EP0240638A2

Olefinic chlorosilane and olefinic halide functional group containing polymers and method of forming the same.

Abstract

Copolymers comprising ethylene, alpha-olefin, and olefinic chlorosilane or olefinic hydrocarbon halide, and method of preparing copolymers. The copolymers may be in the form of statistical copolymers, or may be formed of first and second segments. The copolymers are useful in fiberglass and rubber compositions, and for forming graft and block polymers. The copolymers may be cross-linked to form nodular copolymers. The nodular copolymers are particularly useful as lube oil additives.

EP0240638A2, drawing sheet 1
Sheet 1 of 31

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Projected expiry passed 16 December 2006, 19.8 years ago.

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67 claims: 62 independent, 5 dependent

  1. 1
    A copolymer chain comprising:A. a first segment, being in the form of one contiguous segment or a plurality of discontinuous segments, comprising a copolymer of ethylene and an alpha-olefin;and B . a second segment comprising a copolymer of ethylene, an alpha-olefin, and at least one halogen-containing monomer selected from the group consisting of: a) olefinic chlorosilane of the formula wherein: i) x is in the range 0-2;ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;b) an olefinic hydrocarbon halide of the formula wherein: i) R is a Ziegler copolymerizable olefin;and ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and iii) X is a halogen;said second segment constituting less than 5 0 percent by weight of said copolymer chain, said second segment being in the form of one contiguous segment or a plurality of discontinuous segments;said at least one halogen-containing monomer being cross-linkable under conditions which do not cross-link said first segment to any substantial extent.
  2. 2
    The copolymer chain as defined in claim 1 wherein R is a Ziegler copolymerizable olefin selected from the group consisting of norbornenyl, dicyclopentenyl, and 1- hexenyl.
  3. 4
    The copolymer chain as defined in claim 3 wherein the olefinic chlorosilane has the formula wherein:i) x is in the range 0-2;ii) n is greater than or equal to 0;iii) R and R' are the same or different, and each of R and R' is selected from the groups consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons.
  4. 6
    The copolymer chain as defined in any of claims 1 to 5, further comprising a non-conjugated diene.
  5. 7
    The copolymer chain as defined by claim 6 wherein the non-conjugated diene is selected from the group consisting of 5-ethylidene-2-norbornene, 1,4-hexadiene, and dicyclopentadiene, and mixtures thereof.
  6. 8
    A composition consisting essentially of a plurality of copolymer chains as defined in any of claims 1 to 7 wherein said copolymer chains have at least one of M w / M n less than 2, and M z / M w less than 1.8.
  7. 9
    A composition consisting essentially of a plurality of copolymer chains as defined in any of claims 1 to 7, wherein said first segments have at least one of M w / M n less than 2, and M z / M w less than 1.8.
  8. 10
    . 10 . A fiberglass composition comprising glass fibers, plastic matrix, and the copolymer chains as defined in any one of claims 1-7 wherein the glass fibers have a portion of the copolymer attached thereto.
  9. 11
    A process of forming a fiberglass composition comprising glass fibers, plastic matrix, and the copolymer chains as defined in any one of claims 1- 7, said process comprising:a) coating the glass fibers with the copolymer chains;and b) incorporating the coated composition into a plastic matrix.
  10. 12
    A process of forming a fiberglass composition comprising glass fibers, plastic matrix, and the copolymer chains as defined in any one of claims 1- 7, said process comprising:a) forming a reaction mixture comprising the glass fibers, the plastic matrix, and the copolymer chains;and b) reacting the reaction mixture to form the composition.
  11. 13
    A polymerization process for producing a copolymer chain comprising:A. a first segment comprising one contiguous segment or a plurality of discontinuous segments of a copolymer of ethylene and an alpha-olefin;and B. a second segment comprising a copolymer of ethylene, an alpha-olefin, and at least one halogen-containing monomer selected from the group consisting of: a) olefinic chlorosilane of the formula wherein;i) x is in the range 0 - 2;ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons, and;b) an olefinic hydrocarbon halide of the formula RR'X wherein: i) R is a Ziegler copolymerizable olefin;and ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of alkyl having carbon atoms, saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and iii) X is a halogen;said second segment constituting less than 50 percent by weight of said copolymer chain, said second segment being in the form of one contiguous segment or a plurality of discontinuous segments;said at least one halogen-containing monomer being cross-linkable under conditions which do not cross-link said first segments to any substantial extent, said process comprising: 1. forming said first segment by polymerizing a reaction mixture of ethylene and alpha-olefin to the point where the weight of the resulting ethylene-alpha-olefin copolymer has reached at least 50% of the anticipated polymer weight at completion of polymerization, so as to form said first segment, and II. forming said second segment by incorporating said at .least one halogen-containing monomer into the reaction mixture to form said second segment.
