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  • Conductive POM Plastic Pellets Carbon Fiber Filled
Conductive POM Plastic Pellets Carbon Fiber Filled

Conductive POM Plastic Pellets Carbon Fiber Filled

Conductive engineering plastic POM

Main features: Conductive POM is based on POM raw materials, mixed with carbon fiber, carbon black, metal fiber, metal powder, permanent antistatic masterbatch, etc., which can achieve antistatic, static dissipation, conductivity and electromagnetic wave interference ( EMI) shielding and other functions, conductive POM has high rigidity, high hardness, high mechanical strength, wear resistance, self-lubrication, high elastic modulus, chemical resistance and other properties.

Uses of conductive POM:

(1) IC and LCD trays, IC packages, chip carriers, film bags, etc. used in the production of precision electronic components such as integrated circuits, chips, and sensor sheaths in the electronics and electrical fields

(2) Shells and structural parts used for explosion-proof products, such as: electrical product shells and structural parts used in coal mines, oil tankers, oil fields, dust and combustible gases, etc.

(3) Transportation packaging, electronic appliances, automobiles, communications; medical equipment, mine safety, etc.

(4) Semi-conductive shielding materials used in medium and high voltage cables.

(5) EMI shielding shells for electrical products in the fields of telecommunications, computers, automation systems, industrial resistance products, consumer electronics products, automotive electronics products, etc.


Physical Properties

Metric

English

Specific Gravity

1.45 g/cc

1.45 g/cc

Linear Mold Shrinkage

0.0050 - 0.010 cm/cm

0.0050 - 0.010 in/in

Mechanical Properties

Metric

English

Hardness, Rockwell M

85

85

Tensile Strength at Break

94.0 MPa

13600 psi

Elongation at Break

5.0 %

5.0 %

Flexural Strength

137 MPa

19900 psi

Flexural Modulus

6.40 GPa

928 ksi

Izod Impact, Notched

0.450 J/cm

0.843 ft-lb/in

4.50 J/cm

8.43 ft-lb/in

Coefficient of Friction, Dynamic

0.15

0.15

Coefficient of Friction, Static

0.11

0.11

Taber Abrasion, mg/1000 Cycles

23

23

Thermal Properties

Metric

English

Deflection Temperature at 0.46 MPa (66 psi)

165 °C

329 °F

Deflection Temperature at 1.8 MPa (264 psi)

160 °C

320 °F

Processing Properties

Metric

English

Rear Barrel Temperature

170 - 190 °C

338 - 374 °F

Middle Barrel Temperature

190 - 210 °C

374 - 410 °F

Front Barrel Temperature

200 - 220 °C

392 - 428 °F

Nozzle Temperature

200 - 220 °C

392 - 428 °F

Melt Temperature

210 - 220 °C

410 - 428 °F

Mold Temperature

60.0 - 120 °C

140 - 248 °F

Drying Temperature

90.0 - 110 °C

194 - 230 °F

Dry Time

3 - 6 hour

3 - 6 hour

Injection Pressure

39.23 - 83.36 MPa

5690 - 12090 psi

68.7 - 118 MPa

9960 - 17100 psi

Back Pressure

0.000 - 3.92 MPa

0.000 - 569 psi

Screw Speed

40 - 75 rpm

40 - 75 rpm


Application range



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