ULTEM HU2200 – 20% Glass Fiber Reinforced Healthcare Grade PEI Resin

基础信息

品名
ULTEM Resin HU2200
牌号
HU2200
厂商
SABIC (Saudi Basic Industries Corporation)
材料类型
Polyetherimide (PEI) – Unreinforced, Amorphous
产品形态
Resin Pellets
特点
20% glass fiber reinforced for exceptional stiffness; enhanced flow for easier processing; biocompatible (ISO 10993 or USP Class VI); steam, gamma, EtO, and E-beam sterilizable; FDA & EU food contact compliant; UL94 V-0 & 5VA; high heat resistance (Tg 217°C); ECO conforming; PFAS-free

描述

ULTEM Resin HU2200 is a 20% glass fiber reinforced, enhanced flow healthcare grade polyetherimide (PEI) resin manufactured by SABIC. As an authorized distributor and trader, we supply genuine SABIC materials with full traceability.

ULTEM HU2200 is specifically developed for medical devices and pharmaceutical applications. The 20% glass fiber reinforcement provides exceptional stiffness and dimensional stability while maintaining the excellent heat resistance and chemical resistance inherent to PEI. The enhanced flow characteristics enable easier processing of complex, thin-walled parts. For applications requiring even higher compression strength, ULTEM HU2200 or HU2300 are well-suited options [0†L37-L38].

This grade is biocompatible per ISO 10993 or USP Class VI and supports multiple sterilization methods including steam, gamma irradiation, ethylene oxide (EtO), and E-beam [2†L6-L7]. It is FDA and EU food contact compliant and ECO conforming [5†L5-L6].

ULTEM HU2200 is inherently flame retardant (UL94 V-0 and 5VA), high stiffness, and chemical resistant, making it the trusted choice for demanding healthcare environments where performance, safety, and reliability are critical. Additionally, ISCC+ certified bio-based offerings are available for this grade, supporting sustainable material selection [6†L16].

Key Features of ULTEM HU2200

  • 20% Glass Fiber Reinforced – Provides exceptional stiffness, strength, and dimensional stability; tensile modulus of 6,890 MPa (ASTM) [7†L14] [7†L20]; significantly improved rigidity compared to unreinforced grades

  • Enhanced Flow – Improved flow characteristics (MFR 6.0 g/10min at 337°C/6.6kg) for easier processing and better mold filling of complex, thin-walled parts [1†L9]

  • Healthcare Grade – Specifically developed for medical devices and pharmaceutical applications; biocompatible (ISO 10993 or USP Class VI) [2†L10-L11]; healthcare management of change applies [2†L5]

  • Multiple Sterilization Compatibility – Supports steam, gamma irradiation, ethylene oxide (EtO), and E-beam sterilization [2†L6-L7]; resistant to repeated sterilization cycles [9†L10-L11]

  • High Heat Resistance – Glass transition temperature of 217°C [5†L3]; HDT of 208°C at 1.82 MPa (ASTM D648) [8†L18-L19]; Vicat softening temperature of 220°C (B50) [8†L20]

  • Inherent Flame Retardancy – UL94 V-0 (0.41mm) and 5VA (1.9mm) ratings [5†L33-L35]; limiting oxygen index (LOI) of 47% [9†L26]; inherently flame resistant without additives [9†L25]

  • High Stiffness & Strength – Tensile modulus of 6,890 MPa; tensile strength of 131 MPa (yield and break) [7†L11-L12]; flexural modulus of 6,850-6,890 MPa; flexural strength of 225-228 MPa [7†L15-L16][7†L20-L21]

  • Excellent Dimensional Stability – Low shrinkage (0.30-0.50%) [0†L7]; low creep sensitivity [5†L14]; high dimensional stability offers predictability over a wide temperature range [9†L19-L20]

  • Food Contact Compliant – FDA and EU food contact compliant [5†L5-L6]

  • Good Chemical Resistance – Excellent resistance to automotive fluids, aircraft fluids, aliphatic hydrocarbons, alcohols, acids, and weak aqueous solutions; retains strength and resists stress cracking [9†L21-L24]

  • Low Smoke & Toxicity – Inherently low smoke; products of combustion no more toxic than wood [9†L28-L29]

  • Good Impact Resistance – Notched Izod impact of 64 J/m (23°C) and 70 J/m (-30°C) [5†L36-L38]; unnotched Izod impact of 480 J/m [5†L36]

  • Good Metal Adhesion – Suitable for applications requiring metal bonding

  • ECO Conforming – Meets environmental compliance standards [5†L3]

  • Sustainable Option – ISCC+ certified bio-based offerings available [6†L16]

  • Versatile Processing – Suitable for injection molding; also compatible with additive manufacturing (3D printing) [5†L13][6†L24]

