PA6 GF30-gegevensblad: mechanische, thermische en verwerkingseigenschappen

PA6 GF30 glass-filled nylon compound pellets
PA6 GF30 compound pellets before injection molding.

PA6 GF30 is Nylon 6 reinforced with a nominal 30% glass fiber by weight. It is selected when unfilled PA6 does not provide enough stiffness, creep resistance or dimensional stability. This guide combines a real commercial-grade datasheet, typical cross-supplier property ranges, moisture effects and injection-molding starting conditions.

PA6 GF30 at a Glance

The example values below come from the downloadable PA6 WHG30A datasheet. That PDF does not state specimen conditioning; confirm the method and validate molded parts before design approval.

CompositionPA6 with nominal 30 wt% glass fiber
WHG30A density1.36 g/cm3 (ISO 1183)
WHG30A tensile strength165 MPa (ISO 527-2; conditioning not stated)
Main design variablesMoisture, fiber orientation, weld lines and shrinkage

What Does PA6 GF30 Mean?

  • PA6 identifies Polyamide 6, also called Nylon 6.
  • GF identifies glass-fiber reinforcement.
  • 30 identifies the nominal glass-fiber content by weight.

PA6 GF30 is a material family, not one universal recipe. Heat stabilizers, impact modifiers, lubricants, pigments, flame retardants, resin viscosity and fiber system can all change the final properties and molding behavior. Two materials marked PA6 GF30 are therefore not automatically interchangeable.

PA6 WHG30A Manufacturer Datasheet

The downloadable manufacturer TDS identifies the commercial grade as PA6 WHG30A. The following values are reproduced from that one-page document. They are typical product values, not guaranteed design limits.

EigendomTestnormEenheidPA6 WHG30A
TreksterkteISO 527-2MPa165
Tensile Strain at BreakISO 527-2%9
BuigsterkteISO 527-2MPa230
Flexural ModulusISO 178MPa6000
Izod Notched Impact StrengthISO 179kJ/m217
Temperature of Deflection Under LoadISO 75-2/B°C175
Melting IndexISO 1183g/10 min20
DichtheidISO 1183g/cm31.36
Molding ShrinkageISO 2577%0.6
OntvlambaarheidUL 94--
PA6 WHG30A typical values transcribed from the manufacturer TDS. Confirm the current document revision and batch-specific requirements before qualification.

Read the test conditions: ISO 75-2/B is the 0.45 MPa HDT method; it cannot be compared directly with the 1.8 MPa ranges below. The PDF does not state specimen conditioning. Its impact row names Izod but cites ISO 179 (Charpy), its flexural-strength row cites the tensile standard ISO 527-2, and its melting-index row cites ISO 1183 (density); confirm those methods with the supplier before using the figures for approval. The UL 94 result is blank. Request the current signed TDS, batch certificate of analysis and applicable RoHS, REACH or UL documents for the selected grade.

Download PA6 WHG30A Datasheet (PDF)

Need the compound rather than only the data? See the Productpagina PA6 GF30 for grade selection and send the part requirements with your datasheet or sample request.

PA6 GF30 Typical Property Data

The following tables show illustrative ranges across commercial PA6 GF30 formulations, not additional specifications for WHG30A. Use them only to identify questions for grade selection; values can differ with formulation, specimen thickness, method and conditioning. The WHG30A PDF above is the source for that named grade.

Illustrative PA6 GF30 Mechanical Ranges (Dry as Molded Examples)

EigendomValue (Typical Range)TestmethodeEenheid
Trekmodulus9,500-10,500ISO 527-1/-2MPa
Treksterkte bij breuk170-190ISO 527-1/-2MPa
Rek bij breuk3.0-4.5ISO 527-1/-2%
Flexural Modulus8,000-9,500ISO 178MPa
Buigsterkte260-290ISO 178MPa
Charpy Impact Strength (notched)12-16ISO 179/1eAkJ/m2
Charpy Impact Strength (unnotched)75-95ISO 179/1eUkJ/m2
Izod Impact Strength (notched)11-15ISO 180/AkJ/m2
Ball Indentation Hardness200-230ISO 2039-1MPa
Mechanical properties for PA6 GF30, 30% glass fiber reinforced, conditioned dry (moisture content below 0.10%). Values represent typical ranges across major commercial suppliers. Always use the supplier’s specific datasheet values for design calculations.

