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Towards the use of mushroom-capped dry adhesives in outer space: Effects of low pressure and temperature on adhesion strength

机译:努力在室外使用蘑菇型干式粘合剂:低压和温度对粘合强度的影响

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摘要

Instrumented indentation apparatus and techniques were applied to the testing of synthetic gecko adhesives in an attempt to characterise their ability to function in a space environment. The indentation apparatus was capable of operating at reduced pressures, allowing a higher vacuum level (1 × 10~(-5) mbar) than dry adhesives have previously been tested under. Using a 1.5 mm spherical quartz indenter on polydimethylsiloxane (PDMS), mushroom-capped, structured dry adhesives, the effective Young's Modulus of the material was found to change negligibly as a result of pressure, while no changes in adhesion were observed. The effect of time spent in vacuum was also examined. Significant changes in effective Young's Modulus were observed, but no changes were noted in adhesion. Tests also showed that no significant changes to adhesion could be detected from —50 to 75 ℃. These results are important for space applications because it shows that the adhesion of a mushroom-capped, synthetic, PDMS, dry adhesive is constant in various thermal and pressure environments.
机译:仪器压痕设备和技术被应用于合成壁虎粘合剂的测试,以试图表征它们在空间环境中的功能。压痕设备能够在减压下运行,与以前测试过的干胶相比,真空度更高(1×10〜(-5)mbar)。使用在聚二甲基硅氧烷(PDMS)上的1.5 mm球形石英压头,蘑菇封顶的结构化干式粘合剂,发现该材料的有效杨氏模量由于压力而变化可忽略不计,而未观察到粘合力变化。还检查了抽真空时间的影响。观察到有效的杨氏模量有显着变化,但在粘着力方面没有发现变化。测试还表明,在—50至75℃范围内未检测到粘附力的显着变化。这些结果对于空间应用很重要,因为它表明蘑菇状,合成,PDMS,干式粘合剂在各种热和压力环境下的粘合力是恒定的。

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