![]() ![]() Third, the typical applications of the TBN method and the nanostructures achieved by it are summarized in detail. In particular, a useful approach called the ultrasonic vibration-assisted method introduced to integrate with TBN method to reduce the wear of the tip is also reviewed, respectively. Second, advances of nanostructures achieved by this method are given, including nanodots/nanodot arrays, a nanogroove/channel, 2D/3D nanostructures and bundles. First, the theoretical models of machining on polymer materials with a given tip using the TBN method are presented. The TBN method is widely used due to its high precision, ease of use and low environmental requirements. As a brand new nanomachining method, the tip-based nanomachining/nanoscratching (TBN) method has exhibited a powerful ability at machining on polymer materials and various structures have been achieved using this approach, ranging from the nanodot, nanogroove/channel, bundle to 2D/3D (three-dimensional) nanostructures.
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