My Account Log in

1 option

Comprehensive Analysis of Titanium Alloy Machining with 27% Carbon Nanotube-Infused Cubic Boron Nitride Grinding Wheel Utilizing Full-Factorial Design SRM Institute of Science and Technology

SAE Technical Papers (1906-current) Available online

View online
Format:
Book
Conference/Event
Author/Creator:
Stephen, Deborah Serenade, author.
Contributor:
Sethuramalingam, Prabhu
Conference Name:
Automotive Technical Papers (2024-01-01 : Warrendale, Pennsylvania, United States)
Language:
English
Physical Description:
1 online resource cm
Place of Publication:
Warrendale, PA SAE International 2024
Summary:
This research explores the experimental analysis of titanium alloy using an innovative approach involving a 27% carbon nanotube (CNT)-infused cubic boron nitride (CBN) grinding wheel. Employing a full-factorial design, the study systematically investigates the interactions among varied wheel speed, workpiece feed rate, and depth of cut, revealing compelling insights. The integration of CNTs in the CBN grinding wheel enhances the machining performance of titanium alloy, known for its high strength and challenging machinability. The experiment varies CNT infusion levels to assess their impact on material removal rate (MRR) and surface finish. Significantly, MRR is influenced by CNT content, with 5% and above demonstrating optimal performance. The 7% CNT-CBN wheel exhibits a remarkable 61% improvement in MRR over the conventional CBN wheel. Interaction studies highlight the pivotal role of depth of cut, indicating that slower speeds and feeds, combined with increased depth of cut, enhance abrasive grit penetration and produce superior surface finishes. The damping coefficient, reflective of wheel strength and longevity, follows the MRR trend, with the 7% CNT-CBN wheel displaying the highest value. SEM and AFM images confirm improved surface finishes and reduced grinding burns. This study presents a novel strategy for studying the MRR and Ra while grinding titanium alloy with CNT-infused grinding wheels, offering valuable insights for the field
Notes:
Vendor supplied data
Publisher Number:
2024-01-5079
Access Restriction:
Restricted for use by site license

The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.

Find

Home Release notes

My Account

Shelf Request an item Bookmarks Fines and fees Settings

Guides

Using the Find catalog Using Articles+ Using your account