首页> 外文期刊>Journal of Tribology >Solution to Inverse Problem of Manufacturing by Surface Modification With Controllable Surface Integrity Correlated to Performance: A Case Study of Thermally Sprayed Coatings for Wear Performance
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Solution to Inverse Problem of Manufacturing by Surface Modification With Controllable Surface Integrity Correlated to Performance: A Case Study of Thermally Sprayed Coatings for Wear Performance

机译:通过具有可控表面完整性的表面改性来解决逆问题与性能相关性:用于磨损性能的热喷涂涂层的案例研究

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摘要

Inverse problem of manufacturing is studied under a framework of high performance manufacturing of components with functional surface layer, where controllable generation of surface integrity is emphasized due to its pivotal role determining final performance. Surface modification techniques capable of controlling surface integrity are utilized to verify such a framework of manufacturing, by which the surface integrity desired for a high performance can be more effectively achieved as reducing the material and geometry constraints of manufacturing otherwise unobtainable during conventional machining processes. Here, thermal spraying of WC-Ni coatings is employed to coat stainless steel components for water-lubricated wear applications, on which a strategy for direct problem from process to performance is implemented with surface integrity adjustable through spray angle and inert N-2 shielding. Subsequently, multiple surface integrity parameters can be evaluated to identify the major ones responsible for wear performance by elucidating the wear mechanism, involving surface features (coating porosity and WC phase retention) and surface characteristics (microhardness, elastic modulus, and toughness). The surface features predominantly determine tribological behaviors of coatings in combination with the surface characteristics that are intrinsically associated with the surface features. Consequently, the spray process with improved N-2 shielding is designed according to the desired surface integrity parameters for higher wear resistance. It is demonstrated that the correlations from processes to performance could be fully understood and established via controllable surface integrity, facilitating solution to inverse problem of manufacturing, i.e., realization of a material and geometry integrated manufacturing.
机译:在具有功能表面层的高性能制造的框架下研究了制造的逆问题,其中强调了由于其枢转角色确定最终性能而强调的表面完整性的可控发生。能够控制表面完整性的表面改性技术用于验证制造的这种框架,通过该框架,通过该制造框架,可以更有效地实现高性能所需的表面完整性,因为在传统的加工过程中还原制造的材料和几何约束。这里,采用WC-Ni涂层的热喷涂来涂覆用于水润滑磨损应用的不锈钢组分,在该磨损应用中,通过喷射角度和惰性N-2屏蔽的表面完整性来实现从过程到性能的直接问题的策略。随后,可以通过阐明涉及表面特征(涂层孔隙度和WC相位保留)和表面特性(微硬度,弹性模量和韧性)来评估多个表面完整性参数以识别负责磨损性能的主要负责性能。表面特征主要决定涂层的摩擦学行为与本质上与表面特征有关的表面特征。因此,具有改进的N-2屏蔽的喷涂过程根据所需的表面完整性参数设计,用于更高的耐磨性。结果证明,通过可控的表面完整性,可以完全理解和建立从过程到性能的相关性,便于解决制造的逆问题,即实现材料和几何整体制造。

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