Claims
- 1. An extrusion system comprising:
(a) an extruder having a screw for moving plastic internally toward an end thereof, (b) a screw motor connected in driving relation to the screw, (c) a gear pump connected to the extruder to receive hot viscous plastic delivered thereto by the extruder, (d) a gear pump motor connected in driving relation to the gear pump to move the hot viscous plastic therethrough, (e) a die downstream of the gear pump for receiving hot viscous plastic moved through the gear pump to form an extrudate, (f) a puller for pulling the extrudate away from the die, (g) a puller motor connected in driving relation to the puller, (h) a controller connected in controlling relation to the screw motor, the gear pump motor and the puller motor to control the speeds of the screw, the gear pump and the puller, (i) a speed sensor operative to generate an electrical output indicative of the speed of the extrudate, the electrical output indicative of the speed of the extrudate being connected as an input to the controller, (j) a gear pump speed encoder operatively connected to the gear pump to generate an electrical output indicative of the volume per unit of time of hot viscous plastic being forced through the die, the electrical output indicative of the volume per unit time being connected as an input to the controller, (k) a screw speed encoder operatively connected to the screw to generate an electrical output indicative of the speed of the screw, the electrical output indicative of the speed of the screw being connected as an input to the controller, (l) the extruder having at least one heater for imparting heat to the plastic being moved by the screw, the controller being connected in controlling relation to the at least one heater to control the amount of heat being imparted by the heater to the plastic being moved by the screw, (m) a temperature sensor located to sense the temperature of the extruder where heat is being introduced to plastic being moved through the heater, (n) a pressure sensor located upstream and proximate the die in the path of flow of the hot viscous plastic to the die and having an electrical output indicative of pressure there connected as an input to the controller, (o) the controller being programmed to increase and decrease at least one of the gear pump speed and the speed of the puller motor, the puller and the extrudate in response to a change in the cross-sectional area of the extrudate derived from an indication of the speed of the gear pump delivered to the controller by the gear pump encoder and an indication of the speed of the extrudate delivered to the controller by the puller encoder, and (p) the controller being programmed to increase and decrease the temperature of the viscous plastic in the extruder to maintain the viscosity of the viscous plastic in the extruder in response to a detected change in viscosity as indicated by a change in pressure in the hot viscous plastic by the pressure sensor upstream of and proximate the die.
- 2. The extrusion system according to claim 1, wherein the controller is operative to calculate, from the puller encoder output indicative of speed N/t of the extrudate, and the gear pump encoder indicative of volume per unit time V/t of hot viscous plastic being pumped, the cross-sectional area of the extrudate A, per the formula
- 3. The extrusion system according to claim 2, wherein the controller is operative to increase or decrease the speed of the screw motor to increase or decrease heat delivered to the hot viscous plastic in the extruder upon detection of a changed viscosity.
- 4. The extrusion system according to claim 2, wherein the controller is operative to increase or decrease heat delivered to the hot viscous plastic in the extruder by the at least one heater upon detection of a changed viscosity.
- 5. The extrusion system according to claim 2, wherein the controller is operative to increase or decrease heat delivered to the hot viscous plastic in the extruder by controlling the movement of a coolant.
- 6. The extrusion system according to claim 5, wherein the coolant is a liquid coolant introduced to coolant paths in heat transfer proximity to the hot viscous plastic in the extruder.
- 7. The extrusion system according to claim 5, wherein the coolant is air, the system further comprising a fan under the control of the controller and operative to direct coolant air across the extruder.
- 8. The extrusion system according to claim 1, wherein the speed sensor is an encoder coupled to a puller to provide an output indicative of the speed of the extrudate being pulled by the puller.
- 9. The extrusion system according to claim 1, further comprising a gauge operative to measure a cross-sectional dimension of the extrudate.
- 10. The extrusion system according to claim 9, wherein the extrudate is tubular, the gauge being operative to measure the outside diameter of the extrudate and the controller being operative to maintain the desired inside diameter of the extrudate based upon the measured outside diameter and calculated cross-sectional area.
- 11. A method of extrusion control comprising:
(a) introducing into an extruder a plastic to be extruded, (b) forcing the plastic downstream in the extruder towards a gear pump and a die, (c) heating the plastic to a hot viscous consistency while forcing the plastic downstream, (d) delivering the hot viscous plastic to the gear pump, (e) forcing the hot viscous plastic through the die with the gear pump to form an extrudate, (f) with a puller, pulling the extrudate away from the die, (g) calculating a cross-sectional measure of the extrudate, (h) calculating a viscosity indicative measure of the hot viscous plastic moving through the die, (i) controlling the rate at which the puller pulls the extrudate as a function of the cross-sectional measure, and (j) controlling the heat applied to the plastic as a function of the viscosity-indicative measure.
