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Journal article
Optimization of electrode thickness of lithium-ion batteries for maximizing energy density

Khan, F. M. N. U., Rasul, M. G., Mandal, N. K., & Sayem, A. S. M. (2025). Optimization of electrode thickness of lithium-ion batteries for maximizing energy density. Journal of Solid State Electrochemistry, 29(2), 753-768. doi:10.1007/s10008-024-06109-9


Plastic deformation of railhead material of insulated rail joints

Mandal, N. K. (2025). Plastic deformation of railhead material of insulated rail joints. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 239(2), 132-143. doi:10.1177/09544097241302515


On students learning experience of fluid power engineering – Impact of simulation software

Mandal, N. K., Azad, A. K., & Rasul, M. G. (2024). On students learning experience of fluid power engineering – Impact of simulation software. International Journal of Mechanical Engineering Education, 52(2), 143-156. doi:10.1177/03064190231176133


A computational analysis of effects of electrode thickness on the energy density of lithium-ion batteries

Khan, F. M. N. U., Rasul, M. G., Sayem, A. S. M., & Mandal, N. K. (2024). A computational analysis of effects of electrode thickness on the energy density of lithium-ion batteries. Energy, 288, 1-15. doi:10.1016/j.energy.2023.129774


Design and optimization of lithium-ion battery as an efficient energy storage device for electric vehicles: A comprehensive review

Uddin Khan, F. M. N., Rasul, M. G., Sayem, A. S. M., & Mandal, N. K. (2023). Design and optimization of lithium-ion battery as an efficient energy storage device for electric vehicles: A comprehensive review. Journal of Energy Storage, 71, 1-33. doi:10.1016/j.est.2023.108033


Maximizing Energy Density of Lithium-ion Batteries for Electric Vehicles: A Critical Review

Khan, F. M. N. U., Rasul, M. G., Sayem, A. S. M., & Mandal, N. (2023). Maximizing Energy Density of Lithium-ion Batteries for Electric Vehicles: A Critical Review. Energy Reports, 9(S11), 11-21. doi:10.1016/j.egyr.2023.08.069


Design, wheel-rail interaction and testing of an innovative reinforced smooth transition insulated rail joint

Megna, G., Bracciali, A., & Mandal, N. K. (2023). Design, wheel-rail interaction and testing of an innovative reinforced smooth transition insulated rail joint. Wear, 530-531, 1-10. doi:10.1016/j.wear.2023.205038


Evaluation of railhead material damage of insulated rail joints due to cyclic wheel loadings

Mandal, N. K., Bracciali, A., & Megna, G. (2023). Evaluation of railhead material damage of insulated rail joints due to cyclic wheel loadings. Wear, 528-529, 1-10. doi:10.1016/j.wear.2023.204966


FEA of mechanical behaviour of insulated rail joints due to vertical cyclic wheel loadings

Mandal, N. K., Spiryagin, M., Wu, Q., Wen, Z., & Stichel, S. (2022). FEA of mechanical behaviour of insulated rail joints due to vertical cyclic wheel loadings. Engineering Failure Analysis, 133, 1-13. doi:10.1016/j.engfailanal.2021.105966


Student work readiness in Australian engineering workplaces through work integrated learning

Mandal, N. K., & Edwards, F. R. (2022). Student work readiness in Australian engineering workplaces through work integrated learning. Higher Education, Skills and Work-based Learning, 12(1), 145-161. doi:10.1108/HESWBL-02-2021-0025


3D printed models to enhance engineering student engagement and learning

Mandal, N. K. (2021). 3D printed models to enhance engineering student engagement and learning. Global Journal of Engineering Education, 23(3), 176-184. Retrieved from http://www.wiete.com.au/journals/GJEE/Publish/TOCVol23No3.html


A new method of individual student assessment in team projects

Mandal, N. (2021). A new method of individual student assessment in team projects. Global Journal of Engineering Education, 23(3), 216-222. Retrieved from http://www.wiete.com.au/journals/GJEE/Publish/TOCVol23No3.html


Quantification of sub-surface railhead material damage due to composite endpost materials of insulated rail joints for cyclic wheel loadings

Mandal, N., Lewis, R., & Wen, Z. (2020). Quantification of sub-surface railhead material damage due to composite endpost materials of insulated rail joints for cyclic wheel loadings. Engineering Failure Analysis, 113, 1-12. doi:10.1016/j.engfailanal.2020.104562


On the railhead material damage of insulated rail joints: Is it by ratchetting or alternating plasticity?

