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Wear characteristics of ultra-hard cutting tools when machining austempered ductile iron

机译:奥氏体球墨铸铁加工中超硬切削刀具的磨损特性

摘要

Nodularised Ductile Cast Iron, when subjected to heat treatment processes - austenitising and austempering produces Austempered Ductile Iron (ADI). The microstructure of ADI also known as "ausferrite" consists of ferrite, austenite and graphite nodules. Machining ADI using conventional techniques is often a problematic issue due to the microstructural phase transformation from austenite to martensite during machining. This paper evaluates the wear characteristics of ultra hard cutting tools when machining ADI and its effect on machinability. Machining trials consist of turning ADI (ASTMGrade3) using two sets of PCBN tools with 90% and 50% CBN content and two sets of ceramics tools; Aluminium Oxide Titanium Carbide and Silicon Carbide - whisker reinforced Ceramic. The cutting parameters chosen are categorized as roughing and finishing conditions; the roughing condition comprises of constant cutting speed (425 m/min) and depth of cut (2mm) combined with variable feed rates of 0.1, 0.2, 0.3 and 0.4mm/rev. The finishing condition comprises of constant cutting speed (700 m/min) and depth of cut (0.5mm) combined with variable feed rates of 0.1, 0.2, 0.3 and 0.4mm/rev. The benchmark condition to evaluate the performance of the cutting tools was tool wear evaluation, surface texture analysis and cutting force analysis. The paper analyses thermal softening of the workpiece by the tool and its effect on the shearing mechanism under rough and finish machining conditions in term of lower cutting forces and enhanced surface texture of the machined part.
机译:球墨铸铁经过热处理工艺-奥氏体化和奥氏体化会产生奥氏体球墨铸铁(ADI)。 ADI的微结构也称为“铁素体”,由铁素体,奥氏体和石墨结核组成。由于在加工过程中从奥氏体到马氏体的微观结构相变,使用常规技术加工ADI通常是个问题。本文评估了加工ADI时超硬切削刀具的磨损特性及其对切削性能的影响。机械加工试验包括使用两组含90%和50%CBN的PCBN工具和两组陶瓷工具车削ADI(ASTMGrade3);氧化铝氧化铝碳化钛和碳化硅晶须增强陶瓷。所选的切削参数分为粗加工和精加工条件。粗加工条件包括恒定的切削速度(425 m / min)和切削深度(2mm)以及0.1、0.2、0.3和0.4mm / rev的可变进给率。精加工条件包括恒定的切削速度(700 m / min)和切削深度(0.5mm)以及0.1、0.2、0.3和0.4mm / rev的可变进给速度。评估切削刀具性能的基准条件是刀具磨损评估,表面纹理分析和切削力分析。本文以较低的切削力和增强的被加工零件的表面质地,分析了该工具对工件的热软化及其在粗加工和精加工条件下对剪切机构的影响。

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