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An experimental investigation on the relationship between perceived assembly complexity and product design complexity

机译:一种实验调查感知装配复杂性与产品设计复杂关系的实验研究

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摘要

Complexity is one of the main drivers inducing increased assembly cost, operational issues and increased lead time for product realisation, and continues to pose challenges to manual assembly operations. In the literature, assembly complexity is widely viewed from both objective and subjective perspectives. The objective perspective relates complexity directly to the characteristics of a process without accounting the characteristics of performers, whereas, subjective perspective considers complexity as a conjunction between process and performer characteristics. This article aims to investigate the link between perceived assembly complexity and product complexity by providing a prediction model relying on a series of natural experiments. In these experiments, the participants were asked to assemble a series of ball-and-stick models with varying degree of product complexity based on a clear 2D assembly work instruction. Complexity of each model was objectively estimated by considering structural properties associated with handling and insertion of assembly parts and their connectivity pattern. Moreover, perceived complexity is approached based on the subjective interpretations of the participants on the difficulty associated with the assembly operation of each model. The results showed that product complexity and assembly time is super-linearly correlated; an increase in the product complexity is accompanied with an increase in assembly time, rework rate and human errors. Moreover, a sigmoid curve is proposed for the relationship between perceived assembly complexity and product complexity indicating that human workers start to perceive assembly operation of a particular product as complex if the product complexity reaches a critical threshold which can vary among individuals with different skill sets, experience, training levels and assembly preferences.
机译:复杂性是主要驱动因素之一,诱导增加的装配成本,运营问题和产品实现的提前时间,并继续对手动组装操作构成挑战。在文献中,从目标和主观观点都广泛观察了大会复杂性。客观的视角将复杂性直接涉及过程的特征,而无需考虑表演者的特征,而主观观点将复杂性视为过程和表演者特征之间的结合。本文旨在通过提供依赖于一系列自然实验的预测模型来研究感知组装复杂性和产品复杂性之间的联系。在这些实验中,请参与者被要求组装一系列的球形和粘性模型,其基于清晰的2D装配工作指令基于清晰的2D组装工作指令。通过考虑与处理和插入装配部件及其连接模式相关的结构性,客观地估计每个模型的复杂性。此外,基于与每个模型的装配操作相关的困难的参与者的主观解释来接近感知复杂性。结果表明,产品复杂性和组装时间超线性相关;产品复杂性的增加伴随着组装时间,返工率和人类错误的增加。此外,如果产品复杂性达到临界阈值,则提出了一种感知组装复杂性和产品复杂性与表明人类工作者开始感知特定产品的组装操作,这是一种矩形曲线。经验,培训水平和装配偏好。

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