Mandal, N. K., Spiryagin, M., Berg, M., & Stichel, S. (2019). On the railhead material damage of insulated rail joints: Is it by ratchetting or alternating plasticity?. International Journal of Fatigue, 128, 1-12. doi:10.1016/j.ijfatigue.2019.105197


Effectiveness of measuring stress-free temperature in continuously welded rails by Rail Creep Method and Rail Stress Modules

Mandal, N., & Lees, M. (2019). Effectiveness of measuring stress-free temperature in continuously welded rails by Rail Creep Method and Rail Stress Modules. Engineering Failure Analysis, 104, 189-202. doi:10.1016/j.engfailanal.2019.05.032


Importance of student feedback in improving mechanical engineering courses

Mandal, N. K. (2019). Importance of student feedback in improving mechanical engineering courses. International Journal of Mechanical Engineering Education, 47(3), 227-245. doi:10.1177/0306419018759800


Emerging rail vehicle design and simulation in train operational environment

Wu, Q., Mandal, N., Spiryagin, M., & Cole, C. (2018). Emerging rail vehicle design and simulation in train operational environment. Australian Journal of Mechanical Engineering, 16(2), 83. doi:10.1080/14484846.2018.1485296


Student satisfaction: what it means to teaching and learning of undergraduate engineering units

Mandal, N. (2017). Student satisfaction: what it means to teaching and learning of undergraduate engineering units. International Journal of Mechanical Engineering Education, 1-17. doi:10.1177/0306419017741996


FEA to assess plastic deformation of railhead material damage of insulated rail joints with fibreglass and nylon endposts

Mandal, N. K. (2016). FEA to assess plastic deformation of railhead material damage of insulated rail joints with fibreglass and nylon endposts. Wear, 366-367, 3-12. doi:10.1016/j.wear.2016.06.010


Ratchetting damage of railhead material of gapped rail joints with reference to free rail end effects

Mandal, N. K. (2017). Ratchetting damage of railhead material of gapped rail joints with reference to free rail end effects. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 231(2), 211-225. doi:10.1177/0954409715625361


Finite element analysis of the mechanical behaviour of insulated rail joints due to impact loadings

Mandal, N. (2016). Finite element analysis of the mechanical behaviour of insulated rail joints due to impact loadings. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, 230(3), 759-773. doi:10.1177/0954409714561708


Impact forces at dipped rail joints

Mandal, N., Dhanasekar, M., & Sun, Y. (2016). Impact forces at dipped rail joints. Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit, (2014), 271-282. doi:10.1177/0954409714537816


Plastic ratchetting of railhead material in the vicinity of insulated rail joints with wheel and thermal loads

Mandal, N. (2015). Plastic ratchetting of railhead material in the vicinity of insulated rail joints with wheel and thermal loads. Wear., (330-331), 540-553. Retrieved from http://dx.doi.org/10.1016/j.wear.2015.01.003


On the low cycle fatigue failure of insulated rail joints (IRJs)

Mandal, N. (2014). On the low cycle fatigue failure of insulated rail joints (IRJs). Engineering failure analysis., 40, 58-74. doi:10.1016/j.engfailanal.2014.02.006


Ratchetting of railhead material of insulated rail joints (IRJs) with reference to endpost thickness

Mandal, N. (2014). Ratchetting of railhead material of insulated rail joints (IRJs) with reference to endpost thickness. Engineering failure analysis., 45, 347-362. doi:10.1016/j.engfailanal.2014.07.003


Development of a unified railway track stability management tool to enhance track safety

Ahmad, S., Mandal, N., Chattopadhyay, G., & Powell, J. (2013). Development of a unified railway track stability management tool to enhance track safety. Proceedings of the Institution of Mechanical Engineers Part F : Journal of rail and rapid transit., 227(5), 493-516. doi:10.1177/0954409713501490


