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Evaluation of Grinding Performance By Mechanical Properties of Super Abrasive Wheel - Relationship Between Modulus of Rupture and Critical Grain Holding Power (2~(nd) report) -

机译:超大磨轮机械性能评价超级磨轮的力学性能 - 破裂模量与临界谷物保持力的关系(2〜(ND)报告) -

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This study was examined about the relationship between the fillers added to the grain layer of a resinoid bond diamond wheel and mechanical properties, the grade, the grinding performance. In the abrasion test using a constant pressure grinding, it was shown clearly that the critical grain holding power changed by kinds of fillers. On the other hand, in the constant cut surface grinding, the grinding interval was evaluated based on the grinding force. And, it was confirmed that the grinding interval changed by kinds of filler. Also, it was found that the characteristics of truing and dressing changed by kinds of filler. In addition, Young's modulus and bending strength of the grain layer of a resinoid bond diamond wheel was measured by three point bending test and ultrasonic pulse method. In the results, it checked that the mechanical properties such as bending strength and Young's modulus of a grain layer changed by kinds of filler. And, the modulus of rapture was calculated from the Young's modulus and bending strength. The result of having compared the modulus of rupture with the critical grain holding power, it was found that the modulus of rupture and the critical grain holding power have good correlation. Namely, the critical grain holding power of a resinoid bond diamond wheel can be evaluated by the modulus of rupture. Furthermore, it was shown that the grinding performance may be able to be predicted by the modulus of rapture of a grain layer of a resinoid bond diamond wheel.
机译:研究了该研究关于加入到树脂粘合金刚石轮型和机械性能的晶粒层的填料之间的关系,等级,研磨性能。在使用恒定压力研磨的磨损试验中,清楚地示出了临界颗粒保持力改变了各种填料。另一方面,在恒定切割表面研磨中,基于研磨力评估研磨间隔。并且,证实磨削间隔改变了各种填料。此外,发现通过种类的填料改变了训练和敷料的特征。此外,通过三点弯曲试验和超声波脉冲法测量树脂粘合金刚石轮型金刚石轮的谷物层的杨氏模量和弯曲强度。在结果中,它检查了诸如弯曲强度和幼粒层的弯曲强度和杨氏模量的机械性能改变了各种填料。并且,Rapture模量由杨氏模量和弯曲强度计算。将破裂模量与临界颗粒保持能力进行了比较了,发现破裂模量和临界颗粒保持力具有良好的相关性。即,可以通过破裂模量来评估树脂粘合金刚石轮的临界颗粒保持力。此外,示出了研磨性能可以通过树脂粘合金刚石轮的晶粒层的谷物层的模量来预测磨削性能。

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