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Silane XLPO for Photovoltaic Cable / Solar Cable

Silane XLPO for Photovoltaic Cable / Solar Cable Products meet RoHS, REACH and other related environmental protection requirements. The material comply with IEC62930, EN 50618 and TUV 2Pfg-1169 Standards. Flame retardant performance of the finished cable meet IEC 60332-1-2.

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Silane XLPO for Photovoltaic Cable / Solar Cable

Description

Products meet RoHS, REACH and other related environmental protection requirements. The material comply with IEC62930, EN 50618 and TUV 2Pfg-1169 Standards. Flame retardant performance of the finished cable meet IEC 60332-1-2.

 

Standard

1. TUV 2Pfg-1169  2.EN50618  3. IEC62930, IEC-60332-1-2 

Application

Item Code

Base : Catalyst

Description

Application

RCI-6251-1

25:10 (in weight)

125℃ Silane Crosslinked Low Smoke Halogen Free

Flame Retardant Polyolefin Cable Material

For Photovoltaic Insulation

RCI-6251H-1

90:10 (in weight)

125℃ Silane Crosslinked Low Smoke Halogen Free

 Flame Retardant Polyolefin Cable Material

   For Photovoltaic Sheath 

No

Test Items

Unit

Typical Value

RCI-6251-1

RCI-6251H-1

1

Appearance

-

Compliance

Compliance

2

Density

g/cm3

1.0±0.02

1.48±0.02

3

Original Tensile Strength

MPa

20.0

12.0

4

Original Elongation at Break

%

450

180

 

5

Thermal Ageing

Test Conditions

-

150℃*168h

Retention Rate of Tensile Strength

%

115

120

Retention Rate of

Elongation at Break

%

80

80

6

Short-term

Test Conditions

-

185℃*100h

High-Temperature Thermal Aging

Retention Rate of

Elongation at Break

%

70

75

7

 

Low-temperature Impact

Test Conditions

-

-40℃

Failure  (≤15/30)

Piece

0

0

8

Oxygen Index

%

19

35

9

Volume Resistivity(20℃)

Ω.m

1 x 1014

1 x 1012

10

Dielectric Strength(20℃)

MV/m

28

22

 

11

 

 

Thermal

Elongation

Test Conditions

-

250ºC     0.2MPa      15min

Elongation Rate Under the Load

%

45

30

Permanent Change Rate After Cooling

%

+2.5

0


 

12

 

The Gas When it Burns

HCl and HBr Content

HF Content

pH Value

Conductivity

%

%

-

µs/mm

0

0

 /

 /

0

0

5

7

13

Smoke Density

With flame

Ds max

/

90

The data of original elongation at break is tested after the process at 130℃×24h.

The technical indicators specified in the table are the values obtained after crosslinking

Use Methods

1. Mixing:  

Mix the Component A and Component B evenly, add them into the

hopper.The material should be use up within 2 hours after unpacking.(It can't be dried.)The external water can’t be brought in during the process.

 

2. Screw Type:
  Insulation: Suggest to use equal distance & unequal depth, single thread   

screw; Compression Ratio:2.5-3

Sheath:Low smoke halogen free special screw; Compression Ratio:1.5±0.2

 

3. Extrusion Temperature:

 

Mark

Zone 1

Zone 2

Zone 3

Zone 4

Neck

Head

RCI-6251-1

120±10

150±10

170±10

170±10

170±10

170±10

RCI-6251H-1

110±10

120±10

140±10

140±10

140±10

140±10

Control the melt temperature of Insulation at 190±10℃. The melt temperature of Sheath at 160± 10℃ .The extrusion temperature should be adjusted according to the actual situation.

4. Pay-off Speed:

Without the effect of smoothness and performance, the faster is better.

5. Cross-linking:

The speed of cross-linking depends on the thickness of the insulation, humidity and environmental temperature. The thickness of the test piece is 1mm.Water bath  (steam) temperature is controlled at 60-70℃, cross-linking may be finished within 4 hours. Full performance test, water bath (steam) 60 ℃, more than 8 hours, to ensure the material is fully cross-linked.

 

Package, Transport and Storage

Package:Vacuum packed.

Transport: Can’t be exposed to the sun or rain, or suffer mechanical damage.

Storage:Should be stacked on the pallet in a clean, dry and ventilated warehouse.

Warranty:6 months.


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