描述
Fortron 1342L4 is a 40% glass fiber reinforced, PTFE-modified polyphenylene sulfide (PPS) injection molding grade from Celanese Corporation. This grade is specifically designed as a low-wear tribological grade, ideally suited for bearings, gears, and other sliding friction/wear applications .
The PTFE modification provides significantly improved friction and wear properties compared to standard glass reinforced PPS grades . This makes Fortron 1342L4 an excellent choice for moving parts requiring self-lubrication and long service life under friction conditions.
As a linear, semi-crystalline PPS, this grade is relatively impermeable to gases, hydrocarbons, and other liquids compared to other materials . It provides high dimensional stability, low coefficient of friction, low shrinkage (0.2% flow, 0.5% transverse) , excellent mechanical properties, creep resistance at high temperatures, a high continuous use temperature (160°C to 240°C), and very low moisture absorption (0.02%) .
This grade offers high hardness, high rigidity, and exhibits excellent resistance to corrosion, hydrolysis, oxidation, heat, and paraffin buildup . It shows excellent chemical resistance to all solvents below 200°C, acids, bases, typical and alternative automotive fuels, and petroleum fluids at elevated temperatures . The material complies with RoHS, PFOS, and PFOA regulations .
For more PPS grades and technical information, please visit our PPS/Polyphenylene Sulfide product page. You can also explore Celanese’s official Fortron PPS portfolio for additional manufacturer insights.
Key Features of Fortron 1342L4
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40% Glass Fiber + PTFE Modification – Enhanced mechanical properties with low friction and wear characteristics
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Low Wear / Low Friction – PTFE-modified tribological grade for demanding sliding applications
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Low Coefficient of Friction – Dynamic coefficient of friction versus steel: 0.16; static: 0.20
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High Strength – Tensile strength of 165 MPa
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High Stiffness – Tensile modulus of 14,400 MPa; flexural modulus of 13,700 MPa
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Excellent Heat Resistance – HDT of 270°C at 1.80 MPa ; melting temperature of 280°C
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Inherent Flame Retardancy – V-0 at 0.75mm and 1.5mm thickness
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Excellent Chemical Resistance – Resists all solvents below 200°C, acids, bases, automotive fuels, and petroleum fluids
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Very Low Moisture Absorption – 0.02% water absorption
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High Dimensional Stability – Low shrinkage: 0.2% parallel, 0.5% transverse
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Lead-Free Soldering – Suitable for lead-free soldering applications
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Metal Replacement – Suitable for metal replacement applications
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Global Supply – Available across North America, Europe, South and Central America, Asia Pacific, Near East/Africa
Typical Applications for Fortron 1342L4
| Industry | Typical Components & Considerations |
|---|---|
| Bearings | Plain bearings, thrust bearings, sleeve bearings – requiring low friction and wear resistance |
| Gears | Precision gears, gear components – requiring dimensional stability and tribological performance |
| Sliding Friction Applications | Wear pads, guide rails, seals, sliding components – requiring low coefficient of friction |
| Automotive | Fuel system components, pump internals, transmission parts – requiring chemical resistance and tribological performance |
| Electrical & Electronics | Connectors, sensors, housings – requiring flame retardancy and dimensional stability |
Typical Properties of Fortron 1342L4
| Property | Value | Test Method |
|---|---|---|
| Physical | ||
| Density | 1.69 g/cm³ | ISO 1183 |
| Water Absorption (Saturation) | 0.02% | ISO 62 |
| Molding Shrinkage – Parallel | 0.2% | ISO 294-4 |
| Molding Shrinkage – Transverse | 0.5% | ISO 294-4 |
| Mechanical | ||
| Tensile Modulus | 14,400 MPa | ISO 527-2/1A |
| Tensile Strength at Break | 165 MPa | ISO 527 |
| Tensile Strain at Break | 1.6% | ISO 527 |
| Flexural Modulus | 13,700 MPa | ISO 178 |
| Friction | ||
| Coefficient of Friction – Dynamic (vs. Steel) | 0.16 | ASTM D1894 |
| Coefficient of Friction – Static (vs. Steel) | 0.20 | ASTM D1894 / ISO 8295 |
| Impact | ||
| Charpy Notched Impact (23°C) | 8.5 kJ/m² | ISO 179/1eA |
| Charpy Unnotched Impact (23°C) | 44 kJ/m² | ISO 179/1eU |
| Izod Notched Impact (23°C) | 8.5 kJ/m² | ISO 180/1A |
| Thermal | ||
| Melting Temperature | 280°C | ISO 11357 |
| Glass Transition Temperature | 90°C | ISO 11357 |
| HDT @ 1.80 MPa | 270°C | ISO 75 |
| HDT @ 8.00 MPa | 215°C | ISO 75 |
| CTE – Parallel | 22 × 10⁻⁶/K | ISO 11359 |
| CTE – Transverse | 40 × 10⁻⁶/K | ISO 11359 |
| Flammability | ||
| Flammability @ 0.75mm | V-0 | UL 94 |
| Flammability @ 1.5mm | V-0 | UL 94 |
Important Notes on Typical Data
📌 Values are typical – The data listed above is sourced from manufacturer data sheets for reference only and does not constitute binding product specifications for Fortron 1342L4.
