Review of Magnetorheological Fluids and Nanofluids Thermal Behaviour
Magnetorheological fluids are smart materials with the capability to reversibly change from liquid to near solid state under the presence of external magnetic fields. The interest in magnetorheological fluid as a heat transfer medium is due to the possibility of controlling its flow and heat transfe...
| Main Authors: | M. S. A., Rahim, I., Ismail |
|---|---|
| Format: | Conference or Workshop Item |
| Language: | English |
| Published: |
IOP Publishing
2015
|
| Subjects: | |
| Online Access: | http://umpir.ump.edu.my/id/eprint/10187/ http://umpir.ump.edu.my/id/eprint/10187/7/Review%20of%20magnetorheological%20fluids%20and%20nanofluids%20thermal%20behaviour.pdf |
Similar Items
Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
by: M. S. A., Rahim, et al.
Published: (2017)
by: M. S. A., Rahim, et al.
Published: (2017)
Fluid-Particle Separation of Magnetorheological (MR) Fluid in MR Machining Application
by: I., Ismail, et al.
Published: (2014)
by: I., Ismail, et al.
Published: (2014)
Rheological Properties of Magnetorheological Polishing Fluid for Micro Mould Polishing
by: Nurain, Abdul Mutalib, et al.
Published: (2019)
by: Nurain, Abdul Mutalib, et al.
Published: (2019)
Thermal Conductivity Enhancement and Sedimentation Reduction of Magnetorheological Fluids with Nano-Sized Cu and Al Additives
by: M. S. A., Rahim, et al.
Published: (2017)
by: M. S. A., Rahim, et al.
Published: (2017)
Magnetorheological finishing on metal surface: a review
by: N. A., Mutalib, et al.
Published: (2019)
by: N. A., Mutalib, et al.
Published: (2019)
Control of transtibial prosthetic limb with magnetorheological fluid damper by using a fuzzy PID controller
by: Nordin, Nor Hidayati Diyana, et al.
Published: (2018)
by: Nordin, Nor Hidayati Diyana, et al.
Published: (2018)
Thermal Conductivity and Dynamic Viscosity of Nanofluids: A Review
by: Wahaizad, Safiei, et al.
Published: (2020)
by: Wahaizad, Safiei, et al.
Published: (2020)
A brief review on thermal behaviour of PANI as additive in heat transfer fluid
by: Sofiah, A. G. N., et al.
Published: (2021)
by: Sofiah, A. G. N., et al.
Published: (2021)
Experimental Measurements of Nanofluids Thermal Properties
by: Adnan, M. Husein, et al.
Published: (2013)
by: Adnan, M. Husein, et al.
Published: (2013)
Experimental investigation on magnetorheological finishing process parameters
by: Abdul Wahab, Hashmi, et al.
Published: (2022)
by: Abdul Wahab, Hashmi, et al.
Published: (2022)
Microscale thermal management: A review of nanofluid applications in microfluidic channels
by: Samylingam, Lingenthiran, et al.
Published: (2024)
by: Samylingam, Lingenthiran, et al.
Published: (2024)
Performance Simulation Analysis for Magnetorheological Damper with Internal Meandering Flow Valve
by: Ahmad Zaifazlin, Zainordin, et al.
Published: (2018)
by: Ahmad Zaifazlin, Zainordin, et al.
Published: (2018)
Effects of control techniques and damper constraint on the performance of a semi-active magnetorheological damper
by: K. , Hudha, et al.
Published: (2005)
by: K. , Hudha, et al.
Published: (2005)
The Use of Nanofluids for Enhancing the Thermal Performance of Stationary Solar Collectors: A Review
by: Mahmud Jamil, Muhammad, et al.
Published: (2016)
by: Mahmud Jamil, Muhammad, et al.
Published: (2016)
Thermal management of vehicle radiator by nanofluid
by: Kadirgama, Kumaran
by: Kadirgama, Kumaran
Non-parametric linearised data driven modelling and force tracking control of a magnetorheological damper
by: K., Hudha, et al.
Published: (2005)
by: K., Hudha, et al.
Published: (2005)
Development of a magnetorheological pinched mode valve for automotive semi-automotive semi-active suspension system
by: Ismail, Izwan
Published: (2018)
by: Ismail, Izwan
Published: (2018)
Magnetorheological Fluid Materials Properties, Rheological Behaviour and Device Design in Valve Application
by: S., Aid, et al.
Published: (2015)
by: S., Aid, et al.
Published: (2015)
Thermal Analysis On Heat Transfer Enhancement And Fluid Flow for Low Concentration of Al2O3 Water - Ethylene Glycol Mixture Nanofluid in A Single PEMFC Cooling Plate
by: Irnie, Zakaria, et al.
Published: (2015)
by: Irnie, Zakaria, et al.
Published: (2015)
Pid-aco vibration controller with magnetorheological damper for wind turbine tower / Mahmudur Rahman
by: Mahmudur , Rahman
Published: (2019)
by: Mahmudur , Rahman
Published: (2019)
Analysing the Thermal Performance of Heat Pipe Using Copper Nanofluids
by: Baheta, Aklilu Tesfamichael, et al.
Published: (2018)
by: Baheta, Aklilu Tesfamichael, et al.
