The thermal insulation system has designed multiple thermal insulation systems for the oil and gas, petro and power plants markets. Working with alkadiene and NBR/PVC rubber materials, the multi-layer design is aimed at achieving an optimal balance of thermal performance; protection against water vapor ingress and reduced weight and thickness, our customers can rely on durable, cost and energy efficient insulation systems.
For optimum operation, industrial facilities such as power plants require mechanical insulation on pipes, ducts, tanks and equipment. Mechanical insulation in a power plant controls temperature variation to help limit heat gain or loss on surfaces operating at temperatures above or below ambient temperature. An experienced contractor typically manages installation of mechanical insulation in industrial environments.
Selecting the type of mechanical insulation to install begins with asking basic questions and understanding the scope of work. Mechanical insulation is divided into three different categories based on the level of heat it can withstand. Mechanical insulation contractors need to know the operating temperature range of the plant’s system before installing insulation. Knowing if a system is outdoors, indoors or both determines the type of protection needed to prevent damage from weather, a corrosive atmosphere, water or chemical exposure and other challenging conditions.
Over four decades, the insulation manufacturing organization has grown to support product installations in over 60 countries. From national stadiums to iconic high rises globally, people around the world are enjoying these high-quality insulation products.
Q1What materials are used in the multi-layer thermal insulation design?
The multi-layer system utilizes alkadiene and NBR/PVC rubber materials to achieve an optimal balance of thermal performance and protection.
Q2Why do industrial power plants require mechanical insulation?
Power plants require mechanical insulation on pipes, ducts, tanks, and equipment to control temperature variation and limit heat gain or loss on operating surfaces.
Q3How is mechanical insulation categorized for installations?
Mechanical insulation is divided into three distinct categories based on the level of heat the material can successfully withstand.
Q4What must a contractor know before installing mechanical insulation?
Contractors need to determine the operating temperature range of the system and verify whether the system is installed indoors, outdoors, or both.
Q5How does the installation environment affect the choice of insulation?
The environment determines the specific type of protection required to prevent damage from weather, corrosive atmospheres, water ingress, and chemical exposure.