Volume 1 Issue 1 (2021)

  1. Industry 4.0: Challenges of Mechanical Engineering for Society and Industry. Setiyo, M., Purnomo, T.A., Yuvenda, D., (...), Kolakoti, A., Calam, A. Eng. Soc. Ind., 1(1), pp. 3-6.
    Cited by:
  • Fatmaryanti, S. D., Hakim, Y. A., Pratiwi, U., & Kurniawan, E. S. (2023). Design of laboratory scale dual axis solar tracking system with digital converter of light intensity. Paper presented at the AIP Conference Proceedings, , 2706. https://doi.org/10.1063/5.0120632 
  • Fasuludeen Kunju, F., Naveed, N., Anwar, M. N., & Ul Haq, M. I. (2022). Production and maintenance in industries: Impact of industry 4.0.Industrial Robot, 49(3), 461-475. doi:10.1108/IR-09-2021-0211 
  • Hidayat, Muis, A., Aviva, D., Halik, A., Minir, Pranoto, S., & Sudarsono. (2023). An embedded device for heavy equipment rent timer based on RFID. Paper presented at the AIP Conference Proceedings, , 2706. https://doi.org/10.1063/5.0120271
  • Jauhari, M. F., Hermansyah, Norhafani, & Kasim, M. (2023). Design of touch key - fingerprint with hysteresis based vehicle security module. Paper presented at the AIP Conference Proceedings, , 2706. https://doi.org/10.1063/5.0120540
  • Kalyani, T., Prasad, L. S. V., & Kolakoti, A. (2023). PREPARATION AND PHYSICOCHEMICAL PROPERTIES OF NATURALLY GROWN GREEN SPIROGYRA ALGAE BIODIESEL. [DOBIJANJE I FIZIČKOHEMIJSKA SVOJSTVA BIODIZELA NA BAZI PRIRODNO GAJENE ZELENE ALGE (SPIROGIRA)] Chemical Industry and Chemical Engineering Quarterly, 29(1), 75-85. https://orcid.org/0000-0002-7515-8318 
  • Kuswanto, D., & Mulaab. (2023). Smart laboratory prototype with the internet of things concept using raspberry pi. Paper presented at the AIP Conference Proceedings, , 2706. https://doi.org/10.1063/5.0120327
  • Munahar, S., Setiyo, M., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2022). Modelling fuel cut off controller on CNG engines using fuzzy logic: A prototype.International Journal on Advanced Science, Engineering and Information Technology, 12(5), 1857-1865. doi:10.18517/ijaseit.12.5.16849
  • Nurhadi, Pramono, C., & Taufik, I. (2023). Self service food corner (SSFC) based on smart system to support modernization of canteen or restaurant services and prevention of covid-19. Paper presented at the AIP Conference Proceedings, , 2706. https://doi.org/10.1063/5.0141308
  • Rahmat, & Nugroho, B. (2023). Home-scale solar power generation as a paid electricity savings. Paper presented at the AIP Conference Proceedings, , 2706. https://doi.org/10.1063/5.0120477
  • Waluyo, B., Setiyo, M., Purnomo, B. C., Rochman, M. L., Habibi, I., Saleh, A. R., . . . Kolakoti, A. (2022). Cooling effect characteristic of the novel half-cycle refrigeration system on a liquefied petroleum gas (LPG) fueled vehicle. Thermal Science and Engineering Progress, 34. https://doi.org/10.1016/j.tsep.2022.101405
  • Applications of artificial intelligence in sustainable energy development and utilization. Kolakoti, A., Bobbili, P., Katakam, S., Geeri, S., Soliman, W.G. (2023). Computational Intelligence in Sustainable Reliability Engineering, pp. 129-143. link
  1. Fuel Control Systems for Planetary Transmission Vehicles: A Contribution to the LPG-fueled Vehicles Community. Munahar, S., Purnomo, B. C., Köten, H. Mechanical Engineering for Society and Industry, 1(1), pp. 14-21.
