Lubricant compositions for direct injection engines
The invention is directed to a method for reducing low speed pre-ignition events in a spark-ignited direct injection internal combustion engine by supplying to the sump a lubricant composition which contains an oil of lubricating viscosity and an overbased sodium detergent. The metal overbased detergent may be selected from sulfonate detergents, phenate detergents, and salicylate detergents, including sulfonate detergents with a metal ratio of at least 5.
1. A method for reducing low speed pre-ignition events in a spark-ignited direct injection internal combustion engine wherein the engine is equipped with a turbocharger and is operated under a load with a brake mean effective pressure (BMEP) of greater than or equal to 10 bars at speeds less than or equal to 3,000 rpm, comprising supplying to the engine a lubricant composition comprising:
(a) a base oil of lubricating viscosity;
(b) an overbased sodium sulfonate detergent in an amount to provide at least 0.1 weight % of sulfated ash to 575 parts per million (ppm) sodium to the lubricant composition;
(c) an overbased calcium sulfonate detergent in an amount to provide from 0.6 weight % sulfated ash to 0.9 weight % sulfated ash to the lubricant composition; and
(d) less than 10 ppm of magnesium from an overbased detergent,
wherein the weight ratio of sodium to calcium in the lubricant is 1:9 to 4:6.
2. The method of claim 1 , wherein the engine is fueled with a liquid hydrocarbon fuel, a liquid nonhydrocarbon fuel, or mixtures thereof.
3. The method of claim 2 , wherein the engine is fueled by natural gas, liquefied petroleum gas (LPG), compressed natural gas (CNG), or mixtures thereof.
4. The method of claim 1 , wherein the lubricant composition further comprises at least one other additive selected from an ashless dispersant, an ashless antioxidant, a phosphorus-containing anti-wear additive, a friction modifier, and a polymeric viscosity modifier.
5. The method of claim 1 , wherein the overbased sodium detergent has a metal ratio of 5 to 30.
6. The method of claim 1 , wherein the lubricating composition further comprises a polyalkenyl succinimide dispersant in an amount from 0.5 to 4 weight % of the composition.
7. The method of claim 1 , wherein the lubricating composition comprises at least 50 weight % of a Group II base oil, a Group III base oil, or mixtures thereof.
8. A lubricant composition comprising:
(a) a base oil of lubricating viscosity;
(b) an overbased sodium sulfonate detergent in an amount to provide at least 0.1 weight % of sulfated ash to 575 parts per million (ppm) sodium to the lubricant composition;
(c) an overbased calcium sulfonate detergent in an amount to provide from 0.6 weight % sulfated ash to 0.9 weight % sulfated ash to the lubricant composition; and
(d) less than 10 ppm of magnesium from an overbased detergent,
wherein the weight ratio of sodium to calcium in the lubricant is 1:9 to 4:6.
9. A lubricant composition comprising:
(a) a base oil of lubricating viscosity;
(b) an overbased sodium sulfonate detergent in an amount to provide at least 0.1 weight % of sulfated ash to 575 parts per million (ppm) sodium to the lubricant composition;
(c) an overbased calcium sulfonate detergent in an amount to provide from 0.6 weight % sulfated ash to 0.9 weight % sulfated ash to the lubricant composition; and
(d) less than 10 ppm of magnesium from an overbased detergent,
wherein the weight ratio of sodium to calcium in the lubricant is 1:9 to 4:6, and wherein the lubricant is capable of reducing low speed pre-ignition events in a spark-ignited direct injection internal combustion engine operated under a load with a brake mean effective pressure (BMEP) of greater than or equal to 10 bars and at speeds less than or equal to 3,000 rpm.