Invention Grant
US08475616B2 Reactors for forming foam materials from high internal phase emulsions, methods of forming foam materials and conductive nanostructures therein
有权
用于从高内相乳液形成泡沫材料的反应器,其中形成泡沫材料的方法和导电纳米结构
- Patent Title: Reactors for forming foam materials from high internal phase emulsions, methods of forming foam materials and conductive nanostructures therein
- Patent Title (中): 用于从高内相乳液形成泡沫材料的反应器,其中形成泡沫材料的方法和导电纳米结构
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Application No.: US12794693Application Date: 2010-06-04
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Publication No.: US08475616B2Publication Date: 2013-07-02
- Inventor: Wilmot H. McCutchen
- Applicant: Wilmot H. McCutchen
- Applicant Address: US OR Portland
- Assignee: McCutchen Co.
- Current Assignee: McCutchen Co.
- Current Assignee Address: US OR Portland
- Agency: Marger Johnson & McCollom, P.S.
- Main IPC: B65H69/02
- IPC: B65H69/02 ; C08J9/00

Abstract:
An RF inductor such as a Tesla antenna splices nanotube ends together to form a nanostructure in a polymer foam matrix. High Internal Phase Emulsion (HIPE) is gently sheared and stretched in a reactor comprising opposed coaxial counter-rotating impellers, which parallel-align polymer chains and also carbon nanotubes mixed with the oil phase. Stretching and forced convection prevent the auto-acceleration effect. Batch and continuous processes are disclosed. In the batch process, a fractal radial array of coherent vortices in the HIPE is preserved when the HIPE polymerizes, and helical nanostructures around these vortices are spliced by microhammering into longer helices. A disk radial filter produced by the batch process has improved radial flux from edge to center due to its area-preserving radial vascular network. In the continuous process, strips of HIPE are pulled from the periphery of the reactor continuously and post-treated by an RF inductor to produce cured conductive foam.
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