    Cited by:
  • Alidadi, M., & Rahimi, A. (2023). Fault diagnosis of lubrication decay in reaction wheels using temperature estimation and forecasting via enhanced adaptive particle filter.Sensors, 23(3). https://doi.org/10.3390/s23031474
  • Chol, J., & Gun, C. R. (2023). Multi-agent based scheduling method for tandem automated guided vehicle systems.Engineering Applications of Artificial Intelligence, 123. https://doi.org/10.1016/j.engappai.2023.106229
  • Ftorek, B., Šimon, J., Kiselev, M., Vavrúš, V., & Vittek, J. (2022). Exploitation of energy optimal and near-optimal control for traction drives with AC motors.Symmetry, 14(12). https://doi.org/10.3390/sym14122613
  • Kolakoti, A., Setiyo, M., & Rochman, M. L. (2022). A green heterogeneous catalyst production and characterization for biodiesel production using RSM and ANN approach.International Journal of Renewable Energy Development, 11(3), 703-712. doi:10.14710/ijred.2022.43627
  • Munahar, S., Purnomo, B. C., Ferdiansyah, N., Widodo, E. M., Aman, M., Rusdjijati, R., & Setiyo, M. (2022). Risk-based leak analysis of an LPG storage tank: A case study.Indonesian Journal of Science and Technology, 7(1), 37-64. https://doi.org/10.17509/ijost.v7i1.42916
  • Munahar, S., Triwiyatno, A., Setiawan, J. D., & Munadi, M. (2023). Assessment of fuel management clusters in the development of a driving behavior control system model using lookup table mapping to improve fuel savings.Results in Engineering, 18. https://doi.org/10.1016/j.rineng.2023.101170
  • Setiyo, M., Condro Purnomo, B., Waluyo, B., Munahar, S., Latifur Rochman, M., Rahman Saleh, A., . . . David Samuel, O. (2022). Cooling power characteristics of half-cycle refrigeration system in LPG fuelled vehicles by auxiliary chiller as heat exchanger. Thermal Science and Engineering Progress, 27. https://doi.org/10.1016/j.tsep.2021.101145
  • Syaka, D. R. B., Purwoko, A. T., & Sopiyan. (2022). Design and experiment of a prototype electronic control unit direct injection fuel system arduino-based for 2-stroke spark ignition engine.Automotive Experiences, 5(1), 49-56. https://doi.org/10.31603/ae.5472
  • Yao, W. -., & Lin, C. -. (2022). Design of active continuous variable transmission control system with planetary gear. Electronics (Switzerland), 11(7). https://doi.org/10.3390/electronics11070986
  • Mahmoud, M., Slama, S.B. (2023). Peer-to-Peer Energy Trading Case Study Using an AI-Powered Community Energy Management System. Applied Sciences (Switzerland). 13(13), 7838. https://doi.org/10.3390/app13137838
  • Lami, B., Alferidi, A., Alsolami, M., & Slama, S. B. (2023). Peer-to-peer energy exchange, autonomy goals, and financial rewards in Saudi Arabia households. Ain Shams Engineering Journal, 102376. https://doi.org/10.1016/j.asej.2023.102376 
  1. Biodiesel Production from Waste Cooking Oil: Characterization, Modeling and Optimization. Kolakoti, A., Setiyo, M., Waluyo, B. Mechanical Engineering for Society and Industry, 1(1), pp. 22-30.
    Cited by:
  • Bhikuning, A. (2021). The simulation of performance and emissions from rapeseed and soybean methyl ester in different injection pressures.Automotive Experiences, 4(3), 112-118. doi:10.31603/ae.4682
  • Bhikuning, A., & Hafnan, M. (2023). A simulation of diesel blended kerosene on the performance and emissions in diesel engine. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120387  
  • Hamid, A., Jakfar, A., Romaniyah, S. B., Febriana, I. D., Abdullah, M., Rahmawati, Z., & Prasetyoko, D. (2023). Transesterification of waste cooking oil using CaO catalyst derived from madura limestone for biodiesel production and its application in diesel engine.Automotive Experiences, 6(1), 80-93. doi:10.31603/ae.7879
  • Kalyani, T., Prasad, L. S. V., & Kolakoti, A. (2023). Biodiesel production from a naturally grown green algae spirogyra using heterogeneous catalyst: An approach to RSM optimization technique.International Journal of Renewable Energy Development, 12(2), 300-312. doi:10.14710/ijred.2023.50065
  • Kalyani, T., Prasad, L. S. V., & Kolakoti, A. (2023). PREPARATION AND PHYSICOCHEMICAL PROPERTIES OF NATURALLY GROWN GREEN SPIROGYRA ALGAE BIODIESEL. [DOBIJANJE I FIZIČKOHEMIJSKA SVOJSTVA BIODIZELA NA BAZI PRIRODNO GAJENE ZELENE ALGE (SPIROGIRA)] Chemical Industry and Chemical Engineering Quarterly, 29(1), 75-85. doi:10.2298/CICEQ220215015K
  • Kolakoti, A. (2022). Experimental investigation of palm biodiesel on diesel engine combustion performance, cylinder head vibrations and NOx emissions.Journal of Mechanical Engineering, 19(1), 273-290.