  12. 14
    1 4 . The process as defined in claim 13 wherein the formation of the second segment is conducted after the completion of the formation of the first segment, whereby a copolymer chain consisting of substantially one first segment and substantially one second segment is formed.
  13. 16
    A polymerization process for producing a copolymer chain comprising:A. a first segment comprising one contiguous segment or a plurality of discontinuous segments of a copolymer of ethylene and an alpha-olefin;and B. a second segment comprising a copolymer of ethylene, an alpha-olefin, and at least one halogen-containing monomer selected from the group consisting of: a) olefinic chlorosilane of the formula wherein;i) x is in the range 0-2;ii-) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons, and;b) olefinic hydrocarbon halide of the formula RR'X wherein: i) R is a Ziegler copolymerizable olefin;and ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and iii) X is a halogen;said second segment constituting less than 5 0 percent by weight of said copolymer chain, said second segment being in the form of one contiguous segment or a plurality of discontinuous segments;said at least one halogen-containing monomer being cross-linkable under conditions which do not cross-link said first segments to any substantial extent, said process comprising: I. forming said second segment by polymerizing a reaction mixture of ethylene, alpha-olefin, and said at least one halogen-containing monomer to the point at which the reaction of the at least one halogen-containing monomer is substantially complete and the weight of the resulting ethylene-alpha-olefin-halogen-containing monomer copolymer is less than 50% of the anticipated polymer weight at completion of polymerization, so as to form said second segment, and II. forming said first segment by continuing the reaction to form said first segment;whereby a copolymer chain consisting of substantially one first segment and substantially one second segment is formed.
  14. 17
    The process as defined in any of claims 13 to 16 comprising the step of incorporating at least one of additional ethylene, alpha-olefin, non-conjugated diene, and halogen-containing monomer into the reaction mixture after initiation of the polymerization.
  15. 18
    The process as defined in any of claims 13 to 17 comprising polymerizing said ethylene, alpha-olefin, and at least one halogen-containing monomer reaction mixture with essentially one catalyst species in at least one mix-free reactor in such a manner and under conditions sufficient to initiate propagation of substantially all the copolymer chains simultaneously to form said plurality of said copolymer chains, wherein the copolymer chains are dispersed within the reaction mixture, and wherein the reaction mixture is essentially transfer-agent free.
  16. 19
    . The process as defined in claim 18 comprising conducting the polymerization in a tubular reactor.
  17. 20
    The process as defined in claim 19 further comprising injecting additional reaction mixture comprising at least one of ethylene, other alpha-olefin monomer, non-conjugated diene, and said at least one halogen-containing monomer at at least one location along said reactor.
  18. 21
    The process as defined in any of claims 13 to 20, wherein the alpha-olefin is propylene.
  19. 22
    The process defined in claim 2 0 comprising forming a copolymer chain wherein the first segment comprises the center of the copolymer chain, and the second segment comprises two segments, one at each end of the copolymer chain, by:a) introducing a r'eaction mixture comprising ethylene, propylene, and at least one halogen-containing monomer at the reactor inlet, and introducing said at least one halogen-containing monomer at a second location along the reactor to produce the second segment;and b) introducing a reaction mixture comprising a compound selected from the group consisting of at least one of ethylene and propylene at a first location along the reactor, said first location being between the inlet and the second location to form said first segment.
  20. 23
    The process as defined in any of claims 13. to 22 wherein the at least one halogen-containing monomer is an olefinic chlorosilane, said process further comprising reacting the copolymer chain with a hydroxy terminated thermoplastic to form a thermoplastic elastomer.
