https://www.avient.com/resources/safety-data-sheets?page=5909
PG XXXXXX.00 METAL SI PP AS
PP FR 8-6 LMS-1000
https://www.avient.com/resources/safety-data-sheets?page=453
10212SPC CLEAR/00
PP FR 8-6 LMS-1000
https://www.avient.com/resources/safety-data-sheets?page=5670
MC-53402PE MTLC COPPER 90-9426-00-5567
PP FR 8-6 LMS-1000
https://www.avient.com/resources/safety-data-sheets?page=1624
65788-60017-00 VIOLET INNER
PP FR 8-6 LMS-1000
https://www.avient.com/sites/default/files/AVNT Q1 2023 Earnings Press Release.pdf
Avient will share further information during its previously scheduled webcast scheduled for 8:00
a.m.
Eastern Time on May 3, 2023.
3
Webcast Details
Avient will host a webcast on Wednesday, May 3, 2023 at 8:00 a.m.
https://www.avient.com/sites/default/files/resources/China_Suzhou_OHSAS18001_2019Exp.PDF
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https://www.avient.com/sites/default/files/2020-10/avient-design-impact-protection-project.pdf
Avient Corporation 3
Simplified Drop Test
• 65g steel ball
• Dropped from 305mm
• Onto 3.175mm thickness flat
samples
Materials Tested
• Standard TPE 30 Shore A
• TPU alloy 60 Shore A
• Damping TPE 32 Shore A
VDT reduces
bounce
Avient Corporation 4
SIMULATION & CALIBRATION
E N 1 6 2 1 - 1 L E V E L 2
Image courtesy of Airobag TV
https://www.youtube.com/c/AirobagTV/videos
Simulation of Impact
A weight dropped onto protective element in
contact with rigid substrate
https://www.youtube.com/c/AirobagTV/videos
Avient Corporation 5
SIMULATION & CALIBRATION
E N 1 6 2 1 - 1 L E V E L 2
REFINING THE DESIGN
D E S I G N A N D M A T E R I A L C O M B I N A T I O N
Avient Corporation 6
• A number of different shapes and
designs are created and simulated to
determine which one works best
• Refining to meet EN standard
• VDT TPEs can help reach compliance
with EN1621-1 level 2 and EN1621-2
level 1
• Optimum protection can be achieved
by combining industrial design and
engineering
Avient Corporation 7
VALIDATION
P R O T O T Y P I N G W I T H 3 D P R I N T I N G
3D Printing Validation
-15% -10% -5% 0% 5% 10%
Density
Tensile Strength //
Tear resistance //
Rebound resilience 2mm
3D Printed VDT vs Injection Molded
VDT can be 3D printed for concept evaluation early in the design process
SUMMARY
Avient Corporation 8
• Enabled a new, compact design with a
customized VDT TPE formulation
• Improved user comfort and functionality
• Fulfilled EN standards
• Reduced number of prototyping tools
required
• Reduced time spent in product development
by 40 percent, enabling faster
commercialization of product
https://www.avient.com/resources/safety-data-sheets?page=5764
LIGHT BLACK 3C TPE
DARK BLACK 3C TPE
PP FR 8-6 LMS-1000
https://www.avient.com/sites/default/files/2023-08/Maxxam BIO Bio-Based Polyolefin Formulations Product Bulletin.pdf
KEY CHARACTERISTICS
Formulated with bio-based resin and/or
10–50% filler from renewable plant sources,
Maxxam BIO formulations:
• Reduce product carbon footprint
• Achieve equivalent performance to standard
polyolefin formulations
• Provide good stiffness, durability, impact
resistance and UV stability
• Deliver good surface finish and are easy to color
• Enable customized performance characteristics
depending on application need
• Offer food contact compliance
MARKETS AND APPLICATIONS
Maxxam BIO formulations are suitable for use across
