METHOD FOR THE ONLINE MONITORING OF FILM QUALITY AND FILM MACHINE COMPRISING A DEVICE FOR THE ONLINE MONITORING OF FILM QUALITY
20180354183 ยท 2018-12-13
Inventors
Cpc classification
B29C2948/92571
PERFORMING OPERATIONS; TRANSPORTING
B29C2948/92219
PERFORMING OPERATIONS; TRANSPORTING
B29C2948/92428
PERFORMING OPERATIONS; TRANSPORTING
B29C2948/92076
PERFORMING OPERATIONS; TRANSPORTING
B29C55/28
PERFORMING OPERATIONS; TRANSPORTING
B29C48/305
PERFORMING OPERATIONS; TRANSPORTING
B29C48/92
PERFORMING OPERATIONS; TRANSPORTING
B29L2007/00
PERFORMING OPERATIONS; TRANSPORTING
B29C2948/92923
PERFORMING OPERATIONS; TRANSPORTING
B29C48/0018
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a method for the online monitoring of film quality during a production process for a plastic film, in particular a blown film or a continuously cast film, in which method the film material (1) is fed out of an outlet device (40) that is designed as a melt lug (4) by a transport device (10). The film material (1) cools on or in front of the transport device (10) and the film material (1) solidifies in front of or on the transport device (10).
Claims
1. A method for online monitoring of a film quality with a production process of a plastic film, with which a film material is led from an outlet device in a form of a melt strip by a transport device, wherein the film material is cooled on or before the transport device, the film material is solidified before or on the transport device, comprising the following steps: a) determination of a position of a frost line, with which the film material is solidified before or on the transport device, b) measuring of at least one process parameter of the solidifying film material in the vicinity of the frost line, c) calculation of at least one relaxation parameter which takes the relaxation of the molecule orientation of the film material into account, d) monitoring in how far the at least one relaxation parameter is within process limits.
2. The method according to claim 1, wherein the determination of the position of the frost line according to step a) occurs at least partially by a temperature determination of the film material.
3. The method according to claim 1, wherein multiple monitoring points are provided in order to measure process parameters.
4. The method according to claim 3, wherein the monitoring points are provided for measuring process parameters which are transverse to at least the frost line or transverse to a transport direction of the film material determined by the transport device.
5. The method according to claim 1, wherein the process parameter is the temperature of the film material.
6. The method according to claim 1, wherein according to step c) the relaxation parameter is at least dependent on the position of the frost line and the at least one process parameter.
7. The method according to claim 4, wherein a plurality of relaxations are taken into account for the relaxation parameter.
8. The method according to claim 3, wherein according to step c) to each monitoring point a relaxation parameter is determined, wherein in step d) the single relaxation parameters are brought into correlation to the process limits.
9. The method according to claim 1, wherein previous to starting the production process of the plastic film a setup process is performed until the relaxation parameter is within setup limits.
10. The method according to claim 9, wherein after the setup process a calibration process occurs in a defined calibration time.
11. The method according to claim 1, wherein at least the relaxation parameters are calibrated or the process parameters are calibrated which at least determine the production process or are relevant for the production process
12. The method according to claim 1, wherein the process limit or limits are relaxation limits.
13. The method according to claim 10, wherein detailed process limits of the process parameters are determined during a calibration process.
14. The method according to claim 10, wherein the production process occurs already during the calibration process.
15. The method according to claim 13, wherein in case the relaxation parameter is outside the process limits it is determined if a process parameter is outside its detailed process limits.
16. The method according to claim 15, wherein the process parameter is automatically or manually varied such that the process parameter is within the detailed process limits again.
17. The method according to claim 1, wherein the process limits can be altered.
18. The method according to claim 9, wherein via a display unit at least the relaxation parameters or the process limits or the detailed process limits or the setup limits or the process parameters are at least displayed or can be altered.
