Synthesis and Characterization of Novel High Temperature Structural Adhesives Based on Nadic End Capped Mda-Btda Copolyimide
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Date
2018
Authors
Journal Title
Journal ISSN
Volume Title
Publisher
IOP Publishing Ltd.
Open Access Color
GOLD
Green Open Access
Yes
OpenAIRE Downloads
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Publicly Funded
No
Abstract
A series of novel copolyimide structural adhesives were synthesized using 4,4′-diaminodiphenylmethane (MDA), 3,4′-oxydianiline (ODA) and 3,3′,4,4′-benzophenonetetracarboxylic acid dianhydride (BTDA) as co-monomers, and nadic anhydride as an end cap reagent. The adhesives with different MDA and ODA contents were examined in terms of their structure, thermal stability, mechanical properties, and adhesive performance. They have glass transition temperatures (T g) about 400 °C, with thermal stability up to 500 °C. The effect of diamine monomer compositions on adhesion performance and processability of the copolyimides were studied. The copolyimides exhibited adhesion strength up to 16.3 MPa at room temperature. Nadic end capped MDA-BTDA-ODA copolyimide resins gained adjustable and controllable processability with the addition of ether bridged aromatic segments. The copolyimide adhesive with equimolar composition of MDA:ODA is distinguished form the both commercial PMR-15 and LARC RP-46 polyimides in terms of its better processability and mechanical performance.
Description
Keywords
Adhesives, High temperature, Mechanical properties, Polyimides, Thermodynamic stability, high temperature, adhesive, thermoset, Adhesives, Polyimides, Mechanical properties, mechanical properties, High temperature, Thermodynamic stability, polyimide, 620
Fields of Science
02 engineering and technology, 0210 nano-technology
Citation
Acar, O., Varış, S., Işık, T., Tirkeş, S., and Demir, M. M. (2018). Synthesis and characterization of novel high temperature structural adhesives based on nadic end capped MDA-BTDA-ODA copolyimide. Materials Research Express, 5(10). doi:10.1088/2053-1591/aadb2e
WoS Q
Q3
Scopus Q
Q3

OpenCitations Citation Count
7
Source
Materials Research Express
Volume
5
Issue
10
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End Page
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CrossRef : 1
Scopus : 9
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Mendeley Readers : 10
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9
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9
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927
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539
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