Application of response surface methodology in determining the optimal wear properties of the titanium carbide reinforced AISI H13 hot working tool steel fabricated by pulsed laser method
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Surfaces, Coatings and Films,Surfaces and Interfaces,Condensed Matter Physics,General Chemistry
Reference24 articles.
1. Wear properties and microstructural analyses of Fe-based coatings with various WC contents on H13 die steel by laser cladding;Li;Surf. Coat. Technol.,2019
2. The thermal fatigue resistance of H13 steel repaired by a biomimetic laser remelting process;Cong;Mater. Des.,2014
3. Comprehensive Hard Materials, Newnes;Sarin,2014
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5. Microstructure and properties of Cu/TiB2 wear resistance composite coating on H13 steel prepared by in-situ laser cladding;Yang;Opt. Laser Technol.,2018
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1. Unveiling the complex wear sequence of a directed energy deposited 316L+WC hierarchical composite against alumina;Journal of Materials Research and Technology;2023-09
2. Wear Studies on Mg-5Sn-3Zn-1Mn-xSi Alloy and Parameters Optimization Using the Integrated RSM-GRGA Method;Silicon;2023-01-09
3. Influence of the Titanium Carbide Reinforcing Phase Content on Surface Geometric Structure Parameters of H13 Steel-Based Composite Materials Obtained by Selective Laser Melting;Advances in Science and Technology Research Journal;2022-12-01
4. Response surface and corrosion behavior analysis of nanosecond laser patterned ZK60A magnesium alloy;Optics & Laser Technology;2022-01
5. The Effects of Overlapping in Electrolytic Plasma Hardening on Wear Behavior of Carbon Steel;Transactions of the Indian Institute of Metals;2021-09-08
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