Patent · US2010190914A1 · A1 · US
Power transmission products having enhanced properties
- (11) Publication number
- US2010190914A1
- (21) Application number
- 12/690,323
- (22) Filing date
- 2010-01-20
- (30) Priority date
- 2004-12-31
- (43) Publication date
- 2010-07-29
- (51) IPC
- C08L 23/06; C08L 23/08; C08L 31/04; C08L 37/00; C08F 8/00; C08L 23/00; C08L 23/04; C08L 45/00; C08L 9/00; C08L 91/06; C08L 93/00; F16G 1/00; F16G 1/02; F16G 1/10; F16G 9/00
- (52) CPC
- C08L Compositions of macromolecular compounds: 23/16, 23/0869, 23/30, 2312/00, 51/06
- (73) Assignee
- Veyance Technologies Inc
- (72) Inventors
- Thomas George Burrowes; Michael John William Gregg
- (54) Title
- Power transmission products having enhanced properties
- (57) Abstract
The present invention is directed to the incorporation of functionalized polyethylenes, in amount of about 1% to 95% by weight based upon the weight of the total crosslinkable material, into ethylene alpha olefin elastomers, such as EPDM elastomer compositions, which are crosslinked by peroxides, which results in improved properties, such as hardness and modulus of elongation, and can result in improved higher abrasion resistance, wear resistance, coefficient of friction, tensile strength, and other properties through a broad temperature range, which are beneficial to power transmission products, such as power transmission belts.
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Claims (1)
- A power transmission belt which is formed by curing an elastomer composition, wherein the elastomeric composition comprises: (a) ethylene-alpha-olefin elastomer, (b) an organic peroxide curing agent in an amount of 2 to 15 parts per hundred of crosslinkable material, and (c) 20 to 80% by weight based upon the total weight of a crosslinkable functionalized thermoplastic polyethylene selected from the group consisting of oxidized polyethylenes, ethylene maleic anhydride copolymers, and ethylene-vinyl acetate copolymers, whereby the crosslinkable functionalized thermoplastic polyethylene is crosslinked into the composition on cure, and wherein the cured compound is in the form of the power transmission belt. 2. The power transmission belt of claim 1 wherein ethylene-alpha-olefin elastomer is ethylene-propylene copolymer. 3. The power transmission belt of claim 1 wherein ethylene-alpha-olefin elastomer is ethylene-propylene-diene terpolymer. 4. The power transmission belt of claim 1 wherein the power transmission belt is a member selected from the group consisting of synchronous belts, v-belts, and multi-V-ribbed belts. 5. The power transmission belt of claim 1 wherein the elastomeric composition further includes a filler. 6. The power transmission belt of claim 1 wherein the elastomeric composition further includes a reinforcing fiber. 7. The power transmission belt of claim 1 wherein the composition further includes a metal salt of an alpha-beta-unsaturated organic acid. 8. The power transmission belt of claim 1 wherein the composition further includes zinc diacrylate. 9. The power transmission belt of claim 1 wherein the composition further includes an acrylate polybutadiene and a (meth)acrylate. 10. The power transmission belt of claim 1 wherein the elastomer is a blend of elastomers. 11. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene is an oxidized polyethylene. 12. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene is an ethylene maleic anhydride copolymer. 13. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene is an ethylene-vinyl acetate copolymer. 14. The power transmission belt of claim 1 wherein the elastomeric composition further includes an amount of acrylated polybutadiene in the range from 1 to 10 phr. 15. The power transmission belt of claim 14 wherein the acrylated polybutadiene has a molecular weight of from 1,000 to 70,000. 16. The power transmission belt of claim 1 wherein the acrylated polybutadiene has a molecular weight of from 1,000 to 70,000. 17. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene in not an elastomer or a thermoplastic elastomer. 18. A cured elastomer composition formed by organic peroxide curing an elastomer composition comprising: (a) ethylene-alpha-olefin elastomer, (b) an organic peroxide curing agent in an amount of 2 to 15 parts per hundred of crosslinkable material (phr) to cure the composition, (c) 1 to 10 phr of acrylated polybutadiene, and (d) 20 to 80% by weight based upon the total weight of a crosslinkable functionalized thermoplastic polyethylene selected from the group consisting of oxidized polyethylenes, ethylene maleic anhydride copolymers, and ethylene-vinyl acetate copolymers, whereby the functionalized thermoplastic polyethylene is crosslinked into the composition on cure. 19. The cured elastomer composition of claim 18 wherein the crosslinkable functionalized thermoplastic polyethylene is an oxidized polyethylene. 20. The cured elastomer composition of claim 18 wherein the crosslinkable functionalized thermoplastic polyethylene is an ethylene-vinyl acetate copolymer.
