Produit

Saisissez l'utilisation du produit ou la nature du produit que vous
besoin, demandez-le à votre
contact. 

Styrene Ethylene Butylene Styrene Grafted Maleic Anhydride Compolymer for Engineering Plastics Toughening Compatible Agent

Model No.: W1G

Introduction :

W1G is a MAH grafted polymer, SEBS elastomer as a collective material, the product has good fluidity, good temperature resistance and aging resistance
Caractéristiques Valeur Unité Méthode d'essai
Apparence Granulés
Couleur Blanc ou jaune clair
Densité 0.91 g/cm3 ASTM D792
Débit de fusion(190℃5kg) 2-9 g/10min ASTM D1238
Teneur en styrène 13 % /
Teneur en anhydride maléique Moyen wt% Méthode COACE[1]

Notes[1]LOW<0.4wt%; Middle(0.4wt%-0.8wt%); High≥0.8wt%.

Description des produits

 

W1G is a MAH grafted polymer, SEBS elastomer as a collective material, the product has good fluidity, good temperature resistance and aging resistance

Specifically created for engineering plastics, the Styrene Ethylene Butylene Styrene Grafted Maleic Anhydride Compolymer is a high-performance toughening suitable agent. This copolymer considerably enhances the mechanical performance and processing stability of engineering plastics with its remarkable toughening capabilities, superior adhesion, improved compatibility, and good thermal stability. Its benefits, which include better material performance, more stable processing, wide compatibility, and customization for specific applications, make it a desirable option for a number of industries, including consumer products, automotive, electronics, and industrial applications.

 

Un équipement de pointe !

Elle est équipée de lignes de production avancées et d'un centre d'essais expérimentaux pour garantir la qualité des produits.

Une force technique puissante !

Plus de 10 techniciens expérimentés en recherche et développement sont à l'origine d'une innovation permanente.

 

Caractéristique

 

Produit Melt index(190ºC,50kg) g/10min Taux de greffe Densité Caractéristique
W1G 2-9 medium 0.91 Encapsulated

nylon, compatible and toughened

with high

temperature materials

 

Caractéristiques Valeur Unité Méthode d'essai
Apparence Granulés
Couleur Blanc ou jaune clair
Densité 0.91 g/cm3 ASTM D792
Débit de fusion(190℃5kg) 2-9 g/10min ASTM D1238
Teneur en styrène 13 % /
Teneur en anhydride maléique Moyen wt% Méthode COACE[1]

Notes[1]LOW<0.4wt%; Middle(0.4wt%-0.8wt%); High≥0.8wt%.

 

Typical data of PA 6 resin toughening

Performance Unité PA 6 PA6+15%W1G PA6+20%W1G
Résistance à la traction Mpa 60 51 45
Flexual strength Mpa 90 73 67
Résistance à l'impact par entaille Izod J/m 80 650 820

Note:It can be seen from the above table that W1G has a good effect in nylon toughening and can greatly improve the toughness of nylon.

 

Typical data for PA/PPO alloys

Formule 1#(%) 2#(%) 3#(%) 4#(%)
PA6-3280 25 30 60
PPA66-EPR 65
PPO 60 20 50 45
CS-1 (PP0 Compatibilizer) 10 10 15 15
W1G (toughening agent) 5 5 5 5
Silicone powder 0.5 0.5
PETS 0.3 0.3

 

 

