Weather-resistant, plasticizer-free, deep-drawable film

6015626
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Inventors

Kopytko, Walter

Application #

026317

Filed

Feb-19-1998

Published

Jan-18-2000

Current US Class

264/171.11
264/171.23
264/173.1
264/175
264/176.1
264/210.1
264/539
264/555
428/516
428/517
428/519
428/520
524/425
524/442
524/445
524/451
525/191
525/197
525/210
525/211
525/232
525/240

International Classes

B32B 027/08; C08F 008/00; C08L 045/00; C08L 009/00; C08L 023/00

Field of Search

428/516 428/517 428/519 428/520 525/191 525/197 525/210 525/211 525/232 525/240 264/539 264/555 264/171.11 264/171.23 264/173.1 264/175 264/176.1 264/210.1 524/425 524/445 524/451 524/442

Assignee

Benecke-Kaliko AG (DE)

Examiners

Niland; Patrick D.

Attorney, Agent or Firm

Rogers & Wells, LLP, Kelley; Margaret B.

US Patent References

4917944   Multi-ply weathera...

Referenced by:

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Citation

Cite This Patent

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Abstract
Described is a weather-resistant, plasticizer-free, deep-drawable film based on a semicrystalline ethylene/propylene/diene terpolymer and a homo- and/or copolymer of an alkene plus stabilizers and optional fillers, lubricants, pigments, and other ordinary additives. This film is characterized by the fact that the mixture of the semicrystalline ethylene/propylene/diene terpolymer and the homo- and/or copolymer of the alkene contains: 70-30 wt % semicrystalline ethylene/propylene/diene terpolymer (A) with approximately 56-76 wt % ethylene, approximately 15-30 wt % propylene, and approximately 9-14 wt % third component, while the terpolymer (A) has a melt-flow index MFI (230/2, 16) of approximately 5-15.0 g/10 min, and 70-30 wt % homo- and/or copolymer (B) of ethylene and/or propylene, while the homo- and/or copolymer has a melt-flow index MFI (230/2, 16) greater than 2.5 g/10 min. This film is especially suited for the interior covering and fittings of motor vehicles. It evidences good processibility while retaining the essential physical characteristics.
 
Claims
What is claimed is:

1. A molded film which consists essentially of:

(a) 30-70 wt. % of a semicrystalline ethylene/ propylene/diene terpolymer containing about 56-76 wt. % ethylene, about 15-30 wt. % propylene, and about 9-14 wt. % of a diene and having a melt flow index MFI (230/2.16) of about 5-15 g./10 min. and

(b) 70-30 wt. % of an ethylene or propylene copolymer having a melt-flow index MFI (230/2.16) of greater than 2.5 g./10 min.;

characterized in that the molded film is a weather-resistant, plasticizer-free, deep-drawable film.

2. The molded film of claim 1, wherein the terpolymer is about 29-52% and the copolymer is about 71-48%.

3. The molded film of claim 1, wherein the terpolymer contains at least about 65 wt. % ethylene.



Description
The invention pertains to a weather-resistant, plasticizer-free, deep-drawable film based on semicrystalline ethylene/propylene/diene terpolymer, a homo- and/or copolymer of an alkene, and stabilizers plus optional fillers, lubricants, pigments, and other ordinary additives.

A film of the type described above is described in European Patent No. EP-A-0,203,399. This film is used for the interior covering and fittings of motor vehicles, e.g., for side coverings, crash pads, dashboards, headrests, for the canopy, or for the side coverings as corrosion protection in place of the usual soft PVC films. This enumeration of possible uses is not exhaustive. Inasmuch as the film according to EP-A-0,203,399 contains no plasticizers, it is not plagued with the disadvantage of their exudation. In the applicatory areas addressed, it shows good properties, e.g., high stress resistance, good breaking strength, high cold flexibility, good notched impact strength, and good heat and weather resistance. To this end, it is necessary that the aforesaid terpolymer have a melt-flow index MFI (230/5) of 0.5-2.0 g/10 min and that the aforesaid copolymer have a melt-flow index MFI (230/2, 16) no greater than 2 g/10 min. Accordingly, the melt-flow index must be kept low in order to achieve the desired characteristics. A low melt-flow index means more difficult processing, e.g., by calendering, extrusion, or casting.
 
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