Previous Page  36 / 530 Next Page
Information
Show Menu
Previous Page 36 / 530 Next Page
Page Background

Actual Problems in Machine Building. 2016. N 3

Innovative Technologies

in Mechanical Engineering

____________________________________________________________________

36

16.

Лобанов Д.В., Янюшкин А.С.

Анализ конструктивных решений фрезерного

сборного инструмента для обработки композиционных материалов // Технология

машиностроения. – 2011. – № 5. – С. 20–25.

17. Анализ и рациональный выбор полимерных композиционных материалов для

изделий по их физико-механическим свойствам / Д.В. Лобанов, С.А. Сидоренко, Д.А.

Ющенко, А.В. Большешапова // Актуальные проблемы в машиностроении. – 2015. –№ 2. – С.

206–213.

SOFTWARE FOR AUTOMATING CHOICE OF RATIONAL COMPOSITE MATERIAL

Sidorenko S. A.,

Master’s Degree student, e-mail:

kheller.dzhim@mail.ru

Lobanov D. V.,

D.Sc.

(Engineering), Professor, e-mail:

mf_nauka@brstu.ru

Rychkov D. A.,

Ph.D. (Engineering), Associate Professor, e-mail:

dielektrik84@mail.ru

Bratsk State University, 40 Makarenko st., Bratsk, 665709, Russian Federation

Abstract

The article presents ways to improve the efficiency of the composites, which is proposed to

replace conventional construction and other materials in the field of engineering, where possible;

The need in structuring, organizing of composite data, and automation of the search operations,

analysis and decision-synthesized solutions of choice rational composite material; Revealed stages

of software development unit for the preparation of composite products manufacturing; It depicts an

algorithm which is based on multi-criteria analysis technique and rational selection object;

presented program product for rational choice of materials for their composition parameters

(density, tensile strength: tensile, compressive, bending modulus, cost, thermal conductivity, etc.)

under conditions of actual production; It describes the principle of software; reflects the prospects

for further implementation of the research results.

Keywords

Composite materials; preparation of production; automation; efficiency; rational choice; software

module