Sub-modelling for the ratchetting failure of insulated rail joints

Mandal, N., & Dhanasekar, M. (2013). Sub-modelling for the ratchetting failure of insulated rail joints. International journal of mechanical sciences., 75, 110-122. doi:10.1016/j.ijmecsci.2013.06.003


An engineering analysis of insulated rail joints : a general perspective

Mandal, N., & Peach, B. (2010). An engineering analysis of insulated rail joints : a general perspective. International journal of engineering science and technology (IJES), 2(8), 3964-3988.


Structural intensity fields of naturally orthotropic plates

Mandal, N. (2010). Structural intensity fields of naturally orthotropic plates. International journal of engineering science and technology (IJES), 2(7), 2580-2586.


Far-field power transmission in orthotropic plates : a new approach

Mandal, N. (2008). Far-field power transmission in orthotropic plates : a new approach. Shock and vibration., 15(1), 71-78.


Structure-borne power transmission in thin naturally orthotropic plates : general case

Mandal, N., Rahman, R., & Leong, S. (2003). Structure-borne power transmission in thin naturally orthotropic plates : general case. Journal of vibration and control., 9(10), 1189-1199. Retrieved from http://dx.doi.org/10.1177/107754603030693


Experimental studies of quasi-longitudinal waves power flow in corrugated plates

Mandal, N. (2006). Experimental studies of quasi-longitudinal waves power flow in corrugated plates. Journal of sound and vibration., 297, 227-242. doi:10.1016/j.jsv.2006.03.051


A Complete description of intensity fields of thin isotropic plates for flexural waves in general field conditions

Mandal, N. (2006). A Complete description of intensity fields of thin isotropic plates for flexural waves in general field conditions. Trends in applied sciences research., 1(6), 553-563. Retrieved from http://www.academicjournals.net/fulltext/tasr/2006/553-563.pdf


Experimental studies on vibration transmission in trapezoidal corrugated plates

Mandal, N. (2006). Experimental studies on vibration transmission in trapezoidal corrugated plates. Trends in applied sciences research., 1(3), 226-247. Retrieved from http://www.academicjournals.net/fulltext/tasr/2006/226-247.pdf


One transducer method for quantifying vibration power flow in orthotropic plates for both general and far-field conditions

Mandal, N. (2006). One transducer method for quantifying vibration power flow in orthotropic plates for both general and far-field conditions. Trends in applied sciences research., 1(1), 1-8. Retrieved from http://www.academicjournals.net/fulltext/tasr/2006/1-8.pdf


Experimental investigation of vibration power flow in thin technical orthotropic plates by the method of vibration intensity

Mandal, N., Rahman, R., & Leong, M. (2005). Experimental investigation of vibration power flow in thin technical orthotropic plates by the method of vibration intensity. Journal of sound and vibration., 285(3), 669-695. doi:10.1016/j.jsv.2004.08.041


Vibration power flow : a critical review

Mandal, N., & Biswas, S. (2005). Vibration power flow : a critical review. Shock and vibration digest., 37(1), 3-11.


Experimental study on loss factor for corrugated plates by bandwidth method

Mandal, N., Rahman, R., & Leong, M. (2004). Experimental study on loss factor for corrugated plates by bandwidth method. Ocean engineering., 31(10), 1313-1323. Retrieved from http://dx.doi.org/10.1016/j.oceaneng.2003.08.003


Acoustic power radiation from rectangular thin plates of different end fixity

Mandal, N., & Uddin, W. (2004). Acoustic power radiation from rectangular thin plates of different end fixity. Journal of the Institute of Engineers, Singapore., 44(5), 9-28.


Prediction of structure-borne sound in orthotropic plates for far-field conditions

Mandal, N., Leong, S., & Rahman, R. (2002). Prediction of structure-borne sound in orthotropic plates for far-field conditions. Journal of vibration and control., 8(1), 3-12. doi:10.1177/1077546302008001521


Measurement of quasi-longitudinal wave power in thin single-layer naturally orthotropic plates

Mandal, N., Rahman, R., & Leong, M. (2000). Measurement of quasi-longitudinal wave power in thin single-layer naturally orthotropic plates. International journal of acoustics and vibration., 5(2), 106-108.