  • Kolakoti, A., & Chandramouli, R. (2023). Prediction of significant oil properties using image processing based on RGB pixel intensity.Fuel, 349 doi:10.1016/j.fuel.2023.128618
  • Kolakoti, A., Kumar, A. V., Metta, R., Setiyo, M., & Rochman, M. L. (2022). Experimental studies on in-cylinder combustion, exergy performance, and exhaust emission in a compression ignition engine fuelled with neat biodiesels.Indonesian Journal of Science and Technology, 7(2), 219-236. doi:10.17509/ijost.v7i2.49680
  • Kolakoti, A., Prasadarao, B., Satyanarayana, K., Setiyo, M., Köten, H., & Raghu, M. (2022). Elemental, thermal and physicochemical investigation of novel biodiesel from wodyetia bifurcata and its properties optimization using artificial neural network (ANN).Automotive Experiences, 5(1), 3-15. doi:10.31603/ae.6171
  • Kolakoti, A., Setiyo, M., & Rochman, M. L. (2022). A green heterogeneous catalyst production and characterization for biodiesel production using RSM and ANN approach.International Journal of Renewable Energy Development, 11(3), 703-712. doi:10.14710/ijred.2022.43627
  • Marlina, E., Basjir, M., & Purwati, R. D. (2022). The response of adding nanocarbon to the combustion characteristic of crude coconut oil (CCO) droplets.Automotive Experiences, 5(1), 68-74. doi:10.31603/ae.4954
  • Nanlohy, H. Y., Riupassa, H., Mini, M., Taba, H. T., Katjo, B., Nanulaitta, N. J. M., & Yamaguchi, M. (2022). Performance and emissions analysis of BE85-gasoline blends on spark ignition engine.Automotive Experiences, 5(1), 40-48. doi:10.31603/ae.6116
  • Park, D. H., Nana, F. I., & Cho, H. M. (2022). A review of the emission, performance, combustion, and optimization parameters in the production of biodiesel from waste cooking oil.Automotive Experiences, 5(3), 371-388. doi:10.31603/ae.7005
  • Rahaju, S. M. N., Hananto, A. L., Paristiawan, P. A., Mohammed, A. T., Opia, A. C., & Idris, M. (2023). Comparison of various prediction model for biodiesel cetane number using cascade-forward neural network.Automotive Experiences, 6(1), 4-13. doi:10.31603/ae.7050
  • Rahaju, S. M. N., Veza, I., Tamaldin, N., Sule, A., Opia, A. C., Abdulrahman, M. B., & Djamari, D. W. (2022). Acetone-butanol-ethanol as the next green biofuel – A review.Automotive Experiences, 5(3), 251-260. doi:10.31603/ae.6335
  • Setiawan, I. C., & Setiyo, M. (2022). Renewable and sustainable green diesel (D100) for achieving net zero emission in indonesia transportation sector.Automotive Experiences, 5(1), 1-2. doi:10.31603/ae.6895
  • Setiyo, M., Condro Purnomo, B., Waluyo, B., Munahar, S., Latifur Rochman, M., Rahman Saleh, A., . . . David Samuel, O. (2022). Cooling power characteristics of half-cycle refrigeration system in LPG fuelled vehicles by auxiliary chiller as heat exchanger.Thermal Science and Engineering Progress, 27 doi:10.1016/j.tsep.2021.101145
  • Setiyo, M., Yuvenda, D., & Samue, O. D. (2021). The concise latest report on the advantages and disadvantages of pure biodiesel (B100) on engine performance: Literature review and bibliometric analysis.Indonesian Journal of Science and Technology, 6(3), 469-490. doi:10.17509/ijost.v6i3.38430
  • Sugara, I. R., Ilminnafik, N., Junus, S., Kustanto, M. N., & Hermawan, Y. (2023). Experimental study on the effect of magnetic fields on combustion characteristics of biodiesel from nyamplung (calophyllum inophyllum).Automotive Experiences, 6(1), 122-132. doi:10.31603/ae.8328
  • Supriyadi, S., Purwanto, P., Anggoro, D. D., & Hermawan, H. (2022). The effects of sodium hydroxide (NaOH) concentration and reaction temperature on the properties of biodiesel from philippine tung (reutealis trisperma) seeds.Automotive Experiences, 5(1), 57-67. doi:10.31603/ae.5986
  • Syarifudin, Fatkhurrozak, F., Sanjaya, F. L., Yohana, E., Syaiful, & Wibowo, A. (2022). The effect of ethanol on brake torque, brake specific fuel consumption, smoke opacity, and exhaust gas temperature of diesel engine 4JB1 fueled by diesel-jatropha oil.Automotive Experiences, 5(2), 230-237. doi:10.31603/ae.6447
  1. Comprehensive Analysis of Minibuses Gravity Center: A Post-Production Review for Car Body Industry. Karmiadji, D. W., Gozali, M., Setiyo, M., Raja, T., Purnomo, T. A., Mechanical Engineering for Society and Industry, 1(1), pp. 31-40.
    Cited by:
  • Arifin, Z., Suyitno, Tjahjana, D. D. D. P., Juwana, W. E., Rachmanto, R. A., Brillianto, C. H., . . . Rosli, M. A. M. (2022). Aerodynamic characteristics of ahmed body with inverted airfoil eppler 423 and gurney flap on fastback car.Automotive Experiences, 5(3), 355-370. doi:10.31603/ae.7067
  • Nurprasetio, I. P., Widyantara, R. D., Budiman, B. A., Lestaluhu, R., Djamari, D. W., Triawan, F., & Aziz, M. (2022). Electric delta trike stability characteristic and maneuverability analysis: Experiment and multi-body dynamic simulation.Automotive Experiences, 5(3), 398-401. doi:10.31603/ae.7070
  • Prahasto, T., Kurdi, O., Haryanto, I., Widodo, A., Satrijo, D., Yob, M. S., . . . Ilham, M. N. (2023). Static analysis of welded joint on bus chassis using finite element method. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120620
  • Putra, R. P., Yuvenda, D., Setiyo, M., Andrizal, & Martias. (2022). Body city car design of two passengers capacity: A numerical simulation study.Automotive Experiences, 5(2), 163-172. doi:10.31603/ae.6304
  • Suntari, Purwanto, H., Respati, S. M. B., Sugiarto, & Abidin, Z. (2022). Effect of electrode diameter and current on dissimilar metal welding (stainless steel - galvanized steel) in bus body construction: Microstructure and properties evaluation.Automotive Experiences, 5(3), 402-415. doi:10.31603/ae.7094
  • Yudianto, A., Adiyasa, I. W., & Yudantoko, A. (2021). Aerodynamics of bus platooning under crosswind.Automotive Experiences, 4(3), 119-130. doi:10.31603/ae.5298
  • Manuel, C. J., Santos, M., Lenzi, G. G., & Tusset, A. M. (2022). Longitudinal Modeling of a Road Vehicle: 4-Wheel Traction. International Journal of Robotics & Control Systems2(2). doi:10.31763/ijrcs.v2i2.698
  1. Hospital bed for diabetes care: An invention to support professional and hygienic nursing practice. Kamal, S., Munahar, S., Abbas, A., Ito, Y., Wahyudi, A., Mechanical Engineering for Society and Industry, 1(1), pp. 7-13.
