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Online since: January 2018
Authors: V. Saravanan, S. Nallusamy, Abraham George
To generate ideas for improvement, the Kaizen is conducted for eliminating the unwanted movement of operator to take tools and materials and suggested to use mobile trolley to eliminate unwanted movement of the worker.
Work Standardization Work standardization is needed for appropriate plan and position of employees, materials, machines, supporting elements and facilities for the perfection in manufacturing environment.
Saravanan, Lean tools execution in a small scale manufacturing industry for productivity improvement- A case study, Indian Journal of Science and Technology, 9(35), (2016), 01-07
Nallusamy, Lean tools implementation for lead time reduction in CNC shop floor of an automotive component manufacturing industry, Indian Journal of Science and Technology, 9(45), (2016), 01-06
Chakraborty and Gautam Majumdar, A proposed agile based supply chain model for poultry based products in India, International Journal of Poultry Science, 14 (1), (2015), 57-62
Online since: February 2013
Authors: Shao Hua Xing, Bin Xie, Yan Li, Yong Gui Yan, Ji Da Chen
To solve this problem, the researchers of Japan Korea and France studied corrosion mechanism of metal materials in simulated wet-dry cyclic conditions by using two points impedance measurement [6-12].
Materials and methods Electrodes.
(In Chinese) [15]Xing S H, Li Y, Wu J H, Yan Y G.Materials and Corrosion, 61 (2010) 428-431.
The Chinese Journal of Nonferrous Metals, 17 (2007) 1527-1535.
The Chinese Journal of Nonferrous Metals, 17 (2007) 1247-1254.
Online since: September 2014
Authors: Li Ping Hao
In the whole process, the batches of raw materials and products are as the main line [5].
Journal of Anhui agricultural science, 2011,37 (17): 8232-8234
Beijing: Science Press, 2010: 4-5
Journal of software, 2012, 18 (2): 177-184
Computer engineering and science, 2011, 31 (6): 75-78.
Online since: December 2024
Authors: V. Dinesh Kumar, Vinayak B. Hemadri, Saravanakumar Sengottaiyan, Chander Prakash, Silambarasan Rajendran
In the present research, the emissions and performance features of the blends of biodiesel generated from the chosen raw materials (flamboyant seed), which includes B25, B50, B75, and B100, were evaluated in the early stages of the research.
Durga Prasad, "Combustion Performance and Exhaust Emission Analysis of Thurayi and Cuban Royal Palm Seed Biodiesel Blends on CI Engines," International Journal of Engineering Science Invention 7, no. 1, pp 66-77, 2018
Hole, "Identification of Non-Conventional Seeds Oil as a Potential Feedstock for Biodiesel Production," International Journal of Science and Research 6, no. 2: 545-548, 2017
Sakthi Vignesh, "Calophylluminophyllum methyl ester biodiesel blend as an alternate fuel for diesel engine applications," Alexandria Engineering Journal 57, no. 3: 1239-1247, 2018. https://doi.org/10.1016/j.aej.2017.03.042 [17] Duran, Sandeep Kumar, Hardeep Singh, Maninder Singh, and Vishal Saini, "Evaluation of Performance and Emission Characteristics of Apricot and Papaya Biodiesel in CI Engine," Indian Journal of Science and Technology 11, No. 39: 1-11, 2018. https://doi.org/10.17485/ijst/2018/v11i39/130754 [18] Anwar, Mohammad, Mohammad G.
Shaisundaram, "Effect of thermal Barrier coating in CI engines fueled with Citrus Medica (Citron) peel oil biodiesel dosed with cerium oxide nanoparticle," Materials Today: Proceedings 37: 1943-1956, 2021. https://doi.org/10.1016/j.matpr.2020.07.485 [23] Anwar, Mohammad, Mohammad G.
Online since: March 2017
Authors: Siti Norasmah Surip, Noor Najmi Bonnia, Wan Nor Raihan Wan Jaafar
Journal of materials science. 2005; 40: 4421-4429
Journal of applied polymer science. 2002; 84: 2222-2234
Materials and design. 2012; 40: 378-385
Materials letters. 2007: 61: 2023-2025
Journal of hazard materials. 2007: 144: 730-735.
Online since: February 2013
Authors: Zhao Yang Jin, Juan Liu, Xin Huang, Xin Tong Wu
So far magnesium alloy is the lightest metallic structural materials in engineering application [4-5].
