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首页> 外文期刊>Journal of Materials Research >The mechanical properties of a surface-modified layer on polydimethylsiloxane
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The mechanical properties of a surface-modified layer on polydimethylsiloxane

机译:聚二甲基硅氧烷上的表面改性层的机械性能

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Surface modification of the elastomer polydimethylsiloxane (PDMS) by exposure to oxygen plasma for four minutes creates a thin, stiff film. In this study, the thickness and mechanical properties of this surface-modified layer were determined. Using the phase image capabilities of a tapping-mode atomic force microscope (AFM), the surface-modified region was distinguished from the bulk PDMS; specifically, it suggested a graded surface layer to a depth of about 200 nm. Load-displacement data for elastic indentation using a compliant AFM cantilever was analyzed as a plate bending on an elastic foundation to determine the elastic modulus of the surface (37 MPa). An applied uniaxial strain generated a series of parallel nanocracks with spacing on the order of a few microns. Numerical analyses of this cracking phenomenon showed that the depth of these cracks was in the range of 300-600 nm and that the surface layer was extremely brittle, with toughness in the range of 0.1-0.3 J/m~2.
机译:通过将弹性体聚二甲基硅氧烷(PDMS)暴露在氧气等离子体中四分钟进行表面改性,可以形成薄而坚硬的​​薄膜。在这项研究中,确定了该表面改性层的厚度和机械性能。使用拍击式原子力显微镜(AFM)的相位成像功能,可以将表面改性区域与整体PDMS区别开来。具体来说,它建议渐变表面层的深度约为200 nm。使用顺应性AFM悬臂对弹性压痕的载荷-位移数据进行了分析,作为板在弹性基础上的弯曲,以确定表面的弹性模量(37 MPa)。施加的单轴应变会产生一系列平行的纳米裂纹,间距约为几微米。对该裂纹现象的数值分析表明,这些裂纹的深度在300-600 nm范围内,表面层极脆,韧性在0.1-0.3 J / m〜2范围内。

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