    Cited by:
  • Margono, & Subrata, S. A. (2023). The application of communication technology in diabetes care: A literature review. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0121698
  • Muntiari, N. R., Nisa, K., Sandi A, A. S., Ashari, I. A., Hanif, K. H., & Dwinanto, R. W. (2023). Comparison of random forest algorithm, support vector machine, and k-nearest neighbor for diabetes disease classification. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120218
  • Subrata, S. A. (2023). Mental health matters in community-based diabetic foot care.British Journal of Community Nursing, 28, S5-S6. doi:10.12968/bjcn.2023.28.Sup3.S5
  • Subrata, S. A., & Margono, M. (2022). Holistic care of patients with diabetic foot ulcers during the COVID-19 era: Integration of henderson's need theory.British Journal of Nursing, 31(15), S38-S49.
  1. Tensile Strength and Density Evaluation of Composites from Waste Cotton Fabrics and High-Density Polyethylene (HDPE): Contributions to the Composite Industry and a Cleaner Environment. Respati, S. M. B., Purwanto, H., Fakhrudin, I., Prayitno, P. Mechanical Engineering for Society and Industry, 1(1), pp. 41-47.
    Cited by:
  • Mulana, F., Prayogie Aulia, M., & Aprilia, S. (2023). Fly Ash/Coconut fiber reinforced polymer composites: Effect on physical properties (density, water absorption, and thickness swelling).Materials Today: Proceedings, doi:10.1016/j.matpr.2023.02.394
  • Shieddieque, A. D., Sukarman, Mardiyati, Widyanto, B., & Aminanda, Y. (2022). Multi-objective optimization of sansevieria trifasciata fibre reinforced vinyl ester (STF/VE) bio-composites for the sustainable automotive industry.Automotive Experiences, 5(3), 288-303. doi:10.31603/ae.7002
  • Sutrisno, Soenoko, R., Irawan, Y. S., & Widodo, T. D. (2023). The effect of immersion of coconut fibers in lime water on the tensile strength of composite materials. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120355

 

Volume 1 Issue 2 (2021)

  1. The Role of Composites for Sustainable Society and Industry. Widyorini, R., Sari, N. H., Setiyo, M., Refiadi, G. Mechanical Engineering for Society and Industry, 1(2), pp. 48-53
    Cited by:
  • Judawisastra, H., & Refiadi, G. (2022). Permanganate treatment optimization on tensile properties and water absorption of kenaf fiber-polypropylene biocomposites.International Journal of Automotive and Mechanical Engineering, 19(1), 9623-9633. doi:10.15282/IJAME.19.1.2022.23.0742
  • Saifudin, Muhayat, N., Surojo, E., Manurung, Y. H. P., & Triyono. (2022). Mitigation of porosity and residual stress on car body aluminum alloy vibration welding: A systematic literature review.Automotive Experiences, 5(3), 477-493. doi:10.31603/ae.7965
  • Shieddieque, A. D., Sukarman, Mardiyati, Widyanto, B., & Aminanda, Y. (2022). Multi-objective optimization of sansevieria trifasciata fibre reinforced vinyl ester (STF/VE) bio-composites for the sustainable automotive industry.Automotive Experiences, 5(3), 288-303. doi:10.31603/ae.7002
  • Sutrisno, Soenoko, R., Irawan, Y. S., & Widodo, T. D. (2023). The effect of immersion of coconut fibers in lime water on the tensile strength of composite materials. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120355
  1. Recent progress on the production of aluminum oxide (Al2O3) nanoparticles: A review. Ziva, A. Z., Suryana, Y. K., Kurniadianti, Y. S., Nandiyanto, A. B. D., Kurniawan, T. Mechanical Engineering for Society and Industry, 1(2), pp. 54-77.
