For a better way to safeguard your spacecraft’s passive thermal control system, think beyond paint—think DUN-DIFFUSE White Kapton® Film. Designed to interact strongly with other materials, DUN-DIFFUSE has a high surface energy that gives it a greater capacity to form bonds with adhesives, coatings, and other surfaces. With a ratio a/e lower than other Kapton® films, DUN-DIFFUSE is kept as a stable, “cold” surface—a highly protective outer layer for MLI or as Radiator SSM. Find out more: https://lnkd.in/gdaiNBQd
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For a better way to safeguard your spacecraft’s passive thermal control system, think beyond paint—think DUN-DIFFUSE White Kapton® Film. Designed to interact strongly with other materials, DUN-DIFFUSE has a high surface energy that gives it a greater capacity to form bonds with adhesives, coatings, and other surfaces. With a ratio a/e lower than other Kapton® films, DUN-DIFFUSE is kept as a stable, “cold” surface—a highly protective outer layer for MLI or as Radiator SSM. Find out more: https://lnkd.in/gdaiNBQd
DUNMORE Introduces DUN-DIFFUSE™ White Kapton® Polyimide Film
einpresswire.com
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When it comes to NdFeB (neodymium) magnets, choosing the right coating is crucial for optimizing performance and ensuring longevity. Here’s a quick guide to the various coatings available, along with their properties and applications: Selecting the right coating can significantly impact the performance and durability of your NdFeB magnets. Whether you need superior corrosion resistance, high temperature tolerance, or specific aesthetic properties, there’s a coating option that fits your needs. Let's connect and discuss how we can help you choose the best solution for your application! 🌟 #NdFeB #Magnets #Engineering #MaterialsScience #Coatings #Magnetics #IndustrialEngineering #ProductDesign
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Seon-Chil Kim et al. Verification of Optimal X-Ray Shielding Properties Based on Material Composition and Coating Design of Shielding Materials
Verification of Optimal X-Ray Shielding Properties Based on Material Composition and Coating Design of Shielding Materials
mdpi.com
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A revolutionary PVD Arc technology delivering unmatched performance and results 📈 The Advanced Arc Technology (AAT) integrated into the new INVENTA platform brings unparalleled versatility through the perfectly tuned interaction between the high-end arc source design, a quickly adjustable electromagnetic field, and an innovative trigger design. ✅ High-end Arc Source Design … allows for a wide variety of target materials, significantly improved coating uniformity and efficiency. With no moving parts, it ensures stability. ✅ Quickly Adjustable Electromagnetic Field … enables different target materials in one target (bi-material target), maximum target utilization (up to 60%), supports different coating structures, and ensures reproducible coating quality through controlled discharge voltage. ✅ New Trigger Design … delivers a high trigger frequency for multi- and nano-layer coatings, is maintenance-free with minimal wear, and its optimized position prevents droplets from reaching the substrate. Experience higher productivity, uniform and high-quality coatings, and reduced operational costs – all with the exceptional performance of the new INVENTA systems.
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💨The production process of blown film #GEOMEMBRANE is a three-layer co-extrusion #blow molding production method. 🌟The production process is to feed the raw materials into the die head of the blow molding machine through three heating #screws, where they are heated and melted into a melt. 🌟The melt is #extruded out of the die head under pressure and forms a cylindrical shape at the die head. the compressed air is blown upward through the die head to form a film bubble of a certain diameter, which is #stretched upward and cooled by the traction roller to form a #geomembrane. 🌟After curling and extending downward, the geomembrane is stretched through the film expansion frame and finally rolled into a #roll. 🔥The advantages of the blow molding process are #uniform thickness of the geomembrane, high #tensile strength, and stable membrane quality. JUSNEHNG- Ivy +86-19329049376 junsheng@plasmm.com
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𝗦𝗲𝘁𝘁𝗶𝗻𝗴𝘀 𝗼𝗻 𝗼𝘂𝗿 𝗻𝗲𝘄 𝗰𝗿𝗶𝗺𝗽𝗶𝗻𝗴 𝗮𝗽𝗽𝗹𝗶𝗰𝗮𝘁𝗼𝗿𝘀! Our new crimping applicators impress with numerous innovations in function, design, and application. These various enhancements offer advantages for work preparation and the setup of crimping machines, making it easier and faster to achieve high precision in cable production. In the development of these new crimping applicators, our extensive experience played a significant role, allowing us to further optimize common functions for even easier operation. The following settings can be adjusted on the applicators: 1. Height of the wire crimp 2. Height of the insulation crimp 3. Size of the crimp trumpet determined by the longitudinal position of the terminal to the anvil 4. Position of the feed finger for reliable transport of the terminal strip 5. Symmetry of the crimp determined by the transverse position of the terminal to the anvil 6. Length of the terminal feed according to the pitch of the strip More information about our new applicators: https://lnkd.in/exjH8e3k #SchaeferGruppe #SchaeferProduct #crimping #crimptechnik #wireharness #kabelverarbeitung #wireprocessing #kabelproduktion #cableproduction #automotive #automotiveindustry #automobilindustrie #medicalindustry #medizintechnik
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ANP380 Flat Membrane Pressure Transmitter 📍Anti-interference 📍Anti-surge protection 📍Multiple signal outputs 📍Optional 316L stainless steel isolation diaphragm 📍Integrated design with high static pressure resistance 📍Strong overload resistance 📍Hygienic type 📍Anti-scaling 📍Anti-clogging #sensor #transmitter #transducer #pressuresensor #leveltransmitter #flowgauge #flowmeter #measurement
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Thin film deposition techniques like Thermal evaporation, Electron beam evaporation, and sputtering that are used in glass coatings, display coatings, optical coatings and decorative coatings face challenges in obtaining the ideal vacuum pumps to manage the harsh process and delivering the best ultimate pressures. The Edwards E2M series two-stage oil-sealed rotary vane vacuum pumps have been synonymous with the coating industry. They are renowned for obtaining high ultimate vacuum, rapid pumping speeds, quiet operation, and managing vapours. No wonder these pumps are the trusted pumps of choice in the thin film coating industry. To know more about the Edwards E2M series, https://bit.ly/3Pnw7JN #oilsealed #edwardsvacuum #coating #glass #optical #display #vacuumpumps
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Learn more about this series at the link!
Thin film deposition techniques like Thermal evaporation, Electron beam evaporation, and sputtering that are used in glass coatings, display coatings, optical coatings and decorative coatings face challenges in obtaining the ideal vacuum pumps to manage the harsh process and delivering the best ultimate pressures. The Edwards E2M series two-stage oil-sealed rotary vane vacuum pumps have been synonymous with the coating industry. They are renowned for obtaining high ultimate vacuum, rapid pumping speeds, quiet operation, and managing vapours. No wonder these pumps are the trusted pumps of choice in the thin film coating industry. To know more about the Edwards E2M series, https://bit.ly/3Pnw7JN #oilsealed #edwardsvacuum #coating #glass #optical #display #vacuumpumps
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Did you know cladding alignment emerges as a valuable technique which stands out as a cost-effective technique for certain applications, combining speed and simplicity. For projects that do not require the highest level of precision, cladding alignment splicers such as the M7+ and View 3X provide a quick and easy method. These splicers are less expensive than core alignment models, making them ideal for cost-sensitive projects. Cladding alignment splicers are a practical and economical choice for working in situations where ultimate precision is not critical. Opt for the cost-effective performance of our M7+ and View 3X splicers to enhance your projects affordably without sacrificing quality. More: #INNOInstrument #FusionSplicer #CladdingAlignment #FiberOptics #Innovation #SmartTechnology
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