Study of in-plane vibration power flow in rectangular corrugated plates

Mandal, N., Leong, M., & Rahman, R. (2000). Study of in-plane vibration power flow in rectangular corrugated plates. Journal of mechanical engineering research bulletin., 1(1), 14-19.


Conference paper
Collaborative pathways in clean energy research: A cohort supervision model for research higher degree students

Hasan, M. M., Rasul, M. G., Mandal, N., Hassan, N. M. S., & Chowdhury, A. A. (2023). Collaborative pathways in clean energy research: A cohort supervision model for research higher degree students. In https://www.aaee2023.org/program/ (pp. 1-9). Online: Australasian Association for Engineering Education. Retrieved from https://www.aaee2023.org/fullpapers/AAEE_2023_final_paper_174.pdf


Review of current practice of early detection of spontaneous combustion at longwall panels

Surendran, H., Mandal, N., & Suntharavadivel, T. G. (2023). Review of current practice of early detection of spontaneous combustion at longwall panels. In B. Raj, S. Gill, C. A. Gonzalez Calderon, P. Tukkaraja, S. Venkatesh, M. S. Venkataramayya, . . . R. K. Dasari (Eds.), Proceedings of the Second International Conference on Emerging Trends in Engineering (ICETE 2023) Vol. 223 (pp. 1328-1333). Online: Atlantis Press. doi:10.2991/978-94-6463-252-1_133


Experimental approach to evaluate performance differences of heavy duty and standard glued insulated rail joints using automated track inspection system

Hoather, I., Mandal, N. K., & Spiryagin, M. (2023). Experimental approach to evaluate performance differences of heavy duty and standard glued insulated rail joints using automated track inspection system. In https://www.core2023.org/ (pp. 897-907). Online: Railway Technical Society of Australasia. Retrieved from https://search.informit.org/doi/abs/10.3316/informit.425826571381086


Improving railway joint service life through computational analysis of its geometry

Mandal, N., & Hood, K. (2023). Improving railway joint service life through computational analysis of its geometry. In https://www.core2023.org/ (pp. 158-168). Online: Railway Technical Society of Australasia. Retrieved from https://search.informit.org/doi/abs/10.3316/informit.422230407928254


On the 3D printing models and students’ learning

Mandal, N. K., & Rasul, M. G. (2023). On the 3D printing models and students’ learning. In AAEE 2023 Full Program (pp. 1-8). Online: Australasian Association for Engineering Education. Retrieved from https://www.aaee2023.org/program/


Ranking of endpost materials of insulated rail joints for cyclic wheel loadings

Mandal, N. K. (2023). Ranking of endpost materials of insulated rail joints for cyclic wheel loadings. In https://www.core2023.org/ (pp. 507-516). Online: Railway Technical Society of Australasia. Retrieved from https://search.informit.org/doi/abs/10.3316/informit.422845295979774


Fatigue behaviour of railhead material damage of insulated rail joints due to cyclic wheel loadings

Mandal, N. K. (2022). Fatigue behaviour of railhead material damage of insulated rail joints due to cyclic wheel loadings. In 12th International conference on contact mechanics and wear of rail/wheel systems (CM2022): advancing the science and practice of the wheel/rail interface to improve railway operation efficiency (pp. 339-346). Online: Contact Mechanics CM2022. Retrieved from https://www.railknowledgebank.com/


THIS IS A DUPLICATE RECORD

Records, D. (2022). THIS IS A DUPLICATE RECORD. In THIS IS A DUPLICATE RECORD (pp. 1). THIS IS A DUPLICATE RECORD: THIS IS A DUPLICATE RECORD.


