VESTAMID CW1688 Bio30 – 8% Glass Fiber Reinforced 30% Bio-Based PA12

基础信息

品名
VESTAMID CW1688 Bio30
牌号
CW1688 Bio30
厂商
Evonik
材料类型
Unfilled Polyamide 12 (PA12)
产品形态
Pellets / Granules (Injection Molding Grade)
特点
8% glass fiber reinforcement; 30% bio-based carbon content; heat and light (UV) stabilized; low water absorption; excellent dimensional accuracy under changing ambient humidity; outstanding mechanical and thermal capacity; wide processing window; electrically insulating

描述

VESTAMID CW1688 Bio30 is an 8% glass fiber reinforced, heat- and light-stabilized semi-crystalline compound based on polyamide 12 (PA12) from Evonik Operations GmbH. The material was developed for use in injection molding and is especially suitable for Sports and Lifestyle applications.

The “Bio30” designation indicates that this grade contains 30% bio-based carbon content, derived from renewable raw materials such as castor oil. This makes VESTAMID CW1688 Bio30 an excellent choice for applications where sustainability is a key requirement.

VESTAMID CW1688 Bio30 only absorbs small amounts of water. Therefore, components made from this material have excellent dimensional accuracy under changing ambient humidity. Due to the low melting point of the material, it provides a wide processing window for the injection molding process. The compound is supplied as cylindrical pellets in ready-to-process condition in moisture-tight bags.

The use of colorants may affect property values.

For more VESTAMID grades and technical information, please visit our PA12/Polyamide 12 product page.

Key Features of VESTAMID CW1688 Bio30

# Feature Benefit
1 8% Glass Fiber Reinforcement Enhanced stiffness and dimensional stability
2 30% Bio-Based Content Reduces carbon footprint; derived from renewable castor oil
3 Heat & Light Stabilized Maintains properties under thermal and UV exposure
4 Low Water Absorption Excellent dimensional accuracy under changing ambient humidity
5 Outstanding Mechanical Capacity High strength and rigidity for demanding applications
6 Wide Processing Window Low melting point provides ease of processing
7 Electrically Insulating Suitable for electrically insulating components
8 Translucent Appearance Natural translucent color for aesthetic flexibility
9 Excellent Dimensional Stability Consistent performance across varying humidity
10 Sustainable Material Third-party certified LCA data available (TÜV Rheinland)

Typical Applications for VESTAMID CW1688 Bio30

Industry Typical Components & Considerations
Sports & Lifestyle Sports footwear components, shoe soles – utilizing high stiffness, dimensional stability, and bio-based sustainability
Electronic Insulation Electrically insulating components – utilizing the material’s insulating properties
Precision Injection Molding Components requiring high dimensional accuracy under varying humidity
Consumer Goods Lifestyle products requiring a balance of stiffness, toughness, and sustainability
Automotive Under-hood components requiring heat and light stability

Typical Properties of VESTAMID CW1688 Bio30

Property Value Test Method
Physical
Density 1.06 g/cm³ ISO 1183
Water Absorption (Saturation, 23°C) 0.6% Sim. to ISO 62
Moisture Absorption (23°C, 50% RH) 0.2% Sim. to ISO 62
Molding Shrinkage – Flow 0.35% ISO 294-4
Molding Shrinkage – Transverse 1.5% ISO 294-4
Mechanical
Tensile Modulus 2,380 MPa (dry) ISO 527
Tensile Strength 62 MPa (dry) ISO 527
Yield Stress 62 MPa (dry) ISO 527
Yield Strain 5.2% (dry) ISO 527
Stress at Break 55 MPa (dry) ISO 527
Thermal
Melting Temperature 178°C ISO 11357
Sustainability
Bio-Based Carbon Content 30% ASTM D6866
Global Warming Potential (incl. bio C) 6.5 kg CO₂ eq./kg ISO 14040, 14044
GWP Savings vs. 2023 Reference -1.3 kg CO₂ eq./kg ISO 14040, 14044

Sustainability & LCA Data

VESTAMID CW1688 Bio30 has been certified with comprehensive Life Cycle Assessment (LCA) data by TÜV Rheinland following ISO 14040 and ISO 14044 standards. Key environmental metrics include:

Metric Value Unit
Global Warming Potential (incl. bio. C, incl. LUC) 6.5 kg CO₂ eq./kg
Global Warming Potential (excl. bio. C, incl. LUC) 7.2 kg CO₂ eq./kg
GWP Savings vs. 2023 Reference -1.3 kg CO₂ eq./kg
Blue Water Consumption 563.4 kg
Land Use (ReCiPe 2016) 7.1 Annual crop eq. y

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 VESTAMID CW1688 Bio30.

📌 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 VESTAMID CW1688 Bio30. Request the latest official TDS from our sales team.

Processing Guidelines for VESTAMID CW1688 Bio30

Step Process
Processing Methods Injection Molding
Drying Recommended Yes
Drying Temperature 80°C
Drying Time 4 hours
Suggested Max Moisture ≤ 0.10%
Melt Temperature 190 – 270°C
Optimum Melt Temperature 230 – 250°C
Mold Temperature 40 – 80°C
Extrusion Temperature 190 – 220°C
Die Head Temperature 180°C
Storage Store in original, sealed packaging in a cool, dry place away from direct sunlight

Critical Processing Warnings for VESTAMID CW1688 Bio30

⚠️ Drying Requirement – VESTAMID CW1688 Bio30 requires drying prior to processing to prevent hydrolytic degradation. The recommended drying conditions are 80°C for 4 hours.

