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LCP-CF

Carbon fiber reinforced LCP is a high-performance composite material using LCP resin as the matrix and carbon fiber (CF) as the reinforcing phase. Carbon fibers impart LCP with extremely high rigidity, excellent electrical/thermal conductivity, and very low coefficient of linear thermal expansion, enabling the material to serve dual functions of structural load-bearing and electromagnetic shielding.

Carbon fiber reinforced LCP is a high-performance composite material using LCP resin as the matrix and carbon fiber (CF) as the reinforcing phase. Carbon fibers impart LCP with extremely high rigidity, excellent electrical/thermal conductivity, and very low coefficient of linear thermal expansion, enabling the material to serve dual functions of structural load-bearing and electromagnetic shielding. CF-LCP has irreplaceable advantages in lightweight structures, EMI shielding, and anti-static applications, making it a critical material for high-end electronics and aerospace sectors.

 

Basic Parameters

Grade

Density (g/cm³)

Tensile Str. (MPa)

Flex. Str. (MPa)

Flex. Mod. (MPa)

Izod Imp. (kJ/m²)

HDT (°C)

Flame Retardant Rating

UL94

Mold Shrink. (%)

LCP + 20% CF

1.45~1.55

160~200

170~220

14,000~18,000

1.5~2.5

280~330

≥35

0.02~0.05

LCP + 30% CF

1.50~1.60

180~230

200~260

20,000~24,000

1.0~2.0

300~350

≥38

0.01~0.03

LCP + 40% CF

1.55~1.65

190~240

210~280

24,000~28,000

0.8~1.5

310~355

≥40

0.01~0.02

 

Performance Characteristics:

  1. Ultra-high rigidity: Flexural modulus up to 24,000+ MPa, far exceeding GF-reinforced grades
  2. Excellent electrical conductivity: Volume resistivity 10⁰~10³ Ω·cm, dual EMI shielding function
  3. Ultra-low CLTE: (0.1~1.5)×10⁻⁵/°C, approaching metal level, suitable for metal insert molding
  4. High thermal conductivity: Thermal conductivity 0.5~1.2 W/(m·K), beneficial for thermal management design
  5. Lightweight: Lower density than GF-reinforced grades, higher specific strength and specific modulus
  6. Self-lubricating: Carbon fibers provide low friction coefficient, reducing wear

 

Application:

  1. EMI shielding housings: 5G base station RF module housings, GPS antenna covers
  2. Semiconductor equipment: Wafer transfer arms, inspection fixtures
  3. Precision instruments: Optical instrument brackets, inspection equipment structural parts
  4. Aerospace: Lightweight structural components, radar antenna reflectors
  5. Automotive lightweighting: EV drive system components
  6. Robotics: Precision joint components, sensor brackets

 


keywords: LCP-CF

classification: Product

Carbon fiber reinforced LCP is a high-performance composite material using LCP resin as the matrix and carbon fiber (CF) as the reinforcing phase. Carbon fibers impart LCP with extremely high rigidity, excellent electrical/thermal conductivity, and very low coefficient of linear thermal expansion, enabling the material to serve dual functions of structural load-bearing and electromagnetic shielding. CF-LCP has irreplaceable advantages in lightweight structures, EMI shielding, and anti-static applications, making it a critical material for high-end electronics and aerospace sectors.

 

Basic Parameters

Grade

Density (g/cm³)

Tensile Str. (MPa)

Flex. Str. (MPa)

Flex. Mod. (MPa)

Izod Imp. (kJ/m²)

HDT (°C)

Flame Retardant Rating

UL94

Mold Shrink. (%)

LCP + 20% CF

1.45~1.55

160~200

170~220

14,000~18,000

1.5~2.5

280~330

≥35

0.02~0.05

LCP + 30% CF

1.50~1.60

180~230

200~260

20,000~24,000

1.0~2.0

300~350

≥38

0.01~0.03

LCP + 40% CF

1.55~1.65

190~240

210~280

24,000~28,000

0.8~1.5

310~355

≥40

0.01~0.02

 

Performance Characteristics:

  1. Ultra-high rigidity: Flexural modulus up to 24,000+ MPa, far exceeding GF-reinforced grades
  2. Excellent electrical conductivity: Volume resistivity 10⁰~10³ Ω·cm, dual EMI shielding function
  3. Ultra-low CLTE: (0.1~1.5)×10⁻⁵/°C, approaching metal level, suitable for metal insert molding
  4. High thermal conductivity: Thermal conductivity 0.5~1.2 W/(m·K), beneficial for thermal management design
  5. Lightweight: Lower density than GF-reinforced grades, higher specific strength and specific modulus
  6. Self-lubricating: Carbon fibers provide low friction coefficient, reducing wear

 

Application:

  1. EMI shielding housings: 5G base station RF module housings, GPS antenna covers
  2. Semiconductor equipment: Wafer transfer arms, inspection fixtures
  3. Precision instruments: Optical instrument brackets, inspection equipment structural parts
  4. Aerospace: Lightweight structural components, radar antenna reflectors
  5. Automotive lightweighting: EV drive system components
  6. Robotics: Precision joint components, sensor brackets

 

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