Javascript must be enabled to continue!
ANN Laser Hardening Quality Modeling Using Geometrical and Punctual Characterizing Approaches
View through CrossRef
Maximum hardness and hardened depth are the responses of interest in relation to the laser hardening process. These values define heat treatment quality and have a direct impact on mechanical performance. This paper aims to develop models capable of predicting the shape of the hardness profile depending on laser process parameters for controlling laser hardening quality (LHQ), or rather the response values. An experimental study was conducted to highlight hardened profile sensitivity to process input parameters such as laser power (PL), beam scanning speed (VS) and initial hardness in the core (HC). LHQ modeling was conducted by modeling attributes extracted from the hardness profile curve using two effective techniques based on the punctual and geometrical approaches. The process parameters with the most influence on the responses were laser power, beam velocity and initial hardness in the core. The obtained results demonstrate that the geometrical approach is more accurate and credible than the punctual approach according to performance assessment criteria.
Title: ANN Laser Hardening Quality Modeling Using Geometrical and Punctual Characterizing Approaches
Description:
Maximum hardness and hardened depth are the responses of interest in relation to the laser hardening process.
These values define heat treatment quality and have a direct impact on mechanical performance.
This paper aims to develop models capable of predicting the shape of the hardness profile depending on laser process parameters for controlling laser hardening quality (LHQ), or rather the response values.
An experimental study was conducted to highlight hardened profile sensitivity to process input parameters such as laser power (PL), beam scanning speed (VS) and initial hardness in the core (HC).
LHQ modeling was conducted by modeling attributes extracted from the hardness profile curve using two effective techniques based on the punctual and geometrical approaches.
The process parameters with the most influence on the responses were laser power, beam velocity and initial hardness in the core.
The obtained results demonstrate that the geometrical approach is more accurate and credible than the punctual approach according to performance assessment criteria.
Related Results
Laser Cladded Surface Hardening Coating With Gradient of Mechanical Properties
Laser Cladded Surface Hardening Coating With Gradient of Mechanical Properties
The present dissertation “Laser Cladded Surface Hardening Coating with Gradient of Mechanical Properties” is devoted to the research of laser cladding process for obtaining high qu...
Arriving on Time: Punctuality in Structures, Isomorphisms and 1-Decidability
Arriving on Time: Punctuality in Structures, Isomorphisms and 1-Decidability
<p><strong>This thesis contributes to the area of computable structure theory. In particular, it contributes to the study of punctual structures; the systematic study o...
Comparison of Contact Fatigue Strength of Carbon Case Hardening and Laser Hardening of Gears
Comparison of Contact Fatigue Strength of Carbon Case Hardening and Laser Hardening of Gears
Carbon case hardening of gears is a widely used surface treatment in the manufacturing industry. However, an evident shortcoming is that gear distortion after carbon case hardening...
Hardening Efficiency and Microstructural Changes during Laser Surface Hardening of 50CrMo4 Steel
Hardening Efficiency and Microstructural Changes during Laser Surface Hardening of 50CrMo4 Steel
Laser surface hardening is an attractive heat treatment solution used to selectively enhance the surface properties of components by phase transformation. A quantitative parameter ...
Double resonant sum-frequency generation in an external-cavity under high-efficiency frequency conversion
Double resonant sum-frequency generation in an external-cavity under high-efficiency frequency conversion
In recent years, more than 90% of the signal laser power can be up-converted based on the high-efficiency double resonant external cavity sum-frequency generation (SFG), especially...
Excimer Laser Micromachining of MEMS Materials
Excimer Laser Micromachining of MEMS Materials
Conventional photolithography-based microfabrication techniques are limited to two-dimensional fabrication and only particular materials can be used. Excimer laser micromachining e...
Laser show safety for smaller shows: The ILDA category a laser show standard
Laser show safety for smaller shows: The ILDA category a laser show standard
The International Laser Display Association has developed a “Category A Standard” for laser shows that ILDA considers to be generally recognized as safe under the conditions of the...
Development of a high intensity Mid-Ir OPCPA pumped by a HO:YLF amplifier
Development of a high intensity Mid-Ir OPCPA pumped by a HO:YLF amplifier
The continuous development of laser sources delivering ultra-short light pulses underpins much of the current progress in experimental science, particularly in the domain of physic...

