Application for preparing solid and liquid friction reducer from erucamid erucyl amide and/or amine hydroxybenzene oleate, prepared friction reducer, method of preparation and use
A technology of erucamide and oleic acid amide, used in additives, petroleum industry, lubricating compositions, etc., can solve problems such as blockage of engine oil passages, and achieve the effects of avoiding blockage of oil passages, prolonging service life and reducing wear and tear.
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0061] In a 1000ml beaker, add 350g of styrene-isoprene, 50g of dispersed ethylene-propylene copolymer OCP (T614), 150g of polymethacrylate H2B, heat up while stirring, and heat up to 60°C, and stir evenly Then add 200g of M1289 antioxidant, and continue to stir evenly. Raise the temperature of the mixture obtained above to 100°C, add 29g of the suspension adsorbent erucamide under stirring, wait for the erucamide to melt and stir the solution evenly, then add 240g of molybdenum micropowder, and then cool the mixture after stirring to below 60°C. Add 350 g of ultra-basic value magnesium petroleum sulfonate (T107A) and 100 g of magnesium naphthenate (T111) into the solution obtained above, stir evenly, then send it to a homogenizer for processing, and then cool it to room temperature.
[0062] The solid-liquid friction reducer prepared in this embodiment
Embodiment 2
[0064] In a 1000ml beaker, add 400g of styrene-isoprene, 50g of dispersed ethylene-propylene copolymer OCP (T614), 260g of polymethacrylate H2B, heat up while stirring, and raise the temperature to 55°C, and stir evenly Then add 260g of M1289 antioxidant, and continue to stir evenly. Raise the temperature of the mixture obtained above to 90°C, add 22 g of the suspension adsorbent oleic acid amide under stirring, wait for the oleic acid amide to melt and stir the solution evenly, then add 300 g of graphite micropowder, and after stirring evenly, cool the obtained mixed liquid to below 55°C. Add 400 g of ultra-basic value magnesium petroleum sulfonate (T107A) and 150 g of magnesium naphthenate (T111) to the solution obtained above, stir evenly, and then send it to a homogenizer for processing and cool to room temperature.
Embodiment 3
[0066] In a 1000ml beaker, add 380g of styrene-isoprene, 60g of dispersed ethylene-propylene copolymer OCP (T614), 300g of polymethacrylate H2B, heat up while stirring, and raise the temperature to 65°C, and stir evenly Then add 250g of T202 anti-oxidant and anti-corrosion agent, and continue to stir evenly. Raise the temperature of the mixture obtained above to 110°C, add 42g of the suspension adsorbent erucamide under stirring, wait for the erucamide to melt and stir the solution evenly, then add 230g of tungsten micropowder, and then cool the mixture after stirring to below 65°C. Add 350 g of ultra-basic magnesium petroleum sulfonate and 100 g of magnesium naphthenate to the solution obtained above, stir evenly, and then send it to a homogenizer for processing and cool to normal temperature.
[0067] The formulations of Examples 4-13 of the present invention are shown in the table below, and their preparation methods are the same as in Example 1. The solid-liquid friction ...
PUM
Login to View More Abstract
Description
Claims
Application Information
Login to View More 