https://www.avient.com/sites/default/files/2021-03/avient-antitrust-2021-update-vi-a4.pdf
Ví dụ về các hành vi bị nghiêm cấm bao gồm:
• Các thỏa thuận để cố định giá cho các sản phẩm
được sản xuất hoặc bán;
• Thỏa thuận để đấu thầu gian lận trong các dự án;
• Thỏa thuận để phân chia các khu vực địa lý;
• Thỏa thuận để phân bổ khách hàng;
• Các hành vi độc quyền như định giá để bán phá giá,
cắt giảm giá hoặc từ chối giao dịch tại thị trường
Hoa Kỳ.
Bạn cũng
nên tham khảo danh mục kiểm tra đính kèm để được
hướng dẫn thêm.
✓ Dừng ngay tất cả các cuộc nói chuyện mà đối thủ cạnh tranh đưa ra các vấn đề về giá hoặc các chủ đề bị cấm khác
và báo cáo sự việc bằng văn bản cho Phòng Pháp chế Avient
https://www.avient.com/products/engineered-polymer-formulations/general-engineered-formulations/lubrione-internally-lubricated-formulations
Excellent wear resistance
Delivered excellent wear resistance performance and provided dimensional stability
LubriOne™ provides excellent wear resistance and improved durability in vacuum cleaner gear
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components?rtype[]=1164
If heat dissipation is the primary driver, thermally conductive polymers could be an excellent alternative.
Specifically, LFTs demonstrate excellent impact performance even at high levels of stiffness, and these materials exhibit low creep compared to their short-fiber counterparts.
As a result, thermally conductive plastics offer superior performance-to-weight ratios, making them an excellent choice for applications like automotive lighting and electronic systems.
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components?sust[]=1165
If heat dissipation is the primary driver, thermally conductive polymers could be an excellent alternative.
Specifically, LFTs demonstrate excellent impact performance even at high levels of stiffness, and these materials exhibit low creep compared to their short-fiber counterparts.
As a result, thermally conductive plastics offer superior performance-to-weight ratios, making them an excellent choice for applications like automotive lighting and electronic systems.
https://www.avient.com/knowledge-base/article/how-lightweight-automotive-components
If heat dissipation is the primary driver, thermally conductive polymers could be an excellent alternative.
Specifically, LFTs demonstrate excellent impact performance even at high levels of stiffness, and these materials exhibit low creep compared to their short-fiber counterparts.
As a result, thermally conductive plastics offer superior performance-to-weight ratios, making them an excellent choice for applications like automotive lighting and electronic systems.
https://www.avient.com/sites/default/files/2025-01/ISO 16949 Tossiat%2C France.pdf
Date Of Certification: 11 December 2024
Date Of Expiration: 10 December 2027
IATF Certificate N°: 0558656
Bureau Veritas Certification Certificate No: FR094003 - IATF Revision: 1
For Bureau Veritas Certification Holding, Tour ALTO, 4 place des saisons, 92400 COURBEVOIE – France
(The official document is in English.
Any translations of this document shall be used for reference only.)
1/2
Certificate of Approval
AWARDED TO
PolyOne France Tossiat
Route de la vavrette, 01250, Tossiat - France
IATF USI: LWZS4P
Bureau Veritas Certification certify that the Quality Management System of the above
organisation has been audited and found to be in accordance with the requirements of
IATF 16949 - FIRST EDITION
and the applicable customer specific requirements
SCOPE
Design and manufacturing
PERMITTED EXCLUSION(S)
None
PRODUCT(S) DELIVERED
colour with additive concentrates for thermoplastic resins and speciality compounds
obtained by mixing and extrusion
https://e-cer.bureauveritas.com/68LJQE0ZV0CO6I7YW0YSXOUMV9WWROQPHPI2AOHRRLFFVRAVTFVZGXKWIE3TOWLTTKEWCPQB9UNAPXHH6T0HXOMUEDVYPRPJLEXBBTKQYPBRICYOKY143TECQ5UMHGA3JX
Date Of Certification: 11 December 2024
Date Of Expiration: 10 December 2027
IATF Certificate N°: 0558656
Bureau Veritas Certification Certificate No: FR094003 - IATF Revision: 1
For Bureau Veritas Certification Holding, Tour ALTO, 4 place des saisons, 92400 COURBEVOIE – France
(The official document is in English.
