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Durability of cutting inserts coated with ion-plated AlTiN thin films

机译:切削刀片的耐久性涂有离子镀Altin薄膜

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It is known that during the cutting processes, due to the high contact pressures, to the high temperatures, to the relative velocities and shocks between the contact surfaces tool-part can lead to a wear more or less pronounced of the metal carbide cutting inserts. Are known numerous coating processes regarding the increasing the durability of the used cutting inserts, namely by deposition of different materials, having protection role for the cutting inserts locating and clearance surfaces, methods as: vapor chemical deposition at low pressure, pulverization, cathodic arc ion plating, vacuum thermal evaporation and condensation from the vapor phase. Researches carried out by authors in this paper, have followed the deposition of aluminum and titanium materials (AlTiN) in thin layers, on surface of some metal carbide cutting inserts profiled. The depositions of AlTiN materials are new coatings which consists in deposition of the compound solid of AlTiN in the form of vapor in thin layers on different tools or/and the cutting inserts. In the purpose of increasing the cutting inserts durability, they used deposition method by cathodic arc ion plating in vacuum. The authors chose this method due to its advantages, which can be enumerate: the relatively low costs of the equipment, the simplicity in operation, the possibility to be used also to realize researches and industrial installations. As a result of using this method was found a considerable increase of the durability for the metal carbide cutting inserts coated with AlTiN materials, used in the cutting process compared to cutting inserts which were not coated.
机译:众所周知,在切割过程中,由于高温压力,高温,接触表面之间的相对速度和冲击,工具部件可以导致金属碳化物切削刀片的磨损或多或少明显。已知关于增加使用切削刀片的耐久性的许多涂覆工艺,即通过不同材料的沉积,具有用于切削刀片定位和间隙的保护作用,方法:低压下的蒸气化学沉积,粉碎,阴极电弧离子电镀,真空热蒸发和蒸汽相的凝结。作者在本文中进行的研究随后在一些金属碳化物切削刀片的表面上沉积薄层和钛材料(Altin),在一些金属碳化物切割插入件的表面上。 Altin材料的沉积是新的涂层,其包括在不同工具或/和切削刀片上的薄层中蒸汽形式的Altin的复合固体沉积。凭借增加切削刀片耐用性,它们用真空中的阴极电弧离子电镀使用沉积方法。作者根据其优点选择了这种方法,可以枚举:设备的相对较低的成本,操作简单,也可以使用的可能性来实现研究和工业设施。由于使用该方法,发现与未涂覆的切削刀片相比,在切割过程中使用的金属碳化物切削刀片的耐久性的显着增加了。

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