Fiberglass multiaxial fabrics are constructed by layering fiberglass strands at various angles (typically 0°, 90°, ±45°) to the fabric's surface. The layers are then stitched together, creating a highly versatile reinforcement material. This method of construction allows the fabric to offer significant improvements in strength, stiffness, and impact resistance over conventional woven fabrics. Multiaxial fabrics can be tailored to meet specific performance requirements by adjusting the orientation and weight of the fiber layers, making them highly adaptable to a wide range of applications.
FEATURE
Directional Strength:
Allows for the optimization of strength and stiffness in specific directions, enhancing the performance of composite structures.
Improved Mechanical Properties:
Provides superior tensile, compressive, and flexural strength compared to traditional woven fabrics.
Reduced Weight:
Offers a high strength-to-weight ratio, crucial for applications where weight savings are essential.
Enhanced Durability:
Increases the impact resistance and durability of composite materials, extending the lifespan of the final product.
Versatility:
Can be combined with various resin systems (e.g., polyester, vinyl ester, epoxy) to produce composites tailored to specific requirements.
Efficient Lay-up Process:
The absence of crimps (bends in the fibers) leads to better resin impregnation, reducing void content and enhancing the overall quality of the composite.
APPLICATION
Wind Energy:
Utilized in the production of wind turbine blades, where high strength and fatigue resistance are critical.
Marine Industry:
Applied in boat and ship construction, offering enhanced strength and resistance to water and environmental conditions.
Automotive and Aerospace:
Used in the manufacturing of lightweight, high-strength components for vehicles and aircraft, contributing to improved fuel efficiency and performance.
Sports and Recreation:
Ideal for producing robust and lightweight sporting goods, such as skis, snowboards, and bicycle frames.
Construction and Infrastructure:
Employed in the creation of bridges, roofing elements, and structural reinforcements where directional strength and durability are necessary.
Industrial Applications:
Used in the manufacture of tanks, pipes, and industrial components requiring high strength and chemical resistance.
SPECIFICATION
|
Code
|
Total Weight(gsm)
|
0°
(g/m2)
|
90°
(g/m2)
|
+45°
(g/m2)
|
-45°
(g/m2)
|
CSM
(g/m2)
|
Stitching Yarn(g/m2)
|
|
UDL550
|
550
|
420
|
120
|
-
|
-
|
-
|
10
|
|
UDTM200/225
|
435
|
-
|
200
|
-
|
-
|
225
|
10
|
|
EBX400
|
407
|
-
|
-
|
200
|
200
|
-
|
7
|
|
EBX600
|
609
|
-
|
-
|
301
|
301
|
-
|
7
|
|
BXM600/225
|
832
|
-
|
-
|
300
|
300
|
225
|
7
|
|
LTM600/300
|
910
|
336
|
264
|
-
|
-
|
300
|
10
|
|
LTM800/300
|
1110
|
420
|
380
|
-
|
-
|
300
|
10
|
|
LTM1200/300
|
1510
|
672
|
528
|
320
|
-
|
300
|
10
|
|
TLX1200
|
1214
|
567
|
-
|
200
|
320
|
-
|
7
|
|
QX800
|
808
|
283
|
118
|
250
|
200
|
-
|
7
|
|
QX1200
|
1207
|
576
|
124
|
|
250
|
-
|
7
|
*Specific products could be made according to customers’requirements.