Any translations of this document shall be used for reference only.)
2/2
Appendix to the Certificate of Approval
AWARDED TO
PolyOne France Tossiat
Route de la vavrette, 01250, Tossiat - France
IATF USI: LWZS4P
REMOTE SUPPORT FUNCTION(S)
NAME ADDRESS SCOPE
AVIENT LUXEMBOURG
19, Route de bastogne,
9638, Pommerloch -
Luxembourg
IATF USI: GAZS9A
Purchasing, Logistics, Supplier
Management
PolyOne Europe Logistics
7 Rue bleriot, 4460,
Grace-Hollogne - Belgium
IATF USI: P4WA4Y
Warehousing
Polyone Poland
Ul. wschdnia 6, 99-300,
Kutno - Poland
IATF USI: C4W5ZL
Logistics
https://e-cer.bureauveritas.com/68LJQE0ZV0CO6I7YW0YSXOUMV9WWROQPHPI2AOHRRLFFVRAVTFVZGXKWIE3TOWLTTKEWCPQB9UNAPXHH6T0HXOMUEDVYPRPJLEXBBTKQYPBRICYOKY143TECQ5UMHGA3JX
2024-12-13T10:07:11+0100
Authenticity and Integrity
https://www.avient.com/sites/default/files/2020-09/lubrione-processing-guide.pdf
BASE
RESIN PPA PC PSU PES PPS
CO-
POLYMER
ACETAL
PEEK PA
Barrel Temperatures* °F (°C)
Rear Zone 550–580
(288–305)
520–560
(271–293)
600–640
(316–338)
630–660
(332–338)
550–580
(288–304)
350–370
(177–188)
660–700
(349–371)
440–490
(227–254)
Center Zone 560–600
(293–316)
530–570
(277–299)
620–670
(327–354)
650–680
(343–360)
560–615
(293–324)
380–390
(193–200)
700–730
(371–388)
470–510
(243–266)
Front Zone 580–620
(304–327)
550–580
(288–305)
630–680
(332–360)
670–730
(354–388)
590–630
(310–332)
390–430
(200–221)
720–750
(382–400)
490–540
(254–282)
Nozzle 575–615
(302–324)
550–600
(288–316)
630–680
(332–360)
680–700
(360–371)
600–625
(316–330)
380–415
(193–213)
720–750
(382–400)
520–570
(271–300)
Melt
Temperature
575–615
(302–324)
560–600
(293–316)
625–675
(330–358)
650–710
(343–377)
600–625
(316–330)
370–410
(188–210)
670–740
(354–393)
520–570
(271–300)
Mold
Temperature
250–300
(121–150)
175–240
(80–116)
190–300
(88–150)
225–325
(107–164)
250–325
(121–164)
150–225
(66–107)
290–375
(143–190)
150–200
(66–93)
Pack & Hold
Pressure
50%–75%
of Injection Pressure
Injection
Velocity
in/s
1.0–3.0
Back Pressure
psi 50
Screw Speed
rpm 50–90
Drying
Parameters
°F (°C)
6 hrs @ 175
(80)
4 hrs @ 250
(121)
4 hrs @ 275
(135)
4 hrs @ 300
(150)
4 hrs @ 250
(121)
2 hrs @ 200
(93)
3 hrs @ 300
(150)
4 hrs @ 180
(82)
Allowable
Moisture
%
< 0.05 < 0.02 < 0.02 < 0.04 < 0.02 0.15–0.20 < 0.02 0.10–0.20
Cushion
in 0.125–0.250
Screw
Compression
Ratio
2.5:1–3.5:1 2.0:1–2.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1
Nozzle
Type
General
General
General
General
General
General
General
Reverse
Taper
Clamp
Pressure 5–6 Tons/in2 of projected area of cavities and runner system
* Barrel temperatures should be elevated for compounds designed for electrical insulative properties.
