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Modification of surface morphology to enhance tribological properties for CVD coated cutting tools through wet micro-blasting post-process

机译:改性表面形态以提高CVD涂层切削刀具的摩擦性能,湿微爆破后工艺

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AbstractCoated cemented carbide tools have been widely applied in high performance machining due to their excellent heat resistance and anti-wear properties. However, as-deposited tool coatings are still challenged by the growing requirements to further enhance cutting performance. Wet micro-blasting post-process on coating tools has been proposed to improve mechanical properties and increase tool life. This paper aims to optimize the wet micro-blasting operating parameters for chemical vapor deposition (CVD) coated tools to strengthen their wear resistance. The surface morphology of three types of CVD coated tools including TiN/Al2O3/TiCN, thin Al2O3/TiCN and thick Al2O3/TiCN are inspected with EDS, SEM and AFM. Tribological properties for both as-deposited and wet micro-blasted tool coatings were evaluated by dry reciprocating sliding tests. The measured results indicate that the wet micro-blasting process can significantly decrease the surface roughness and improve the wear resistance. Among the wet micro-blasting operating parameters, the wet micro-blasting time and the abrasive particle size are found to play more important roles in the formatting of top surface morphology and the enhancement of the tribological behavior than the role played by blasting pressure. Based on the research results, the CVD tool coatings with improved anti-wear properties and surface topography can be fabricated with suitable wet micro-blasting process parameters.]]>
机译:<![cdata [ 抽象 涂层硬质合金工具由于其优异的耐热性和抗磨损性能而广泛应用于高性能加工。然而,由于越来越多的要求,沉积的工具涂层仍然是造成的,以进一步增强切割性能。已经提出了在涂布工具上进行湿的微喷射过程,以改善机械性能并提高刀具寿命。本文旨在优化用于化学气相沉积(CVD)涂层工具的湿微喷射操作参数,以加强其耐磨性。三种类型的CVD涂层工具的表面形态包括TIN / AL 2 O 3 / TICN,THINAL 2 O 3 / TICN和厚AL 2 O 3 / TICN通过EDS,SEM和AFM检查。通过干燥的往复滑动测试评估沉积和湿微喷砂工具涂层的摩擦学性质。测量结果表明,湿微喷砂过程可以显着降低表面粗糙度并提高耐磨性。在湿微喷射操作参数中,发现湿的微喷砂时间和磨粒粒度在顶表面形态的形式和摩擦学行为的增强中起比通过爆破压力所发挥的作用起到更重要的作用。基于研究结果,具有改善的抗磨损性能和表面形貌的CVD工具涂层可以用合适的湿微喷射工艺参数制造。 ]]>

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