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首页> 外文期刊>Journal of Thermal Spray Technology >The Effect of Deposition Conditions on Adhesion Strength of Ti and Ti6Al4V Cold Spray Splats
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The Effect of Deposition Conditions on Adhesion Strength of Ti and Ti6Al4V Cold Spray Splats

机译:沉积条件对Ti和Ti6Al4V冷喷涂钢板附着强度的影响

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摘要

Cold spray is a complex process where many parameters have to be considered in order to achieve optimized material deposition and properties. In the cold spray process, deposition velocity influences the degree of material deformation and material adhesion. While most materials can be easily deposited at relatively low deposition velocity (<700 m/s), this is not the case for high yield strength materials like Ti and its alloys. In the present study, we evaluate the effects of deposition velocity, powder size, particle position in the gas jet, gas temperature, and substrate temperature on the adhesion strength of cold spayed Ti and Ti6Al4V splats. A micromechanical test technique was used to shear individual splats of Ti or Ti6Al4V and measure their adhesion strength. The splats were deposited onto Ti or Ti6Al4V substrates over a range of deposition conditions with either nitrogen or helium as the propelling gas. The splat adhesion testing coupled with microstructural characterization was used to define the strength, the type and the continuity of the bonded interface between splat and substrate material. The results demonstrated that optimization of spray conditions makes it possible to obtain splats with continuous bonding along the splat/substrate interface and measured adhesion strengths approaching the shear strength of bulk material. The parameters shown to improve the splat adhesion included the increase of the splat deposition velocity well above the critical deposition velocity of the tested material, increase in the temperature of both powder and the substrate material, decrease in the powder size, and optimization of the flow dynamics for the cold spray gun nozzle. Through comparisons to the literature, the adhesion strength of Ti splats measured with the splat adhesion technique correlated well with the cohesion strength of Ti coatings deposited under similar conditions and measured with tubular coating tensile (TCT) test.
机译:冷喷涂是一个复杂的过程,为了获得最佳的材料沉积和性能,必须考虑许多参数。在冷喷涂过程中,沉积速度会影响材料变形程度和材料附着力。尽管大多数材料都可以很容易地以相对较低的沉积速度(<700 m / s)进行沉积,但对于高屈服强度的材料(如Ti及其合金)却不是这种情况。在本研究中,我们评估了沉积速度,粉末尺寸,气体射流中的颗粒位置,气体温度和基体温度对冷喷涂的Ti和Ti6Al4V短片附着强度的影响。使用微机械测试技术剪切Ti或Ti6Al4V的单个片并测量其粘合强度。在氮气或氦气作为推进气体的情况下,在一系列沉积条件下,将这些小片沉积到Ti或Ti6Al4V衬底上。 splat附着力测试与微结构表征一起用于定义splat与基材之间的粘合界面的强度,类型和连续性。结果表明,最佳的喷涂条件使获得的splats可以沿着splat /基材界面连续粘结,并且所测得的粘合强度接近散装材料的剪切强度。所显示的改善splat附着力的参数包括splat沉积速度的增加远高于被测材料的临界沉积速度,粉末和基材的温度均升高,粉末尺寸减小以及流量优化冷喷枪喷嘴的动力学特性。通过与文献的比较,用splat粘附技术测得的Ti s粘附强度与在相似条件下沉积并通过管状涂层拉伸(TCT)测试测得的Ti涂层的内聚强度紧密相关。

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