Providing Cyclic Robustness of Bolted Joints in Case of Assembly with Implementation of Anaerobic Materials

Author:

Voyachek Igor Ivanovich1,Sága Milan2,Ságová Zuzana2,Kochetkov Denis Viktorovich1,Zverovschikov Vladimir Zinovievich1,Korshunov Aleksandr Ivanovich3

Affiliation:

1. Penza State University of Architecture and Construction

2. University of Žilina

3. Udmurt Federal Research Center of the Ural Branch of the Russian Academy of Sciences

Abstract

Stress concentration in thread roots and nonuniform load distribution along thread turn are the major disadvantages of bolted joints. Under changing cyclic loads on areas of high stress concentration crack formation and destruction of parts occur. In addition, the fretting corrosion processes activate in the areas of contact between thread turns. The purpose of the work is to increase rupture strength of bolted joints under the action of cyclic forces by decreasing stress concentration and reducing movements in contact zone of mating parts in case of assembly with implementation of anaerobic materials. Modelling of bearing strength of bolted joints is conducted according to finite element method, with theory of contact interaction between mating surfaces being used. The results of experimental research are given. Anaerobic materials which polymerize in area of thread contact of parts are used. It was established that assembly with implementation of anaerobic material allows unloading of thread turns because the part of external load is received by elastic layers of the polymerized anaerobic material. In this case the level and the concentration of stress in thread roots reduce, relative movements are decreased, the joint becomes more rigid and its cyclic robustness grows.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference23 articles.

1. I.A. Birger, G.B. Iosilevich, Threaded and flanged connections, Mashinostroenie, Moscow, 1990, 368 p.

2. I.A. Birger et al., Machine Part Strength Calculation: reference book / I.A. Birger, B.F. Shorr, G.B. Iosilevich, fourth ed., rev. and add., Mashinostroenie, Moscow, 1993, 640 p.

3. V.I. Anurev, Reference book for designer-mechanical engineer: In 3 v. V.2., eight ed., rev. and add., Ed. I.N. Zhestkova, Mashinostroenie, Moscow, 2001, 912 p.

4. M.N. Ivanov, Machine Parts: Textbook for High Schools, fifth ed., rev., Vysshaya shkola, Moscow, 1991, 383 p.

5. I.I. Voyachek, Integrated design of fixed couplings: monograph / I.I. Voyachek, Penza State University, Penza, 2006, 208 p.

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