    Cited by:
  • Abidin, S. N. S. Z., Azmi, W. H., Ramadhan, A. I., & Zawawi, N. N. M. (2022). Comprehensive review of nanoparticles dispersion technology for automotive surfaces.Automotive Experiences, 5(3), 304-327. doi:10.31603/ae.6882
  • Al-Humud, N. S., Al-Tamimi, S. A., Al-Mohaimeed, A. M., & El-Tohamy, M. F. (2023). Comparative study for spectrofluorimetric determination of ambroxol hydrochloride using aluminum metal transfer chelation complex and biogenic synthesis of aluminum oxide nanoparticles using lavandula spica flowers extract.Molecules, 28(5) doi:10.3390/molecules28052210
  • Grande, L., Vicente, M. Á., Korili, S. A., & Gil, A. (2023). Synthesis strategies of alumina from aluminum saline slags.Process Safety and Environmental Protection, 172, 1010-1028. doi:10.1016/j.psep.2023.03.006
  • Ismael, H. I., Halbus, A. F., Mohammad, T. A. H., Baqir, S. J., Athab, Z. H., Atiyah, A. J., . . . Mohammad, E. J. (2022). Fabrication of carbon nanotube (CNTs)/Co3O4-Ni3O4/Al3O4nanocomposite catalyst and its application for photocatalytic removal of celestine blue dye.Egyptian Journal of Chemistry, 65(6), 99-110. doi:10.21608/EJCHEM.2021.95421.4480
  • Khine, E. E., & Kaptay, G. (2023). Identification of nano-metal oxides that can be synthesized by precipitation-calcination method reacting their chloride solutions with NaOH solution and their application for carbon dioxide capture from Air—A thermodynamic analysis.Materials, 16(2) doi:10.3390/ma16020776
  • Kuznetsova, I., Lebedeva, O., Kultin, D., Kalmykov, K., Philippova, S., Leonov, A., & Kustov, L. (2022). Influence of preliminary anodization of amorphous alloy Co75Si15Fe5Cr4.5Al0.5in ionic liquid on corrosion resistance. Paper presented at the ECS Transactions, , 109(14) 87-94. doi:10.1149/10914.0087ecst
  • Ramadhan, A. I., Azmi, W. H., Mamat, R., Diniardi, E., & Hendrawati, T. Y. (2022). Experimental investigation of cooling performance in automotive radiator using Al2O3-TiO2-SiO2 nanofluids.Automotive Experiences, 5(1), 28-39. doi:10.31603/ae.6111
  • Ramadhan, A. I., Diniardi, E., Basri, H., Almanda, D., & Azmi, W. H. (2023). Experimental investigation of thermal conductivity of Al2O3-TiO2-SiO2nanofluids in EG/water mixture for automotive radiator cooling system. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120209
  • Sinha, I., Verma, A., & Shrivastava, S. (2023). Synthesis of polymer nanocomposites based on nano-alumina: Recent development. Chem. Bull. 12(Special Issue 4), 7905-7913. https://doi.org/10.48047/ecb/2023.12.si4.709
  • Weidner, E., Bartczak, P., Goscianska, J., Jesionowski, T., Jaroniec, M., & Ciesielczyk, F. (2023). Soft-templating synthesis of mesoporous alumina enriched with lanthana and its potential as diclofenac delivery system.Microporous and Mesoporous Materials, 351 doi:10.1016/j.micromeso.2023.112487
  1. Data on Emission Factors of Gaseous Emissions from Combustion of Woody Biomasses as Potential Fuels for Firing Thermal Power Plants in Nigeria. Elehinafe, F. B., Okedere, O. B., Ebong-Bassey, Q. E., Sonibare, J. A. Mechanical Engineering for Society and Industry, 1(2), pp. 75-82.
    Cited by:
  • Kolakoti, A., Setiyo, M., & Rochman, M. L. (2022). A green heterogeneous catalyst production and characterization for biodiesel production using RSM and ANN approach.International Journal of Renewable Energy Development, 11(3), 703-712. doi:10.14710/ijred.2022.43627
  • Nanlohy, H. Y., Riupassa, H., Mini, M., Taba, H. T., Katjo, B., Nanulaitta, N. J. M., & Yamaguchi, M. (2022). Performance and emissions analysis of BE85-gasoline blends on spark ignition engine.Automotive Experiences, 5(1), 40-48. doi:10.31603/ae.6116
  • Nwaokocha, C. N., Layeni, A. T., Samuel, O. D., Imala, C. C., Osunsanya, R. O., Ige, B., . . . Enweremadu, C. C. (2023). Experimental investigation into the viability of waste derived fuel from cassava wastes. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120448
  • Özer, S., Akçay, M., Doğan, B., Erol, D., & Setiyo, M. (2022). The effects of canola Oil/Diesel Fuel/Ethanol/N-Butanol/Butyl di glycol fuel mixtures on combustion, exhaust gas emissions and exergy analysis.Automotive Experiences, 5(3), 268-287. doi:10.31603/ae.7000
  1. Emphasis of Weld Time, Shielding Gas and Oxygen Content in Activated Fluxes on the Weldment Microstructure. Tathgir, S., Rathod, D. W., Batish, A. Mechanical Engineering for Society and Industry, 1(2), pp. 86-95.
