PEEK

Plastic Engineering Solution is a reliable Polyetheretherketone (PEEK) plastic supplier in India, supplying and machining PEEK rods, sheets, plates, and custom PEEK components for demanding industrial applications that require high temperature resistance, mechanical strength, chemical stability, and dimensional reliability.

Polyetheretherketone (PEEK) is widely used for its excellent heat resistance, high mechanical strength, chemical resistance, wear performance, and long-term dimensional stability. It is suitable for bearings, seals, bushings, medical components, aerospace parts, pump and valve components, electrical parts, and high-load precision industrial applications.

Key Properties of PEEK

Excellent high temperature resistance
High mechanical strength and stiffness
Excellent chemical resistance
Good wear and abrasion resistance
Low moisture absorption
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Excellent dimensional stability
Good electrical insulation properties
Suitable for high-load and precision applications

These properties make Polyetheretherketone (PEEK) suitable for industrial applications involving heat exposure, chemical contact, high mechanical load, wear resistance, dimensional accuracy, and long-term performance in demanding environments.

Applications

PEEK Industrial Applications

Polyetheretherketone (PEEK) components are widely used across industries for applications that require high temperature resistance, mechanical strength, chemical resistance, wear performance, and long-term dimensional stability.

Bearings and bushings
Seals and sealing components
Pump and valve components
Medical equipment parts
Aerospace and defense components
Electrical and electronics components
High-load precision machine parts
Chemical processing components

Polyetheretherketone (PEEK) is ideal for applications involving heat exposure, chemical contact, high load, wear, dimensional accuracy, and reliable performance in demanding industrial environments.

PEEK PRODUCTS OFFERED

PEEK Stock Shapes

Plastic Engineering Solution supplies Polyetheretherketone (PEEK) in multiple stock shapes and machined forms, including:

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PEEK Rods

(4mm - 220mm diameter)

PEEK Plates

(5mm - 100mm thickness)
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PEEK Tubular bar

(OD - 48mm x ID - 37mm x LT - 1000mm TO
OD - 355.6mm x ID - 292.1mm x LT - 610mm)

All PEEK products are supplied and machined to support industrial applications requiring high temperature resistance, mechanical strength, chemical stability, wear resistance, dimensional accuracy, and long-term performance.

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Machining capability

PEEK Machining

Polyetheretherketone (PEEK) is a high-performance polymer that requires controlled machining to maintain dimensional accuracy, surface quality, and material integrity. Its strength, heat resistance, and stiffness make it suitable for precision components used in demanding industrial environments.

Our PEEK machining capability includes:

We optimize machining parameters to achieve accurate dimensions, clean finishes, stable tolerances, and reliable performance for PEEK components used in high-temperature, high-load, chemical, medical, aerospace, and precision industrial applications.

AVAILABLE GRADES

PEEK Grades Supported

We support a range of Polyetheretherketone (PEEK) material grades, including:

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Natural PEEK
Black PEEK
Carbon-filled PEEK
Glass-filled PEEK
Bearing-grade PEEK
Medical-grade PEEK
Industrial-grade PEEK
Custom PEEK grades based on application requirements

Our team assists with PEEK grade selection based on heat resistance, chemical exposure, mechanical load, wear performance, dimensional stability, medical requirements, machining needs, and operating conditions.

Tolerance information

PEEK Machining Tolerances

Polyetheretherketone (PEEK) machining tolerances depend on:

  • Component geometry
  • Wall thickness
  • Part size and complexity
  • Required fit and function
  •  Heat and load conditions
  • Operating environment
  • Application requirements

PEEK is suitable for precision-machined components that require high strength, dimensional stability, chemical resistance, and performance under demanding conditions. Typical achievable tolerances are maintained as per design feasibility, with tighter tolerances possible for precision applications after engineering evaluation.

Detailed tolerance information can be provided during the RFQ stage.