Traditional air-conditioning pipes made from materials such as copper and aluminum
have limitations in terms of strength, durability, and cost-effectiveness. The use of
composite materials offers a promising alternative to overcome these limitations due to
improving the mechanical properties of air-conditioning pipes by incorporating
composite materials. The paper explores the mechanical properties of composite
materials and their potential to enhance the strength, flexibility, and resistance to
corrosion of air-conditioning pipes. Whereas gas leakage issues have developed into one
of the most significant issues in air conditioning organizations, the solution to these issues
looks forward to improving the gas connection pipes in air conditioning companies and
enhancing their durability. The goal of the study presented in this research paper is to
improve gas pipes by adding insulating and supporting layers to increase the pipe’s
durability, such as layers of carbon and fiber. Through Simulation, materials have been
added at various angles and directions to determine the best accessible condition to
improve the condition of the ionization tube. The results revealed that the presence of
carbon fiber layers at angles of 45 degrees from the inner diameter and 90 degrees from
the outer diameter provides the best accessible condition and results in the least amount
of distortion, with the best case’s deformation reaching 0.157 meters

Customer Reviews
Thanks for submitting your comment!