Introduction To ACM

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    Introduction To ACM

    ACM Material Description

    Introduction

     

    1

    Polyacrylate elastomers are well suited for use with extreme pressure (EP) lubricants and have high resistance to oxidation and ozone.

    2

    Trade Names Include Cyanacryl® (American Cyanamid), HyTemp® (BF Goodrich), and Thiacril® (Uniroyal).

    3

    Due to the special structure, it has many excellent characteristics, such as heat resistance, aging resistance, oil resistance, ozone resistance, UV resistance, etc.

    4

    The mechanical properties and processing properties are better than those of fluoroelastomer and silicone rubber, and its heat resistance, aging resistance and oil resistance are better than nitrile rubber.

    5

    ACM is widely used in various high-temperature, oil-resistant environments, and has become a sealing material that the automotive industry has focused on developing and promoting in recent years.

    6

    Especially for high-temperature resistant oil seals, crankshafts, valve stems, cylinder gaskets, hydraulic oil pipelines, etc. of automobiles.

     

    Product name Elongation Tear strength Compression set Relative density
    Acrylic rubber (ACM) 210%. 32KN/m At 150°C* 70H 1.1

     

     

    Performance composition

     

    Master monomer

    1

    Commonly used main monomers are methyl acrylate, ethyl acrylate, butyl acrylate and 2-ethylhexyl acrylate.

    2

    As the carbon number of the side ester group increases, the cold resistance increases, but the oil resistance deteriorates.

    3

    In order to maintain the good oil resistance of ACM and improve its low temperature performance, some low-temperature oil-resistant monomers with polar groups are synthesized.

     

    Low temperature oil-resistant monomer

    1

    The traditional use of alkoxyether acrylate to participate in copolymerization obtains the cold resistance temperature of ACM below -35 °C.

    2

    Later, in industrial production, methoxyethyl acrylate was selected as a comonomer to produce cold-resistant ACM, which further reduced the use temperature.

    3

    In recent years, the use of polyethylene glycol acrylate methoxy ester, dimethoxyethyl maleic acid as low-temperature oil-resistant monomers has a better effect.

    4

    In addition, DuPont uses ethylene and methyl acrylate solution to copolymerize ethylene into the polymer backbone, which can significantly improve the low-temperature flexibility of the product.

     

    Vulcanized point monomer

    1

    In order to make ACM convenient for vulcanization treatment, a certain amount of vulcanization point monomer must also be added to participate in copolymerization.

    2

    Generally, the content of vulcanization point monomer is less than 5%, and vulcanization point monomer can be divided into chlorine-containing type, epoxy type, carboxyl type and double bond type according to the reactive point.

    3

    Among them, the main industrial applications are chlorine-containing vinyl chloroacetate, epoxy glycidyl methacrylate, allyl glycidyl ester, double-bonded 3-methyl-2-butenyl ester, carboxylic acid monoester maleic acid or chlaminate monoester.

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