Work ready engineering graduates through WIL processes

Mandal, N. K., Edwards, F., & Rasul, M. G. (2021). Work ready engineering graduates through WIL processes. In REES-AAEE 2021 Proceedings: "Engineering Education Research Capability Development" (pp. 1-8). Online: Australasian Association for Engineering Education & Research in Engineering Education Network. Retrieved from https://aaee.net.au/search-all-publications/


Supervision and management practices of Final Year Engineering Projects: Impacts of COVID-19 pandemic

Rasul, M. G., & Mandal, N. K. (2021). Supervision and management practices of Final Year Engineering Projects: Impacts of COVID-19 pandemic. In REES-AAEE 2021 Proceedings (pp. 1-7). Online: Australasian Association for Engineering Education & Research in Engineering Education Symposium. Retrieved from https://aaee.net.au/search-all-publications/


THIS IS A DUPLICATE RECORD

Records, D. (2021). THIS IS A DUPLICATE RECORD. In THIS IS A DUPLICATE RECORD (pp. 1). THIS IS A DUPLICATE RECORD: THIS IS A DUPLICATE RECORD.


Motivating mechanical engineering students to learn fluid power concept: A positive impact of simulation software

Mandal, N., Azad, A. K. M., & Rasul, M. (2020). Motivating mechanical engineering students to learn fluid power concept: A positive impact of simulation software. In Proceedings of the AAEE2020 Conference (pp. 1-7). Online: Australasian Association for Engineering Education. Retrieved from https://www.aaee2020.com.au/program-3/


The COVID – 19 and CQUniversity’s changed learning and teaching pedagogies

Mandal, N., & Rasul, M. (2020). The COVID – 19 and CQUniversity’s changed learning and teaching pedagogies. In Proceedings of the AAEE Virtual Conference 2020 (pp. 1-6). Online: Australasian Association of Engineering Education. Retrieved from https://www.aaee2020.com.au/program-3/


Authentic assessment in work integrated learning promotes student work readiness in industrial settings

Mandal, N., & Edwards, F. R. (2019). Authentic assessment in work integrated learning promotes student work readiness in industrial settings. In Proceedings of the AAEE2019 Conference: Educators Becoming Agents of Change: Innovate, Integrate, Motivate (pp. 1-9). Online: Engineers Australia. Retrieved from https://aaee.net.au/search-all-publications/


Influence of endpost materials on sub-surface railhead material damage of insulated rail joints due to wheel/rail contact loadings

Mandal, N. K. (2019). Influence of endpost materials on sub-surface railhead material damage of insulated rail joints due to wheel/rail contact loadings. In ICCM22 Proceedings (pp. 1-10). Online: RMIT University. Retrieved from https://iccm22.com/iccm22-proceedings/


Performance of students’ choice team versus teacher/facilitator’s created team in project-based learning (PBL) units

Rasul, M. G., & Mandal, N. K. (2019). Performance of students’ choice team versus teacher/facilitator’s created team in project-based learning (PBL) units. In 30th Annual Conference for the Australasian Association for Engineering Education (AAEE 2019): Educators Becoming Agents of Change: Innovate, Integrate, Motivate (pp. 626-631). Online: Australasian Association for Engineering Education. Retrieved from https://search.informit.org/documentSummary;res=IELENG;dn=069258772793181


Team teaching approaches: How to manage student learning in multi-campus settings

Mandal, N., Rasul, M., & Azad, M. A. K. (2019). Team teaching approaches: How to manage student learning in multi-campus settings. In 30th Annual Conference for the Australasian Association for Engineering Education (AAEE 2019): Educators Becoming Agents of Change: Innovate, Integrate, Motivate (pp. 411-417). Online: Australasian Association for Engineering Education. Retrieved from https://search.informit.org/documentSummary;res=IELENG;dn=068718416626694


Individual student assessment in team projects: a team charter approach

Mandal, N. K. (2018). Individual student assessment in team projects: a team charter approach. In J. Swan, & T. Harris (Eds.), Proceedings of the 29th Australasian Association for Engineering Education Annual Conference (AAEE 2018) (pp. 1-7). Hamilton, NZ: The University of Waikato. Retrieved from https://s3-us-west-2.amazonaws.com/18aaee/proceedings/AAEE18_Mandal_19.pdf


Stress analysis of joint bars of insulated rail joints due to wheel/rail contact loadings

