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1)  nanoscratch
纳米划痕
1.
Progress on study of nanoscratch resistance estimated by nanoscratch tests using Nano Indenter systems was introduced,which emphasized fracture mechanism and nanoscratch critical load of thin films.
概述了纳米划痕试验在研究材料纳米刻划性能方面的研究进展,着重介绍了材料刻划破裂机理和刻划临界载荷,以及薄膜材料厚度效应和基底效应对纳米刻划性能的影响等方面的研究状况,讨论了今后尚需进一步研究的问题。
2.
To check the qualities of DLC coating on different steels, nanoindentations and nanoscratches were produced with suitable scratchers and by a broad range of applied load.
为了检测成膜质量,分别使用纳米压痕和纳米划痕技术表征钢基材和DLC/基材的机械性能。
3.
The mechanical and tribological behaviors of the coating were comparatively investigated with that of the steel substrate by means of nanoindentation test and nanoscratch test.
5μm的TiN薄膜,通过显微硬度测试以及纳米压痕和纳米划痕试验,对比考察了9Cr18钢及其表面TiN薄膜的机械和摩擦性能。
2)  nano-scratch
纳米划痕
1.
The nano-scratch behaviors of Ar+ implanted single-crystal silicon were investigated by a nano indenter system, the micro-structure of the implanted layer was analyzed with TEM.
研究结果表明:一定剂量的氩离子注入使单晶硅表面的断裂韧性得到改善, 提高了其在纳米划痕过程中的失效负荷。
2.
Furthermore, the microwear of the tooth enamel was studies on the nano-scratch tester.
此外,还通过纳米划痕仪研究了牙釉质的微摩擦磨损行为,考察了釉柱的排列取向对牙釉质微摩擦磨损的影响。
3)  nano-scratch tester
纳米划痕仪
1.
By using diamond tips of 2μm and 5μm in curvature radii, the tribological properties of GCr15, 304 stainless, superelastic (SE) and shape memory effect (SME) NiTi alloys were investigated with an atomic force microscopy (AFM) and nano-scratch tester (NST), respectively.
本文采用原子力显微镜(AFM)和纳米划痕仪(NST),使用曲率半径分别为2μm和5μm的金刚石针尖实验研究了GCr15、304不锈钢、超弹和形状记忆NiTi合金等材料的划痕摩擦学性能。
2.
By using a diamond tip of 2 μm in curvature radius,the tribological properties of GCr15,304 stainless,superelastic and shape memory effect NiTi alloys were investigated under 5 μN~80 mN with an(atomic) force microscopy and nano-scratch tester,respectively.
采用曲率半径2μm的金刚石针尖,分别在原子力显微镜和纳米划痕仪上研究了GCr15、304不锈钢、超弹和形状记忆NiTi合金等材料在5μN~80 mN载荷的摩擦学性能。
4)  Nanoscratch test
纳米划痕法
5)  nano-indentation/nano-scratch
纳米压痕/划痕
6)  Nano-scratching technology
纳米划痕技术
补充资料:蛋划
1.蛋人用的小船。蛋﹐同"蜑"。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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