📌 Batch variations – Batch-to-batch deviations may exist. For critical applications, validate performance with batch-specific COA certificates.
📌 Final performance – Actual performance depends on processing conditions and part design. Refer to ISO testing standards for detailed methodology.
📌 Authoritative reference – The manufacturer’s official TDS shall serve as the definitive technical reference for Fortron 1342L4. Request the latest official TDS from our sales team.
Processing Guidelines for Fortron 1342L4
| Step | Process |
|---|---|
| Processing Methods | Injection Molding |
| Drying Recommended | Yes |
| Drying Temperature | 130 – 140°C |
| Drying Time | 3 – 4 hours |
| Suggested Max Moisture | ≤ 0.02% |
| Dew Point Requirement | ≤ -30°C |
| Melt Temperature Range | 320 – 340°C |
| Optimum Melt Temperature | 330°C |
| Optimum Mold Temperature | 150°C |
| Min. Mold Temperature | 140°C |
| Max. Mold Temperature | 160°C |
| Hold Pressure Range | 30 – 70 MPa |
| Back Pressure | ≤ 3 MPa |
| Screw Tangential Speed | 0.2 – 0.3 m/s |
| Ejection Temperature | 215°C |
| Storage | Store in original, sealed packaging in a cool, dry place away from direct sunlight |
Critical Processing Warnings for Fortron 1342L4
⚠️ Drying Requirement – Fortron 1342L4 requires drying prior to processing. Predrying in a dehumidified air dryer at 130–140°C for 3–4 hours is recommended . The time between drying and processing should be as short as possible .
⚠️ Moisture Control – Maximum residual moisture content should be ≤ 0.02% . Use of dry air dryers with dew point ≤ -30°C is recommended .
⚠️ Melt Temperature – The recommended melt temperature range is 320–340°C, with an optimum of 330°C. Avoid exceeding 340°C to prevent material degradation .
⚠️ Mold Temperature – Minimum mold wall temperature of 140°C is required to achieve maximum crystallizable potential. Mercedes-Benz recommends a tool temperature of at least 135°C .
⚠️ PTFE-Modified Grade – This grade contains PTFE for low friction and wear. Processing parameters should be adjusted to accommodate the PTFE modification .
⚠️ Reinforced Grade – Contains 40% glass fiber reinforcement, which may require consideration for equipment wear and proper screw design. A shut-off nozzle is preferred to a free-flow nozzle . On injection molding machines with 15-25 D long three-section screws, the material is processable .
⚠️ Injection Rate – A medium injection rate is normally preferred. All mold cavities must be effectively vented .
⚠️ Storage – For subsequent storage, the material should be stored dry in the dryer until processed (≤ 60 hours) .