Physical Properties

EigendomValue (Typical Range)TestmethodeEenheid
Dichtheid1.35-1.38ISO 1183g/cm3
Water Absorption (23 C, saturation)5.5-6.5ISO 62%
Water Absorption (23 C, 50% RH equilibrium)1.5-2.0ISO 62%
Molding Shrinkage (parallel, 1.6 mm)0.25-0.40ISO 294-4%
Molding Shrinkage (normal, 1.6 mm)0.80-1.10ISO 294-4%
Post-Molding Shrinkage (parallel, 1h at 110 C)0.05-0.10ISO 294-4%
Post-Molding Shrinkage (normal, 1h at 110 C)0.10-0.15ISO 294-4%
Physical properties. Note the 3:1 to 4:1 ratio between normal and parallel shrinkage — this anisotropy is the primary cause of warpage in glass-fiber-reinforced parts and must be accounted for in mold design.

Thermische eigenschappen

EigendomValue (Typical Range)TestmethodeEenheid
Melting Temperature (DSC, 10 K/min)218-222ISO 11357-1/-3C
HDT at 0.45 MPa215-220ISO 75-1/-2C
HDT bij 1,8 MPa195-210ISO 75-1/-2C
Vicat Softening Temperature (VST/B50)205-215ISO 306C
Coefficient of Linear Thermal Expansion (parallel, 23-55 C)2.0-3.0 x 10-5ISO 11359-1/-21/K
Coefficient of Linear Thermal Expansion (normal, 23-55 C)6.0-9.0 x 10-5ISO 11359-1/-21/K
Thermal Conductivity0.28-0.35DIN 52612W/(m·K)
Specific Heat Capacity1.5-1.7—J/(g·K)
Thermal property ranges for PA6 GF30. The CTE (coefficient of thermal expansion) is significantly anisotropic — expansion in the transverse (normal) direction is 2-4x higher than in the flow (parallel) direction due to glass fiber orientation.

Elektrische eigenschappen

EigendomValue (Typical Range)TestmethodeEenheid
Dielectric Constant (1 MHz)3.5-4.5IEC 60250—
Dissipatiefactor (1 MHz)0.01-0.03IEC 60250—
Volumeweerstandsvermogen1013-1015IEC 60093ohm·cm
Surface Resistivity1012-1014IEC 60093ohm
Vergelijkende trackingindex (CTI)500-600IEC 60112V
Dielectric Strength (1.6 mm)30-35IEC 60243-1kV/mm
Electrical properties for standard PA6 GF30. Note: values assume dry conditioning. Moisture absorption significantly impacts electrical properties — dielectric constant and dissipation factor increase, while volume resistivity decreases by 1-2 orders of magnitude at equilibrium moisture content.

Ontvlambaarheid

EigendomWaardeTestmethodeOpmerkingen
UL 94 Rating (0.8 mm)HBUL 94Standard GF30 is not flame retardant
UL 94 Rating (1.6 mm)HBUL 94FR V-0 requires specialized FR compound
Limiting Oxygen Index (LOI)22-24%ISO 4589Burns in normal atmosphere
Auto-Ignition Temperature>400 CASTM D1929—
Flammability properties. Standard PA6 GF30 is not self-extinguishing. For applications requiring UL 94 V-0, V-1, or V-2, a flame-retardant grade (PA6 GF30 FR) must be specified.

