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Mechanisms of cutting blade wear and their influence on cutting ability of the tool during machining of special alloys

机译:特殊合金加工过程中切削刀片的磨损机理及其对刀具切削性能的影响

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摘要

With increased requirements for quality and shelf life of machined parts there is also a higher share of the use of material with specific properties that are identified by the term “superalloys”. These materials differ from common steels by mechanical and physical properties that cause their worse machinability. During machining of “superalloys” worse machinability has negative influence primarily on the amount of cutting edge wear, which shortens durability of the cutting tool. The goal of experimental activity shown in this contribution is to determine individual mechanisms of the cutting edge wear and their effects on the cutting ability during high speed machining of nickel superalloy. A specific exchangeable cutting insert made from cubic boric nitride was used for machining of the 625 material according to ASM 5666F. The criteria to evaluate cutting ability and durability of the cutting tool became selected parameters of surface integrity and quality of the machined surface.
机译:随着对机械零件质量和保质期要求的提高,具有“超级合金”一词所标识的具有特定性能的材料的使用也越来越多。这些材料与普通钢的机械和物理特性不同,导致它们的可加工性变差。在加工“超级合金”时,较差的切削性主要对切削刃的磨损量有负面影响,这会缩短切削工具的耐用性。该贡献中显示的实验活动的目标是确定切削刃磨损的各个机理及其对镍超合金高速加工过程中切削能力的影响。根据ASM 5666F,使用由立方氮化硼制成的特殊可更换切削刀片对625材料进行机加工。评估切削工具的切削能力和耐用性的标准成为表面完整性和加工表面质量的选定参数。

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