  21. 24
    The process as defined in any of claims 13 to 22, wherein the at least one halogen-containing monomer is an olefinic hydrocarbon halide, said process further comprising:a) reacting the copolymer chain with a metalating agent;and b) reacting an anionically polymerizable monomer with the copolymer chain reacted in step a) to form a graft polymer.
  22. 25
    The process as defined in claim 24 wherein the metalating agent is selected from at least one of the group consisting of branched alkyl lithium and n-butyl lithium, and the anionically polymerizable monomer is styrene.
  23. 26
    The process defined in any of claims 13 to 22, wherein the at least one halogen-containing monomer is an olefinic hydrocarbon halide said process further comprising:a) reacting the copolymer chain with a Lewis acid;and b) reacting a cationically polymerizable monomer with the copolymer chain reacted in step a) to form a graft polymer.
  24. 27
    The process as defined by claim 26 wherein the Lewis acid is selected from at least one of aluminum ethyl dichloride, boron trichloride, and aluminum trichloride, and the cationically polymerizable monomer is styrene.
  25. 28
    The process as defined in any of claims 13 to 22, wherein the at least one halogen-containing monomer is an olefinic chlorosilane and the reaction mixture comprises a plurality of the polymer chains, and said process further comprises cross-linking the second segments of the copolymer chain with at least one composition selected from the group consisting of water, and polyfunctional proton donors.
  26. 29
    The process as defined in any of claims 13 to 22, wherein the at least one halogen-containing monomer is an olefinic hydrocarbon halide and the reaction mixture comprises a plurality of the copolymer chains, and said process further comprises cross-linking the second segments of the copolymer chains with at least one compound selected from the group consisting of ZnO and polyfunctional nucleophiles.
  27. 30
    A nodular copolymer product of copolymer chains comprising:A. a nodule region of substantial cross-linking of copolymer chain second segments substantially cross-linked by at least one cross-linking agent, substantially each of said second segments comprising a copolymer of ethylene, an alpha-olefin, and the at least one halogen-containing monomer selected from the group consisting of: a) a olefinic chlorosilane of the formula wherein: i) x is in the range 0-2;ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and b) an olefinic hydrocarbon halide of the formula RR'X wherein: i) R is a Ziegler copolymerizable olefin;ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;iii) X is a halogen;and B. substantially uncross-linked copolymer chain first segments extending therefrom, substantially each of said first segments comprising a copolymer of ethylene and an alpha-olefin;said halogen-containing monomer being cross-linkable under conditions which do not cross-link said first segments to any substantial extent.
  28. 31
    3 1 . The nodular copolymer product as defined in claim 3 0 wherein the at least one halogen-containing monomer is olefinic chlorosilane and the at least one cross-linking agent is selected from the group consisting of water and polyfunctional proton donors.
  29. 32
    The nodular copolymer product as defined in claim 3 0 wherein the at least one halogen-containing- monomer is an olefinic hydrocarbon halide and the at least one cross-linking agent is selected from at least one of the group consisting of Z n O and polyfunctional nucleophiles.
  30. 34
    3 4. A nodular copolymer product comprising:I. copolymer chains comprising: A. substantially uncross-linked first segments, substantially each being in the form of one contiguous segment or a plurality of discontinuous segments substantially each comprising a copolymer of ethylene and an alpha-olefin;and B. second segments substantially each comprising a copolymer of ethylene, an alpha-olefin, and at least one halogen-containing monomer selected from the group consisting of: (a) a olefinic chlorosilane of the formula: wherein: i) x is in the range 0-2;ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and;(b) an olefinic hydrocarbon halide of the formula wherein: i) R is a Ziegler copolymerizable olefin;ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;iii) X is a halogen;wherein the second segments of said copolymer chains are bonded by at least one cross-linking agent and cross-linked to one another to form a nodular region, and the substantially uncross-linked first segments extend from said nodular region;and I I. a region within the nodule containing functional groups with dispersant character.
  31. 35
    The nodular copolymer of as defined in claim 35 wherein the dispersant groups comprising at least one composition from the group consisting of amides, pyridines, polycaprolactones, polycaprolactams, pyrrolidones, and imidazoles are attached to the cross-linking agents within the nodule.
