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Publications

Chapter Book

 

  1. Chapter Book, M.K. Kwak, A. Loghmani, “An Active Vibration Control of Structures Using Piezoelectric Actuators and Sensors” in the book entitled “Vibration Control Systems Utilizing Smart Materials Actuators”, NOVA, 2016https://novapublishers.com/shop/vibration-control-systems-utilizing-smart-materials-actuators

 

Journal Papers

 

  1. M.Kabiripoor, A.Loghmani, R.Jafari Nedoushan, WR.Yu, "Enhanced sound transmission loss of a truss-like cellular structure in broad-band low frequency domains", Mechanics of Advanced Materials and Structures (2024)https://doi.org/10.1080/15376494.2024.2308052.
  2. A.Rezaei, A.Loghmani, S.M.Hejazi, A.Mohammadi, "An Investigation into the Impact of Fiber Material, Fabric Texture, Dirt Type, and Fabric Area Density on Ultrasonic Cleaning of Woven Textiles", Fibers and Polymers (2023)https://doi.org/10.1007/s12221-023-00400-8.
  3. M.R.Torabi, A.Loghmani, "Acoustical simulation, design and experimental investigation of a classroom: A case study", Journal of Theoretical and Applied Vibration and Acoustics (2023)https://tava.isav.ir/article_707283.html.
  4. A.Gholami Jalal Abad, A.Zolfaghari, A.Loghmani, "Comparison of transverse and torsional vibrations of a one-stage gearbox in fault diagnosis of crack defects in different speeds", Journal of Vibration and Sound (2023). https://jvs.isav.ir/article_705077.html?lang=en.
  5. M.H.Fasihi Harandi, A.Loghmani, S.Attarilar "Backpack with a nonlinear suspension system designed for low walking speeds", Archive of Applied Mechanics (2023). https://doi.org/10.1007/s00419-023-02391-7.
  6. M.Iranpour ,A.Loghmani, ,M.Danesh "Active noise control for global broadband noise attenuation in a cylindrical cavity using Modal FxLMS algorithm", Journal of Vibration and Control (2022). https://doi.org/10.1177/10775463221144358.
  7. E.Tahvilian, M.Iranpour ,A.Loghmani, "Narrowband active noise control in a duct using FxLMS method based on the AVR microcontroller", Modares Mechanical Engineering 22(9) (2022) 625-635. http://mme.modares.ac.ir/article-15-61015-en.html.
  8. M.H.Fasihi Harandi, A.Loghmani, "Theoretical and Experimental Investigation of Free Vibrations of Rectangular Plates with Vertical Patterns", Iranian Journal of Science and Technology, Transactions of Mechanical Engineering (2022). https://doi.org/10.1007/s40997-022-00493-1.
  9. M. Pourseiedrezaei, A.Loghmani, M. Keshmiri, "Development of a Sound Quality Evaluation Model Based on an Optimal Analytic Wavelet Transform and an Artificial Neural Network", Archives of Acoustics 46-1 (2021) 55-65. https://doi.org/10.24425/aoa.2021.136560.
  10. H.D. Gohari, M.R.Zarastvand, R. Talebitooti, A. Loghmani, M.Omidpanah, “Radiated sound control from asmart cylinder subjected to piezoelectric uncertainties based on sliding mode technique using self-adjusting boundary layer”, Aerospace Science and Technology 106 (2020)https://doi.org/10.1016/j.ast.2020.106141.
  11. M.E. Tavakkoli Nejad, A. Loghmani, S. Ziaei-Rad, "The effects of wedge geometrical parameters and arrangement on the sound absorption coefficient – A numerical and experimental study", Applied Acoustics 169 (2020)https://doi.org/10.1016/j.apacoust.2020.107458.
  12. R. Talebitooti, H. Darvish Gohari, M. Zarastvand, A. Loghmani, "A robust optimum controller for suppressing radiated sound from an intelligent cylinder based on sliding mode method considering piezoelectric uncertainties",  Journal of Intelligent Material Systems and Structures 30(20) (2019), pp. 3066-3079. https://doi.org/10.1177/1045389X19873412.
  13. M. Pourseiedrezaei, A.Loghmani, M. Keshmiri, "Prediction of psychoacoustic metrics using combination of wavelet packet transform and an optimized artificial neural network", Archives of Acoustics 44-3 (2019) 561-573. https://doi.org/10.24425/aoa.2019.129271.
  14. A. Loghmani, M. Danesh, M.K. Kwak, M. Keshmiri, “Vibration suppression of a piezo-equipped cylindrical shell in a broadband frequency domain” Journal of Sound and Vibration  411 (2017) 260-277. https://doi.org/10.1016/j.jsv.2017.08.051.
  15. A. Loghmani, M. Danesh, M.K. Kwak, M. Keshmiri, “Active control of radiated sound power of a smart cylindrical shell based on radiation modes” Applied Acoustics  114 (2016) 218-229. https://doi.org/10.1016/j.apacoust.2016.07.027.
  16. A. Loghmani, M. Danesh, M.K. Kwak, M. Keshmiri “Active structural acoustic control of a smart cylindrical shell using a virtual microphone”, Smart Materials and Structures 25 (2016) 045020. https://doi.org/10.1088/0964-1726/25/4/045020.
  17. A. Loghmani, M. Danesh, M. Keshmiri, “Modal structural acoustic sensing with minimum number of optimally placed sensors”, Journal of Sound and Vibration, 363 (2016) 345-358. https://doi.org/10.1016/j.jsv.2015.10.034.
  18. A. Loghmani, M. Danesh, M. Keshmiri, M.M. Savadi “Theoretical and experimental study of active vibration control of a cylindrical shell using piezoelectric disks”, Journal of Low Frequency, Noise, Vibration and Active Control 34(3) (2015) 269-288. https://doi.org/10.1260/0263-0923.34.3.269.

