Under Floor Heating becomes very popular in the world as a result of development of PE-Xb crosslink pipes. With the production of state of the art Oxygen Barrier Fıratpex Pipes, in our country a problem-free ground heating system is developed. It is the most appropriate solution for heating buildings especially with wide and high ceiling such as business centers, sports halls, school, laboratories, temples and theaters, etc.

In the ground heating systems where homogenous heat distribution is obtained when projected properly, high heating comfort is sustained with low heating degree and therefore a fuel saving at a rate of 25% is achieved and an aesthetical and comfortable atmosphere is sustained in the living spaces.

FIRATPEX Pipe Systems, furthermore, have many advantages such as minimum 50 years of service life, lightweight, fast and free-of-loss application. Ground heating systems is healthy, comfortable and economic. Providing high performance in heat and temperature transmission, Fıratpex Pipe Systems have all the structural properties required for ground heating systems. Ground heating systems is healthy, comfortable and economic. Providing high performance in heat and temperature transmission, Fıratpex Pipe Systems have all the structural properties required for ground heating systems.

The distribution of temperature through environment is smooth and homogenous in the ground heating systems.

In the Under Floor Heating, the installation manner of pipes must sustain proper distribution of the ambient temperature.

Fıratpex pipes have an elastic structure that will enable installations in the forms of single parallel, double parallel, triple parallel and spiral according to the properties of the application area

The distribution of temperature through environment is smooth and homogenous in the ground heating systems.

In the Under Floor Heating, the installation manner of pipes must sustain proper distribution of the ambient temperature.

Fıratpex pipes have an elastic structure that will enable installations in the forms of single parallel, double parallel, triple parallel and spiral according to the properties of the application area.