https://www.avient.com/sites/default/files/2022-04/Sustainable Material Answers_ Circular Economy 2022.pdf
Inspired by regenerative ecosystems found in nature, the circular
economy proposes that all goods and products find their way back into
supporting the same system from which they were created once a person is
finished using them.
https://www.avient.com/sites/default/files/resources/TRA%2520-%25202016%2520Annual%2520Report%2520for%252017%2520Tideman.pdf
Note: Only the person identified as the Certifying Official or the authorized delegate should submit the report(s) identified below.
https://www.avient.com/products/long-fiber-technology/long-fiber-technologies/compl-t-long-fiber-reinforced-structural-thermoplastics
Personal Watercraft OEM Steering Column
https://www.avient.com/wilflex-0/wilflex-epic-non-phthalate-plastisol-inks/wilflex-epic-color-mixing-solutions/wilflex-epic-polyester-solutions
ALSO OF INTEREST
https://www.avient.com/products/polymer-colorants/solid-color-masterbatches/oncolor-sc-super-concentrate-technologies
Also of Interest
https://www.avient.com/sites/default/files/2022-04/Sustainable Material Answers_ Circular Economy 2022_1.pdf
Inspired by regenerative ecosystems found in nature, the circular
economy proposes that all goods and products find their way back into
supporting the same system from which they were created once a person is
finished using them.
https://www.avient.com/products/polymer-additives/barrier-and-scavenger-additives/colormatrix-triple-acetaldehyde-scavenger-pet
Also of Interest
https://www.avient.com/products/engineered-polymer-formulations/structural-fiber-reinforced-formulations/short-fiber-reinforced-formulations
Also of Interest
https://www.avient.com/sites/default/files/2021-01/eccoh-cpr-product-bulletin.pdf
The ECCOH™ grades in this selection guide can be used for cables expected to meet the noted Euroclass rating.
https://www.avient.com/sites/default/files/2020-09/stat-tech-tri-fold-processing-guide.pdf
PROBLEM CAUSE SOLUTION
Incomplete Fill Melt and/or mold
temperature too cold
Mold design
Shot Size
• Increase nozzle and barrel temperatures
• Increase mold temperature
• Increase injection speed
• Increase pack and hold pressure
• Increase nozzle tip diameter
• Check thermocouples and heater bands
• Enlarge or widen vents and increase number of vents
• Check that vents are unplugged
• Check that gates are unplugged
• Enlarge gates and/or runners
• Perform short shots to determine fill pattern and verify
proper vent location
• Increase wall thickness to move gas trap to parting line
• Increase shot size
• Increase cushion
Brittleness Melt temperature too low
Degraded/Overheated material
Gate location and/or size
• Increase melt temperature
• Increase injection speed
• Measure melt temperature with pyrometer
• Decrease melt temperature
• Decrease back pressure
• Use smaller barrel/excessive residence time
• Relocate gate to nonstress area
• Increase gate size to allow higher flow speed
and lower molded-in stress
Fibers on Surface
(Splay)
Melt temperature too low
Insufficient packing
• Increase melt temperature
• Increase mold temperature
• Increase injection speed
• Increase pack and hold pressure, and time
• Increase shot size
• Increase gate size
Sink Marks Part geometry too thick
Melt temperature too hot
Insufficient material volume
• Reduce wall thickness
• Reduce rib thickness
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Increase shot size
• Increase injection rate
• Increase packing pressure
• Increase gate size
Flash Injection pressure too high
Excess material volume
Melt and/or mold
temperature too hot
• Decrease injection pressure
• Increase clamp pressure
• Decrease injection speed
• Increase transfer position
• Decrease pack pressure
• Decrease shot size
• Decrease injection speed
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Decrease screw speed
TROUBLESHOOTING RECOMMENDATIONS
PROBLEM CAUSE SOLUTION
Excessive Shrink Too much orientation • Increase packing time and pressure
• Increase hold pressure
• Decrease melt temperature
• Decrease mold temperature
• Decrease injection speed
• Decrease screw rpm
• Increase venting
• Increase cooling time
Not Enough Shrink Too little orientation • Decrease packing pressure and time
• Decrease hold pressure
• Increase melt temperature
• Increase mold temperature
• Increase injection speed
• Increase screw rpm
• Decrease cooling time
Burning Melt and/or mold
temperature too hot
Mold design
Moisture
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Decrease injection speed
• Clean, widen and increase number of vents
• Increase gate size or number of gates
• Verify material is dried at proper conditions
Nozzle Drool Nozzle temperature too hot • Decrease nozzle temperature
• Decrease back pressure
• Increase screw decompression
• Verify material has been dried at proper conditions
Weld Lines Melt front temperatures
too low
Mold design
• Increase pack and hold pressure
• Increase melt temperature
• Increase vent width and locations
• Increase injection speed
• Increase mold temperature
• Decrease injection speed
• Increase gate size
• Perform short shots to determine fill pattern and verify
proper vent location
• Add vents and/or false ejector pin
• Move gate location
Warp Excessive orientation
Mold design
• Increase cooling time
• Increase melt temperature
• Decrease injection pressure and injection speed
• Increase number of gates
Sticking in Mold Cavities are overpacked
Mold design
Part is too hot
• Decrease injection speed and pressure
• Decrease pack and hold pressure
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Increase cooling time
• Increase draft angle
• Decrease nozzle and barrel temperatures
• Decrease mold temperature
• Increase cooling time
TROUBLESHOOTING RECOMMENDATIONS
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