Property Changes with Moisture Conditioning

PA6 absorbs moisture from the environment. At equilibrium with 50% RH at 23 C, a PA6 GF30 part will absorb approximately 1.5-2.0% water by weight. This changes the mechanical properties significantly. Tensile strength decreases by 30-40%, flexural modulus by 25-35%, and impact strength increases by 50-100%. The data table below shows the approximate shift from dry-as-molded to conditioned (50% RH) values:

EigendomDry (as molded)Conditioned (50% RH, 23 C)Change
Treksterkte (MPa)180110-130-30 to -40%
Flexural Modulus (GPa)9.06.0-7.0-25 to -35%
Charpy Notched Impact (kJ/m2)1420-28+50 to +100%
HDT at 1.8 MPa (C)20065-75 (wet)Significant drop at full saturation
Approximate mechanical property shift from dry to conditioned state. Design calculations should use conditioned values if the part operates in ambient humidity. Dry values apply to parts sealed against moisture or used in very dry environments.
Glass fiber reinforcement used in PA6 GF30 compounding
Glass-fiber reinforcement before compounding with the PA6 matrix.

Verwerkingsparameters

Drogen

PA6 GF30 must be dried to a moisture content below 0.10% (target 0.05%) before injection molding. Recommended drying: 80 C for 4-6 hours in a desiccant dryer with a dew point of -30 C or lower. Tray drying at 80 C for 8-12 hours is acceptable for non-critical applications but is less reliable than desiccant drying. Do not dry above 90 C — oxidative discoloration (yellowing) begins at higher temperatures.

Spuitgieten

ParameterRecommended RangeOpmerkingen
Melt Temperature (nozzle)250-280 CLower end for thin walls, upper for thick
Schimmel Temperatuur80-100 C100 C preferred for crystallinity and surface
InjectiesnelheidGemiddeld tot snelFaster fill reduces fiber orientation variation
Hold Pressure50-80% of injection pressureEnough to pack out shrinkage, avoid overpacking
Tegen druk5-15 bar (hydraulic)Higher back pressure improves melt homogeneity
Schroefsnelheid50-150 rpmLower end for larger shot sizes to avoid shear heating
Residence Time (max at melt temp)10-15 minutesPurge if longer; degraded PA6 produces burn marks and strength loss
Injection molding parameter ranges for PA6 GF30. These are starting-point recommendations; actual parameters depend on part geometry, gate design, and machine characteristics.

Mold Design Considerations

  • Gate type: All standard gate types are suitable. Pin gates, edge gates, and fan gates all work. Tunnel (submarine) gates require attention to gate diameter — minimum 0.8 mm to avoid excessive shear with 30% GF.
  • Gate location: Position the gate so flow is into the thickest section. Avoid long flow paths that allow the melt front to cool before the cavity fills.
  • Venting: Adequate venting is critical. Poor venting leads to burn marks, short shots, and die buildup. Vent depth: 0.01-0.02 mm.
  • Draft angle: Minimum 1 degree, 2 degrees preferred for textured surfaces. GF grades shrink tightly onto cores — adequate draft prevents ejection damage.
  • Steel selection: 30% glass fiber is abrasive. For production runs exceeding 100,000 shots, use hardened tool steel (min. 52 HRC) for cavities and cores, especially at gates and high-wear areas.

Comparing PA6 GF30 with Related Grades

PA6 GF30 is a common selection, but the following cross-grade values are screening examples, not a matched set of supplier specifications. Compare test method, load and conditioning before using them in a design decision. See the PA6 GF15, PA6 GF30 en PA6 GF40 pages for the available grade routes.

EigendomPA6 UnfilledPA6 GF15PA6 GF30PA6 GF50PA66 GF30
Treksterkte (MPa)80120-140170-190200-230180-200
Flexural Modulus (GPa)2.85.5-6.58.0-9.514-169.0-10.5
Izod-breukweerstand met inkeping (kJ/m²)5-77-1011-1513-1810-13
HDT at 1.8 MPa (C)65-75180-195195-210210-215240-255
Dichtheid (g/cm³)1.141.231.361.561.37
Relatieve kosten1.0x1.1x1.2x1.4x1.3x
Property comparison across PA6 glass fiber loading levels and versus PA66 GF30. PA66 GF30 delivers higher HDT (heat resistance) at similar mechanicals. PA6 GF50 provides maximum stiffness at the cost of density and impact.

