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๐“๐จ๐๐š๐ฒ'๐ฌ ๐Š๐๐Ž๐–๐‹๐„๐ƒ๐†๐„ ๐’๐ก๐š๐ซ๐ž๐Ÿ” ๐ˆ๐ง ๐’๐ž๐š๐ซ๐œ๐ก ๐จ๐Ÿ ๐ญ๐ก๐ž ๐๐ž๐ซ๐Ÿ๐ž๐œ๐ญ ๐’๐œ๐ซ๐ž๐ฐ: ๐“๐ก๐ž ๐Œ๐ฒ๐ญ๐ก ๐จ๐Ÿ ๐ญ๐ก๐ž “๐Ž๐ง๐ž-๐…๐ข๐ญ๐ฌ-๐€๐ฅ๐ฅ” ๐’๐จ๐ฅ๐ฎ๐ญ๐ข๐จ๐ง ๐ŸŒ€

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๐“๐จ๐๐š๐ฒ'๐ฌ ๐Š๐๐Ž๐–๐‹๐„๐ƒ๐†๐„ ๐’๐ก๐š๐ซ๐ž ๐Ÿ” ๐ˆ๐ง ๐’๐ž๐š๐ซ๐œ๐ก ๐จ๐Ÿ ๐ญ๐ก๐ž ๐๐ž๐ซ๐Ÿ๐ž๐œ๐ญ ๐’๐œ๐ซ๐ž๐ฐ: ๐“๐ก๐ž ๐Œ๐ฒ๐ญ๐ก ๐จ๐Ÿ ๐ญ๐ก๐ž “๐Ž๐ง๐ž-๐…๐ข๐ญ๐ฌ-๐€๐ฅ๐ฅ” ๐’๐จ๐ฅ๐ฎ๐ญ๐ข๐จ๐ง ๐ŸŒ€ In injection molding, the screw is not just a mechanical part hidden inside the barrel – it is the true heart of the process. Without the right screw, even the best machine and mold cannot deliver consistent quality. So what makes screws so important? ⚙️ Design matters – A typical screw has three main zones: Feed zone: transports and begins heating the material. Compression zone: melts and homogenizes the polymer. Metering zone: ensures stable flow and consistent melt quality. ๐Ÿงฉ Material choice is critical – Screws are exposed to high pressure, friction, and chemical attack. That’s why different alloys, coatings, and surface treatments (like nitriding, bimetallic linings, or special wear-resistant steels) are used to extend their lifetime. ♻️ Performance impact – The right screw design...

Today's KNOWLEDGE ShareHistorical Perspective: The Role of Artillery Fuses at Gettysburg

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Today's KNOWLEDGE Share Historical Perspective: The Role of Artillery Fuses at Gettysburg    Nineteenth-Century cannon shells were often hollow iron balls packed with gunpowder. When the gun fired, a fuse in the shell ignited. When its flame reached the gunpowder charge, the ball would usually explode, showering the vicinity with metal shards. These products were the engineered materials of their day, relying on predictable and consistent burn rates. In theory, the gunners would cut the fuse to the appropriate length, based on the estimated range to their target and the mussel velocity of their gun. In practice, the procedures were governed by tables and rules of thumb derived from the experience of each gun crew with the supplies available to them. During the American Civil War (1861-5), fuses for Robert E. Lee’s Army of Northern Virginia were sourced from the Richmond Armory. However, in March of 1863, this facility suffered a devastating explosion and fire, curt...

