3D Fiberglass Woven Fabric For Bulkheads
| Product Type |
---|
3D Fiberglass Woven Fabric |
3D Fabric Composited Sandwich Panels |
3D GRP Reinforced Foam Cement Board |
3D GRP Foam Concrete Sandwich Panel |
Product Description
3-D spacer fabric construction is a newly developed concept. The fabric surfaces are strongly connected to each other by the vertical pile fibers which are interwoven with the skins. Therefore, the 3-D spacer fabric can provide good skin-core debonding resistance, excellent durability and superior integrity. In addition, the interstitial space of the construction can be filled up with foams to provide synergistic support with vertical piles. | |
| Product Characteristics: The 3-D spacer fabric consists of two bi-directional woven fabric surfaces, which are mechanically connected with vertical woven piles. And two S-shaped piles combine to form a pillar, 8-shaped in the warp direction and 1-shaped in the weft direction. The 3-D spacer fabric can be made of glass fiber, carbon fiber or basalt fiber. Also their hybrid fabrics can be produced. The range of the pillar height:3-50 mm, the range of the width:≤3000 mm. The designs of structure parameters including the areal density, the height and distribution density of the pillars are flexible. |
The 3-D spacer fabric composites can provide high skin-core debonding resistance and impact resistance and impact resistance, light weight. high stiffness, excellent thermal insulation, acoustic damping, and so on. |
Get Sample & Quotation
3D Fiberglass including 3D Fiberglass Woven Fabric, 3D fabric composited sandwich Panels, 3D GRP reinforced foam cement board, 3D GRP foam concrete sandwich panel.
PRODUCT SPECIFICATION
RELATED CATEGORIES
View Related Categories
3D Fiberglass Woven Fabric
Fiberglass Direct Roving
Fiberglass Assembled Roving
AR Fiberglass Roving
Fiberglass Chopped Strands for Thermoplastics
Fiberglass Chopped Strands for BMC
Milled Fiberglass Powder
Fiberglass Stitched Combo Mat
Fiberglass Chopped Strand Mat
Woven Roving
Fiberglass Tissue Mat
Fiberglass Needled Mat
Fiberglass Thermoplastic Item
SMC Items
Shipping & Storage
Unless otherwise specified, the fiberglass products should be in dry, cool and moisture-proof area. Room temperature and humility should be always maintained at 15-35℃ and 35%-65% respectively.
Application
The products have broad application prospects in automobile, Locomotives, aerospace, marine, windmills, building and other industries.
Our Services
- For more please check--Trade Assurance
- Your inquiry will be replied within 24hours
- 14 years Alibaba Gold member
- Free sample
Contact Us
Tel: +86 792 8322300/8322322/8322329
Cell: +86 13923881139
Fax: +86 792 8322312
website: http://www.fiberglassfiber.com
website on waimaotong.com: http://chinabeihai.waimaotong.com
Online contacts: Whatsapp & wechat: +86-13923881139
FAQ
1. How can I obtain the smooth surface on the Beihai 3D Fabric laminates like the smooth surface on your samples?
The smooth surface of the samples requires a smooth waxed mold, i.e. glass or melamine. In order to obtain a smooth
surface on both sides, you can apply a second waxed mold (clamp mold) onto the wet Beihai 3D Fabric, taken into
account the thickness of the fabric.
2. How can I be sure that the fabric is completely impregnated?
You can easily tell by the level of transparency if the Beihai 3D Fabric has been wetted out properly.
Avoid oversaturated areas (inclusions) by simply rolling the excess resin to the edge- and out of the fabric. This will
leave the right amount of resin remaining in the fabric.
3. How can I avoid a print-through on the gelcoat?
- For most applications, a simple veil or layer of CSM is sufficient.
- For more critical visual applications, you can use a print-blocking barrier coat.
Another way is to let the outer skin cure before adding Beihai 3D Fabric.
4. How can I add more layers and other materials to the Beihai 3D Fabric?
You can apply other materials (csm, roving, foam etc) wet on wet on the Beihai 3D Fabric.
Up to 3 mm glass can be rolled on wet Beihai 3D Fabric before the end of the gelt-time and the full spring-back force
will be guaranteed.
After the gel-time layers of superior thickness can be laminated.
5. How to apply decorative laminates (e.g. HPL Prints) on the Beihai 3D Fabric?
Decorative laminates can be used on the mould-side and the fabric is laminated directly on top of the laminate or the
decorative laminates can be rolled over the wet Beihai 3D Fabric.
6. How to make an angle or curve with Beihai 3D Fabric?
One advantage of Beihai 3D Fabric is that it is fully shapeable and drapeable.
Simply fold the fabric in the desired angle or curve in the mold and roll well.
7. How can I color the Beihai 3D Fabric laminate?
By coloring the resin (adding a pigment to it)
8. How can I ensure the translucency of the Beihai 3D Fabric laminate?
The translucency is a result of the color of the resin, contact your resin supplier.
9. What is the reason of the rising (spring back) capacity of the Beihai 3D Fabric?
Beihai 3D Fabric 3d Glass Fabrics are cleverly designed around the natural qualities of glass. Glass can be ‘bent’ but
cannot be ‘creased’.
Imagine all those springs throughout the laminate pushing the decklayers apart, the resin stimulates this action
(also called capillarity).
10.How can I avoid damages in the surface quality of the fabric (wrinkles and folds in the decklayers)?
Storage is important for the ensurance of the quality: stock the rolls horizontally in a dry environment at normal
temperatures, unroll the fabric evenly and do not fold the fabric.
- Folds: you can remove folds by easily sliding the roller away from the fold when rolling next to it.
- Wrinkles: rolling gently over the wrinkle will simply cause it to disappear.
11.The fabric does not cure well enough, what should I do?
Two possible solutions:
1) When working with resins containing styrene, the entrapment of volatile styrene with the impregnated Beihai 3D
Fabric could cause cure inhibition. A low(er) styrene emission (LSE) type of resin or alternatively the addition of a
styrene emission reducer (e.g. Byk S-740 for polyester and Byk S-750) to the resin is recommended.
2) To compensate the low masses of resin and therewith decreased curing temperature in the vertical pile threads,
a highly reactive cure is recommended. This can be achieved with an increased catalyst level and with an
increased level (preferably Cobaltoctoate) compensated with an inhibitor to set the gel time.