FabDigit

PPA · reinforced grade

PPA-GF50

Properties of the GF50 condition, compared with the other PPA grades.

Choose for maximum stiffness/creep resistance in metal-replacement structural parts where anisotropic shrinkage can be tolerated.

Injection moldingSpecialty cost $$$$$

What is PPA-GF50?

PPA-GF50 is PPA in the GF50 grade — choose for maximum stiffness/creep resistance in metal-replacement structural parts where anisotropic shrinkage can be tolerated. PPA-GF50 has a tensile strength of 245 MPa (35.5 ksi), stronger than 100% of polymer grades. Elongation at break is 1.9% and the elastic modulus is 17 GPa (2.47 Msi). PPA-GF50 has a density of 1.62 g/cm³ (0.0585 lb/in³), heavier than 93% of polymer grades. Its glass-transition temperature is 123°C (253 °F). GF30 is the default condition FabDigit quotes; GF50 is available on request or by drawing note.

Advantages

  • Stiff — 17 GPa (2.47 Msi), better than 99% of polymer grades
  • Low, predictable mold shrinkage — 0.25%, better than 94% of polymer grades
  • Conducts heat well — 0.4 W/m·K (0.231 BTU/hr·ft·°F), better than 93% of polymer grades
  • High service temperature — 175°C (347 °F), better than 84% of polymer grades

Limitations

  • Limited ductility — 1.9%, worse than 95% of polymer grades
  • Heavy — 1.62 g/cm³ (0.0585 lb/in³), worse than 93% of polymer grades
  • Limited formability — 10/100, worse than 87% of polymer grades
  • High embodied carbon — 8 kg CO₂/kg, worse than 83% of polymer grades
  • Hard to polish — 30/100, worse than 80% of polymer grades

PPA-GF50 properties

Typical room-temperature values for PPA-GF50 — 15 properties are specific to this condition; the rest are grade-level values shared by every PPA grade. Each bar shows where the value sits among the polymer grades in FabDigit's library — further right is higher.

Physical5

PPA-GF50 has a density of 1.62 g/cm³ (0.0585 lb/in³), heavier than 93% of polymer grades. Its glass-transition temperature is 123°C (253 °F).

Density1.62 g/cm³0.06 lb/in³
Melting Temperature (Tm)315°C599 °F
Glass Transition (Tg)123°C253 °F
Water Absorption (24 h)0.25%
Water Absorption (Saturation)1.3%

Mechanical9

PPA-GF50 has a tensile strength of 245 MPa (35.5 ksi), stronger than 100% of polymer grades. Elongation at break is 1.9% and the elastic modulus is 17 GPa (2.47 Msi).

Elastic (Young's) Modulus17 GPa2.5 Msi
Poisson's Ratio0.35
Tensile Strength (Ultimate)245 MPa35.5 ksi
Elongation at Break1.9%
Compressive Strength200 MPa29 ksi
Flexural Strength350 MPa50.8 ksi
Flexural Modulus15 GPa2.2 Msi
Izod Impact, Notched135 J/m2.5 ft·lbf/in
Hardness, Rockwell M95 HRM

Thermal10

PPA-GF50 is rated for continuous service to 175°C (347 °F). It conducts heat at 0.4 W/m·K (0.231 BTU/hr·ft·°F), better than 93% of polymer grades. Thermal expansion is 16 µm/m·K (8.89 µin/in·°F).

Thermal Conductivity0.4 W/m·K0.23 BTU/hr·ft·°F
Specific Heat Capacity1,300 J/kg·K0.31 BTU/lb·°F
Thermal Expansion (CTE, 20–100 °C)16 µm/m·K8.9 µin/in·°F
Max Service Temperature (continuous)175°C347 °F
Min Service Temperature-40°C-40 °F
Heat Deflection Temp. @ 0.45 MPa305°C581 °F
Heat Deflection Temp. @ 1.8 MPa292°C558 °F
Flammability (UL 94)HB at 0.8 mm for standard GF30 grades; V-0 available only in flame-retardant (halogen-free) versions
Limiting Oxygen Index26%
Max Service Temperature (short-term)250°C482 °F

Electrical7

PPA-GF50 is an electrical insulator with a dielectric strength of 28 kV/mm (711.2 V/mil) and a resistivity of 1×10¹⁴ Ω·m.

Electrical Resistivity1×10¹⁴ Ω·m3.94×10²¹ µΩ·in
Dielectric Strength28 kV/mm711 V/mil
Dielectric Constant (1 MHz)4
Dissipation Factor (1 MHz)0.017
Volume Resistivity1×10¹⁶ Ω·cm
Surface Resistivity1×10¹⁵ Ω
Comparative Tracking Index (CTI)600 V

Chemical & Environmental3

Corrosion resistance is very good (82/100), better than 54% of polymer grades. UV resistance is fair.

Corrosion ResistanceVery good82/100
UV / Weathering ResistanceFair40/100
Chemical Resistance SummaryVery good against engine coolants (glycol/water), oils, greases, automotive fuels, brake fluid, salt solutions and most solvents; attacked by strong acids, phenols, formic/trifluoroacetic acid and hot concentrated alkali; long-term hot aqueous glycol needs hydrolysis-stabilized grades.

Sustainability4

Producing a kilogram of PPA-GF50 takes about 140 MJ of energy and emits 8 kg of CO₂ — more than 82% of polymer grades. Typical recycled content is 0%.

