摘要:
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.
摘要:
Elastomer composites are produced by novel continuous flow methods and apparatus in which fluid streams of particulate filler and elastomer latex are fed to the mixing zone of a coagulum reactor to form a mixture in semi-confined flow continuously from the mixing zone through a coagulum zone to a discharge end of the reactor. The particulate filler fluid is fed under high pressure to the mixing zone, such as to form a jet stream to entrain elastomer latex fluid sufficiently energetically to substantially completely coagulate the elastomer with the particulate filler prior to the discharge end. Highly efficient and effective elastomer coagulation is achieved without the need for a coagulation step involving exposure to acid or salt solution or the like. Novel elastomer composites are produced. Such novel elastomer composites may be cured or uncured, and combine material properties, such as choice of filler, elastomer, level of filler loading, and macro-dispersion, not previously achieved.
摘要:
Elastomer composites are produced by novel continuous flow methods and apparatus in which fluid streams of particulate filler and elastomer latex are fed to the mixing zone of a coagulum reactor to form a mixture in semi-confined flow continuously from the mixing zone through a coagulum zone to a discharge end of the reactor. The particulate filler fluid is fed under high pressure to the mixing zone, such as to form a jet stream to entrain elastomer latex fluid sufficiently energetically to substantially completely coagulate the elastomer with the particulate filler prior to the discharge end. Highly efficient and effective elastomer coagulation is achieved without the need for a coagulation step involving exposure to acid or salt solution or the like. Novel elastomer composites are produced. Such novel elastomer composites may be cured or uncured, and combine material properties, such as choice of filler, elastomer, level of filler loading, and macro-dispersion, not previously achieved.
摘要:
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.