Open Science Research Excellence

ICNTFT 2020 : International Conference on New Trends in Foundry Technologies

London, United Kingdom
January 20 - 21, 2020

Conference Code: 20UK01ICNTFT

Conference Proceedings

All submitted conference papers will be blind peer reviewed by three competent reviewers. The peer-reviewed conference proceedings are indexed in the Open Science Index, Google Scholar, Semantic Scholar, Zenedo, OpenAIRE, BASE, WorldCAT, Sherpa/RoMEO, and other index databases. Impact Factor Indicators.

Special Journal Issues

ICNTFT 2020 has teamed up with the Special Journal Issue on New Trends in Foundry Technologies. A number of selected high-impact full text papers will also be considered for the special journal issues. All submitted papers will have the opportunity to be considered for this Special Journal Issue. The paper selection will be carried out during the peer review process as well as at the conference presentation stage. Submitted papers must not be under consideration by any other journal or publication. The final decision for paper selection will be made based on peer review reports by the Guest Editors and the Editor-in-Chief jointly. Selected full-text papers will be published online free of charge.

Conference Sponsor and Exhibitor Opportunities

The Conference offers the opportunity to become a conference sponsor or exhibitor. To participate as a sponsor or exhibitor, please download and complete the Conference Sponsorship Request Form.

Important Dates

Abstracts/Full-Text Paper Submission Deadline   July 1, 2019
Notification of Acceptance/Rejection   July 16, 2019
Final Paper (Camera Ready) Submission & Early Bird Registration Deadline   December 21, 2019
Conference Dates   January 20 - 21, 2020

Important Notes

Please ensure your submission meets the conference's strict guidelines for accepting scholarly papers. Downloadable versions of the check list for Full-Text Papers and Abstract Papers.

Please refer to the Paper Submission GUIDE before submitting your paper.

Selected Conference Papers

1) Design for Metal Additive Manufacturing: An Investigation of Key Design Application on Electron Beam Melting
Wadea Ameen, Abdulrahman Al-Ahmari, Osama Abdulhameed
2) The Influence of Disturbances Generated by Arc Furnaces on the Power Quality
Z. Olczykowski
3) FEM Simulations to Study the Effects of Laser Power and Scan Speed on Molten Pool Size in Additive Manufacturing
Yee-Ting Lee, Jyun-Rong Zhuang, Wen-Hsin Hsieh, An-Shik Yang
4) Material and Parameter Analysis of the PolyJet Process for Mold Making Using Design of Experiments
A. Kampker, K. Kreisköther, C. Reinders
5) Experimental Investigation on Freeze-Concentration Process Desalting for Highly Saline Brines
H. Al-Jabli
6) Characteristic on Compressive Strength of Blast Slag and Fly Ash Hybrid Geopolymer Mortar
G. S. Ryu, K. T. Koh, H. Y. Kim, G. H. An, D. W. Seo
7) Resistive Switching Characteristics of Resistive Random Access Memory Devices after Furnace Annealing Processes
Chi-Yan Chu, Kai-Chi Chuang, Huang-Chung Cheng
8) Parametric and Analysis Study of the Melting in Slabs Heated by a Laminar Heat Transfer Fluid in Downward and Upward Flows
Radouane Elbahjaoui, Hamid El Qarnia
9) Reduction of Content of Lead and Zinc from Wastewater by Using of Metallurgical Waste
L. Rozumová, J. Seidlerová
10) Influence of Iron Ore Mineralogy on Cluster Formation inside the Shaft Furnace
M. Bahgat, H. A. Hanafy, S. Lakdawala
11) Production of Pig Iron by Smelting of Blended Pre-Reduced Titaniferous Magnetite Ore and Hematite Ore Using Lean Grade Coal
Bitan Kumar Sarkar, Akashdeep Agarwal, Rajib Dey, Gopes Chandra Das
12) Induction Melting as a Fabrication Route for Aluminum-Carbon Nanotubes Nanocomposite
Muhammad Shahid, Muhammad Mansoor
13) Effect of Blast Furnace Iron Slag on the Mechanical Performance of Hot Mix Asphalt (HMA)
Ayman M. Othman, Hassan Y. Ahmed
14) Numerical Analysis of the Melting of Nano-Enhanced Phase Change Material in a Rectangular Latent Heat Storage Unit
Radouane Elbahjaoui, Hamid El Qarnia
15) Inverse Heat Transfer Analysis of a Melting Furnace Using Levenberg-Marquardt Method
Mohamed Hafid, Marcel Lacroix

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