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Robot based deposition of WC-Co HVOF coatings on HSS cutting tools as a substitution for solid cemented carbide cutting tools

机译:基于机器人基于HSS切割工具的WC-Co HVOF涂层的沉积作为固体硬质合金切削刀具的替代品

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Cemented carbide (hard metal) cutting tools are the first choice to machine hard materials or to conduct high performance cutting processes. Main advantages of cemented carbide cutting tools are their high wear resistance (hardness) and good high temperature strength. In contrast, cemented carbide cutting tools are characterized by a low toughness and generate higher production costs, especially due to limited resources. Usually, cemented carbide cutting tools are produced by means of powder metallurgical processes. Compared to conventional manufacturing routes, these processes are more expensive and only a limited number of geometries can be realized. Furthermore, post-processing and preparing the cutting edges in order to achieve high performance tools is often required. In the present paper, an alternative method to substitute solid cemented carbide cutting tools is presented. Cutting tools made of conventional high speed steels (HSS) were coated with thick WC-Co (88/12) layers by means of thermal spraying (HVOF). The challenge is to obtain a dense, homogenous, and near-net-shape coating on the flanks and the cutting edge. For this purpose, different coating strategies were realized using an industrial robot. The coating properties were subsequently investigated. After this initial step, the surfaces of the cutting tools were ground and selected cutting edges were prepared by means of wet abrasive jet machining to achieve a smooth and round micro shape. Machining tests were conducted with these coated, ground and prepared cutting tools. The occurring wear phenomena were analyzed and compared to conventional HSS cutting tools. Overall, the results of the experiments proved that the coating withstands mechanical stresses during machining. In the conducted experiments, the coated cutting tools showed less wear than conventional HSS cutting tools. With respect to the initial wear resistance, additional benefits can be obtained by preparing the cutting edge by means of wet abrasive jet machining.
机译:硬质合金(硬质金属)切割工具是机器硬质材料的首选或开展高性能切割过程。碳化物切割工具的主要优点是它们的高耐磨性(硬度)和良好的高温强度。相比之下,粘合的硬质合金切削工具的特征在于低韧性并产生更高的生产成本,特别是由于资源有限。通常,通过粉末冶金方法生产粘合的碳化物切削刀具。与传统的制造路线相比,这些过程更昂贵,并且只能实现有限数量的几何形状。此外,通常需要后处理和准备切削刃以实现高性能工具。在本文中,提出了一种替代固体硬质合金切削工具的替代方法。通过热喷涂(HVOF)涂覆由常规高速钢(HSS)制成的切割工具用厚WC-CO(88/12)层。挑战是在侧翼和切削刃上获得密集,均匀和近净形涂层。为此目的,使用工业机器人实现不同的涂层策略。随后研究了涂层性质。在该初始步骤之后,通过湿磨料喷射加工制备切削刀具的表面,并制备选择的切割边缘,以实现光滑且圆形的微观形状。用这些涂层,地面和制备的切削刀具进行加工试验。分析发生的磨损现象并与传统的HSS切割工具进行比较。总体而言,实验结果证明了涂层在加工过程中承受机械应力。在进行的实验中,涂覆的切削工具显示出比传统的HSS切割工具的磨损较少。关于初始耐磨性,通过湿磨料喷射加工制备切削刃,可以获得额外的益处。

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