Journal of Thermoplastic Composite Materials · 2009 · 139 citations · 11 references
Materials ScienceFriction WeldingEngineeringPower UltrasoundWelding ProcessMechanical EngineeringThermomechanical AnalysisStatic Relaxation ModulusSolid MechanicsWeld Pool SolidificationThermodynamicsUltrasoundHeat TransferDynamic ModulusThermal EngineeringMechanics Of MaterialsDifferent TemperatureUltrasonic Welding
Heating mechanisms of ultrasonic welding for thermoplastics were studied via numerical simulation and experiment. Relationship between dynamic modulus and static relaxation modulus of thermoplastics was theoretically analyzed. Segment time—temperature equivalency equation for different temperature ranges and a method for directly separating viscoelastic heat from strain energy were used in the simulation. Temperature measurement tests with poly(methyl methacrylate) specimens were carried out to verify the simulation results. Results of simulation and experiment reveal that interfacial friction rather than viscoelastic heat initially start the whole welding process. Viscoelastic heating becomes dominant when temperature reaches T g (glass transition temperature) of the material. And viscoelastic heat provides most required heat during welding.
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Viscoelastic Properties of Polymers
John D. Ferry, H. S. Myers · Journal of The Electrochemical Society · 1961 · 13.5K citations
Ultrasonic nanowelding of carbon nanotubes to metal electrodes
Changxin Chen, Lijun Yan, Eric Siu-Wai Kong et al. · Nanotechnology · 2006 · 133 citations