankami i avtomaticheskie linii [Collection Management System control machine tools and transfer lines]. Moscow, VZMI publ., 1982, pp. 9—13.
[7] Sultan-zade N.M., Timkovskii V.G. Metod optimizatsii struktury odnopotochnykh avtomaticheskikh linii [The method of optimizing the structure of single-threaded transfer lines]. Sbornik Sistemy upravleniia stankami i avtomaticheskie linii [Collection Management System control machine tools and transfer lines]. Moscow, VZMI publ., 1983, pp. 93—96.
[8] Vengerovski i Iu. Ia., Volkov B.N. Klassifikator tekhnologicheskikh operatsii mashinostroeniia i priborostroeniia: 185 151 [Classifier manufacturing operations in Aerospace Engineering no. 185 151]. Moscow, Standart publ., 1987. 72 p.
[9] Koval ’chuk E.R., Kosov M.G., Mitrofanov V.G., Solomentsev Iu.M., Sultan-zade N.M., Skhirtladze A.G. Osnovy avtomatizatsii mashinostroitel’nogo proizvodstva [Fundamentals of automation engineering production]. Moscow, Vysshaia shkola, Mashinostroenie publ., 1999. 312 p.