Peelable seal film
Abstract
The present invention is related to a heat sealable coextruded multilayer packaging film peelable on a variety of substrates including polyethylene, polypropylene, polyester, polyvinyl chloride, polyamide, polyacrylonitrile and paper, comprising at least one peelable layer from a pre-compounded precursor formulation containing: - 50 to 80% by weight of an ethylene homo and/or copolymer, - 15 to 25% by weight of a styrene homo or/and copolymer, - 5 to 20% by weight of a thermoplastic elastomeric styrene-butadiene-styrene block copolymer, characterised in that the peel force in said peelable seal film produced by said pre-compounded precursor is modified by the presence in said precursor in the final extrusion step of 5 to 25, and preferably 10 to 20% by weight of homogeneously branched LLDPE and/or polybutene-1.

Term
Term ended
Expired 22 October 2022, 3.9 years ago.
- Priority
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- Today
13 claims: 6 independent, 7 dependent
- 1CA 02461786 2010-09-02 CLAIMS 1. A heat sealable coextruded multilayer packaging film peelable on substrates selected from the group consisting of polyethylene, polypropylene, polyester, polyvinyl chloride, polyamide, polyacrylonitrile and paper, wherein said film comprises at least one peelable layer derived from a pre-compounded precursor formulation containing:- 50 to 80% by weight of an ethylene homo and/or copolymer - 15 to 25% by weight of a styrene homo or/and copolymer - 5 to 20% by weight of a thermoplastic elastormeric styrenebutadiene-styrene block copolymer characterised in that, said peelable layer further comprises 5 to 25% by weight of homogeneously branched LLDPE in order to modify the peel force in said peelable seal film.
- 7Process for the preparation of a heat sealable and peelable coextruded multilayer packaging film characterised in that a precursor formulation for the peelable layer as defined in claim 1 is pre-compounded, in a first step, in a high shear and dispersing extrusion equipment, in that said pre-compounded precursor formulation is then extruded in a second step through a single screw extrusion equipment while adding the homogeneously branched LLDPE to modify the peel force and the hottack, of the packaging film.
Independent claims6
67 paragraphs in 12 sections, as filed
CA 02461786 2010-09-02
PEELABLE SEAL FILM
Field of the invention
[0001] The present invention is related to a multilayer thermosealable coextruded film producing a peelable tamper evident sealing joint with low peeling forces and in particular to packagings comprising said films. Furthermore a process for manufacturing said peelable seal films is disclosed.
Statement of the problem and state of the art
[0002] In the last decades, various peel/seal combinations for packaging films have been developed. For high quality peel film applications, the quality critereas are extremely selective and the opening force should be considerably lower than the internal cohesion force of the peeling film and the substrate supporting this film in order to avoid delamination. Furthermore, the peel strength has to be operable over a broad heat seal temperature window especially for full automised packaging lines where the sealing speed is of a major importance.
[0003] The document EP0024270, describes in 1980 a heat sealable packaging monolayer film producing a peelable seal for a wide range of packaging films. This document discloses a composition comprising ethylene polymer, polystyrene and a thermoplastic elastomer based on styrenebutadiene-styrene or styrene-butadiene-styrene in a monolayer film which is heat sealed on a variety of
CA 02461786 2010-09-02 substrates including polyethylene, polypropylene polyester, polyvinylchloride, polyamide, polyacrylonitrile and paper. [0004] This type of packaging peal film does not any longer respond to the request of modern coextruded multilayer films which requests properties like inclusions of oxygen barriers or tear free peelable film/paper combinations, tamper evidence, a broad cohesive peel- seal window, sterilisability by irradiation or ethylene oxide and hottack.
[0005] In particular, for medical applications, the peel film is required to be tamper evident and the cohesive failure mechanism during opening of the packaging has to occur without zipping, fibre tear or angel hairs. This means that the peel trace should be smooth and exempt from all kind of visual disruptions. Furthermore, the film must be peelable on various substrates including polyester, polyvinyl chloride and polyamide.
[0006]
In order to meet these critereas, the different incompatible composition have to be polymers in the peel blend highly dispersed and homogenised during a extrusion compounding step. A high level of shear leading to high dispersion, can for example be reached by blending the components in a twin screw extruder during a pre-compounding session.
