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用于概念产品设计方案决策的B-FMEA-TRIZ模型:以上肢偏瘫康复外骨骼为例的研究

B-FMEA-TRIZ model for scheme decision in conceptual product design: A study on upper-limb hemiplegia rehabilitation exoskeleton.

作者信息

Song Duanshu, Liu Li, Zhu Tong, Zhang Shanchao, Huang Yuexin

机构信息

School of Mechanical and Electrical Engineering, China University of Mining and Technology, Xuzhou, 221116, China.

School of Mechatronic Engineering, Jiangsu Normal University, Xuzhou, 221116, China.

出版信息

Heliyon. 2024 May 6;10(10):e30684. doi: 10.1016/j.heliyon.2024.e30684. eCollection 2024 May 30.

Abstract

Upper-limb rehabilitation devices are essential in restoring and improving the motor function of hemiplegic patients. However, developing a product design that meets the needs of users is challenging. Current design tools and methods suffer from limitations such as a single model, poor synergy between integrated models, and subjective bias in analysing user needs and translating them into product attributes. To address these issues, this study proposes a new structural design decision-making model based on Behaviour Analysis (B), Failure Mode Effect Analysis (FMEA), and Teoriya Resheniya Izobreatatelskikh Zadatch (TRIZ theory). The model was developed and applied to design an upper-limb rehabilitation exoskeleton for hemiplegia. In this paper, an empirical investigation was conducted in several rehabilitation hospitals in Xuzhou City and used user journey mapping to identify potential failure points in the behaviour process. Then, the fault models were ranked according to the Fuzzy Risk Priority Number (FRPN) calculated by FMEA and used TRIZ theory to determine principles for resolving contradictions and generating creative design solutions for the product. By integrating B, FMEA, and TRIZ theory, it eliminated subjective bias in product design, improved the design decision-making process, and provided new methods and ideas for designing assistive rehabilitation devices and similar products. The framework of the proposed approach can be used in other contexts to develop effective and precise product designs that meet the needs of users.

摘要

上肢康复器械对于恢复和改善偏瘫患者的运动功能至关重要。然而,开发一款满足用户需求的产品设计颇具挑战性。当前的设计工具和方法存在诸多局限,例如单一模型、集成模型之间协同性差,以及在分析用户需求并将其转化为产品属性时存在主观偏差。为解决这些问题,本研究提出一种基于行为分析(B)、失效模式与效应分析(FMEA)以及发明问题解决理论(TRIZ理论)的新型结构设计决策模型。该模型经开发后应用于设计一款偏瘫上肢康复外骨骼。本文在徐州市多家康复医院进行了实证调查,并运用用户旅程地图来识别行为过程中的潜在故障点。然后,根据FMEA计算出的模糊风险优先数(FRPN)对故障模型进行排序,并运用TRIZ理论确定解决矛盾的原则,为产品生成创新性设计方案。通过整合B、FMEA和TRIZ理论,消除了产品设计中的主观偏差,改进了设计决策过程,为设计辅助康复器械及类似产品提供了新的方法和思路。所提方法的框架可用于其他情境,以开发出满足用户需求的有效且精确的产品设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7d0/11103438/2052885f4a99/gr1.jpg

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