Coated oilfield operational components and methods for protecting and extending the service life of oilfield operational components
Coating compositions for coating an oilfield operational component, and related methods, may include in some aspects a coating composition having a trifunctional silane, a silanol, and a filler. The coating composition may be applied to a surface of the oilfield operational component that is configured to be exposed to a fluid. The coating composition may be applied to at least partially cover or coat the surface. The coating composition may be configured to chemically bond with a cured primer composition that includes an epoxy.
1. A method of coating a component, the method comprising:
applying a primer composition to the component;
at least partially curing the primer composition to form a primer layer, such that the primer layer at least partially bonds to the component;
applying a coating composition to the primer layer, the coating composition comprising trifunctional silane, silanol fluid, fillers, and titanium dioxide; and
at least partially curing the coating composition, thereby to form a coating layer and so that the coating layer at least partially bonds to the primer layer to enhance wear resistance of the component, the coating composition comprising T-resin units each of which bonds with one or more of other T-resin units, silanol fluid, fillers, or the titanium dioxide, such that the component exhibits a comparison factor indicative of an increased resistance to wear greater than about 2, the comparison factor being indicative of a first amount of time during which a portion of one or more of: (a) the coating layer or (b) the primer layer, wears to a first depth divided by a second amount of time during which a portion of the component without the one or more of (a) the coating layer or (b) the primer layer wears to a second depth equal to the first depth.
2. The method of claim 1 , wherein the T-resin units includes two or more bonds with one or more of other T-resin units, silanol fluid, or titanium dioxide.
3. The method of claim 2 , wherein applying the primer composition to the component comprises applying the primer composition to at least a portion of the component, and wherein the comparison factor ranges from about 5 to about 30.
4. The method of claim 2 , wherein applying the primer composition to the component comprises applying one or more of an aliphatic amine, epichlorohydrin, a bisphenol, silane adhesion promoter, trimethoxysilane, triethoxysilane, or 3-glycidoxypropyltrimethoxysilane to the component.
5. The method of claim 2 , wherein applying the coating composition comprises spraying the coating composition onto the component via a spray head configured to atomize the coating composition as it is applied to the component.
6. The method of claim 5 , wherein the spraying the coating composition onto the component via the spray head comprises:
pumping the coating composition via an airless pump at an output ratio ranging from about 40:1 to about 80:1 to a spray head configured to rotate and atomize the coating composition, and
supplying air to the spray head to cause the spray head to rotate as the coating composition is atomized and sprayed from the spray head.
7. The method of claim 2 , further comprising applying the coating composition to the coating layer to form a second coating layer; and at least partially drying the second coating layer.
8. The method of claim 2 , wherein applying the primer composition to the component comprises applying the primer composition to at least a portion of an oilfield component, and wherein the comparison factor ranges from about 2 to about 12.
9. The method of claim 2 , wherein applying the primer composition to the component comprises applying the primer composition to at least a portion of a component, wherein the component comprises one or more of a goat head, a fluid end, a frac iron, a pipeline, or a pipeline component, and wherein the comparison factor ranges from about 2 to about 20.
10. The method of claim 1 , wherein the coating composition protects the component when exposed to fluid flow, and wherein the fluid comprises one or more of water, proppants, or thickening agents.
11. The method of claim 2 , further comprising:
applying the coating composition to the coating layer to form a second coating layer;
at least partially drying the second coating layer;
applying the coating composition to the second coating layer to form a third coating layer; and
at least partially drying the third coating layer.
12. A method of coating a component, the method comprising:
spraying a primer composition onto the component via a spray head configured to atomize the primer composition as it is applied to the component;
at least partially curing the primer composition to form a primer layer, such that the primer layer at least partially bonds to the component;
spraying a coating composition onto the primer layer, the coating composition comprising trifunctional silane, silanol fluid, and titanium dioxide; and
at least partially curing the coating composition so as to form a coating layer, so that the coating layer at least partially bonds to the primer layer to enhance wear resistance of the component, the coating composition comprising T-resin units each of which bonds with one or more of other T-resin units, silanol fluid, fillers, or the titanium dioxide, and so that the component exhibits a comparison factor indicative of an increased resistance to wear, the comparison factor being indicative of a first amount of time during which a portion of one or more of the coating layer or the primer layer wears to a first depth divided by a second amount of time during which a portion of the component without the one or more of the coating layer or the primer layer wears to a second depth equal to the first depth.
13. The method of claim 12 , wherein the spraying the coating composition onto the component via the spray head comprises:
pumping the coating composition via an airless pump at an output ratio ranging from about 40:1 to about 80:1 to a spray head configured to rotate and atomize the coating composition, and
supplying air to the spray head to cause the spray head to rotate as the coating composition is atomized and sprayed from the spray head.
14. The method of claim 12 , further comprising spraying the coating composition onto the coating layer to form a second coating layer; and at least partially drying the second coating layer.
15. The method of claim 12 , wherein spraying the primer composition onto the component comprises spraying one or more of an aliphatic amine, epichlorohydrin, a bisphenol, silane adhesion promoter, trimethoxysilane, triethoxysilane, or 3-glycidoxypropyltrimethoxysilane onto the component.
16. The method of claim 15 , wherein the comparison factor ranges from about 2 to about 20.
17. The method of claim 12 , wherein the T-resin units form two or more bonds with one or more of other T-resin units, silanol fluid, or titanium dioxide.
18. A method of coating a component, the method comprising:
applying a primer composition to the component;
at least partially curing the primer composition to form a primer layer, such that the primer layer at least partially bonds to the component;
applying a coating composition to the primer layer, the coating composition comprising trifunctional silane, silanol fluid, or fillers; and
at least partially curing the coating composition so as to form a coating layer, so that the coating layer at least partially bonds to the primer layer to enhance wear resistance of the component, the coating composition comprising T-resin units each of which bonds with one or more of other T-resin units, silanol fluid, fillers, or one or more pigments, and so that the component exhibits a comparison factor indicative of an increased resistance to wear greater than about 2, the comparison factor being indicative of a first amount of time during which a portion of one or more of the coating layer or the primer layer wears to a first depth divided by a second amount of time during which a portion of the component without the one or more of the coating layer or the primer layer wears to a second depth equal to the first depth.
19. A method of coating a component, the method comprising:
spraying a primer composition onto the component via a spray head configured to atomize the primer composition as it is applied to the component;
at least partially curing the primer composition to form a primer layer, such that the primer layer at least partially bonds to the component;
spraying a coating composition onto the primer layer, the coating composition comprising trifunctional silane, silanol fluid, and fillers, the spraying the coating composition onto the component comprises (a) pumping the coating composition via an airless pump at an output ratio ranging from about 40:1 to about 80:1 to a spray head configured to rotate and atomize the coating composition, and (b) supplying air to the spray head to cause the spray head to rotate as the coating composition is atomized and sprayed from the spray head; and
at least partially curing the coating composition so as to form a coating layer, so that the coating layer at least partially bonds to the primer layer to enhance wear resistance of the component, the coating composition comprising T-resin units each of which bonds with one or more of other T-resin units, silanol fluid, or the fillers, and so that the component exhibits a comparison factor indicative of an increased resistance to wear, the comparison factor being indicative of a first amount of time during which a portion of one or more of the coating layer or the primer layer wears to a first depth divided by a second amount of time during which a portion of the component without the one or more of the coating layer or the primer layer wears to a second depth equal to the first depth.