What is the particle size of Antioxidant 1135 (if in solid form)?

Aug 20, 2025Leave a message

Hey there! As a supplier of Antioxidant 1135, I often get asked about the particle size of this antioxidant when it's in solid form. So, I thought I'd dive into this topic and share some insights with you.

First off, let's talk a bit about Antioxidant 1135. It's a widely used antioxidant in various industries, especially in polymers and plastics. It helps to prevent the oxidation of materials, which can lead to degradation, discoloration, and a loss of mechanical properties over time. You can find more details about Antioxidant 1135 on Antioxidant 1135.

Now, when it comes to the particle size of Antioxidant 1135 in solid form, it can vary depending on several factors. The manufacturing process plays a huge role here. Different production methods can result in different particle sizes. For example, if it's produced through a crystallization process, the conditions like temperature, cooling rate, and the presence of solvents can all affect how the crystals form and ultimately their size.

Typically, the particle size of solid Antioxidant 1135 can range from a few micrometers to several hundred micrometers. Smaller particle sizes, say in the range of 1 - 10 micrometers, offer some advantages. They have a larger surface area per unit mass. This means that they can interact more effectively with the material they're being added to. In a polymer matrix, for instance, smaller particles can disperse more evenly, providing better protection against oxidation throughout the material.

On the other hand, larger particle sizes, maybe around 100 - 500 micrometers, also have their place. They can be easier to handle during the manufacturing process. For example, they're less likely to create dust, which can be a safety hazard in the workplace. And in some cases, they might be more suitable for certain applications where a slower release of the antioxidant is desired.

Let's compare Antioxidant 1135 with some other popular antioxidants. Antioxidant 1010 is another well - known antioxidant. It often has a different particle size distribution compared to Antioxidant 1135. The particle size of Antioxidant 1010 can also vary based on its production method, but generally, it might have a broader range. This difference in particle size can lead to different performance characteristics in applications. For example, Antioxidant 1010 might be better at providing long - term stability in some high - temperature applications due to its specific particle size and chemical properties.

Antioxidant DLTP is yet another option. It has its own unique particle size profile. Antioxidant DLTP is often used in combination with other antioxidants, and its particle size can affect how well it blends with them. A well - matched particle size between different antioxidants can lead to a more homogeneous mixture, which in turn can enhance the overall antioxidant performance.

When it comes to choosing the right particle size of Antioxidant 1135 for your application, it's crucial to consider the specific requirements of your product. If you're working on a thin - film application, smaller particle sizes might be preferred to ensure a smooth surface finish and even distribution of the antioxidant. But if you're dealing with a thick - walled plastic part, larger particle sizes could work just fine.

Antioxidant 1010Antioxidant DLTP

As a supplier, we understand the importance of particle size in the performance of Antioxidant 1135. We have strict quality control measures in place to ensure that the particle size of our product meets the industry standards and your specific needs. We use advanced analytical techniques like laser diffraction to accurately measure the particle size distribution. This allows us to provide you with a consistent product every time.

In addition to particle size, other factors like the purity of Antioxidant 1135 also matter. High - purity Antioxidant 1135 will perform better in preventing oxidation. We take great care in our production process to ensure high purity levels. Impurities can not only reduce the effectiveness of the antioxidant but also cause other issues like discoloration or degradation of the final product.

If you're in the market for Antioxidant 1135, I'd highly recommend considering the particle size and its impact on your application. Whether you need a fine - particle or a coarse - particle product, we can work with you to find the best solution. We have a team of experts who can provide technical support and guidance on which particle size is most suitable for your specific project.

We're committed to providing high - quality Antioxidant 1135 at competitive prices. Our goal is to help you improve the performance and longevity of your products. If you're interested in learning more about our Antioxidant 1135 or have any questions regarding particle size or other aspects, don't hesitate to reach out. We're here to start a conversation and see how we can work together to meet your antioxidant needs. So, if you're looking to enhance the quality of your products with Antioxidant 1135, let's get in touch and discuss your requirements.

References

  • Polymer Additives Handbook, Hans Zweifel (Editor)
  • Journal of Applied Polymer Science, various issues related to antioxidants