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ABS Alloy Toughening Agent with Good Stability

モデル番号:W1G-5

はじめに

Coace® W1G-5 is a maleic anhydride grafted polymer with SEBS elastomer as the base material, which has good stability and aging resistance.
外観 顆粒
カラー 白または淡黄色
メルトインデックス(190℃、5kg):g/10分 1-6g
無水マレイン酸含有量 高い
密度(g/㎤) 0.94-0.96
商品説明

 

Coace® W1G-5は、SEBSエラストマーを基材とする無水マレイン酸グラフトポリマーです。良好な安定性と耐老化性を有し、白色または淡黄色の粒子の外観を有する。

ABS alloy toughening agents with high stability are a huge step forward in materials engineering, providing improved impact resistance, durability, and adaptability. Their ability to work consistently in a variety of environments makes them useful in industries such as automotive, electronics, construction, and household appliances.

To address the limits of traditional butadiene-based toughening agents, a new family of core-shell impact modifiers has been developed that uses novel polymer chemistry to provide outstanding thermal and oxidative resilience. This unique toughening agent, developed expressly for use in ABS alloys, combines a durable core of functionalized polybutadiene with a strong, chemically cross-linked shell that resists thermal and environmental degradation.

 

高度な設備!

先進的な生産ラインと実験試験センターを備え、製品の品質を保証する。

強力な技術力!

10人以上の経験豊富な技術研究開発スタッフが、絶え間ない技術革新を推進しています。

 

特徴

 

外観 顆粒
カラー 白または淡黄色
メルトインデックス(190℃、5kg):g/10分 1-6g
無水マレイン酸含有量 高い
密度(g/㎤) 0.94-0.96
  • Elasticity and Flexibility: These agents must be elastic enough to absorb and release energy during impact, avoiding crack growth.
  • Compatibility: The toughening agent must be chemically and physically compatible with ABS in order to achieve uniform distribution and prevent phase separation.
  • Thermal Stability: Because ABS is manufactured at high temperatures, the toughening agent must keep its characteristics and not degrade under thermal stress.
  • Mechanical Stability: The agent should help to preserve or improve the mechanical stability of the ABS alloy, especially under cyclic loading circumstances.
  • Chemical Resistance: The capacity to withstand a variety of chemicals, such as oils, acids, and bases, is critical to the end product’s longevity.
メリット

 

1. Improved Impact Resistance: The most noticeable advantage is a significant improvement in impact resistance, which makes the material appropriate for applications involving mechanical shocks.

2. Improved Durability: As the hardness of the ABS alloy increases, so does the longevity of the products manufactured from it.
3. Temperature Resilience: A excellent toughening agent keeps the ABS alloy stable and operates effectively over a wide range of temperatures.
4. Consistency in Performance: The stability of these agents ensures consistent performance under a variety of environmental conditions, which is critical for industrial applications.
5. Versatility: Increased toughness broadens ABS alloys’ applications, making them suitable for more demanding situations and uses.

 

当社の強み

グローバル・サプライチェーン

健全な保管・物流サプライチェーンシステム
テクニカルサポート
アフターサービス

フォーカス - アチーブメント - エクセレンス!

カスタマイズ製品
研究開発に注力
グローバルサービス

コエース認証!

ISO9001:2015認証
ISO14001:2015認証
EUのREACH登録

韓国K-REACH事前登録

企業の利点!

国内外でのレイアウト、ミキシングに最適
国内マーケティング・レイアウト
海外マーケティング・レイアウト

 

申し込み

代表的なアプリケーション

PC/ABS合金強化剤。

PC/ABS合金の耐折性を向上させる

 

産業界における応用:

1.Automotive industry: Toughened ABS alloys are widely utilized in dashboards, bumpers, and interior components. Improved impact resistance ensures greater safety and longevity.
2. Consumer Electronics: ABS alloys are used to make casings and housings for gadgets such as laptops, smartphones, and televisions. The increased hardness helps to protect the sensitive components inside.
3. ABS with toughening chemicals is used in plumbing systems, fittings, and other building components that require high durability and impact resistance.
4. Household Appliances: Products such as washing machines, refrigerators, and vacuum cleaners benefit from increased toughness, allowing them to resist regular wear and tear.
5. Sporting products, such helmets and protective gear, rely on hardened ABS to absorb impact while maintaining structural integrity.

 

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はじめに

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