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Viscosity Comparison of 6911A in Various Resin Systems & Silica Powder

2026-03-23
Latest company cases about Viscosity Comparison of 6911A in Various Resin Systems & Silica Powder

latest company case about Viscosity Comparison of 6911A in Various Resin Systems & Silica Powder  0EZHOU ANJEKA TECHNOLOGY CO.,Ltd

                                         professional additive manufaturer

Experimental Record Form
Experiment Name:  Viscosity Comparison of 6911A in Various Resin Systems & Silica Powder Temperature/Humidity:  
Client:    / Applicant:Mr. Chen Experimental Date: March 23, 2026    
objective:
Color paste formula
  Aluminum oxide,   boron nitride magnesium hydroxide        
828 resin 30 22.85 30        
solvent 15 36 15 Dimethyl: Butanol 4:1  
dispersant 0.2 0.15 0.2        
powder material 54.8 41 54.8        
total 100 100 100        
Experimental Method
Stir at 2000 rpm for 15 minutes
Test results
alumina
  6910A 6911A 26013002 26013003      
Viscosity moa.s/8℃ 8299 553.3 4209 664      
60 ℃ thermal storage for 1 day
  6910A 6911A 26013002 26013003      
Viscosity moa.s/10℃ 1992 774.3 2213 2435      
Settlement situation Slight Soft Sedimentation Slight Soft Sedimentation Slight Soft Sedimentation Slight Soft Sedimentation      
 
boron nitride
  6910A 6911A 26013002 26013003      
Viscosity moa.s/8℃ 8521 9738 6861 8299      
60 ℃ thermal storage for 1 day
  6910A 6911A 26013002 26013003      
Viscosity moa.s/10℃ 10734 10070 8521 9849      
Settlement situation no settlement Settlement 1/9   Settlement 1/7 Settlement 1/8      
 
magnesium hydroxide
  6910A 6911A 26013002 26013003      
Viscosity moa.s/8℃ 110.7 774.6 332 553      
60 ℃ thermal storage for 1 day
  6910A 6911A 26013002 26013003      
Viscosity moa.s/10℃ 553.3 553 110 664      
Settlement situation Hard Settlement Hard Settlement Hard Settlement Hard Settlement      
Conclusion

For alumina systems, 6911A delivers the optimal viscosity reduction effect, exhibits the lowest viscosity after thermal storage, and ensures consistent anti-sedimentation performance across the board.

In boron nitride systems, 6910A provides a moderate viscosity reduction effect while boasting the best overall stability of all tested additives.
For magnesium hydroxide systems, 6910A achieves the most significant viscosity reduction; however, all tested formulations show poor anti-sedimentation performance after thermal storage.
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