AvaSpire® AV-651 CF30

About
AvaSpire® AV-651 CF30 is a 30% carbon fiber reinforced version of AvaSpire® AV-651. This formulation offers some advantages relative to 30% carbon fiber reinforced PEEK which include better dimensional stability and warp resistance during injection molding. The AV-651 CF30 grade offers the highest strength, stiffness, and fatigue resistance of any AV-651-based grade. Furthermore, this resin generally retains most of the desirable ultra-performance attributes of carbon fiber reinforced PEEK. Those attributes include chemical resistance, fatigue resistance, and long term thermal oxidative stability. The excellent balance of properties of AV-651 CF30 makes this grade well suited for a broad range of applications across a number of industries including healthcare, transportation, electronics, oil and gas, and chemical processing. This resin can be easily melt processed by injection molding using standard equipment. The melt processing behavior of AV-651 CF30 is overall very similar to that of 30% CF reinforced PEEK. While the resin can also be extruded, the lower melt flow AV-621 CF30 grade is considered more suited for extrusion applications while offering the same property profile as AV-651 CF30.&&

Product Description
SupplierSolvay
GenericPAEK
Material StatusCommercial: Active
FeaturesGood Rigidity,Good Dimensional Stability,Good disinfection,Steam sterilized,Gamma radiation,E-beam disinfection,Flame Characteristics,High pressure disinfection,High Heat Resistance,Radioactive,Fatigue resistance,Radiation disinfection,Solvent resistance,Resistance to the steam,Ethylene oxide disinfection,Heat sterilization
AvailabilitysAfrica & Middle East ,North America,Latin America,Asia Pacific,Europe
Process MethodsProfile extrusion

Technical Data
IMPACTNominal valueUnitTest method
Impact strength of cantilever beam notch 
59J/mASTM D256
8.4kJ/m²ISO 180
Notched impact strength of cantilever beam 
590J/mASTM D4812
37kJ/m²ISO 180

THERMALNominal valueUnitTest method
Hot deformation temperature
1.8 MPa, annealed, 3.2 mm212ASTM D648
Glass transition temperature158ASTM D3418
Melting peak temperature345ASTM D3418
Linear coefficient of thermal expansion
MD:-50~50℃8.2E-61/℃ASTM E831
specific heat DSC
50℃1320J/kg/℃DSC
200℃1770J/kg/℃DSC
Thermal conductivity coefficient0.36W/m/KASTM E1530

MECHANICALNominal valueUnitTest method
Shore hardness
Shore D, 23 ℃, 3.20 mm, injection molding85 to 90 ASTM D2240
Rockwell hardness
M-grade, 23 ℃, 3.20 mm100 to 105 ASTM D785
Tensile modulus 
20700MPaASTM D638
21100MPaISO 527-2/1A/1
tensile strength 
yield192MPaISO 527-2/1A/5
184MPaASTM D638
Tensile strain 
fracture1.5%ASTM D638
fracture1.5%ISO 527-2/1A/5
Bending modulus 
17200MPaASTM D790
19100MPaISO 178
bending strength 
262MPaASTM D790
280MPaISO 178
compressive strength168MPaASTM D695
shear strength94.0MPaASTM D732

PHYSICALNominal valueUnitTest method
Density1.42g/cm³ASTM D792
Melt Flow Rate
400℃,2.16kg4.5g/10minASTM D1238
Shrinkage rate ASTM D955
MD:3.2 mm0.0 to 0.20%ASTM D955
TD:3.2 mm0.90 to 1.1%ASTM D955
Water absorption rate
24hr0.20%ASTM D570
Apparent viscosity of melt
400℃,1000 sec^-1540Pa·sASTM D3835

Process Conditions
injectionNominal valueUnitTest method
Drying temperature149°C
Drying time4.0hr
Barrel rear temperature366°C
Barrel middle temperature371°C
Barrel front temperature377°C
Nozzle temperature382°C
Processing (melt) temperature366 to 388°C
Mold temperature149 to 177°C

Notes
1. Typical properties: these are not to be construed as specifications.
2. 5″ x 0.5″ x 0.125″ bars
3. 0.20 in/min
4. 2 hours at 200°C
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