Analytical Science Division, National Physical Laboratory, Hampton Road, Teddington, Middlesex TW11 0LW, UK.
Ultramicroscopy. 2012 Mar;114:38-45. doi: 10.1016/j.ultramic.2012.01.006. Epub 2012 Jan 24.
The characterisation of nanoscale surface properties of textile and hair fibres is key to developing new effective laundry and hair care products. Here, we develop nanomechanical methods to characterise fibres using an atomic force microscope (AFM) to give their nanoscale modulus. Good mounting methods for the fibre that are chemically inert, clean and give strong mechanical coupling to a substrate are important and here we detail two methods to do this. We show, for elastic nanoindentation measurements, the situation when the tip radius significantly affects the result via a function of the ratio of the radii of the tip and fibre and indicate the importance of using an AFM for such work. A valid method to measure the nanoscale modulus of fibres using AFM is thus detailed and exampled on hair to show that bleaching changes the nanoscale reduced modulus at the outer surface.
对纺织纤维和毛发纤维的纳米级表面特性进行描述是开发新型有效洗涤和护发产品的关键。在这里,我们使用原子力显微镜(AFM)开发了纳米力学方法来对纤维进行特性描述,从而获得其纳米级模量。对于纤维而言,良好的安装方法是至关重要的,这些方法需要具备化学惰性、清洁且与基底具有较强机械耦合的特点,这里我们详细介绍了两种这样的方法。我们展示了弹性纳米压痕测量的情况,其中针尖半径通过针尖和纤维半径之比的函数显著影响结果,并指出在这种工作中使用 AFM 的重要性。因此,详细描述了一种使用 AFM 测量纤维纳米级模量的有效方法,并在头发上进行了示例,表明漂白会改变外表面的纳米级减小模量。