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Relationship between subsurface damage and surface roughness of ground optical materials

机译:地面光学材料的亚表面损伤与表面粗糙度之间的关系

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摘要

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.
机译:建立了地下损伤与表面粗糙度之间关系的理论模型,以实现对地面光学材料地下损伤的快速无损测量。该模型的假定条件是,地下破坏深度和峰谷表面粗糙度分别等于由小半径(半径≤200μm)球形压头引起的脆性表面径向和横向裂纹的深度。在加载过程中还考虑了弹性应力场对径向裂纹扩展的影响。通过磁流变抛光点技术测量了BK7磨玻璃的亚表面损伤深度,以验证亚表面损伤与表面粗糙度的理论比率。结果表明,该比值与磨粒的载荷和光学材料的硬度成正比,而与磨粒的粒度和光学材料的断裂韧性成反比。而且,载荷和断裂韧性对比率的影响分别大于粒度和硬度。 BK7玻璃的80粒度和120粒度固定磨料研磨的测量比率分别为5.8和5.4。

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