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"description": "MOULD RELEASING LIQUID .\n*silicone mould releasing liquid , easy to remove mould by applying \nbefore pouring liquid.\nSilicone rubber mold release liquid can be applied as a spray or with a brush. For spraying, you can use a nozzle that creates a fine fog and make a single pass across the surface. If brushing is used, you can break surface tension and minimize air entrapment by applying the release agent with a soft brush. You can then apply another light mist coating and let it stand for five minutes before applying mold rubber. \nYou can dilute the mold release with water to create an active content of 0.5–2%. In some cases, a higher concentration may be preferable. Avoid applying too much mold release, as this can cause surface irregularities and poor welds. \nSilicone release agents can be used in a wide range of applications, including:\nImproving product quality\nImproving work efficiency\nReleasing during the molding of rubber, plastic, and metal parts\nReleasing during the molding of food packaging containers\nGlossing\nSurface protection\nLubrication \nSilicone rubber is used in many applications, including:\nBuilding construction and infrastructure\nConsumer goods and appliances\nFood and beverage\nMobility\nPower water and telecommunications\nTextiles, leather, and nonwovens ",
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"description": "ISO Resin\nISO Resin is a medium viscosity, medium reactive polyester resin based on Isophthalic acid and superior glycols. It exhibits good mechanical and electrical properties together with good chemical resistance compared to general-purpose resins.\n\n Download Now\nProduct Features & Benefits:\nISO Resin is a medium viscosity, medium reactive polyester resin based on Isophthalic acid and superior glycols. It exhibits good mechanical and electrical properties together with good chemical resistance compared to general-purpose resins.\nISO rapidly wets the surface of glass fiber in the form of cloth mat or chopped fiber to produce laminates and moldings. Its superior chemicals resistance towards most mineral and organic acids, solvents and oils make an ideal choice for making glass reinforced chemical process equipment, storage tanks, tankers, ducting, hoods etc. for handling chemicals at ambient temperature. Moulds, boats, and bathtubs etc can also be made\n\nTypical Applications:\nChemical Tanks/Pipelines\nFume extractor\nDuct\nHood\nChemical equipment\nTanker\nBoat\n\n* Using Accelerator, Co (2%) 1 ml, Catalyst, MEKP1.5ml, the gel time, cure time and Peak Exotherm measured.\n* Summer ω Winter [TM - Test Method as per ISO-9001-2000-DOC-REV-03]\n* Post cured Result\n\nUsage:\nChemical Resistance:\nUnreinforced castings show a commendable degree of resistance to most inorganic and organic acids at ambient temperature, with the exception of strong oxidizing acids. It also resists oils, plasticizers and inorganic salt solutions. Strong acids and alkalis attack For specific application please contact our technical services department. In boiling water orthophthalate resin showed signs of disintegration within 40 hours, whereas showed no disintegration even after 60 hours. In 10% sulfuric acid and 5% aqueous caustic soda showed much superior resistance compared to general-purpose orthophthalate resin. In the latter reagent specimens of orthophthalate resin disintegrated within an hour.\nPost Curing:\nIt is recommended to mature the products for 24 hours and post curing should be done for minimum of five hours at 800C, or 2-3 weeks at room temperature. This is essential for getting the optimum properties.\n\nStorage / Handling:\nThe polyester resin remains stable for 3 months at 300C in the dark and 4 months at 250C. The resin stability deteriorates markedly at elevated temperature, especially when exposed to direct sunlight. ISO Resin has a flash point of 340C and is classified as flammable. \"NO SMOKING \" rules should be strictly followed. In case of spillage, use sand or earth to absorb and shovel off for disposal as per local regulations, In case of fire, use dry chemical foam, Carbon dioxide or water spray to extinguish the flame.\n\nPacking:\nThe Polyester resin is packed in HDPE carboys ( 30, 35, 40 & 45 kgs ) and epoxy coated steel drums HDPE barrels\n(220 kgs) of standard size net weight. Special packing size offered for projects on returnable containers. Technical services are also provided to comply standards.\n\nHealth & Safety:\nNever add metal salts (Accelerator) or Pre Acceleratorated resin to Peroxides when adding peroxides to a resin solution, mix thoroughly the resulting product Do not add organic peroxides to a hot diluents or process. Prevent contamination of Accelerator, promoter from materials like ( Iron Copper, Cobalt ) salts, storing acids and sanding dusts. Suggested containers are glass, polypropylene, Teflon, Poly-ethylene or stainless steel to prevent contamination of material during its handling.",