HU Series Healthcare Grade Comparison

Property HU1100 HU1110 HU2100 HU2200
Glass Fiber Content 0% 0% 10% 20%
Flow Type Standard Enhanced Standard Enhanced
MFR (337°C/6.6kg) 8.8 g/10min 16 g/10min 7 g/10min 6.0 g/10min
Tensile Modulus (ASTM) 3,720 MPa 4,680 MPa 6,890 MPa
Tensile Strength (ASTM) 110 MPa 110 MPa 114 MPa 131 MPa
HDT (1.82 MPa) 188°C 210°C 205°C 208°C
Shrinkage 0.50-0.70% 0.5-0.6% 0.30-0.50%
Biocompatibility ISO 10993 / USP Class VI ISO 10993 / USP Class VI ISO 10993 / USP Class VI ISO 10993 / USP Class VI
Sterilization Steam, Gamma, EtO, E-beam Steam, Gamma, EtO, E-beam Steam, Gamma, EtO, E-beam Steam, Gamma, EtO, E-beam
Key Feature Standard flow, unreinforced Enhanced flow, unreinforced 10% glass, standard flow 20% glass, enhanced flow

Typical Applications for ULTEM HU2200

Industry Typical Applications
Surgical Devices Surgical instruments, reusable medical devices – withstands multiple sterilization cycles [5†L21]
Pharmaceutical Packaging & Drug Delivery Drug delivery systems, pharmaceutical packaging – biocompatible, FDA compliant [5†L21-L22]
Sterilization Trays & Containers Sterilization trays, containers – supports steam, gamma, EtO, and E-beam sterilization
Laboratory Ware & Clinical Diagnostics Lab ware, clinical diagnostics equipment – chemically resistant, sterilizable [5†L21]
General Healthcare Healthcare facility infrastructure, patient testing equipment – durable, sterilizable [5†L21]
Medical Device Components Enclosures, housings, covers – high strength, flame retardant, sterilizable
Additive Manufacturing 3D printed medical device prototypes and components [5†L13]

Typical Properties

Property HU2200 (ASTM) HU2200 (ISO) Unit Test Method
Physical
Specific Gravity 1.42 g/cm³ ASTM D792 [1†L6]
Density 1.42 g/cm³ ISO 1183 [1†L6]
Melt Flow Rate (MFR) – 337°C/6.6kg 6.0 g/10min ASTM D1238 [1†L9]
Melt Volume Rate (MVR) – 360°C/5kg 7.0 cm³/10min ISO 1133 [8†L6]
Mold Shrinkage, Flow (3.2mm) 0.30 – 0.50 % SABIC Method [0†L7]
Water Absorption (Saturation, 23°C) 1.0 % ISO 62 [8†L7]
Water Absorption (Equilibrium, 50% RH) 0.55 % ISO 62 [8†L7]
Mechanical
Tensile Modulus 6,890 6,890 MPa ASTM D638 / ISO 527 [7†L14][7†L19-L20]
Tensile Strength (Yield) 131 131 MPa ASTM D638 / ISO 527 [7†L11][7†L17]
Tensile Strength (Break) 131 131 MPa ASTM D638 / ISO 527 [7†L12][7†L18]
Yield Strain 4.0 4.0 % ASTM D638 / ISO 527 [7†L13][7†L18]
Elongation at Break 4.0 4.0 % ASTM D638 / ISO 527 [7†L13-L14][7†L19]
Flexural Modulus 6,850 6,890 MPa ASTM D790 / ISO 178 [7†L16][7†L21]
Flexural Strength (Yield) 225 228 MPa ASTM D790 / ISO 178 [7†L15][7†L20]
Impact
Izod Impact (Notched, 23°C) 64 64 J/m / kJ/m² ASTM D256 / ISO 180/1A [5†L37][5†L39]
Izod Impact (Notched, -30°C) 70 70 J/m / kJ/m² ASTM D256 / ISO 180/1A [5†L37-L38][5†L40]
Izod Impact (Unnotched, 23°C) 480 J/m ASTM D4812 [5†L36]
Charpy Impact (Notched, 23°C) 65 kJ/m² ISO 179/1eA [5†L40-L41]
Instrumented Dart Impact Total Energy (23°C) 8.0 J ASTM D3763 [5†L38]
Thermal
Glass Transition Temperature (Tg) 217 217 °C [5†L3]
Heat Deflection Temp. (1.82MPa, 3.2mm) 208 °C ASTM D648 [7†L28-L29]
Heat Deflection Temp. (1.80MPa, ISO) 205 °C ISO 75-2/Ae [8†L19-L20]
Vicat Softening Temp. (B50) 220 212 °C ASTM D1525 / ISO 306 [8†L20]
Vicat Softening Temp. (B120) 218 °C ISO 306 [8†L20-L21]
CTE, Flow (-20 to 150°C) 2.1×10⁻⁵ 2.5×10⁻⁵ cm/cm/°C ASTM E831 / ISO 11359-2 [7†L30-L31][8†L21-L22]
CTE, Transverse (-40 to 150°C) 4.9×10⁻⁵ 5.0×10⁻⁵ cm/cm/°C ASTM E831 / ISO 11359-2 [7†L29][8†L23-L24]
UL RTI (Elec/Imp/Str) 170 / 170 / 170 °C UL 746 [0†L0]
Flammability
UL 94 Flammability V-0 (0.41mm), 5VA (1.9mm) UL 94 [5†L33-L35]
Electrical
Arc Resistance PLC 6 ASTM D495 [5†L30]
Comparative Tracking Index (CTI) PLC 4 UL 746A [5†L25-L26]
Hot-Wire Ignition (HWI) PLC 1 (≥3mm), PLC 2 (≥1.5mm) UL 746A [5†L26-L27]
High Amp Arc Ignition (HAI) PLC 3 (≥1.5mm), PLC 4 (≥3mm) UL 746A [5†L28-L29]
High Voltage Arc Track Rate (HVTR) PLC 2 UL 746A [5†L29]