    Cited by:
  • Patel, D., Jani, S., & Shah, D. (2022). Augmentation in depth of penetration of hastelloy C-22 by FATIG welding. Advances in Industrial and Manufacturing Engineering, 4 doi:10.1016/j.aime.2022.100081
  • Saifudin, Muhayat, N., Surojo, E., Manurung, Y. H. P., & Triyono. (2022). Mitigation of porosity and residual stress on car body aluminum alloy vibration welding: A systematic literature review. Automotive Experiences, 5(3), 477-493. doi:10.31603/ae.7965
  • Suntari, Purwanto, H., Respati, S. M. B., Sugiarto, & Abidin, Z. (2022). Effect of electrode diameter and current on dissimilar metal welding (stainless steel - galvanized steel) in bus body construction: Microstructure and properties evaluation. Automotive Experiences, 5(3), 402-415. doi:10.31603/ae.7094
  1. A Report on Metal Forming Technology Transfer from Expert to Industry for Improving Production Efficiency. Khoirudin, K., Sukarman, S., Murtalim, M., (...), Anwar, C., Abbas, A. Mechanical Engineering for Society and Industry, 1, pp. 96-103.
    Cited by:
  • Khoirudin, Sukarman, Mulyadi, D., Fauzi, A., & Rahdiana, N. (2023). Evaluate the spring-back/spring-go phenomenon in low carbon steel sheet v-bending using an experimental method. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120397
  • Stephen, A., Samuel, O. D., Oyejide, O. J., Sylvester, B. O., Oyelaran, O. A., & Rochman, M. L. (2023). Design and construction of pipe bending machine using center line radius of 1.34 degrees. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120847
  1. The Effect of Excess Heat Utilization on the Production Cost of Cement. Adetunji, O. R., Ogbuokiri, M. C., Dairo, O. U., Olatunde, O. B., Okediran, I. K. Mechanical Engineering for Society and Industry, 1(2), pp. 104-114.
    Cited by:
  • Kolakoti, A., Setiyo, M., & Rochman, M. L. (2022). A green heterogeneous catalyst production and characterization for biodiesel production using RSM and ANN approach.International Journal of Renewable Energy Development, 11(3), 703-712. doi:10.14710/ijred.2022.43627
  • Sunarno, A. D., Haryadi, G. D., & Rozi, K. (2023). Skirt board design analysis to reduce build up dust on transfer chute: Case study at rembang power plant. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120343

 

Volume 2 Issue 1 (2022)

  1. Alternative fuels for transportation sector in Indonesia. Setiyo, M. Mechanical Engineering for Society and Industry, 2(1), pp. 1-6.
    Cited by:
  • Bhikuning, A., Priambodo, B., & Sukarnoto, T. (2023). Potential waste to energy in kota tua - jakarta. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120382
  • Dewi, R. P., Saputra, T. J., & Widodo, S. (2023). Techno economic analysis of utilization of coffee husk waste as an alternative energy source. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120293
  • Hidayati, U., Haryanto, I., & Ismail, R. (2023). Wind potential, design and analysis of portable vertical wind turbine at PLTU rembang. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120522
  • Kolakoti, A., Setiyo, M., & Rochman, M. L. (2022). A green heterogeneous catalyst production and characterization for biodiesel production using RSM and ANN approach.International Journal of Renewable Energy Development, 11(3), 703-712. doi:10.14710/ijred.2022.43627
  • Munahar, S., Setiyo, M., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2022). Modelling fuel cut off controller on CNG engines using fuzzy logic: A prototype.International Journal on Advanced Science, Engineering and Information Technology, 12(5), 1857-1865. doi:10.18517/ijaseit.12.5.16849
  • Munahar, S., Setuyo, M., Brieghtera, R. A., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2023). Fuel control system on CNG fueled vehicles using machine learning: A case study on the downhill.Automotive Experiences, 6(1), 173-187. doi:10.31603/ae.8107
  • Özer, S., Akçay, M., Doğan, B., Erol, D., & Setiyo, M. (2022). The effects of canola Oil/Diesel Fuel/Ethanol/N-Butanol/Butyl di glycol fuel mixtures on combustion, exhaust gas emissions and exergy analysis.Automotive Experiences, 5(3), 268-287. doi:10.31603/ae.7000
  • Park, D. H., Nana, F. I., & Cho, H. M. (2022). A review of the emission, performance, combustion, and optimization parameters in the production of biodiesel from waste cooking oil.Automotive Experiences, 5(3), 371-388. doi:10.31603/ae.7005
  • Purwanto, W., Su, J. C. T., Rochman, M. L., Waluyo, B., Krismadinata, & Arif, A. (2023). Study on the addition of A swirling vane to spark ignition engines fueled by gasoline and gasoline-ethanol.Automotive Experiences, 6(1), 162-172. doi:10.31603/ae.7981
  • Rahmat, & Nugroho, B. (2023). Home-scale solar power generation as a paid electricity savings. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120477
  • Rahmawati, T. S., Yuniaristanto, Sutopo, W., & Hisjam, M. (2022). Development of a model of intention to adopt electric motorcycles in indonesia.Automotive Experiences, 5(3), 494-506. doi:10.31603/ae.7344
  • Riupassa, H., Suyatno, Nanlohy, H. Y., Trismawati, Sanata, A., Subagyo, R., . . . Sarikoc, S. (2023). Effects of eugenol and cineol compound on diffusion burning rate characteristics of crude coconut oil droplet.Automotive Experiences, 6(1), 59-67. doi:10.31603/ae.8150
  • Setiyo, M. (2023). Sustainable transport: The role of clean energy, mass rapid transit, non-motorized mobility, and challenges to achievement.Automotive Experiences, 6(1), 1-3. doi:10.31603/ae.9108
  • Utomo, R. C., Setiawan, J. D., & Prahasto, T. (2023). Coal pulverizer mill system modeling for failure simulation. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120294
  • Yuvenda, D., Sudarmanta, B., Jamaludin, Muraza, O., Putra, R. P., Lapisa, R., . . . Primandari, S. R. P. (2022). Combustion and emission characteristics of CNG-diesel dual fuel engine with variation of air fuel ratio.Automotive Experiences, 5(3), 507-527. doi:10.31603/ae.7807
  1. Effect of silica on the mechanical properties of palm kernel shell based automotive brake pad. Adetunji, O. R., Adedayo, A. M., Ismailia, S. O., (...), Okediran, I. K., Adesusi, O. M. Mechanical Engineering for Society and Industry, 2(1), pp. 7-16.
