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Dive into the research topics where C.S. Wu is active.

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Featured researches published by C.S. Wu.


Science and Technology of Welding and Joining | 2018

Process and joint quality of ultrasonic vibration enhanced friction stir lap welding

Shanmin Gao; C.S. Wu; G.K. Padhy

ABSTRACT In order to improve the process effectiveness and joint quality, ultrasonic vibrations were integrated with friction stir lap welding. Effect of ultrasonic exertion on the process and joint quality of AA 6061-T6 were investigated. Upon ultrasonic exertion, joints owned larger effective lap width, shorter hooks and improved strength. Weld fracture mode changed from a ductile–brittle mixed mode to a more ductile mode while the fracture path shifted from lap interface to beyond the stir zone. Material flow and interface defects were characterised using lap welded dissimilar aluminium alloy joints. Ultrasonic vibration improved the material flow and reduced the interfacial defects. Variations in failure load of joints were found in accordance with the variations in material flow and interfacial defects.


Science and Technology of Welding and Joining | 2017

Influence of molten metal flow on undercutting formation in GMAW

R. Zong; Ji Chen; C.S. Wu; G.K. Padhy

Molten metal flow on weld pool surface in gas metal arc welding process is investigated using a vision-based sensing system and an interpolation algorithm. Bead formation is investigated by analysing flow patterns and its driving forces of weld pool under different welding speed, welding current and shielding gas. Results show that if longitudinal to transverse velocity ratio exceeds 2.0 in the front of weld pool, outward molten metal mainly driven by arc force cannot reach the widest section of the weld pool. Meanwhile, the transverse spreading of molten metal is still hindered in the middle of weld pool as it turns to be inward flow dominated by Marangoni force. These phenomena impede molten metal supply to weld toes which causes undercutting defect. Scaling analysis shows that the predicted undercutting defect agrees well with that resulted from experiments.


Journal of Manufacturing Processes | 2013

Simultaneous measurement of tool torque, traverse force and axial force in friction stir welding

H. Su; C.S. Wu; A. Pittner; Michael Rethmeier


Journal of Manufacturing Processes | 2014

Plasma arc welding: Process, sensing, control and modeling

C.S. Wu; Lingshu Wang; W.J. Ren; X.Y. Zhang


Energy | 2014

Thermal energy generation and distribution in friction stir welding of aluminum alloys

H. Su; C.S. Wu; A. Pittner; Michael Rethmeier


Journal of Manufacturing Processes | 2017

Transient model of heat transfer and material flow at different stages of friction stir welding process

L. Shi; C.S. Wu


Journal of Manufacturing Processes | 2017

Application of ultrasonic vibrations in welding and metal processing: A status review

S. Kumar; C.S. Wu; G.K. Padhy; W. Ding


Journal of Manufacturing Processes | 2014

Improvement of welding heat source models for TIG-MIG hybrid welding process

J. Chen; C.S. Wu; M.A. Chen


Journal of Manufacturing Processes | 2015

Effect of fluid flow in the weld pool on the numerical simulation accuracy of the thermal field in hybrid welding

Zhuanzhuan Zhang; C.S. Wu


Materials & Design | 2017

Precursor ultrasonic effect on grain structure development of AA6061-T6 friction stir weld

G.K. Padhy; C.S. Wu; Shanmin Gao

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L. Shi

Shandong University

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H. Su

Shandong University

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