⚠️ Moisture Control – Maximum residual moisture content should be ≤ 0.10%. Proper drying is essential to prevent void formation and ensure optimal part quality.

⚠️ Melt Temperature – The recommended melt temperature range is 190–270°C, with an optimum of 230–250°C. Avoid exceeding 270°C to prevent material degradation.

⚠️ Mold Temperature – A mold temperature range of 40–80°C is recommended. Higher mold temperatures promote higher crystallinity and better dimensional stability.

⚠️ Glass Fiber Reinforcement – Contains 8% glass fiber reinforcement, which may require consideration for equipment wear and proper screw design.

⚠️ Colorants – The use of colorants can change property values.

⚠️ Storage – Store in original, sealed packaging in a cool, dry place away from direct sunlight. For subsequent storage, the material should be stored dry until processed.

Comparison: VESTAMID CW1688 Bio30 vs. Standard Unfilled PA12

Feature VESTAMID CW1688 Bio30 Standard Unfilled PA12
Filler Content 8% Glass Fiber Unfilled
Bio-Based Content 30% 0%
Key Feature High stiffness, sustainable Flexibility, good toughness
Tensile Modulus 2,380 MPa ~1,400 MPa
Tensile Strength 62 MPa ~43 MPa
Density 1.06 g/cm³ ~1.02 g/cm³
Molding Shrinkage (Flow) 0.35% ~0.8%
Water Absorption 0.6% ~1.5%
Primary Application Sports footwear, precision components General flexible components

Related Products

  • PA12/Polyamide 12 – View our full range of PA12 products

  • Engineering Plastics – Browse all engineering plastic materials

  • VESTAMID CW1407 BK – Low-filled carbon fiber reinforced PA12 for sports applications

  • VESTAMID Care ML21 – High viscosity unfilled PA12 for medical applications

  • About Our Company – Learn more about our supply capabilities and quality assurance

Technical Documents for VESTAMID CW1688 Bio30

Document Type Description & Source
Manufacturer Official TDS Complete physical, thermal, and mechanical properties of VESTAMID CW1688 Bio30
Manufacturer Official SDS GHS-compliant safety documentation
COA (Certificate of Analysis) Batch-specific quality certification for VESTAMID CW1688 Bio30
LCA Certification TÜV Rheinland certified LCA data (ISO 14040, 14044)

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We reply within one working business day. Please clearly state product (VESTAMID CW1688 Bio30) and document type you require.

FAQ about VESTAMID CW1688 Bio30

Q1: What is VESTAMID CW1688 Bio30?
A: VESTAMID CW1688 Bio30 is an 8% glass fiber reinforced, heat- and light-stabilized semi-crystalline compound based on PA12 from Evonik, developed for injection molding and especially suitable for sports and lifestyle applications.

Q2: What does “Bio30” mean?
A: “Bio30” indicates that this grade contains 30% bio-based carbon content, derived from renewable raw materials such as castor oil.

Q3: What are the key features of VESTAMID CW1688 Bio30?
A: 8% glass fiber reinforcement; 30% bio-based content; heat & light stabilized; low water absorption; excellent dimensional accuracy under changing ambient humidity; outstanding mechanical and thermal capacity; electrically insulating; wide processing window.

Q4: What are the typical applications for VESTAMID CW1688 Bio30?
A: Sports footwear components, shoe soles, electronic insulation, precision injection molded components, and lifestyle products requiring a balance of stiffness, toughness, and sustainability.

Q5: What is the recommended drying condition for VESTAMID CW1688 Bio30?
A: Dry at 80°C for 4 hours. Maximum residual moisture should be ≤ 0.10%.

Q6: What is the density of VESTAMID CW1688 Bio30?
A: 1.06 g/cm³.

Q7: What is the tensile modulus of VESTAMID CW1688 Bio30?
A: 2,380 MPa (dry).

Q8: What regions is VESTAMID CW1688 Bio30 available in?
A: Europe and North America.

Q9: Is VESTAMID CW1688 Bio30 heat stabilized?
A: Yes, it is both heat and light (UV) stabilized.

Q10: What is the bio-based content of VESTAMID CW1688 Bio30?
A: 30% bio-based carbon content, derived from renewable raw materials.

Q11: What is the melting temperature of VESTAMID CW1688 Bio30?
A: 178°C.

Q12: What is the molding shrinkage of VESTAMID CW1688 Bio30?
A: 0.35% in flow direction and 1.5% in transverse direction.

Q13: Is VESTAMID CW1688 Bio30 electrically insulating?
A: Yes, it is electrically insulating.

Q14: What is the water absorption of VESTAMID CW1688 Bio30?
A: 0.6% at saturation (23°C) and 0.2% at 23°C/50% RH.

Q15: Does VESTAMID CW1688 Bio30 have LCA certification?
A: Yes, it has TÜV Rheinland certified LCA data following ISO 14040 and 14044 standards.

Q16: What is the difference between VESTAMID CW1688 Bio30 and standard PA12?
A: VESTAMID CW1688 Bio30 offers higher stiffness (2,380 MPa vs. ~1,400 MPa) due to 8% glass fiber reinforcement and 30% bio-based content for sustainability, while maintaining low water absorption and excellent dimensional stability.

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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 VESTAMID CW1688 Bio30. 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 VESTAMID CW1688 Bio30 as the definitive specification.

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