Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Hardening of Cylindrical Bars with Water Impinging Jet Quenching Technique

View through CrossRef
Hardening of carbon steel products by austenitization and immersion in a quenching medium is a widely used heat treatment to obtain a hard and strong martensitic structure. To avoid the undesired consequences, such as residual stresses or insufficient hardening depth, the cooling rates must be accurately measured and controlled. This can be achieved using the impinging water jet quenching technique. The aim of this work is to perform hardening of four low‐alloyed 70 mm cylindrical carbon steel bars, using impinging water jet quenching technique with different jet flow rates, and to analyze its effect on thermal evolution and residual stresses. The temperature evolution during quenching experiments is recorded and used as input to a comprehensive quenching model to predict phase transformations, final hardness, and residual stresses of cylindrical bars. All four quenching experiments result in a fully hardened martensitic state. Furthermore, a decrease in jets’ flow rate, within a certain interval, results in different thermal histories and in lower compressive residual stresses on the surface. The results from quenching simulations show promising hardness, microstructure, and residual stress predictions that are validated by hardness measurements, optical microscopy, and residual stress analysis using X‐Ray diffraction method.
Title: Hardening of Cylindrical Bars with Water Impinging Jet Quenching Technique
Description:
Hardening of carbon steel products by austenitization and immersion in a quenching medium is a widely used heat treatment to obtain a hard and strong martensitic structure.
To avoid the undesired consequences, such as residual stresses or insufficient hardening depth, the cooling rates must be accurately measured and controlled.
This can be achieved using the impinging water jet quenching technique.
The aim of this work is to perform hardening of four low‐alloyed 70 mm cylindrical carbon steel bars, using impinging water jet quenching technique with different jet flow rates, and to analyze its effect on thermal evolution and residual stresses.
The temperature evolution during quenching experiments is recorded and used as input to a comprehensive quenching model to predict phase transformations, final hardness, and residual stresses of cylindrical bars.
All four quenching experiments result in a fully hardened martensitic state.
Furthermore, a decrease in jets’ flow rate, within a certain interval, results in different thermal histories and in lower compressive residual stresses on the surface.
The results from quenching simulations show promising hardness, microstructure, and residual stress predictions that are validated by hardness measurements, optical microscopy, and residual stress analysis using X‐Ray diffraction method.

Related Results

Influence of an Impinging Jet on Sedimented Debris
Influence of an Impinging Jet on Sedimented Debris
The presented work is part of a joint research project performed in cooperation between the Forschungszentrum Dresden and University of Applied Sciences Zittau/Goerlitz. The paper ...
Disentangling jet modification in jet simulations and in Z+jet data
Disentangling jet modification in jet simulations and in Z+jet data
AbstractThe selection of jets in heavy-ion collisions based on theirpTafter jet quenching is known to bias towards jets that lost little energy in the quark-gluon plasma. In this w...
Effect of Jet Shape of Square Array of Multi-Impinging Jets on Heat Transfer
Effect of Jet Shape of Square Array of Multi-Impinging Jets on Heat Transfer
It is necessary to increase turbine inlet temperature to improve the performance of the aircraft gas turbine engine. Therefore, effective cooling techniques are still required. The...
Cavitation in Submerged Water Jet at High Jet Pressure
Cavitation in Submerged Water Jet at High Jet Pressure
Recent industrial applications have unfolded a promising prospect for submerged water jet. Apart from widely acknowledged water jet properties, submerged water jet is characterized...
Effect of Cross-Shaped Circular Jet Array on Impingement Heat Transfer
Effect of Cross-Shaped Circular Jet Array on Impingement Heat Transfer
The purpose of this study is to clarify heat transfer characteristics for the high cooling performance with multiple jet impingement. In the present study, the influence of the int...
Comprehensive stiffness analysis of the cylindrical roller bearing for aircraft engines considering the radial clearance
Comprehensive stiffness analysis of the cylindrical roller bearing for aircraft engines considering the radial clearance
Purpose The rotor system supported by the cylindrical roller bearings is widely used in various fields such as aviation, space and machinery due to its importance. In the study of ...
Study on the image recognition of ammonia ignition process induced by methanol micro-jet
Study on the image recognition of ammonia ignition process induced by methanol micro-jet
<div class="section abstract"><div class="htmlview paragraph">Ammonia is regarded as a possible carbon-free energy source for engines, drawing more and more attention. ...
Passive control of coaxial jet with supersonic primary jet and sonic secondary jet
Passive control of coaxial jet with supersonic primary jet and sonic secondary jet
The mixing enhancement of a coaxial jet with a Mach 1.4 primary jet and sonic secondary jet, at different convective Mach numbers, is presented in this study. Rectangular tabs of a...

Back to Top