EP1595670A2

Method for producing and treating novel elastomer composites and elastomer composites

Abstract

Elastomer masterbatch is processed in a continuous compounder (100) having multiple parallel elongate rotors (106) axially oriented in an elongate processing chamber (104). Optionally, additional materials are compounded into the masterbatch, e.g., additives (58, 59), other elastomeric compositions, etc. Preferably, the masterbatch then is further processed in an open mill (120). Excellent control of Mooney Viscosity is achieved. In certain preferred embodiments, elastomer composites are produced by novel continuous flow methods and apparatus in which fluid streams of particulate filler (57) and elastomer latex (58) are fed to the mixing zone (14, 50) of a coagulum reactor (48) to form a coagulated mixture in semi-confined flow continuously from the mixing zone (50) through a coagulum zone (52) to a discharge end (68) of the reactor. The particulate filler fluid is fed under high pressure to the mixing zone (50), such as to form a jet stream to entrain elastomer latex fluid sufficiently energetically to substantially completely coagulate the elastomer with the particular filler prior to the discharge end (68) without need of adding acid or salt solution or other coagulation step. The coagulated elastomer and particular filler composite is fed into the aforesaid continuous compounder (100) for processing and control of its moisture level and Mooney Viscosity. Novel elastomer composites are produced. Such novel elastomer composites combine material properties and characteristics, such as choice of filler, elastomer, level of filler loading, moisture level, Mooney Viscosity, balance between molecular weight and amount of bound rubber, and macro-dispersion not previously achieved.

EP1595670A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 13 April 2020, 6.4 years ago.

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14 claims: 4 independent, 10 dependent

  1. 1
    A method of treating a substantially coagulated masterbatch comprising a particulate filler and an elastomer, the method comprising the steps of:feeding the masterbatch to a feed port of a continuous compounder having multiple rotors axially oriented in an elongate processing chamber;processing the masterbatch through the processing chamber of the continuous compounder by controlled operation of the rotors;anddischarging the masterbatch from a discharge orifice of the continuous compounder.
  2. 8
    A continuous flow method of producing elastomer composite, comprising:feeding a continuous flow of first fluid comprising elastomer latex to a mixing zone of a coagulum reactor defining an elongate coagulum zone extending from the mixing zone to a discharge end;feeding a continuous flow of second fluid comprising particulate filler under pressure to the mixing zone of the coagulum reactor to form a mixture with the elastomer latex, the mixture passing as a continuous flow to the discharge end and the particulate filler being effective to coagulate the elastomer latex, wherein mixing of the first fluid and the second fluid within the mixing zone is sufficiently energetic to substantially completely coagulate the elastomer latex with the particulate filler prior to the discharge end;discharging a substantially continuous flow of elastomer composite from the discharge end of the coagulum reactor;feeding the substantially continuous flow of elastomer composite to a feed port of a continuous compounder having multiple parallel rotors axially oriented in an elongate processing chamber;processing the elastomer composite through the processing chamber of the continuous compounder by controlled operation of the rotors;anddischarging the elastomer composite from a discharge orifice of the continuous compounder.
  3. 11
    Apparatus for producing elastomer composite of particulate filler dispersed in elastomer, comprising:a coagulum reactor defining a mixing zone and an elongate coagulum zone extending from the mixing zone to a discharge end;latex feed means for feeding elastomer latex fluid continuously to the mixing zone;filler feed means for feeding particulate filler fluid as a continuous jet into the mixing zone to form a mixture with the elastomer latex fluid traveling from the mixing zone to the discharge end of the coagulum zone, wherein the distance between the mixing zone and the discharge end is sufficient to permit substantially complete coagulation of the elastomer latex prior to the discharge end;anda continuous compounder having a feed port operatively connected to the discharge end of the coagulum zone for receiving the coagulated mixture of elastomer latex and particulate filler, a discharge orifice, an elongate processing chamber, and a plurality of rotors axially oriented within the processing chamber.
  4. 14
    An elastomer composite comprising substantially coagulated elastomer in which particulate filler has been dispersed by:feeding a continuous flow of first fluid comprising elastomer latex to a mixing zone of a coagulum reactor defining an elongate coagulum zone extending from the mixing zone to a discharge end;feeding a continuous flow of second fluid comprising particulate filler under pressure to the mixing zone of the coagulum reactor to form a mixture with the elastomer latex, the mixture passing as a continuous flow to the discharge end, and the particulate filler being effective to coagulate the elastomer latex, wherein mixing of the first fluid and the second fluid within the mixing zone is sufficiently energetic to substantially completely coagulate the elastomer latex with the particulate filler prior to the discharge end;discharging a substantially continuous flow of elastomer composite from the discharge end of the coagulum reactor;feeding the elastomer composite from the discharge end of the coagulum reactor to a continuous compounder having multiple parallel elongate rotors axially oriented in an elongate processing chamber;processing the masterbatch through the processing chamber of the continuous compounder by controlled operation of the rotors;anddischarging the masterbatch from a discharge orifice of the continuous compounder.