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Polypropylene (PP)

۶ بازديد

Polypropylene (PP) is a type of proolefin that is a little harder than polyethylene. Polypropylene is a commodity plastic with low density and resistant to high heat. Among the uses of polypropylene, we can mention the use in packaging, automobiles, consumer goods, medicine, and cast films, and its chemical formula is (C3H6)n.

Polypropylene (PP) is divided into two categories: polypropylene homopolymer and copolymer. In the following, they have been examined:

Polypropylene homopolymer

They are thermoplastic resins that are produced through the polymerization of propylene with Ziegler-Natta catalysts. Homopolymers can be used in various processing technologies such as injection molding, blow molding, film, fiber, sheet extrusion and thermal forming.

In addition to the above applications, PPH homopolymer polypropylene has features such as higher strength-to-weight ratio, longer durability, and greater material stiffness compared to polypropylene copolymer, and for applications that require good resistance to impact, corrosion, and chemicals. It needs good weldability and processability.

"Z  30 s"

Polypropylene copolymer

Copolymers have a second monomer of ethylene, which increases the impact strength compared to polypropylene homopolymer. The key properties of polypropylene copolymer are high impact strength, good chemical resistance, better resistance to cracking at low temperatures and increased flexibility.

Polypropylene copolymer can be used in cases such as making car parts, containers, packaging and family products. It is also widely used in injection molding for various parts and medical devices.

"Moplen EPD60R"

Polypropylene (PP) is a lightweight, hard, rigid and crystalline thermoplastic that exists in various forms. Among the advantages of polypropylene, we can mention its melting point, density, chemical resistance and flammability.

For more information, you can contact us through our address and contact number.

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Акрилонитрилбутадиенстирол (АБС)

۷ بازديد

Акрилонитрилбутадиенстирол (АБС) представляет собой терполимер, полученный в результате полимеризации стирола и акрилонитрила в присутствии полибутадиена. Его соотношение может составлять от 15% до 35% акрилонитрила, от 5% до 30% бутадиена и от 40% до 60% стирола.

ABS является одним из наиболее широко используемых пластиковых материалов благодаря своей доступной цене и сбалансированным механическим и химическим свойствам. Другие преимущества ABS включают размерную прочность, высокую термостойкость и ударопрочность.

Акрилонитрил-бутадиен-стирол (АБС) на самом деле является результатом сшивки полибутадиена с более короткими поли(стирол-акрилонитрильными) цепями. Паспорт акрилонитрилбутадиенстирола (АБС) выглядит следующим образом:

"SD0150"

Применение акрилонитрил-бутадиен-стирола (АБС)

Благодаря своим особенностям, таким как высокая ударопрочность, тепловые характеристики и т. д., этот материал является одним из наиболее часто используемых материалов в производстве пластика, который используется в производстве бытовой техники, такой как холодильники, пылесосы, электронные устройства, такие как в качестве клавиатур, принтеров, мышей и т. д. Используются ноутбуки и компьютеры.

Среди применений АБС в автомобилях и на транспорте можно упомянуть приборные панели, обивку рулевой колонки, компоненты приборной панели, дверные накладки и ручки, спинки сидений, детали ремней безопасности и т. д., которые относятся к числу материалов с высоким уровнем использования.

Акрилонитрил-бутадиен-стирол обладает благоприятными механическими свойствами, такими как ударопрочность, ударная вязкость и прочность. Изменяя соотношение компонентов шестерни ABS, можно производить ее разных марок. В целом акрилонитрилбутадиенстирол обладает полезными свойствами в диапазоне температур от 20 до 80 градусов Цельсия.

Способы производства акрилонитрилбутадиенстирола (АБС)

Акрилонитрилбутадиенстирол получают двумя способами:

В первом методе сополимеры стирола и акрилонитрила смешивают с акрилонитрил-бутадиеновым каучуком. Обычно каучуковая фаза раздроблена и равномерно диспергирована на мелкие частицы, как прерывистая фаза в непрерывной фазе.

