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  • 光缆2

KFRP光缆加强芯

强英公司是专业从事SMC/BMC复合材料和FRP光缆加强件研发、生产、销售、技术服务于一体的制造企业。

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一、产品特性  (Product Features)

1、轻质高强:芳纶纤维光缆加强芯密度低、强度高,无论强度或模量都远远超过钢丝和玻璃纤维光缆加强芯;

Light weight and high strength: KFRP has the characteristics of low density and high strength. Its ratio of strength and modulus are higher than those of steel wire and GFRP;

2、低膨胀:芳纶纤维光缆加强芯在宽温度范围内,线膨胀系数小于钢丝和玻璃纤维光缆加强芯;

Low expansion: KFRP has a lower coefficient of thermal expansion than steel wire and GFRP in a wide range of temperature;

3、耐冲击、抗断裂:芳纶纤维光缆加强芯不仅具有超高的拉伸强度(≥1600Mpa),而且耐冲击、抗断裂,即使在折断的情况下仍可保持1300Mpa左右的拉伸强度;

Impact and break resistance: KFRP has much higher tensile strength (≥1600Mpa). Even it is broken, the remained tensile strength could be 1300Mpa;

4、柔韧性好:芳纶纤维光缆加强芯质地轻柔,易于弯曲,其最小弯曲半径仅为直径的12倍;

Good flexibility: KFRP is flexible and easy to be bent. Its minimum bending radius is 12 times of the diameter of KFRP rod;

5、使室内光缆结构紧凑、美观、弯曲性能优异,特别适宜于复杂室内环境的布线。

Good aesthetic and flexible, especially for the indoor layout.

 

二、产品规格、直径 (Product Specification、Diameter)(mm) 

Φ0.40mm   Φ0.50mm×Φ0.58mm

Φ0.45mm   Φ0.62mm×Φ0.68mm


三、KFRP技术性能指标  (KFRP Technical Performance Indicators)

序号NO.

项目 Item

单位 Unit

指标要求 Index

1

直径偏差Diameter tolerance

本体Body

mm

±0.05

涂层Coating

2

扁平率Non-

circularity

本体Body

%

≤5.0

涂层Coating

3

最小弯曲性能

Minimum   bending property

弯曲半径10D,表面无裂纹或毛刺、无弯折、不解体、手感光滑

Bending   semi-diameter:10D, surface with no bur, cracks and break

4

拉伸强度

Tensile   strength

Mpa

≥1600

5

拉伸弹性模量

Tensile   modulus

Gpa

≥52

6

高温弯曲性能

High   temperature bending test

(80℃,24h)

弯曲半径30D,表面无裂纹或毛刺、无弯折、不解体、手感光滑

Bending   semi -diameter:30D, surface with no bur, cracks and break

7

低温弯曲性能

Low   temperature bending test

(-40℃,24h)

表面无裂纹或毛刺、无弯折、不解体、手感光滑

Surface   with no bur, cracks and break

注1:对于含涂层的KFRP,只考量涂层的直径偏差和不圆度,而不需考量本体的直径偏差和不圆度。

Note1: For KFRP with coating, it only   considers the diameter tolerancea and non-circularity of coating.

注2:D代表KFRP的标称本体直径。

Note2: D represents the body of KFRP   itself.

注3:材料的弯曲寿命待研究。

Note3: Bending life of material is to   research.