  32. 36
    A process for producing a nodular copolymer product comprising:I. copolymer chains each comprising;A. a first segment being in the form of one contiguous segment or a plurality of segments, comprising a copolymer of ethylene and an alpha-olefin;and B. a second segment comprising a copolymer of ethylene, an alpha-olefin, and at least one halogen-containing monomer selected from the group consisting of: a) a olefinic chlorosilane of the formula: wherein: i) x is in the range 0-2;ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 atoms - selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and b) an olefinic hydrocarbon halide of the formula: wherein: i) R is a Ziegler copolymerizable olefin;and ii) R' is a hydrocarbon with 1-30 carbon atoms selected, from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbon;and iii) X is a halogen;substantially each of said second segments constituting less than 50 percent by weight of its copolymer chain, each of said second segments being in the form of one contiguous segment or a plurality of discontinuous segments;said at least one halogen-containing monomer being cross-linkable under conditions which do not cross-link said first segments to any substantial extent: wherein said second segments of said copolymer chains are bonded by at least one cross-linking agents;and II. a region within the nodule containing functional groups with dispersant character;said process comprising the steps of: A. polymerizing a reaction mixture of ethylene and alpha-olefin until the weight of said ethylene-alpha-olefin copolymer has reached at least 5 0 % of the anticipated polymer weight at completion of polymerization so as to form said first segment;B. incorporating said at least one halogen-containing monomer to form said second segment;C. incorporating said polyfunctional coupling agents which contain dispersant functionality to cross link said second segments to form the nodule.
  33. 37
    A lubricating oil composition comprising an effective amount of a nodular copolymer additive according to any of claims 30 to 35 or produced by the process as defined by claim 36.
  34. 38
    A lubricating oil composition comprising a nodular copolymer additive according to any of claims 30 to 35 in an amount of about 0.1 to about 15.0% by weight of the total composition.
  35. 39
    A composition consisting essentially of a plurality of copolymer chainr having at least one of M w / M n n less than 2 and M z / M w less than 1.8, said copolymer comprising ethylene, an alpha-olefin, and at least one halogen-containing monomer selected from the group consisting of:a) a olefinic chlorosilane of the formula: wherein;i) x is in the range 0-2: ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbon;and b) olefinic hydrocarbon halide of the formula: wherein: i) R is a Ziegler copolymerizable diene;and ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons;and iii) X is a halogen.
  36. 40
    4 0 . The composition as defined in claim 39 further comprising a non-conjugated diehe.
  37. 41
    The composition as defined in claim 40 wherein the non-conjugated diene is selected from the group consisting of 5-ethylidene-2-norbornene, 1,4-hexadiene, and dicyclopentadiene, and mixtures thereof.
  38. 42
    The composition defined in any of claims 39 to 41 wherein 95 weight percent of the copolymer chains have an ethylene composition that differs from the average weight percent ethylene composition by not more than 15 weight percent, and wherein at least two portions of essentially each copolymer chain,, each portion comprising at least about 5 weight percent of the chain, differ in composition from one another by at least about 5 weight percent ethylene.
  39. 43
    The composition as defined in claim 42 wherein 95 weight percent of the copolymer chains have an ethylene composition that differs from its average weight percent ethylene composition by not more than 15 weight percent, and wherein at least two portions of essentially each copolymer chain,, each portion comprising at least about 5 weight percent of the chain, differ in composition from one another by at least about 10 weight percent ethylene.
  40. 44
    . The composition as defined in claim 43 wherein 9 5 weight percent of the copolymer chains have an ethylene composition that differs from its average weight percent ethylene composition by not more than 15 weight percent, and wherein at least two portions of essentially each copolymer chain, each portion comprising at least about 5 weight percent of the chain, differ in composition from one another by at least about 20 weight percent ethylene.
  41. 45
    The composition as defined in any of claims 39 to 44 having at least one of M w / M n less than 2 and M z / M w less than 1.8.
  42. 46
    The composition as defined in any of claims 39 to 45 wherein R is a Ziegler copolymerizable olefin selected from the group consisting of norbornenyl, dicyclopentenyl, and 1- hexenyl.
  43. 47
    The composition as defined in any of claims 39 to 46 wherein said plurality of copolymer chains are statistical copolymer chains.
  44. 48
    The composition as defined in any of claims 39 to 47 wherein the at least one halogen-containing monomer is an . olefinic chlorosilane.
  45. 49
    A cured copolymer composition comprising the composition as defined in claim 48 cross-linked by reaction with at least one composition selected from the group consisting of water and polyfunctional proton donors.
