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首页> 外文期刊>Journal of Thermal Spray Technology >Examination on Substrate Preheating Process in Cold Gas Dynamic Spraying
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Examination on Substrate Preheating Process in Cold Gas Dynamic Spraying

机译:冷气动态喷涂中基材预热过程的检验

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摘要

Substrate preheating always takes an important role in particle bonding and formation of the first layer coating in cold gas dynamic spraying (CGDS). In this study, a systemic investigation on substrate preheating process is conducted with Cu, Al, Steel, and Ti substrate by both numerical and experimental methods. The computational fluid dynamic (CFD) approach is adopted to simulate the heat exchange process between gas and solid substrate. The numerical results show that substrate can be significantly preheated by the high-temperature gas, especially by the gas at the near-wall zone behind the bow shock where the temperature is extremely high. Moreover, the comparison between different substrates implies that substrates with smaller thermal conductivity can achieve higher surface temperature and larger temperature gradient which may greatly contribute to the generation of residual stress, such as Ti substrate in this study. For the heat flux, Cu substrate obtains the largest value at the center zone of the substrate surface, followed by Al, Steel, and Ti substrate, but at the outer zone, the heat flux through the Cu substrate surface is smaller than the other three types of substrates. Besides, based on the experimental results, it is found that the substrate surface temperature amounts to the peak value only when the preheating time is sufficiently long.
机译:在冷气动态喷涂(CGDS)中,基材预热始终在颗粒粘结和第一层涂层的形成中起着重要作用。在这项研究中,通过数值和实验方法对Cu,Al,钢和Ti基板的基板预热过程进行了系统研究。采用计算流体动力学(CFD)方法来模拟气体与固体基质之间的热交换过程。数值结果表明,衬底可以被高温气体显着地预热,特别是被弓形激波后温度极高的近壁区域的气体预热。此外,不同基板之间的比较表明,导热系数较小的基板可以实现较高的表面温度和较大的温度梯度,这可能会极大地有助于产生残余应力,例如本研究中的Ti基板。对于热通量,Cu衬底在衬底表面的中心区域获得最大值,其次是Al,钢和Ti衬底,但在外部区域,通过Cu衬底表面的热通量小于其他三个基材的类型。此外,基于实验结果,发现仅当预热时间足够长时,基板表面温度才达到峰值。

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