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Effect of triangular texture on the tribological performance of die steel with TiN coatings under lubricated sliding condition

机译:润滑条件下三角形织构对带TiN涂层的模具钢摩擦学性能的影响

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The friction and wear of stamping die surface can affect the service life of stamping die and the quality of stamping products. Surface texturing and surface coating have been widely used to improve the tribological performance of mechanical components. This study experimentally investigated the effect of triangular surface texture on the friction and wear properties of the die steel substrate with TiN coatings under oil lubrication. TiN coatings were deposited on a die steel (50Cr) substrate through a multi-arc ion deposition system, and then triangular surface texturing was fabricated by a laser surface texturing. The friction and wear test was conducted by a UMT-3 pin-on-disk tribometer under different sliding speeds and different applied loads, respectively. The adhesion test was performed to evaluate the effectiveness of triangular texturing on the interfacial bonding strength between the TiN coating and the die steel substrate. Results show that the combination method of surface texturing process and surface coating process has excellent tribological properties (the lowest frictional coefficient and wear volume), compared with the single texturing process or the single coating process. The tribological performance is improved resulting from the high hardness and low elastic modulus of TiN coatings, and the generation of hydrodynamic pressure, function of micro-trap for wear debris and micro-reservoirs for lubricating oil of the triangular surface texture. In addition, the coating bonding strength of the texturing sample is 3.63 MPa, higher than that of the single coating sample (3.48 MPa), but the mechanisms remain to be further researched. (C) 2016 Elsevier B.V. All rights reserved.
机译:冲压模具表面的摩擦磨损会影响冲压模具的使用寿命和冲压产品的质量。表面纹理化和表面涂层已被广泛用于改善机械部件的摩擦学性能。这项研究实验研究了三角形表面纹理对油润滑下具有TiN涂层的模具钢基材的摩擦和磨损性能的影响。通过多弧离子沉积系统将TiN涂层沉积在模具钢(50Cr)基底上,然后通过激光表面纹理化加工形成三角形表面纹理。摩擦和磨损测试是通过UMT-3针盘式摩擦计分别在不同的滑动速度和不同的施加载荷下进行的。进行附着力测试以评估三角形纹理化对TiN涂层与模具钢基材之间的界面结合强度的有效性。结果表明,与单一纹理化工艺或单一涂层工艺相比,表面纹理化工艺与表面涂层工艺的组合方法具有优异的摩擦学性能(最低的摩擦系数和磨损量)。 TiN涂层的高硬度和低弹性模量以及流体动力压力的产生,磨损碎片的微捕集器的功能以及三角形表面织构的润滑油的微储器的产生,使摩擦学性能得到改善。此外,织构样品的涂层结合强度为3.63 MPa,高于单一涂层样品的涂层结合强度(3.48 MPa),但机理尚待进一步研究。 (C)2016 Elsevier B.V.保留所有权利。

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