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Online since: March 2023
Authors: R. Suresh, H.R. Basavaraju, S.S Manjunatha
Hence these are regarded as difficult-to-cut materials.
Journal of Materials Processing Technology Vol 105, p 327-332
Materials Science and Engineering A, Vol 378, p 180-184
Beela Satyanarayan, 2010, A Prediction of Material removal rate for Aluminum BIS-24345 Alloy in wire-cut EDM, International Journal of Engineering Science and Technology Vol. 2 (12), 7729-7739 [18] S.
Materials and Manufacturing Processes, 23: 174-181, 2008 [19] A.
Online since: October 2010
Authors: Shao Yan Gai, Fei Peng Da
Material Surface Reconstruction Based on Light Projection Shaoyan Gai1,2, a, Feipeng Da1,b 1 Key Laboratory of Measurement and Control for Complex System of Ministry of Education, Research Institute of Automation, Southeast University, Nanjing 210096, China 2 State Key Laboratory of Digital Manufacturing Equipment & Technology, Huazhong University of Science & Technology, Wuhan 430074, China a qxxymm@163.com, bdafp@seu.edu.cn Keywords: surface reconstruction, light projection, material detection Abstract.
A surface reconstruction method for material shape analysis is presented.
Acknowledgement This research is supported by National Natural Science Foundation of P.R.China No.60775025, Program for New Century Excellent Talents in University, Natural Science Foundation of JiangSu Province No.BK2007116.
[2] Wu, F.C., Wang, Z.H., Hu, Z.Y: International Journal of Computer Vision (2009), p.156 [3] Wei, Q., Wang, X H., Zhou, Z.Y., and Xiong, S.S.
:Optics and Precision Engineering Vol.17 (2009) , p. 1660 [4] Ying, X.H., Zha, H.B.: International Journal of Computer Vision (2008) , p. 156-184 [5] Srinivasan, V., Liu, H.
Online since: March 2010
Authors: Xiang Li Xie, Ying Guang Chen, Lin Jiang Wang, Ye Zhang
The joining of the different materials can be effected using functionally graded materials.
Bonnet: Journal of Europen Ceramic Society.Vol.21(2001), P.2353
Nakahira: Journal Nuclear Materials.
Thoms: Acta materials.
Thoms: Acta Materials.
Online since: December 2012
Authors: Lang Wu, Bin Lei, Bing Yan
Prediction of Elastic Modulus of Cement-Based Materials Based on Power’s Volume Model Wu Lang1, a, Yan Bing1,b and Lei Bin2,c 1College of Civil Engineering, Jiangxi Science and Technology Normal University, Nanchang 330013, China 2College of Civil Engineering, Nanchang Institure of Technology, Nanchang 330044, China awulang19812005@126.com, b ybjxnc@163.com, cBinglle@163.com Keywords: micromechanics; cement-based materials; volume Model; elastic properties Abstract.
According to reference [7],the effective volume of the composite materials is,
Journal of Huazhong University of Science and Technology(Natural Science Edition), 2011,39(3):39-42.
Mang, A multiscale micromechanics model for the Autogenous-shrinkage deformation of early-age cement-based materials[J].
Computational Materials Science, 2010, 47(3):775-784
Online since: March 2017
Authors: Mohammad Khairul Azhar Abdul Razab, Mohammad Khairul Azhar Abdul Razab, Siti Fatimah Abd Karim, Nor Hakimin Abdullah, Mazlan Mohamed, Nur Ezati AZHAR, Noraina ADAM, Zulhisyam ABDULLAH @ ABDUL KARI, An'amt Mohamed Noor
, dsitifatimahabdkarim93@gmail.com, enorhakimin@umk.edu.my, fanamt@umk.edu.my gmazlan.m@umk.edu.my, hzulhisyam.a@umk.edu.my and inoraina.adam@riken.jp Keywords: Radon sentinel 1030, α particles, Building materials, Health implications Abstract.
In addition, materials and ventilation of the building also contributes to the migration of 222Rn into indoor air (Pavia et al. 2003) [3].
Materials and Method Experimental set-up.
