FabDigit

PLA-CF · grade

PLA-CF HTPLA-CF

Properties of the HTPLA-CF condition, compared with the other PLA-CF grades.

Nucleated PLA (often PLLA/stereocomplex) + CF that can be oven-annealed to crystallize, raising usable temperature well above Tg; choose for parts that see 80–120 °C.

3D printingStandard cost $$

What is PLA-CF HTPLA-CF?

PLA-CF HTPLA-CF is PLA-CF in the HTPLA-CF grade — nucleated PLA (often PLLA/stereocomplex) + CF that can be oven-annealed to crystallize, raising usable temperature well above Tg; choose for parts that see 80–120 °C. PLA-CF HTPLA-CF has a tensile strength of 55 MPa (7.98 ksi), stronger than 60% of polymer grades. Elongation at break is 1.5% and the elastic modulus is 6.5 GPa (0.943 Msi). PLA-CF HTPLA-CF has a density of 1.3 g/cm³ (0.047 lb/in³), heavier than 69% of polymer grades. Its glass-transition temperature is 58°C (136 °F). CF15 is the default condition FabDigit quotes; HTPLA-CF is available on request or by drawing note.

Advantages

  • Stiff — 6.5 GPa (0.943 Msi), better than 89% of polymer grades

Limitations

  • Limited ductility — 1.5%, worse than 97% of polymer grades
  • Needs corrosion protection — 55/100, worse than 96% of polymer grades
  • Hard to polish — 20/100, worse than 95% of polymer grades
  • Limited formability — 10/100, worse than 87% of polymer grades

PLA-CF HTPLA-CF properties

Typical room-temperature values for PLA-CF HTPLA-CF — 12 properties are specific to this condition; the rest are grade-level values shared by every PLA-CF grade. Each bar shows where the value sits among the polymer grades in FabDigit's library — further right is higher.

Physical5

PLA-CF HTPLA-CF has a density of 1.3 g/cm³ (0.047 lb/in³), heavier than 69% of polymer grades. Its glass-transition temperature is 58°C (136 °F).

Density1.3 g/cm³0.05 lb/in³
Melting Temperature (Tm)155°C311 °F
Glass Transition (Tg)58°C136 °F
Water Absorption (24 h)0.4%
Water Absorption (Saturation)1%

Mechanical10

PLA-CF HTPLA-CF has a tensile strength of 55 MPa (7.98 ksi), stronger than 60% of polymer grades. Elongation at break is 1.5% and the elastic modulus is 6.5 GPa (0.943 Msi).

Elastic (Young's) Modulus6.5 GPa0.94 Msi
Poisson's Ratio0.36
Tensile Strength (Ultimate)55 MPa8 ksi
Elongation at Break1.5%
Compressive Strength70 MPa10.2 ksi
Flexural Strength80 MPa11.6 ksi
Flexural Modulus6.5 GPa0.94 Msi
Izod Impact, Notched26 J/m0.49 ft·lbf/in
Hardness, Shore D80 Shore D
Hardness, Rockwell R105 HRR

Thermal11

PLA-CF HTPLA-CF is rated for continuous service to 100°C (212 °F). It conducts heat at 0.25 W/m·K (0.144 BTU/hr·ft·°F), better than 71% of polymer grades. Thermal expansion is 45 µm/m·K (25 µin/in·°F).

Thermal Conductivity0.25 W/m·K0.14 BTU/hr·ft·°F
Specific Heat Capacity1,400 J/kg·K0.33 BTU/lb·°F
Thermal Expansion (CTE, 20–100 °C)45 µm/m·K25 µin/in·°F
Max Service Temperature (continuous)100°C212 °F
Min Service Temperature-20°C-4 °F
Heat Deflection Temp. @ 0.45 MPa120°C248 °F
Heat Deflection Temp. @ 1.8 MPa70°C158 °F
Vicat Softening Point (B50)60°C140 °F
Flammability (UL 94)HB (not flame retardant; standard grades burn slowly, dripping)
Limiting Oxygen Index20%
Max Service Temperature (short-term)130°C266 °F

Electrical3

PLA-CF HTPLA-CF has an electrical resistivity of 1×10⁷ Ω·m.

Electrical Resistivity1×10⁷ Ω·m3.94×10¹⁴ µΩ·in
Volume Resistivity1×10⁹ Ω·cm
Surface Resistivity1×10⁸ Ω

Chemical & Environmental3

Corrosion resistance is good (55/100), worse than 96% of polymer grades. UV resistance is poor.

Corrosion ResistanceGood55/100
UV / Weathering ResistancePoor30/100
Chemical Resistance SummaryGood against water at RT, oils, greases and aliphatic hydrocarbons; attacked by acetone, chlorinated solvents, ethyl acetate, THF and strong acids/bases; hydrolyses in hot water/steam and slowly in humid heat.

Sustainability4

Producing a kilogram of PLA-CF HTPLA-CF takes about 85 MJ of energy and emits 4.5 kg of CO₂ — less than 79% of polymer grades. Typical recycled content is 5%.

