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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Wear evaluation of WC inserts coated with TiN/TiAlN multinanolayers
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Wear evaluation of WC inserts coated with TiN/TiAlN multinanolayers

机译:涂有TiN / TiAlN多层纳米涂层的WC刀片的磨损评估

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TiN/TiAlN multilayers were deposited by radio frequency, r.f., reactive magnetron sputtering by using titanium and aluminum targets with 10 cm diameter and 99.99% purity in an argonitrogen atmosphere, applying a substrate temperature of 300 oC. WC inserts were used as substrates to improve the mechanical and tribological properties of TiN/TiAlN multilayered coatings compared to other types of coatings like TiAlN monolayers and to manage greater efficiency of these coatings in different industrial applications, such as machining, and extrusion. Their physical, mechanical, and tribological characteristics were investigated, including cutting tests with AISI 4340 hardened steel (50 HRC) to assess wear as a function of the period and number of bilayers. A comparison of the properties of TiCN-Al2O3-TiN monolayers coatings and the [TiN/TiAlN]300 multilayers with individual layer thicknesses of 10 nm revealed a decrease of flank wear (around 33%) for [TiN/TiAlN]300 multilayers and a reduction of flank wear (around 13%) for coatings with 300 layers when is compared with [TiN/TiAlN]200 coatings. They also showed better machining properties onto hardened AISI 4340 steel pieces, when compared to uncoated WC inserts. These results open the possibility of using [TiN/TiAlN] multilayers as new coatings for tool machining with excellent industrial performance.
机译:通过在氩气/氮气气氛中使用直径为10 cm,纯度为99.99%的钛和铝靶,通过射频,射频,反应磁控溅射沉积TiN / TiAlN多层膜,衬底温度为300 oC。与其他类型的涂层(例如TiAlN单层)相比,WC插件被用作基材来改善TiN / TiAlN多层涂层的机械和摩擦学性能,并在不同的工业应用(例如机械加工和挤出)中管理这些涂层的更高效率。研究了它们的物理,机械和摩擦学特性,包括使用AISI 4340硬化钢(50 HRC)进行的切削测试,以评估磨损随周期和双层数的变化。 TiCN-Al2O3-TiN单层涂层与[TiN / TiAlN] 300多层膜(各层厚度分别为10 nm)的性能比较表明,[TiN / TiAlN] 300多层膜和[TiN / TiAlN] 300多层膜的侧面磨损降低了(约33%)。与[TiN / TiAlN] 200涂层相比,可减少300层涂层的侧面磨损(约13%)。与未涂层的WC刀片相比,它们还显示出对AISI 4340硬化钢件更好的加工性能。这些结果打开了将[TiN / TiAlN]多层用作具有出色工业性能的新型刀具加工涂层的可能性。

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