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Heating ethanol-response of poly methyl methacrylate (PMMA) with gradient pre-deformation and potential temperature sensor and anti-counterfeit applications
Journal article   Peer reviewed

Heating ethanol-response of poly methyl methacrylate (PMMA) with gradient pre-deformation and potential temperature sensor and anti-counterfeit applications

Haibao Lu, Wei Min Huang, Xue Lian Wu, Yu Chun Ge, Fan Zhang, Yong Zhao and Junfeng Geng
Smart materials and structures, Vol.23(6), pp.1-14
01/06/2014

Abstract

anti-counterfeit heating-responsive PMMA shape memory effect temperature sensor
In this paper, the heating ethanol-response of a commercial poly methyl methacrylate (PMMA) is investigated. All PMMA samples are pre-deformed by means of impression (surface compression with a mold) to introduce a gradient pre-strain stress field. Two types of molds are applied in impression. One is a Singaporean coin and the other is a particularly designed mold with a variable protrusive feature on top. Two potential applications-temperature sensors to monitor overheating temperatures and anti-counterfeit labels with a water-mark that appears only upon heating to a particular temperature-are demonstrated. Since the heating-responsive shape memory effect (SME) is an intrinsic feature of almost all polymers, other conventional polymers may be used in such applications as well.

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