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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >The adhesion of the barnacle. Balanus improvisus, to poly(dimethylsiloxane)fouling-release coatings and poly(methyl methacrylate) panels: The effect of barnacle size on strength and failure mode
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The adhesion of the barnacle. Balanus improvisus, to poly(dimethylsiloxane)fouling-release coatings and poly(methyl methacrylate) panels: The effect of barnacle size on strength and failure mode

机译:藤壶的附着力。龟头即兴,对聚二甲基硅氧烷防污涂料和聚甲基丙烯酸甲酯面板:藤壶尺寸对强度和破坏模式的影响

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摘要

Measurement s were made of the bond strength of cyprids an barnacles(Balanus improvisus ) attached to poly(dimethylsiloxane)(PDMS)foluling-release coatings and poly(methyl methacrylate)(PMMA)panels as a function of barnacle base plate size(0.05-90 mm~2). The vertical forces necessary to dislodge cyprids and newly metamorphosed barnacles(base plate < 0.5 mm~2) were found to be equal for the two different substrates. This unexpected result was explained by the occurrence of cohesive failure in the cyprid/barnacle part. A significantly higher detachment force was observed for larger barnacles(base plate >0.5 mm~2) when dislodged from the PMMA compared to the PDMS. Analysis of the failure surfaces with light microscopy and scanning electron microscopy (SEM) showed a gradual transition in failure mode from a total cohesive within the barnacle to a mixed failure mode during barnacle growth. This transition, which is a measure of the balance between the cohesive strength of the barnacle base plate and the adhesion bond to the surface, occurs earlier or with smaller barnacles when detached from the PDMS. The quantification of the remaining graduction of the base plate at the polymeric failure surfaces appears to be a function of barnacle bioadhesive and strength and is, therefore, suggested to be used as a new parameter for evaluating the release properties of new coatings formulations
机译:测量附着在聚二甲基硅氧烷(PDMS)防粘涂料和聚(甲基丙烯酸甲酯)(PMMA)面板上的藤壶(Balanus improvisus)的粘合强度与藤壶底板尺寸的关系(0.05- 90毫米〜2)。发现在两种不同的基材上,移出赛普拉斯和新变态的藤壶(基板<0.5 mm〜2)所需的垂直力相等。出乎意料的结果是由于在塞浦路斯/藤壶部分发生了内聚破坏。与PDMS相比,从PMMA移出的较大藤壶(基板> 0.5 mm〜2)观察到明显更高的分离力。用光学显微镜和扫描电子显微镜(SEM)对破坏面进行分析显示,在破坏模式下,藤壶生长过程中,藤壶内的内聚力逐渐转变为混合失效模式。这种过渡是藤壶底板的内聚强度与表面粘附力之间平衡的一种量度,当与PDMS分开时,这种过渡发生得较早或藤壶较小。聚合物破坏表面上基板剩余残留量的量化似乎是藤壶生物粘附力和强度的函数,因此建议将其用作评估新涂料配方释放特性的新参数。

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