Description
This application is a continuation-in-part of U.S. patent application Ser. No. 11/290,232, filed on Nov. 30, 2005, which is a continuation-in-part of U.S. patent application Ser. No. 11/026,769, filed on Dec. 31, 2004, and from which this application claims priority.
The present invention is directed to improved ethylene-alpha-olefin elastomers, especially EPDM-based elastomers, for use in manufacturing power transmission products, such as power transmission belts, timing belts, and the like. More specifically, the invention is directed to such elastomers which incorporate certain types of functionalized polyethylenes which result in belts having enhanced physical properties.
Power transmission belts are known. See for example, U.S. Pat. No. 6,561,937 (Wegele); U.S. Pat. No. 6,695,734 (Hedberg et al); U.S. Pat. No. 5,610,217 (Yarnell et al) and U.S. Pat. No. 6,251,977 (Georget et al). Proposals have already been made on numerous occasions to use EPDM (ethylene propylene diene terpolymer) elastomers cured by organic peroxides in the manufacture of power transmission belts, because of the qualities and advantages of such elastomers such as cost, operating temperature range, and ability to withstand oxygen and ozone, such EPDM-based elastomers having additives which improve their dynamic properties such as resistance to fatigue and to wear, their breaking strength, and their modulus of elasticity, and also their adhesion to traction cords, which additives are generally ...
Citations (18)
- US2683141A
- US3060163A
- US4128523A
- US4506056A
- US4990568A
- US5216074A
- US5238731A
- US5610217A
- US5905106A
- US6153704A
- US6251977B1
- US6491992B1
- US6561937B1
- US6491598B1
- US6695734B2
- US20050288439A1
- US20060100377A1
- US7655729B2
Record as JSON
{
"publication_number": "US2010190914A1",
"country": "US",
"kind": "A1",
"title": "Power transmission products having enhanced properties",
"abstract": "The present invention is directed to the incorporation of functionalized polyethylenes, in amount of about 1% to 95% by weight based upon the weight of the total crosslinkable material, into ethylene alpha olefin elastomers, such as EPDM elastomer compositions, which are crosslinked by peroxides, which results in improved properties, such as hardness and modulus of elongation, and can result in improved higher abrasion resistance, wear resistance, coefficient of friction, tensile strength, and other properties through a broad temperature range, which are beneficial to power transmission products, such as power transmission belts.",
"claims": [
"1. A power transmission belt which is formed by curing an elastomer composition, wherein the elastomeric composition comprises: (a) ethylene-alpha-olefin elastomer, (b) an organic peroxide curing agent in an amount of 2 to 15 parts per hundred of crosslinkable material, and (c) 20 to 80% by weight based upon the total weight of a crosslinkable functionalized thermoplastic polyethylene selected from the group consisting of oxidized polyethylenes, ethylene maleic anhydride copolymers, and ethylene-vinyl acetate copolymers, whereby the crosslinkable functionalized thermoplastic polyethylene is crosslinked into the composition on cure, and wherein the cured compound is in the form of the power transmission belt. 2. The power transmission belt of claim 1 wherein ethylene-alpha-olefin elastomer is ethylene-propylene copolymer. 3. The power transmission belt of claim 1 wherein ethylene-alpha-olefin elastomer is ethylene-propylene-diene terpolymer. 4. The power transmission belt of claim 1 wherein the power transmission belt is a member selected from the group consisting of synchronous belts, v-belts, and multi-V-ribbed belts. 5. The power transmission belt of claim 1 wherein the elastomeric composition further includes a filler. 6. The power transmission belt of claim 1 wherein the elastomeric composition further includes a reinforcing fiber. 7. The power transmission belt of claim 1 wherein the composition further includes a metal salt of an alpha-beta-unsaturated organic acid. 8. The power transmission belt of claim 1 wherein the composition further includes zinc diacrylate. 9. The power transmission belt of claim 1 wherein the composition further includes an acrylate polybutadiene and a (meth)acrylate. 