    Cited by:
  • Kholil, A., Riyadi, Dwiyati, S. T., Syaefuddin, E. A., Pratama, R. H., & Putra, Y. D. R. (2022). Natural fiber composites from coconut fiber, wood powder, and shellfish shell of centrifugal clutch materials.Automotive Experiences, 5(2), 111-120. doi:10.31603/ae.6040
  • Nandiyanto, A. B. D., Al Husaeni, D. N., Ragadhita, R., Fiandini, M., Al Husaeni, D. F., & Aziz, M. (2022). Resin matrix composition on the performance of brake pads made from durian seeds: From computational bibliometric literature analysis to experiment.Automotive Experiences, 5(3), 328-342. doi:10.31603/ae.6852
  • Yilma, W. M., Singh, B., Asrat, G., & Hossain, N. (2023). Taguchi method optimization of water absorption behavior by wheat straw-basalt hybrid brake pad composite.Journal of Composites Science, 7(2) doi:10.3390/jcs7020062
  1. Cement industry – associated emissions, environmental issues and measures for the control of the emissions. Elehinafe, F.B., Ezekiel, S.N., Okedere, O.B., Odunlami, O.O. Mech. Eng. Soc. Ind. 2(1), pp. 17-25.
    Cited by:
  • Amran, M., Makul, N., Fediuk, R., Lee, Y. H., Vatin, N. I., Lee, Y. Y., & Mohammed, K. (2022). Global carbon recoverability experiences from the cement industry.Case Studies in Construction Materials, 17 doi:10.1016/j.cscm.2022.e01439
  • Sunarno, A. D., Haryadi, G. D., & Rozi, K. (2023). Skirt board design analysis to reduce build up dust on transfer chute: Case study at rembang power plant. Paper presented at the AIP Conference Proceedings, , 2706doi:10.1063/5.0120343
  1. Mini cold storage using the parabolic solar trough: An appropriate technology for perishable agricultural product. Yadav, J.S., Shirisha, K., Rao, C.M. Eng. Soc. Ind. 2(1), pp. 35-41,
    Cited by:
  • Waluyo, B., Setiyo, M., Purnomo, B. C., Rochman, M. L., Habibi, I., Saleh, A. R., . . . Kolakoti, A. (2022). Cooling effect characteristic of the novel half-cycle refrigeration system on a liquefied petroleum gas (LPG) fueled vehicle.Thermal Science and Engineering Progress, 34 doi:10.1016/j.tsep.2022.101405
  1. Verification of urban light rail transit (LRT) bogie frame structure design lifetime under variable fatigue loads. Karmiadji, D. W. Mechanical Engineering for Society and Industry. 2(1), pp. 42-53.
    Cited by:
  • Juanita, Suwarno, Sarifudin, M. I., & Setiawan, T. H. (2023). Potential development of trans central java bus rapid transit (BRT) corridor in the banyumas area towards sustainable mobility.Automotive Experiences, 6(1), 188-199. doi:10.31603/ae.8369

 

Volume 2 Issue 2 (2022)

  1. Circular economy, energy transition, and role of hydrogen. Veza, I., Idris, M., Fattah, I. M. R. Mechanical Engineering for Society and Industry, 2(2), pp. 54-56.
    Cited by:
  • Munahar, S., Setiyo, M., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2022). Modelling fuel cut off controller on CNG engines using fuzzy logic: A prototype.International Journal on Advanced Science, Engineering and Information Technology, 12(5), 1857-1865. doi:10.18517/ijaseit.12.5.16849
  • Rahmawati, T. S., Yuniaristanto, Sutopo, W., & Hisjam, M. (2022). Development of a model of intention to adopt electric motorcycles in indonesia.Automotive Experiences, 5(3), 494-506. doi:10.31603/ae.7344
  1. Mathematical modeling and cost comparison for electricity generation from petrol and liquified petroleum gas (LPG). Olalekan, L. M., Olatunde, O., Olufemi, F. I., Olamide, A. A. Mechanical Engineering for Society and Industry, 2(2), pp. 56-62.