๐“๐จ๐๐š๐ฒ'๐ฌ ๐Š๐๐Ž๐–๐‹๐„๐ƒ๐†๐„ ๐’๐ก๐š๐ซ๐ž : ๐—›๐˜†๐—ฝ๐—ฒ๐—ฟ๐—ฃ๐—˜๐—ง ๐ข๐ฌ ๐ญ๐ก๐ž ๐จ๐ง๐ฅ๐ฒ ๐ฆ๐ž๐œ๐ก๐š๐ง๐ข๐œ๐š๐ฅ ๐๐„๐“ ๐ฎ๐ฉ๐œ๐ฒ๐œ๐ฅ๐ข๐ง๐  ๐ฌ๐ฒ๐ฌ๐ญ๐ž๐ฆ ๐ญ๐ก๐š๐ญ ๐ฉ๐ž๐ซ๐Ÿ๐จ๐ซ๐ฆ๐ฌ ๐ญ๐ก๐ž ๐ž๐ง๐ญ๐ข๐ซ๐ž ๐—ฆ๐—ผ๐—น๐—ถ๐—ฑ ๐—ฆ๐˜๐—ฎ๐˜๐—ฒ ๐—ฃ๐—ผ๐—น๐˜†๐—ฐ๐—ผ๐—ป๐—ฑ๐—ฒ๐—ป๐˜€๐—ฎ๐˜๐—ถ๐—ผ๐—ป (๐—ฆ๐—ฆ๐—ฃ) ๐ฉ๐ก๐š๐ฌ๐ž ๐—ฏ๐—ฒ๐—ณ๐—ผ๐—ฟ๐—ฒ ๐—ฒ๐˜…๐˜๐—ฟ๐˜‚๐˜€๐—ถ๐—ผ๐—ป.

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๐“๐จ๐๐š๐ฒ'๐ฌ ๐Š๐๐Ž๐–๐‹๐„๐ƒ๐†๐„ ๐’๐ก๐š๐ซ๐ž ๐—›๐˜†๐—ฝ๐—ฒ๐—ฟ๐—ฃ๐—˜๐—ง ๐ข๐ฌ ๐ญ๐ก๐ž ๐จ๐ง๐ฅ๐ฒ ๐ฆ๐ž๐œ๐ก๐š๐ง๐ข๐œ๐š๐ฅ ๐๐„๐“ ๐ฎ๐ฉ๐œ๐ฒ๐œ๐ฅ๐ข๐ง๐  ๐ฌ๐ฒ๐ฌ๐ญ๐ž๐ฆ ๐ญ๐ก๐š๐ญ ๐ฉ๐ž๐ซ๐Ÿ๐จ๐ซ๐ฆ๐ฌ ๐ญ๐ก๐ž ๐ž๐ง๐ญ๐ข๐ซ๐ž ๐—ฆ๐—ผ๐—น๐—ถ๐—ฑ ๐—ฆ๐˜๐—ฎ๐˜๐—ฒ ๐—ฃ๐—ผ๐—น๐˜†๐—ฐ๐—ผ๐—ป๐—ฑ๐—ฒ๐—ป๐˜€๐—ฎ๐˜๐—ถ๐—ผ๐—ป (๐—ฆ๐—ฆ๐—ฃ) ๐ฉ๐ก๐š๐ฌ๐ž ๐—ฏ๐—ฒ๐—ณ๐—ผ๐—ฟ๐—ฒ ๐—ฒ๐˜…๐˜๐—ฟ๐˜‚๐˜€๐—ถ๐—ผ๐—ป. This strategic choice – apparently simple – actually delivers concrete advantages on multiple levels. ✅ ๐—˜๐—ก๐—˜๐—ฅ๐—š๐—ฌ ๐—ฆ๐—”๐—ฉ๐—œ๐—ก๐—š๐—ฆ ๐—ง๐—›๐—ฅ๐—ข๐—จ๐—š๐—› ๐—” ๐—–๐—ข๐—ก๐—ฆ๐—œ๐—ฆ๐—ง๐—˜๐—ก๐—ง ๐—ง๐—›๐—˜๐—ฅ๐— ๐—”๐—Ÿ ๐—ฃ๐—ฅ๐—ข๐—š๐—ฅ๐—˜๐—ฆ๐—ฆ๐—œ๐—ข๐—ก. Positioning the SSP before extrusion allows the polymer to follow a ๐—ฐ๐—ผ๐—ต๐—ฒ๐—ฟ๐—ฒ๐—ป๐˜ ๐˜๐—ต๐—ฒ๐—ฟ๐—บ๐—ฎ๐—น ๐—ฝ๐—ฟ๐—ผ๐—ด๐—ฟ๐—ฒ๐˜€๐˜€๐—ถ๐—ผ๐—ป across all process phases: from the initial crystallization (>140°C), to the Solid State Polycondensation (>200°C), to extrusion (>250°C) and finally to the post-crystallization (~140°C) of the pellet - ๐˜ต๐˜ฉ๐˜ฆ ๐˜ฉ๐˜ฆ๐˜ข๐˜ต ๐˜ข๐˜ค๐˜ค๐˜ถ๐˜ฎ๐˜ถ๐˜ญ๐˜ข๐˜ต๐˜ฆ๐˜ฅ ๐˜ช๐˜ฏ ๐˜ฆ๐˜ข๐˜ค๐˜ฉ ๐˜ฑ๐˜ฉ๐˜ข๐˜ด๐˜ฆ ๐˜ช๐˜ด ๐˜ค๐˜ฐ๐˜ฏ๐˜ด๐˜ช๐˜ด๐˜ต๐˜ฆ๐˜ฏ๐˜ต๐˜ญ๐˜บ ๐˜ณ๐˜ฆ๐˜ถ๐˜ด๐˜ฆ๐˜ฅ ๐˜ช๐˜ฏ ๐˜ต๐˜ฉ๐˜ฆ ๐˜ฏ๐˜ฆ๐˜น๐˜ต ๐˜ฐ๐˜ฏ๐˜ฆ. Conversely, in conf...

