2002
DOI: 10.1002/polb.10107
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Effects of humidity on Young's modulus in poly(methyl methacrylate)

Abstract: Tensile tests on poly (methyl methacrylate) (PMMA) were conducted to clarify the effects of humidity and strain rate on tensile properties, particularly Young's modulus. Prior to the tensile tests, specimens were kept under various humidity conditions at 293 K, which were the same as the test conditions, for a few months to adjust the sorbed water content in the specimens. The tensile tests were performed under each humidity condition at three different strain rates (approximately 1.4 × 10−3, 1.4 × 10−4, and 1… Show more

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Cited by 127 publications
(96 citation statements)
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“…The measured birefringence in this case is Ͻ 0.002 and in this regime the isotropic assumption for mode equations remains as a reasonable approximation. [31][32][33] The variation of birefringence under stress, on the other hand (i.e., stress induced birefringence), is governed by Neumann-Maxwell stress equations. Therefore, in our case, we assume that the polymer films are isotropic in the in-plane direction and with the described coordinate system convention the following stress equations can be written as 27,28 …”
Section: Resultsmentioning
confidence: 99%
“…The measured birefringence in this case is Ͻ 0.002 and in this regime the isotropic assumption for mode equations remains as a reasonable approximation. [31][32][33] The variation of birefringence under stress, on the other hand (i.e., stress induced birefringence), is governed by Neumann-Maxwell stress equations. Therefore, in our case, we assume that the polymer films are isotropic in the in-plane direction and with the described coordinate system convention the following stress equations can be written as 27,28 …”
Section: Resultsmentioning
confidence: 99%
“…It is well known that PMMA suffers considerable water absorption, leading to swelling ͑volume change͒ of the polymer 29,30 and to changes in other properties such as refractive index, Young's modulus, and glass transition temperature. [31][32][33] In the data presented here we use the vacuum conductivity.…”
Section: Resultsmentioning
confidence: 99%
“…The surface energy c s of PMMA is 43 mJ/m 2 (Chibowski et al 2002). The elastic modulus E of PMMA is 3.3 GPa (Ishiyama and Higo 2002), which is much lower than the value for nickel. Again two elastocapillary number curves are shown, corresponding to contact angles of 62° (Chibowski et al 2002) and 0°.…”
Section: Critical Dimension Examplesmentioning
confidence: 97%