[0007] The problem however of an industrial off-line compounding operation is mainly economical and the high output rates of the actual compounding machinery, a few tons per hour, requires large volumes.
[0008] The large scale operation of this step inevitably restricts the flexibility required for smaller orders of e.g. divers specific tailor-made peel products. The challenge of the present invention was therefore to find a solution to this problem, without the need to invest in expensive in-line compounding equipment.
CA 02461786 2010-09-02
[0009] ΕΡ-Α-0 0240 270 discloses a packaging film, suitable for lamination on supports for the packaging of articles that has to be sterilised according to US-A6,080,455. Both documents do not disclose the use of a homogeneously branched LLDPE and/or polybutene-1 as in the final extrusion step of the present invention for the fine tuning of the peel force as it will be presented in the following description.
Aims of the invention
[0010] The present invention aims to provide a method for the production of a tailor-made peelable seal film, eventually with improved hottack properties, by means of the modification of a pre-compounded formulation in a final extrusion step, and in particular for high quality packaging applications with very selective criteria.
Summary of the invention
[0011] This invention relates to a heat sealable coextruded multilayer packaging film peelable on a variety of substrates including polyethylene, polypropylene, polyester, polyvinyl chloride, polyamide, polyacrylonitrile and paper, comprising at least one peelable layer from a pre-compounded precursor formulation containing 50 to 80% by weight of an ethylene homo and/or copolymer, 15 to 25% by weight of a styrene homo or/and copolymer, 5 to 2 0% by weight of a thermoplastic elastomeric styrene-butadienestyrene block copolymer characterised in that, the peel force in said peelable seal film produced by said precompounded precursor is modified by the addition to said precursor in the final extrusion step of 5 to 25, and preferably 10 to 20% by weight of homogeneously branched LLDPE.
CA 02461786 2010-09-02
[0012] A key aspect of the present invention is that the amount of the pre-compounded precursor formulation represents 70 to 90% by weight referred to the total weight of the polymers present in the peelable layer. The total weight of the film contains up to 4% by weight of process additives selected from the group consisting of fluorine elastomers in the peelable layer.
[0013] Another key aspect of the present invention is that the peel layer in the coextruded multilayer film can be situated on the surface or inside of the multilayer complex for risp peel applications and represents maximum 15 % of the total thickness of the multilayer film.
[0014] An additional aspect of the present invention discloses a process for the preparation of a heat salable and peelable coextruded multilayer packaging film characterised in that a precursor formulation for the peelable layer having the following formulation:
<td> -</td><td> 50</td><td> to</td><td> 80% by weight of</td><td colspan="2"> an ethylene homo and/or copolymer</td>
<td> -</td><td> 15</td><td> to</td><td> 25% by weight of</td><td> a styrene homo or/and</td><td> copolymer</td>
<td> -</td><td> 5</td><td> to</td><td> 20% by weight</td><td> of a thermoplastic</td><td> elastormeric</td>
styrenebutadiene-styrene block copolymer, and to 25% by weight of homogeneously branched LLDPE in order to modify the peel force in said peelable seal film is pre-compounded, in a first step, in a high shear and dispersing extrusion equipment, in that said pre-compounded precursor formulation is than extruded in a second step trough a single screw extrusion equipment while adding homogeneously branched LLDPE to modify the peel force and the hottack of the packaging film.
[0015] It is particularly surprising and unexpected that such high levels than 25 % by weight of LLDPE could be perfectly
CA 02461786 2010-09-02
4a dispersed among the precursor formulation in a single screw equipment in the second extrusion step. This proves a perfect compatibility with the precursor formulation.
[0016] A further aspect of the present invention is that the surface area of said film is optically modified by applying an external nip pressure and temperature during the manufacturing.
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[0017] The film obtained by the present invention is used for peel against paper, and for sterilisable and tamper evident packaging applications.
Short description of the drawings
[0018] Fig. 1 represents a plot of a peel seal curve of the 50 μπι coextruded formulation (A) and a 10% homogeneously branched LLDPE containing formulation (B) and a 10% PBl-containing formulation (C) versus sealing temperature on the abscissa. Sealing: untreated peel side against itself.
[0019] Fig. 2 represents a plot of a peel seal curves of the 50 μπι coextruded formulation (A) , a 10% homogeneously branched LLDPE containing formulation (B) and a 10% PBlcontaining formulation (C) versus sealing temperature on the abscissa. Sealing: corona treated peel side against 300 μπι PVC as peel layer support.
