首页> 外文会议>MED-vol.16-1; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition; 20051105-11; Orlando,FL(US) >MICROFORMING: STUDY OF FRICTION CONDITIONS AND THE IMPACT OF LOW FRICTION / HIGH-STRENGTH DIE COATINGS ON THE EXTRUSION OF MICROPINS
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MICROFORMING: STUDY OF FRICTION CONDITIONS AND THE IMPACT OF LOW FRICTION / HIGH-STRENGTH DIE COATINGS ON THE EXTRUSION OF MICROPINS

机译:微成形:摩擦条件的研究以及低摩擦/高强度模具涂层对微胞菌素挤出的影响

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Microforming is a relatively new realm of manufacturing technology that addresses the issues involved in the fabrication of metallic microparts, i.e., metallic parts that have at least two characteristic dimensions in the sub-millimeter range. The recent trend towards miniaturization of products and technology has produced a strong demand for such metallic microparts with extremely small geometric features and high tolerances. Conventional forming technologies, such as extrusion, have encountered new challenges at the micro-scale due to the influence of 'size effects' that tend to be predominant at this length scale. One of the factors that shows a strong influence is friction. This paper focuses on the frictional behavior observed at various sample sizes during micro-extrusion. A novel experimental setup consisting of forming assembly and a loading stage has been developed to obtain the force-displacement response for the extrusion of pins made of brass (Cu/Zn: 70/30). This experimental setup is used to extrude pins with a circular cross-section that have a final extruded diameter ranging from 1.33 mm down to 570 microns. The experimental results are then compared to finite-element simulations and analytical models to quantify the frictional behavior. It was found that the friction condition was non-uniform and showed a dependence on the dimensions (or size) of the micropin. The paper also investigates the validity of using high-strength/low friction die coatings to improve the tribological characteristics observed in micro-extrusion. Three different extrusion dies coated with diamond-like carbon with silicon (DLC-Si), chromium nitride (CrN) and titanium nitride (TiN) were used in the micro-extrusion experiments. All the coatings worked satisfactorily in reducing the friction and correspondingly, the extrusion force with the DLC-Si coating producing the best results.
机译:微成形是制造技术的较新领域,其解决了金属微零件(即,具有至少两个特征尺寸在亚毫米范围内的金属零件)的制造中涉及的问题。产品和技术的小型化的最新趋势对具有极小的几何特征和高公差的这种金属微零件产生了强烈的需求。由于“尺寸效应”的影响在这种长度尺度上占主导地位,因此诸如挤压之类的常规成形技术在微观尺度上遇到了新的挑战。表现出强大影响力的因素之一是摩擦。本文着重于在微挤压过程中在各种样品尺寸下观察到的摩擦性能。已经开发了一种新颖的实验装置,该装置由成型组件和加载阶段组成,以获得挤压黄铜(Cu / Zn:70/30)制成的销时的力-位移响应。该实验装置用于挤出具有圆形横截面的销,这些销的最终挤出直径范围为1.33 mm至570微米。然后将实验结果与有限元模拟和分析模型进行比较,以量化摩擦性能。发现摩擦条件是不均匀的,并且显示出对微针的尺寸(或大小)的依赖性。本文还研究了使用高强度/低摩擦模具涂料改善微挤出中观察到的摩擦学特性的有效性。在微挤压实验中,使用了三种不同的挤压模,这些挤压模涂覆有类金刚石碳和硅(DLC-Si),氮化铬(CrN)和氮化钛(TiN)。所有涂层在减少摩擦方面均令人满意地工作,相应地,DLC-Si涂层的挤压力可产生最佳效果。

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