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Crystallization and aging behavior of polyetheretherketone PEEK within rapid tooling and rubber molding

  • In times of short product life cycles, additive manufacturing and rapid tooling are important methods to make tool development and manufacturing more efficient. High-performance polymers are the key to mold production for prototypes and small series. However, the high temperatures during vulcanization injection molding cause thermal aging and can impair service life. The extent to which the thermal stress over the entire process chain stresses the material and whether it leads to irreversible material aging is evaluated. To this end, a mold made of PEEK is fabricated using fused filament fabrication and examined for its potential application. The mold is heated to 200 ◦C, filled with rubber, and cured. A differential scanning calorimetry analysis of each process step illustrates the crystallization behavior and first indicates the material resistance. It shows distinct cold crystallization regions at a build chamber temperature of 90 ◦C. At an ambient temperature above Tg, crystallization of 30% is achieved, and cold crystallization no longer occurs. Additional tensile tests show a decrease in tensile strength after ten days of thermal aging. The steady decrease in recrystallization temperature indicates degradation of the additives. However, the tensile tests reveal steady embrittlement of the material due to increasing crosslinking.

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Metadaten
Author:Karim Abbas, Nicolae Balc, Sebastian Bremen, Marco SkupinORCiD
DOI:https://doi.org/10.3390/jmmp6050093
ISSN:2504-4494
Parent Title (English):Journal of Manufacturing and Materials Processing
Publisher:MDPI
Place of publication:Basel
Document Type:Article
Language:English
Year of Completion:2022
Date of the Publication (Server):2023/11/27
Tag:additive manufacturing; crystallization; fused filament fabrication; polyetheretherketone; rapid tooling
Volume:6
Issue:5
First Page:1
Last Page:12
Note:
The article belongs to the Special Issue Advances in Injection Molding: Process, Materials and Applications
Link:https://doi.org/10.3390/jmmp6050093
Zugriffsart:weltweit
Institutes:FH Aachen / Fachbereich Maschinenbau und Mechatronik
collections:Verlag / MDPI
Open Access / Gold
Licence (German):License LogoCreative Commons - Namensnennung