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A Magnetorheological-polishing-based approach for studying precision microground surfaces of tungsten carbides by Shafrir S.N., Lambropoulos J.C., Jacobs S.D. is a nonfiction available to read on EtoBox.
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Статья. Опубликована в журнале "LLE Review". – 2005. – Vol. 105 – P. 51-62. Название на русском языке: Изучения на базе метода магнитореологического полирования прецизионного микрошлифования поверхности карбидов вольфрама. Аннотация к статье на английском языке: We have studied the response of five nonmagnetic WC composites to deterministic microgrinding. Grinding experiments showed that grinding-induced surface roughness decreased with decreasing diamond abrasive size. Microgrinding with a rough tool (40-nm grit size) involved fracture, leading to a p–v surface roughness in the range of 3.2 to 5.8 nm (150- to 700-nm rms). Microgrinding with medium and fine tools (10- to 20-nm and 2- to 4-nm grit size, respectively) was controlled by plastic flow. The medium tool led to p–v surface roughness values in the range of 0.5 to 3.8 nm (27- to 200-nm rms), whereas the fine tool resulted in surface p–v values in the range of 53 to 86 nm (7- to 13-nm rms). The true grinding-induced surface roughness was concealed by the deformed layer on the ground surface. We have demonstrated that a MRF spot can be placed on ground surfaces of tungsten carbide and that the spot can be used to evaluate th
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- Author
- Shafrir S.N., Lambropoulos J.C., Jacobs S.D.
- Language
- EN
- Category
- nonfiction
- Subjects
- Engineering, Mechanical Engineering & Dynamics, Stem