Второй метод, который сегодня используется в большинстве операций, обеспечивает большую универсальность и возможность индивидуального проектирования конкретных профилей активов. Акрилонитрил прививают на основную цепь бутадиена или бутадиен-стирольного сополимера.

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Acrylonitrile butadiene styrene (ABS)

۷ بازديد

Acrylonitrile butadiene styrene (ABS) is a terpolymer made from the polymerization of styrene and acrylonitrile in the presence of polybutadiene. Its ratio can be 15% to 35% acrylonitrile, 5% to 30% butadiene and 40% to 60% styrene.

ABS is one of the most widely used plastic raw materials due to its reasonable price and balanced mechanical and chemical properties. Other advantages of ABS include dimensional strength, high thermal resistance, and impact resistance.
Acrylonitrile butadiene styrene (ABS) is actually the result of a stretch of polybutadiene cross-linked with shorter poly(styrene-acrylonitrile) chains. The data sheet of acrylonitrile butadiene styrene (ABS) is as follows:

"SD0150"

Applications of Acrylonitrile Butadiene Styrene (ABS)

Due to its features such as high impact resistance, thermal performance, etc., this material is one of the most used materials in the production of plastic, which is used in the production of household equipment such as refrigerators, vacuum cleaners, electronic devices such as keyboards, printers, mice, etc. Laptops and computers are used.

Among the applications of ABS in automobiles and transportation, we can mention instrument panels, column trim, dashboard components, door linings and handles, seat backs, seat belt parts, etc., which are among high-use materials.

Acrylonitrile butadiene styrene has favorable mechanical properties such as impact resistance, toughness and strength. By changing the ratio of ABS gear components, it can be produced with different grades. In general, acrylonitrile butadiene styrene has useful properties in the temperature range of 20 to 80 degrees Celsius.

Production methods of acrylonitrile butadiene styrene (ABS)

Acrylonitrile butadiene styrene is produced in two ways:

In the first method, styrene-acrylonitrile copolymers are mixed with acrylonitrile-butadiene rubber. Typically, the rubber phase is broken and uniformly dispersed in small particles as the discontinuous phase in the continuous phase.

In the second method, which is used in most operations today, it provides greater versatility and the ability to custom design specific asset profiles. Acrylonitrile is grafted onto a butadiene or butadiene styrene copolymer backbone.

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Полипропилен (ПП)

۱۰ بازديد

Полипропилен (ПП) — это разновидность проолефина, который немного тверже полиэтилена. Полипропилен – товарный пластик низкой плотности, устойчивый к высоким температурам. Среди применений полипропилена можно упомянуть использование в упаковке, автомобилях, товарах народного потребления, медицине, а также в производстве литой пленки, а его химическая формула – (C3H6)n.

Полипропилен (ПП) делится на две категории: гомополимер и сополимер полипропилена. Далее были проверены:

Полипропиленовый гомополимер

Это термопластичные смолы, которые производятся путем полимеризации пропилена с помощью катализаторов Циглера-Натта. Гомополимеры можно использовать в различных технологиях обработки, таких как литье под давлением, выдувное формование, пленка, волокно, экструзия листов и термическое формование.

В дополнение к вышеуказанным применениям, гомополимерный полипропилен PPH обладает такими характеристиками, как более высокое соотношение прочности к весу, более длительный срок службы и большая жесткость материала по сравнению с сополимером полипропилена, а также для применений, требующих хорошей устойчивости к ударам, коррозии и химикатам. Он требует хорошей свариваемости и технологичности.

"Z  30 s"

Полипропиленовый сополимер

Сополимеры имеют второй мономер этилен, который увеличивает ударную вязкость по сравнению с гомополимером полипропилена. Ключевыми свойствами сополимера полипропилена являются высокая ударная вязкость, хорошая химическая стойкость, лучшая стойкость к растрескиванию при низких температурах и повышенная гибкость.

