Der vollständige Leitfaden für Nylon-Sorten: PA6, PA66, PA11, PA12 und mehr

PA6, PA66, PA11, and PA12 nylon pellets and molded parts arranged for grade selection
Die Wahl der richtigen Nylonsorte ist entscheidend für den Erfolg im Ingenieurwesen

Nylon grades are selected in two steps: first choose the PA matrix, such as PA6, PA66, PA11, or PA12; then choose whether it remains unfilled or receives glass fiber, carbon fiber, impact, flame-retardant, wear, or other modification.

For the main commercial routes, unfilled PA is the baseline, GF20 adds moderate structural reinforcement, and CF30 targets higher specific stiffness or special electrical and dimensional requirements. The highest fiber percentage is not automatically the best grade.

Nylon Grade Selection at a Glance

First Decision Common Starting Point Reason
General molded part Unfilled PA6 or PA66 Toughness, wear, and processing balance
Moderate deflection control PA-GF20 More stiffness with a broader balance than higher loading
Structural molded part PA-GF30 Common stiffness and dimensional-control route
High specific stiffness or ESD review PA-CF30 Weight, low CTE, or electrical formulation requirements
Wet dimensional service PA12 or qualified modified grade Lower moisture uptake

Die Nylon-Familie im Überblick

Klasse Typ Schmelzpunkt Feuchtigkeit (50% RH) Hauptmerkmal
PA6 Aliphatisch 220 °C 2.7% Zähigkeit, Verarbeitbarkeit
PA66 Aliphatisch 260 °C 2.5% Festigkeit, Hitzebeständigkeit
PA11 Biobasiert 185 °C 0.8% Flexibilität, geringer Feuchtigkeitsgehalt
PA12 Aliphatisch 178 °C 0.7% Geringste Feuchtigkeitsaufnahme
PA46 Aliphatisch 295 °C 3.5% Höchste Hitzebeständigkeit
Vergleichstabelle für Nylon-Typen
Jede Nylon-Sorte deckt einen bestimmten Leistungsbereich ab

PA6: Das vielseitige Arbeitstier

PA6 ist die am häufigsten verwendete Nylonsorte und macht etwa 60% des Nylonverbrauchs aus. Es bietet ein hervorragendes Gleichgewicht zwischen Festigkeit, Zähigkeit und Verarbeitbarkeit.

Wichtige Eigenschaften

  • Zugfestigkeit: 70–85 MPa
  • Hervorragende Schlagfestigkeit
  • Gute Oberflächenbeschaffenheit und Färbbarkeit
  • Größeres Verarbeitungsfenster als bei PA66

PA66: Der Hochleistungsstandard

PA66-Anwendungen in der Automobilindustrie
PA66 dominiert die Anwendungen im Motorraum von Kraftfahrzeugen

PA66 bietet im Vergleich zu PA6 eine um etwa 10–15% höhere Festigkeit und Steifigkeit sowie eine überlegene Hitzebeständigkeit. Es ist die erste Wahl für anspruchsvolle Anwendungen.

PA11 und PA12: Die Spezialnylons

PA11 und PA12 zeichnen sich durch ihre außergewöhnlich geringe Feuchtigkeitsaufnahme aus – selbst bei Sättigung beträgt diese weniger als 1%. Dadurch verfügen sie über eine hervorragende Dimensionsstabilität.

Anwendungsbereiche von PA11 und PA12
PA11 und PA12 zeichnen sich durch hervorragende chemische Beständigkeit und Formstabilität aus

PA46: Der Spezialist für Hochtemperaturanwendungen

PA46 (Stanyl) weist mit einem Schmelzpunkt von 295 °C die höchste Hitzebeständigkeit aller aliphatischen Nylons auf.

Base Resin and Reinforcement Are Separate Decisions

PA6-GF20 and PA66-GF20 share the same glass percentage but not the same moisture response, melting range, heat capability, or processing window. The same applies to PA6-CF30, PA66-CF30, and PA12-CF30. Drawings and purchase orders should identify the complete matrix and modification package.