 

Conferences

 

  1. A.R. Gholami, A. Zolfaghari, A. Loghmani, "Comparison of lateral and torsional vibrations using for crack detection of spur gears in various speeds", 12th International Conference on Acoustic and Vibration, Tehran, Iran, Dec. 2022.
  2. R. Jahadi, A. Loghmani, "Multibody Dynamic Modeling and Experimental validation of a Front-Loading Washing Machine in the spin cycle", 10th International Conference on Acoustic and Vibration, Tehran, Iran, 17-18 Feb. 2021.
  3. E. Nouri, S. Shiralian, A. Loghmani, “Vibro-acoustic Noise Reduction of a Washing Machine Using Vibration Absorbing Material” 9th International Conference on Acoustic and Vibration, Tehran, Iran, 24-25 Dec. 2019.
  4. A. Loghmani, M. Danesh, M.K. Kwak, M. Keshmiri, “Design of a virtual acoustic sensor for estimating the radiated sound of cylindrical shells”, Korean Society for Noise and Vibration Engineering 2015 Annual Fall Conference, Pyeongchang, South Korea, 28-30 October 2015.
  5. A. Loghmani, M. Danesh, M. Keshmiri, M.K. Kwak, “Low-frequency radiation modes of cylindrical shells based on system spatial decomposition” 44th Inter-Noise Congress & Exposition on Noise Control Engineering, San Francisco, California USA, 9-12 Aug. 2015.
  6. A. Loghmani, M. Danesh, M. Keshmiri, M.K. Kwak, “Structural acoustic sensing for cylindrical shells using accelerometers and structural modes information”, KSNVE 2015 Annual Spring Conference, Jeju Island, South Korea, 22-24 April 2015.
  7. A. Loghmani, M. Danesh, M. Keshmiri, M.M. Savadi, “Adaptive feedforward controller for active vibration control of a cylindrical shell using piezoelectric patches”, 4th International Conference on Acoustic and Vibration, Tehran, Iran, 10-11 Dec. 2014.

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