Product Details:
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Material: | Leather , Coated Microfiber Fabric | Colour: | Customized |
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Size: | Customized | Thickness: | 1.4mm To 1.6mm,Customised Available |
Width: | 137cm | Feature: | Good Quality,fadeless,Abrasion-Resistant,etc |
Usage: | Bags. Totes. Belt. Luggage. Bagspurses | Hand Feeling: | Ordinary |
Supply Type: | Make-to-Order | ||
High Light: | Fold Resistant Coated Microfiber Fabric,Coated Microfiber Fabric For Handbag,137cm Faux Leather Nubuck Fabric |
Faux Leather Suede Microfiber Material Coated Microfiber Fabric Fold-Resistant For Handbag
Advantage:
Thickness | 01.0-1.2mm |
Width | 137-140cm |
Color | By your requests |
Pattern | Embossed |
Usage | Sofa,Decorative, Furniuture, Belt, Chair, Car,Car Seat, Notebook ect |
Feature | Abrasion-Resistant, Anti-Mildew, Elastic,Waterproof, Eco- friendly etc |
Packing details | By your requirements |
Other | Anti-yellow, Anti-fire, Anti-bacterium, Hydrolysis resistance, Low Temperature Flexibility, Tear Strength, Weathering Resistance and Long Lived Deal ect can be tailor-made |
MATERIAL
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PVC |
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THICKNESS
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Can be customized by customers |
COLOR
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Various color available,can be customized |
TOUCH FEELING
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Soft or hard,as your requirement |
CHARACTER
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Abrasion-Resistant,Anti-Mildew,Anti-scratch,etc |
USAGE
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Bags,Totes,Belt,Bagspurses,Other,etc |
The Bragg grating structures were fabricated in the polymer microfiber by a phase mask technique using a He–Cd laser emitting light at 325 nm. The Bragg peak started appearing just after the fiber was illuminated with the UV laser and grew thereafter, reaching saturation, and then decreasing as shown with maximum reflected power obtained in 3 min. This grating growth behavior was similar to that of the original photosensitive polymer fibers, but the exposure time to obtain the maximum peak was lower than that of nontapered PFBG, which is normally 7–10 min with the same experimental setup. This phenomenon is attributed to the relation between the thickness of the polymer fiber and the UV laser power, in which the effective power in the core of the fiber is dependent on the penetration depth. A small shift is observed for the reflection peak of the polymer microfiber grating due to the decrease in the effective refractive index of the polymer fiber at smaller radii.
The fabricated POFBGs can be used in a number of applications in which high-sensitivity measurements are required. Compared to silica microfibers, polymer microfiber gratings can be advantageous due to their high-temperature sensitivity, very low Young's modulus, and their flexibility. These features of the polymer microfiber grating would make it ideal for medical applications such as in medical textiles.
Contact Person: Alispan
Tel: +8613710460762