  46. 50
    The composition as defined in claim 49 wherein the copolymer chains are cross-linked by reaction with at least one polyfunctional proton donor selected from the group consisting of polyfunctional alcohols, amines, polycarboxylic acids, polythiols.
  47. 51
    The composition as defined in claim 48 wherein the olefinic chlorosilane has the formula wherein:i) x is in the range 0-2;ii) n is greater than or equal to 0;iii) R and R' are the same or different, and each of R and R' is selected from the functional groups consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic, and polycyclic hydrocarbons.
  48. 52
    The composition as defined in claim 51 wherein the olefinic chlorosilane is selected from the group consisting of vinyl dimethyl chlorosilane, vinyl ethyl dichlorosilane, 5-hexenyldimethylchlorosilane, 5 - hexenyltrichlorosilane, 7-octenyltrichlorosilane, and phenyl allyldichlorosilane, 5-trichlorosilyl-2-norbornene, and 5-methyldichlorosilyl-2-norbornene.
  49. 53
    The composition as defined in any of claims 39 to 47 wherein the at least one halogen-containing monomer is an olefinic hydrocarbon halide.
  50. 54
    The composition as defined in claim 53 wherein the olefinic hydrocarbon halide is selected from the group consisting of 5-chloromethyl-2-norbornene and 5- parachloromethylphenyl-2-norbornene.
  51. 55
    A cured copolymer composition comprising the composition as defined in claim 53 cross-linked by reaction with at least one composition selected from the group consisting of ZnO and polyfunctional nucleophiles.
  52. 56
    5 6 . The composition as defined in claim 55 wherein the copolymer chains are cross-linked by reaction with ZnO.
  53. 57
    The copolymer composition as defined in claim 55 wherein the copolymer chains are cross-linked by reaction with at least one polyfunctional nucleophile selected from the group consisting of diamines, polyamines other than diamines, and thiourea.
  54. 58
    The composition as defined in claim 53 wherein the halogen is chlorine or bromine.
  55. 59
    A polymerization process for producing copolymer chains from a reaction mixture comprised of ethylene, an alpha-olefin, and an at least one halogen-containing monomer selected from the group consisting of:a) olefinic chlorosilane of the formula wherein: i) x is in the range 0-2;ii) R is a Ziegler copolymerizable olefin;and iii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic and polycyclic hydrocarbons;and b) an olefinic hydrocarbon halide of the formula wherein: i) R is a Ziegler copolymerizable olefin;ii) R' is a hydrocarbon with 1-30 carbon atoms selected from the group consisting of saturated or unsaturated as well as branched or unbranched aliphatic, aromatic, cyclic and polycyclic hydrocarbon;and iii) X is a halogen;said process comprising conducting the polymerization of the copolymer chains: a) in at least one mix-free reactor;b) with essentially one active catalyst species;c) using at least one reaction mixture which is essentially transfer-agent free;d) in such a manner and under conditions sufficient to initiate propagation of essentially all of said copolymer chains simultaneously.
  56. 60
    The process as defined in claim 59 wherein said mix-free reactor is a tubular reactor, and said ethylene, alpha-olefin, at least one halogen-containing monomer, and essentially one active catalyst species are introduced at the inlet of the tubular reactor.
  57. 62
    The process as defined in claim 61 wherein at least one compound selected from the group consisting of ethylene, alpha-olefin, non-conjugated diene, and at least one halogen-containing monomer is introduced at at least one location along the reactor
  58. 63
    The process as defined in any of claims 60 to 62 wherein the at least one halogen-containing monomer is an olefinic chlorosilane.
  59. 64
    The process as defined in claim 63 comprising the step of curing the copolymer chains by reaction with at least one composition selected from the group consisting of water and selected polyfunctional proton donors.
  60. 65
    The process as defined in claims 60 to 62 wherein the at least one halogen-containing monomer is an olefinic hydrocarbon halide.
  61. 66
    6 6. The process as defined in claim 65 comprising the step of curing the copolymer chains with at least one composition selected from the group consisting of Z n O and polyfunctional nucleophiles.
  62. 67
    The process as defined in any of claims 60 to 66 wherein the reactor is a batch reactor.
Independent claims62