Mandal, N. K. (2018). Stress analysis of joint bars of insulated rail joints due to wheel/rail contact loadings. In Z. Li, & A. Nunez (Eds.), Proceedings of the 11th International Conference on Contact Mechanics and Wear of Rail/wheel Systems (CM2018) (pp. 675-680). The Netherlands: Delft University of Technology. Retrieved from https://cm2018.org/#home


Rail wear modelling concept for heavy haul locomotive study

Sun, Y. Q., Mandal, N., Wu, Q., Wolfs, P., & Spiryagin, M. (2018). Rail wear modelling concept for heavy haul locomotive study. In M. Spiryagin, T. Gordon, C. Cole, & T. McSweeney (Eds.), Proceedings of 25th Symposium of the International Association of Vehicle System Dynamics (IAVSD 2017) Vol. 2 (pp. 815-822). Leiden, The Netherlands: CRC Press. Retrieved from https://www.taylorfrancis.com/books/e/9781351057172


Student engagement: how to quantify

Mandal, N. K. (2018). Student engagement: how to quantify. In J. Swan, & T. Harris (Eds.), Proceedings of the 29th Australian Association for Engineering Education Annual Conference (AAEE 2018) (pp. 1-6). Hamilton, NZ: The University of Waikato. Retrieved from https://www.aaee2018.com/conference-programme-registration/programme/


An investigation into monitoring rail stress in continuously welded rails through stress-free temperature

Mandal, N., & Lees, M. (2016). An investigation into monitoring rail stress in continuously welded rails through stress-free temperature. In Proceedings of the Conference on Railway Excellence (CORE2016), Maintaining the Momentum, 16-18 May 2016, Melbourne Australia. (pp. 404-410). Melbourne, Victoria: EECW.


Management of rail stress in a modern railway maintenance infrastructure

Hoather, I., & Mandal, N. (2016). Management of rail stress in a modern railway maintenance infrastructure. In Proceedings of the Conference on Railway Excellence (CORE2016), Maintaining the Momentum, 16-18 May 2016, Melbourne Australia. (pp. 1-12). Melbourne, Victoria: EECW.


Students’ feedback: what can we do with it?

Mandal, N. K. (2016). Students’ feedback: what can we do with it?. In S. Smith (Ed.), Proceedings of the AAEE2016 Conference (pp. 1-10). Barton, ACT: Australasian Association for Engineering Education. Retrieved from http://www.aaee.net.au/index.php/conference/aaee-conference


FEA to assess railhead material damage with a reference to nylon endpost material of insulated rail joints

Mandal, N. (2015). FEA to assess railhead material damage with a reference to nylon endpost material of insulated rail joints. In Proceedings of the 10th International Contact Mechanics Conference of Wheel (pp. 1-6). Pueblo, Colorado, USA: IICT.


Improving student satisfaction improves learning : a case study in the scholarship of teaching

Mandal, N. (2015). Improving student satisfaction improves learning : a case study in the scholarship of teaching. In Proceedings of the 26th Annual Conference of the Australasian Association for Engineering Education (AAEE2015), Blended Design and Project Based Learning : a future for Engineering Education, 6-9 December 2015, Geelong, Victoria (pp. 1-9). Geelong, Vic.: Deakin University. Retrieved from http://aaee2015conference.sched.org/


Shear repaired RC beam by FRP bonding with external post-tensioning

Choudhury, R., Suntharavadivel, T., & Mandal, N. (2014). Shear repaired RC beam by FRP bonding with external post-tensioning. In Sustainable solutions in structural engineering and construction : Second Australasia and South-East Asia Structural Engineering and Construction Conference (ASEA-SEC-2), BangKok, Thailand (pp. 39-44). United States: ISEC Press. doi:10.14455/ISEC.res.2014.4


Stress analysis of inserted rail joints

Mandal, N., & Dhanasekar, M. (2013). Stress analysis of inserted rail joints. In 10th World Congress on Railway Research (WCRR2013), Sydney Convention and Exhibition Centre, Australia, 25th-28th November 2013. (pp. 1-8). Brisbane, Qld: CRC for Rail Innovation.