๐‡๐ข๐ฆ๐š๐๐ซ๐ข ๐ญ๐จ ๐ฌ๐ž๐ญ ๐ฎ๐ฉ ๐œ๐š๐ซ๐›๐จ๐ง ๐ง๐š๐ง๐จ๐ญ๐ฎ๐›๐ž ๐ฆ๐š๐ง๐ฎ๐Ÿ๐š๐œ๐ญ๐ฎ๐ซ๐ข๐ง๐  ๐ฎ๐ง๐ข๐ญ

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Kolkata-based #HimadriSpecialityChemical may soon become the first company in India to set up a #carbonnanotube (CNT) manufacturing unit, said company’s CMD and CEO Anurag Choudhary. “We have successfully developed indigenous carbon nanotube (CNT) technology through our in-house innovation and R&D, marking another milestone in our innovation journey,” Choudhary said. “Backed by a planned capex of around Rs 70 crore, our upcoming 200 TPA (tonnes per annum) CNT facility, targeted for commissioning in Q4FY27 in Bengal, is expected to place Himadri among a small group of global manufacturers serving this high-growth market. This will be a pilot plant, and once stabilised, we will expand,” he said. Carbon nanotube, according to Choudhary, is a next-generation material used in #lithiumionbatteries , #electronics , #semiconductors , conductive films, sensors, #advancedcomposites , #coatings , construction and aerospace, and is expected to benefit from strong global demand. #CNT is now ...

๐“๐จ๐๐š๐ฒ'๐ฌ ๐Š๐๐Ž๐–๐‹๐„๐ƒ๐†๐„ ๐’๐ก๐š๐ซ๐ž : ๐’๐ข๐ฅ๐ข๐œ๐จ๐ง๐ž ๐ฏ๐ฌ. ๐“๐๐” ๐ข๐ง ๐๐ข-๐Œ๐š๐ญ๐ž๐ซ๐ข๐š๐ฅ ๐Œ๐จ๐ฅ๐๐ฌ: ๐–๐ก๐ข๐œ๐ก ๐Ž๐ง๐ž ๐ข๐ฌ ๐ญ๐ก๐ž ๐‘๐ข๐ ๐ก๐ญ ๐‚๐ก๐จ๐ข๐œ๐ž?

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  ๐“๐จ๐๐š๐ฒ'๐ฌ ๐Š๐๐Ž๐–๐‹๐„๐ƒ๐†๐„ ๐’๐ก๐š๐ซ๐ž ๐Ÿ” ๐’๐ข๐ฅ๐ข๐œ๐จ๐ง๐ž ๐ฏ๐ฌ. ๐“๐๐” ๐ข๐ง ๐๐ข-๐Œ๐š๐ญ๐ž๐ซ๐ข๐š๐ฅ ๐Œ๐จ๐ฅ๐๐ฌ: ๐–๐ก๐ข๐œ๐ก ๐Ž๐ง๐ž ๐ข๐ฌ ๐ญ๐ก๐ž ๐‘๐ข๐ ๐ก๐ญ ๐‚๐ก๐จ๐ข๐œ๐ž? ▶️ At Star Moldes, we know that selecting the right material is just as important as designing the right mold. When it comes to bi-material injection molding, Silicone (LSR) and TPU (Thermoplastic Polyurethane) are two popular options, but they offer very different advantages. ๐Ÿงช Silicone (LSR) ✅ Excellent resistance to extreme temperatures ✅ Outstanding flexibility and long-term durability ✅ Biocompatible and ideal for medical, healthcare, and food-contact applications ✅ Superior UV and weather resistance ⚠️ Considerations: • Requires specialized LSR injection molding equipment • Higher processing complexity and tooling requirements • Longer development and validation process ๐Ÿ›ก️ TPU ✅ High abrasion and tear resistance ✅ Excellent impact absorption ✅ Recyclable as a thermoplastic ✅ Faster processing cycles and ...

