The increasing use of composite materials has led to a greater demand for efficient curing cycles to reduce costs and speed up production cycles in manufacturing. One method to achieve this goal is in-line cure monitoring to determine the exact curing time. This article proposes a novel method through which to monitor the curing process inside closed tools by employing ultrasonic spectroscopy. A simple experiment is used to demonstrate the change in the ultrasonic spectrum during the cure cycle of an epoxy. The results clearly reveal a direct correlation between the amplitude and state of cure. The glass transition point is indicated by a global minimum of the reflected amplitude
This study combines cure kinetics modelling and thermal and ultrasonic cure monitoring to characteri...
Abstract. A fiber optic ultrasonic system is described which monitors the cure of an epoxy resin. Ul...
The propagation of low intensity ultrasound in a curing resin, acting as a high frequency oscillator...
The increasing use of composite materials has led to a greater demand for efficient curing cycles t...
A fully remote all optical technique for the generation and detection of ultrasonics in epoxy materi...
A fully remote all optical technique for the generation and detection of ultrasonics in epoxy materi...
This article discusses the results of a series of experiments on pulse ultrasonic cure monitoring of...
Advanced composites can be fabricated by laminating multiple plies into the desired shape, and then ...
International audienceIn this study, the real time ultrasonic monitoring is investigated to quantify...
This paper will discuss a new technique that is currently being developed to monitor, in-situ, the c...
An experimental set-up for ultrasonic cure monitoring has been developed at the Laboratory of Compos...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
This study combines cure kinetics modelling and thermal and ultrasonic cure monitoring to characteri...
Abstract. A fiber optic ultrasonic system is described which monitors the cure of an epoxy resin. Ul...
The propagation of low intensity ultrasound in a curing resin, acting as a high frequency oscillator...
The increasing use of composite materials has led to a greater demand for efficient curing cycles t...
A fully remote all optical technique for the generation and detection of ultrasonics in epoxy materi...
A fully remote all optical technique for the generation and detection of ultrasonics in epoxy materi...
This article discusses the results of a series of experiments on pulse ultrasonic cure monitoring of...
Advanced composites can be fabricated by laminating multiple plies into the desired shape, and then ...
International audienceIn this study, the real time ultrasonic monitoring is investigated to quantify...
This paper will discuss a new technique that is currently being developed to monitor, in-situ, the c...
An experimental set-up for ultrasonic cure monitoring has been developed at the Laboratory of Compos...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
Isothermal curing of LY 1564SP resin in an aluminium-adhesive-aluminium laminate is investigated, us...
This study combines cure kinetics modelling and thermal and ultrasonic cure monitoring to characteri...
Abstract. A fiber optic ultrasonic system is described which monitors the cure of an epoxy resin. Ul...
The propagation of low intensity ultrasound in a curing resin, acting as a high frequency oscillator...