Suzhou Ke Sheng Tong
New Materials Technology Co., Ltd
Bio-SAH ™ MPET3613 An Monomeric carbodiimide Anti-Hydrolysis Agent for PET Resin masterbatch
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Bio-SAH ™ MPET3613 An Monomeric carbodiimide Anti-Hydrolysis Agent for PET Resin masterbatch

Carbodiimide-based anti-hydrolysis agents are commonly used in the polymer industry to enhance the hydrolytic stability of resins, including PET (Polyethylene Terephthalate). Carbodiimides function by reacting with water molecules, thereby reducing the potential for hydrolysis. Here are some considerations when using a monomeric carbodiimide anti-hydrolysis agent in PET resin masterbatch:
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  • Bio-SAH ™ MPET3613

  • Bio-SAH™

  1. Choice of Carbodiimide:

    • Select a monomeric carbodiimide anti-hydrolysis agent suitable for use with PET resin. Different carbodiimides may vary in their effectiveness and compatibility with specific resin systems.

  2. Incorporation into Masterbatch:

    • The anti-hydrolysis agent is typically incorporated into a masterbatch, a concentrated mixture of additives that can be easily added to the PET resin during processing. Ensure that the anti-hydrolysis agent is uniformly dispersed in the masterbatch.

  3. Dosage Levels:

    • Determine the optimal dosage of the monomeric carbodiimide anti-hydrolysis agent for the PET resin masterbatch. The dosage level may vary based on factors such as the resin formulation, processing conditions, and the intended end-use application.

  4. Processing Conditions:

    • Consider the processing conditions during the production of PET products. Factors such as temperature, residence time, and processing parameters can influence the effectiveness of the anti-hydrolysis agent. Follow the recommended processing guidelines provided by the anti-hydrolysis agent supplier.

  5. Testing and Quality Control:

    • Conduct thorough testing to assess the hydrolytic stability of PET resin with the monomeric carbodiimide anti-hydrolysis agent. Implement quality control measures to ensure consistency in the manufacturing process.

  6. Environmental Conditions:

    • Consider the environmental conditions to which the PET products will be exposed. Understanding the humidity levels and potential water exposure in the application environment can help guide the selection and application of the monomeric carbodiimide anti-hydrolysis agent.

  7. End-Use Considerations:

    • Evaluate the specific requirements of the end-use application. If the PET product will be used in environments where hydrolysis is a concern, the monomeric carbodiimide anti-hydrolysis agent may be particularly beneficial.

  8. Compatibility with Other Additives:

    • Consider the compatibility of the monomeric carbodiimide anti-hydrolysis agent with other additives or processing aids that may be present in the PET resin formulation. Compatibility is crucial to avoid any adverse interactions.

Always follow the specific guidelines and recommendations provided by the manufacturer or supplier of the monomeric carbodiimide anti-hydrolysis agent for the most accurate and effective use in PET resin masterbatch applications. Regular testing and quality control checks are essential to ensure the desired hydrolytic stability in the final PET products.


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