PC/PBT Blend Xenoy Properties — Complete Engineering Data Sheet (2026)
Tensile data verified against MatWeb.com database & manufacturer datasheets · Last updated July 2026
Published: 2026-06-10
PC/PBT blend, best known under SABIC's Xenoy trade name, is a thermoplastic alloy that combines polycarbonate's exceptional impact resistance (even at low temperatures) with PBT's chemical resistance to gasoline, oils, and automotive fluids. The...
PC/PBT blend, best known under SABIC's Xenoy trade name, is a thermoplastic alloy that combines polycarbonate's exceptional impact resistance (even at low temperatures) with PBT's chemical resistance to gasoline, oils, and automotive fluids. The PC phase provides ductility and impact strength; the PBT phase provides crystalline regions that resist stress cracking from chemical exposure.
This blend occupies a strategic middle ground: significantly higher impact resistance than PC/ABS, better low-temperature toughness than PBT alone, and far better chemical resistance than PC alone (which stress-cracks catastrophically when exposed to gasoline or solvents). These properties make PC/PBT the default material for automotive body panels, motorcycle fairings, power tool housings, and lawn/garden equipment.
SABIC Xenoy pioneered the category. Key applications include Toyota and Honda bumper beams, Stihl chainsaw housings, and Milwaukee Tool power drill bodies. In Japan, Mitsubishi Engineering-Plastics offers PC/PBT blends for automotive and industrial markets.
Processing: Melt temperature 255-275 °C, mold temperature 50-80 °C. Predrying at 100-110 °C for 4 hours is critical — both PC and PBT components are hydrolysis-sensitive. Processing temperature must balance PC's need for heat (to fill) against PBT's thermal sensitivity (degradation above 280 °C). A medium screw with 2.5:1 compression ratio is recommended.
Recommended Applications
PC/PBT Blend Xenoy is commonly specified for:
⚠ Not Recommended For
PC/PBT Blend Xenoy is not recommended for:
- Continuous outdoor UV exposure without UV coating (yellows and loses impact strength rapidly)
- Contact with aromatic hydrocarbons, ketones, or esters (causes environmental stress cracking)
- Steam sterilization above 120°C (use PSU or PPSU for autoclave applications instead)
Selection & Application Guide
Polycarbonate (PC) is the transparent engineering plastic with the highest impact strength — virtually unbreakable in thin sections. Choose PC over acrylic (PMMA) when impact resistance is needed; over PSU when lower cost and higher clarity matter and steam sterilization isn't required. PC's main limitations are poor chemical resistance to solvents and UV degradation without stabilization. For higher temperature or flame resistance, consider PC/ABS blend or Ultem.
Real-World Applications
PC's exceptional impact strength (850 J/m notched Izod) and optical clarity make it the standard for safety helmets, riot shields, and protective visors.
PC's optical clarity, impact resistance, and thermal stability for halogen bulb environments make it the dominant material for headlamp outer lenses worldwide.
PC and PC/ABS blends provide the combination of impact strength, flame retardancy (with additives), and surface finish quality for laptop, phone, and tablet housings.
PC's clarity for visual inspection, gamma sterilizability, and impact toughness suit it for IV components, blood centrifuge housings, and diagnostic device enclosures.
Processing & Cost Considerations
Manufacturing Tips
- PC processes at 280-320°C melt temperature with mold temperatures of 80-100°C. Thorough drying is essential (120°C for 3-4 hours to <0.02% moisture) — PC is very hygroscopic and even small amounts of moisture cause splay marks and reduced impact strength.
- PC has high melt viscosity — higher injection pressures and larger gates are needed compared to commodity plastics. Thin-wall molding may require fast injection speeds to prevent premature freeze-off.
- Design parts with uniform wall thickness to prevent sink marks and internal stresses. PC is notch-sensitive — avoid sharp internal corners (use R>0.5mm fillets) to maintain impact strength.