many industries and applications where traditional
polyolefin materials are used, including:
• Transportation Interior Applications -
Decorative profiles, trunk side liners, pillars,
T-cup
• Industrial - Structural parts, furniture
• Consumer - Household goods, personal care
items, packaging, office supplies, food contact
applications
• Electrical and Electronic – Housings, buttons,
junction boxes
SUSTAINABILITY BENEFITS
• Formulated with bio-based resin and/or
10–50% natural filler
• Utilize natural filler from renewable plant
sources including olive seed based powder
and cellulose fiber
• Offer a lower product carbon footprint
compared to traditional petroleum-based
feedstock
• Can be recycled at end of life
PRODUCT BULLETIN
CHARACTERISTICS UNITS
Maxxam BIO
MX5200-5036
Natural FD
Maxxam BIO
MX5200-5030
Natural FD
Maxxam BIO
MX5200-5030
Natural FD X1
Maxxam BIO
MX5200-5001
Maxxam BIO
MX5200-5033
Maxxam BIO
MX5200-5034
Maxxam BIO
MX5200-5035
Filler/Reinforcement Unfilled Unfilled Unfilled 30%
Glass Fiber
10%
20%
30%
Density
(ISO 1183) g/cm 0.90 0.90 0.90 1.12 0.96 1.03 1.12
Tensile Modulus
(ISO 527-1) @ 23°C MPa 1500 1000 1000 6400 1350 1650 2100
Tensile Stress
(ISO 527-2) @ 23°C MPa 27.0 20.0 20.0 75.0 13.0 14.0 15.0
Tensile Strain
at Break
% 5 50 50 3.0 50 37 18
Charpy Notched
(ISO 179) kJ/m 5 20 25 10 12 10 10
CHARACTERISTICS UNITS
Maxxam BIO
MX5200-5023
RS HS HI
Natural 70
Maxxam BIO
MX5200-5025
RS HS
Natural 70
Maxxam BIO
MX5200-5004
RS HS
Maxxam BIO
MX5200-5003
RS
Maxxam BIO
MX5200-5009
RS HS Natural
70
Maxxam BIO
MX5200-5024
RS HS
Maxxam BIO
MX5200-5022
RS HS
Filler/Reinforcement
15%
Olive Seed
Based
25%
Olive Seed
Based
30%
Olive Seed
10%
35%
Olive Seed
5%
15%
Olive Seed
17%
Glass Fiber/
20%
Olive Seed
20% Glass/
10%
Olive Seed
20%
Density
(ISO 1183) g/ccm 1.00 1.15 1.10 1.07 1.09 1.25 1.10
Tensile Modulus
(ISO 527-1) @ 23°C MPa 1750 2000 2700 2500 3800 3500 4100
Tensile Stress
at Break
MPa 21.0 20.0 30.0 20.0 40.0 35.0 42.0
Tensile Strain
at Break
% 24 5 3 5 3 4 2
Notched Izod
(ISO 180) kJ/m 15 7 3 2 5 15 7
MAXXAM BIO POLYOLEFINS – BIO-BASED RESIN – TECHNICAL PERFORMANCE
MAXXAM BIO POLYOLEFINS – OLIVE SEED BASED FILLER – TECHNICAL PERFORMANCE
CHARACTERISTICS UNITS
Maxxam BIO
MX5200-5029 NF HI
UV Black X1
Maxxam BIO
MX5200-5032 NFS
UV Natural
Maxxam BIO
MX5200-5020 NF/NFS
UV Natural X1
Maxxam BIO
MX5200-5016 NF
Natural
Filler/Reinforcement 10% Cellulose Fiber 20% Cellulose Fiber 30% Cellulose Fiber 40% Cellulose Fiber
Density
(ISO 1183) g/ccm 0.95 1.00 1.02 1.07
Tensile Modulus
ISO 527-1) @ 23°C MPa 1550 1750 2640 3600
Tensile Stress at Break
(ISO 527-2) @ 23°C MPa 33 30 48 55
Tensile Strain at Break
(ISO 527-2) @ 23°C % 8 12 9 4
Charpy Notched Impact
Strength (ISO 179/1eA) kJ/m2 5 6 5 5
Charpy Unnotched Impact
Strength (ISO 179/1eU) kJ/m2 33 49 38 30
MAXXAM BIO POLYOLEFINS – CELLULOSE FIBER FILLER – TECHNICAL PERFORMANCE
Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2021-09/versaflex-low-adhesion-build-up-solution-product-bulletin-cn.pdf
Versaflex Low Adhesion Build Up Solution Product Bulletin_CN9.22-1
应用于保护膜粘合层的 Versaflex CF 低增粘 TPE
产品公告
™
保护膜可从产品的初始制造、组装、运输到储存
和安装的所有环节为产品表面提供保护。
应用于保护膜的Versaflex™ CF 6668低增粘TPE
可满足这一需求。
主要特性
•
•
•
•
•
•
•
在钢材、PMMA和其他各种基材上提供较高
的初始粘附力
粘附力稳定,不易增长,防止残留
低解卷力,提高贴膜效率
优异的晶点控制
一步共挤成型,提高生产效率
与传统的溶剂型涂层技术相比,VOC释放显
著降低
可回收
应用
Versaflex CF 6668 TPE的低增粘性能使其非常
适合用于如下高端应用的保护膜:
家电
家具
建筑工程
汽车