PA6 Glass Fiber Grade Comparison: GF15 vs GF30 vs GF40 vs GF50

Glass fiber content drives the performance-cost trade-off in PA6 compounds. The table below shows how increasing glass fiber from 15% to 50% changes key mechanical and thermal properties. Use these screening values to narrow your grade selection before requesting commercial datasheets.

EigendomPA6 UnfilledPA6 GF15PA6 GF30PA6 GF40PA6 GF50
Tensile Strength (MPa, dry)70 – 85110 – 130160 – 190180 – 200200 – 220
Flexural Modulus (MPa)2,500 – 3,0004,500 – 5,5008,000 – 10,00010,500 – 12,00013,000 – 15,000
Rek bij breuk (%)20 – 403 – 53 – 52 – 31.5 – 2.5
Charpy Notched Impact (kJ/m², 23°C)5 – 88 – 1210 – 1512 – 1613 – 17
Dichtheid (g/cm³)1.13 – 1.151.20 – 1.231.35 – 1.381.44 – 1.481.55 – 1.58
HDT/A, 1.8 MPa (°C)60 – 75180 – 195200 – 210210 – 215215 – 220
Smeltpunt (°C)220 – 225220 – 225220 – 225220 – 225220 – 225
Mold Shrinkage (flow, %)1.0 – 1.50.4 – 0.70.2 – 0.50.15 – 0.350.10 – 0.25
Typische toepassingenNon-structural clips, coversHousings, brackets, medium stiffnessEngine covers, fan shrouds, power tool housingsHigh-stiffness frames, pump bodiesMetal replacement, extreme rigidity

Selection guidance: PA6 GF30 is the most commonly specified glass-filled PA6 grade because it delivers the best stiffness-to-cost ratio for typical structural applications. Move to GF40 or GF50 only when the application demands stiffness approaching aluminum or when wall thickness is constrained. Stay with GF15 when flow into thin-wall features or impact toughness at low temperature matters more than maximum rigidity.

PA6 GF30 Commercial Grade Equivalents

SupplierPA6 GF30 GradeKey Features
BASFUltramid B3WG6 / B3EG6General-purpose, heat-stabilized, excellent surface finish
DuPontZytel 73G30 HSLHeat-stabilized, widely specified in automotive
LANXESSDurethan BKV 30 H2.0Heat-aged, good flow for thin-wall parts
DSM / EnvaliorAkulon K224-G6General-purpose, good chemical resistance
Domo / SolvayTechnyl C216 V30Widely available in Asia, good processability
EMS-GrivoryGrilon BG-30Good impact balance, suitable for structural parts
RadiciRadilon S RV300Easy flow, suitable for complex geometries
EnsingerTECAMID 6 GF30Stock shapes and machined parts

When substituting between PA6 GF30 suppliers, compare full datasheets in the same conditioned state (dry-as-molded vs 50% RH), verify mold shrinkage in both flow and transverse directions, and run a production-tool trial. Even nominally equivalent PA6 GF30 grades differ in fiber length retention, color stability, heat aging, and processing window.

Where PA6 GF30 Is Used

PA6 GF30 is commonly considered for structural parts that need higher stiffness and heat resistance than unfilled PA6. The selected commercial grade still has to meet the part’s impact, moisture, chemical, appearance, electrical and flame requirements.

Representative automotive and industrial glass-filled nylon components
Representative glass-filled nylon applications. Confirm the commercial grade against the part’s mechanical, thermal, electrical and environmental requirements.
Automotive and transport
Fan shrouds, structural housings, brackets and selected under-hood components.
Industrial equipment
Pump bodies, impellers, machine housings and load-bearing supports.
Electrical equipment
Housings, connectors and supports when the grade meets the required electrical and flammability ratings.
Power tools and appliances
Stiff housings, frames and mechanical components where fiber orientation and surface finish are controlled.