    Cited by:
  • Ariyanto, S. R., Suprayitno, & Wulandari, R. (2023). Design of metallic catalytic converter using pareto optimization to improve engine performance and exhaust emissions.Automotive Experiences, 6(1), 200-215. doi:10.31603/ae.7977
  • Kolakoti, A., Kumar, A. V., Metta, R., Setiyo, M., & Rochman, M. L. (2022). Experimental studies on in-cylinder combustion, exergy performance, and exhaust emission in a compression ignition engine fuelled with neat biodiesels.Indonesian Journal of Science and Technology, 7(2), 219-236. doi:10.17509/ijost.v7i2.49680
  • Munahar, S., Setuyo, M., Brieghtera, R. A., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2023). Fuel control system on CNG fueled vehicles using machine learning: A case study on the downhill.Automotive Experiences, 6(1), 173-187. doi:10.31603/ae.8107
  • Munahar, S., Triwiyatno, A., Setiawan, J. D., & Munadi, M. (2023). Assessment of fuel management clusters in the development of a driving behavior control system model using lookup table mapping to improve fuel savings.Results in Engineering, 18 doi:10.1016/j.rineng.2023.101170
  1. Level of motion sickness based on heart rate variability when reading inside a fully automated vehicle. Karjanto, J., Yusof, N.M., Terken, J., Delbressine, F., Rauterberg, M. Eng. Soc. Indus. 2(2), pp. 72-81.
    Cited by:
  • Munahar, S., Triwiyatno, A., Setiawan, J. D., & Munadi, M. (2023). Assessment of fuel management clusters in the development of a driving behavior control system model using lookup table mapping to improve fuel savings.Results in Engineering, 18 doi:10.1016/j.rineng.2023.101170
  1. A Review of automotive green technology: Potential of butanol as biofuel in gasoline engine. Rahayu, S.M.N., Hananto, A.L., Herawan, S.G., (...), Balogun, S.A., Ali, E.A.B. Mechanical Engineering for Society and Industry, 2(2), pp. 82-97.
    Cited by:
  • Munahar, S., Setiyo, M., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2022). Modelling fuel cut off controller on CNG engines using fuzzy logic: A prototype.International Journal on Advanced Science, Engineering and Information Technology, 12(5), 1857-1865. doi:10.18517/ijaseit.12.5.16849
  • Munahar, S., Setuyo, M., Brieghtera, R. A., Saudi, M. M., Ahmad, A., & Yuvenda, D. (2023). Fuel control system on CNG fueled vehicles using machine learning: A case study on the downhill.Automotive Experiences, 6(1), 173-187. doi:10.31603/ae.8107
  • Purwanto, W., Su, J. C. T., Rochman, M. L., Waluyo, B., Krismadinata, & Arif, A. (2023). Study on the addition of A swirling vane to spark ignition engines fueled by gasoline and gasoline-ethanol.Automotive Experiences, 6(1), 162-172. doi:10.31603/ae.7981
  • Sugara, I. R., Ilminnafik, N., Junus, S., Kustanto, M. N., & Hermawan, Y. (2023). Experimental study on the effect of magnetic fields on combustion characteristics of biodiesel from nyamplung (calophyllum inophyllum).Automotive Experiences, 6(1), 122-132. doi:10.31603/ae.8328
  • Yousif, I. E., & Saleh, A. M. (2023). Butanol-gasoline blends impact on performance and exhaust emissions of a four stroke spark ignition engine.Case Studies in Thermal Engineering, 41 doi:10.1016/j.csite.2022.102612
  1. Effect of gasoline vaporizer tube (GVT) with magnetic field on spark-ignition engine: Investigation, discussion, and opinion. Anggrainy, R., Ruslan, W., Zariatin, D. L., Gilart, R. A., Syam, T. 2022   Mechanical Engineering for Society and Industry, 2(2), pp. 98-106.
    Cited by:
  • Ariyanto, S. R., Suprayitno, & Wulandari, R. (2023). Design of metallic catalytic converter using pareto optimization to improve engine performance and exhaust emissions.Automotive Experiences, 6(1), 200-215. doi:10.31603/ae.7977

 

Volume 3 Issue 1 (2023)

  1. Infrared sensor-based remote controlled driving system for people with lower body disability and leg impairment. M Arsalan, F Akbar. Mech. Eng. Soc. Ind, 3(1), pp. 12-21.
    Cited by:
  • Munahar, S., Triwiyatno, A., Setiawan, J. D., & Munadi, M. (2023). Assessment of fuel management clusters in the development of a driving behavior control system model using lookup table mapping to improve fuel savings.Results in Engineering, 18 doi:10.1016/j.rineng.2023.101170
  1. Strategies to achieve controlled auto-ignition (CAI) combustion: A review. Veza, I., Setiawan, I.C., Firman, L.O.M., (...), Sule, A., Opia, A.C. Mech. Eng. Soc. Ind, 3(1), pp. 22-34.
    Cited by:
  • Bajwa, A. U., Leach, F. C. P., & Davy, M. H. (2023). Prospects of controlled auto-ignition based thermal propulsion units for modern gasoline vehicles.Energies, 16(9) doi:10.3390/en16093887
  • Yuvenda, D., Sudarmanta, B., Jamaludin, Muraza, O., Putra, R. P., Lapisa, R., . . . Primandari, S. R. P. (2022). Combustion and emission characteristics of CNG-diesel dual fuel engine with variation of air fuel ratio.Automotive Experiences, 5(3), 507-527. doi:10.31603/ae.7807