  • Good Thermal Stability: The compolymer can sustain its performance characteristics across a broad temperature range thanks to its strong thermal stability. This characteristic guarantees the stability of the toughened engineering plastics in harsh thermal settings, including under-the-hood automotive applications or high-temperature electrical equipment.
  • Enhanced Adhesion and Compatibility: The compolymer structure’s maleic anhydride functional groups enhance adhesion and compatibility with a range of polymer matrices, such as engineering plastics, polyolefins, and polystyrene. Better mechanical qualities and processing stability are the outcome of this feature’s effective mixing and dispersion capabilities.
  • Flexible Processing Techniques: A variety of techniques, including melt blending, extrusion, injection molding, and film casting, can be used to process the SEBS grafted maleic anhydride compolymer. Because of its adaptability, it may be easily integrated into current manufacturing processes, which guarantees cost-effectiveness and ease of deployment.
  • Improved Toughening Performance: Engineering plastics benefit greatly from the exceptional toughening qualities of the SEBS grafted maleic anhydride compolymer. It can function as a compatibilizer by increasing the compatibility between various polymer phases, which improves the material’s impact resistance, tensile strength, and fracture toughness. This is made possible by its special composition and structural design.
Avantage

 

Improved Material Performance: Impact resistance, tensile strength, and elongation at break are just a few of the mechanical properties of engineering plastics that are greatly improved by the compolymer’s toughening qualities. This benefit makes it possible to produce high-performing parts and goods that are resistant to mechanical stress and harsh operating environments.

Enhanced Processing Stability: The compolymer’s adhesion and compatibility qualities enable effective blending and dispersion inside the polymer matrix, which enhances processing stability. This benefit reduces the possibility of processing errors and material deterioration, which boosts output and ensures constant product quality.

Variety of Engineering Plastics: The SEBS grafted maleic anhydride compolymer shows good compatibility with a variety of engineering plastics, such as nylon (PA), polypropylene (PP), polyethylene (PE), and polycarbonate (PC). Because of its adaptability, different polymer systems can be toughened, increasing its variety of applications and providing specialized solutions for certain industry needs.

Application-Specific Tailoring: The toughening properties, compatibility, and processing features of the compolymer can be tailored to match the needs of a particular application by modifying its composition. This benefit makes it possible to create customized solutions for a range of markets, including consumer goods, automotive, electronics, and industrial applications.

 

Notre avantage

Chaîne d'approvisionnement mondiale !

Sound Storage And Logistics Supply Chain System (système de chaîne d'approvisionnement)
Support technique
Protection après-vente

Concentration - Réalisation - Excellence !

Produits personnalisés
Priorité à la R&D
Services globaux

Certification Coace !

Certification ISO9001:2015
Certification ISO14001:2015
Enregistrement REACH dans l'UE

Corée K-REACH pré-enregistrement

L'avantage de l'entreprise !

Disposition à l'intérieur et à l'extérieur du pays, idéal pour les mélanges
Schéma de commercialisation intérieure
Mise en place d'un marketing outre-mer

 

Application

1.Elastomer modification such as TPE/TPR can be used for encapsulating nylon, etc.

2.Engineering plastics toughening agent compatibilizer

3.Modified Asphalt

4.Adhesive

 

Formulaire de demande de renseignements

Vous aimerez peut-être

Additif pour film photovoltaïque POE modifié au silane

Numéro de modèle : R1030

Introduction :

Coace® R1030 est un copolymère éthylène-octène fonctionnalisé au silane, à haute teneur en silane et à haute transparence.


Lire la suite →

Low Glass Transition Temperature Flame Retardant Polyamide Impact Modifier

Numéro de modèle : W1A-4

Introduction :

Coace®W1A-4 is a modified polyamide elastomer, using anhydride modification technology, with a low glass transition temperature and flame retardant qualities.


Lire la suite →

Modificateur à base de silane pour les films photovoltaïques EPE

Numéro de modèle : R1120

Introduction :

Le modificateur R1120 incorpore la chimie des silanes. Il présente les caractéristiques suivantes : grande transparence, point de cristallisation bas, taux de greffage élevé, bonne fluidité et grande résistivité.


Lire la suite →

Modificateurs d'impact pour les composés polyamides

Numéro de modèle : W1D

Introduction :

W1D is a maleic anhydride polyolefin copolymer as impact modifiers for PA6, PA66 with special treament.


Lire la suite →

LAISSEZ-NOUS UN MESSAGE