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Fast regime - fluidized bed machining (FR-FBM) of thermally sprayed coatings

机译:快速方案-热喷涂涂层的流化床加工(FR-FBM)

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摘要

Finishing of thermally sprayed metallic, ceramic and cermet coatings is required in order to meet tolerances and requirements on surface roughness in most industrial applications. Conventional machining is a costly and time-consuming process, difficult to automate. Therefore, this study investigates and develops a new technique highly amenable for automation: Fast Regime - Fluidized Bed Machining (FR-FBM). Atmospheric Plasma Sprayed (APS) TiO{sub}2, Cr{sub}2O{sub}3 and HVOF-sprayed WC-17%Co and Tribaloy-800 coatings, deposited on AISI 1040 steel substrates, were subjected to FR-FBM treatment. The effects of the leading operational parameters, namely, abrasive size, jet pressure and processing time, were evaluated on all coatings by using a two/three-levels full factorial Design Of Experiments (DOE). The FR-FBM treated surfaces were observed by FE-SEM and their surface finishing was evaluated by contact profilometry. Significant improvements in surface finishing of all the machined thermally sprayed coatings can always be detected, with FR-FBM being able to guarantee the precision and the respect of the closest geometrical tolerances.
机译:为了满足大多数工业应用中对表面粗糙度的公差和要求,需要对热喷涂的金属,陶瓷和金属陶瓷涂层进行精加工。传统的机加工是昂贵且费时的过程,难以自动化。因此,本研究调查并开发了一种高度适用于自动化的新技术:快速方式-流化床加工(FR-FBM)。对沉积在AISI 1040钢基材上的大气等离子喷涂(APS)TiO {sub} 2,Cr {sub} 2O {sub} 3和HVOF喷涂的WC-17%Co和Tribaloy-800涂层进行FR-FBM处理。通过使用两/三级全因子实验设计(DOE),评估了所有涂层上主要操作参数(即磨料尺寸,喷射压力和加工时间)的影响。通过FE-SEM观察经FR-FBM处理的表面,并通过接触轮廓测定法评估其表面光洁度。始终可以检测到所有机加工热喷涂涂层的表面光洁度的显着提高,而FR-FBM能够保证精度并遵守最接近的几何公差。

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