Published: (2018)
Stability and Thermal Conductivity Characteristic of Carbon Nanotube Based Nanofluids
by: N. M., Fadhillahanafi, et al.
Published: (2013)
by: N. M., Fadhillahanafi, et al.
Published: (2013)
Performance characteristics of a compact core annular-radial magnetorheological damper for vehicle suspension systems
by: Ahmad Zaifazlin, Zainordin, et al.
Published: (2024)
by: Ahmad Zaifazlin, Zainordin, et al.
Published: (2024)
Thermal analysis of cellulose nanocrystal-ethylene glycol nanofluid coolant
by: Lingenthiran, Samylingam, et al.
Published: (2018)
by: Lingenthiran, Samylingam, et al.
Published: (2018)
Experimental investigation on Magnetorheological Damper’s characterization
by: Ferdaus, Mohammad Meftahul, et al.
Published: (2015)
by: Ferdaus, Mohammad Meftahul, et al.
Published: (2015)
Analysis of thermal Conductivity for Cellulose Nanocrystal (CNC) based nanofluid
by: K., Kadirgama, et al.
Published: (2019)
by: K., Kadirgama, et al.
Published: (2019)
Development of fuzzy logic controller for magnetorheological rotary brake system
by: Rashid, Muhammad Mahbubur, et al.
Published: (2009)
by: Rashid, Muhammad Mahbubur, et al.
Published: (2009)
Preparation, stability and wettability of nanofluid: a review
by: Wahaizad, Safiei, et al.
Published: (2020)
by: Wahaizad, Safiei, et al.
Published: (2020)
Thermal Conductivity Enhancement of Aluminium Oxide Nanofluid in Ethylene Glycol
by: Khamisah, Abdul Hamid, et al.
Published: (2014)
by: Khamisah, Abdul Hamid, et al.
Published: (2014)
Effects of silica on mechanical and rheological properties of EPDM-based magnetorheological elastomers
by: Rusila Zamani, Abd Rashid, et al.
Published: (2021)
by: Rusila Zamani, Abd Rashid, et al.
Published: (2021)
Thermal conductivity and dynamic viscosity of mono and hybrid organic- and synthetic-based nanofluids: A critical review
by: At-Tasneem, Mohd Amin, et al.
Published: (2021)
by: At-Tasneem, Mohd Amin, et al.
Published: (2021)
MHD Flow of Casson Fluid with SA-Based Hybrid Nanofluid using Fractional Derivatives
by: S., Aman, et al.
Published: (2018)
by: S., Aman, et al.
Published: (2018)
Experimental Investigation of Al2O3 - Water Ethylene Glycol Mixture Nanofluid Thermal Behaviour in a Single Cooling Plate for PEM Fuel Cell Application
by: Irnie, Zakaria, et al.
Published: (2015)
by: Irnie, Zakaria, et al.
Published: (2015)
Preparation methods and challenges of hybrid nanofluids: A review
by: N. S. M., Sahid, et al.
Published: (2019)
by: N. S. M., Sahid, et al.
Published: (2019)
Computational Fluid Dynamics Study of Heat Transfer Enhancement in a Circular Tube using Nanofluid
by: M. Kh., Abdolbaqi, et al.
Published: (2015)
by: M. Kh., Abdolbaqi, et al.
Published: (2015)
Heat Transfer Enhancement With Nanofluids – A Review
by: Adnan Mohammed, Hussein, et al.
Published: (2013)
by: Adnan Mohammed, Hussein, et al.
Published: (2013)
Semi-active torsional vibration isolation utilizing magnetorheological elastomer
by: Marzuki, Wan M.R.W., et al.
Published: (2018)
by: Marzuki, Wan M.R.W., et al.
Published: (2018)
Water And Salt Water Absorption, Hygrothermal And Tribological Propertires Of Nickel Zinc Ferrite Magnetorheological Elastomers
by: Chang, Fan Ru
Published: (2018)
by: Chang, Fan Ru
Published: (2018)
An experimental investigation on thermal conductivity and viscosity of graphene doped CNTs /TiO2 nanofluid
by: Zetty Akhtar, Abd Malek, et al.
Published: (2020)
by: Zetty Akhtar, Abd Malek, et al.
Published: (2020)
Stability and thermal conductivity of tri-hybrid nanofluids for high concentration in water-ethylene glycol (60:40)
by: Anwar I., Ramadhan, et al.
Published: (2021)
by: Anwar I., Ramadhan, et al.
Published: (2021)
Similar Items
-
Magnetic Field Simulation of a Thermal Conductivity Measurement Instrument for Magnetorheological Fluid
by: M. S. A., Rahim, et al.
Published: (2017) -
Fluid-Particle Separation of Magnetorheological (MR) Fluid in MR Machining Application
by: I., Ismail, et al.
Published: (2014) -
Rheological Properties of Magnetorheological Polishing Fluid for Micro Mould Polishing
by: Nurain, Abdul Mutalib, et al.
Published: (2019) -
Thermal Conductivity Enhancement and Sedimentation Reduction of Magnetorheological Fluids with Nano-Sized Cu and Al Additives
by: M. S. A., Rahim, et al.
Published: (2017) -
Magnetorheological finishing on metal surface: a review
by: N. A., Mutalib, et al.
Published: (2019)