Process to monitor unwanted formation of a polymer having internal strain by acoustic emission analysis
A process to monitor unwanted formation of a polymer having internal mechanical strain is disclosed. The acoustic emission generated by polymer formation is detected by one or more acoustic sensors attached to a piece of equipment.
1. A process to monitor unwanted formation of a polymer having internal mechanical strain, wherein acoustic emission generated by polymer formation is detected by one or more acoustic sensors attached to a piece of equipment wherein each acoustic sensor turns an acoustic emission into an electrical or digital signal, wherein each signal is connected to a filter to discriminate against usual noise emitted from the equipment and is connected to a display, wherein the display transmits measurements comprising frequency, energy level and amplitude, wherein the measurements are compared to previous recordings from the acoustic sensor, wherein the previous recordings comprise a first recording when there is formation of a polymer having internal mechanical strain and a second recording when there is no formation of a polymer having internal mechanical strain.
2. A process to monitor unwanted formation of a polymer having internal mechanical strain, wherein acoustic emission generated by polymer formation is detected by one or more acoustic sensors attached to a piece of equipment, the acoustic sensor is a resonant piezo-electric transducer comprising a filter adapted to select a frequency range and the transducer is connected to a conditioner adapted to filter and comprising an operational preamplifier.
3. The process of claim 2 , wherein each acoustic sensor turns an acoustic emission into an electrical or digital signal.
4. The process of claim 2 , wherein the filter is adapted to select a frequency range characterizing formation of a specific polymer.
5. The process of claim 2 , wherein an output signal from the filter comprises damped oscillations.
6. The process of claim 2 , wherein the conditioner is connected to a unit comprising at least one adjustable threshold level.
7. The process of claim 2 further comprising a pulse counter connected to the condition, wherein the pulse counter is adapted to count a pulse whenever an oscillation exceeds a threshold level.
8. The process of claim 2 , wherein the polymer comprises cross-linked polymers.
9. The process of claim 2 , wherein the polymer comprises popcorn polymers.
10. The process of claim 9 , wherein the polymers are derived from 1,3-butadiene, isoprene, dimethyl-2,3-buta-1,3-diene, chloroprene, bromoprene, styrene containing impurities, divinylbenzene or styrene containing traces of divinylbenzene.