Structure and calculations of the test stand for piston hydraulic cylinder trials

When testing finished products of mechanical engineering, including hydraulic engineering, a large amount of energy has to be expended, which, as a rule, is irretrievably lost, while contaminating the environment. In this regard, the problem of energy saving in testing processes is given great atten...

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Main Authors: Rybak Alexander, Meskhi Besarion, Rudoy Dmitry, Olshevskaya Anastasiya, Pelipenko Alexey, Serdyukova Yuliya, Teplyakova Svetlana, Ovchinikov Ivan, Prutskov Alexey
Format: Article
Language:English
Published: EDP Sciences 2024-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/113/e3sconf_itese2024_03015.pdf
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author Rybak Alexander
Meskhi Besarion
Rudoy Dmitry
Olshevskaya Anastasiya
Pelipenko Alexey
Serdyukova Yuliya
Teplyakova Svetlana
Ovchinikov Ivan
Prutskov Alexey
author_facet Rybak Alexander
Meskhi Besarion
Rudoy Dmitry
Olshevskaya Anastasiya
Pelipenko Alexey
Serdyukova Yuliya
Teplyakova Svetlana
Ovchinikov Ivan
Prutskov Alexey
author_sort Rybak Alexander
collection DOAJ
description When testing finished products of mechanical engineering, including hydraulic engineering, a large amount of energy has to be expended, which, as a rule, is irretrievably lost, while contaminating the environment. In this regard, the problem of energy saving in testing processes is given great attention. One of the directions of energy saving in testing of hydraulic machines is energy recovery. The purpose of the work is to develop the structure and circuit diagram of the test bench for piston hydraulic cylinders, providing the recovery of part of the energy used for testing. Piston hydraulic cylinders are widely used in hydraulic drives of mobile machines and in various stationary technological equipment. Working time of a hydraulic cylinder up to failure is regulated by the manufacturer, as a rule the number of operation cycles or the total length of the hydraulic cylinder piston passage is indicated. In the process of achieving the goal proposed structure of the test bench for piston hydraulic cylinders and developed its schematic diagram. On the basis of application of the theory of volumetric stiffness the modeling of the stand functioning process is made. A computer program based on the SimInTech software package has been developed, preliminary calculations of the test bench functioning process have been made, and the characteristics of the test bench functioning have been obtained.
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institution OA Journals
issn 2267-1242
language English
publishDate 2024-01-01
publisher EDP Sciences
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series E3S Web of Conferences
spelling doaj-art-c8167c6ee35c423fa89818fce7901e702025-08-20T02:13:07ZengEDP SciencesE3S Web of Conferences2267-12422024-01-015830301510.1051/e3sconf/202458303015e3sconf_itese2024_03015Structure and calculations of the test stand for piston hydraulic cylinder trialsRybak Alexander0Meskhi Besarion1Rudoy Dmitry2Olshevskaya Anastasiya3Pelipenko Alexey4Serdyukova Yuliya5Teplyakova Svetlana6Ovchinikov Ivan7Prutskov Alexey8Don State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityWhen testing finished products of mechanical engineering, including hydraulic engineering, a large amount of energy has to be expended, which, as a rule, is irretrievably lost, while contaminating the environment. In this regard, the problem of energy saving in testing processes is given great attention. One of the directions of energy saving in testing of hydraulic machines is energy recovery. The purpose of the work is to develop the structure and circuit diagram of the test bench for piston hydraulic cylinders, providing the recovery of part of the energy used for testing. Piston hydraulic cylinders are widely used in hydraulic drives of mobile machines and in various stationary technological equipment. Working time of a hydraulic cylinder up to failure is regulated by the manufacturer, as a rule the number of operation cycles or the total length of the hydraulic cylinder piston passage is indicated. In the process of achieving the goal proposed structure of the test bench for piston hydraulic cylinders and developed its schematic diagram. On the basis of application of the theory of volumetric stiffness the modeling of the stand functioning process is made. A computer program based on the SimInTech software package has been developed, preliminary calculations of the test bench functioning process have been made, and the characteristics of the test bench functioning have been obtained.https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/113/e3sconf_itese2024_03015.pdf
spellingShingle Rybak Alexander
Meskhi Besarion
Rudoy Dmitry
Olshevskaya Anastasiya
Pelipenko Alexey
Serdyukova Yuliya
Teplyakova Svetlana
Ovchinikov Ivan
Prutskov Alexey
Structure and calculations of the test stand for piston hydraulic cylinder trials
E3S Web of Conferences
title Structure and calculations of the test stand for piston hydraulic cylinder trials
title_full Structure and calculations of the test stand for piston hydraulic cylinder trials
title_fullStr Structure and calculations of the test stand for piston hydraulic cylinder trials
title_full_unstemmed Structure and calculations of the test stand for piston hydraulic cylinder trials
title_short Structure and calculations of the test stand for piston hydraulic cylinder trials
title_sort structure and calculations of the test stand for piston hydraulic cylinder trials
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2024/113/e3sconf_itese2024_03015.pdf
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