๐๐ž๐ฐ ๐ฐ๐š๐ฒ ๐ญ๐จ ๐ซ๐ž๐œ๐ฒ๐œ๐ฅ๐ž ๐œ๐จ๐ฅ๐จ๐ฎ๐ซ๐ž๐ ๐ฉ๐ฅ๐š๐ฌ๐ญ๐ข๐œ๐ฌ ๐ฎ๐ฌ๐ข๐ง๐  ๐ฌ๐ข๐ฅ๐ข๐œ๐š ๐ฆ๐ข๐œ๐ซ๐จ๐ฌ๐ฉ๐ก๐ž๐ซ๐ž๐ฌ

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When plastics are recycled, the various colours mix to create dark, low-value materials in a process known as downcycling. Conventional recycling methods cannot effectively separate colourants from plastics. Alternatively, chemical decomposition methods to remove colourants exist, but they require high temperatures of 300–500°C and lead to substantial energy consumption. These limitations thus present a growing need for upcycling technologies that enable efficient separation of colourants under milder conditions and allow plastics to be repeatedly reused as high-quality materials. In search of a solution, a research team led by Associate Professor Kenji Okada and Professor Masahide Takahashi from Osaka Metropolitan University’s Graduate School of Engineering, in collaboration with #FujiPigmentCoLtd ., developed a novel approach using #silicamicrospheres to encapsulate #colourants utilising a spray-drying method. Silica, a primary component of sand and glass, is highly resistant to he...

๐—•๐—ฟ๐—ถ๐—ป๐—ด๐—ถ๐—ป๐—ด ๐—บ๐—ผ๐—ฟ๐—ฒ ๐—ณ๐˜‚๐—ป๐—ฐ๐˜๐—ถ๐—ผ๐—ป ๐—ถ๐—ป๐˜๐—ผ ๐—บ๐˜‚๐—น๐˜๐—ถ๐—น๐—ฎ๐˜†๐—ฒ๐—ฟ ๐˜€๐˜๐—ฟ๐˜‚๐—ฐ๐˜๐˜‚๐—ฟ๐—ฒ๐˜€

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As packaging and industrial applications become more complex, manufacturers need reliable ways to combine materials that do not naturally bond well together. MODIC™ is an adhesive and easy-peel sealant resin designed to provide adhesion across a wide range of materials, including PE, PP, EVOH, PA, PET, metals, and glass. Used as a tie layer or peelable sealant, it gives manufacturers greater flexibility when developing structures with different functional requirements. ๐— ๐—ข๐——๐—œ๐—–™ ๐˜€๐˜‚๐—ฝ๐—ฝ๐—ผ๐—ฟ๐˜๐˜€: • ๐— ๐˜‚๐—น๐˜๐—ถ๐—น๐—ฎ๐˜†๐—ฒ๐—ฟ ๐—ฝ๐—ฎ๐—ฐ๐—ธ๐—ฎ๐—ด๐—ถ๐—ป๐—ด: Films, sheets, bottles, and containers that combine structural, barrier, and sealing materials within one format. • ๐—™๐—น๐—ฒ๐˜…๐—ถ๐—ฏ๐—น๐—ฒ ๐—ฝ๐—ฎ๐—ฐ๐—ธ๐—ฎ๐—ด๐—ถ๐—ป๐—ด: Tie-layer and sealant applications for blown films, cast films, extrusion lamination, and easy-peel lidding. • ๐—œ๐—ป๐—ฑ๐˜‚๐˜€๐˜๐—ฟ๐—ถ๐—ฎ๐—น ๐˜€๐˜๐—ฟ๐˜‚๐—ฐ๐˜๐˜‚๐—ฟ๐—ฒ๐˜€: Multimaterial components, coated pipes, composite panels, and other applications where strong adhesion between different substrates is required. •...