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Influence of vitrified bond structure on radial wear of cBN grinding wheels

机译:陶瓷结合结构对cBN砂轮径向磨损的影响

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This paper presents the results of research concerning the radial wear of super hard grinding wheels in the process of internal grinding of bearing rings. The new-developed grinding wheel is designed for bonding the abrasive grains of submicrocrystalline boron nitride using a glass-ceramic bond. This grinding wheel is compared to cBN grinding wheels composed from ceramic bonding systems, currently having application in industry. A crystalline phase from a group of single-diagonal pyroxenes of an XYSi{sub}2O{sub}6 type was generated at the glass-ceramic bond from a CaO-MgO-Al{sub}2O{sub}3-B{sub}2O{sub}3-SiO{sub}2 system. An influence of the presence of this phase on the bond fracture toughness coefficient K{sub}(IC) and the elastic modulus E of cBN grinding wheels was examined. Compared to grinding wheels comprising the commercial bond from a Na{sub}2O-K{sub}2O-Al{sub}2O{sub}3-B{sub}2O{sub}3-SiO{sub}2 system, the microcrystalline structure of the new-developed bond limits the range of its fragmentation in the process of grinding. It exerts a marked influence on the formation of different roughness profiles on the wheel working surface and the wear resistance, compared to a grinding wheel composed from a commercial bond.
机译:本文介绍了有关超硬砂轮在轴承套圈内磨削过程中的径向磨损的研究结果。新开发的砂轮设计用于通过玻璃-陶瓷粘结来粘结亚微晶氮化硼的磨粒。将该砂轮与由陶瓷粘结系统组成的cBN砂轮进行了比较,该陶瓷砂轮目前在工业中得到了应用。在CaO-MgO-Al {sub} 2O {sub} 3-B {sub的玻璃-陶瓷键上生成了XYSi {sub} 2O {sub} 6型单对角辉石的结晶相} 2O {sub} 3-SiO {sub} 2系统。研究了该相的存在对cBN砂轮的结合断裂韧性系数K {sub}(IC)和弹性模量E的影响。与包含Na {sub} 2O-K {sub} 2O-Al {sub} 2O {sub} 3-B {sub} 2O {sub} 3-SiO {sub} 2系统的商业结合的砂轮相比,新开发的键的微晶结构限制了其在研磨过程中破碎的范围。与由商业粘合剂组成的砂轮相比,它对砂轮工作表面上不同粗糙度轮廓的形成和耐磨性产生了显着影响。

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