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Home > Catalyst and Auxiliary > Polymer (Find 48 items)

Polymer

Polymers are essential in many industries due to their versatility. Polymer clay, a synthetic polymer, is widely used to create strong, flexible designs. Advances in raw materials have improved the strength, durability, and flexibility of polymers, making them valuable in both manufacturing and art. Learn more about polymers, including CAS No., properties, and information on materials and products from our suppliers on ECHEMI.

Acrylic acid-2-acrylamido-2-methylpropanesulfonic acid copolymer

(40623-75-4)
AA/AMPS is mainly used for scale inhibition and dispersion of open industrial circulating cooling water system, oilfield sewage reinjection system, metallurgical system circulating water treatment, steel plant leaching cooling water to prevent Fe2O3 slime deposition, AA/AMPS can be combined with organic phosphine Combined use of acid salt and zinc salt, suitable for pH conditions of 7.0 to 9.5. AA/AMPS can also be used as textile printing and dyeing auxiliary. Used in organic chemical intermedia

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Acrylamide-acryloyloxyethyltrimethylammonium chloride copolymer

(69418-26-4)
Acrylamide-acryloyloxyethyltrimethylammonium chloride copolymer is widely utilized in the personal care industry, particularly in hair care products like shampoos, conditioners, and styling agents, where it functions as a film-former and antistatic agent. It serves as a flocculant, retention, and drainage aid in the paper manufacturing industry, especially for food contact paper and paperboard.

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Acrylonitrile-butadiene-styrene copolymer

(9003-56-9)
Used in automobiles, electronics, electrical appliances, machinery, textiles, railways and other industries; used in the preparation of various parts of meters, electrical, electrical appliances, machinery, etc.; used in 12-inch black-and-white TV sets and color motor boxes; used as automotive industrial materials and building materials , Wood substitutes, and used to make safety helmets, suitcases, appliance shells, foam plastics, etc.

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Anthranilamide

(88-68-6)
Anthranilamide can be used as an acetyldehyde scavenger in PET bottles (US Patent, Coca-Cola). It can be used as an intermediate for dyes, pharmaceuticals, agricultural chemicals, perfumes, pigments, flavors and organo luminophores. It can be used in the manufacture of anthranilate esters and ion exchange resins. It can be used as a lacquer additive for food containers. It can be used as a modifier to improve drying of alkyd resins. It can also be used as an antioxidant for greases, lube oils an

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Acrylates copolymer

(25133-97-5)
acrylates copolymer is able to absorb skin secretions, thereby reducing skin shine and providing an improved skin surface for makeup application. Acrylates copolymer also imparts a pleasant feel to a cosmetic preparation and helps reduce any feeling of oiliness the product may have. It is incorporated into numerous types of cosmetic formulations including skin cleansers, oil control treatments, makeup, and loose and compressed powders. When used in conjunction with a variety of other ingredients

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Acrylamide-diallyldimethylammonium chloride copolymer

(26590-05-6)
Used as a cationic conditioner, used in shampoo, shower gel, shaving lotion, styling water, etc.; this product is used as a flocculant for sludge adjustment in urban sewage, industrial sewage and wastewater treatment systems, and is especially suitable for raw sewage or processing sewage , Food processing wastewater, fermentation wastewater and other organic sludge suspended solids and biodegradable sludge dewatering, and various types of industrial wastewater clarification treatment. This produ

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Acrylonitrile-butadiene copolymer

(9003-18-3)
Nitrile rubber, also known as Buna-N, Perbunan, acrylonitrile butadiene rubber, and NBR, is a synthetic rubber copolymer of acrylonitrile (ACN) and butadiene. Trade names include Nipol, Krynac and Europrene.Nitrile butadiene rubber (NBR) is a family of unsaturated copolymers of 2-propenenitrile and various butadiene monomers (1,2-butadiene and 1,3-butadiene). Although its physical and chemical properties vary depending on the polymer’s composition of nitrile, this form of synthetic rubber is unu

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ANTIFOAM PE-L

(9003-13-8)
Hydraulic fluids, metal working fluids and lubricants, heat transfer fluids, solder assist fluids, quenchants, lubricants, solvents, plasticizers and foam control agents.

