<?xml version="1.0" encoding="UTF-8"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom">
<channel>
  <title>e-sygoing.link — Spinning Technology</title>
  <link>https://e-sygoing.link</link>
  <description>Latest links in the Spinning Technology category</description>
  <language>en-us</language>
  <lastBuildDate>Wed, 27 May 2026 14:21:11 -0400</lastBuildDate>
  <atom:link href="https://e-sygoing.link/rss.php?type=new&amp;cid=82630"
             rel="self" type="application/rss+xml"/>
    <item>
    <title>Melt Spinning</title>
    <link>https://e-sygoing.link/link/5519775-melt-spinning</link>
    <description>Report of a laboratory project in melt spinning of polymers, co-polymers and blends into fiber for yarn manufacture and nonwovens. Flow charts. Basic equations. From the Institute for Polymer Research Dresden. Authors: Prof. Dr. Roland Beyreuther and others.</description>
    <pubDate>Wed, 06 May 2026 08:58:19 -0400</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519775</guid>
  </item>
    <item>
    <title>Processing, Structure and Property Studies of Submicron Fibers Produced By Electrospinning. 4</title>
    <link>https://e-sygoing.link/link/5519795-processing-structure-and-property-studies-of-submicron-fiber</link>
    <description>Second chapter of Pankaj Gupta&#039;s doctoral thesis about electrospinning of polymeric fibers, exploring the relationships between fiber formation, viscosity, molecular weight and concentration in a solvent.</description>
    <pubDate>Thu, 26 Feb 2026 05:37:31 -0500</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519795</guid>
  </item>
    <item>
    <title>Processing, Structure and Property Studies of Submicron Fibers Produced By Electrospinning. 8</title>
    <link>https://e-sygoing.link/link/5519799-processing-structure-and-property-studies-of-submicron-fiber</link>
    <description>Sixth chapter of Pankaj Gupta&#039;s doctoral thesis about electrospinning of polymeric fibers, focusing on the examination of the effect of electrospinning on inducing charges of different polarity on two electrically dissimilar polymers, and determine the effect of three types of electrospun nonwoven web constructions on the charge retention and filtration properties of the resulting nanofibers.</description>
    <pubDate>Wed, 28 Jan 2026 15:19:45 -0500</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519799</guid>
  </item>
    <item>
    <title>An Internet-Accessible Software Package for Modelling Viscoelastic Flow</title>
    <link>https://e-sygoing.link/link/5519784-an-internet-accessible-software-package-for-modelling-viscoe</link>
    <description>Extensive article focusing on research and development of a web-based C++ software package which numerically models viscoelastic flow in polymer processing. Authors: J. Barr von Oehsen and others.</description>
    <pubDate>Thu, 04 Dec 2025 18:00:25 -0500</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519784</guid>
  </item>
    <item>
    <title>Visco-Elastic Models for Fiber Spinning</title>
    <link>https://e-sygoing.link/link/5519778-visco-elastic-models-for-fiber-spinning</link>
    <description>Master thesis about a visco-elastic model for polymer fiber spinning, the development of simulation software based on the model, and an analyzation of the effects of elasticity, air drag, gravity, cooling and viscosity changes on the spinning process. Author: Anna Choumilina.</description>
    <pubDate>Fri, 15 Aug 2025 11:52:52 -0400</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519778</guid>
  </item>
    <item>
    <title>Simulation of the Fiber Spinning Process</title>
    <link>https://e-sygoing.link/link/5519786-simulation-of-the-fiber-spinning-process</link>
    <description>Technical paper describing a fiber model coupled with CFD calculations of the quench air flow, used to simulate the influence of process parameters to the melt spinning process. Authors: T. Goetz and others.</description>
    <pubDate>Sun, 10 Aug 2025 04:51:44 -0400</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519786</guid>
  </item>
    <item>
    <title>Processing, Structure and Property Studies of Submicron Fibers Produced By Electrospinning. 7</title>
    <link>https://e-sygoing.link/link/5519798-processing-structure-and-property-studies-of-submicron-fiber</link>
    <description>Fifth chapter of Pankaj Gupta&#039;s doctoral thesis about electrospinning of polymeric fibers, investigating the possibilities of manufacturing bi-component fibers.</description>
    <pubDate>Mon, 28 Apr 2025 04:09:11 -0400</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519798</guid>
  </item>
    <item>
    <title>A Study of Spin Finish Application on a Fiber</title>
    <link>https://e-sygoing.link/link/5519801-a-study-of-spin-finish-application-on-a-fiber</link>
    <description>Scientific dissertation on the understanding of wetting phenomena on cylindrically symmetrical objects, important for spin finish applications in the man-made fiber industry. Author: Eunkyoung Shim.</description>
    <pubDate>Thu, 06 Feb 2025 05:53:41 -0500</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519801</guid>
  </item>
    <item>
    <title>Processing, Structure and Property Studies of Submicron Fibers Produced By Electrospinning. 1</title>
    <link>https://e-sygoing.link/link/5519792-processing-structure-and-property-studies-of-submicron-fiber</link>
    <description>Title page of a Doctor of Philosophy thesis on electrospinning of polymeric fibers. Author: Pankaj Gupta.</description>
    <pubDate>Sun, 29 Dec 2024 16:42:50 -0500</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519792</guid>
  </item>
    <item>
    <title>Processing, Structure and Property Studies of Submicron Fibers Produced By Electrospinning. 6</title>
    <link>https://e-sygoing.link/link/5519797-processing-structure-and-property-studies-of-submicron-fiber</link>
    <description>Fourth chapter of Pankaj Gupta&#039;s doctoral thesis about electrospinning of polymeric fibers, presenting the results of an investigation into the creation of a flexible superparamagnetic substrate by incorporating nano-sized ferrite particles of Mn-Zn-Ni into polyester based segmented polyurethane via electrospinning.</description>
    <pubDate>Fri, 20 Sep 2024 17:23:56 -0400</pubDate>
    <guid isPermaLink="false">https://e-sygoing.link/go/5519797</guid>
  </item>
  </channel>
</rss>