PC costs $5-12/kg — more than ABS ($2-5/kg) but less than PSU ($15-35/kg). PC/ABS blends offer a middle ground at $3-7/kg with better flow and processability. For applications requiring both transparency and impact resistance, PC has no cost-effective substitute. For opaque applications, PC/ABS is often a better value proposition.
Technical Properties
| Density | 1.20 g/cm³ |
|---|---|
| Tensile Strength | 55 MPa |
| Melting Point | 225 °C (PBT phase); PC phase amorphous |
| Shrinkage Rate | 0.8-1.0% |
| Flexural Modulus | 2.1 GPa |
| Hdt | 115 °C at 1.82 MPa |
| Izod Impact | 700 J/m (notched, 23 °C) |
| Chemical Resistance | Good (gasoline, oils, mild acids/bases) |
| Tensile Modulus | 2.1 GPa |
| Yield Strength | 50 MPa |
| Elongation At Break | 120% |
Engineering Tool: Shrinkage & Cost Estimator
Calculate part weight, mold cavity dimensions accounting for shrinkage, and material cost — all locally in your browser.
Equivalents & Cross-References
| Equivalent / Alternate | Action |
|---|---|
| Sabic Xenoy | |
| Covestro Makroblend | |
| Mitsubishi Engineering-Plastics Iupilon/Xyron |
Frequently Asked Questions
When should I choose PC/PBT over PC/ABS?
Choose PC/PBT when the part will be exposed to gasoline, motor oil, brake fluid, or cleaning solvents — PC/ABS stress-cracks rapidly in these environments. PC/PBT also has better low-temperature impact resistance (-40 °C). Choose PC/ABS when chemical exposure is not a concern and you want 15-20% lower material cost and better surface aesthetics for painting.
Why is PC/PBT so popular for power tools?
Power tools require housings that survive repeated 1-2 meter drops onto concrete (PC impact resistance) and exposure to lubricating oils and job-site chemicals (PBT chemical resistance). Milwaukee, DeWalt, and Makita all specify PC/PBT for professional-grade tool housings.
What is the difference between PC and PMMA (acrylic)?
PC has much higher impact strength (850 J/m vs 16 J/m for PMMA) and higher service temperature (115°C vs 85°C). PMMA has better optical clarity (92% vs 88% transmission), better UV resistance, and lower cost. Choose PC when impact resistance is critical; PMMA for display applications where optical quality and UV stability matter more.
Can PC be autoclaved?
Not recommended. Standard PC softens and distorts at autoclave temperatures (134°C). It can withstand a few cycles but rapidly degrades. For steam sterilization, use PSU, PPSU, or Ultem instead. PC is compatible with EtO and gamma sterilization for single-use medical devices.
Why does PC stress-crack in the presence of solvents?
PC is highly susceptible to environmental stress cracking when exposed to solvents (gasoline, acetone, MEK) while under mechanical stress. The solvent migrates into the polymer at stress concentration points, causing microcracks that propagate rapidly. For solvent-exposed applications, specify stress-annealed parts or use a chemically resistant alternative (PPS, PPSU, or PEEK).
Is BPA-free polycarbonate available?
Yes. BPA-free copolyester alternatives (Tritan, PCTG) provide similar clarity and impact resistance without bisphenol-A. These materials are increasingly specified for food contact and children's products. However, they have lower temperature resistance than standard PC and may not be suitable for all PC applications.
What is PC/ABS blend and when should I use it?
PC/ABS blend combines PC's impact resistance and heat resistance with ABS's processability and lower cost. The blend offers better flow (easier thin-wall molding), lower melt temperature, and lower cost than pure PC. It is the dominant material for electronic device housings. Use pure PC when transparency is needed; PC/ABS for opaque structural and housing applications.
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References & Industry Standards
- ASTM International. Standard Specifications for Engineering Plastics & Thermoplastics. astm.org
- UL Prospector. Plastics & Elastomers Material Database. ulprospector.com
- MatWeb. Material Property Data for Engineering Thermoplastics. matweb.com
- ISO 1043. Plastics — Symbols and Abbreviated Terms. iso.org