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"description": "The most popular thermoplastic polymer resin of the polyester family, polyethylene terephthalate (also known as poly(ethylene terephthalate), PET, PETE, or the defunct PETP or PET-P), is used in clothing fibres, food and liquid containers, thermoforming for manufacturing, and in combination with glass fibre for engineering resins.\n\nRepeating (C10H8O4) units make up PET. PET is frequently recycled, and its resin identification code is 1 (). (RIC). \"Polyethylene terephthalate items referenced are derived from terephthalic acid (or dimethyl terephthalate) and mono ethylene glycol, wherein the sum of terephthalic acid (or dimethyl terephthalate) and mono ethylene glycol reacted constitutes at least 90% of the mass of monomer reacted to form the polymer, and must exhibit a melting peak temperature between 225°C and 255°C, as identified,\" according to [8]\n\nBoth an amorphous and crystalline form of polyethylene terephthalate may occur, depending on its processing and thermal history.\n\nsolar-powered devices\nThe backsheet of solar modules contains BOPET. The majority of backsheets are made up of a layer of UV-stabilized BOPET or a layer of BOPET laminated to a fluoropolymer.\n\nIn thin film solar cells, PET is also utilised as the substrate.\n\nThermoplastic materials\nTo create thermoplastic resins, PET can be combined with glass fibre and crystallisation promoters. These can be injection moulded into components like housings, coverings, parts for electrical appliances, and ignition system components.",
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"description": "MEKP (Methyl Ethyl Ketone Peroxide) is the catalyst added to polyester resins and vinyl ester resins. As the catalyst mixes with the resin, a chemical reaction occurs, creating heat which cures (hardens) the resin. Use approximately 1/2 oz per quart of resin. We recommend the use of our MEKP Catalyst Dispenser for accurate measuring and pouring of the catalyst. \n\nMEKP is principally used as an initiator or catalyst for the room temperature cure of unsaturated polyester and vinyl ester resins. It is also needed with all gel coats. It is typically used between 1.25% to 1.75% (1 2/3 ounce to 2 1/3 ounces per gallon).\n\nDirections for Using MEKP Catalyst\nMEKP stands for Methyl Ethyl Ketone Peroxide and is for use with polyester resins. This is a very dangerous material.\nSafety *\nCatalyst is very corrosive and thus is a prohibited airfreight or postage item. It is also highly inflammable. Both heat and sunlight affect\nit and incorrect storage can render it useless. Ideally it should be stored under refrigeration. It has an attraction for milk food products\nand needs to be very well sealed or placed in a refrigerator that doesn’t house food stuffs. We have found that it doesn’t contaminate\nstubbies or cans!!\nWhen mixing MEKP with resin, take care as a violent mixing action can splash it out of the mixing container. Use a measuring cup\nrather than a syringe as it can be shot into the container and bounce back into the eyes. Mix thoroughly and methodically into the resin\notherwise some portions of resin may not be catalysed and thus not cure properly.\n\nKeep out of reach of children and if they are to use it, make sure they are instructed in its use and are properly supervised.\nThese days, most resins you use will be pre accelerated or have accelerator added, usually of the cobalt variety (a purple liquid.) Should\nyou be adding cobalt accelerator, it must be thoroughly dispersed in the resin prior to adding the catalyst. The accidental mixing of\ncobalt accelerator with MEKP will result in a violent reaction =BANG!\nFirst Aid*\nMEKP attacks eyes-Protect eyes while using. If splashed into the eyes immediately flood with water for 15 minutes and seek medical\nadvice. This is very important as permanent blindness can result within 15 seconds.\nIf swallowed do not induce vomiting, give glass of water and seek medical advice\nAvoid skin contact-Wear protective clothing. If skin contact does occur, remove all contaminated clothing and wash skin thoroughly.\nSeek medical advice\nHow much to use?\nWe usually express this in terms of percentage ie:1% catalyst to resin = 10ml of catalyst to 1kg of resin. A rule of thumb for polyester\nlaminating resin is between 1% and 2% i.e. 1% for summer (to give maximum wetting time) and 2% for winter.\nFor polyester Gelcoats used in a moulding situation, we recommend from 2% to 2.5%catalyst. The reason for this is that if the gelcoat\nis under cured, the backup laminating resin will bite into the gelcoat and cause wrinkling or puckering. If the gelcoat is to be used as a\nfinish over a laminate, the 1% to 2% rule applies. The addition of 4 % styrene wax in the final coat, will give it a harder, less tacky\nfinish.\nYou will have noted by now that we are measuring resin by weight-the reason is that it is the easiest way to be accurate. With polyester\nresin, kitchen scales will suffice. (Scales can always be put in a clear plastic bag, this keeps you out of trouble with the cook!) There\nreally is NO substitute for using the weigh method.\n\n\n",
