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Complex microfluid pipeline composite structure based on microfluid technology and microfluid pattern deformation system

A composite structure and microfluidic technology, applied in the field of microfluidics, can solve the problems of the influence of the device structure, the cumbersome and complex control system, etc., and achieve the effects of good flexibility and ductility, and strong chemical stability.

Active Publication Date: 2021-07-13
INST OF SOFTWARE - CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In terms of such controllers, most of the current microfluidic valves are designed and manufactured based on mechanical actuators or microfluidic actuators, which inevitably leads to bulky and complex control systems. channels, which often have a huge impact on the structure of the installation

Method used

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  • Complex microfluid pipeline composite structure based on microfluid technology and microfluid pattern deformation system
  • Complex microfluid pipeline composite structure based on microfluid technology and microfluid pattern deformation system
  • Complex microfluid pipeline composite structure based on microfluid technology and microfluid pattern deformation system

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Embodiment Construction

[0032] The present invention will be described in further detail below through specific embodiments and accompanying drawings.

[0033] figure 1 It is a schematic diagram of the overall mechanism of the present invention, including an elastic layer, a storage layer, and a channel layer.

[0034] The first layer structure, the elastic layer:

[0035] 1) This layer is mainly a covering layer, which covers the entire structure (that is, the storage layer and the channel layer are located inside the elastic layer) to prevent the fluid from leaking during the process of injecting and withdrawing the structure.

[0036] 2) In addition, this layer also has the function of evacuating fluid. When it is necessary to squeeze out the residual fluid in each matrix point in the second layer structure (storage layer), the device will apply additional pressure so that the film of the first layer structure is pressed down to squeeze out the residual fluid in the second layer structure.

[0...

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PUM

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Abstract

The invention relates to a complex microfluid pipeline composite structure based on a microfluid technology and a microfluid pattern deformation system. The complex microfluid pipeline composite structure comprises an elastic layer, a storage layer and a channel layer. The elastic layer is located on the outermost portion of the overall structure and used for fixing the flow direction of fluid and providing elastic extrusion. The storage layer is used for storing micro-flow fluid. The channel layer is positioned below the storage layer, communicates with the storage layer and is used for transporting fluid and interacting with an external microflow driving system. According to the complex microfluid pipeline composite structure based on the microfluid technology and the microfluid pattern deformation system, the structure has good flexibility and ductility and can be attached to the surfaces of many objects; the fluid can be filled in different forms, and different structures and forms can be presented in the pipeline; and various fluids can be allowed to flow into the pipeline, each fluid is controlled to flow into or out of the storage layer with the specific microflow pattern from the channel layer, and different use benefits can be achieved through the combination of different fluids staying in the channel layer and the storage layer.

Description

technical field [0001] The invention belongs to the field of microfluid technology, and more specifically, relates to a complex microfluid pipeline composite structure and a microfluidic pattern deformation system based on microfluidic technology, so that the passing microfluid can fill different parts of the structure to achieve different microfluidics Pattern conversion. Background technique [0002] In recent years, with the rapid development of general-purpose flexible materials, many unique properties exhibited by general-purpose flexible materials, such as softness, deformation, thinness, and good biocompatibility, have been widely used in biology, chemistry, medicine, electronics, etc. field. In the field of microfluidics, great progress has also been made in the past few years, with numerous applications including flexible displays, flexible sensors, flexible actuators, and the development of integrated platforms with hybrid sensing and actuation mechanisms. Microf...

Claims

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Application Information

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IPC IPC(8): F15C4/00B01L3/00
CPCF15C4/00B01L3/5027B01L3/50273B01L2200/027B01L2300/0861B01L2300/0887B01L2300/123
Inventor 田丰孙伟陈彦君詹思农韩腾杨兴东王宏安
Owner INST OF SOFTWARE - CHINESE ACAD OF SCI
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