  • Unfilled PA: prioritize toughness, fatigue, wear, surface quality, and easier processing.
  • GF20: use when moderate stiffness and lower shrinkage are needed without moving directly to a higher glass loading.
  • GF30: use for a common structural balance, with gate, weld-line, and warpage review.
  • CF30: use when specific stiffness, low thermal expansion, weight, or an electrical target justifies the premium and processing controls.

Auswahlhilfe

Anforderung Empfohlene Klassenstufe
Allgemeiner Einsatzzweck, kostenbewusst PA6
Hohe Temperatur (>120 °C) PA66, PA46
Feuchte/nasse Umgebung PA12, PA11
Maximale Steifigkeit PA66-GF30/50

Modified Nylon Grade and Supply Review

Nylon Plastic supplies unfilled and modified PA compounds, with primary article and product support centered on pure PA, PA-GF20, and PA-CF30 routes. Grade review should include the drawing, service conditions, required approvals, annual volume, color, and incumbent specification.

Common Nylon Grade Selection Mistakes

  • Writing only “nylon” or “PA” on the drawing without identifying the matrix and modification.
  • Comparing dry tensile values while the production part will operate in humid or conditioned service.
  • Increasing fiber content before checking whether the real problem is geometry, gate position, weld lines, or creep.
  • Choosing CF30 for maximum stiffness when a GF20 compound already meets the functional requirement at lower cost and processing risk.
  • Assuming a flame, ESD, heat-stabilized, or approved formulation from the family name instead of the exact grade documentation.

Nylon Grade RFQ Checklist

A complete inquiry should identify the preferred PA matrix, reinforcement percentage, annual volume, drawing revision, color, molding process, service temperature, humidity, chemicals, impact, load duration, dimensional state, and regulatory requirements. Include the incumbent grade and failure mode when the request is a replacement project. This information allows the supplier to compare unfilled PA, GF20, GF30, and CF30 without relying on a generic strength ranking.

How Nylon Plastic Reduces Grade-Selection Risk

Buyers often receive quotations that list a resin family but omit the exact modification, conditioning state, or approval package. Nylon Plastic has worked across material modification and finished-product manufacturing since 2005, allowing one project review to connect grade selection with the intended molding, CNC, or 3D-printing route.

  • Product focus: pure PA, PA-GF20, and PA-CF30 can be compared as distinct commercial routes.
  • Custom compounding: formulation review is available when standard grades do not meet stiffness, impact, color, wear, flame, or dimensional requirements.
  • Manufacturing feedback: gate direction, machining deformation, moisture conditioning, or print orientation can be considered before material approval.
  • Buyer documentation: the RFQ can define TDS, COA, compliance, sample, incoming inspection, and lot-approval expectations before volume ordering.

Häufig gestellte Fragen

Should I choose PA6 or PA66 for injection molding?

PA6 often provides a broader processing window and good toughness, while PA66 is commonly selected for higher strength and thermal margin. Moisture, impact, geometry, approvals, and exact grade data can change the decision.

When should an unfilled nylon grade be replaced with GF20?

Consider GF20 when the unfilled grade cannot meet deflection, creep, shrinkage, or loaded-temperature targets. Validate impact, weld lines, warpage, surface appearance, and tool wear before approval.

What is the difference between GF20 and CF30 nylon?

GF20 uses approximately 20% glass fiber and is generally a more cost-effective moderate reinforcement. CF30 uses approximately 30% carbon fiber and targets higher specific stiffness, lower thermal expansion, or electrical behavior, depending on the formulation.

What must a nylon grade RFQ include?

Include the PA matrix, reinforcement or modification, drawing, volume, service temperature, humidity, chemicals, load, impact, tolerances, color, flame rating, and regulatory requirements.

Weiterführende Lektüre

Request a Nylon Grade Review

Send the drawing, current material, target properties, annual volume, and operating environment. We can compare the matrix and modification separately before recommending unfilled PA, GF20, GF30, or CF30.

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