Embodied Energy (primary production)85 MJ/kg36,543 BTU/lb
Embodied Carbon (primary production)4.5 kg CO₂/kg
Embodied Water400 L/kg47.9 gal/lb
Typical Recycled Content5%

Manufacturability8

PLA-CF HTPLA-CF's machinability is good (60/100, better than 51% of polymer grades); weldability poor (25/100); formability not recommended (10/100).

MachinabilityGood60/100
WeldabilityPoor25/100
Formability (cold)Not recommended10/100
PolishabilityPoor20/100
Mold Shrinkage0.6%
Melt Flow Rate8 g/10 min
Processing Melt Temperature (typ.)225°C437 °F
Mold Temperature (typ.)55°C131 °F

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

Other PLA-CF grades and fills

PLA-CF is also supplied in 6 other conditions. The full side-by-side table is on the PLA-CF overview.

Working with PLA-CF HTPLA-CF

Is PLA-CF easy to machine?

Drills, mills and turns easily with sharp carbide and high rpm/low feed, but the fiber is abrasive and the 55 °C Tg means dry cutting, air blast and no coolant heat — use dust extraction for CF particulate.

Can PLA-CF be welded?

Not a structural weld candidate; use hot-plate/ultrasonic staking for light joints or cyanoacrylate/epoxy bonding after abrading the fiber-rich skin (acetone does not solvent-weld PLA).

Can PLA-CF be formed, bent or molded?

Print at 200–230 °C with a hardened/ruby ≥0.4 mm nozzle, bed 45–60 °C, dried filament (45 °C, 4 h); fiber cuts warp and stringing but raises nozzle wear and clog risk — avoid tight bowden paths and keep retraction low.

What surface finishes work on PLA-CF?

Comes off the printer matte black and hides layer lines; light sanding, bead-blasting or a matte clear coat is the practical route — it cannot be polished to gloss, vapor-smoothed, or painted well without primer.

PLA-CF 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
carbon fiber (chopped/milled)PAN-based short fiber, 50–150 µm typical length after compounding5 – 2015
impact modifier / co-polyesterpresent only in tough/blend grades0 – 100
nucleating agent, chain extender, procestalc/nucleant for annealable grades, lubricant for extrusion0.2 – 21
polylactic acid (PLA/PLLA)Ingeo-type L-lactide polyester matrix; HTPLA grades use nucleated/high-L-content PLA≥ 78 (balance)

PLA-CF HTPLA-CF — frequently asked

What is PLA-CF HTPLA-CF used for?

PLA-CF HTPLA-CF is typically used for stiff prototypes, jigs & fixtures and drone frames. In short: stiff carbon-filled PLA.

What is the tensile strength of PLA-CF HTPLA-CF?

PLA-CF HTPLA-CF has a typical tensile strength of 55 MPa (7.98 ksi) — stronger than 60% of polymer grades. Strength varies by condition: see the 7 listed tempers.

Is PLA-CF HTPLA-CF easy to machine?

Reasonably — machinability is rated good (60/100, better than 51% of polymer grades). Drills, mills and turns easily with sharp carbide and high rpm/low feed, but the fiber is abrasive and the 55 °C Tg means dry cutting, air blast and no coolant heat — use dust extraction for CF particulate.

Can PLA-CF HTPLA-CF be welded?

Not readily — weldability is rated poor (25/100). Not a structural weld candidate; use hot-plate/ultrasonic staking for light joints or cyanoacrylate/epoxy bonding after abrading the fiber-rich skin (acetone does not solvent-weld PLA).

What surface finishes work on PLA-CF HTPLA-CF?

Comes off the printer matte black and hides layer lines; light sanding, bead-blasting or a matte clear coat is the practical route — it cannot be polished to gloss, vapor-smoothed, or painted well without primer.

Can PLA-CF HTPLA-CF be formed, bent or molded?

Print at 200–230 °C with a hardened/ruby ≥0.4 mm nozzle, bed 45–60 °C, dried filament (45 °C, 4 h); fiber cuts warp and stringing but raises nozzle wear and clog risk — avoid tight bowden paths and keep retraction low.

What is the maximum service temperature of PLA-CF HTPLA-CF?

PLA-CF HTPLA-CF is rated for continuous use to about 100°C (212 °F), and briefly to 130°C. Strength falls off well before that limit — check the elevated-temperature data for load-bearing parts.

Can FabDigit make parts in PLA-CF HTPLA-CF?

Yes — PLA-CF HTPLA-CF is available for 3D printing with instant online pricing. Upload a STEP file to get a price and a DFM check.

Sources

  1. Carbon Fiber HTPLA / Carbon Fiber PLA filament technical dataProto-pasta (ProtoPlant) (2023)
  2. PolyLite PLA-CF / PolyMide series TDSPolymaker (2024)
  3. PLA-CF filament technical data sheetBambu Lab (2024)
  4. Ingeo Biopolymer 3D / 4043D technical dataNatureWorks (2022)
  5. ASTM D638 / D790 / D256 test methods for plasticsASTM International (2022)
  6. CAMPUS / UL Prospector PLA compound property recordsCWFG / UL (2024)

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.