Important Notes on Typical Data:

  • Values listed are typical and sourced from SABIC official 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 processing conditions, mold design, and part geometry.

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

Processing Guidelines (Injection Molding)

Parameter Recommended Conditions
Drying
Drying Temperature 150°C
Drying Time 4 – 6 hours
Maximum Moisture Content ≤0.02%
Injection Molding
Suggested Shot Size 40 – 60% of cylinder capacity
Hopper Temperature 80 – 120°C
Rear Zone Temperature
Middle Zone Temperature
Front Zone Temperature
Processing (Melt) Temperature 350 – 400°C
Mold Temperature 135 – 165°C
Back Pressure 0.3 – 0.7 MPa
Screw Speed 40 – 70 rpm
Vent Depth 0.025 – 0.076 mm

Critical Processing Warnings:

  • Drying: ULTEM HU2200 is hygroscopic and must be dried to ≤0.02% moisture before processing. Dry at 150°C for 4-6 hours.

  • Enhanced Flow: This grade offers enhanced flow characteristics (MFR 6.0 g/10min) for easier processing and better mold filling of complex, thin-walled parts [1†L9].

  • Melt Temperature: Recommended melt temperature range is 350-400°C. Avoid excessive residence times to prevent thermal degradation.

  • Mold Temperature: Higher mold temperatures (135-165°C) improve flow and reduce residual stress.

  • Healthcare Applications: This grade is specifically designed for medical devices and pharmaceutical applications. It is biocompatible (ISO 10993 or USP Class VI) and healthcare management of change applies [5†L4].

  • Sterilization: ULTEM HU2200 supports steam, gamma, EtO, and E-beam sterilization. Verify compatibility with your specific sterilization protocol [2†L6-L7].

  • Food Contact: This material is food contact compliant in most jurisdictions – exceptions may exist, request a declaration for details [5†L6-L7].

  • PFAS-Free: This product does not contain PFAS intentionally added during manufacturing [5†L18].

  • Gate Design: Use large gates and runners to minimize flow resistance and reduce molded-in stress.

  • Regrind: Regrind can be used up to 20-25% with virgin material, provided it is clean and properly dried.

Related Products

Technical Documents

Document Type Description & Source
SABIC Official TDS Complete physical, thermal, and mechanical properties of ULTEM HU2200
SABIC Official SDS GHS-compliant chemical safety documentation
UL Yellow Card UL certification E121562-221093 [5†L33]
ISO 10993 / USP Class VI Biocompatibility certification [5†L4-L5]
FDA Compliance Declaration FDA food contact compliance
EU Food Contact Compliance European food contact compliance
ISCC+ Certification Bio-based renewable certification [6†L16]
COA (Certificate of Analysis) Batch-specific quality certification
Processing Guide Detailed processing guidelines for ULTEM HU2200

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FAQ

Q1: What is ULTEM HU2200 and what is it used for?
A: ULTEM HU2200 is a 20% glass fiber reinforced, enhanced flow healthcare grade polyetherimide (PEI) resin manufactured by SABIC. It is specifically developed for medical devices and pharmaceutical applications. It is widely used in surgical instruments, pharmaceutical packaging, drug delivery systems, sterilization trays, laboratory ware, and general healthcare equipment [5†L20-L22].

Q2: Is ULTEM HU2200 biocompatible?
A: Yes. ULTEM HU2200 is biocompatible per ISO 10993 or USP Class VI, making it suitable for regulated medical and pharmaceutical applications [2†L10-L11].