Zulkepli, A Study of radon-222 levels in foamed light concrete, Australian Journal of Basic and Applied Sciences, 7 (2013) 315-318
Hussin, Potential of fabricated light foamed concrete in reducing radon from building material, Materials Science Forum. 840 (2016) 427-431
Online since: February 2012
Authors: Li Kang, Xiao Guang Li
A Novel Defogging Algorithm Based on Genetic Algorithm with Analysis of Scientific Data Materials Xiao-Guang Li1, a, Li Kang2, b 1Luoyang Institute of Science and Technology, Peoples R China 2Luoyang Institute of Science and Technology, Peoples R China aemail: lxg@lit.edu.cn, bemail:maxkang0000@sina.com Keywords: Defogging; Genetic Algorithm; Fitness Function; Scientific Materials Abstract:This paper proposes a novel defogging algorithm based on the improved model with analysis of scientific data materials.
The new algorithm based on improved model with analysis of scientific data materials Physical model based on improved atmosphere scatters came to realize the fog, needing quality image in meeting certain goals under the best parameters of model rule precision.
Conclusion Based on the characteristics of the depth image scene of atmospheric model distribution to expand the assumptions, and proposes an improved image contrast degradation of a unified model based on the improved model, presents a novel image restoration of fog drop mass by using the genetic algorithm with analysis of scientific data materials, which uses algorithm of the global search ability, will achieve the scene to fog problem into the optimal meaning in global contrast of primitive not under the optimum estimate of degraded images.
[3]Narasimhan SG, Nayar SK.Vision and the atmosphere [J].International Journal of Computer Vision, 2002, 48(3):233-254
[4]Chen Gong, Wang Tang, Zhou He-qin ,A Novel Physics-based Method for Restoration of Foggy Day Images[J],Journal of Image and Graphics,2007,13(5): 888-893
Online since: August 2015
Authors: Konstantin Naumenko, Holm Altenbach, Frank Laengler, Mykola Ievdokymov
Fatigue and Fracture of Engineering Materials, 19 (9):1143 - 1151, 1996
Materials at High Temperatures, 24(1):1 - 26, 2007
Skrzypek, editors, Creep and Damage in Materials and Structures, pages 285 - 348.
Materials Science and Engineering, A510- A511:169 - 174, 2009.[13] M.H.J.
Deformation and life assessment of high temperature materials under creep fatigue loading.
Online since: August 2018
Authors: Lu Ping Yang, Chang Ling Zhou, Yan Yan Wang, Han Li, Hong Zhao Xu, Rui Xiang Liu
Therefore, NZP family ceramics have become a hot topic in materials science community in recent years.
Negative thermal expansion or nearly zero expansion materials can improve the influences generated by the thermal expansion of the materials.
Therefore, the negative thermal expansion materials have become a hot topic in materials science community in recent years.
Experimental Experimental raw materials.
[8] K.Byrappa, G.S.Gopalakrishna, M.N.Viswanathiah, Hydrothermal growthand properties of Na2(La, Co)Zr(PO4)3 crystals, Journal of Materials Science Letters. 4(1985)565–567
Online since: July 2011
Authors: Yi Qiang He, Feng Shang, Hai Xia Zhou, Bin Qiao, Hua Qiang Li
Application of Metal Powder Metallurgy Technology in Prepartion of Friction Materials of the Railway Vehicles SHANG Feng1,a ZHOU Hai-xia2,b QIAO Bin1,c Li Hua-qiang1,d and HE Yi-qiang1,e 1School of Mechanical Engineering, Huaihai Institute of Technology, Lianyungang Jiangsu 222005, China 2College of Material Science and Engineering, Jiangsu University of Science and Technology, Zhenjiang Jiangsu 212003, China ashf184518@163.com, b waihou295@163.com, cQiao6636@126.com, dlhq6729@163.com, eant210@126.com Key words:Powder metallurgy; Railway transport; Friction materials Abstract:With the speed up of the train, higher performance demands are put forward to the materials which have friction function.
(in Chinese) [2] H.X.Gao, J.X.Liu, R.M.Zhu: Journal of Materials Science and Engineering.
(in Chinese) [6] Y.Min, J.P.Ge, H.Zhao: China Science and Technology Information.
(in Chinese) [8] G.Q.Wang, J.C.Chen, J.L.Sun: Materials Review.
[10] Skai S , Suzuki H G, Mihara K: Materials Transactions.
Online since: February 2026
Authors: Ahmed Abdulrazzaq Khalaf, Hussein Togun
Materials with high latent heat, called phase change materials (PCMs), play a key role here [5].
Phase Change Materials (PCM) The core of any LHTES system is PCM.
[11] Saeed, R.M.R., Thermal characterization of phase change materials for thermal energy storage. 2016: Missouri University of Science and Technology
Andrzejczyk, A review of phase change materials and heat enhancement methodologies.
International Journal of Thermal Sciences, 2025. 214: p. 109884