"Moplen EPD60R"

Полипропилен (ПП) — легкий, твердый, жесткий и кристаллический термопласт, существующий в различных формах. Среди преимуществ полипропилена можно отметить его температуру плавления, плотность, химическую стойкость и горючесть.

Для получения дополнительной информации вы можете связаться с нами по нашему адресу и контактному номеру.

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Polypropylene (PP)

۶ بازديد

Polypropylene (PP) is a type of proolefin that is a little harder than polyethylene. Polypropylene is a commodity plastic with low density and resistant to high heat. Among the uses of polypropylene, we can mention the use in packaging, automobiles, consumer goods, medicine, and cast films, and its chemical formula is (C3H6)n.

Polypropylene (PP) is divided into two categories: polypropylene homopolymer and copolymer. In the following, they have been examined:

Polypropylene homopolymer

They are thermoplastic resins that are produced through the polymerization of propylene with Ziegler-Natta catalysts. Homopolymers can be used in various processing technologies such as injection molding, blow molding, film, fiber, sheet extrusion and thermal forming.

In addition to the above applications, PPH homopolymer polypropylene has features such as higher strength-to-weight ratio, longer durability, and greater material stiffness compared to polypropylene copolymer, and for applications that require good resistance to impact, corrosion, and chemicals. It needs good weldability and processability.

"Z  30 s"

Polypropylene copolymer

Copolymers have a second monomer of ethylene, which increases the impact strength compared to polypropylene homopolymer. The key properties of polypropylene copolymer are high impact strength, good chemical resistance, better resistance to cracking at low temperatures and increased flexibility.

"Moplen EPD60R"

Polypropylene (PP) is a lightweight, hard, rigid and crystalline thermoplastic that exists in various forms. Among the advantages of polypropylene, we can mention its melting point, density, chemical resistance and flammability.

For more information, you can contact us through our address and contact number.

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Crystalline polystyrene compound (Gpps)

۹ بازديد

Crystalline polystyrene compound is one of the primary polymer materials used in various industries. This material is resistant to heat and has high mechanical properties, which has made it widely used in the production of plastic materials.

Crystalline polystyrene compound is one of the raw materials of plastic, which has a uniform texture. This material is widely used in the production of soup packaging containers, disposable cups, ice cream packaging containers and dairy packaging containers.

It is a compound of polymer raw materials such as crystalline polystyrene to increase the desired properties of the final product. Among the advantages of GPPS compound, we can mention the high transparency, high hardness and easy processing capability of these polymer materials.

Crystalline polystyrene compound is produced from styrene polymerization and is resistant to acids, bases, alcohols, oils and salt solutions. Polystyrene is flammable and burns with a characteristic smell and dark soot.

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Petrochemical raw materials

۷ بازديد

Petrochemicals are actually substances that are obtained from oil in trace form. Also, some chemical compounds made from oil are also obtained from other fossil fuels such as coal or natural gas or renewable resources such as corn, dates and sugarcane.

Materials made from petrochemicals include items such as soap, detergents, solvents, drugs, fertilizers, pesticides, synthetic rubber and rubber, explosives, paints, epoxy resins, insulating materials, urea, sulfur, gasoline, diesel. , bitumen, etc.

Petrochemicals are often composed of carbon and hydrogen and are called hydrocarbons. If the atoms in the molecules are connected to each other by a single ion, the molecule is said to be saturated. Also, if they are connected to a monolayer by one or more double bonds, they are unsaturated molecules. Unsaturated chemicals are used as petrochemical feedstock due to their reactivity and can easily be converted into other petrochemical materials.

Petrochemical raw materials

They are divided into three general groups: olefins, aromatics and synthetic and inorganic gases. Olefins whose molecules form straight and unsaturated chains include ethylene, propylene and butadiene. Ethylene is the primary hydrocarbon material that is used in the largest volume in the petrochemical industry.For example, ethylene glycol is made from ethylene, which is used in polyester resin fibers and in antifreeze. Propylene is also used in the manufacture of products such as acrylic, rubbing alcohol, epoxy glue, paper coverings and carpets.

