首页> 外文会议>Eco-Materials Processing and Design VIII; Materials Science Forum; vols.544-545 >Design of Manufacturing Process of Oxygen-Free High Conductivity Copper Using Mahalanobis-Distance Outlier Detection Method
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Design of Manufacturing Process of Oxygen-Free High Conductivity Copper Using Mahalanobis-Distance Outlier Detection Method

机译:马氏距离异常值检测法设计无氧高导铜生产工艺

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The proper control of total impurities and oxygen contents of oxygen-free high conductivity (OFHC) copper prepared by vacuum high-frequency melting technique was studied using Mahalanobis-Distance (MD) outlier detection method as functions of raw material purities, vacuum pressure, melting temperature and holding time. The properties of vacuum-melted OFHC copper was examined by thermo-gravimetric analysis, differential scanning calorimetry, hardness test, macro and optical microstructure analyses and ultimate tensile test. In multivariate systems, the existence of outlier makes it difficult to analyze the system and oultier detection belongs to the most important tasks in experimental data analysis. Mahalanobis Distance is most commonly used as a diagnosis of existance of outlier in multivariate system. The relationship between experiment conditions and total impurities and oxygen contents can be defined with the regression analysis results. At this research, our desirable manufacturing conditions is to obtain the total impurities under 40 ppm and oxygen contents under 5 ppm. After this statistical approach, the suggested minimum maufacturing conditions are the purity of raw material was 4N, vacuum pressure was 10~(-1) torr, melting temperature was 1150 ℃ and melt holding time was 20 minutes.
机译:利用马哈拉诺比斯距离(MD)离群值检测方法研究了通过真空高频熔化技术制备的无氧高电导率(OFHC)铜的总杂质和氧含量的适当控制与原料纯度,真空压力,熔化的关系温度和保温时间。通过热重分析,差示扫描量热法,硬度测试,宏观和光学显微结构分析以及极限拉伸测试来检查真空熔化的OFHC铜的性能。在多变量系统中,离群值的存在使系统分析变得困难,并且高级检测属于实验数据分析中最重要的任务。马氏距离最常用于诊断多元系统中离群值的存在。实验条件与总杂质和氧含量之间的关系可以通过回归分析结果来定义。在这项研究中,我们理想的制造条件是获得40 ppm以下的总杂质和5 ppm以下的氧含量。采用这种统计方法后,建议的最低制造条件为:原料纯度为4N,真空压力为10〜(-1)托,熔融温度为1150℃,熔融时间为20分钟。

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