Choudhuri, Saha and Shi, Jian (2017): Study of the Industrial Precision Manufacturing and Metallic Alloys with Respect to Economic Considerations.
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Abstract
In this report according to the research results and approaches that used, it is utilized and illustrated why these papers are suitable for this research. The best position for explaining topic is here, because for understanding better the concept and the area of research, it is necessary to write briefly at the beginning of the article about topic. It is attempted to design new piston (porous piston) not only to have a good resistance in mechanical properties but also provide lower weight comparing to the previous ones. The most important thing in this work is to be aware of the effect of vibration, vacuum and over pressure during investment casting which by this way we can produce porous structure. By using the existing results of several papers, we will attempt to cast porous piston and optimize it to have the best mechanical properties. As we know engine pistons are one of the most complex components among all automotive or other industry field components. The engine can be called the heart of the car and piston maybe considered the most important part of an engine.
Item Type: | MPRA Paper |
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Original Title: | Study of the Industrial Precision Manufacturing and Metallic Alloys with Respect to Economic Considerations |
Language: | English |
Keywords: | Porous piston, mechanical properties, investment casting, economic concerns |
Subjects: | O - Economic Development, Innovation, Technological Change, and Growth > O1 - Economic Development > O10 - General |
Item ID: | 77481 |
Depositing User: | Jian Shi |
Date Deposited: | 13 Mar 2017 14:26 |
Last Modified: | 26 Sep 2019 12:03 |
References: | [1] S.M. Afazov, A.A. Becker, T.H. Hyde “FE prediction of residual stresses of investment casting in a bottom core vane under equiaxed cooling” Journal of Manufacturing Processes, 13 (2011), pp. 30–40. [2] H. Norouzi, S. Abedi, R. Jamalzadeh, M. Ghiasi Rad, S.H. Hosseinian “Modeling and investigation of harmonic losses in optimal power flow and power system locational marginal pricing” Energy Journal, 68 (2014), pp. 140-147. [3] M. Ghaisi Rad, M. Rahmani, P. Gharghabi, A. Zoghi, S.H. Hosseinian “Scheduling a Wind Hydro-Pumped-Storage Unit Considering the Economical Optimization” American Journal of Electrical and Electronic Engineering, 5 (2017), pp. 16-22. [4] H. Jouybari-Moghaddam, S.H. Hosseinian, B. Vahidi, M. Ghiasi Rad “Smart control mode selection for proper operation of synchronous distributed generators” 2nd Iranian Conference on mart Grids, Iran (Islamic Republic of), (2012), pp. 1-4. [5] S. M. Jafari-Shiadeh and M. Ardebili, "Analysis and comparison of axial-flux permanent-magnet brushless-DC machines with fractional-slot concentrated-windings", Proc. 4th Annu. Int. Power Electron., Drive Syst., Technol. Conf., pp. 72-77, 2013. [6] S Jafarishiadeh, M Ardebili, A Nazari Marashi, “Investigation of pole and slot numbers in axial-flux pm bldc motors with single-layer windings for electric vehicles,” 24th Iranian Conference on Electrical Engineering (ICEE), pp. 1444-1448, 2016. [7] V.M. Aleksandrov, B.A. Kulakov, A.A. Solodyankin “Increasing the strength and reducing the chemical activity of ceramic moulds” Soviet Casting Technology, 4 (1988), pp. 41–45. [8] S.O. Barnett “Investment casting—the multi-process technology” Foundry Trade Journal, 11 (3) (1988), pp. 33–37. [9] M. Bakhtiary-Noodeh, S. Moradian, and Z. Ranjbar, “Improvement of the edge protection of an automotive electrocoating in presence of a prepared epoxy-amine microgel” Progress in Organic Coating, 103 (2017), pp. 111–125. [10] M.T. Jovanovic, B. Dimcic, I. Bobic, S. Zec, V. Maksimovic “Microstructure and mechanical properties of precision cast TiAl turbocharger wheel” Journal of Materials Processing Technology, 167 (2005), pp. 14–21. [11] S. Kalpakjian, S. Schmid “Manufacturing Processes for Engineering Materials” Pearson Education Incorporation (2008). [12] M. Masoomi, N. Shamsaei, X. Gao, S. M. Thompson, A. Elwany, L. Bian, N. Shamsaei, L. Bian, and A. Elwany, “Modeling, simulation and experimental validation of