Aromatics are hydrocarbon molecules that form rings and are unsaturated. The main raw materials include benzene, toluene, xylene and naphthalene. Benzene is used to make styrene, the raw material of styrene plastic. It is also used to make paint, epoxy resin and glue.Toluene is used to make solvents, gasoline additives and explosives. Xylene is also used in making plastics, synthetic fibers and gasoline refining. Naphthalene is used significantly in the manufacture of insecticides.

Synthesis gases are used to produce ammonia and methanol. Ammonia is primarily used to form ammonium nitrate and a source of fertilizer. Most of the methanol produced is used to make formaldehyde, and the rest is used to make polyester fibers, plastic and silicone rubber.

The petrochemical industry got its impetus in 1913 from the development of the thermal cracking process by which crude oil was refined. The process produced gas byproducts that were initially used only as lighting gas or fuel, but in the 1920s and 30s were useful as chemical raw materials.

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Light polyethylene compound (LDPE)

۹ بازديد

Light polyethylene is a type of polyethylene produced by polymerization of ethylene with small amounts of alpha olefins such as butene and hexane. Light polyethylene compound is used in various industries such as packaging, which includes containers, films and bags.

Light polyethylene compound is used in automobile manufacturing for the production of internal and external parts, construction, pipes and consumer goods. This polymer is produced by methods such as injection molding, compression molding, extrusion, and rotational molding.

Compound of polymer raw materials is a set of polymer raw materials, colored particles and reinforcements that increases the final properties of the polymer and can be used in various industries including construction facilities and automobiles.

Among the advantages of light polyethylene compound, we can mention resistance to sunlight, economical cost, better plasticity of polyethylene compound and proper stability of manufactured products, which has led to more applications.

One of the important things when buying polyethylenes is distinguishing PET and polyethylene, which are similar to each other, but have different uses and properties, which are explained in the article on the difference between polyethylene terephthalate and polyethylene.

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Polystyrene compound ps

۶ بازديد

Polystyrene compound is a hard, rigid and transparent synthetic resin that is produced from the polymerization of styrene, which is one of the polymer raw materials. Polystyrene is used in the food service industry as rigid trays, disposable dinnerware, and foam cups, plates, and bowls.

Polystyrene compound has a uniform texture in terms of variety and distribution and has a good balance between hardness, toughness and impact resistance. It is also produced in the form of granules and has a white color.

Polystyrene compound can also be mixed with other polymers to add stiffness and strength to important plastic and rubber materials. Polystyrene is one of the raw materials of plastic, and due to its low production cost, ease of shaping the melted polymer in injection molding operations, and its optical and physical properties, it is widely used and has become one of the modern plastics.

Polystyrene compound is actually a combination of polystyrene raw materials, coloring materials and reinforcement, which improves its physical properties and desirable properties. This product is highly resistant to shock and impact.

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Полипропиленовый компаунд (ПП)

۷ بازديد

Полипропиленовый компаунд (ПП) представляет собой твердый кристаллический термопласт низкой плотности.  Полипропиленовый компаунд является одним из полимерных материалов, обладающим твердыми и гибкими физическими свойствами, а плотность влияет на вес деталей.

Соединения полипропилена (ПП) в сочетании с сополимерами этилена позволяют использовать соединения полипропилена в качестве инженерного термопласта, конкурируя с такими материалами, как акрилонитрил-бутадиен-стирол (АБС).

Полипропиленовые компаунды можно использовать при изготовлении деталей автомобилей, медицинского оборудования и в производстве бытовой техники. Соединение полимерных материалов, таких как полипропилен, обладает высокой эластичностью и устойчиво к коррозии.

После полиэтилена 66% доли полимерных материалов в мире составляет полипропилен (ПП). Причины широкого использования этих материалов обусловлены различными применениями ПП, который имеет больше физических свойств и свойств в составе соединения.

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