TWI


(2014, May). Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: A feasibility study. 10th International Symposium.
. "Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study". 10th International Symposium (May.2014).
. "Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study". 10th International Symposium (May.2014).
Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study. 10th International Symposium. 2014 May; .
2014, 'Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study', 10th International Symposium. Available from: https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-201405-6BPaper03.pdf.
. Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study. 10th International Symposium. 2014;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-201405-6BPaper03.pdf.
. Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study. 10th International Symposium. 2014 May;. https://www.twi-global.com/technical-knowledge/fsw-symposium-papers/FSWSymposia-201405-6BPaper03.pdf.

Joining of hybrid joints between thermoplastics and aluminium alloy by friction stir lap welding: a feasibility study

10th International Symposium
May 2014

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Description

A feasibility study was undertaken to investigate friction stir welding of hybrid lap joints between polyphenylene sulphide and AA 6111 alloy (Al, 0.76%Mg, 0.63%Si, 0.75%Cu) sheets (thickness 2 and 1.5 mm, respectively) and the influence of process parameters on joint properties. Welding experiments were conducted on a Hermie C50 milling machine using a tool made from heat treated H13 tool steel at a rotational speed of 1200 rpm and translational speeds of 10-30 mm/min. Microstructure was observed by optical microscopy, SEM and energy dispersive spectroscopy. Tensile-shear tests were performed on an Instron 4505 machine. Issues discussed include the joining mechanism and the relationships between heat input, translational speed and joint performance.

10th International Symposium, 20-22 May 2014, Session 6B: Performance, Paper 03

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