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XENOY™ CL101 PC/PBT Resin. Passed ISO 1043 for Side Crash Absorbers
Weight Reduction, Ductile Energy Absorption. Low Temperature Ductility
XENOY™ CL101 PC/PBT Resin is engineered to support Modern Automotive Safety Design by Combining Lightweight Construction with reliable Impact performance. It is developed for applications where reducing Component Weight must not Compromise Structural Energy Management during Collision Events.
the Impact-Modified PC/PBT Framework allows the material to achieve Ductile deformation behaviour, helping components absorb Impact Forces Efficiently while maintaining Integrity. This makes it suitable for Safety-Related Parts where controlled flexibility is required rather than Rigid Resistance.
XENOY™ CL101 PC/PBT Resin is specifically qualified for Side Crash Absorber applications, Meeting ISO 1043 PC/PBT Classification and supporting Structural Designs that Prioritize Energy Distribution. Its Ability to absorb Energy at Lower Temperatures ensures consistent performance in real-World Environments where Impact Conditions Vary.
in addition to Mechanical capability, the material delivers Good Resistance to Automotive Solvents and Fuels, ensuring Durability when exposed to Typical Service Conditions. This helps maintain Part performance even in Chemically Active Environments.
XENOY™ CL101 PC/PBT Resin also includes UV Stabilization, Extending the Lifespan of components exposed to Sunlight and Outdoor Conditions. This ensures that both Mechanical Properties and Surface Integrity remain stable over time.
the material provides Wide Temperature Ductility, allowing it to perform across Cold and Moderate Operating Conditions without Loss of flexibility. This ensures that Safety components remain Functional in Various Climates and Usage Scenarios.
XENOY™ CL101 PC/PBT Resin support efficient production with stable Processing characteristics, enabling consistent Molding of Safety-critical Parts with reliable Dimensional Accuracy.
the Resin achieves UL94 HB Classification from 1.50 mm to 3.00 mm, focusing on Structural Durability and Impact performance rather than Flame-Retardant Specialization.
XENOY™ CL101 PC/PBT Resin is Ideal for Automotive Crash Management Systems, Side Impact Absorbers, Structural Reinforcements, and Lightweight Safety components, where Weight Reduction, Durability, and controlled Energy Absorption must be Delivered Together.
XENOY™ CL101 PC/PBT Resin is RoHS Compliant, supporting Responsible material selection while enabling Advanced Lightweight Safety Design.
Notes:
XENOY™ CL101 Resin
Passed ISO 1043 PC/PBT for Side Crash Absorbers
Weight Reduction, Ductile Energy Absorption
Low Temperature Ductility
UL94 HB Rated
RoHS Compliant
XENOY CL101 PC/PBT has 0.70 ~ 1.00 Shrinkage, flow, 3.2 mm. %
Material HDT, 1.82 MPa, ASTM A648, °C
3.2 mm, unannealed 90
Vicat Softening Temperature Rate
SABIC XENOY™ CL101 Vicat Softening Temperature Rate , B120 = 127
Material MFI / Melt Flow Rate
Melt flow Rate, 250°C/5.0 kgf = 14
Material Melt Volume Rate, MVR
Melt Volume Rate, 250°C/5.0 kgf = 13
Material Flexural Modulus
XENOY™ CL101 Flexural Modulus, ISO 178, 2 mm/min = 2050 Mpa
XENOY™ CL101 are UL94 - HB, 1.50 mm ~ 3.00 mm Rated
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Any sale by SABIC, Its Subsidiaries and Affiliates (each a “Seller”), is Made Exclusively under Seller’s Standard Conditions of Sale (available upon request) unless Agreed Otherwise in Writing and Signed on behalf of the Seller. While the Information Contained herein is given in Good Faith, SELLER MAKES NO WARRANTY, EXPRESS OR IMPLIED, INCLUDING MERCHANTABILITY AND NONINFRINGEMENT OF INTELLECTUAL PROPERTY, NOR ASSUMES ANY LIABILITY, DIRECT OR INDIRECT, WITH RESPECT TO THE PERFORMANCE, SUITABILITY OR FITNESS FOR INTENDED USE OR PURPOSE OF THESE PRODUCTS IN ANY APPLICATION. Each Customer must Determine the Suitability of Seller Materials for the Customer’s Particular Use through Appropriate Testing and Analysis. No Statement by Seller Concerning a Possible Use of any Product, Service or Design is Intended, or should be Construed, to grant any License under any Patent or other Intellectual Property Right. © 2021
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