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"description": "Our Black Liquid Rubber Waterproofing Coating is a tough, flexible membrane designed to provide long-lasting water protection for a wide range of surfaces. Unlike sealants, this liquid-applied coating cures into a thick, seamless rubber layer that resists water penetration, UV rays, and temperature extremes.\n\nPerfect for use on flat roofs, foundations, basements, concrete, wood, metal, and more, this coating offers exceptional adhesion and elasticity. Whether you're waterproofing a new structure or repairing an old one, this product provides industrial-grade protection with an easy roll-on or brush-on application.\n\nKey Benefits:\n\nCreates a seamless, watertight rubber membrane\n\nHighly flexible – won’t crack, peel, or chip\n\nUV and weather resistant for long-term durability\n\nNon-toxic and VOC-free formula\n\nExcellent adhesion to most construction materials\n\nIdeal for both residential and commercial waterproofing projects.",
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"description": "FRP (Fiber Reinforced Plastic) is a composite material made from a polymer matrix reinforced with fibers such as glass, carbon, or aramid. It is known for its exceptional strength-to-weight ratio, durability, corrosion resistance, and versatility, making it suitable for a wide range of applications across various industries.\n\nMulti-Purpose Usage of FRP Material:\nConstruction and Building Materials: FRP is commonly used for reinforced panels, roofing, flooring, and structural components. Its ability to resist weathering, moisture, and corrosion makes it ideal for both residential and commercial construction, especially in harsh environments.\n\nAutomotive Industry: The lightweight nature of FRP allows it to be used in the manufacture of automotive parts, such as body panels, housings, and interior components. Its high strength-to-weight ratio helps reduce the overall weight of vehicles, improving fuel efficiency without compromising strength.\n\nMarine Applications: FRP is widely used in boats, ships, and marine structures due to its resistance to water, corrosion from saltwater, and durability under harsh marine conditions. It is used for hulls, decking, piping, and other boat parts.\n\nIndustrial Use: The material is highly favored in chemical processing, pharmaceuticals, and food production due to its non-corrosive properties and ability to withstand harsh chemicals. FRP tanks, pipes, and vessels are often used to transport or store corrosive substances.\n\nElectrical Insulation: With its high insulating properties, FRP is used as a non-conductive material for electrical applications. It serves in electrical enclosures, insulating supports, and cable trays.\n\nPipes and Tanks: FRP is commonly used to produce corrosion-resistant pipes, storage tanks, and vessels for applications in industries like oil and gas, water treatment, and agriculture. Its resilience against chemicals and environmental factors makes it ideal for long-term use.\n\nEnergy Sector: In the renewable energy industry, FRP blades for wind turbines, along with its usage in solar panels, help improve efficiency and sustainability. Its lightweight properties help with optimal energy production and transport.\n\nCustom Fabrication: FRP is often used in custom fabrication projects due to its easy moldability and ability to be shaped into complex geometries. It can be tailored for specific needs in a variety of sectors like aerospace, sporting goods, medical equipment, and more.\n\nEco-Friendly Solutions: As a sustainable material, FRP offers long-term durability and recyclability, making it an eco-friendly option for replacing metals and other materials in various sectors.\n\nKey Benefits of FRP:\nStrength and Durability: It is highly resistant to impact, moisture, and environmental degradation.\nCorrosion Resistance: FRP is highly resistant to corrosion from chemicals, water, and salt.\nLightweight: Its low density makes it easier to handle and transport compared to metals like steel.\nCustomizable: FRP can be molded into complex shapes, offering a variety of designs for different applications.\nLow Maintenance: FRP requires minimal maintenance due to its resistance to rust and wear.\nWith its vast range of applications across different industries, FRP is a reliable and multi-purpose material that provides long-lasting, cost-effective solutions.\n\n",
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