19. A film machine with a device for online monitoring of a film quality during a production process of a plastic film, with which a film material is guidable from an outlet device in a form of a melt strip by a transport device, in order to cool the film material before or at the transport device until the film material is solidified, with at least one measuring unit for determination of a position of a frost line with which the film material is solidified and for measuring at least one process parameter of the solidifying film material in the vicinity of the frost line, at least one evaluation unit for a calculation of at least one relaxation parameter, which takes the relaxation of the molecular orientation of the film material into account and for monitoring in how far the at least one relaxation parameter is within process limits.
20. The film machine according to claim 19, wherein the measuring unit for measuring of process parameters is performed such that multiple monitoring points are existent in order to measure multiple process parameters over a film width transverse to a transport direction of the film material.
21. The film machine according to claim 19, wherein the measuring unit comprises multiple sensors in order to determine the temperature of the film material.
22. The film machine (20) according to claim 19, wherein the measuring unit is configured traversing over a width of the film material.
23. The method according to claim 17, wherein the process limits can be altered after an offline monitoring of the film quality, wherein an area between the process limits can be enlarged.
Description
[0038] Further advantages, features and details of the invention result from the subsequent description in which embodiments of the invention are described in detail in relation to the drawings. Thereby, the features described in the claims and in the description can be each single for themselves or in any combination essential for the invention. It is shown schematically:
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[0046] According to
[0047] For the determination of the quality during the online monitoring in the film machine a relative relaxation parameter is used the characteristic value which provides a statement about the relative molecule orientation of the frozen film for the method according to the invention. The relative relaxation is temperature dependent wherein the circumferential angle is separated in a suitable number of segments from the hitting of the melt strip 4 on the chill roll 10 to the reaching of the frost line FL and each segment is assigned to a resting time and a nominal relaxation time. Thus a relative relaxation parameter can be configured and/or calculated on the chill roll 10 which occurs via a process model.
[0048] In order to determine the frost line FL multiple measurement points along the width of the film material 1 can be taken into account.
[0049] The shown embodiment discloses that multiple relative relaxation parameters are calculated which are related to different widths positions of the film material 1. According to
[0050] In
[0051] Subsequent to the setup process 6 the actual production process 7 can be started.
[0052] According to the invention after the setup process 6 a calibration process 8 occurs in a defined calibration time which is likewise shown schematically in
[0053] At the expiration of the calibration time a mean value, a minimum and a maximum relative relaxation parameter over the width of the film material and time is determined and subsequently all new determined values are put in relation to this value. In
[0054] As far an analysis of the mechanical properties occurs the measured values can be correlated with the online determined relative relaxation parameters which can for example occur via a regress function according to
[0055] In
[0056] The method according to the invention can likewise comprise that during the calibration process 8 further process parameters are calibrated wherein detailed process limits of the process parameters are determined during the calibration process. In case a process parameter according to
[0057] The shown embodiments can also be related to a not explicitly shown blow film machine with which the film material 1 is sucked from the blow head, which is the outlet device 40 according to the invention from the spaced apart transport device 10. Normally, the transport device 10 is arranged above the blow head wherein the film material is cooled down via a lateral air stream and is displaced in a transport direction R to the transport device 10. Hereby, the film material 1 proceeds through a transport distance from the outlet device 40 to the frost line FL like shown in the embodiments. The shown method for the online monitoring according to
REFERENCE LIST
[0058] 1 Film material [0059] 2 Monitoring point [0060] 3 Transport direction [0061] 4 Melt strip [0062] 5 Process point [0063] 6 Setup process [0064] 7 Production process [0065] 8 Calibration procedure [0066] 10 Transport device, chill roll [0067] 11 Surface [0068] 12 Axis [0069] 20 Film machine [0070] 40 Outlet device [0071] 41 Place of deduction [0072] 42 Evaluation unit [0073] 43 Measuring unit [0074] 44 Sensors [0075] 45 Display device [0076] 46 Outlet gap [0077] 47 Pick-up location [0078] 48 Tear-off roller [0079] 49 Cleaning roller