Saurer #Fibrevision: Synthetic yarn monitoring. For DTY, IDY, BCF and POY processes. Presented at #ITMAAsia 2024 on #booth A55 in #hall 8. Saurer's aim is to guarantee yarn quality in synthetic yarn production from the start of the process to the final package. Fibrevision has developed #QualityMonitoring and #GradingSystems for yarn to minimise waste and maximise quality by detecting and recording every single yarn fault. Quality data is recorded several times per second to optimise production and improve quality. Quality monitoring is equally beneficial for both standard melt spinning processes and the use of recycled synthetic fibres. With the increasing use of #recycled material for synthetic fibres, quality monitoring and grading materials is becoming increasingly important as unpredictable defects occur more often when processing recycled polymeric material. Fibrevision's #TotalQualitySystem TQS® covers a wide range of yarns from polymer spun materials such as #POY, #FDY yarns to texturized #DTY yarns. Depending on the application, industry and requirements, a variety of monitoring sensors are available, each with a specific use in mind: Saurer offers Unitens® tension sensors for monitoring DTY yarns, FraytecFV2® & Univis2® optical sensors for monitoring POY, FDY, IDY yarns and TQS® Spin Finish sensors for oil monitoring of POY, FDY yarns. Each sensor looks for specific quality defects such as broken filaments, interlace level, spin finish and yarn diameter variation. The Fibrevision systems are equally valuable when used for #online monitoring of each threadline on the machine, providing 100% real-time quality assurance. In addition, Saurer offers #offline monitoring for further laboratory sampling or #atline instruments for product development. Come and see Saurer's innovative synthetic yarn monitoring technology live at ITMA Asia 2024 from 14 to 18 October at #booth A55 in #hall 8. The Fibrevision experts Wayne Ashton and Tonney Dou will be at your service at the exhibition. #TextileInnovation #ITMAAsia2024 #CITME #FilamentSpinning #QualityMonitoring #TotalQualitySystem Pia Terasa , Wayne Ashton
Saurer Group’s Post
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Sinomech is launching a groundbreaking new machine at the current ChinaPlas Exhibition: the single-material carbon-calculating three-in-one solventless laminator. The model, A400H3-13S3, is the world's first production line suitable for single materials and features an on-line carbon emissions calculator in a three-in-one solventless production line. This innovative machine also offers quick substrate alignment, multi-layer step-by-step lamination, and suitability for stretchable single-material lamination. The introduction of this new concept will accelerate single-material lamination technology in the flexible packaging industry and promote carbon-neutrality progress, further elevating China's international standing in solventless technology. #Sinomech #ChinaPlas #NewConceptMachine #SingleMaterial #MonoMaterial #CarbonEmissionsCalculation #Solventless three-in-one #A400H3-13S3 #SingleMaterialLamination #MDOPE, #BOPE #FlexiblePackagingIndustry #CarbonNeutrality #InternationalStanding #Innovation #EcoFriendlyEquipment #IndustrialManufacturing #SustainableDevelopment #PackagingTechnology #MadeInChina #ExhibitionNewReleases Daisy +8617097631948 https://lnkd.in/gS7WT6pC
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New publication in JMMP MDPI! 🌟 📜 Analysis of the Embodied Energy of Different Grades of Injection-Molded Polypropylene 🎓 Authors Dr. Peng Gao from Western Washington University, Zarek Nieduzak, Dr. Joshua Krantz, Prof. Dr. Margaret Sobkowicz and Dr. Davide Masato from University of Massachusetts Lowell This research investigates the correlation between polymer melt viscosity, tensile properties, and injection molding energy consumption for three grades of polypropylene: a virgin grade, a recycled grade, and a modified recycled grade. Read the full article here: 🔗https://lnkd.in/e6f8Tqv8 #injection #molding #sustainable #manufacturing #recycled #materials
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"Unveiling UniSort Finealyse+: Join us at IFAT 2024 for a discussion on enhancing your sorting process with our latest innovations!" #plasticFlakes #WasteRecycling #IFAT2024
