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Experimental study of high velocity oxy-fuel sprayed WC-17Co coatings applied on complex geometries. Part A: Influence of kinematic spray parameters on thickness, porosity, residual stresses and microhardness

机译:在复杂几何形状上应用高速氧-燃料喷涂的WC-17Co涂层的实验研究。 A部分:运动喷涂参数对厚度,孔隙率,残余应力和显微硬度的影响

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摘要

When a complex geometry is rotated in front of the thermal spray gun, the following kinematic parameters vary in a coupled fashion dictated by the geometry: Stand-off distance, spray angle and gun traverse speed. These fluctuations affect the conditions of particle impact with major implications on the coating’s properties. This work aims to probe into the interplay and isolated effect of these parameters on vital coating characteristics in applications requiring variable stand-off distance and spray angles. WC-17Co powders are sprayed via HVOF on steel substrates in a set of experiments that simulates the spray process of a non-circular cross section, while it allows for individual control of the kinematic parameters. Comprehensive investigation of their influence is made on deposition rate, residual stresses, porosity and microhardness of the final coating. It was determined that oblique spray angles and long stand-off distances compromise the coating properties but in some cases, the interplay of the kinematic parameters produced non-linear behaviours. Microhardness is related negatively with oblique spray angles at short distances while a positive correlation emerges as the stand-off distance is increased. Porosity and residual stresses are sensitive to the spray angle only in relatively short stand-off distances.
机译:当复杂的几何形状在热喷枪前面旋转时,以下运动参数以几何形状决定的耦合方式变化:支座距离,喷涂角度和喷枪移动速度。这些波动会影响粒子撞击的条件,从而对涂料的性能产生重大影响。这项工作旨在探究这些参数对关键涂层距离和喷涂角度可变的应用中重要涂层特性的相互影响和隔离作用。在一组模拟非圆形截面喷涂过程的实验中,通过HVOF将WC-17Co粉末喷涂在钢质基材上,同时可以单独控制运动学参数。对它们对最终涂层的沉积速率,残余应力,孔隙率和显微硬度的影响进行了综合研究。已确定倾斜的喷射角度和较长的支撑距离会损害涂层性能,但在某些情况下,运动学参数的相互作用会产生非线性行为。显微硬度与短距离的倾斜喷涂角度成负相关,而随着支撑距离的增加,呈正相关。孔隙率和残余应力仅在相对短的隔离距离中才对喷射角度敏感。

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