Dipentaerythritol Polyol Ester

  • Commodity name: Dipentaerythritol Polyol Ester
  • Commodity ID: GY 6122
  • Kinematic Viscosity Value At 40 ℃ (mm²/s): 229
  • Viscosity Index: 96
  • Acid Number (mgKOH /g): <0.1
  • Flash Point (℃): 300
  • Other: /
  • Range of Application: Refrigeration compressor oil/high-temperature chain oil/lubricating grease
Dipentaerythritol Polyol Ester is gaining attention across the lubricant and industrial fluid markets as manufacturers seek materials that combine thermal stability, durability, and environmental performance


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Product Details


Dipentaerythritol Polyol Ester is gaining attention across the lubricant and industrial fluid markets as manufacturers seek materials that combine thermal stability, durability, and environmental performance. Known for its excellent lubricity and oxidation resistance, this advanced synthetic ester is widely used in high-temperature lubricants, aviation oils, compressor oils, and specialty greases where reliability is critical.

One of the key advantages of Dipentaerythritol Polyol Ester lies in its outstanding thermal stability and low volatility. Even under extreme operating conditions, it maintains stable viscosity and lubrication performance, helping reduce equipment wear and extend service intervals. These characteristics make it a preferred base oil component for industries that require long-lasting and high-efficiency lubrication solutions.

In addition to durability, Dipentaerythritol Polyol Ester offers excellent biodegradability and compatibility with modern additive systems. This allows formulators to design environmentally responsible lubricants without sacrificing performance. As industries move toward greener manufacturing and energy efficiency, demand for high-performance synthetic esters continues to grow.

From aerospace engineering to heavy-duty machinery, Dipentaerythritol Polyol Ester is playing an increasingly important role in improving equipment reliability and operational efficiency. With its balance of stability, performance, and sustainability, it is becoming a key material for next-generation lubricant technologies.

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