Abstract

Modular design, Axiomatic design (AD) and Theory of inventive problem solving (TRIZ) have been increasingly popularized in concept design of modern mechanical product. Each method has their own advantages and drawbacks. The benefit of modular design is reducing the product design period, and AD has the capability of problem analysis, while TRIZ’s expertise is innovative idea generation. According to the complementarity of these three approaches, an innovative and systematic methodology is proposed to design big complex mechanical system. Firstly, the module partition is executed based on scenario decomposition. Then, the behavior attributes of modules are listed to find the design contradiction, including motion form, spatial constraints, and performance requirements. TRIZ tools are employed to deal with the contradictions between behavior attributes. The decomposition and mapping of functional requirements and design parameters are carried out to construct the structural hierarchy of each module. Then, modules are integrated considering the connections between each other. Finally, the operation steps in application scenario are designed in temporal and spatial dimensions. Design of cutter changing robot for shield tunneling machine is taken as an example to validate the feasibility and effectiveness of the proposed method.

Highlights

  • In order to adapt to various customer demand and changing market orientation, new products have to improve the efficiency and innovation in concept design to enhance their competitiveness

  • A multitude of conceptual design approaches have been put forward to provide solution for a wide variety of problems encountered in the design process, including problem analysis and idea generation

  • The function requirement (FR) at the top level in the hierarchy can be represented as FR2: delivering the operational manipulator and cutter between the cutter installation position and storage cabin

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Summary

Introduction

In order to adapt to various customer demand and changing market orientation, new products have to improve the efficiency and innovation in concept design to enhance their competitiveness. Based on the behavior segments, behavior attributes model and the design parameters of each module, the operation process of the product is designed to improve the operation efficiency of the product, on the premise of satisfying the time order, and space continuity.

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Conclusion
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