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A study on Shojinka design for automobile engine piston-rod manufacturing

机译:汽车发动机活塞杆制造业浅滩舞设计研究

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Adapting the number of workers in a workshop in response to changes in the customer demand is termed Shojinka, and is often combined with a cellular layout design configuration. In contrast to fixed staffing level designs, Shojinka achieves a notably improved productivity in changeable environments. Based on the continuous flow design guidelines presented in the literature, this study proposes a four-step procedure for evaluating and generating three stage-wise designs (namely existing, improved and future) in pursuit of Shojinka objectives. The four-step procedure commences by analyzing the layout and performance of the existing process (Step 1). An improved layout design is then established using the continuous flow guidelines (Step 2). The standard operations which achieve a balanced production with the minimal labor requirement are then determined (Step 3). Finally, the Chaku-Chaku principle is applied to determine the ideal layout which minimizes the labor requirement and maximizes the productivity (Step 4). The feasibility of the proposed approach is demonstrated using a real-world automobile engine piston-rod manufacturing process for illustration purposes. It is shown that the improved and future designs improve the average worker productivity by 49.7% and 128.5%, respectively, compared to the existing design. Thus, both the effectiveness of the proposed methodology and the contribution of the present study are justified.
机译:在响应客户需求的变化中调整研讨会中的工人数量被称为Shojinka,通常与蜂窝布局设计配置相结合。与固定的人员配置水平设计相比,Shojinka在可变环境中实现了显着提高了生产率。基于文献中呈现的连续流动设计指南,本研究提出了一种四步程序,用于评估和产生三级设计的三个阶段设计(即现有,改进和未来),以追求Shojinka目标。通过分析现有过程的布局和性能来开始四步过程(步骤1)。然后使用连续的流程指南建立改进的布局设计(步骤2)。然后确定实现具有最小劳动力要求的平衡生产的标准操作(步骤3)。最后,应用Chaku-Chaku原理来确定最小化劳动要求并最大限度地提高生产率的理想布局(步骤4)。使用现实世界汽车发动机活塞 - 杆制造工艺来证明所提出的方法的可行性,用于说明目的。结果表明,与现有设计相比,改进和未来的设计将平均工人生产力提高49.7%和128.5%。因此,所提出的方法的有效性和本研究的贡献都是合理的。

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