Q3: Is ULTEM HU2200 FDA compliant?
A: Yes. ULTEM HU2200 is FDA and EU food contact compliant. It is food contact compliant in most jurisdictions – exceptions may exist, request a declaration for details [5†L6-L7].

Q4: What sterilization methods can ULTEM HU2200 withstand?
A: ULTEM HU2200 supports steam sterilization, gamma irradiation, ethylene oxide (EtO), and E-beam sterilization [2†L6-L7].

Q5: What is the glass transition temperature of ULTEM HU2200?
A: The glass transition temperature (Tg) is 217°C [5†L3].

Q6: What is the density of ULTEM HU2200?
A: The density is 1.42 g/cm³ (ASTM D792 / ISO 1183) [1†L6].

Q7: Is ULTEM HU2200 flame retardant?
A: Yes. ULTEM HU2200 is inherently flame retardant with UL94 V-0 (0.41mm) and 5VA (1.9mm) ratings [5†L33-L35].

Q8: What is the glass fiber content of ULTEM HU2200?
A: ULTEM HU2200 contains 20% glass fiber reinforcement [0†L6].

Q9: What is the melt flow rate of ULTEM HU2200?
A: The Melt Flow Rate (MFR) is 6.0 g/10min at 337°C, 6.6kg (ASTM D1238) [1†L9]; the Melt Volume Rate (MVR) is 7.0 cm³/10min at 360°C, 5kg (ISO 1133) [8†L6].

Q10: What is the tensile strength of ULTEM HU2200?
A: Tensile strength at yield and break is 131 MPa (ASTM D638 / ISO 527) [7†L11-L12][7†L17-L18].

Q11: What is the tensile modulus of ULTEM HU2200?
A: The tensile modulus is 6,890 MPa (ASTM D638 / ISO 527) [7†L14][7†L19-L20].

Q12: What is the heat deflection temperature of ULTEM HU2200?
A: Heat deflection temperature is 208°C at 1.82 MPa (ASTM D648, 3.2mm, unannealed) [7†L28-L29] and 205°C (ISO 75-2/Ae) [8†L19-L20].

Q13: What is the Vicat softening temperature of ULTEM HU2200?
A: The Vicat softening temperature (B50) is 220°C (ASTM D1525) / 212°C (ISO 306) [8†L20].

Q14: What is the shrinkage of ULTEM HU2200?
A: Mold shrinkage (flow, 3.2mm) is 0.30-0.50% [0†L7].

Q15: What is the difference between ULTEM HU2100 and ULTEM HU2200?
A: ULTEM HU2200 contains 20% glass fiber reinforcement compared to 10% in HU2100, providing higher stiffness (tensile modulus 6,890 MPa vs 4,680 MPa) and strength (131 MPa vs 114 MPa). HU2200 also features enhanced flow compared to HU2100’s standard flow.

Q16: What processing methods can be used for ULTEM HU2200?
A: ULTEM HU2200 is suitable for injection molding and is also compatible with additive manufacturing (3D printing) [5†L13][6†L24].

Q17: What is the recommended drying condition for ULTEM HU2200?
A: Dry at 150°C for 4-6 hours.

Q18: What is the recommended melt temperature for injection molding ULTEM HU2200?
A: Recommended melt temperature is 350-400°C.

Q19: What is the recommended mold temperature for ULTEM HU2200?
A: Recommended mold temperature is 135-165°C.

Q20: Is ULTEM HU2200 PFAS-free?
A: Yes. ULTEM HU2200 has no PFAS intentionally added during manufacturing [5†L18].

Q21: Is there a sustainable/bio-based version of ULTEM HU2200?
A: Yes. ISCC+ certified bio-based offerings are available for this grade [6†L16].

Q22: What is the lead time for orders?
A: Regular orders ship within 7-10 working days after payment confirmation. Large-volume or urgent orders can be negotiated separately.

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  • Bio-based preference (standard or ISCC+ certified renewable grade)

  • Document requirement (TDS, SDS, ISO 10993/USP Class VI certification, FDA compliance, UL, COA, etc.)

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, SABIC 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 (e.g., FDA, ISO 10993, USP Class VI, UL, RoHS, ISCC+) on request.

Disclaimer

DISCLAIMER: All technical data is referenced from original SABIC typical values for ULTEM HU2200. Our company acts as authorized distributor/trader rather than original manufacturer. Final performance depends on processing conditions, mold design, and part geometry. Buyers shall independently validate product suitability for individual applications, particularly for medical device applications where regulatory compliance must be verified under end-use conditions. Our firm bears no liability for product failure caused by improper processing or improper usage. Always reference the latest SABIC official TDS of ULTEM HU2200 as the definitive specification.

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