AJ Fibertek India’s insulation division offers high-performance solutions built for extreme heat and noise environments. Our HAMAT® range—made from ECR glass and high-silica fibers—is trusted in automotive exhaust systems, industrial equipment, and power applications. Lightweight, non-combustible, and customizable, our insulation products meet stringent emission and performance standards while improving efficiency and durability across critical systems.
Product Specification
Technical Characteristics
Material
E-Glass
Transformation Temp
640°C
Filament Diameter
9-13 um
Ignition Loss
≤ 2.0%
Volume Shrinkage
0%
Density (Kg/m3)
120 ~ 160
Thickness (mm)
3 ~ 20
Combustibility
Non-Combustible
Binder
Binder Free
ECR-Glass Needle Mats are made from 100 % inorganic fiber and are non-combustible with high porosity and excellent sound absorption.
ECR-Glass Needle Mats are made from 100 % inorganic fiber and are non-combustible with high porosity and excellent sound absorption.
Product Specification
Technical Characteristics
Material
ECR-Glass
Transformation Temp
761°C
Filament Diameter
13-19 um
Ignition Loss
≤ 2.0%
Volume Shrinkage
≤ 1 %
Density (Kg/m3)
120 ~ 160
Thickness (mm)
3 ~ 20
Combustibility
Non-Combustible
Binder
Binder Free
High Silica Needle Mats are made from 100 % inorganic fiber and are non-combustible with high porosity and excellent sound absorption.
Product Specification
Technical Characteristics
Material
Silica Fiber
Transformation Temp
850°C
Filament Diameter
7-16 um
Ignition Loss
≤ 9.0 %
Volume Shrinkage
≤ 8 %
Density (Kg/m3)
120 ~ 160
Thickness (mm)
3 ~ 20
Combustibility
Non-Combustible
Binder
Binder Free
Product Specification
Technical Characteristics
Material
High Silica Fiber
Transformation Temp
1050°C
Filament Diameter
> 6 um
Ignition Loss
≤ 9%
Volume Shrinkage
Max 7 %
Density (Kg/m3)
120 ~ 160
Thickness (mm)
3 ~ 20
Combustibility
Non-Combustible
Binder
Binder Free
Silica Needle Mats are 100% inorganic fiber, non-combustibility with high porosity, excellent sound absorption. Special features with high temperature duration, low heat shrinkage and heat loss. As well as low thermal conductivity, excellent thermal insulation and good tensile strength and resistance for wind velocity.