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Investigation of Formation of Titanium-Copper Coatings upon Argon Arc Surfacing of Silicon Bronze on Titanium

机译:钛青铜氩弧形涂层上钛 - 铜涂层形成的研究

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Abstract—Automated argon arc surfacing of silicon bronze wire on titanium items providing production of heat- and wear-resistant coatings based on intermetallic copper titanium alloys was proposed. The automated argon arc surfacing was studied using copper-based filler wire of solid cross section containing up to 3 wt % silicon and titanium samples, grade VT1-0. In the course of surfacing in the considered range of modes, the coatings based on titanium copper alloys doped with silicon were obtained on the surface of samples. In this case, the copper content was 9–40 wt %, and the silicon content was 0.3–1.5 wt %. The studies revealed the influence of surfacing modes on the parameters and quality of formation of surfaced coatings as well as their chemical and phase composition, structure, and properties. The hardness and resistance of the produced samples against abrasive wear was analyzed. The heat resistance of the surfaced coatings was tested at 800°C for 250 and 500 h. The wear resistance and heat resistance as a function of chemical composition of the coatings were determined.
机译:提出了钛合金铜丝网的自动化氩气谱面,提供基于金属间铜钛合金生产热耐磨涂层的生产。使用含有高达3wt%硅和钛样品的固体横截面的铜基填充丝进行了自动氩弧表面。在所考虑的模式范围内的表面的过程中,基于掺杂有硅的钛合金的涂层在样品的表面上得到。在这种情况下,铜含量为9-40wt%,硅含量为0.3-1.5wt%。研究揭示了浮出模式对表面涂层的参数和质量的影响以及它们的化学和相组合物,结构和性质。分析了所产生的样品对磨料磨损的硬度和抗性。将表面涂层的耐热性在800℃下测试250和500小时。确定了作为涂层化学成分的耐磨性和耐热性。

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