heat transfer during selective laser melting,” in ASME (2015) International Mechanical Engineering Congress & Exposition, 2015. [13] M. Masoomi, S. M. Thompson, N. Shamsaei, A. Elwany, and L. Bian, “An experimental-numerical investigation of heat transfer during selective laser melting,” in 26th International Solid Freeform Fabrication Symposium, (2015). [14] E.L. Kotzin “Metal Casting and Moulding Processes” American Foundrymen Society Inc., Illinois, USA (1981). [15] M.H. Lee, J.J. Kim, K.H. Kim, N.J. Kim, S. Lee, E.B. Lee “Effects of HIPping on high-cycle fatigue properties of investment cast A356 aluminum alloys” Materials Science and Engineering A, 340 (2003), pp. 123–129. [16] Q. Liu, G. Sui, M.C. Leu “Experimental study on the ice pattern fabrication for the investment casting by rapid freeze prototyping” Computers in Industry, 48 (2002), pp. 181–197. [17] Q. Liu, M.C. Leu “Fabrication of dental crowns by investment casting with rapid freeze prototyping generated ice patterns” Proceedings of the Materials and Processes for Medical Devices Conference (2003), pp. 438–443. [18] Q. Ming, M.C. Leu, V.L. Richards, S.M. Schmitt “Dimensional accuracy and surface roughness of rapid freeze prototyping ice patterns and investment casting metal parts” International Journal of Advanced Manufacturing Technology, 24 (2004), pp. 485–495. [19] A. Mitchell “New casting directions for gas turbine construction” Proceedings of the 24th BICTA Conference on Investment Casting, Oxford, 1999. [20] S. Norouzi, A. Shams, H. Farhangi, A. Darvish “The temperature range in the simulation of residual stress and hot tearing during investment casting” Proceedings of the World Academy of Science, Engineering and Technology, vol. 58 (2009), pp. 283–289. [21] O.G. Ospennikova, L.V. Pikulina, L.M. Antipin “Application of a hydrolyzed ethyl silicate in investment casting” Neorganicheskie Materialy, 46 (5) (2010), pp. 633–635. [22] A.L. Pilchak, D.M. Norfleet, M.C. Juhas, J.C. Williams “Friction stir processing of investment-cast Ti–6Al–4V: microstructure and properties” Metallurgical and Materials Transactions A, 39 (2008), pp. 1519–1524. [23] B. Previtali, D. Pocci, C. Taccardo “Application of traditional investment casting process to aluminium matrix composites” Composites Part A, 39 (2008), pp. 1606–1617. [24] A. Mojtahedi, M.L. Yaghin, Y. Hassanzadeh, F. Abbasidoust, M.M. Ettefagh and M.H. Aminfar “A robust damage detection method developed for offshore jacket platforms using modified artificial immune system algorithm” China Ocean Engineering, 26 (2012), pp. 379-395. [25] F. Abbasi, and J. Mohammadpour "Nonlinear model order reduction of Burgers' equation using proper orthogonal decomposition" In American Control Conference (ACC), 2015, pp. 583-588. [26] F. Abbasi, J. Mohammadpour, R. Tóth, and N. Meskin “A Bayesian approach for model identification of LPV systems with uncertain scheduling variables” In Conference on Decision and Control (CDC),2015, pp. 789-794. [27] A. Yaghoobi, and M.G. Chorzepa. "Meshless modeling framework for fiber reinforced concrete structures." Computers & Structures 161 (2015), pp. 43-54. [28] A. Yaghoobi, and M.G. Chorzepa, S.S, Kim, and S.A. Durham. "Mesoscale Fracture Analysis of Multiphase Cementitious Composites Using Peridynamics." Materials 10.2 (2017), pp. 162. [29] Khalili A., Jha R., Samaratunga D. “The Wavelet Spectral Finite Element-Based User-Defined Element in Abaqus for Wave Propagation in One-Dimensional Composite Structures” Simulation: Transactions of the Society for Modeling and Simulation International, January 23, 2017, DOI: 10.1177/0037549716687377 [30] Khalili A., Jha R., Samaratunga D. “Spectrally Formulated User-Defined Element in Conventional Finite Element Environment for Wave Motion Analysis in 2-D Composite Structures” European Journal of Computational Mechanics, 25 (6), 2016, pp. 446-474, DOI: 10.1080/17797179.2016.1253364 [31] Khalili A., Jha R., Jayakody N. “Structural Health Monitoring of Skin-Stiffener Composite Structures Using WSFE-based User Defined Elements in Abaqus” 25th AIAA/AHS Adaptive Structures Conference, Grapevine, TX, US, 9-13 January 2017. DOI: 10.2514/6.2017-1677 [32] Jayakody N., Jha R., Khalili A. Samaratunga D. “Assessment of Bonded Joint Health Status using Wavelet Spectral Finite