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TECHNICAL PROPERTIES
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https://www.avient.com/sites/default/files/2021-03/lubrione-pke-product-bulletin.pdf
Industrial – conveyor belts
• Electronics – gears & switches
• Appliance – pumps & spigots
PRODUCT BULLETIN
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https://www.avient.com/sites/default/files/2021-10/gls-tpes-with-antimicrobial-technologies-product-bulletin.pdf
PRODUCT BULLETIN
VERSAFLEX™ GP
2810-40N AM
VERSAFLEX™ CE
3120-65* AM
ONFLEX™ LO
7120-45 AM
Applications Personal care grips
Consumer packaging
Consumer electronics
Charging stations
HVAC seals
Cup holder mats
Color Natural Natural Natural
Durometer, Shore A 45 66 45
Specific Gravity
(kg/m3) 0.87 1.14 1.13
Tensile Strength
(PSI) 650 1200 585
Elongation % 700 600 685
Modulus @ 300%
|(PSI) 260 585 300
Injection Moldable Yes Yes Yes
OM Substrate PP PC, ABS, PC/ABS, COPE PP
TECHNICAL PROPERTIES
*UL listing does not apply; testing can be completed if required by the customer
Copyright © 2021, Avient Corporation.
https://www.avient.com/sites/default/files/2020-08/colormatrix-select-product-bulletin-1.pdf
Typically used
within extrusion, injection molding and blow molding
processes with specific benefits for:
• Manufacturers – Take control of your color supply
• Brand Owners – Efficient online color management
• Designers – Rapid visualization of your color
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https://www.avient.com/sites/default/files/2022-12/Cesa Fiber Additives Chain Extenders for Recycled PET Fibers Product Bulletin.pdf
KEY BENEFITS
• High-temperature stability and very good
processability
• Excellent compatibility with the application
resin
• Increase of intrinsic viscosity/molecular weight
• Suitable for standard machinery used by
customers
• Good cost-performance ratio
• Can be combined with color into a single
combination concentrate for convenience
• Product guidance and technical assistance from
our experts
PRODUCT BULLETIN
Sustainability Spotlight
Recycle
Solutions
Copyright © 2022, Avient Corporation.
https://www.avient.com/sites/default/files/2023-03/Mevopur Healthcare Functional Additives Antistatic Application Bulletin_0.pdf
APPLICATIONS
• Medical devices
• Drug delivery devices
• Labware
KEY CHARACTERISTICS
• Manufactured at four ISO 13485 certified sites,
providing global consistency and increased
security of supply
• Documented change control beyond CAS
number level, reducing risk of change
REGULATORY SUPPORT
• Raw materials tested to:
- ISO 10993-1 and USP
biological evaluation
- European Pharmacopeia 3.1.3/3.1.5
(polyolefin)
- USP (polyethylene)
- ICH Q3D elemental impurities
• Registered Drug Master File (Type III) and/or
Device Master File
• Food contact established with FDA/EU*
* FDA/EU compliance information available upon request
Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2020-08/color-fabric-fx-product-bulletin-8.5x11.pdf
Applications include:
• Automotive pillars, headliners, and other visible
interior trim parts
• Home appliances
• Consumer products
• Personal electronics devices
• Medical devices
• Sporting goods & toys
• Outdoor furniture
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https://www.avient.com/sites/default/files/2023-10/2023 Hammerhead Application _ Install Guide.pdf
FASTENER SELECTION
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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
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 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
Sink Marks Part geometry too thick
Melt temperature too hot
Insufficient material volume
• Reduce wall thickness
• Reduce rib thickness
• Decrease nozzle and barrel temperatures
• Increase shot size
• Increase injection rate
• Increase packing pressure
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
• 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
• Increase pack and hold pressure
• Increase melt temperature
• Increase vent width and locations
• Increase injection speed
• 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
• Increase cooling time
• Increase melt temperature
• Decrease injection pressure and injection speed
• Increase number of gates
Sticking in Mold Cavities are overpacked
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
TROUBLESHOOTING RECOMMENDATIONS
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Maintain a minimum draft angle of 1° per side.
4 Therma-Tech
Incomplete Fill
Melt and/or mold
too cold
• Increase nozzle and barrel temperatures
• Increase pack and hold pressure
• Increase nozzle tip diameter
• Check thermocouples and heater bands
Mold design
• 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
Shot size
• Increase cushion
• Decrease transfer position
Brittleness
Low melt
temperature
• Measure melt temperature with pyrometer
Degraded/
overheated
material
• Decrease melt temperature
• Decrease back pressure
• Use smaller barrel/excessive residence time
• Decrease screw rpm
Gate location
and/or size
• Relocate gate to nonstress area
• Increase gate size to allow higher flow rate and lower
molded in stress
Fibers on Surface
(Splay)
Melt temperature
too low
• Increase injection speed
• Increase screw rpm
Insufficient packing
• Increase pack and hold pressure, and time
Processing Guide 5
Sink Marks
Part geometry
too thick
• Reduce wall thickness
• Reduce rib thickness
• Maintain nominal wall thickness
Melt too hot • Decrease nozzle and barrel temperatures
Insufficient
material volume
• Increase pack pressure/time
Flash
Injection pressure
too high
• Decrease injection pressure
• Increase clamp pressure
• Increase transfer position
Excess
material volume
• Decrease pack pressure
• Decrease shot size
Melt and/or mold
too hot
• Decrease screw speed
Excessive Shrink Too much
orientation
• Increase packing time and pressure
• Increase hold pressure
• Decrease melt temperature
• Decrease injection speed
• Decrease screw rpm
• Increase venting
Not Enough Shrink Too little
orientation
• Decrease packing pressure and time
• Decrease hold pressure
• Increase injection speed
• Increase screw rpm
• Decrease cooling time
6 Therma-Tech
Burning
Melt and/or mold
too cold
Mold design • Clean, widen and increase number of vents
• Increase gate size or number of gates
Moisture • 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
are too low
• Increase pack and hold pressure
• Increase vent width and locations
Mold design
• 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
• Decrease injection pressure and injection rate
Mold design • Increase number of gates
Sticking in Mold
Cavities are
overpacked
• Decrease injection rate and pressure
• Decrease pack and hold pressure
Mold design • Increase draft angle
Part is too hot
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