Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria

To ensure vehicle safety at the design stage, of primary importance is the development of a mathematical model, within whose framework it is possible to effectively predict crack initiation in the break drum of a braking wheeled vehicle. Considered is the contact fracture mechanics problem of the in...

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Main Author: Sahib A. Askerov
Format: Article
Language:English
Published: NAS of Ukraine, A. Pidhornyi Institute of Mechanical Engineering Problems 2020-06-01
Series:Journal of Mechanical Engineering
Subjects:
Online Access:https://journal-me.com/wp-content/uploads/2020/07/2020_2_4_eng.pdf
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spelling doaj-d50adaaa45b34ae0997e14526891d7ea2021-07-02T18:17:46ZengNAS of Ukraine, A. Pidhornyi Institute of Mechanical Engineering ProblemsJournal of Mechanical Engineering2709-29842709-29922020-06-01232334010.15407/pmach2020.02.033Wheeled Vehicle Brake Drum Computation by Fracture Toughness CriteriaSahib A. Askerov0https://orcid.org/0000-0002-5468-5303Azerbaijan Technical UniversityTo ensure vehicle safety at the design stage, of primary importance is the development of a mathematical model, within whose framework it is possible to effectively predict crack initiation in the break drum of a braking wheeled vehicle. Considered is the contact fracture mechanics problem of the initiation of a cohesive crack in the brake drum of a wheeled vehicle. It is believed that during the multiple braking of a wheeled vehicle, the vehicle material is destroyed during friction due to contact interaction. It is considered that the real surface of the brake drum is never absolutely smooth, but it has technological micro- or macroscopic irregularities that make the surface rough. A mathematical model is proposed, within whose framework crack initiation in the brake drum of a braking wheeled vehicle is described. The crack initiation zone is modeled as a region of weakened interparticle bonds of the material (pre-fracture zone). The location and size of the pre-fracture zone are not known in advance and must be determined in the process of solving the problem. Both the perturbation method and the apparatus of the theory of singular integral equations are used. The equilibrium problem of the wheeled vehicle brake drum with an embryonic crack reduces to the solution, in each approximation, of a nonlinear integro-differential equation of Cauchy type. When a collocation solution scheme is used in each approximation, the singular integral equation reduces to a system of nonlinear algebraic equations. To solve them, both the method of successive approximations and an iterative algorithm of elastic solutions are used. From the solution of the obtained system of equations, normal and tangential stresses in the pre-fracture zone are found. The condition for the initiation of a cohesive crack in the brake drum is formulated taking into account the criterion of the ultimate stretching of material bonds.https://journal-me.com/wp-content/uploads/2020/07/2020_2_4_eng.pdfbrake drumpre-fracture zonecrack initiationrough surface
collection DOAJ
language English
format Article
sources DOAJ
author Sahib A. Askerov
spellingShingle Sahib A. Askerov
Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria
Journal of Mechanical Engineering
brake drum
pre-fracture zone
crack initiation
rough surface
author_facet Sahib A. Askerov
author_sort Sahib A. Askerov
title Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria
title_short Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria
title_full Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria
title_fullStr Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria
title_full_unstemmed Wheeled Vehicle Brake Drum Computation by Fracture Toughness Criteria
title_sort wheeled vehicle brake drum computation by fracture toughness criteria
publisher NAS of Ukraine, A. Pidhornyi Institute of Mechanical Engineering Problems
series Journal of Mechanical Engineering
issn 2709-2984
2709-2992
publishDate 2020-06-01
description To ensure vehicle safety at the design stage, of primary importance is the development of a mathematical model, within whose framework it is possible to effectively predict crack initiation in the break drum of a braking wheeled vehicle. Considered is the contact fracture mechanics problem of the initiation of a cohesive crack in the brake drum of a wheeled vehicle. It is believed that during the multiple braking of a wheeled vehicle, the vehicle material is destroyed during friction due to contact interaction. It is considered that the real surface of the brake drum is never absolutely smooth, but it has technological micro- or macroscopic irregularities that make the surface rough. A mathematical model is proposed, within whose framework crack initiation in the brake drum of a braking wheeled vehicle is described. The crack initiation zone is modeled as a region of weakened interparticle bonds of the material (pre-fracture zone). The location and size of the pre-fracture zone are not known in advance and must be determined in the process of solving the problem. Both the perturbation method and the apparatus of the theory of singular integral equations are used. The equilibrium problem of the wheeled vehicle brake drum with an embryonic crack reduces to the solution, in each approximation, of a nonlinear integro-differential equation of Cauchy type. When a collocation solution scheme is used in each approximation, the singular integral equation reduces to a system of nonlinear algebraic equations. To solve them, both the method of successive approximations and an iterative algorithm of elastic solutions are used. From the solution of the obtained system of equations, normal and tangential stresses in the pre-fracture zone are found. The condition for the initiation of a cohesive crack in the brake drum is formulated taking into account the criterion of the ultimate stretching of material bonds.
topic brake drum
pre-fracture zone
crack initiation
rough surface
url https://journal-me.com/wp-content/uploads/2020/07/2020_2_4_eng.pdf
work_keys_str_mv AT sahibaaskerov wheeledvehiclebrakedrumcomputationbyfracturetoughnesscriteria
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