Thixotropic gel or liquid for friction control and method of using the same
A friction control composition having high and positive frictional properties for sliding steel surfaces includes a water insoluble hydrocarbon that enables a reduced water content, a rheological additive, a freezing point depressant, a friction modifier, and a lubricant.
1. A method of modifying friction of a rail road track from negative to positive comprising:
mixing a friction control composition by applying shear to thin the thickness or viscosity of the composition, the friction control composition comprising a thixotropic gel or liquid free of a skin forming retentivity agent, the thixotropic gel or liquid comprising a water insoluble component selected from the group consisting of isoparaffins, vegetable oils, bio-based triglycerides, fatty oils and synthetic esters;
applying said thinned composition to the top of a rail; and
causing said thinned composition on the top of the rail to settle to a static condition of increased viscosity sufficient to maintain the composition in position on the top of the rail as an undried composition for engagement by a train wheel with shear thinning and distribution of the composition along the rail to change the friction from negative to positive.
2. The method of claim 1 , wherein the thixotropic gel or liquid is free of a skin forming retentivity agent selected from the group consisting of acrylic, polyvinyl alcohol, polyvinyl chloride, oxazoline, epoxy, alkyd, urethane acrylic, modified alkyd, acrylic latex, acrylic epoxy hybrids, polyurethane, styrene acrylate, and styrene butadiene based compounds.
3. The method of claim 1 , wherein the water insoluble component is canola oil.
4. The method of claim 1 , wherein the thixotropic gel or liquid further comprises between from about 9 to about 24 w/w % of a solid friction modifier.
5. A thixotropic gel or liquid for friction control comprising between from about 10 to about 40 wt. % of a water insoluble component, between from about 9 to about 24 w/w % of a solid friction modifier, and between from about 4 to about 40 wt. % water.
6. The thixotropic gel or liquid of claim 5 , wherein the water insoluble component is selected from the group consisting of isoparaffins, vegetable oils, bio-based triglycerides, fatty oils and synthetic esters.
7. The thixotropic gel or liquid of claim 5 , wherein the water insoluble component is canola oil.
8. The thixotropic gel or liquid of claim 6 , wherein the water insoluble component is a vegetable oil.
9. A method of modifying the friction of a rail road track from negative to positive comprising:
mixing a friction control composition by applying shear to thin the thickness or viscosity of the composition, the friction control composition comprising a thixotropic gel or liquid comprising between from about 10 to about 40 wt. % of a water insoluble component and between from about 4 to about 40 wt. % water;
applying said thinned composition to the top of a rail; and
causing said thinned composition on the top of the rail to settle to a static condition of increased viscosity sufficient to maintain the composition in position on the top of the rail as an undried composition for engagement by a train wheel with shear thinning and distribution of the composition along the rail to change the friction from negative to positive.
10. A method of modifying friction of a rail road track from negative to positive comprising:
mixing a friction control composition by applying shear to thin the thickness or viscosity of the composition, the friction control composition comprising a thixotropic gel or liquid which comprises a water insoluble component selected from the group consisting of isoparaffins, vegetable oils, bio-based triglycerides, fatty oils and synthetic esters;
applying said thinned composition to the top of a rail; and
causing said thinned composition on the top of the rail to settle to a static condition of increased viscosity sufficient to maintain the composition in position on the top of the rail as an undried composition for engagement by a train wheel with shear thinning and distribution of the composition along the rail to change the friction from negative to positive.
11. The method of claim 10 , wherein the friction control composition further comprises between from about 4 to about 40 w/w % water.
12. The method of claim 10 , wherein the friction control composition is subjected to shear mixing in the range of from about 5,000 cP to about 15,000 cP, and wherein the composition, when settled to static condition has a viscosity or cone penetration thickness in the range of from about 300 to about 400 tenths of a millimeter.
13. The method of claim 10 , wherein the water insoluble component is a vegetable oil.
14. The method of claim 10 , wherein the water insoluble component is canola oil.
15. A thixotropic gel or liquid for friction control free of a skin forming retentivity agent, the thixotropic gel or liquid comprising a water insoluble component selected from the group consisting of isoparaffins, vegetable oils, bio-based triglycerides, fatty oils, synthetic esters and between from about 9 to about 24 w/w % of a solid friction modifier.
16. The thixotropic gel or liquid of claim 15 , wherein the water insoluble component is canola oil.
17. A thixotropic gel or liquid for friction control comprising a water insoluble component selected from the group consisting of isoparaffins, vegetable oils, bio-based triglycerides, fatty oils, synthetic esters and between from about 9 to about 24 w/w % of a liquid or solid friction modifier.
18. The thixotropic gel or liquid of claim 17 , wherein the water insoluble component is selected from the group consisting of vegetable oils, bio-based triglycerides and fatty oils.
19. The thixotropic gel or liquid of claim 17 , wherein the water insoluble component is a vegetable oil.