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首页> 外文期刊>International Journal of Precision Engineering and Manufacturing >Chemical-Mechanical Polishing of Cemented Carbide Insert Surface for Extended Tool Life in Turning of GH4169 Nickel-Based Superalloy
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Chemical-Mechanical Polishing of Cemented Carbide Insert Surface for Extended Tool Life in Turning of GH4169 Nickel-Based Superalloy

机译:用于GH4169基于镍高温合金的延长工具寿命的碳化物刀片表面的化学机械抛光

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摘要

To extend the tool life of conventional uncoated grinding cemented carbide inserts (CUG inserts) in turning GH4169 nickel-based superalloy, chemical-mechanical polishing (CMP) is applied to appropriately treat the rake face of the CUG insert to address the defects including grinding burn, crack, and thermal deformation. The material removal rate (MRR) and the rake face roughness Ra of YG10 chemical-mechanical polished cemented carbide inserts (CMP inserts) corresponding to the six types of abrasives particles are investigated by applying the single factor method, and the diamond powder is the most suitable to polish YG10 inserts. Thus, CMP parameters are optimized using Taguchi method coupled with both the grey relation analysis and fuzzy inference. Furthermore, the comparison experiments of the cutting performance of the CUG insert and the CMP insert in turning GH4169 are carried out, under the same cutting condition, compared with the CUG insert, the average tool life of the CMP insert is increased by 35.92%. This study demonstrates that the CMP technique is an effective potential method to improve the surface integrity, the cutting performance and the tool life of conventional uncoated grinding cemented carbide inserts & tools in the machining of difficult-to-cut materials.
机译:为了延伸常规未涂覆的碳化物碳化物碳化物刀片(Cug插件)的刀具寿命,在转动GH4169镍基超合金中,施加化学机械抛光(CMP)以适当地处理CUG插入件的耙面,以解决包括研磨燃烧的缺陷,裂缝和热变形。通过施加单因素方法研究了与六种类型的研磨剂颗粒对应的YG10化学机械抛光硬质合金碳化物插入物(CMP插入物)的材料去除速率(MRR)和耙面粗糙度Ra,并且金刚石粉是最多的适合波兰YG10插入物。因此,使用与灰关系分析和模糊推断耦合的Taguchi方法进行了优化CMP参数。此外,在相同的切割条件下,对CuG插入件的切割性能和CMP插入物的切割性能的比较实验在与Cug插件相同的情况下,CMP插入物的平均工具寿命增加35.92%。本研究表明,CMP技术是改善表面完整性,切割性能和常规未涂覆的粘合硬质合金碳化物插入物和工具的有效潜在方法,在加工难以切割的材料中。

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