AvaSpire® AV-722 SL30

About
AV-722 SL30 is a wear resistant grade of AvaSpire® polyaryletherketone (PAEK) designed to provide low wear rates in both non-lubricated and lubricated environments. In addition to the outstanding wear resistance, the resin also offers the outstanding combination of ultra performance attributes commonly known for PEEK. These include: chemical resistance, mechanical strength and stiffness, even at elevated temperatures, as well as long-term and high-temperature thermal-oxidative stability. AV-722 SL30 is formulated with the ternary anti-friction/anti-wear additive system comprised of carbon fiber, graphite, and polytetrafluoroethylene (PTFE.) It offers wear resistance performance comparable to PEEK grades with this modifier system while being more cost-effective. This resin is a low melt flow (high viscosity) grade designed for use in injection molding of less intricate shapes or parts. By virtue of its high viscosity at low shear rates, the resin has high melt strength, and, as such, is extrudable into stock shapes such as rods, pipe, tubing and profile. The resin can be melt processed using conventional equipment and techniques. Potential applications for AV-722 SL30 include bushings, bearings, wear strips, wear rings, rollers, and other parts or components where sliding friction is encountered. The resin is black in color in its natural state.&&

Product Description
SupplierSolvay
GenericPAEK
Material StatusCommercial: Active
FeaturesGood Dimensional Stability,Flame Characteristics,High Heat Resistance,Good wear resistance,Solvent resistance
AvailabilitysAfrica & Middle East ,North America,Latin America,Asia Pacific,Europe

Technical Data
IMPACTNominal valueUnitTest method
Impact strength of cantilever beam notch 
69J/mASTM D256
7.4kJ/m²ISO 180
Notched impact strength of cantilever beam 
450J/mASTM D4812
30kJ/m²ISO 180

THERMALNominal valueUnitTest method
Hot deformation temperature
1.8 MPa, annealed, 3.2 mm267ASTM D648
Glass transition temperature152DSC
Melting peak temperature340ASTM D3418
specific heat DSC
50℃1340J/kg/℃DSC
200℃1810J/kg/℃DSC
Thermal conductivity coefficient0.30W/m/KASTM E1530

MECHANICALNominal valueUnitTest method
Rockwell hardness
M-level82 ASTM D785
Tensile modulus 
12400MPaASTM D638
15700MPaISO 527-2/1A/1
tensile strength 
yield151MPaISO 527-2/1A/5
136MPaASTM D638
Tensile strain 
fracture2.1%ASTM D638
fracture2.1%ISO 527-2/1A/5
Bending modulus 
10200MPaASTM D790
13900MPaISO 178
bending strength 
213MPaASTM D790
209MPaISO 178
compressive strength107MPaASTM D695
shear strength71.0MPaASTM D732
friction coefficient ASTM D3702
0.42 ASTM D3702
0.59 ASTM D3702
0.11 ASTM D3702
0.080 ASTM D3702

PHYSICALNominal valueUnitTest method
Density1.46g/cm³ASTM D792
Melt Flow Rate1.9g/10minASTM D1238
Shrinkage rate ASTM D955
MD:3.2 mm0.10 to 0.30%ASTM D955
TD:3.2 mm1.7 to 1.9%ASTM D955
Water absorption rate
24hr0.030%ASTM D570
Apparent viscosity of melt
400℃,1000 sec^-1240Pa·s

Process Conditions
injectionNominal valueUnitTest method
Drying temperature149°C
Drying time4.0hr
Barrel rear temperature354°C
Barrel middle temperature366°C
Barrel front temperature371°C
Nozzle temperature374°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. Lubricated conditions: 75 fpm and 1000 psi (0.38 m/s and 6895 kPa)
5. Lubricated conditions: 800 fpm and 750 psi (6.06 m/s and 5171 kPa)
6. Dry conditions: 800 fpm and 31.25 psi (4.06 m/s and 215 kPa)
7. Dry conditions: 200 fpm and 125 psi (1.02 m/s and 862 kPa). Not recommended at 50 fpm and 500 psi (0.25 m/s and 3447 kPa).
8. 2 hours at 200°C
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