PA6 GF30 Supply and Custom Compound Options

Choosing PA6 GF30 for a production part, grade replacement or sample evaluation? Share the grade you use now (if any), the operating conditions and expected quantity. Our team can review a standard grade or a project-specific heat-stabilized, impact-modified, UV-stabilized or color-matched compound, then identify the matching datasheet and applicable documents. Flame-retardant requirements are reviewed as a separate PA6 GF30 FR grade.

  • For grade selection: share the operating temperature, load, moisture exposure, color and regulatory requirements.
  • For a quotation: include annual volume, order quantity, delivery destination and target timing.
  • Available documentation: grade datasheet, batch-specific certificate of analysis, and applicable RoHS, REACH or UL documentation.

Tell us whether you need a standard datasheet grade or a custom formulation. The technical team will match the grade, property data and documentation to your project.

Over ons aanbod van technische kunststoffen

As an ISO 9001 certified engineering plastics manufacturer and exporter, we produce PA6 GF30 in heat-stabilized, impact-modified, UV-stabilized and color-matched variants. For the selected formulation, our technical team can provide the matching datasheet, batch-specific certificate of analysis and applicable RoHS, REACH or UL documentation. Send your target properties, annual volume and delivery destination to discuss a standard grade or custom formulation.

Need a PA6 GF30 datasheet for your application or a quotation for supply? Neem contact op met ons team — specify your volume, delivery destination, and any special requirements (color, certification, impact modification). The current datasheet and quotation scope are confirmed for the selected grade and requirements.

Veelgestelde vragen

Is PA6 GF30 one standardized material?

No. PA6 GF30 identifies a PA6 material family with a nominal 30% glass-fiber level. The additive package, resin viscosity, fiber system and conditioning state vary by commercial grade, so compare the complete TDS and validate the molded part.

Is PA6 GF30 the same as PA66 GF30?

No. Both contain nominal 30% glass fiber, but PA6 and PA66 use different base polymers. They differ in melting and heat performance, moisture response, processing window and grade availability.

Is standard PA6 GF30 flame retardant?

Not automatically. A standard grade and a PA6 GF30 FR grade are separate selections. Confirm the exact UL 94 rating, specimen thickness and certification for the chosen commercial grade.

What are the key properties to check in a PA6-GF30 datasheet?

Check tensile strength, flexural modulus, the named impact method, HDT test load, density, shrinkage and specimen conditioning. As a named example, WHG30A lists 165 MPa tensile strength (ISO 527-2), 6,000 MPa flexural modulus (ISO 178) and 175°C HDT (ISO 75-2/B, 0.45 MPa). Do not treat the cross-supplier ranges as guarantees for WHG30A.

Why does PA6-GF30 datasheet strength vary between suppliers?

Glass fiber type and length, coupling system, base resin, additives and conditioning can change the result. Compare values measured by the same method and conditioning state; there is no universal percentage allowance that makes two grades equivalent.

How should I read PA6-GF30 datasheet values for my design?

Choose dry or conditioned data to match the part’s actual service environment, then validate critical dimensions and loads on molded samples. The WHG30A PDF does not state conditioning. Set design margins from the part loads, environment and failure consequences; the datasheet alone does not define a universal safety factor.

What processing parameters does a good PA6-GF30 datasheet include?

Check the selected grade’s drying, melt and mold temperatures, moisture limit and injection settings. The WHG30A one-page PDF provides property data but no processing window; the parameters above are starting points for trials, not guaranteed WHG30A settings.

Technical Review and Data Sources

Technical author and reviewer: WanHan Technical Team
Last Technical Review: September 28, 2026

  • WanHan PA6 WHG30A Technical Data Sheet is the source for the named WHG30A values on this page.
  • ISO 1183, ISO 527-2, ISO 178, ISO 179, ISO 75-2/B and ISO 2577 are cited as printed in that TDS; noted method inconsistencies must be confirmed before approval.
  • Cross-supplier values are reference ranges. Exact properties depend on grade, test method and conditioning; use the current grade TDS and representative testing for qualification.

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