An innovative method of die design and evaluation of flow balance for thermoplastics extrusion profiles.(Report): An article from: Polymer Engineering and Science Buy on Amazon
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An innovative method of die design and evaluation of flow balance for thermoplastics extrusion profiles.(Report): An article from: Polymer Engineering and Science

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Book Details
ISBN / ASIN B0030XRSPY
ISBN-13 978B0030XRSP9
Marketplace France 🇫🇷
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Description
This digital document is an article from Polymer Engineering and Science, published by Society of Plastics Engineers, Inc. on September 1, 2009. The length of the article is 3482 words. The page length shown above is based on a typical 300-word page. The article is delivered in HTML format and is available immediately after purchase. You can view it with any web browser.

From the author: In this article, a computational and experimental method for flow balancing of a U-shaped die profile with nonuniform thicknesses is presented. The approach was to implement a flow restricting mechanism along the melt flow path. A parametric study based on the restrictor dimensions was carried out to attain a preliminary optimal design. Simulations were performed using Fluent software to analyze the flow velocity at the die exit. Experimental study was then carried out at various restrictor positions for the purpose of attaining a desirable flow balance. The velocity at various segments of the die exit was measured utilizing an innovative procedure by implementing the "separating blades." Experimental findings were compared with those of simulations which showed an acceptable agreement. The results suggest that a flexible die can be designed to achieve a flow balance under various processing conditions. POLYM. ENG. SCI., 49:1793-1799, 2009. [c] 2009 Society of Plastics Engineers

Citation Details
Title: An innovative method of die design and evaluation of flow balance for thermoplastics extrusion profiles.(Report)
Author: Abbas Zolfaghari
Publication:Polymer Engineering and Science (Magazine/Journal)
Date: September 1, 2009
Publisher: Society of Plastics Engineers, Inc.
Volume: 49 Issue: 9 Page: 1793(7)

Article Type: Report

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