Xylan 1014 – Harder, Abrasion Resistant PTFE Dry Film Coating for Industrial Applications

基础信息

品名
Xylan 1014 Coating
牌号
Xylan 1014
厂商
Whitford Corporation (now PPG)
材料类型
Solvent-Based PTFE Dry Film Lubricant Coating
产品形态
Liquid – Solvent-based
特点
Harder and more abrasion resistant than Xylan 1010; higher bonding resin content; glossy finish; low porosity; low friction; high temperature resistance; good corrosion protection

描述

Xylan 1014 is a solvent-based, resin-bonded, thermosetting PTFE dry film lubricant coating from Whitford Corporation (now PPG). As an authorized distributor and trader, we supply genuine materials with full traceability and direct access to official technical documentation.

Compared to Xylan 1010, Xylan 1014 contains significantly more bonding resin relative to its PTFE lubricant content. This unique formulation produces a finish that is harder, more abrasion-resistant, glossier, and less porous. Frictional values remain low and highly predictable.

This coating is designed for applications requiring superior wear resistance combined with low friction and high-temperature stability. Xylan 1014 performs reliably in extreme temperature environments, making it suitable for a wide range of industrial applications including fasteners, valve stems, actuator components, hinge pins, compressors, and piston casings.

The PTFE-based formulation provides ultra-low friction, while the high-bonding-resin binder system ensures a harder, more durable surface under mechanical stress. Xylan 1014 is widely trusted across automotive, oil & gas, aerospace, and general industrial applications.

Key Features of Xylan 1014

  • Harder Finish – Higher bonding resin content produces a harder, more durable coating surface compared to Xylan 1010

  • Superior Abrasion Resistance – Enhanced wear resistance for surfaces subject to repeated contact and mechanical stress

  • Low Coefficient of Friction – PTFE-based formulation provides low and predictable friction values for smooth operation

  • High Temperature Resistance – Continuous service up to 260°C (500°F); intermittent up to 285°C (545°F)

  • Low Porosity – Denser coating structure reduces porosity, providing better barrier protection

  • Glossy Finish – Produces an aesthetically pleasing, glossy surface finish

  • Good Corrosion Protection – Protects metal substrates from rust and corrosion in aggressive environments

  • Solvent-Based Formulation – Provides excellent wetting, leveling, and adhesion to properly prepared metal substrates

  • Wide Application Range – Suitable for fasteners, valve stems, actuators, hinge pins, compressors, and general industrial parts

Typical Applications for Xylan 1014

Industry Typical Components & Considerations
Fasteners Bolts, nuts, screws – hard, abrasion-resistant finish for torque control and galling prevention
Valve Industry Valve stems, actuator components – low friction with superior wear resistance
Automotive Engine components, transmission parts – high temperature and wear resistance
Oil & Gas Valves, pipe fittings, downhole tools – corrosion resistance in harsh environments
Aerospace Fasteners and precision components – temperature stability and torque control
General Industrial Hinge pins, compressors, piston casings, mating surfaces – friction reduction and extended service life

Typical Properties

Property Typical Value Test Method
Coefficient of Friction Low and predictable
Maximum Service Temperature (Continuous) 260°C (500°F)
Maximum Service Temperature (Intermittent) 285°C (545°F)
Minimum Service Temperature -195°C (-320°F)
Coating Thickness 15 – 25 μm
Abrasion Resistance Superior (harder than Xylan 1010)
Porosity Low (less porous than Xylan 1010)
Finish Glossy
Cure Temperature Approx. 380°C

Important Notes on Typical Data:

  • Values listed are typical and sourced from manufacturer data sheets. They do not constitute binding product specification.

  • Batch-to-batch deviations may exist. For critical applications, validate performance with batch-specific COA certificate.

  • Final performance depends on substrate preparation, application method, and curing conditions.

  • Manufacturer official TDS shall serve as definitive technical reference. Request the latest official TDS from our sales team.

