https://www.avient.com/news/extreme-conditions-are-no-match-new-outdoor-sign-material
This material solution offers exceptional thermoformed detail, improved material distribution, short heating and cooling cycles, and no pre-drying under normal conditions, enabling sign manufacturers to save on energy, labor and production costs.”
UltraTuf SG sheet also provides superior heat resistance and ease of fabrication for enhanced design flexibility.
https://www.avient.com/news/avient-unveils-high-temperature-vibrant-colorants-healthcare-mdm-west-2022
Colorant Chromatics™ Transcend™ Premier Healthcare Colorants are formulated to offer ultra-high heat resistance and performance specifically for medical applications, and are available in a range of vivid colors.
Transcend Premier Healthcare Colorants are being launched in polyphenylsulfone (PPSU) resin, which can withstand up to 1,000 autoclave cycles and high heat sterilization to 150°C.
https://www.avient.com/resource-center?document_type=59&document_subtype=117&industry=0&product_family=81&product_subfamily=0&product_name=0&op=FILTER RESULTS&form_build_id=form-AIBrY1ZyQwmzj2EruRqQQ3PVzaFba0pwYj8H3eLS67g&form_id=resource_filter_form
Heat Sink for Rear and Fog Lights
Supplier HellermannTyton switched to heat-stabilized Bergamid™ B70 G30H Black TM-X polyamide to produce a seat fastener at lower cost, lower weight and with greater design flexibility
https://www.avient.com/knowledge-base/case-study/tier-1-auto-supplier-saves-supply-chain-expansion
Based on its location under the hood, the material needed to provide a heat deflection temperature (HDT) rating of 68°C HDT at a load of 264 psi.
This solution met the standards for heat resistance, physical properties and processing parameters.
https://www.avient.com/knowledge-base/case-study/telecom-supplier-secures-large-contract-specialty-nylon
It must also have the required heat resistance, be strong enough to maintain a tight electrical connection and be flexible enough to allow a snap fit.
A heat-resistant base resin that would provide the level of signal dampening prescribed
https://www.avient.com/knowledge-base/article/comparing-sustainable-tpes-traditional-alternatives
Heat Resistance
In high-heat applications, for instance, LSR is the preferred material solution.
https://www.avient.com/products/polymer-colorants/high-temperature-color-concentrates/colorant-chromatics-transcend-biocompatible-peek-pre-colored-compounds
Superior Performance: With ultra-high heat and chemical resistance, excellent mechanical properties, and dimensional stability, our PEEK compounds are perfect for applications requiring multiple re-sterilization and rigorous disinfection.
Features ultra-high heat and chemical resistance, excellent mechanical properties, dimensional stability, and high purity
https://www.avient.com/products/polymer-colorants/high-temperature-color-concentrates/colorant-chromatics-transcend-premier-healthcare-colorants
Achieve high heat resistance with this line of bright and vibrant colors, formulated specifically for healthcare applications.
Transcend™ Premier Healthcare Colorants are based in polysulfone resins, allowing the material to withstand up to 1,000 autoclave cycles as well as high heat sterilization to 150℃.
https://www.avient.com/sites/default/files/2024-10/Avient CDP Climate Change %26 Water Submission 20241001.pdf
Consumption of fuel (excluding feedstock)
(7.30.1.1) Heating value
Select from:
☑ HHV (higher heating value)
(7.30.1.2) MWh from renewable sources
0
(7.30.1.3) MWh from non-renewable sources
181564.61
290
(7.30.1.4) Total (renewable and non-renewable) MWh
181564.61
Consumption of purchased or acquired electricity
(7.30.1.1) Heating value
Select from:
☑ Unable to confirm heating value
(7.30.1.2) MWh from renewable sources
250828.67
(7.30.1.3) MWh from non-renewable sources
158822.01
(7.30.1.4) Total (renewable and non-renewable) MWh
409650.68
Consumption of self-generated non-fuel renewable energy
(7.30.1.1) Heating value
Select from:
☑ Unable to confirm heating value
(7.30.1.2) MWh from renewable sources
3066.11
(7.30.1.4) Total (renewable and non-renewable) MWh
291
3066.11
Total energy consumption
(7.30.1.1) Heating value
Select from:
☑ Unable to confirm heating value
(7.30.1.2) MWh from renewable sources
253894.78
(7.30.1.3) MWh from non-renewable sources
340386.61
(7.30.1.4) Total (renewable and non-renewable) MWh
594281.4
[Fixed row]
(7.30.6) Select the applications of your organization’s consumption of fuel.
Oil
(7.30.7.1) Heating value
Select from:
☑ HHV
(7.30.7.2) Total fuel MWh consumed by the organization
2868.32
(7.30.7.8) Comment
We consume diesel.
327
Select from:
☑ No
(7.30.16.4) Consumption of purchased heat, steam, and cooling (MWh)
0
(7.30.16.5) Consumption of self-generated heat, steam, and cooling (MWh)
0
(7.30.16.6) Total electricity/heat/steam/cooling energy consumption (MWh)
737.67
(7.30.16.7) Provide details of the electricity consumption excluded
NA
[Fixed row]
(7.30.17) Provide details of your organization’s renewable electricity purchases in the reporting year by country/area.
https://www.avient.com/knowledge-base/article/injection-molding-mold-processing?rtype[]=1164
If the heaters are on continuously, there is not enough heat being produced from shear.
To increase shear heating, increase the screw rpm and back pressure.
Increasing the back pressure increases shear heating of the material.