Process for making a polymeric film
US-10384408-B2 · Aug 20, 2019 · US
US10259147B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10259147-B2 |
| Application number | US-201414765041-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 31, 2014 |
| Priority date | Feb 1, 2013 |
| Publication date | Apr 16, 2019 |
| Grant date | Apr 16, 2019 |
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The extrusion apparatus includes a screw in a fixed barrel. The barrel has a feed inlet and an outlet with an extrusion nozzle which discharges into the nip between first and second rotary rolls that can rotate in opposite directions. The apparatus also has a first means for rotating and a first control means that are able to synchronize the speed of rotation of the first roll and the screw and has a second means that is able to rotate the second screw at a different speed of rotation than the first roll. The first control means can regulate the speed of rotation of the screw depending on the width of the strip, and a second control means can regulate the speed of rotation of the second roll depending on the thickness of the strip.
Opening claim text (preview).
The invention claimed is: 1. An extrusion apparatus adapted for manufacturing a continuous strip of profiled product, comprising: a screw that is set in rotation in a fixed barrel having a feed inlet for elastomer mixture, and an outlet provided with an extrusion nozzle which discharges into a nip formed between a first rotary roll and a second rotary roll that are made to rotate in opposite directions during operation of the apparatus, a first rotator for rotating the first rotary roll and a first controller that are able to synchronize a speed of rotation (Ω r 1 ) of the first rotary roll and a speed of rotation (Ω vis) of the screw, and a second rotator for rotating the second rotary roll that is able to rotate the latter at a speed of rotation (Ω r 2 ) that is different from the speed of rotation of the first rotary roll (Ω r 1 ), wherein said first controller is connected to a screw driver for driving the screw in order to regulate the speed of rotation of the screw depending on the width of the strip of profiled product, and wherein the apparatus comprises a second controller connected to said second rotator for rotating in order to regulate the speed of rotation (Ω r 2 ) of the second rotary roll depending on the thickness of said strip. 2. The extrusion apparatus according to claim 1 , wherein the speed of rotation of the second roll is variable independently of the speed of rotation of the first roll. 3. The extrusion apparatus according to claim 1 , wherein said second controller comprises a sensor for measuring the thickness of the strip of profiled product and a comparator for comparing the measured value of the thickness (e) with a setpoint value of the thickness (e setpoint), and wherein the speed of rotation (Ω r 2 ) of the second roll is controlled depending on the result of the comparison. 4. The extrusion apparatus according to claim 3 , wherein the speed of rotation Ω r 2 of the second roll is directly linked to the speed of rotation Ω r 1 of the first roll by a coefficient of proportionality K sr, such that Ω r 2 =K sr*Ω r 1 . 5. The extrusion apparatus according to claim 1 , further comprising a sensor for measuring the width of the strip of profiled product and a comparer for comparing the measured value of the width with a setpoint value of the width (1 setpoint), and wherein the speed of rotation (Ω vis) of the screw is controlled depending on the result of the comparison. 6. The extrusion apparatus according to claim 5 , wherein the speed of rotation of the screw Ω vis is directly linked to the speed of rotation Q r 1 of the first roll by a coefficient of proportionality K svis, such that Ω vis=K svis*Ωr 1 . 7. An extrusion method adapted for manufacturing a continuous strip of profiled product with the aid of an extrusion apparatus comprising: rotating a screw in a fixed barrel having a feed inlet for elastomer mixture and an outlet provided with an extrusion nozzle; discharging elastomer mixture from the extrusion nozzle into a nip formed between a first rotary roll and a second rotary roll, rotating the first rotary roll and the second rotary roll in opposite directions by a first rotator for rotating the first rotary roll and by a second rotator for rotating the second rotary roll, respectively, synchronizing the first rotator for rotating the first rotary roll by a first controller, said first controller being able to synchronize a speed of rotation (Ω r 1 ) of the first roll with a speed of rotation (Ω vis) of the screw, and controlling the second rotator for rotating the second rotary roll, said second rotator for rotating the second rotary roll being connected to second controller, wherein the second rotary roll is rotated at a speed of rotation (Ω r 2 ) that is different from the speed of rotation of the first roll (Ω r 1 ), and wherein the speed of rotation of the screw is regulated depending on the width of the strip of profiled product and the speed of rotation (Ω r 2 ) of the second roll is regulated depending on the thickness of said strip. 8. The method according to claim 7 , wherein said second controller comprises a sensor for measuring the thickness of the strip of profiled product and a comparator for comparing the measured value of the thickness (e) with a setpoint value of the thickness (e setpoint), and in that the speed of rotation (Ω r 2 ) of the second roll is controlled depending on the result of the comparison. 9. The method according to claim 7 , wherein said apparatus further comprises a sensor for measuring the width of the strip of profiled product and a comparator for comparing the measured value of the width (l) with a setpoint value of the width (1 setpoint), and wherein the speed of rotation (Ω vis) of the screw is controlled depending on the result of the comparison. 10. The method according to claim 7 , wherein said first roll is made to bear against a receiving surface of a profiled-product strip-laying means in order to serve as a roll for applying said strip. 11. The method according to claim 10 , wherein said strip-laying means is a tire-building drum, and wherein the circumferential speed of the first roll is equal to the circumferential speed of the receiving surface of said tire-building drum.
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