[0020] Fig. 3 represents hottack-curves of the 50 μπι coextruded formulation (A) and a 10% homogeneously branched LLDPE containing formulation (B) .
[0021] Fig. 4 represents the effect of adding homogeneously branched LLDPE (B) and PB-1 (C) on the peel force of the 50 μιη coextruded precursor formulation. Sealing at 140°C: untreated peel side against itself.
Detailed description of the invention
[0022] The idea of the present invention was to develop one standard pre-compounded formulation compoundable in high volumes and use it as the precursor of the final peelable seal film.
[0023] During the final film extrusion this particular formulation can then be rapidly tuned towards the specific customers needs by adding additional components not present in the pre-compounded formulation.
CA 02461786 2010-09-02
In this way, the peel forces and hottack properties of a pre-compound precursor formulation can be adjusted during the final film extrusion step without changing the composition of the mixture that has to be pre-extruded.
[0024] More specifically by direct blending of homogeneously branched LLDPE into a pre-compounded precursor formulation during film extrusion, both lower and higher peel forces and higher hottack can be given to the peel seal film without a loss of essential peel-seal properties as tamper evidence, cohesive fracture, smooth peel trace, no zipping and fiber tear and peelability on the various substrates including polyester, polyvinyl chloride, polyamide, polyacrylonitrile and paper.
Description of a preferred embodiment of the invention
[0025] Various formulations have been extruded and tested according to the conditions described below. Usual film single-screw extrusion equipment is unable to disperse homogeneously a precursor as described in formulation A. Consequently this step has to be performed on compounding extrusion equipment as for example a double screw extrusion equipment. It was unexpected that the LLDPE and the PB-1 could be homogenised during a second single screw extrusion step .
[0026] Formulation A
This formulation is an example of the pre-compounded precursor formulation:
% of polyethylene (LDPE) % of polystyrene (PS) % of styrene-butadiene-styrene (SBS)
2.5 % of fluorine elastomer or polymer based masterbatch
2.5 % of antioxidant based masterbatch
CA 02461786 2011-01-11
Examples of raw materials for the precursor formulation
LDPE
Escorene™ LD150BW (Exxon Mobil, p=0.923, MI=0.923), Lacqtène® (Atofina, p=0.923, MI=0.3), Novex® LD5307AA (BP Chemicals, p=0.921, MI=0.7).
PS
Lacqrene® 1240 (Atofina, MI=2) , Lacqrene®. 1320 (MI=3.5).
SBS
Finaprene® 411 (Atofina, MI<0.5, butadiene/styrene 69/31), Finaprene® 417 (Atofina, MI=1.7, butadiene/styrene 71/29) .
Fluorine elastomer or polymer based masterbatch
Ampacet™ 10562-A (PE-carrier)
Schulman™ AMF 705 (PE-carrier)
Antioxidant based masterbatch
Ampacet™ 10886 (PE-carrier)
Schulman™ AO 25 (PE-carrier)
This formulation is introduced in a second step in a single screw film coextrusion equipment. The following formulations (B and C) only concern the peelable layer of the coextruded multilayer complex.
[0027] Formulation B
This is the modification targeting an increased peel force and a better hottack behaviour.
Formulation B = Formulation A + 5 to 25% by weight of homogeneously branched LLDPE. Examples of such LLDPE are: Exact™ 02 03 (Dex Plastomers, p=0.902, MI=3.0), Exceed™ 2518 CB (ExxonMobil, p=0.918, MI=2.5), Evolue™ SP2020 (Mitsui, p=0.916, MI=1.5) , mPact® D143 (Phillips Petroleum (p=0.916, MI=1.3)
[0028] Formulation C
This is the modification targeting a decreased peel force. Formulation C = Formulation A + 5 to 25 % polybutene-1. Examples of such polybutene-1 are:
CA 02461786 2011-01-11
PB8340 (Basell, p=0.908, MI=4.0), PB8310 (Basell, p=0.895, MI=3.0), Tafmer® BL3110 (Mitsui,· p=0.910, MI=1.0), Tafmer® BL4000 (Mitsui, p=0.915, MI=1.8)
The experimental peel force values observed on the extruded films depends on the measurement conditions and therefore have to be compared to each other under the same experimental conditions. This is the reason why the formulations A, B and C are represented on the same graphs.