Element” 25th AIAA/AHS Adaptive Structures Conference, Grapevine, TX, US, 9-13 January 2017. DOI: 10.2514/6.2017-1676 [33] Masoomi, M. "Model Development and Load Analysis of an Offshore Wind Turbine." PhD diss., University of Toledo, 2014. [34] M.M.A. Rafique, J. Iqbal “Modeling and simulation of heat transfer phenomena during investment casting” International Journal of Heat and Mass Transfer, 52 (2009), pp. 2132–2139. [35] S.A.M. Rezavand, A.H. Behravesh “An experimental investigation on dimensional stability of injected wax patterns of gas turbine blades” Journal of Materials Processing Technology, 182 (2007), pp. 580–587. [36] M. Sahoo, L.V. Whiting, D.W.G. White “Control of underside shrinkage in zinc–aluminum foundry alloys by the addition of trace elements” AFS Transactions, 93 (1985), pp. 475–480. [37] Y.K. Shen, J.J. Liu, C.T. Chang, C.Y. Chiu “Comparison of the results for semisolid and plastic injection moulding process” International Communications in Heat and Mass Transfer, 29 (1) (2002), pp. 97–105. [38] P.K. Sung, D.R. Poirier, S.D. Felicelli, E.J. Poirier, A. Ahmed “Simulations of microporosity in IN718 equiaxed investment castings” Journal of Crystal Growth, 226 (2001), pp. 363–377. [39] P. Gharghabi, J. Lee, M. S. Mazzola, and T. E. Lacy Jr., “Development of an Experimental Setup to Analyze Carbon/Epoxy Composite Subjected to Current Impulses,” Am. Soc. Compos. Thirty-First Tech. Conf., 2016. [40] P. Gharghabi, P. Dordizadeh B., and K. Niayesh, “Impact of Metal Thickness and Field-Shaper on the Time-Variant Processes during Impulse Electromagnetic Forming in Tubular Geometries,” Journal of the Korean Physical Society, vol. 59, no. 61, 2011, p. 3560-3566. [41] S. Tascioglu, N. Akar “A novel alternative to the additives in investment casting pattern wax compositions” Materials & Design, 24 (2003), pp. 693–698. [42] G.K. Upadhya, S. Das, U. Chandra, A.J. Paul “Modelling the investment casting process: a novel approach for view factor calculations and defect prediction” Applied Mathematical Modelling, 19 (1995), pp. 354–362. [43] E.C. Santos, M. Shiomi, K. Osakada, T. Laoui “Rapid manufacturing of metal components by laser forming” International Journal of Machine Tools & Manufacture, 46 (2006), pp. 1459–1468. [44] M. Babaei, J. Shi, N. Zohrabi, and S. Abdelwahed, “Development of a hybrid model for shipboard power systems,” in Electric Ship Technologies Symposium (ESTS), 2015 IEEE. IEEE, 2015, pp. 145– 149. [45] M. Babaei, M. Babaei, and M. Niasati, “Parametric analysis of over voltages caused by back-flashover in siah-bishe 400kv g is substation,” in Electric Power and Energy Conversion Systems (EPECS), 2013 3rd International Conference on. IEEE, 2013, pp. 1–6. [46] Masoomi, Mohammad. "Numerical modeling of thermal effects during selective laser melting." In 10th Mississippi State Conference on Differential Equations and Computational Simulations. 2014. [47] Masoomi, Mohammad, Scott M. Thompson, Nima Shamsaei, and Linkan Bian. "Effects of Inter-Layer Time Interval on Temperature Gradients in Direct Laser Deposited Ti-6Al-4V." [48] Bagheri, A., Shamsaei, N., Thompson, S.M., 2015. Microstructure and Mechanical Properties of Ti-6Al-4V Parts Fabricated by Laser Engineered Net Shaping V02AT02A005. doi:10.1115/IMECE2015-51698. [49] Farhatnia, F., Bagheri, M.A., Ghobadi, A., 2012. Buckling Analysis of FGM Thick Beam under Different Boundary Conditions Using GDQM. Adv. Mater. Res. 433–440, 4920–4924. doi:10.4028/www.scientific.net/AMR.433-440.4920. [50] Farhatnia, F., Bagheri, A.M., Ghobadi, A., 2010. Buckling Analysis of Functionally Graded Timoshenko Beam, in: 16th International Conference on Composite Structures (ICCS), Porto, Portugal. [51] Bagheri, A., Doni, Z., Toptan, F., Alves, A.C., Ramalho, A., Gomes, J.R., Silva, F.S., 2013. The effect of alumina particle geometry on wear resistance of hot pressed CoCrMo-Al2O3 composites, in: Materiais 2013, Symposiums & Coordinators - SPM. [52] W. Li, M. Bakhtiary Noodeh, N. Delpouve, J-M Saiter, L. Tan, and M. Negahban, “Printing continuously graded interpenetrating polymer networks of acrylate/epoxy by manipulating cationic network formation during stereolithography” Express Polymer Letters, 10 (2016), pp. 1003-1015. |
URI: | https://mpra.ub.uni-muenchen.de/id/eprint/77481 |