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Journal ArticleDOI

Melt pool dynamics during laser welding

V. V. Semak, +3 more
- 14 Dec 1995 - 
- Vol. 28, Iss: 12, pp 2443-2450
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TLDR
In this paper, the dynamics of the melt pool and keyhole during CO2 laser welding using high-speed video photography and the laser reflectometer technique were investigated using a low-power argon laser beam, focused on the weld pool, provided illumination to obtain a direct image of weld pool surface.
Abstract
The dynamics of the melt pool and keyhole was investigated during CO2 laser welding using high-speed video photography and the laser reflectometer technique. A low-power argon laser beam, focused on the weld pool, provided illumination to obtain a direct image of the weld pool surface. The near-surface plasma emission background was decreased by using a narrow-bandwidth interference filter centred at the argon laser wavelength (514 nm). A variation in the shape of the keyhole opening with a characteristic frequency higher than 1 kHz was observed both during spot welding and during welding with a moving beam. For the case of spot welding with a 20 ms laser pulse, long-wavelength (about 1 mm) oscillations of the weld pool were observed with a frequency during the laser pulse and the first 5 ms after the laser pulse in the range 200-500 Hz. In the time interval starting at 25 ms and ending at approximately 40 ms from the beginning of the laser pulse, the long-wave oscillation frequency increased up to 1.3 kHz. The solidification time was determined to be approximately equal to the pulse duration for the spot welding. Surface deformation during cooling was also observed. This information is used to develop a model illustrating the dynamics of the post-pulse weld pool.

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Citations
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Journal ArticleDOI

The role of recoil pressure in energy balance during laser materials processing

TL;DR: A theoretical analysis of the energy balance in the laser - metal interaction zone is carried out in this article, where heat transfer due to the recoil-pressure-induced melt flow is taken into consideration.
Journal ArticleDOI

Dynamics of keyhole and molten pool in laser welding

TL;DR: In this paper, the authors have conducted systematic studies on observation of keyhole as well as weld pool dynamics and their related phenomena to reveal the mechanism of porosity formation and its suppression methods.
Journal ArticleDOI

The effect of powder oxidation on defect formation in laser additive manufacturing

TL;DR: In this paper, the authors investigated the effects of powder oxidation on the molten pool dynamics and defect formation during laser additive manufacturing (LAM) of virgin, stored, and reused powders.
Journal ArticleDOI

The simulation of front keyhole wall dynamics during laser welding

TL;DR: In this article, a physical model of keyhole support and propagation during high-translation-speed laser welding is described and a numerical code for the simulation of the front keyhole wall behaviour is developed on the basis of a ''hydrodynamic'' physical model assuming that only the front part of the key hole wall is exposed to the high-intensity laser beam.
Journal ArticleDOI

A new approach to compute multi-reflections of laser beam in a keyhole for heat transfer and fluid flow modelling in laser welding

TL;DR: In this article, a new approach to compute laser reflections is proposed which consists of treating laser under its wave form by solving Maxwell's equations and can be immediately transposable in any 2D, 2D axi or 3D configurations.
References
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Journal ArticleDOI

Dynamic behaviour of the keyhole in laser welding

TL;DR: In this paper, the dynamic behavior of a keyhole in laser welding is studied theoretically, where the recoil pressure from ablating particles is in equilibrium with the surface tension at the keyhole wall, and the collapse time due to a sudden laser shutdown is calculated.
Journal ArticleDOI

Capillary waves on the weld pool in penetration welding with a laser

TL;DR: In this paper, the effect of oscillations on the weld pool forced by pulsations in the keyhole was studied, and the results showed that these frequencies are likely to be related to the natural frequencies of oscillation of a weld pool when in its molten state.
Journal ArticleDOI

Theory of the oscillations of an ellipsoidal weld pool in laser welding

TL;DR: In this paper, the first asymmetric mode of oscillation is calculated, and is found to depend on the shape of the weld pool, which is ellipsoidal in shape.
Journal ArticleDOI

Influence of hydrodynamic perturbations on laser evaporation of metals with a phase interface

TL;DR: In this paper, the behavior of the recoil pressure p(t) under quasisteady conditions of metal evaporation induced by submillisecond neodymium laser pulses was investigated.
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