“Application of Magnesium Alloy Material and Its Processing Technology”, Journal of Taiyuan University of Technology, Vol.32, No.11 (2006), pp. 599-603
[8] Guo-Zheng Quan, Yu Shi, Yi-Xin Wang, Beom-Soo Kang, Tae-Wan Ku, and Woo-Jin Song, “Constitutive modeling for the dynamic recrystallization evolution of AZ80 magnesium alloy based on stress-strain data”, Materials Science and Engineering A, Vol. 528(2011), pp. 8051-8059
[9] Juan Liu, Zhen-shan Cui, and Cong-xing Li, “Modeling of flow stress characterizing dynamic recrystallization for magnesium alloy AZ31B”, Computational Materials Science, Vol. 41(2008), pp. 375-382
[10] He Yang, Liang Huang, and Mei Zhan, “Coupled thermo-mechanical FE simulation of the hot splitting spinning process of magnesium alloy AZ31”, Computational Materials Science, Vol. 47(2010), pp. 857-866
Online since: March 2015
Authors: Ning Ma, Ke Su Liu, Quan Kun Liu, Yu Jie Ma
Journal of Material Processing Technology [J]. 1996, 60:19-26
[5] Hu Ping, Rate-dependent quasi-flow corner theory for elastic/visco-plastic materials, Int.
Materials Science and Engineering A, 2008, 478: 130-139
Material Science and Technology, 2008, 162:172-175
Transactions of Materials and Heat Treatment, 2010, 13:33-36.
Online since: August 2013
Authors: Jian Mei Chen, Meng Xiang Liu
Journal of Materials Processing Technology 2002, 6354: 1-2
Materials Science and Engineering A 527 (2010) 6400–6412
Journal of Materials Processing Technology 209 (2009) 5504-5508 [15] L.
Materials Science and Engineering A 435-436 (2006) 288-296 [16] J.
Journal of Materials Science 37 (2002) 4473-4480
Online since: March 2013
Authors: Jian Xin Xie, Hao En Mao, Ye Zhang, Fang Qin, Xue Feng Liu
Research on Dieless Drawing Process of Stainless Steel Tapered Tube Xuefeng Liu1, a, Ye Zhang1,b , Fang Qin2, c , Haoen Mao3, d and Jianxin Xie1,e 1Key Laboratory for Advanced Materials Processing (MOE), University of Science and Technology Beijing, Beijing, China 2Schaeffler Trading (Shanghai) Corporation Limited 3School of Materials Science and Engineering, Hebei University of Science and Technology aliuxuefengbj@163.com, byezhang1988@163.com, cqinfang_ustb@163.com, dmaohaoen@163.com, ejxxie@mater.ustb.edu.cn Keywords: Tapered tube, Stainless steel, Forming technology, Dieless drawing Abstract.
Cui, Engineering materials technology: Hot forming, Tsinghua university press, Beijing, 2010
Champliaud, FEM dynamic simulation and analysis of the roll-bending process for forming a conical tube, Journal of Materials Processing Technology. 198 (2008) 330-343
Eckhart, The intelligent processing of materials for design and manufacturing, Journal of the Minerals Metals and Materials Society. 41 (1989) 10-16
Montheillet, A thermo-mechanical analysis of stability in dieless wire, International Journal of Mechanical Sciences. 39 (1997) 615-627.
Online since: October 2011
Authors: Sina Eskandari, Bijan Mollaei Dariani
.,” Sheet-Forming Process Characterization by Static-Explicit Anisotropic Elastic-Plastic Finite-Element Simulation”, Journal of Materials Processing Technology, 50 116 32 (1995). ] predicted FLDs by means of FEM along with S-R Storen - rice model.
Takuda et al. [[] Takuda.H, "Finite element analysis of limit strains in biaxial stretching of sheet metals allowing for ductile fracture", International Journal of Mechanical Sciences 42 785-798 (2000). ] extracted FLDs by combination of FEM and ductile fracture criterion which has a good agreement with experiments.
H., Lirani J., Al-Qureshi H.A., ”Implementing a modified Marciniak-Kuczynski model using the finite element method for the simulation of sheet metal deep drawing”, Journal of Materials Processing Technology, 130-13,1135-144 ( 2002). ] utilized M-K Marciniak-Kuczynski theory to predict FLD numerically which had about 11% error in comparison with experiment.
Instability is defined based on Eq.3 [[] B M Dariani; H D Azodi “Finding the optimum Hill index in the determination of the forming limit diagram” ProQuest Science Journals pg. 1677 217 12 (2003)
M., ”dynamic analysis instability of sheet metal under biaxial stretching”, Amirkabir journal of science & technology,18(67-B), 31-39.(2007). ] Fig. 7 (a) reveals variation of critical strain by increasing of strain rate.