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Hindered amine light stabilizers polymeric materials

The chemical and physical observations here indicate that biological defacement of polymeric materials is a process precipitated by surface changes. This study suggests that polymers in exterior hostile environments can have significantly delayed surface erosion by the incorporation of light stabilizers. Optimal stabilization of the polymer surface with benzotriazoles and/or hindered amine light stabilizers provides the maintenance of surface integrity and thus increases the material s functional lifetime. [Pg.329]

The second part of this study [92] considered this peculiar point that has considerable consequences in terms of fundamental aspects of both the photooxidation of nanocomposites and the durability of these materials. A special attention was given to the interactions between the antioxidant, the clay (montmorillonite), and the compatibilizing agent (maleic anhydride), in terms of influence of each component on the rate of oxidation of the polymeric matrix. Two kinds of stabilizers were tested a phenolic antioxidant (Scheme 15.14) generally used to process polypropylene and a redox antioxidant of the hindered amine light stabilizer (HALS) class (Scheme 15.15) that is used as long-term stabilizer for polypropylene. [Pg.591]

Of the various chemical classes of UV stabilizers that have been developed, the benzophenone and benzotriazole UV absorbers, the hindered amine light stabilizers (HALS), and their combinations continue to satisfy the UV stabilization requirements of most of the large-volume outdoor polymer applications. In addition, many new stabilizer chemistries, such as UV absorbers based on hydrox-yphenyl triazines, have been developed for more demanding applications or to satisfy specific market needs. Light stabilizers together with other additives (qv), such as antioxidants (qv), impact modifiers, colorants (qv), fillers, heat stabilizers (qv) and plasticizers (qv), have enhanced the properties and extended the service life of polymeric materials, resulting in the replacement of traditional materials in a multitude of outdoor weatherable applications. [Pg.8703]

Hindered Amines. Hiadered amines are extremely effective ia protecting polyolefins and other polymeric materials against photodegradation. They usually are classified as light stabilizers rather than antioxidants. [Pg.226]


See other pages where Hindered amine light stabilizers polymeric materials is mentioned: [Pg.197]    [Pg.168]    [Pg.320]    [Pg.331]    [Pg.9239]    [Pg.25]    [Pg.203]    [Pg.35]    [Pg.1462]    [Pg.154]    [Pg.329]   
See also in sourсe #XX -- [ Pg.331 , Pg.334 , Pg.335 , Pg.336 , Pg.337 , Pg.338 ]




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Amine hindered

Amine light stabilizers

Amine stabilizers

Amines polymerizations

Hinder amine light stabilizer

Hindered

Hindered amine light

Hindered amine light stabilizers

Hindered amine light stabilizers stability

Hindered amine stabilizers

Hindered amine stabilizers stabilization

Hindered light stabilizers

Light polymeric

Light stability

Light stabilization

Light stabilizers

Materials polymerization

Polymeric hindered amine light

Polymeric hindered amine light stabilizers

Polymeric materials

Polymeric stabilization

Polymeric stabilizers)

Polymerization Stabilizer

Polymerized materials

Stability material

Stabilization light stabilizers

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