1 |
Characterization of highly stable water-based magnetorheological gel using OPTIGEL-WX as an additive: The study of magneto-induced rheological and viscoelastic properties Maurya CS, Sarkar C Journal of Industrial and Engineering Chemistry, 110, 137, 2022 |
2 |
State‑of‑the‑art recent developments of large magnetorheological (MR) dampers: a review Aziz MA, Muhtasim S, Ahammed R Korea-Australia Rheology Journal, 34(2), 105, 2022 |
3 |
Effects of non‑magnetic carbon nanotubes on the performance and stability of magnetorheological fluids containing FeCo‑deposited carbon nanotubes Cho SW, Kim HY, Kim SH, Seo YS Korea-Australia Rheology Journal, 34(2), 137, 2022 |
4 |
Additive effect of rod-like magnetite/sepiolite composite particles on magnetorheology Dong YZ, Han WJ, Choi HJ Journal of Industrial and Engineering Chemistry, 93, 210, 2021 |
5 |
Effect of reduced graphene oxide and MnFe2O4 nanoparticles on carbonyl iron for magnetorheological fluids Choi HY, Choi JY, Park HH, Kim TH, Choi HJ, Lee CS Journal of Industrial and Engineering Chemistry, 98, 140, 2021 |
6 |
Recent developments of regenerative magnetorheological (RMR) damper: A review Mohtasim SM, Ahammed R, Rahman MM, Rashid MM, Roy R, Aziz MA Korea-Australia Rheology Journal, 33(3), 201, 2021 |
7 |
State-of-the-art developments of bypass Magnetorheological (MR) dampers: A review Aziz MA, Aminossadati SM Korea-Australia Rheology Journal, 33(3), 225, 2021 |
8 |
Oil spill remediation from water surface using induction of magnetorheological behavior in oil by functionalized sawdust Kamgar A, Hassanajili S, Unbehaun H Chemical Engineering Research & Design, 160, 119, 2020 |
9 |
Fe-Ga alloy based magnetorheological fluid and its viscoelastic characteristics Kwon SH, Na SM, Flatau AB, Choi HJ Journal of Industrial and Engineering Chemistry, 82, 433, 2020 |
10 |
Reciprocating magnetorheological polishing method for borosilicate glass surface smoothness Zhang P, Dong YZ, Choi HJ, Lee CH, Gao YS Journal of Industrial and Engineering Chemistry, 84, 243, 2020 |