Energy directors (EDs) have been widely used in ultrasonic welding (UW) of polymers and polymer-based composites. They help concentrate the welding energy and localize the weld at the location where the EDs are present. However, the utilization of EDs increases manufacturing cost and time, especially for complex parts and structures. This paper presents a method for UW of carbon fiber reinforced composite without using EDs. A reusable annular clamp (called a blankholder) is used as part of the weld tool to apply a variable force (called blank holding force) on the composite sheets during the UW. The effect of the blank holding force (BHF) on the weld formation is investigated. The results show that the duration of the BHF had significant impact on the weld formation. There is a critical duration with which a localized weld can form. Suitable durations of BHF at different levels of welding energy are determined by experiments. The main function of the BHF is to create an initial melting area by improving the contact condition. The initial melting area will act as an ED to concentrate the welding energy, and therefore, promotes the formation of a localized weld.
Skip Nav Destination
Article navigation
September 2018
Research-Article
Ultrasonic Welding of Carbon Fiber Reinforced Composite With Variable Blank Holding Force
Yang Li,
Yang Li
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: umliyang@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: umliyang@umich.edu
Search for other works by this author on:
Jorge Arinez,
Jorge Arinez
Manufacturing Systems Research Lab,
General Motors R&D Center,
Warren, MI 48090
e-mail: Jorge.arinez@gm.com
General Motors R&D Center,
Warren, MI 48090
e-mail: Jorge.arinez@gm.com
Search for other works by this author on:
Zhiwei Liu,
Zhiwei Liu
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: zhiweili@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: zhiweili@umich.edu
Search for other works by this author on:
Tae Hwa Lee,
Tae Hwa Lee
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: taehwale@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: taehwale@umich.edu
Search for other works by this author on:
Hua-Tzu Fan,
Hua-Tzu Fan
Manufacturing Systems Research Lab,
General Motors R&D Center,
Warren, MI 48090
e-mail: charles.fan@gm.com
General Motors R&D Center,
Warren, MI 48090
e-mail: charles.fan@gm.com
Search for other works by this author on:
Guoxian Xiao,
Guoxian Xiao
Manufacturing Systems Research Lab,
General Motors R&D Center,
Warren, MI 48090
e-mail: guoxian.xiao@gm.com
General Motors R&D Center,
Warren, MI 48090
e-mail: guoxian.xiao@gm.com
Search for other works by this author on:
Mihaela Banu,
Mihaela Banu
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: mbanu@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: mbanu@umich.edu
Search for other works by this author on:
S. Jack Hu
S. Jack Hu
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: jackhu@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: jackhu@umich.edu
Search for other works by this author on:
Yang Li
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: umliyang@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: umliyang@umich.edu
Jorge Arinez
Manufacturing Systems Research Lab,
General Motors R&D Center,
Warren, MI 48090
e-mail: Jorge.arinez@gm.com
General Motors R&D Center,
Warren, MI 48090
e-mail: Jorge.arinez@gm.com
Zhiwei Liu
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: zhiweili@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: zhiweili@umich.edu
Tae Hwa Lee
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: taehwale@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: taehwale@umich.edu
Hua-Tzu Fan
Manufacturing Systems Research Lab,
General Motors R&D Center,
Warren, MI 48090
e-mail: charles.fan@gm.com
General Motors R&D Center,
Warren, MI 48090
e-mail: charles.fan@gm.com
Guoxian Xiao
Manufacturing Systems Research Lab,
General Motors R&D Center,
Warren, MI 48090
e-mail: guoxian.xiao@gm.com
General Motors R&D Center,
Warren, MI 48090
e-mail: guoxian.xiao@gm.com
Mihaela Banu
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: mbanu@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: mbanu@umich.edu
S. Jack Hu
Department of Mechanical Engineering,
University of Michigan,
Ann Arbor, MI 48109
e-mail: jackhu@umich.edu
University of Michigan,
Ann Arbor, MI 48109
e-mail: jackhu@umich.edu
1Corresponding author.
Manuscript received March 21, 2018; final manuscript received May 21, 2018; published online June 28, 2018. Assoc. Editor: Zhijian J. Pei.
J. Manuf. Sci. Eng. Sep 2018, 140(9): 091011 (11 pages)
Published Online: June 28, 2018
Article history
Received:
March 21, 2018
Revised:
May 21, 2018
Citation
Li, Y., Arinez, J., Liu, Z., Hwa Lee, T., Fan, H., Xiao, G., Banu, M., and Jack Hu, S. (June 28, 2018). "Ultrasonic Welding of Carbon Fiber Reinforced Composite With Variable Blank Holding Force." ASME. J. Manuf. Sci. Eng. September 2018; 140(9): 091011. https://doi.org/10.1115/1.4040427
Download citation file:
Get Email Alerts
Effect of Warpage Pattern of Printed Circuit Board on Solder Paste Volume in the Stencil Printing Process
J. Manuf. Sci. Eng (July 2025)
Experimental Study on Force and Surface Morphology of Additive Manufacturing FeCoNiCrAl0.5 High Entropy Alloy
J. Manuf. Sci. Eng (July 2025)
Related Articles
Seam Welding of Aluminum Sheet Using Ultrasonic Additive Manufacturing System
J. Manuf. Sci. Eng (January,2017)
Performance Prediction for Ultrasonically Welded Dissimilar Materials Joints
J. Manuf. Sci. Eng (January,2017)
Investigation of Ultrasonically Welded Thermoplastic Composite Joints Using Netlike Energy Directors
J. Manuf. Sci. Eng (May,2022)
Microstructural Characterization of Ultrasonically Welded Aluminum
J. Eng. Mater. Technol (January,2005)
Related Proceedings Papers
Related Chapters
Defining Joint Quality Using Weld Attributes
Ultrasonic Welding of Lithium-Ion Batteries
Concluding Remarks and Future Work
Ultrasonic Welding of Lithium-Ion Batteries
Motion Analysis for Multilayer Sheets
Ultrasonic Welding of Lithium-Ion Batteries