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Here, you&#x27;ll find everything from application ideas, to news and industry trends, to hot topics and cutting edge innovations.&#x3c;&#x2f;p&#x3e;]]></description><copyright>Copyright 2026</copyright><pubDate>Sun, 09 Oct 2016 04:00:00 EST</pubDate><generator>https&#x3a;&#x2f;&#x2f;cr4.globalspec.com</generator><item><title><![CDATA[Plastic Materials Making Flight Light]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27650&#x2f;Plastic-Materials-Making-Flight-Light&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[Machinable engineering plastics have been used in aerospace applications for over 40 years. Nylon and acetal materials have routinely been used as wear surfaces, rub strips, brackets, grommets, and fasteners in areas where environmental and performance issues met the capability of the polymer.&#xa;&#xa;Whil]]></description><pubDate>Sun, 09 Oct 2016 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27650&#x2f;Plastic-Materials-Making-Flight-Light]]></guid><dc:creator>QGuy</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Raygun Guitar Makes Music with Quadrant Techtron&#xae; HPV PPS]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27614&#x2f;Raygun-Guitar-Makes-Music-with-Quadrant-Techtron-HPV-PPS&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[For decades, luthiers &#x28;individuals who make or repair string instruments generally consisting of a neck and a sound box&#x29; have been searching for the perfect material for their guitar nuts. The nut is part of a tremolo system, allowing guitarists to press a lever to loosen the instrument strings and]]></description><pubDate>Sun, 25 Sep 2016 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27614&#x2f;Raygun-Guitar-Makes-Music-with-Quadrant-Techtron-HPV-PPS]]></guid><dc:creator>QGuy</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[BPA Substitute Triggers Similar Endocrine-Disrupting Effect]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27137&#x2f;BPA-Substitute-Triggers-Similar-Endocrine-Disrupting-Effect&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[&#x22;BPA-free&#x22; products might not be as safe as you think. Researchers at the Environmental Health&#xd; Science and Research Bureau in Canada have found that&#xd; a common substitute for bisphenol A &#x28;BPA&#x29; has similar endocrine-disrupting&#xd; effects. The substitute - bisphenol S&#xd; &#x28;BPS&#x29; - was found to induce adipog]]></description><pubDate>Mon, 11 Apr 2016 15&#x3a;36&#x3a;54 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27137&#x2f;BPA-Substitute-Triggers-Similar-Endocrine-Disrupting-Effect]]></guid><dc:creator>Quasar</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Shape-shifting Polymer Both Strong and Sensitive]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27034&#x2f;Shape-shifting-Polymer-Both-Strong-and-Sensitive&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[Scientists at the University of Rochester have created a new shape-shifting polymer that reforms in response to the slightest touch, and at body heat temperatures - see it in action in this video.&#xd;  The material was created by controlling how molecular linkers are added&#xd;  in the crystallization proc]]></description><pubDate>Tue, 15 Mar 2016 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;27034&#x2f;Shape-shifting-Polymer-Both-Strong-and-Sensitive]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Gauging Green Composites]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;26684&#x2f;Gauging-Green-Composites&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[In an effort to quantify how &#x22;green&#x22; cellulose reinforced composites really are, a team based out of Imperial College London and University College London developed a life cycle assessment of BC- and NFC-reinforced epoxy composites. They were surprised to find some materials may not be as &#x22;green&#x22; a]]></description><pubDate>Sun, 22 Nov 2015 05&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;26684&#x2f;Gauging-Green-Composites]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Juice and Germs in 3D]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;25650&#x2f;Juice-and-Germs-in-3D&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[What do you get when you combine 3D printing, bacteria, and orange juice&#x3f; A synthetic material that can be used in both medical and non-medical applications. A team from London Biohackspace&#xd;  has found a means to create a genetically-modified version of bacteria &#xd; that can be turned on and off using]]></description><pubDate>Sat, 20 Dec 2014 05&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;25650&#x2f;Juice-and-Germs-in-3D]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Graphene Forges on to the Fold ]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;25400&#x2f;Graphene-Forges-on-to-the-Fold&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[In what they&#x27;re calling a method that will pave the way for the future of fully foldable displays,&#xd;  scientists from the University of Cambridge Graphene Centre and the &#xd; UK-based company Plastic Logic have developed a flexible screen that &#xd; uses graphene in the mix. The display uses a small amount]]></description><pubDate>Thu, 16 Oct 2014 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;25400&#x2f;Graphene-Forges-on-to-the-Fold]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Television in a Tube ]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;25058&#x2f;Television-in-a-Tube&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[Remember when your television was literally a tube&#x3f; Now, that same TV &#xd; could come rolled up in one. Researchers at the U.S. Department of &#xd; Energy&#x27;s Argonne National Laboratory have taken another step closer in &#xd; the quest for a truly flexible TV screen by creating the world&#x27;s &#xd; thinnest flexible s]]></description><pubDate>Sun, 03 Aug 2014 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;25058&#x2f;Television-in-a-Tube]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[Electrical Self Storage from Coated Cables]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;24995&#x2f;Electrical-Self-Storage-from-Coated-Cables&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[A breakthrough in electrical storage is coming from the University&#xd;  of Central Florida. The researchers developed a process for storing electricity w]]></description><pubDate>Sat, 19 Jul 2014 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;24995&#x2f;Electrical-Self-Storage-from-Coated-Cables]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item><item><title><![CDATA[A Sticky Solution]]></title><link><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;24798&#x2f;A-Sticky-Solution&#x3f;from_rss&#x3d;1]]></link><description><![CDATA[Using the gecko as their inspiration, a team from the &#xd; University of Massachusetts at Amherst has devised a new material that can stick &#xd; and release repeatedly. They&#x27;re calling it Geckskin, &#xd; and it has the ability to stick to virtually &#xd; any surface. Rather than just using the tiny hairs of the g]]></description><pubDate>Thu, 05 Jun 2014 04&#x3a;00&#x3a;00 EST</pubDate><guid><![CDATA[https&#x3a;&#x2f;&#x2f;cr4.globalspec.com&#x2f;blogentry&#x2f;24798&#x2f;A-Sticky-Solution]]></guid><dc:creator>Engineering360 eNewsletter</dc:creator><dc:subject>Plastics &#x26; Resins Blog</dc:subject></item></channel></rss>