摘要:
A vitrified grinding wheel having a porosity (desirably 30 to 70 vol.%), a concentration ratio of abrasive grain (desirably 50 to 160), and an abrasive grain size (desirably 10 to 90 mum) based on pre-set grinding efficiency and grinding accuracy, desirably, a grinding accuracy of 0.1 to 1.6 Rz (mum) and a grinding efficiency of 0.1 to 2.0 mm /(mm.sec), and a method of manufacturing the vitrified grinding wheel.
摘要:
A vitrified grinding wheel having a porosity (preferably 30 to 70 volume percent), a degree of concentration of abrasive grains (preferably 50 to 160) and an abrasive grain diameter (preferably 10 to 90 µ m) based on the preset processing efficiency and processing precision of grinding, preferably based on a processing precision ranging from 0.1 to 1.6 Rz ( µ m) and a processing efficiency ranging from 0.1 to 2.0 mm 3 /(mm • sec), and a method of manufacturing the same.
摘要:
A grinding wheel having a tool portion formed by firmly fixing diamond grains to an end face of a cup-shaped core by brazing. A circumferentially continuous groove is formed in a substantially central portion of the end face of the core. The abrasive grains are firmly fixed to an end face portion excluding regions near an outer rim and near an inner rim of the end face and near the boundaries with the groove under the condition that, with respect to all the abrasive grains, skirts of a brazing material layer for holding the abrasive grains have a length one or more times an average grain size of the abrasive grains. The provision of the groove in the end face of the core can enhance the capability of ejecting chips that occur during machining; besides, chips can be captured into the groove to preclude the occurrence of scratches resulting from the chips. Moreover, sufficient lengths of skirts of the brazing material layer are secured for all the abrasive grains arranged on the end face of the core, which improves the force for holding the abrasive grains and avoids grain fall-out during machining.