Methods for Forming Films and Their Related Computing Devices
US-2021107202-A1 · Apr 15, 2021 · US
US11305474B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11305474-B2 |
| Application number | US-201715786688-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 18, 2017 |
| Priority date | Oct 18, 2016 |
| Publication date | Apr 19, 2022 |
| Grant date | Apr 19, 2022 |
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A plastic film of a thermoplastic synthetic resin is made in a film-making system by extrusion from a die of an extruder. First the plastic is melted and extruded from the die as a tube or web that is, typically after cooling and stretching, formed into a package. At least one reference parameter is provided, and, during continuous operation of the system, two input parameters different from the reference parameter are measured by respective measuring devices An output is determined from these reference parameters and is compared with the reference parameter.
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We claim: 1. A method of making a plastic film of a thermoplastic synthetic resin in a film-making system by extrusion from a die of an extruder, the method comprising the steps of: melting the plastic and extruding the melted plastic from the die as a tube or web; forming the extruded tube or web into a package; providing two reference parameters selected from the group comprised of material density, bulk density, dosage amount, melt density of the melted plastic, feed rate, and material leakage; during continuous operation of the system, measuring by respective measuring devices two input parameters different from the reference parameter and selected from the group comprised of melt pressure, extruder temperature, extruder speed, extruder torque, and melt temperature; determining from the measured input parameters respective output parameters corresponding to the reference parameters; comparing the determined output parameters to the reference parameters; and on deviation of one of the output parameters from the respective reference parameter, signaling an anomaly of the detected deviant output parameter by a visual or acoustic signal. 2. The method defined in claim 1 , further comprising the steps after signaling the anomaly of: documenting the anomaly, and storing the anomaly in an independent memory. 3. The method defined in claim 1 , further comprising the step of: determining at least one of the reference parameters using at least one reference measurement device in a reference operation of the system or predetermining at least one of the reference parameters as an experience-based parameter. 4. The method defined in claim 1 , further comprising the step of: predetermining at least one of the input parameters as a fixed or constant system parameter; and determining the other input parameters with a sensor in the system. 5. The method defined in claim 1 , further comprising the steps of: calculating one of the reference parameters that forms the basis for the comparison with the respective output parameter or the at least one input parameter, and including this calculated input parameter in the determination of the output parameter. 6. The method defined in claim 1 , wherein the film-making system is a film-blowing system in which the plastic film is extruded from a ring die of a blow head as a film tube, the method further comprising the steps of: inflating and then stretching the film tube in an extrusion direction and transversely to the extrusion direction, the reference parameter and/or output parameter being at least one parameter from the group comprised of malleability of the film and tensile strength of the film, the input parameters being selected from the group comprised of blow head temperature or ring die temperature, extruder speed, extruder torque, extruder temperature, extruder pressure, output speed, blowup rate, total layer thickness of the film, and melt volume rate of the plastic or plastics used. 7. The method defined in claim 6 , wherein the reference parameter or output parameter is a width or a change in width of the film tube and the input parameters are selected from the group comprised of speed of a supply air blower, opening width or opening cross-section of the supply air supply, speed of an exhaust blower, and position of the inflated film tube. 8. The method defined in claim 1 , wherein the plastic film is extruded or coextruded as a multilayer film by a plurality of extruders, the reference parameter or output parameter is the distribution of individual layer thicknesses of the multilayer film, and the input parameters are selected from the group comprised of die temperature, extruder speeds, extruder torques, extruder temperatures, extruder pressures, output speed, total layer thickness, and inflation rate. 9. The method defined in claim 1 , wherein the reference parameter or the output parameter is a package density of the package or a coil of the film and the input parameters are selected from the group comprised of diameter of a winding shaft, wall thickness of a winding core, diameter of the film coil, and theoretical diameter of the film coil. 10. The method defined in claim 1 , further comprising the steps of: generating a reference model from the plurality of reference parameters; generating an output model from the plurality of input parameters; and signaling an anomaly on deviation of the output model from the reference model. 11. The method defined in claim 1 , wherein the steps of measuring, determining, and comparing are carried out continuously as the film is extruded from the die.
Storing of extruded material, e.g. by winding up or stacking · CPC title
Pressure · CPC title
Mechanical properties · CPC title
Flow or feed rate · CPC title
Density, e.g. per unit length or area · CPC title
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