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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Design of a microchannel system using axiomatic design theory for size-controllable and monodispersed microspheres by enhanced perturbation
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Design of a microchannel system using axiomatic design theory for size-controllable and monodispersed microspheres by enhanced perturbation

机译:使用公理化设计理论通过增强扰动设计尺寸可控和单分散微球的微通道系统

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摘要

This paper proposes a general design methodology for conceptual design of microchannel systems by applying axiomatic design theory (ADT). As an example, this paper takes a microchannel system that is used to produce uniform microspheres based on the phase separation principle. There are two general design goals for this system: controllability of the size of microspheres and uniformity or narrow size distribution of microspheres. It is found that the conventional approach to this example system will result in a so-called "coupled design," which is considered a poor design, according to ADT. This paper demonstrates how to change the coupled design for the example system to a better design called "decoupled design" (according to ADT). The proposed methodology can be applied to all the microchannel systems based on the phase separation principle and, as a matter of fact, can be used to generate many decoupled designs. The effectiveness of such a decoupled design is demonstrated through simulation.
机译:本文运用公理化设计理论(ADT)提出了一种微通道系统概念设计的通用设计方法。例如,本文采用一种微通道系统,该系统用于根据相分离原理生产均匀的微球。该系统有两个总体设计目标:微球尺寸的可控制性和微球尺寸的均匀性或窄分布。据发现,根据此示例系统的常规方法将导致所谓的“耦合设计”,根据ADT的说法,这被认为是较差的设计。本文演示了如何将示例系统的耦合设计更改为称为“解耦设计”(根据ADT)的更好的设计。所提出的方法可以基于相分离原理应用于所有微通道系统,并且事实上可以用于生成许多解耦的设计。通过仿真证明了这种解耦设计的有效性。

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