To study heat transfer characteristics of medium carbon steel during polymer quenching

August 2020
Vol-6, Issue-4
Paper ID: 12517
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Mechanical Engineering
Keywords
Heat transfer constant distortion cracking quenching tensile stresses microstructure.
Abstract
After heat treatment Steel elements ar typically quenched in forced gas, oil or water flow to enhance mechanical properties and improve product life. throughout the extinguishing method, heat is transferred quickly from the new metal part to the encircling medium and therefore the fast temperature drop that causes part transformation and deformation within the hot metal part. This fast heat transfer in extinguishing method offers rise distortion, cracking and high residual stresses. to reduce such issues whereas rising mechanical properties, it has to optimize {the method|the method} for each half pure mathematics and extinguishing process style. during this work is concerning getting correct thermal boundary conditions, i.e. HTC distribution. The Medium steel material model behavior throughout extinguishing is to be determined and study the warmth transfer characteristics along side changes in microstructure of steel specimen. the info obtained by experimental work are analyzed and compared with the results from CFD analysis therefore on propose the advance within the existing method to cut back the time and value with the optimized material properties.

Author Information

# Name Institute / Affiliation
1 Shilpa Bhagwat Boraste Matoshri College of Engineering & Research Centre,nashik
2 V. S. Daund Matoshri College of Engineering & Research Centre,nashik

How to Cite

Use the following formats to cite this article in your research.

APA Style
Boraste, Shilpa Bhagwat & Daund, V. S. (2020). To study heat transfer characteristics of medium carbon steel during polymer quenching. International Journal of Advance Research and Innovative Ideas In Education, 6(4), 1659-1664.
MLA Style
Boraste, Shilpa Bhagwat, and V. S. Daund. "To study heat transfer characteristics of medium carbon steel during polymer quenching." International Journal of Advance Research and Innovative Ideas In Education, vol. 6, no. 4, 2020, pp. 1659-1664.
IEEE Style
Shilpa Bhagwat Boraste and V. S. Daund, "To study heat transfer characteristics of medium carbon steel during polymer quenching," International Journal of Advance Research and Innovative Ideas In Education, vol. 6, no. 4, pp. 1659-1664, 2020.
Vancouver Style
Boraste Shilpa Bhagwat, Daund V. S.. To study heat transfer characteristics of medium carbon steel during polymer quenching. International Journal of Advance Research and Innovative Ideas In Education. 2020;6(4):1659-1664.
Harvard Style
Boraste, Shilpa Bhagwat & Daund, V. S. (2020) 'To study heat transfer characteristics of medium carbon steel during polymer quenching', International Journal of Advance Research and Innovative Ideas In Education, 6(4), pp. 1659-1664.
Chicago Style
Boraste, Shilpa Bhagwat and V. S. Daund. "To study heat transfer characteristics of medium carbon steel during polymer quenching." International Journal of Advance Research and Innovative Ideas In Education 6, no. 4 (2020): 1659-1664.
Turabian Style
Boraste, Shilpa Bhagwat and V. S. Daund. "To study heat transfer characteristics of medium carbon steel during polymer quenching." International Journal of Advance Research and Innovative Ideas In Education 6, no. 4 (2020): 1659-1664.

Export Citation

Related Research

Recent Trends in Optimization of Process Parameters of TIG Welding Joints
Saurabh Gandhe 2026 Mechanican Engineering
PDF Unavailable
Designing And Manufacturing Of Mecanum Wheel
Pradyot Tajne et al. 2026 Engineering
PDF Unavailable
DESIGN AND FABRICATION OF PADDY DRYING SYSTEM WITH CONTROLLED AIR CIRCULATION
LAKAVATH VINAY et al. 2026 MECHANICAL ENGINEERING
PDF Unavailable
Experimental, Design and Development of different punch and die for head light reflectors
Amrut Chandanshive et al. 2026 Mechanical Engineering
PDF Unavailable
Experimental Analysis of Aluminium Hybrid Material using Analytical and Experimental Method
Prathmesh Shinde et al. 2026 Mechanical Engineering
PDF Unavailable
Effect of Slight Pitch Difference on the Fatigue Life of Bolt
Aslam Sheikh et al. 2026 Mechanical Engineering
PDF Unavailable
Stress Concentration Analysis of Cut out Orientation of Plates by Finite Element Analysis
Mahesh Arun Dhole et al. 2026 Mechanical Engineering
PDF Unavailable
Reduction of the Weight of Air Conditioning by Static and Model Analysis
Aditya Pawar et al. 2026 Mechanical Engineering
PDF Unavailable
Design and analysis of Tractor trolley rear axle for Weight reduction
Akshay Kharat et al. 2026 Mechanical Engineering
PDF Unavailable