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Multilayer structure dependent performance behaviour of CVD diamond thin film drilling tools during CFRP machining

机译:CVD金刚石薄膜钻具在CFRP加工过程中的多层结构依赖性能

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The potential of chemical vapor deposition(CVD)diamond coated tools in its application for machining lightweight materials,such as carbon fibre reinforced plastics(CFRPs),is currently limited to coating adhesion failure.Resulting spontaneous delamination and subsequent critical tool wear adversely affect the reproducibility of tool lifetime,process stability as well as machining quality.Although different morphologies and its variation of layer thicknesses on geometrically complex tools can be deposited,the interaction of coating and substrate determines the overall cutting tool strength.In addition,influencing factors on coating adhesion generated by the manufacturing process,such as tool substrate production and coating parameters,cause a high variance with regard to the cutting tool performance even within one tool batch.The scope of the presented investigation includes the application of varying CVD coated drilling tool specifications in order to analyse its performance regarding wear and process behaviour during machining of CFRP.Tool substrates ranging from tungsten carbide(WC)with varying cobalt content to silicon nitride(Si3N4)and silicon-aluminiumoxide nitride(SiALON)individually offer substrate material related tool failure conditions.Although Si3N4 substrates show an increase in averaged machined boreholes compared to WC-based substrate materials by 52 %,occasional tool shank breakage indicates a lack of mechanical strength within this tool specification.In contrast,WC-based substrate materials show typical wear on the rake face until reaching the wear criterion.Thus,process reliability is limited either by spontaneous coating delamination regarding WC-based cutting tools or cutting tool shank failure concerning silcion-based substrates respectively.The resulting workpiece integrity,i.e.surface quality,suffers from coating delamination during machining whereby fibre protrusion as well as workpiece delamination is occasionally observable.
机译:化学气相沉积(CVD)金刚石涂层工具在其用于加工轻质材料(如碳纤维增强塑料(CFRP)的应用中的潜力目前仅限于涂层粘附失效。提出自发分层和随后的临界工具磨损对再现性产生不利影响工具寿命,工艺稳定性以及加工质量。虽然可以沉积不同的形态和层厚度的层厚度的变化,涂层和基板的相互作用决定了整体切削刀具强度。此外,影响涂层粘附的影响因素由制造过程产生,例如刀具基板生产和涂层参数,即使在一个工具批处理内也导致切削刀具性能的高差。所提出的研究的范围包括在顺序中应用不同的CVD涂层钻孔工具规格分析其关于W的表现在加工过程中的耳朵和过程行为在加工碳化钨(WC)与氮化硅(Si3N4)和硅 - 铝氧化物氮化物(SiAlon)的不同钴含量分别提供基底材料相关工具失效条件。虽然Si3N4基板显示出一个与WC基底物材料相比,平均加工钻孔增加52%,偶尔的工具柄断裂表示该工具规范内的机械强度缺乏。对比,WC基底材料在耙子面上显示出典型的磨损直至达到磨损该标准,通过分别通过关于WC的切割工具或切削刀具柄失效的自发涂层分层分别限制了加工的基于硅基衬底的切割刀柄。所得的工件完整性,IESurface质量,在加工过程中遭受涂层分层的影响,从而纤维突起以及工件分层偶尔可观察到。

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