A sensitivity analysis of endpost materials of insulated rail joints using finite element analysis

Mandal, N., & Dhanasekar, M. (2012). A sensitivity analysis of endpost materials of insulated rail joints using finite element analysis. In Proceedings of the 9th International Conference on Contact Mechanics and Wear of Rail (pp. 509-515). Chengdu, China: State Key Loboratory of Traction Power, Southwest Jiaotong University.


Experimental investigation into the failure behaviour of insulated rail joints

Boyd, P., Mandal, N., Bandula, T., Zong, N., & Dhanasekar, M. (2012). Experimental investigation into the failure behaviour of insulated rail joints. In CORE2012 : Global Perspectives ; Conference on Railway Engineering, 10-12 September 2012, Brisbane, Australia (pp. 53-60). Barton, A.C.T.: RTSA.


Improvement of rail creep data to measure the stress state of a tangent continuously welded rail (CWR) track

Ahmad, S., Mandal, N., Chattopadhyay, G., Powell, J., & Micenko, P. (2011). Improvement of rail creep data to measure the stress state of a tangent continuously welded rail (CWR) track. In International Heavy Haul Association Conference, June 19 - 22, 2011, Westin Hotel, Calgary, Canada : conference proceedings. (pp. 1-8). Calgary, Canada: International Heavy Haul Association.


Exploration of economic sustainability of renewable resources in producing electricity in Bangladesh

Mehjabeen, A., & Mandal, N. (2010). Exploration of economic sustainability of renewable resources in producing electricity in Bangladesh. In Proceeding of Central Region Engineering Conference, Bundaberg, 2010. (pp. 1-21). Bundaberg, Queensland, Australia: Local group, Engineers Australia (Bundaberg, Queensland, Australia).


Rail grinding quality assurance based on profile correction and RCF control

Devadoss, R., Chattopadhyay, G., Mandal, N., Sroba, P., Turner, M., & Creese, G. (2010). Rail grinding quality assurance based on profile correction and RCF control. In Rail - rejuvenation & renaissance, proceedings of Conference on Railway Engineering (CORE 2010), Wellington, New Zealand, 12-14 September 2010. (pp. 8-15). Wellington, New Zealand: RTSA.


3D stress analysis of insulated rail joint

Mandal, N., & Peach, B. (2009). 3D stress analysis of insulated rail joint. In Proceedings : 9th International Heavy Haul Conference (IHHC 2009), Shanghai, China, 22nd - 24th June, 2009. (pp. 237-245). Beijing, China: China Railway Publishing House.


Comparative study of track buckling parameters of continuous welded rail

Ahmad, S., Mandal, N., & Chattopadhyay, G. (2009). Comparative study of track buckling parameters of continuous welded rail. In Proceedings of the International Conference on Mechanical Engineering (ICME 2009), Dhaka, Bangladesh, 26-28 December 2009. (pp. 1-6). Dhaka, Bangladesh: BUET, Dept. of Mechanical Engineering.


Elasto-plastic stress analysis of an insulated rail joint (IRJ) with a loading below shakedown limit

Mandal, N., Dhanasekar, M., & Boyd, P. (2009). Elasto-plastic stress analysis of an insulated rail joint (IRJ) with a loading below shakedown limit. In Proceedings : 8th International Conference on Contact Mechanics and Wear of Rail (pp. 773-781). Firenze, Italy: AB Editore.


Shakedown stress analysis of insulated rail joint (IRJ)

Mandal, N., Dhanasekar, M., & Boyd, P. (2009). Shakedown stress analysis of insulated rail joint (IRJ). In Proceedings : 8th International Conference on Contact Mechanics and Wear of Rail (pp. 783-793). Firenze, Italy: AB Editore.


