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Tribological behaviors of DLC film deposited on female die used in strip drawing

机译:带状拉丝母模上沉积的DLC膜的摩擦学行为

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With the miniaturization of parts, dimensions of parts have obvious effects on friction in microforming processes when liquid lubricants are applied. To eliminate size effects of friction, diamond-like carbon (DLC) film was deposited on the surface of female die and blank holder for its superior tribological characteristics. Strip drawing tests were carried out on conditions of different lubricants, and tribological behaviors of DLC film at female die surface were evaluated using punch load. The results reveal that the specimen dimensions and surface topography of specimen have a little effect on tribological behaviors of DLC film than castor oil. DLC film shows lower coefficient of friction (COF) in large deformation and small dimension. With the increasing of test times, wear of DLC film occurs. Raman spectra indicates that the ratio between integrated intensities of D and G peaks (I_D/I_G) increases with the increasing of tests times, which means that graphitization of DLC film occurs for the rise of temperature induced by the friction at contact surface. The interesting thing is that H content increases with the times of tests especially for high contact load, which is evaluated by the ratio of the slope m of fitted linear background to the intensity of the G peak (m/I_G). The increase of H content means that the number of free hydrogen atoms becomes larger for the breakage of C-H bonds induced by the friction work. The graphitization and breakage of C-H bonds may have an obvious effect on the tribological behaviors of DLC film in microforming.
机译:随着零件的小型化,当使用液体润滑剂时,零件的尺寸会对微成型工艺中的摩擦产生明显影响。为了消除摩擦的尺寸效应,类金刚石碳(DLC)膜被沉积在母模和毛坯支座的表面上,以具有优越的摩擦学特性。在不同润滑剂的条件下进行剥离拉伸试验,并使用冲头载荷评估DLC膜在凹模表面的摩擦学性能。结果表明,与蓖麻油相比,试样的尺寸和表面形貌对DLC膜的摩擦学性能影响较小。 DLC膜在大变形和小尺寸时显示出较低的摩擦系数(COF)。随着测试时间的增加,DLC膜会发生磨损。拉曼光谱表明,D和G峰的积分强度之比(I_D / I_G)随着测试时间的增加而增加,这意味着DLC膜发生石墨化是由于接触表面摩擦引起的温度升高。有趣的是,尤其是对于高接触负载,H含量会随​​着测试次数的增加而增加,这是通过拟合线性背景的斜率m与G峰强度的比值(m / I_G)来评估的。 H含量的增加意味着由于摩擦功引起的C-H键的断裂,游离氢原子的数目变大。 C-H键的石墨化和断裂可能对DLC薄膜在微成型过程中的摩擦学行为具有明显的影响。

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