In the realm of contemporary industrial applications, materials often shine when delivering specific advantages. However, a significant challenge emerges when a combination of materials is required to encompass all essential benefits, resulting in an increase in weight and a compromise in overall performance. This is where our groundbreaking Armorweave® 3D Fabrics line steps in, meticulously engineered to provide four critical enhancements—shock absorption, cushioning, lightweight properties, and breathability. With these cutting-edge innovations, we offer unmatched protection and superior performance without compromising agility or comfort.
Our arsenal of high-performance synthetic materials, including our honeycomb weave and tubular weave fabrics, features a distinctive three-dimensional design and customizable weave patterns. Fashioned from polypropylene and polyethylene yarn, these fabrics are not only inert and non-absorbent but also exceptionally lightweight, presenting a compelling alternative to conventional foam products. Their enduring open construction makes them the ultimate all-in-one solution for the exacting demands of modern applications.
Because our 3D fabrics have a very low compression set, they can handle applicaions requiring both comfortable cushioning and structure. While most materials flatten to the “bottom out” point during use, our fabrics provide soft comfort while maintain ning their dimensional stability, and they “remember” their shape even in continuous load-bearing situations. This makes them ideal for applications such as seats, aircraft, boats, backpacks and more.
ASTM D3775
visual
ASTM D5261
ASTM D4632
ASTM D1777
ASTM D4491
ASTM D737
threads/in
n/a
oz/sq. yd.
lb
mils
gal/min/ft2
cfm
65 X 74
Spacer
10
260 warp, 255 fill
240
-
-
70 X 53
Spacer
18
700 warp, 335 fill
500
500
1100
78 X 88
Spacer
15
476 warp, 382 fill
250
430
900
Discover the pinnacle of protection and durability with ArmorWeave 3D technology by Lumite. Experience unbeatable strength, unmatched resilience, and unparalleled performance.