https://www.avient.com/knowledge-base/case-study/cleaner-and-safer-internal-automotive-parts?sust[]=1136
Avient’s Onflex™ Lo TPE and Maxxam™ engineered material formulations are used for interior HVAC air flaps, trays, console carrier and instrument panels, and related interior parts.
https://www.avient.com/knowledge-base/case-study/cleaner-and-safer-internal-automotive-parts?pname[]=16817
Avient’s Onflex™ Lo TPE and Maxxam™ engineered material formulations are used for interior HVAC air flaps, trays, console carrier and instrument panels, and related interior parts.
https://www.avient.com/knowledge-base/article/protecting-polymers-microbe-growth?ind[]=6601
To better evaluate how to protect plastic parts from microbial attack, Avient conducted a study to screen a variety of plastic substrates for susceptibility using American Society for Testing and Materials (ASTM) G21 (fungi susceptibility), Japanese Industrial Standard (JIS) Z2801, and modified ASTM E1428-15a (bacterial susceptibility) test standards.
https://www.avient.com/sites/default/files/2023-11/ISO14001.2015.pdf
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Certificate TH15/8915
The management system of
Avient (Thailand) Co., Ltd.
79 Moo 11, Soi Kingthong, Kingkaew Road, Rachatewa, Bangplee, Samutprakarn, 10540, Thailand
This document is an authentic electronic certificate for Client’ business purposes use only.
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has been assessed and certified as meeting the requirements of
ISO 14001:2015
For the following activities
The Design and Manufacturing of Plastic Color Concentrated, Plastic Additive Concentrated and Pigment Powder for Thermoplastic &
Rubber Industries.
https://www.avient.com/products/engineered-polymer-formulations/sustainable-formulations/eccoh-low-smoke-and-fume-non-halogen-formulations
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ECCOH™ 5865/1 Formulations
Avient Wire & Cable Industry Bulletin
https://www.avient.com/sites/default/files/2020-11/eccoh-processing-guide.pdf
EXTRUDER
Screw 3/4" to 6" Polyethylene type—Single flight, no mixing section, 1.5–2:1 compression ratio
Tooling Semi-Pressure type: 30°–40° angle
Die On size with 1/8" or less land
L/D 24:1 recommended
Screen Pack No screen pack (Optional depending on pressure)
Cooling Trough 120–150°F (50–65°C) recommended
Feeder Gravimetric type preferred—3 compartment for cross-linked
Dryer Desiccant type, 4 hours at 160°F (70°C) For ECCOH™ compound only; never put
Dry Silane in Dryers
PROCESSING
Temperature ECCOH 5000 Series ECCOH 6000 Series
Wire Preheat 180–250°F (80–120°C) 180–250°F (80–120°C)
Feed Zones 200°F (93°C) 275°F (135°C)
Transition 275°F (135°C) 325°F (163°C)
Metering 300°F (150°C) 375°F (190°C)
Head/Die 330°F (165°C) 420°F (215°C)
Target Melt 330–340°F (165–170°C) 420–440°F (215–225°C)
Flame at Die Tip Yes—as needed
Line Speed Shear sensitive: Observe Melt Temperature, Motor Amperage, and Pressure
Purge Compound HDPE
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Avient makes no warranties or
guarantees respecting suitability of either Avient’s products or the information for your process or end-use application.
AVIENT MAKES NO WARRANTIES, EXPRESS
OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE, either with respect to the information or products reflected by the
information.
https://www.avient.com/idea/four-ways-intensify-road-consumer-experience
Learn more about using polymers to take your designs to the next level by contacting an expert at Avient today!
https://www.avient.com/sites/default/files/2025-02/Hexagon and digimat case study.pdf
Avient and Hexagon used Digimat to develop anisotropic
long fibre material data for a molded connector rod.
The resulting tensile test
data shown in Figure 1 gives an indication of the variation
in material response that can be observed as a function of
the fibre orientations.
In reality, the material response can
fall anywhere between the curves shown in Figure 1.
https://www.avient.com/knowledge-base/article/carbon-footprint-management-strategy-cn?rtype[]=1164
范围1:对于聚合物制造商来说,范围1排放通常是最容易控制的,如聚合物生产和设备、现场公用设施或价值链中品牌所有者或原始设备制造商(OEM)的运输方式所产生的温室气体。
如果制造工厂采用风能或太阳能等可再生能源供电,则可减少范围1和范围2的碳排放。
相比于范围1和范围2排放,范围3排放更为间接,因为其涉及到上游和下游活动。
https://www.avient.com/knowledge-base/article/carbon-footprint-management-strategy-cn?sust[]=1133
范围1:对于聚合物制造商来说,范围1排放通常是最容易控制的,如聚合物生产和设备、现场公用设施或价值链中品牌所有者或原始设备制造商(OEM)的运输方式所产生的温室气体。
如果制造工厂采用风能或太阳能等可再生能源供电,则可减少范围1和范围2的碳排放。
相比于范围1和范围2排放,范围3排放更为间接,因为其涉及到上游和下游活动。