Comparison: Fortron 1342L4 vs. Other 40% Glass Reinforced PPS Grades
| Feature | Fortron 1342L4 | Fortron 1140L4 | Fortron 1140L6 |
|---|---|---|---|
| Additive | PTFE | None | None |
| Key Feature | Low wear / low friction | General injection molding | Easy flow, thin-wall |
| Primary Application | Bearings, gears, sliding friction | Structural components | Thin-wall parts |
| Tensile Strength | 165 MPa | 195-200 MPa | 195-200 MPa |
| Flexural Modulus | 13,700 MPa | 14,000-14,500 MPa | 14,000-14,500 MPa |
| HDT @ 1.80 MPa | 270°C | 265-270°C | 265-270°C |
| Density | 1.69 g/cm³ | 1.60-1.65 g/cm³ | 1.60-1.65 g/cm³ |
| Coefficient of Friction | 0.16 (dynamic vs. steel) | Higher | Higher |
Related Products
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PPS/Polyphenylene Sulfide – View our full range of PPS products
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Fortron 1140L4 – 40% glass reinforced PPS, standard injection molding grade
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Fortron 1140L6 – 40% glass reinforced PPS, easy flow for thin-wall applications
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Fortron 1140T4 – 40% glass reinforced, impact modified PPS
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Explore Engineering Plastics – Browse all engineering plastic materials
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About Our Company – Learn more about our supply capabilities and quality assurance
Technical Documents for Fortron 1342L4
| Document Type | Description & Source |
|---|---|
| Manufacturer Official TDS | Complete physical, thermal, and mechanical properties of Fortron 1342L4 |
| Manufacturer Official SDS | GHS-compliant safety documentation |
| COA (Certificate of Analysis) | Batch-specific quality certification for Fortron 1342L4 |
| UL Yellow Card | UL safety certification (E107854) |
Request any document above by:
📧 Email: ruiqingchem@gmail.com
📝 Online form: Our contact page
We reply within one working business day. Please clearly state product (Fortron 1342L4) and document type you require.
FAQ about Fortron 1342L4
Q1: What is Fortron 1342L4?
A: Fortron 1342L4 is a 40% glass fiber reinforced, PTFE-modified PPS injection molding grade from Celanese, designed as a low-wear tribological grade for bearings, gears, and sliding friction applications .
Q2: What makes Fortron 1342L4 different from standard PPS grades?
A: Fortron 1342L4 contains PTFE, which provides significantly lower friction and improved wear resistance compared to standard glass reinforced PPS grades .
Q3: What are the key features of Fortron 1342L4?
A: 40% glass reinforcement; PTFE-modified for low wear and low friction; tensile strength 165 MPa; tensile modulus 14,400 MPa; HDT 270°C; V-0 at 0.75mm; excellent chemical and heat resistance .
Q4: What are the typical applications for Fortron 1342L4?
A: Bearings, gears, wear pads, guide rails, seals, sliding components, automotive fuel system parts, and pump internals .
Q5: What is the coefficient of friction of Fortron 1342L4?
A: Dynamic coefficient of friction versus steel: 0.16; static coefficient versus steel: 0.20 .
Q6: What is the recommended drying condition for Fortron 1342L4?
A: Dry at 130–140°C for 3–4 hours using a dehumidified air dryer with dew point ≤ -30°C. Maximum residual moisture should be ≤ 0.02% .
Q7: What is the density of Fortron 1342L4?
A: 1.69 g/cm³ .
Q8: What is the HDT @ 1.80 MPa of Fortron 1342L4?
A: 270°C .
Q9: What regions is Fortron 1342L4 available in?
A: North America, Europe, South and Central America, Asia Pacific, Near East/Africa .
Q10: Is Fortron 1342L4 flame retardant?
A: Yes, V-0 at 0.75mm and 1.5mm thickness (UL 94) .
Q11: Is Fortron 1342L4 RoHS compliant?
A: Yes, it complies with RoHS, PFOS, and PFOA regulations .
Q12: What color options are available?
A: Natural and Black (SD3002 BLACK H) .
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Sample Policy:
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Samples of Fortron 1342L4 are for laboratory validation tests only, not for production use.
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Buyer bears international sample-shipping freight.
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If bulk-product performance deviates from sample reference, the manufacturer’s 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 Fortron 1342L4 . Our company acts as supplier/trader rather than original manufacturer. Final performance depends on processing conditions and part design. Buyers shall independently validate product suitability for individual applications. Our firm bears no liability for product failure caused by improper processing or improper usage. Always reference the latest manufacturer official TDS of Fortron 1342L4 as the definitive specification.


