Adaan-Nyiak Moses A, Tiamiyu Ahmed A
Department of Mechanical and Manufacturing Engineering, University of Calgary, 2500 University Drive NW, Calgary, AB T2N 1N4 Canada.
J Mater Res. 2023;38(1):69-95. doi: 10.1557/s43578-022-00764-2. Epub 2022 Oct 18.
Cold spray (CS) processing is a layer-by-layer solid-state deposition process in which particles at a temperature below their melting point are launched to sufficiently high velocities to adhere to a substrate (and previously deposited particles), forming coatings/parts. Despite being in existence for over four decades, particle bonding mechanisms in the CS process are unclear due to the complex particle-particle/carrier gas interactions that obscure assessment. This review evaluates recent findings from single-particle impact approaches that circumvent these complexities and further provide new insights on bonding mechanisms. Theories on the evolution of oxide layer breakup and delamination, adiabatic shear instability, jetting, melting, and interface solid-state amorphization that contributes to bonding are assessed and carefully reviewed. Although there is a unified condition in which bonding sets on, this study shows that no singular theory explains bonding mechanism. Rather, dominant mechanism is a function of the prevailing barriers unique to each impact scenario.
冷喷涂(CS)工艺是一种逐层固态沉积工艺,在该工艺中,温度低于熔点的颗粒被加速到足够高的速度,以附着在基材(以及先前沉积的颗粒)上,从而形成涂层/部件。尽管冷喷涂工艺已经存在了四十多年,但由于复杂的颗粒-颗粒/载气相互作用阻碍了评估,该工艺中的颗粒结合机制仍不明确。本综述评估了单颗粒冲击方法的最新研究结果,这些方法规避了这些复杂性,并进一步提供了关于结合机制的新见解。对有助于结合的氧化层破裂与分层、绝热剪切不稳定性、喷射、熔化和界面固态非晶化演变的理论进行了评估和仔细审查。尽管存在结合发生的统一条件,但本研究表明,没有单一理论能够解释结合机制。相反,主导机制是每种冲击情况所特有的主要障碍的函数。