Embodied Energy (primary production)140 MJ/kg60,189 BTU/lb
Embodied Carbon (primary production)8 kg CO₂/kg
Embodied Water300 L/kg35.9 gal/lb
Typical Recycled Content0%

Manufacturability7

PPA-GF50's machinability is fair (42/100, worse than 79% of polymer grades); weldability fair (40/100); formability not recommended (10/100).

MachinabilityFair42/100
WeldabilityFair40/100
Formability (cold)Not recommended10/100
PolishabilityPoor30/100
Mold Shrinkage0.25%
Processing Melt Temperature (typ.)330°C626 °F
Mold Temperature (typ.)150°C302 °F

Values are nominal handbook figures for design screening. Certified mill or lot data ships with every FabDigit order on request.

Other PPA grades and fills

PPA is also supplied in 12 other conditions. The full side-by-side table is on the PPA overview.

Working with PPA-GF50

Is PPA easy to machine?

Machine with sharp carbide or PCD tooling, high speed and light feed; glass fiber is abrasive and dust must be extracted — best used as-molded to near-net shape.

Can PPA be welded?

No solvent or hot-gas welding; use ultrasonic, laser (natural/carbon-black pairs) or heat-staking, and expect reduced strength across fiber-poor weld lines.

Can PPA be formed, bent or molded?

Dry to <0.10% moisture (80–100 °C, 4–8 h in desiccant dryer), melt 320–345 °C with hot-runner or insulated nozzle, mold 135–165 °C for full crystallinity and best HDT.

What surface finishes work on PPA?

Takes paint/adhesive after plasma or flame treatment; laser marking is clean, plating is unusual, and fiber bloom limits high-gloss cosmetic surfaces.

PPA chemical composition (wt %)

Limits by weight percent from the governing specification, written the way the spec states them — a single maximum for impurities, a range for alloying elements, and the base element as balance. Nominal is the typical mid-range value.

ElementSpec limit (wt %)Nominal
glass fiberchopped E-glass, aminosilane sized; 30% in default GF30 grade0 – 5030
carbon fiberin CF grades only0 – 300
mineral filler (talc/wollastonite/kaolinlow-warpage hybrid grades0 – 400
heat stabilizers, lubricants, pigment (cpackage varies by grade0.5 – 41.5
halogen-free flame retardant (phosphinatFR V-0 grades only0 – 200
hexamethylene terephthalamide/adipamide terephthalic (and/or isophthalic) acid + adipic acid with hexamethylenediamine / 2-MPMD≥ 45 (balance)

PPA-GF50 — frequently asked

What is PPA-GF50 used for?

PPA-GF50 is typically used for under-hood engine components, electrical connectors for lead-free reflow, coolant and thermostat housings, sensor bodies and housings, structural brackets replacing die castings and fuel system components. In short: high-performance glass-filled nylon.

What is the tensile strength of PPA-GF50?

PPA-GF50 has a typical tensile strength of 245 MPa (35.5 ksi) — stronger than 100% of polymer grades. Strength varies by condition: see the 13 listed tempers.

Is PPA-GF50 easy to machine?

Not especially — machinability is rated fair (42/100, worse than 79% of polymer grades). Machine with sharp carbide or PCD tooling, high speed and light feed; glass fiber is abrasive and dust must be extracted — best used as-molded to near-net shape.

Can PPA-GF50 be welded?

With care — weldability is rated fair (40/100). No solvent or hot-gas welding; use ultrasonic, laser (natural/carbon-black pairs) or heat-staking, and expect reduced strength across fiber-poor weld lines.

What surface finishes work on PPA-GF50?

Takes paint/adhesive after plasma or flame treatment; laser marking is clean, plating is unusual, and fiber bloom limits high-gloss cosmetic surfaces.

Can PPA-GF50 be formed, bent or molded?

Dry to <0.10% moisture (80–100 °C, 4–8 h in desiccant dryer), melt 320–345 °C with hot-runner or insulated nozzle, mold 135–165 °C for full crystallinity and best HDT.

What is the maximum service temperature of PPA-GF50?

PPA-GF50 is rated for continuous use to about 175°C (347 °F), and briefly to 250°C. Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.

What is the difference between PPA-GF30 and PPA-DAM?

GF30 is the default condition — default workhorse PPA: high hot stiffness and HDT ≈285 °C for under-hood brackets, pump housings and SMT connectors. DAM: unfilled injection-molded PPA tested dry-as-molded — stiffest, strongest state before moisture uptake.

Can FabDigit make parts in PPA-GF50?

Yes — PPA-GF50 is available for injection molding with instant online pricing. Upload a STEP file to get a price and a DFM check.

Sources

  1. Amodel PPA product and design guide (A-1133 HS, A-1145 HS, AS-1133, AFA grades)Solvay/Syensqo (2023)
  2. Zytel HTN / Vydyne semi-aromatic PA (PPA) datasheetsDuPont / Ascend (2023)
  3. CAMPUS plastics database — PA6T/6I and PA6T/66 GF gradesCWFG (2024)
  4. ISO 527 / ISO 178 / ISO 75 test methods for plasticsISO (2019)
  5. Engineering Plastics Handbook — high-temperature polyamidesMcGraw-Hill (2006)

Property data is compiled from published supplier and standards handbooks and normalised for comparison. Nothing on this page is a certification — request mill certs, CoC or material test reports with your order.