Nitriding of car engine parts using ZeroFlow method

This article presents new method of controlled gas nitriding called ZeroFlow, which is used for nitriding of selected car engine parts. Parts such as crankshafts, camshafts, piston rings, poppet valve springs and discs, piston pins or nozzles for unit injectors was nitrided with ZeroFlow method so f...

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Main Authors: Jagoda KOWALSKA, Leszek MAŁDZIŃSKI
Format: Article
Language:English
Published: Polskie Towarzystwo Naukowe Silników Spalinowych/Polish Scientific Society of Combustion Engines 2016-11-01
Series:Combustion Engines
Subjects:
Online Access:http://www.journalssystem.com/cen/,116456,0,2.html
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spelling doaj-a76d05a25a6f4a53b4136e5113141bdf2020-12-21T12:47:44ZengPolskie Towarzystwo Naukowe Silników Spalinowych/Polish Scientific Society of Combustion EnginesCombustion Engines2300-98962658-14422016-11-0116743710.19206/ CE-2016-401116456Nitriding of car engine parts using ZeroFlow methodJagoda KOWALSKALeszek MAŁDZIŃSKIThis article presents new method of controlled gas nitriding called ZeroFlow, which is used for nitriding of selected car engine parts. Parts such as crankshafts, camshafts, piston rings, poppet valve springs and discs, piston pins or nozzles for unit injectors was nitrided with ZeroFlow method so far. Through the use of simulation models it was possible to develop the specially dedicated process with specific parameters for each of this parts; it allows forming of nitrided layer with strictly expected properties: required phase structure with thicknesses of each zone occurs in it and required hardness distribution. Moreover, through the use of simulation models this layers were obtained in in the shortest possible time, which is connected with the lowest energy consumption; therefore, nitriding process using ZeroFlow method is both economical and environmentally friendly. This article will discuss the essence of controlled gas nitriding process, with an emphasis on the influence of process parameters on results of nitriding process. This information are the basis to understand the issue of the kinetics of nitrided layer growth, and as it follows – for its practical application in designing, regulation and control of nitriding processes using simulation models (simulator of the kinetics of nitrided layer growth). Designing of ZeroFlow nitriding processes on the basis of the kinetics of nitrided layer will be shown on the example of nitriding of crankshafts for sports car engines.http://www.journalssystem.com/cen/,116456,0,2.htmlheat treatmentcontrolled gas nitridingzeroflow methodnitrided layerkinetics
collection DOAJ
language English
format Article
sources DOAJ
author Jagoda KOWALSKA
Leszek MAŁDZIŃSKI
spellingShingle Jagoda KOWALSKA
Leszek MAŁDZIŃSKI
Nitriding of car engine parts using ZeroFlow method
Combustion Engines
heat treatment
controlled gas nitriding
zeroflow method
nitrided layer
kinetics
author_facet Jagoda KOWALSKA
Leszek MAŁDZIŃSKI
author_sort Jagoda KOWALSKA
title Nitriding of car engine parts using ZeroFlow method
title_short Nitriding of car engine parts using ZeroFlow method
title_full Nitriding of car engine parts using ZeroFlow method
title_fullStr Nitriding of car engine parts using ZeroFlow method
title_full_unstemmed Nitriding of car engine parts using ZeroFlow method
title_sort nitriding of car engine parts using zeroflow method
publisher Polskie Towarzystwo Naukowe Silników Spalinowych/Polish Scientific Society of Combustion Engines
series Combustion Engines
issn 2300-9896
2658-1442
publishDate 2016-11-01
description This article presents new method of controlled gas nitriding called ZeroFlow, which is used for nitriding of selected car engine parts. Parts such as crankshafts, camshafts, piston rings, poppet valve springs and discs, piston pins or nozzles for unit injectors was nitrided with ZeroFlow method so far. Through the use of simulation models it was possible to develop the specially dedicated process with specific parameters for each of this parts; it allows forming of nitrided layer with strictly expected properties: required phase structure with thicknesses of each zone occurs in it and required hardness distribution. Moreover, through the use of simulation models this layers were obtained in in the shortest possible time, which is connected with the lowest energy consumption; therefore, nitriding process using ZeroFlow method is both economical and environmentally friendly. This article will discuss the essence of controlled gas nitriding process, with an emphasis on the influence of process parameters on results of nitriding process. This information are the basis to understand the issue of the kinetics of nitrided layer growth, and as it follows – for its practical application in designing, regulation and control of nitriding processes using simulation models (simulator of the kinetics of nitrided layer growth). Designing of ZeroFlow nitriding processes on the basis of the kinetics of nitrided layer will be shown on the example of nitriding of crankshafts for sports car engines.
topic heat treatment
controlled gas nitriding
zeroflow method
nitrided layer
kinetics
url http://www.journalssystem.com/cen/,116456,0,2.html
work_keys_str_mv AT jagodakowalska nitridingofcarenginepartsusingzeroflowmethod
AT leszekmałdzinski nitridingofcarenginepartsusingzeroflowmethod
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