Multi-campus learning and teaching at CQUniversity using ISL : a case study

Mandal, N. (2008). Multi-campus learning and teaching at CQUniversity using ISL : a case study. In Program and proceedings of the 19th Annual Conference for the Australasian Association for Engineering Education: To Industry and Beyond, 7 - 10 December 2008, Australia, Queensland, Yeppoon. 2008. (pp. 1-6). Yeppoon, Australia: Australasian Association for Engineering Education. Retrieved from http://aaee.com.au/conferences/papers/2008/aaee08_submission_m3c5.pdf


Measurement of structure-borne sound in trapezoidal corrugated plates

Mandal, N. (2007). Measurement of structure-borne sound in trapezoidal corrugated plates. In Proceedings of the International Conference on Mechanical Engineering 2007 (ICME 2007) 29- 31 December 2007, Dhaka, Bangladesh. (pp. 1-6). Dhaka: Department of Mechanical Engineering.


A new strategy for far-field power transmission in orthotropic plates

Mandal, N., Rahman, R., & Leong, M. (2005). A new strategy for far-field power transmission in orthotropic plates. In Proceedings of the 11th Asia-Pacific vibration conference, Langkawi, Malaysia, 23-25 November 2005. (pp. 537-542). Kuala Lumpur: University of Technology, Malaysia.


Determination of quasi-longitudinal wave power flow in trapezoidal corrugated plates

Mandal, N., Leong, M., & Rahman, R. (2000). Determination of quasi-longitudinal wave power flow in trapezoidal corrugated plates. In Proceedings of the 7th International Congress on Sound and Vibration, Germany, 2000. (pp. 917-922). Muenchen, Germany: IIAV and Bavarian Ministry for Environmental Affairs.


Determination of flexural wave power in freely suspended isotropic plates for far field conditions using vibration intensity

Mandal, N., Rahman, R., & Leong, M. (1998). Determination of flexural wave power in freely suspended isotropic plates for far field conditions using vibration intensity. In International Acoustics and Vibration Asia 98 and Exhibition. (pp. 406-413). Singapore: Acoustics and Vibration Asia 98.


Estimation of structure-borne noise in plates for far field conditions using the structural intensity method

Mandal, N., Rahman, R., & Leong, M. (1998). Estimation of structure-borne noise in plates for far field conditions using the structural intensity method. In Inter-noise 98 : sound and silence : setting the balance : conference proceedings, Christchurch, New Zealand, 16-18 November 1998. (pp. 703-706). Rundle Mall, S. Aust.: Causal Productions.


Measurement of bending wave power in plate like structures under general field conditions using cross-spectral density method

Mandal, N., Rahman, R., & Leong, M. (1998). Measurement of bending wave power in plate like structures under general field conditions using cross-spectral density method. In Proceedings of the Inter-Noise 98. (pp. 711-714). Christchurch, New Zealand: International Noise Control Institute.


Vibration power flow in orthotropic plates using structural intensity technique

Mandal, N., Rahman, R., & Leong, M. (1997). Vibration power flow in orthotropic plates using structural intensity technique. In Proc. of the Noise-Con '97. (pp. 29-34). Pennsylvania, USA: Institute of Noise Control.


Acoustics of cantilever flat plates

Mandal, N., & Uddin, W. (1997). Acoustics of cantilever flat plates. In Proceedings of the 15th International Modal Analysis Conference. (pp. 527-531). United States: Society for Experimental Mechanics.


Determination of elastic rigidities of orthotropic plates for vibration response and power flow analysis

Mandal, N., Rahman, R., & Leong, M. (1997). Determination of elastic rigidities of orthotropic plates for vibration response and power flow analysis. In Proceedings of the Asia-Pacific Vibration Conference '97. (pp. 778-783). Seoul, Korea: Kiast.


Acoustics of rectangular flat plates

Mandal, N., & Uddin, W. (1996). Acoustics of rectangular flat plates. In Proceedings of the Third International Conference on Motion and Vibration. (pp. 371-376). Chiba Japan: Japan Society of Mechanical Engineers.


Structure-borne power flow : past and future

Mandal, N., & Leong, M. (1995). Structure-borne power flow : past and future. In Proceeding of the Asia Pacific Vibration Conference 1995. (pp. 70-75). Kuala-Lumpur, Malaysia: Institute of Noise and Vibration, UTM, Malaysia.


Thesis / Dissertation
Failure of railhead material of insulated rail joints

Mandal, N. K. (2011). Failure of railhead material of insulated rail joints. (PhD Thesis, Central Queensland University).