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PA6용 낮은 유리 전이 온도 무수물 변성 충격 개질제

모델 번호: W1A-5

소개:

Coace® W1A-5 is an anhydride modified polyolefin elastomer used as impact modifiers for PA6, PA66, and polyamide base fireretardantcompounds masterbatch with high grafting rate, which has low glass transition temperature.
특성 가치 단위 테스트 방법
모양 과립
색상 흰색
밀도 0.89 g/㎤ ASTM D792
용융 유량(190℃2.16kg) 0.3-1.0 g/10분 ASTM D1238
말레산 무수물 함량 높음 wt% COACE 방법[1]
제품 설명

 

Coace® W1A-5 is a polyolefin elastomer that has been treated with anhydride and possesses a high grafting rate. Additionally, it has a light glass transition temperature.

The low Tg anhydride-modified impact modifier for PA6 is a significant achievement in the field of engineering plastics. This impact modifier outperforms PA6-based compounds in terms of impact performance, toughness, and thermal and chemical resistance by utilizing the unique features of anhydride-modified polyolefin elastomers and a low glass transition temperature. With its versatility and customizability, this novel material opens up a wide range of application options across several industries, allowing producers to create high-performance, durable, and reliable products that match the market’s changing demands.

 

고급 장비!

제품 품질을 보장하기 위해 첨단 생산 라인과 실험 테스트 센터를 갖추고 있습니다.

강력한 기술력!

10명 이상의 숙련된 기술 R&D 직원이 지속적인 혁신을 주도합니다.

 

특성

 

특성 가치 단위 테스트 방법
모양 과립
색상 흰색
밀도 0.89 g/㎤ ASTM D792
용융 유량(190℃2.16kg) 0.3-1.0 g/10분 ASTM D1238
말레산 무수물 함량 높음 wt% COACE 방법[1]

참고[1] 낮음<0.4wt%; 중간(0.4wt%-0.8wt%); 높음≥0.8wt%.

  • Low glass transition temperature: Our impact modifier has a glass transition temperature considerably below 0°C, which ensures that it stays flexible and impact resistant even in cold weather applications. This is critical for PA6 parts that must sustain impacts and prevent cracking or shattering in freezing temperatures.
  • Anhydride Modification: The anhydride functional groups on our polyolefin backbone provide a high interfacial adhesion between the impact modifier and the PA6 matrix. This improves stress transfer during impact events, allowing the ductile elastomer phase to absorb and disperse impact energy.
  • Superior impact performance: The combination of low Tg and anhydride functionality offers our impact modifier an extraordinary capacity to toughen PA6. Even with loadings as low as 10 wt%, we’ve seen over 100% increases in Charpy impact strength compared to unmodified PA6, with good impact resistance maintained down to -30 °C.
  • Excellent processability: Our impact modifier is intended for simple inclusion into PA6 during compounding or injection molding. It has a low melt viscosity, making it easily distributed, and it has no substantial impact on the overall melt flow of the PA6 compound. This simplifies the process while also significantly improving toughness.
  • Broad Compatibility: In addition to PA6, our impact modifier is compatible with a variety of other engineering thermoplastics, such as PC, PBT, and PET. This adaptability enables producers to use the same impact modifier in numerous resin systems, simplifying material handling and inventory management.
이점

 

mechanical properties are balanced: In addition to its remarkable impact performance, this impact modifier helps to maintain a balanced set of mechanical properties in PA6 compounds. It helps to retain the PA6 resin’s inherent stiffness and tensile strength while greatly increasing its impact resistance and toughness. The PA6 compound’s well-rounded mechanical qualities make it adaptable and suited for a wide range of applications that require a combination of strength, flexibility, and impact resistance.

Improved thermal and chemical resistance: This impact modifier contains anhydride-modified polyolefin elastomer, which improves the heat and chemical resilience of the PA6 compound. The anhydride activity increases the compatibility and adherence of the impact modifier to the PA6 matrix, resulting in a more cohesive and durable material system that can tolerate exposure to high temperatures and chemicals.

Diverse application possibilities: The low Tg anhydride-modified impact modifier for PA6 is used in a variety of sectors and end products. Its versatility and improved performance make it an excellent choice for automobile components such as bumper systems, interior trim, and under-the-hood elements. It is also suitable for recreational items, household appliances, and industrial applications that require high impact, durability, and temperature tolerance.

Customizable Formulations: This impact modifier can be further tailored to the unique requirements of various applications by adjusting its composition, molecular weight, and other factors. This adaptability enables formulators and manufacturers to customize the material’s qualities to obtain the ideal combination of mechanical, thermal, and processing attributes for their specific needs.

 

당사의 장점

글로벌 공급망!

사운드 스토리지 및 물류 공급망 시스템
기술 지원
판매 후 보호

집중 - 성취 - 우수성!

맞춤형 제품
R&D에 집중
글로벌 서비스

코이스 인증!

ISO9001:2015 인증
ISO14001:2015 인증
EU REACH 등록

한국 K-REACH 사전 등록

기업의 이점!

국내외를 넘나드는 레이아웃, 믹스 앤 매치하기 좋은 디자인
국내 마케팅 레이아웃
해외 마케팅 레이아웃

 

애플리케이션

 

일반적인 애플리케이션

PA6, PA66 및 폴리아미드 베이스 난연 컴파운드 마스터 배치의 충격 개질제로 사용됩니다.
폴리아미드와 폴리프로필렌 또는 폴리에틸렌 간의 호환성을 개선하기 위한 호환제로 사용됩니다.

Application Examples

Our anhydride modified polyolefin’s exceptional low temperature impact performance makes it perfect for PA6 components in demanding applications, such as:

1

Automotive

Exterior body panels and trim.
Under the hood parts
Structured elements
Interior trim and console components.

2

소비재

 Power tool housings.
Appliance Parts
Outdoor equipment Industrial

3

Pipe and fittings

Valves and Actuators
Machine components

 

문의 양식

좋아할지도 모릅니다.

반응성 그룹 함량이 높은 PET용 영향 수정자

모형: W5AS

소개:

W5AS는 PET의 충격 개질제로 사용되는 에폭시 변성 에틸렌 공중합체 또는 반응기 함량이 높은 재활용 PET 소재입니다.


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접목률이 높은 PET PBT용 난연성 충전 폴리에스테르 강화제

모형: W5AD

소개:

Coace® W5AD는 글리시딜 메타크릴레이트 개질 폴리올레핀 탄성 중합체로 접목률이 높습니다.


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PA 컴파운드 마스터배치용 충격 개질제

모델 번호: W1C-3

소개:

Coace® W1C-3 is a maleic anhydride polyolefin as impact modifier with special formula treatment.


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태양광 POE 필름용 실란 커플링제

모델 번호: R1020

소개:

실란 결합제는 태양광 POE 필름의 성능을 최적화하여 에너지 효율을 높입니다.


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