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Relationship between subsurface damage and surface roughness of ground optical materials 被引量:4
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作者 李圣怡 王卓 吴宇列 《Journal of Central South University of Technology》 EI 2007年第4期546-551,共6页
A theoretical model of relationship between subsurface damage and surface roughness was established to realize rapid and non-destructive measurement of subsurface damage of ground optical materials.Postulated conditio... A theoretical model of relationship between subsurface damage and surface roughness was established to realize rapid and non-destructive measurement of subsurface damage of ground optical materials.Postulated condition of the model was that subsurface damage depth and peak-to-valley surface roughness are equal to depth of radial and lateral cracks in brittle surface induced by small-radius(radius≤200 μm)spherical indenter,respectively.And contribution of elastic stress field to the radial cracks propagation was also considered in the loading cycle.Subsurface damage depth of ground BK7 glasses was measured by magnetorheological finishing spot technique to validate theoretical ratio of subsurface damage to surface roughness.The results show that the ratio is directly proportional to load of abrasive grains and hardness of optical materials,while inversely proportional to granularity of abrasive grains and fracture toughness of optical materials.Moreover,the influence of the load and fracture toughness on the ratio is more significant than the granularity and hardness,respectively.The measured ratios of 80 grit and 120 grit fixed abrasive grinding of BK7 glasses are 5.8 and 5.4,respectively. 展开更多
关键词 subsurface damage spherical indenter optical materials grinding process magnetorheological finishing
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压头半径对玻璃表面薄有机涂层划痕试验结果的影响
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作者 刘晓芳 高志强 《材料保护》 CAS CSCD 北大核心 2020年第6期35-40,共6页
纳米划痕是一种薄膜力学性能的评价方法,然而,当膜层厚度小于10 nm时,压头大小对划痕的深度、宽度及变形状态影响较大,较难保证试验结果的有效性。为了快速对超薄膜层进行纳米划痕测试,采用不同半径的压头,在施加不同载荷的情况下,研究... 纳米划痕是一种薄膜力学性能的评价方法,然而,当膜层厚度小于10 nm时,压头大小对划痕的深度、宽度及变形状态影响较大,较难保证试验结果的有效性。为了快速对超薄膜层进行纳米划痕测试,采用不同半径的压头,在施加不同载荷的情况下,研究了压头半径对玻璃表面薄有机涂层纳米划痕试验结果的影响。利用纳米划痕仪和扫描电子显微镜(SEM)对划痕形貌及伴随的力学信号转换进行了分析和研究。结果表明:施加从6 mN线性增加至10 mN的载荷,在10μm半径压头所得划痕中,涂层失效包含塑性形变、裂纹、撕裂和剥离等4种模型,并且在各临界点的法向力Fn和划痕深度Pd均有清晰的转换信号;在2μm半径压头所得划痕中,压头较早地撕裂涂层,导致Fn和Pd信号只出现短暂的小幅波动,并且在涂层剥离失效之前,Pd超过压头半径r,压头两侧对涂层变形的影响大于压头半径,因此试验结果缺乏有效性;而在50μm半径压头所得划痕中,尽管直至试验结束之前,Pd未超过r,然而Fn和Pd转换信号不明显,这不利于对涂层形变过程中力学性能的分析。该研究结果可为纳米划痕试验中压头半径的选择以及对划痕试验结果有效性的评估提供决策支持。 展开更多
关键词 划痕试验 硬度计压头半径 载荷 薄涂层 剥离 失效模型
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