首页|基于QFD和U-TRIZ的家用艾灸机器人创新设计

基于QFD和U-TRIZ的家用艾灸机器人创新设计

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为了使产品功能配置合理,最后产出的技术方案能够满足用户需求,将质量功能展开(QFD)方法引入到家用艾灸机器人设计过程中,将用户需求转换为设计需求,保证设计的艾灸设备满足家用需求且具有竞争力;之后,对QFD阶段得出的相互矛盾的设计需求进行矛盾分析,找到对应的发明原理进行解决;最后,通过TRIZ理论下的统一 TRIZ理论(U-TRIZ)特有的物质-属性-功能-原因(SAFC)解题模型,构建每对技术矛盾的技术方案,解决对应技术矛盾.结果表明:运用QFD和统一 TRIZ理论集成的方法不仅能够使得产品构建合理,还能够快速找到合适的、具体的解决方案,实现的功能符合需求,使得设计过程更加严谨,方便设计者快速找到符合需求配比的合适技术方案.用此集成方法进行设计的技术方案申请了中国发明专利,验证了此集成创新设计方法的有效性.
Innovative Design of Home Moxibustion Robot Based on QFD and U-TRIZ
In order to make the product function configuration reasonable and the final output technical solution meet the user needs,the quality function deployment(QFD)method was introduced into the design process of moxibustion robots for home using,converting user needs into design needs and ensuring that the designed moxibustion equipment meets the home using needs and its com-petitive.The contradictory design needs derived in the QFD stage were analyzed,and the corresponding invention principles were found to solve it.Finally,the substance-attribution-function-causality(SAFC)model of U-TRIZ theory was used to construct a technical so-lution for each pair of technical contradictions and solve the corresponding technical contradictions.The results show that the combina-tion of QFD and U-TRIZ can not only make the product construction reasonable,but also can effectively make the realization of func-tions conform to the requirements,which makes the design process more rigorous and facilitates the designer to quickly find a suitable technical solution that conforms to the requirement ratio.The technical solution designed with this method was applied for a patent for in-vention,which effectively verified the effectiveness of the method.

home moxibustion robotuser requirementsdesign requirementsquality function deployment(QFD)U-TRIZSAFC model

衣正尧、张梦、王宝成、卢贤淑、弥思瑶、李昊鸣

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大连海洋大学航海与船舶工程学院,辽宁大连 116023

大连市妇女儿童医疗中心集团妇幼保健医院,辽宁大连 116021

韩国京畿道安山市卢贤淑韩医医院,首尔 999007

家用艾灸机器人 用户需求 设计需求 质量功能展开 统一TRIZ理论 SAFC模型

大连市科技创新基金

2021JJ13SN50

2024

机床与液压
中国机械工程学会 广州机械科学研究院有限公司

机床与液压

CSTPCD北大核心
影响因子:0.32
ISSN:1001-3881
年,卷(期):2024.52(12)
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