摘要
为了提高脚手架安装与拆卸的效率,利用TRIZ最终理想解对问题进行分析,形成问题的技术矛盾为“时间损失与可靠性”,利用矛盾矩阵找到解决问题的方向依据不对称原理,最终实现了卡扣的技术创新设计,使原来传统卡扣的双螺栓结构变成了单螺栓结构。因此,脚手架安装与拆卸的效率和安全系数都得到了提高,最后给出了基于TRIZ的产品创新设计流程。该产品创新实例表明,TRIZ能给产品创新设计提供可行的设计思路。
In order to raise the efficiency of scaffolding installation and dismantling, TRIZ ultimate ideal solution is used to analyze the problems and the technical contradiction between "time loss" and "reliability" arises.Then, the contradiction matrix is introduced to find the right solution: in light of asymmetrical theory, a technically innovative design of buckles is thus worked out, turning the double bolt structure of traditional buckles into the single one.In this way, the efficiency and safety index of scaffoldings installation and dismantling are both uplifted and an innovative design procedure based on TRIZ is proposed.Its example shows that TRIZ can enlighten a feasible design of innovative products.
作者
郭南初
GUO Nanchu(School of Mechano-electrical Engineering,Suzhou Vocational University,Suzhou 215104,China)
出处
《苏州市职业大学学报》
2020年第1期38-40,共3页
Journal of Suzhou Vocational University
基金
国家自然科学基金资助项目(51175359)
苏州市数字化设计与制造技术重点实验室项目(SZS201009)。