Cut vent depths to:
- PPA Compounds: 0.0015"–0.0025" depth and 0.250" width
- PC Compounds: 0.002"–0.004" depth and 0.250" width
- PSU Compounds: 0.003"–0.004" depth and 0.250" width
- PES Compounds: 0.003"–0.004" depth and 0.250" width
- PPS Compounds: 0.002"–0.003" depth and 0.250" width
- Acetal Compounds: 0.0015" minimum depth and 0.250" width
- PEEK Compounds: 0.002"–0.004" depth and 0.250" width
- Nylon Compounds: 0.002" minimum depth and 0.250" width
• Increase vent depth to 0.060" (1.5mm) at 0.250" (4.0mm) away from the cavity
and vent to atmosphere.
https://www.avient.com/sites/default/files/2020-09/edgetek-processing-guide.pdf
Base Resin PPA PC PSU PES PPS
Co-
polymer
Acetal
PEEK PA
Barrel Temperatures* °F (°C)
Rear Zone 550–580
(288–305)
550–590
(288–310)
600–640
(316–338)
630–660
(332–338)
550–580
(288–304)
350–370
(177–188)
660–700
(349–371)
440–490
(227–254)
Center Zone 560–600
(293–316)
570–600
(300–316)
620–670
(327–354)
650–680
(343–360)
560–615
(293–324)
380–390
(193–200)
700–730
(371–388)
470–510
(243–266)
Front Zone 580–620
(304–327)
580–630
(304–322)
630–680
(332–360)
670–730
(354–388)
590–630
(310–332)
390–430
(200–221)
720–750
(382–400)
490–540
(254–282)
Nozzle 575–615
(302–324)
580–630
(304–322)
630–680
(332–360)
680–700
(360–371)
600–625
(316–330)
380–415
(193–213)
720–750
(382–400)
520–570
(271–300)
Melt
Temperature
575–615
(302–324)
580–625
(304–330)
625–675
(330–358)
650–710
(343–377)
600–625
(316–330)
370–410
(188–210)
670–740
(354–393)
520–570
(271–300)
Mold
Temperature
250–300
(121–150)
175–240
(80–116)
190–300
(88–150)
225–325
(107–164)
250–325
(121–164)
190–250
(88–121)
290–375
(143–190)
150–200
(66–93)
Pack & Hold
Pressure
50%–75%
of Injection Pressure
Injection
Velocity
in/s
1.0–3.0
Back Pressure
psi 50
Screw Speed
rpm 50–90
Drying
Parameters
°F (°C)
6 hrs @ 175
(80)
4 hrs @ 250
(121)
4 hrs @ 275
(135)
4 hrs @ 250
(121)
3 hrs @ 300
(150)
2 hrs @ 200
(93)
3 hrs @ 275
(135)
4 hrs @ 180
(82)
Cushion
in 0.125–0.250
Screw
Compression
Ratio
2.5:1–3.5:1 2.0:1–2.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1 2.5:1–3.5:1
Nozzle
Type
General
General
General
General
General
General
General
Reverse
Taper
Clamp
Pressure 5–6 Tons/in2 of projected area of cavities and runner system
* Barrel temperatures should be elevated for compounds designed for electrical insulative properties.
Cut vent depths to:
- PPA Compounds: 0.0015"–0.0025" depth and 0.250" width
- PC Compounds: 0.002"–0.004" depth and 0.250" width
- PSU Compounds: 0.003"–0.004" depth and 0.250" width
- PES Compounds: 0.003"–0.004" depth and 0.250" width
- PPS Compounds: 0.002"–0.003" depth and 0.250" width
- Acetal Compounds: 0.0015" minimum depth and 0.250" width
- PEEK Compounds: 0.002"–0.004" depth and 0.250" width
- Nylon Compounds: 0.002" minimum depth and 0.250" width
• Increase vent depth to 0.060" (1.5mm) at 0.250" (4.0mm) away from the cavity
and vent to atmosphere.
https://www.avient.com/knowledge-base/article/can-polyketone-pk-materials-provide-alternative-polyoxymethylene-pom?rtype[]=1164
Polyoxymethylene (POM) is often the preferred solution for precision parts that demand high strength and stiffness, a low coefficient of friction (COF), and excellent dimensional stability.
https://www.avient.com/knowledge-base/article/can-polyketone-pk-materials-provide-alternative-polyoxymethylene-pom?ind[]=21506
Polyoxymethylene (POM) is often the preferred solution for precision parts that demand high strength and stiffness, a low coefficient of friction (COF), and excellent dimensional stability.