首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Modelling and analysis of the bonding mechanism of CBN grains for electroplated superabrasive tools-part 1: introduction and application of a novel approach for determining the bonding force and the failure modes
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Modelling and analysis of the bonding mechanism of CBN grains for electroplated superabrasive tools-part 1: introduction and application of a novel approach for determining the bonding force and the failure modes

机译:电镀超级研磨工具的CBN晶粒结合机理的建模和分析-第1部分:确定结合力和破坏模式的新方法的介绍和应用

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This series of papers provides an in-depth analysis of the failure mode of the electroplated bond for single-layer superabrasive products, e.g., electroplated cubic boron nitride (CBN) wheels, diamond wire saw, and electroplated diamond dresser. The bonding force of the electroplated grinding tools is the primary factor that dominates the grinding quality and tool life in high-end applications. Therefore, the understanding and characterization of the bonding mechanism of the electroplated layer is of great importance for improving efficiency and quality in the applications of these abrasive products. In this first part, the experimental setup similar to an inclined microthreading process is designed to observe and measure the failure mode and maximum bonding force of the electroplated layer, respectively. The failure mode is analyzed by comparing the morphology before and after the high-speed bonding force test for electroplated layer. In the subsequent second part, a qualitative relationship is established between the maximum bonding force and the bonding layer thickness through the response surface method and experimental verification.
机译:该系列论文深入分析了单层超级磨料产品(例如电镀立方氮化硼(CBN)砂轮,金刚石线锯和电镀金刚石修整器)的电镀键合失效模式。电镀磨具的结合力是决定高端应用中磨削质量和刀具寿命的主要因素。因此,了解和表征电镀层的结合机理对于提高这些磨料产品的应用效率和质量非常重要。在第一部分中,类似于倾斜微螺纹加工的实验装置被设计为分别观察和测量电镀层的失效模式和最大结合力。通过比较电镀层高速结合力试验前后的形貌分析失效模式。在随后的第二部分中,通过响应面法和实验验证,在最大粘结力和粘结层厚度之间建立了定性关系。

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