With 𝗨𝗻𝗶𝗦𝗼𝗿𝘁 𝗙𝗶𝗻𝗲𝗮𝗹𝘆𝘀𝗲+ we present an enhanced version of our established sensor sorting system for high-precision fine sorting. This new product has been specially developed for the processing of plastic flakes and the sorting of metal fines between 4 and 30 mm. Thanks to numerous innovations, UniSort Finealyse+ achieves even better product purity with increased throughput. You benefit from: 👉 Sensor fusion of high resolution NIR and colour camera technology for maximum detection 👉 Auto white balance for continuous calibration 👉 Split function for simultaneous sorting processes on one machine Visit our stand at IFAT 2024 in Munich (Hall B6, Stand 451/550) from 13 to 17 May to find out more about the wide range of applications and how you can achieve high flexibility and product purity with minimal material loss. Read the entire news here: https://lnkd.in/g7WKFDEx #CircularEconomy #MetalRecycling #WasteRecycling #PlasticFlakes #MetalFines
UniSort Finealyse+ with sensor fusion and split functionality for precise fines detection and simultaneous sorting processes
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🌟 **Introducing the Next Generation of PU Liquid Droplets** 🌟 We're thrilled to showcase our latest innovation in material science – the PU Liquid Droplets, designed for precision applications and superior performance. Here's why you should be excited: 🔬 **Precision Engineering**: Our PU liquid droplets are crafted with meticulous engineering, ensuring each droplet is a perfect encapsulation of technology and potential. 🌈 **Versatility**: These droplets are not just a product; they're a new dimension in fluid dynamics, ready to be integrated into a variety of applications, from coatings to adhesives, and beyond. 💎 **Durable and Reliable**: Built to last, our PU liquid droplets stand up to the test of time, ensuring your projects maintain their integrity through various environmental conditions. 📹 **Watch Our Product in Action**: Join us on this journey of innovation by watching our product video. See the precision, the versatility, and the potential of our PU liquid droplets come to life. 🔗 https://lnkd.in/g3C6aeKi Let's shape the future together with our PU liquid droplets. For more information or to discuss how our product can elevate your projects, feel free to reach out. #Innovation #MaterialScience #PULiquidDroplets #PrecisionEngineering #NextGenTech --- Feel free to adjust the hashtags and links according to your specific needs. This copy is designed to be engaging and informative, giving potential clients a glimpse into the benefits and applications of your PU liquid droplets.
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🌐 Immerse yourself in the polymer world with PolyMart! 📈 Stay ahead with the latest price updates and breaking news from the polymer industry. 🌟 Your ultimate source for all things polymer-related! Contact us today- 📞 +91 63571 11121 📧 info@polymart.in #PolyMart #PolymerMarketUpdates #EthylenePrices #NortheastAsia #SoutheastAsia #GlobalTrade #EconomicTrends #MarketAnalysis #IndustrialNews #MarketFluctuations #BusinessNews #TradeUpdates
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On this day in science Waldo Semon was born Semon who invented plasticized PVC (vinyl), while seeking a synthetic adhesive. In 1926, he discovered how to make hard, unworkable polyvinyl chloride pliable, by heating it in a solvent at high temperature. It is now used in hundreds of products such as floor tile, imitation leather, garden hose, shower curtains, and coatings. It is second only to polyethylene plastic in quantity manufactured. Semon’s other pioneering contributions to polymer science, included new rubber antioxidants. Also, his technical leadership led to discovery of three major new polymer families: thermoplastic polyurethane, synthetic “natural” rubber, and oil-resistant synthetic rubbers. Semon held 116 U.S. patents. #science #scienceandtechnology #chemistry #organicchemistry #organicsynthesis #pharma #plastics #plasticsindustry
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📄✨Our latest 𝑹𝒆𝒔𝒆𝒂𝒓𝒄𝒉 𝒑𝒂𝒑𝒆𝒓 is in press now! * Have you ever wondered that the commonly used 𝒑𝙡𝒂𝙨𝒕𝙞𝒄 𝒇𝙤𝒐𝙙 𝙥𝒓𝙤𝒅𝙪𝒄𝙩𝒔 can leak out micro and nano plastics directly into our bodies? 🔍 Kᴇʏ Fɪɴᴅɪɴɢs: * 🫧 Herin we have found that a 𝒄𝙝𝒆𝙬𝒊𝙣𝒈 𝒈𝙪𝒎 can potentially leak 𝟏/𝟒 𝐦𝐢𝐥𝐥𝐢𝐨𝐧 of small microplastics within an hour of chewing activity. * 🔬 To fabricate the optical sensors in a cost-effective manner, we used 𝕮𝖔𝖕𝖕𝖊𝖗 𝖙𝖆𝖕𝖊, commonly used in repelling the slugs away from a plant!! 🔗 R͟e͟a͟d͟ ͟t͟h͟e͟ ͟f͟u͟l͟l͟ ͟p͟a͟p͟e͟r͟ ͟h͟e͟r͟e͟: [https://lnkd.in/eDvQ9dc8] #Research #Innovation #Science #Technology #Microplastics #Nanoplastics #Sustainability #EnvironmentalScience #RamanSpectroscopy #LinkedInResearch #ChewingGum #MONPLAS
