Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery

The current task of engineering is to ensure the quality and reliability of critical parts of an extended cylindrical shape. This task is especially relevant in the production of power hydraulics parts for mining equipment (ME). One of the ways to ensure the required quality of the surface layer (SL...

Full description

Bibliographic Details
Main Authors: Blumenstein Valeriy, Krechetov Andrey, Mahalov Maksim, Ostanin Oleg
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/34/e3sconf_iims2020_03001.pdf
_version_ 1818331164374466560
author Blumenstein Valeriy
Krechetov Andrey
Mahalov Maksim
Ostanin Oleg
author_facet Blumenstein Valeriy
Krechetov Andrey
Mahalov Maksim
Ostanin Oleg
author_sort Blumenstein Valeriy
collection DOAJ
description The current task of engineering is to ensure the quality and reliability of critical parts of an extended cylindrical shape. This task is especially relevant in the production of power hydraulics parts for mining equipment (ME). One of the ways to ensure the required quality of the surface layer (SL) of mining equipment parts is the use of combined and joint methods of parts hardening by surface plastic deformation (SPD). Combined methods present sequential machining in which the methods used are separated into different technological steps, while the joint machining is carried out by concentrating the methods into one technological step (setup). The analysis shows that this approach, although it has a number of indisputable advantages, allowing an increase in the accuracy, machining efficiency and SL quality, is not without drawbacks that hinder the use of combined and joint machining methods in the manufacture of parts with IT 8-9 accuracy. The dimensional joint running- in method (DJR) is based on the original scheme of interaction between the cutting and deforming tools allowing a cylindrical surface with an accuracy of IT 8-9 and a roughness of no more than Ra 0.4 μm, hardened to a depth of 10 mm in one pass. The study shows the possibilities of a much greater SL deformation without its destruction than with the traditional SPD. The analysis of the structure and basic technologies has shown the feasibility of replacing a number of turning and grinding operations with one dimensional joint running-in operation. The design of the device for DJR based on a lathe is given. The completed economic calculations have established that it is possible to implement this method in the existing economic situation.
first_indexed 2024-12-13T13:15:30Z
format Article
id doaj.art-b096e87d6b044a89b9004cd249d74777
institution Directory Open Access Journal
issn 2267-1242
language English
last_indexed 2024-12-13T13:15:30Z
publishDate 2020-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj.art-b096e87d6b044a89b9004cd249d747772022-12-21T23:44:34ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011740300110.1051/e3sconf/202017403001e3sconf_iims2020_03001Dimensional Joint Running-in of Cylindrical Parts of Mining MachineryBlumenstein Valeriy0Krechetov Andrey1Mahalov Maksim2Ostanin Oleg3T.F. Gorbachev Kuzbass State Technical UniversityT.F. Gorbachev Kuzbass State Technical UniversityT.F. Gorbachev Kuzbass State Technical UniversityT.F. Gorbachev Kuzbass State Technical UniversityThe current task of engineering is to ensure the quality and reliability of critical parts of an extended cylindrical shape. This task is especially relevant in the production of power hydraulics parts for mining equipment (ME). One of the ways to ensure the required quality of the surface layer (SL) of mining equipment parts is the use of combined and joint methods of parts hardening by surface plastic deformation (SPD). Combined methods present sequential machining in which the methods used are separated into different technological steps, while the joint machining is carried out by concentrating the methods into one technological step (setup). The analysis shows that this approach, although it has a number of indisputable advantages, allowing an increase in the accuracy, machining efficiency and SL quality, is not without drawbacks that hinder the use of combined and joint machining methods in the manufacture of parts with IT 8-9 accuracy. The dimensional joint running- in method (DJR) is based on the original scheme of interaction between the cutting and deforming tools allowing a cylindrical surface with an accuracy of IT 8-9 and a roughness of no more than Ra 0.4 μm, hardened to a depth of 10 mm in one pass. The study shows the possibilities of a much greater SL deformation without its destruction than with the traditional SPD. The analysis of the structure and basic technologies has shown the feasibility of replacing a number of turning and grinding operations with one dimensional joint running-in operation. The design of the device for DJR based on a lathe is given. The completed economic calculations have established that it is possible to implement this method in the existing economic situation.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/34/e3sconf_iims2020_03001.pdf
spellingShingle Blumenstein Valeriy
Krechetov Andrey
Mahalov Maksim
Ostanin Oleg
Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery
E3S Web of Conferences
title Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery
title_full Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery
title_fullStr Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery
title_full_unstemmed Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery
title_short Dimensional Joint Running-in of Cylindrical Parts of Mining Machinery
title_sort dimensional joint running in of cylindrical parts of mining machinery
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/34/e3sconf_iims2020_03001.pdf
work_keys_str_mv AT blumensteinvaleriy dimensionaljointrunninginofcylindricalpartsofminingmachinery
AT krechetovandrey dimensionaljointrunninginofcylindricalpartsofminingmachinery
AT mahalovmaksim dimensionaljointrunninginofcylindricalpartsofminingmachinery
AT ostaninoleg dimensionaljointrunninginofcylindricalpartsofminingmachinery