Thermal insulation fabric ducts are used in medical warehouses
October 24, 2024
This project is a pharmaceutical company pharmaceutical warehouse fiber fabric rubber plastic composite insulation cloth bag air pipe project.
1, fire performance: inner duct layer: A2 grade non-combustible material, meet the national standard GB8624-2012 "Building design fire Code" relevant provisions.
External protection layer: B1 class flame retardant fabric material, which meets the relevant provisions of the national standard GB8624-2012 "Code for Building Fire Design".
2, insulation performance: In order to meet the needs of insulation, the entire area of the project adopts 25mm thick B1 class fire rubber and plastic insulation air pipe, and can provide the comprehensive thermal resistance test report corresponding to rubber and plastic air pipe materials.
3, fiber fabric rubber composite insulation bag air pipe without support hanger installation, using QR quick mounting slide rod suspension technology to achieve suspension installation.
4, fiber fabric rubber composite insulation bag air pipe adopts rapid cutting processing technology and rapid straight pipe and branch pipe connection technology, to adapt to all kinds of transformation and adjustment caused by changes in site layout.
5. Due to the requirement of balanced air supply for the fiber fabric rubber composite insulation bag air pipe of this project, we adopted the directional distribution technology of air flow in the air pipe system. Through the unique fiber fabric regulating valve in the pipe, we reasonably allocated the air volume distribution of branch pipes to meet the personalized air supply requirements of different functional areas.
6. Due to the demand of long distance air supply for the fiber fabric rubber composite insulation bag air pipe of this project, we adopted the long distance uniform air supply technology for the fiber fabric insulation air pipe. Through accurate calculation of pipe diameter and reasonable setting of valves, we achieved the balance of resistance at the front and back end of the long distance air pipe system and the effect of uniform air supply at the near and far end of the air pipe.