THUISPRODUCTENPC PBTXENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic

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  • XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic
  • XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic
  • XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic
  • XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic
  • XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic
  • XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic

XENOY™ 6370: High-Toughness, Ductile PC+PBT Plastic

XENOY™ 6370 is a PC+PBT composite with 30% glass fiber and impact modification, offering excellent toughness, ductility, dimensional stability, and heat resistance for automotive, electronic, and industrial parts.

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What is XENOY™ 6370

 

When sourcing engineering plastics, decision-makers rarely look at strength alone. Toughness, dimensional control, and the way a material behaves in processing all weigh into the choice. For many buyers, XENOY™ 6370 (PC+PBT, glass fiber reinforced) has become a practical solution. It combines polycarbonate and polybutylene terephthalate, is reinforced with 30% glass fiber, and is impact-modified—giving it an unusual mix of stiffness and ductility that is hard to achieve with single polymers.

XENOY™ 6370

 

01 | Material Highlights

 

  • Structural stability with reinforcement
    With 30% glass fiber, the grade holds its shape under load and resists creep, which is particularly useful in parts exposed to constant stress.

  • Ductility and toughness
    Unlike some rigid plastics that tend to crack under shock, this material can flex without breaking. Even in low-temperature environments, it resists brittle failure. That makes it workable for snap-fit designs and thin-walled parts where breakage risk is high.

  • Thermal resistance
    Mechanical properties remain reliable at elevated temperatures, so it is often chosen for components located near heat sources such as engine compartments or power electronics housings.

  • Electrical insulation
    Its dielectric strength and volume resistivity make it dependable for switches, connectors, and other current-carrying parts.

  • Dimensional precision
    The relatively low shrinkage rate helps manufacturers hold tighter tolerances in injection molding. Complex molds and assemblies benefit directly from this.

 

02 | Typical Applications

 

  • Automotive – bumper frames, under-hood components, brackets, battery module housings.

  • Electrical & electronics – switches, connectors, insulation covers.

  • Industrial equipment – gears, shields, and other parts where both impact and chemical resistance are needed.

  • Consumer products – sturdy yet lightweight housings that improve user safety and product lifetime.

 

03 | XENOY™ 6370 Data Sheet

 