10. The power transmission belt of claim 1 wherein the elastomer is a blend of elastomers. 11. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene is an oxidized polyethylene. 12. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene is an ethylene maleic anhydride copolymer. 13. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene is an ethylene-vinyl acetate copolymer. 14. The power transmission belt of claim 1 wherein the elastomeric composition further includes an amount of acrylated polybutadiene in the range from 1 to 10 phr. 15. The power transmission belt of claim 14 wherein the acrylated polybutadiene has a molecular weight of from 1,000 to 70,000. 16. The power transmission belt of claim 1 wherein the acrylated polybutadiene has a molecular weight of from 1,000 to 70,000. 17. The power transmission belt of claim 1 wherein the crosslinkable functionalized thermoplastic polyethylene in not an elastomer or a thermoplastic elastomer. 18. A cured elastomer composition formed by organic peroxide curing an elastomer composition comprising: (a) ethylene-alpha-olefin elastomer, (b) an organic peroxide curing agent in an amount of 2 to 15 parts per hundred of crosslinkable material (phr) to cure the composition, (c) 1 to 10 phr of acrylated polybutadiene, and (d) 20 to 80% by weight based upon the total weight of a crosslinkable functionalized thermoplastic polyethylene selected from the group consisting of oxidized polyethylenes, ethylene maleic anhydride copolymers, and ethylene-vinyl acetate copolymers, whereby the functionalized thermoplastic polyethylene is crosslinked into the composition on cure. 19. The cured elastomer composition of claim 18 wherein the crosslinkable functionalized thermoplastic polyethylene is an oxidized polyethylene. 20. The cured elastomer composition of claim 18 wherein the crosslinkable functionalized thermoplastic polyethylene is an ethylene-vinyl acetate copolymer."
],
"description_excerpt": "This application is a continuation-in-part of U.S. patent application Ser. No. 11/290,232, filed on Nov. 30, 2005, which is a continuation-in-part of U.S. patent application Ser. No. 11/026,769, filed on Dec. 31, 2004, and from which this application claims priority.\n\nThe present invention is directed to improved ethylene-alpha-olefin elastomers, especially EPDM-based elastomers, for use in manufacturing power transmission products, such as power transmission belts, timing belts, and the like. More specifically, the invention is directed to such elastomers which incorporate certain types of functionalized polyethylenes which result in belts having enhanced physical properties.\n\nPower transmission belts are known. See for example, U.S. Pat. No. 6,561,937 (Wegele); U.S. Pat. No. 6,695,734 (Hedberg et al); U.S. Pat. No. 5,610,217 (Yarnell et al) and U.S. Pat. No. 6,251,977 (Georget et al). Proposals have already been made on numerous occasions to use EPDM (ethylene propylene diene terpolymer) elastomers cured by organic peroxides in the manufacture of power transmission belts, because of the qualities and advantages of such elastomers such as cost, operating temperature range, and ability to withstand oxygen and ozone, such EPDM-based elastomers having additives which improve their dynamic properties such as resistance to fatigue and to wear, their breaking strength, and their modulus of elasticity, and also their adhesion to traction cords, which additives are generally ...",
"cpc": [
"C08L 23/16",
"C08L 23/0869",
"C08L 23/30",
"C08L 2312/00",
"C08L 51/06"
],
"ipc": [
"C08L 23/06",
"C08L 23/08",
"C08L 31/04",
"C08L 37/00",
"C08F 8/00",
"C08L 23/00",
"C08L 23/04",
"C08L 45/00",
"C08L 9/00",
"C08L 91/06",
"C08L 93/00",
"F16G 1/00",
"F16G 1/02",
"F16G 1/10",
"F16G 9/00"
],
"assignees": [
"Veyance Technologies Inc"
],
"inventors": [
"Thomas George Burrowes",
"Michael John William Gregg"
],
"filing_date": "2010-01-20",
"publication_date": "2010-07-29",
"priority_date": "2004-12-31",
"application_number": "US-69032310-A",
"family_id": "42354676",
"cited_by_count": 16,
"citations": [
"US2683141A",
"US3060163A",
"US4128523A",
"US4506056A",
"US4990568A",
"US5216074A",
"US5238731A",
"US5610217A",
"US5905106A",
"US6153704A",
"US6251977B1",
"US6491992B1",
"US6561937B1",
"US6491598B1",
"US6695734B2",
"US20050288439A1",
"US20060100377A1",
"US7655729B2"
]
}
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