Amide oligomer and polyamide paste rheological aid prepared by swelling same
A technology of polyamide paste and rheological additives, applied in the field of coating additives, can solve the problems of high cost of long-chain aliphatic amine end-capping agents, achieve a good balance between leveling and anti-sag performance, avoid dripping, The effect of improving leveling performance
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Embodiment 1
[0047] 1. Synthesis of polyamide wax
[0048] In the reaction flask equipped with thermometer, condenser, water separator and stirring device, add 25.0g C 36 Dimer fatty acid, 2.2 g of behenanedioic acid, and 140 g of 6-hydroxyhexanoic acid, pass N 2 , heated to 90°C, added 94.4g of butanediamine, reacted at a constant temperature of 95°C for 1h, heated to 120°C, added 0.5g of catalyst boron trifluoride ether, heated to 190°C and reacted for 4h, removed by-products under reduced pressure, Cooled to obtain a light yellow waxy polyamide solid, the acid value was 5.1 mgKOH / g, the amine value was 4.5 mgKOH / g, and the melting point measured by DSC method was 141 ° C, which was pulverized into a fine polyamide powder (average The particle size is 10 μm).
[0049] 2. Controlled swelling to prepare rheological additives
[0050] Add 50g of the polyamide fine powder obtained in step 1 into the disperser, the circulating water temperature is 45°C, add 200g of toluene / ethanol mixed so...
Embodiment 2
[0052] 1. Synthesis of polyamide wax
[0053] In the reaction flask equipped with thermometer, condenser, water separator and stirring device, add 25.0g C 36 Dimer fatty acid, 2.2 g of behenanedioic acid, 298.5 g of 12-hydroxyoleic acid (castor oil fatty acid), pass N 2 , heated to 90°C, added 64.4g ethylenediamine, reacted at a constant temperature of 95°C for 1h, heated to 120°C, added 0.5g catalyst boron trifluoride ether, heated to 150°C and reacted for 6h, under reduced pressure, removed by-products , cooled to obtain a light yellow waxy polyamide solid, the measured acid value was 4.5 mgKOH / g, the amine value was 5.0 mgKOH / g, and the melting point measured by DSC was 137 ° C, which was pulverized into a fine polyamide powder (average The particle size is 5 μm).
[0054] 2. Controlled swelling to prepare rheological additives
[0055] Add 50g of the polyamide fine powder obtained in step 1 to the disperser, the circulating water temperature is 45°C, add 200g of toluene...
Embodiment 3
[0057] 1. Synthesis of polyamide wax
[0058] In the reaction flask equipped with thermometer, condenser, water separator and stirring device, add 25.0g C 36 Dimeric fatty acid, 1.2g sebacic acid, 296.4g sulfonated castor oil (saponification value 189.3), pass N 2 , heated to 90°C, added 166.9g of decanediamine, reacted at a constant temperature of 95°C for 1h, heated to 120°C, added 0.5g of catalyst trimethylchlorosilane, heated to 200°C and reacted for 9h, under reduced pressure, removed by-products , cooled to obtain a light yellow waxy polyamide solid, the melting point measured by DSC was 133 ° C, the acid value was 4.8 mgKOH / g, and the amine value was 5.9 mgKOH / g, which was pulverized into a fine polyamide powder (average The particle size is 5 μm).
[0059] 2. Controlled swelling to prepare rheological additives
[0060] Add 50g of the polyamide fine powder obtained in step 1 to the disperser, the circulating water temperature is 45°C, add 200g of toluene / ethanol mix...
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