[0029] Experimental Sealing conditions
Sealing curves, peel against peel and against 300 μτα PVC, were performed with a Kopp™ sealer. The upper jaw was heated while the lower contained a 60 shore A rubber at room temperature. Sealing was performed at 2 bar pressure with a dwell time of 1 second. Peel forces were measured at a 90° peel angle. Prior to the peel seal test the 50 μτα films were laminated against 19 μτα OPET to avoid elastic effects which gives results better related to the reality.
[0030] Hottack measurements
Hottack is measured with a DTC hottack tester. The 50 μνη films were laminated against 19 μτα OPET and sealed during 0.5 sec at a pressure of 5 bar. The heated jaws were opened after 0.1 sec of sealing.
[0031] The optical quality of the peelable film can be modified during the extrusion step by applying various nip pressures or temperatures.
Contents12
7 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7
32 members in 20 offices
Priority claims9
| Document | Office | Kind | Date |
|---|---|---|---|
| 01870249 | European Patent Office (EPO) | A | |
| 01870249 | European Patent Office (EPO) | A | |
| 018702498 | European Patent Office (EPO) | – | |
| 0211902 | European Patent Office (EPO) | W | |
| 0211902 | European Patent Office (EPO) | W | |
| 018702498 | – | – | – |
| EP20010870249 | – | – | – |
| PCTEP2002011902 | – | – | – |
| WO2002EP11902 | – | – | – |
Members32
| Document | Office | Kind | |
|---|---|---|---|
| EP1312470A1 | European Patent Office (EPO) | A1 | |
| CA2461786A1 | Canada | A1 | |
| WO03043816A1 | World Intellectual Property Organization (WIPO) | A1 | |
| AU2002342854A1 | Australia | A1 | |
| TW200407364A | Taiwan Province of China | A | |
| KR20040054785A | Republic of Korea | A | |
| EP1453671A1 | European Patent Office (EPO) | A1 | |
| BR0213675A | Brazil | A | |
| US2005008802A1 | United States of America | A1 | |
| CN1571727A | China | A | |
| JP2005509564A | Japan | A | |
| PL369926A1 | Poland | A1 | |
| HK1069149A1 | Hong Kong, China | A1 | |
| ZA200403511B | South Africa | B | |
| EP1453671B1 | European Patent Office (EPO) | B1 | |
| AT322979T | Austria | T | |
| DE60210664D1 | Germany | D1 | |
| DK1453671T3 | Denmark | T3 | |
| PT1453671E | Portugal | E | |
| SI1453671T1 | Slovenia | T1 | |
| CN1278851C | China | C | |
| ES2260485T3 | Spain | T3 | |
| DE60210664T2 | Germany | T2 | |
| MY128707A | Malaysia | A | |
| TWI291971B | Taiwan Province of China | B | |
| JP4030503B2 | Japan | B2 | |
| US7354635B2 | United States of America | B2 | |
| KR100931599B1 | Republic of Korea | B1 | |
| PL206828B1 | Poland | B1 | |
| CA2461786CThis record | Canada | C | |
| BR0213675B1 | Brazil | B1 | |
| BR0213675B8 | Brazil | B8 |
2 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| ExpiryMKEX | MKEX | |
| Examination requestEEER | EEER |
Numbers
- Publication
- 2461786
- Publication, DOCDB
- 2461786
- Publication, EPODOC
- CA2461786
- Application
- 2461786
- Application, DOCDB
- 2461786
- Application, EPODOC
- CA20022461786
Titles2
- English
- PEELABLE SEAL FILM
- French
- FILM DE SCELLEMENT PELABLE
Classification
- CPC, 19
- B32B27/08
- Y10T428/1352
- Y10T428/31797
- Y10T428/31895
- Y10T428/31743
- Y10T428/31917
- Y10T428/3192
- Y10T428/31928
- Y10T428/31909
- Y10T428/3175
- B32B2355/02
- B32B27/10
- B32B2323/10
- B32B2327/06
- B32B2323/04
- B32B27/32
- B32B2377/00
- B32B2323/046
- B32B2323/043
- IPC, 5
- B32B27 08
- B65D65 40
- B32B27 00
- B32B27 32
- C08L23 04