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The unveiling of the Minderoo Centre's specialised #cleanroom marks a significant milestone in the fight against #microplastics and #plastic additive contamination. This state-of-the-art facility was designed with meticulous attention to detail and represents a leap forward in our ability to conduct research with minimal background interference. As such, our team is very proud to present the Minderoo Centre - Plastics and Human Health plastics minimised laboratory: https://lnkd.in/gevR8DbF The collaborative effort, with architects m3architecture and incredible support from the Minderoo Foundation, showcases the power of collective action in addressing environmental challenges. This clean lab, which has become affectionately known as the 'submarine' is not just a laboratory; it pushes the boundaries of what's possible in plastics and human health research, and deepens our understanding of critical issue of plastic and plastic additive contamination. We truly hope that this clean lab and our dedicated team will help pave the way for more accurate and reliable data, driving forward our understanding of microplastics' impact on #health and the #environment. #Microplastics #Cleanroom #Innovation #Sustainability #OpenAccess #EnvironmentalResearch
Ever wondered what a purpose built #microplastics and #plastics additives #cleanroom looks like? Does it actually make a difference in controlling background contamination? Introducing the Minderoo Centre -Plastics and Human Health plastics minimised laboratory: https://lnkd.in/gevR8DbF After a year of planning with leading architects m3architecture, testing 23 different construction materials to find #microplastics and #phthalate free materials, and support from the Minderoo Foundation, we designed, built and tested the first clean lab of its kind. Affectionately named the submarine by the team (including Xianyu Wang, Ian Zammit, Kevin Thomas, Jochen Mueller, Nathan Charlton, Ayomi Jayarathne, Julia Chun-Yin Lin, Cheng (Ken) Tang) the new lab reduces background contamination of both #microplastics and #phthalates by up to 100 times as compared to a regular PC2 laboratory. The fact that we can still detect background contamination in this lab demonstrates how important it is for all #microplastics studies to be reporting #blank control data. To help encourage this, the manuscript and lab blueprint are all #openaccess! Enjoy.
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Innovation through collaboration is how great things start.
📢 Deltech is proud to share a recent publication! 📢 Led by Deltech Monomers Technology, a team of scientists from three organizations collaborated on a novel study of substituted styrenic monomers in CASE emulsions. The link below will take you to the publication. Our Deltech Monomers Sales and Customer Service colleagues are eager to answer your questions. https://loom.ly/qmv6olo
Substituted Styrenic Monomers
pcimag.com
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Ever wondered what a purpose built #microplastics and #plastics additives #cleanroom looks like? Does it actually make a difference in controlling background contamination? Introducing the Minderoo Centre -Plastics and Human Health plastics minimised laboratory: https://lnkd.in/gevR8DbF After a year of planning with leading architects m3architecture, testing 23 different construction materials to find #microplastics and #phthalate free materials, and support from the Minderoo Foundation, we designed, built and tested the first clean lab of its kind. Affectionately named the submarine by the team (including Xianyu Wang, Ian Zammit, Kevin Thomas, Jochen Mueller, Nathan Charlton, Ayomi Jayarathne, Julia Chun-Yin Lin, Cheng (Ken) Tang) the new lab reduces background contamination of both #microplastics and #phthalates by up to 100 times as compared to a regular PC2 laboratory. The fact that we can still detect background contamination in this lab demonstrates how important it is for all #microplastics studies to be reporting #blank control data. To help encourage this, the manuscript and lab blueprint are all #openaccess! Enjoy.
Blueprint for the design, construction, and validation of a plastic and phthalate-minimised laboratory
sciencedirect.com
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