Processing Guidelines

Step Process
Surface Preparation Alkaline cleaning or acetone degreasing + grit-blast (Sa2.5 grade, Ra 3–6 μm)
Primer Application (Optional) Apply Xylan® 1 or Xylan® 2 primer, dry film thickness 2.5–5 μm, cure at 380°C for 5–10 minutes
Topcoat Application Apply Xylan 1014 by spray (conventional or HVLP) or dip coating
Curing Cure at approximately 380°C for 15–20 minutes
Storage Store in original, sealed containers in a cool, dry place away from direct sunlight

Critical Processing Warnings:

  • Surface Preparation: Proper surface preparation is critical for adhesion. Ensure surfaces are clean, dry, and properly roughened.

  • Curing: Cure time depends on part mass and oven characteristics. Always verify with test pieces.

  • Storage: Store in original, sealed containers in a cool, dry place away from direct sunlight. Shelf life: 18 months.

Related Products

Technical Documents

Document Type Description & Source
Manufacturer Official TDS Complete physical, thermal, and mechanical properties of Xylan 1014
Manufacturer Official SDS GHS-compliant chemical safety documentation
Distributor Authorization Certificate Proof of our authorized-distributor qualification, available upon request
COA (Certificate of Analysis) Batch-specific quality certification

Request any document above by:

We reply within one working business day. Please clearly state product (Xylan 1014) and document type you require.

FAQ

Q1: What is Xylan 1014?
A: Xylan 1014 is a solvent-based, resin-bonded thermosetting PTFE dry film coating from Whitford (PPG). Compared to Xylan 1010, it contains significantly more bonding resin, producing a finish that is harder, more abrasion-resistant, glossier, and less porous.

Q2: What is the difference between Xylan 1014 and Xylan 1010?
A: Xylan 1014 contains more bonding resin and less PTFE relative to Xylan 1010. This makes Xylan 1014 harder, more abrasion-resistant, glossier, and less porous. Xylan 1010 is preferred when maximum lubricity is required; Xylan 1014 is preferred when hardness and wear resistance are the primary requirements.

Q3: What is the maximum service temperature of Xylan 1014?
A: Xylan 1014 can withstand continuous service up to 260°C (500°F) and intermittent service up to 285°C (545°F). Minimum service temperature is -195°C (-320°F).

Q4: What is the coefficient of friction of Xylan 1014?
A: Xylan 1014 offers low and predictable friction values.

Q5: What is the curing temperature for Xylan 1014?
A: The substrate cure temperature is approximately 380°C.

Q6: What is the recommended coating thickness for Xylan 1014?
A: The recommended dry film thickness is 15–25 μm.

Q7: What is the lead time for orders?
A: Regular orders ship within 7-10 working days after payment confirmation. Large-volume orders can be negotiated separately.

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Sample Policy:

  • Samples are for laboratory validation tests only, not for production use.

  • Buyer bears international sample-shipping freight.

  • If bulk-product performance deviates from sample reference, manufacturer official TDS serves as the authoritative benchmark.

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After-Sales Support

Service Details
Quality Inspection Period All quality-related claims must be submitted within 7 working days after delivery, supported by test data and photographic evidence.
Return / Exchange Policy Confirmed product defects caused by our side trigger replacement or refund. Terms and conditions apply.
Logistics Damage Report shipping damage directly to carrier immediately upon goods receipt. We assist with claim-document preparation.
Technical Support Remote technical guidance available. On-site troubleshooting can be arranged upon special request.
Export Documentation We supply commercial invoice, packing list, bill of lading, COA, and additional compliance certificates on request.

Disclaimer

DISCLAIMER: All technical data is referenced from original manufacturer typical values for Xylan 1014. Our company acts as authorized distributor/trader rather than original manufacturer. Final performance depends on substrate preparation, application method, and curing conditions. Buyers shall independently validate product suitability for individual applications. Our firm bears no liability for coating failure caused by improper application or improper usage. Always reference the latest manufacturer official TDS of Xylan 1014 as the definitive specification.

Technical Documents

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