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Polymers generally refer to high molecular compounds, which are referred to as macromolecules or macromolecules. They generally refer to compounds with a relative molecular mass of up to several thousand to several million. mixture. According to the source, it can be divided into two categories: natural polymers and synthetic polymers. According to the performance classification, it can be divided into three categories: plastic, rubber and fiber. ""Polymer"" on ECHEMI mainly supplies raw materials for Polymer.

More Information

Polymers are large macromolecules formed from the combination of monomers which are small molecules. These materials are characterized by their high tensile strength, flexibility and chemical resistance and find wide application. Polymer clay is one of the types of synthetic polymers which have found its use in arts and crafts because of its flexibility and strength. Polymers are applied in several commodities and industries and may range from the simplest consumer products to the most complex industrial applications.

Polymers have several benefits and one of the biggest is that they are versatile. To this end, manufacturers can modify the chemical composition of polymers to meet certain property standards such as increasing tensile strength or increasing thermal stability. This flexibility in modification makes polymers ideal to be used in the manufacturing of anything from lightweight packaging materials to high-performance construction components.

Applications of polymers:

Auto parts for weight loss as well as fuel economy.

Prosthetics and implants which are medical devices.

Electrical components because of their capability to insulate.

Lightweight but strong and sturdy packaging material.

Polymer clay for decorative purposes and other purposes such as crafts.

Construction materials for strength and elasticity.

Frequently Asked Questions

What is a polymer and how is it used in industrial applications?

A polymer is a large molecule composed of repeating structural units (monomers) linked by covalent bonds. Polymers are widely used across industries such as packaging, automotive, construction, healthcare, and electronics due to their versatility, durability, and lightweight properties. Common examples include polyethylene (PE), polypropylene (PP), and polystyrene (PS). Understanding polymer types and properties helps in selecting the right material for specific industrial needs.

What are the key differences between thermoplastics and thermosetting polymers?

Thermoplastics can be melted and reshaped multiple times when heated, making them recyclable—examples include PVC and PET. In contrast, thermosetting polymers undergo irreversible chemical changes when cured, becoming rigid and heat-resistant; once set, they cannot be remelted. Examples include epoxy and phenolic resins. Choosing between them depends on application requirements like heat resistance, mechanical strength, and recyclability.

How do I choose the right polymer supplier for my manufacturing needs?

Selecting a reliable polymer supplier involves evaluating several factors:1. Certifications such as ISO 9001 or compliance with REACH and RoHS regulations.2. Consistency in material quality and batch-to-batch reproducibility.3. Technical support capabilities, including formulation guidance and processing advice.4. Supply chain reliability and lead times.5. Sustainability practices, such as offering bio-based or recyclable polymers.A thorough assessment ensures long-term performance and cost-efficiency in your production process.

What are common applications of engineering polymers in the automotive industry?

Engineering polymers like nylon (PA), polycarbonate (PC), and acrylonitrile butadiene styrene (ABS) are extensively used in automotive manufacturing for components requiring high strength, thermal stability, and impact resistance. Typical applications include dashboards, bumpers, engine covers, electrical connectors, and fluid reservoirs. Their lightweight nature also contributes to fuel efficiency and reduced emissions, aligning with modern vehicle design goals.

Are biodegradable polymers a viable alternative to conventional plastics?

Biodegradable polymers—such as polylactic acid (PLA), polyhydroxyalkanoates (PHA), and starch-based blends—offer an eco-friendly alternative to traditional petroleum-based plastics, especially in single-use applications like packaging and disposable cutlery. However, their viability depends on proper composting infrastructure, performance requirements (e.g., barrier properties, heat resistance), and cost considerations. While not suitable for all uses, they play a growing role in sustainable material strategies when matched correctly to the application.

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