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What are the common maintenance tasks for NBR rubber compound rolls?

2024-10-10

NBR Rubber Compound for Rolls is a specialized rubber compound that is widely used in industrial applications due to its excellent properties such as resistance to wear, abrasion, tearing, and chemicals. These rolls play a significant role in the manufacturing process of various products. They are used in industries such as steel, pharmaceuticals, food processing, and textiles.

What are the common maintenance tasks for NBR rubber compound rolls?

Regular maintenance of NBR rubber compound rolls is essential to ensure their longevity and optimal performance. Some of the common tasks include:

Cleaning the rolls regularly

Contamination from dust, debris, or other materials can cause damage to the rolls if left uncleaned. Cleaning the rolls regularly prevents the accumulation of dirt and protects against damage that could cause them to malfunction.

Checking for wear and tear

Inspecting the rolls frequently to check for any signs of wear and tear is crucial. Any damages can be addressed before they lead to more extensive problems.

Monitoring the performance

Incorporating a system to monitor the performance of NBR rubber compound rolls can detect any potential issues early. The system should measure critical operating parameters, such as temperature and pressure, which can indicate problems with the rolls.

Regular lubrication

Lubrication is critical to the proper functioning of NBR rubber compound rolls. The lubricant helps to reduce friction, which, in turn, reduces wear and tear on the rolls.

Regular temperature checks

Heating or cooling of the NBR rubber compound rolls can cause damage to the compound. Regular temperature checks can detect any unusual temperature changes that could indicate a problem with the rolls. In summary, regular maintenance of NBR rubber compound rolls is essential to ensure their longevity and optimal performance. Xiamen Sanlongda Rubber Industry Co., Ltd. is a leading manufacturer of NBR rubber compound rolls. We are committed to delivering high-quality products and meeting our clients' requirements. Our website https://www.sldrubbersolutions.com provides more information about us and our products. For any inquiries or orders, please contact us at dylan@tec-rubber.com.

Research Papers

Pereira, J. F. B., Silva, C. G., Novais, R. M., & Dos Santos, J. F. (2018). Wear resistance evaluation of NBR rubber composites reinforced with different fillers. Science and Engineering of Composite Materials, 25(6), 1067-1073.

Sarawade, P. B., Vijayakumar, C. T., Gadhave, R. V., & Varghese, S. (2019). Strengthening of Natural Rubber Gum and Nitrile Butadiene Rubber (NBR) using Platelet-Shaped Clay Particles. International Journal of Latest Technology in Engineering, Management & Applied Science, 8(5), 133-136.

Guo, Y., Xiao, D., Zhu, L., & Hu, Y. (2017). Effects of graphene oxide and its derivates on the crystallization of styrene-butadiene rubber/nitrile butadiene rubber blends. European Polymer Journal, 88, 138-148.

Li, H., Yao, J., Liu, M., Liu, Q., Chen, Y., & Liu, X. (2017). The test method of oil-resistant performance of NBR rubber coating. In Eighth International Conference on Graphic and Image Processing (ICGIP 2016) (Vol. 10165, p. 1016541). International Society for Optics and Photonics.

Fernández, M. J., Ares, A., Ortiz, S., & Castro, M. (2018). Rubber/nitrile butadiene rubber/silica composites for use as seals in pressure vessels. Polymer Testing, 66, 358-364.

Zahari, N. I., Ips Suriani, M. A., Noriman, N. Z., Zulkifli, R., & Ghazali, Z. (2019). The Potential of Coffee Husk as a Filler in Biodegradable Nitrile Butadiene Rubber Composites. Materials, 12(15), 2406.

Umer, R., Khan, M. A., Zeb, A., & Naseer, M. M. (2018, May). Preparation and characterization of nitrile rubber/organoclay nanocomposites. In IOP Conference Series: Materials Science and Engineering (Vol. 192, No. 1, p. 012056). IOP Publishing.

Kalaitzidou, K., & Zeidán, A. (2018). Microstructure and properties of wood flour-reinforced acrylonitrile-butadiene rubber composites. Materials & Design (1980-2015), 138, 187-195.

Mohanty, N., & Mohanty, S. (2018). Evaluation of free radical polymerization for desorption of residual acrylonitrile from crosslinked nitrile butadiene rubber. ChemistrySelect, 3(5), 1642-1645.

Khan, M. A., Nizami, S. S., Rozlan, S. A. M., Umer, R., & Yusoff, A. R. (2018). Reinforcement of rubber composites through filler surface modification: A review. Journal of Applied Polymer Science, 135(10), 45916.

Khanam, P. N., Bandyopadhyay, S. K., & Mandal, S. (2018). Development of a green rubber composite from elastomer and vegetable oil based biopolymer. Materials & Design (1980-2015), 141, 61-69.

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