Measuring and Analyzing the Process Capability of Productivity – An Applied Study in the Al-Tahady Factory for the Production of Filters

Ali Saad Alwan, N. Jasim
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Abstract

This study addressed concerns related to increased percentages of damaged and re-worked production, heightened demand for factory products, and lack of awareness of the approved Sigma (σ) level during manufacturing, and associated deviations in the manufacturing process. The primary research problem was to assess the manufacturing process's stability and capability to consistently produce conical filters that meet required specifications. The study followed a sample-based approach, where twenty samples, each containing four observations, were collected continuously over a period of seven days. For each sample, the mean (X ̅) and range (R) were calculated. The mean X-Double bar of 319.32 and the average range R-bar of 0.848 were obtained through data analysis. The main findings revealed that, on average, the manufacturing process was relatively close to the target value (X-Double bar = 319.32). However, the presence of several data points outside the control limits indicated potential variability in the process. The average range (R-bar = 0.848) highlighted certain variations in the manufacturing process, which might contribute to issues like damaged or re-worked production. The study identified the need for further investigation to determine the root causes of these variations, which could include machine malfunctions, material fluctuations, or operator errors. By addressing these concerns and reducing process variability, the factory can enhance product quality, decrease waste, and improve customer satisfaction. In conclusion, continuous process monitoring and improvement initiatives, such as Six Sigma, are essential for achieving greater process capability in conical filter manufacturing. This research contributes valuable insights into process performance and provides a basis for implementing corrective actions to ensure consistent product quality and meet customer demands.
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测量和分析生产率的过程能力 - 在生产过滤器的 Al-Tahady 工厂进行的应用研究
这项研究解决了以下问题:损坏和返工产品的比例增加、对工厂产品的需求增加、缺乏对制造过程中已批准的西格玛 (σ) 水平的认识以及制造过程中的相关偏差。研究的主要问题是评估生产过程的稳定性和持续生产符合规格要求的锥形过滤器的能力。研究采用基于样本的方法,在七天内连续收集二十个样本,每个样本包含四个观测值。每个样本的平均值(X ̅)和范围(R)都被计算出来。通过数据分析得出 X 双杠的平均值为 319.32,R 双杠的平均范围为 0.848。主要结果显示,平均而言,制造过程相对接近目标值(X-双杠 = 319.32)。然而,有几个数据点超出了控制范围,这表明生产过程中可能存在变异。平均范围 (R-bar = 0.848) 强调了制造过程中的某些变化,这可能会导致生产损坏或返工等问题。研究发现,需要进一步调查以确定这些变化的根本原因,其中可能包括机器故障、材料波动或操作员失误。通过解决这些问题并减少流程变异,工厂可以提高产品质量、减少浪费并提高客户满意度。总之,持续的过程监控和改进措施(如六西格玛)对于提高锥形过滤器制造过程的能力至关重要。这项研究有助于深入了解工艺性能,并为实施纠正措施提供依据,从而确保产品质量稳定,满足客户需求。
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