- 12. The method of extrusion control according to claim 11, wherein step (a) comprises introducing polyurethane into the extruder.
- 13. The method of extrusion control according to claim 11, wherein step (g) comprises:
(i) measuring the speed of extrudate movement, (ii) measuring volumetric rate of the gear pump, and (iii) calculating the cross-sectional measure from the measured extrudate speed and measured volumetric rate.
- 14. The method of extrusion control according to claim 11 or 13, wherein step (h) comprises:
(i) measuring pressure drop across the die, (ii) measuring the volume of hot viscous plastic being pumped by the gear pump, and (iii) calculating the viscosity-indicative measure of the hot viscous plastic from the measured pressure drop and measured volume.
- 15. The method of extrusion control according to claim 14, wherein step (g) (i) comprises measuring an extrudate speed N/T, step (g) (ii) comprises measuring a volumetric rate V/t of delivery of the hot viscous plastic by the gear pump to the die, step (g) (iii) comprises calculating cross-sectional area of the extrudate per
- 16. The method of extrusion control according to claim 14, further comprising measuring the pressure in the hot viscous plastic on each side of the gear pump.
- 17. The method of extrusion control according to claim 14, further comprising measuring at least the pressure in the hot viscous plastic upstream of and proximate to the gears of the gear pump and controlling the delivery of hot viscous plastic to avoid starving the gear pump.
- 18. The method of extrusion control according to claim 11, further comprising measuring a cross-sectional dimension of the extrudate and calculating an internal cross-sectional dimension of the extrudate from the calculated cross-sectional measure and the measured cross-sectional dimension.
- 19. The method of extrusion control according to claim 18, wherein step (e) comprises forming a tubular extrudate.
- 20. The method of extrusion control according to claim 19, wherein the measured dimension is outside diameter of a tubular extrudate, step (g) comprises calculating cross-sectional area, and further comprising the step of calculating an inside diameter of the tubular extrudate using the measured outside diameter and the calculated area.
- 21. An extrusion control system comprising:
(a) an extruder controller, (b) means for measuring the speed of an extrudate, (c) means for measuring the speed of a gear pump delivering hot viscous plastic to a die, (d) means for controlling at least one of the speed of the extrudate and the speed of the gear pump to thereby control the cross-section of the extrudate, (e) means for measuring the pressure in the hot viscous plastic proximate and upstream of the die as a measure of the pressure drop across the die, and (f) means for controlling heat applied to the hot viscous plastic to control the viscosity of the plastic in the extruder as a function of a viscosity-indicative measure calculated from quantity of hot viscous plastic delivered to the die by the gear pump and pressure drop across the die.
- 22. The extrusion control system according to claim 21, wherein the means for measuring the speed of the extrudate comprises an encoder coupled to a puller.
- 23. The extrusion control system according to claim 21 or 22, wherein the means controlling the speed of the extrudate comprises a puller motor under control of the controller.
- 24. The extrusion control system according to claim 23, wherein the means for measuring the speed of a gear pump comprises an encoder coupled to a gear pump motor.
- 25. The extrusion control system according to claim 23, wherein the means for controlling heat applied to the hot viscous plastic comprises means for controlling the speed of an extruder screw moving the plastic in the extruder.
- 26. The extrusion control system according to claim 23, wherein the means for controlling heat applied to the hot viscous plastic comprises means for controlling heaters proximate a path of movement of plastic in the extruder.
- 27. The extrusion control system according to claim 23, wherein the means for controlling heat applied to the hot viscous plastic comprises the means for delivering a coolant to the extruder.
- 28. The extrusion control system according to claim 23, wherein the controller comprises programming for (i) calculating the viscosity-indicative measure using the relationship
- 29. The extrusion control system according to claim 28, further comprising means for measuring a cross-sectional dimension of the extrudate, the controller being operative to control an internal dimension of the extrudate based upon a calculated cross-sectional area of the extrudate and the measured cross-sectional dimension.
- 30. The extrusion control system according to claim 29, wherein the extrudate is tubular, the measured cross-sectional dimension is outside diameter and the internal dimension is inside diameter.
RELATED APPLICATIONS
[0001] This application claims priority from the provisional patent application serial No. 60/403,501 filed Aug. 13, 2002 in the name of Holton E. Harris entitled “Plastics Extruder Dimension and Viscosity Control System and Method” incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60403501 |
Aug 2002 |
US |