ULVoorwaardeStandaardWaardeEenheid
CTIEN 601122BV
HAIAlle kleuren 1,5 mmUL746A3BV
HAIAlle kleuren 3,0 mmUL746A3BV
HVTRUL746A1BV
HWIAlle kleuren 1,5 mmUL746A2BV
HWIAlle kleuren 3,0 mmUL746A1BV
RTIElec Alle Kleuren 1.5mmUL 746B140°C
RTIElec Alle kleuren 3.0mmUL 746B140°C
RTIImp Alle Kleuren 1.5mmUL 746B130°C
RTIImp Alle Kleuren 3.0mmUL 746B130°C
RTIStr Alle kleuren 1,5 mmUL 746B140°C
RTIStr Alle kleuren 3,0 mmUL 746B140°C
VolumeweerstandASTM D2571E15Ω.cm
Dimensionale stabiliteitUL7460.0%
Diëlektrische sterkteASTM D14938kv/mm
BoogweerstandASTM D4955BV
VlamclassificatieAlle kleuren 1,5 mmUL94HB
VlamclassificatieAlle kleuren 3,0 mmUL94HB
Mechanisch gedragVoorwaardeStandaardWaardeEenheid
VerlengingYield 5mm/minASTM D6383%
VerlengingYield 5mm/minISO5273%
VerlengingBreuk 5 mm/minASTM D6384%
VerlengingBreuk 5 mm/minISO5273%
BuigsterkteYield 1.3mm/minASTM D790150MPa
BuigsterkteYield 2.0mm/minISO178154MPa
BuigsterkteBreuk 1,3 mm/minASTM D790138MPa
Buigmodulus1,3 mm/minASTM D7905370MPa
Buigmodulus2,0 mm/minuutISO1787750MPa
Izod Un-inkeping Impact23°CASTM D481265.30kJ/m²
Izod Notch-impact23°CASTM D25617.34kJ/m²
Izod Notch-impact23°C 4,0mmISO18010kJ/m²
Izod Notch-impact-30°CASTM D25611.42kJ/m²
Izod Notch-impact-30°C 4.0mmISO1806kJ/m²
TreksterkteBreuk 5 mm/minASTM D63891MPa
TreksterkteBreuk 5 mm/minISO527105MPa
TreksterkteYield 5mm/minASTM D63897MPa
TreksterkteYield 5mm/minISO527105MPa
Trekmodulus1,0 mm/minISO5278500MPa
Trekmodulus5mm/minASTM D6389750MPa
Charpy Notch-impact23°C 4,0mmISO1799kJ/m²
ThermischVoorwaardeStandaardWaardeEenheid
HDT1,8 MPa 4,0 mmISO75155°C
HDTOngegloeid 0,45 MPa 6,4 mmASTM D648204°C
HDTNiet-gegloeid 1,8 MPa 6,4 mmASTM D648149°C
CLEStroom -40,0~40°CASTM E8312.7E-5cm/cm/°C
CLEStroom -40,0~40°CISO113592.7E-5cm/cm/°C
CLEStroom 60~138°CASTM E8311.98E-5cm/cm/°C
CLExFlow -40.0~40°CASTM E8311.1E-4cm/cm/°C
CLExFlow -40.0~40°CISO113591.1E-4cm/cm/°C
Vicat-verzachtingstemperatuur50°C/uur 50NASTM D1525153°C
Vicat-verzachtingstemperatuur50°C/uur 50NISO306148°C
Vicat-verzachtingstemperatuur120°C/uur 50NISO306150°C
Fysieke eigendomVoorwaardeStandaardWaardeEenheid
Wateropname24 uurASTM D5700.09%
Wateropname23°C VerzadigingISO620.5%
Wateropname23°C 50RVISO620.15%
KrimpFlow 0.75-2.30mmINTERNE METHODE0.3~0.4%
KrimpFlow 2.3-4.6mmINTERNE METHODE0.4~0.5%
KrimpxFlow 0.75-2.30mmINTERNE METHODE0.4~0.7%
KrimpxFlow 2.3-4.6mmINTERNE METHODE0.7~0.9%
Specifiek volumeASTM D7920.7cm³/g
DikteASTM D7921.44g/cm³
DikteISO11831.44g/cm³
Smeltindex250°C 5kgASTM D123824g/10min
Smeltindex250°C 5kgISO113312cm³/10min
Smeltindex265°C 5kgISO113319cm³/10min
Elektrische eigenschappenVoorwaardeStandaardWaardeEenheid
Diëlektrische constante1 MHzASTM D1504
Diëlektrische constante100HzASTM D1504
VolumeweerstandASTM D2574.8E+15Ω.cm
Dissipatiefactor1 MHzASTM D1500.02
Dissipatiefactor100HzASTM D1500.003
HardheidVoorwaardeStandaardWaardeEenheid
Rockwell-hardheidR(Schaal)ASTM D785109
OntvlambaarheidVoorwaardeStandaardWaardeEenheid
VlamclassificatieAlle kleuren 1,5 mmUL94HB
VlamclassificatieAlle kleuren 3,0 mmUL94HB

Looking for the full datasheet? Contact us for more technical information.

 

04 | Processing and Compatibility

 

The grade is designed for injection molding and shows a reasonable compromise between flow and strength. For high-volume production, this means fewer trade-offs between cycle time and part quality. Shrinkage is low, so parts stay closer to design dimensions. In mass production runs, the stability of this material reduces reject rates, which matters directly to cost control.

 

05 | Why it Stands Out

 

Compared with using PC or PBT on their own, XENOY™ 6370 brings together the ductility of PC, the chemical resistance of PBT, and the rigidity of glass fiber reinforcement.

Engineers also point out its adaptability: it performs in hot, cold, and humid conditions.

In many applications it can even replace metal or more expensive engineering plastics, bringing both weight reduction and cost savings.

This is one reason it is frequently specified in automotive lightweighting projects and in electrification components.

 

06 | FAQ

 

Q1: Can it be used outdoors?
It tolerates some outdoor conditions. However, for continuous exposure, UV-stabilized versions or protective coatings are recommended.

Q2: What advantage does it have over metal parts?
It is lighter, easier to process, and usually more economical—while still meeting structural requirements in many cases.

Q3: Is it suitable for electric vehicle parts?
Yes. Its insulation and heat stability make it a natural fit for battery brackets, connectors, and related modules.

 

07 | Why Work with Juyuan

 

For buyers, material quality is only half the story—supply security matters just as much. Juyuan has been active in the international plastics trade for 24 years and offers:

  • Verified sourcing – authentic materials from stable global channels.

  • Practical selection advice – recommendations shaped around customer industries, not just data sheets.

  • Efficient delivery – logistics networks covering multiple ports and warehouses to keep lead times short.

  • Long-term reliability – ongoing supply partnerships with customers in automotive, electronics, and industrial sectors.

Choosing Juyuan means working with a supplier that understands both the material and the buyer’s business context.

XENOY™ 6370 supplier

 

 

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