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Online since: March 2019
Authors: Shang Lei Yang, Jia Xing Gu, Qi Xiong, Chen Feng Duan, Yuan Wang
Experimental Procedure Materials.
The materials used in the experiments were 2.5 mm thick 6013 aluminum alloy in T6 state.
Materials Science & Engineering A, 2011, 528(24):7350-7356
Journal of Materials Processing Technology, 2016, 237:155-162
Materials Science & Engineering A, 2003, 341(1):35-42.
Online since: September 2014
Authors: Sheng Zhu, Yu Xiang Liu, Guo Feng Han, Xiao Ming Wang, Chao Ji Zhou
Experimental Experimental materials. 5083 aluminum alloy block(size for 20mm×20 mm×10mm) is used as substrate and gamma TiAl alloy powder as spray materials.
Li, C.J.L, H.L.Liao: Applied Surface Science.
Xiong: Journal of Thermal Spray Technology.
Yamaguchi: Journal of Thermal Spray Technology.
Li: Materials Review.
Online since: March 2015
Authors: Ji Wen Li, Bao Yuan Li, Guo Shang Zhang, Shi Zhong Wei
Research on Heat Resistance of As-cast Ferritic Nodular Iron Baoyuan Li 1, 2,a, Guoshang Zhang 1,b, Shizhong Wei 1, 2,c and Jiwen Li 1, 2,d 1 Henan University of Science and Technology, Luoyang, Henan,China 471031 2 Henan Engineering Research Center for Wear of Materials, Luoyang, Henan, China 471003 aemail: libaoyuan2012@163.com, bemail: zgs-2000@163.com, cemail: hnwsz@126.com, demail: ljwzq@163.com Keywords: nodular iron; heat fatigue resistance; oxidation resistance.
Test materials and methods In this article, the composition of as-cast ferritic nodular iron suitable for production has been designed, as shown in Table 1 below.
Fig. 4 and Fig.5 show the paths of the spreading cracks for the two materials.
Table 3 shows the results of oxidization resistance for the two test materials after undergoing tests at 800ºC/100h and 650 ºC /100h.
[3] Xiu Cheng, Shubing Hu, Wulin Song, et al.: Applied Surface Science, Vol. 286( 2013), P 334-343 [4] Nan Li, Shuming Xing, Peiwei Bao: Journal of Iron and Steel Research, International, Vol. 20( 2013), P 58-62 [5] Yunlong Yang, Zhanyi Cao, Zhensong Lian, et al.: Journal of Iron and Steel Research, International, Vol. 20( 2013), P 52-57 [6] Liping Wang, Erjun Guo, Hongbin Chen, et al.: Journal of Rare Earths, Vol. 24( 2006), P 103-107
Online since: June 2013
Authors: Kun Liu, Zhan Qi Tang, Wei Gu, Wei Wang
References [1] Kunquan Lu, Jixing Liu: Particle Material [J], Journal of Physics.In Chinese, 33 (9) :500-527, (2004)
Beijing: Science Press, (2009)
[6] Mehrdad Massoudi, Tran X.Phuoc: Numerical solution to the shearing flow of granular materials between two plates [J].International Journal of Non-alinear Mechanics, 40:1-9, (2005)
[8] Huaning Zhu, Morteza M, Massoudi M: Incorporating the effects of fabrc in the dilatant double shearing model for planar deformation of granular materials [J].International Journal of Plasticity, 22:628-653, (2006)
[9] Wei Wang, Xiaojun Liu, Kun Liu, and Jinlong Shen: Influences of Particle's Friction Coefficient on Tribological Behaviour of Third-Body Interface Advanced Materials Research, Advanced Materials Research, 479-481, 1074-77, (2012)
Online since: December 2012
Authors: Rui Wang, Qian Qian Zhang, Xiao Li He, Chong Liu
Defects, such as pores and cracks, may be formed within materials because of the special production process and will have negative effects on the mechanics performance of 3D braided composites.
Its high sensitivity, strong penetrating, fast inspection speed, low cost and harmless to human body made it widely applied to materials.
References [1] CHEN J: Proceedings of Eleventh International Conference of Composite Materials.
Forum Vol. 5(1997), p. 317 [2] LI Jialu: submitted to Journal of Advanced Materials Industry (2010)
Forum Vol.30 (1999), p.1445 [4] WANG Xiaoyong, QIAN Hua: submitted to Journal of Nondestructive Testing (2006) [5] TANG Guiyun, WANG Yunfei, WU Donghui, LI Jianguo: submitted to Journal of Fiber Composites (2006) [6] Anomls, Birring: submitted to Journal of Material Evaluation (1993) [7] YAO Zhizhong: submitted to Journal of Nondestructive Inspection (2004)
Online since: May 2011
Authors: Ke Zhen Yan, Zou Zhang
Study on mechanical behavior of asphalt concrete pavements with non-uniformity gradient materials Ke-zhen Yan 1, a, Zou Zhang1,b 1 College of civil engineering, Hunan University, Changsha,410082,China ayankz2004@163.com, bzhanghnu@163.com Keywords: asphalt concrete pavements, modulus, gradient, aging.
Introduction Asphalt mixtures is a kind of materials which is very sensitive to the environment, and its mechanical characteristics will be changed with the environment factor such as temperature.
Acknowledgements This project was granted financial support from the National Natural Science Foundation of China (No. 50808077) and China Postdoctoral Science Foundation(No.20070411113 and No.200802582).
Transportation Science & Technology, Vol.211(4)(2005), p.1-3
Journal of China & Foreign Highway , Vol.5(2006), p.133-137.
Online since: August 2011
Authors: Jun Liu, Ping Xu, Hong Jian Xiu, Jun Hui Dong
Test Materials and Methods Test Materials.
Journal of Materials Processing Technology, Vol. 171(2006), P.188 [2] A Munitz , C Cotler, A Stern, et al.
Materials Science and Engineering, Vol.
Journal of Japan Institute of Light Metals, Vol. 49(1999), P.595 [4] T.Y.
Materials Science and Engineering, Vol.
Online since: November 2015
Authors: Mei Rong Sun, Jing Fei, Jie Zhao, Jia Shi Cai
Standard reference materials: cashmere was collected from Inner Mongolia, and fine wool with identical average diameter was brought from Shanghai First Top Textile Co.
The fiber blends were prepared by gravimetrically mixing two different materials (cashmere/wool) in the rations: 1:1.
The reference mixtures with different cashmere proportion (as describe in reference materials) were used to establish the standard curve.
Cashmere and wool blend were prepared by gravimetrically mixing two different materials (cashmere/wool) in the rations: 1:1.
Textile Research Journal (2012)83(8): 773-779
Online since: February 2007
Authors: János Dobránszky, F. Tusz, Attila Magasdi, János Ginsztler
The highcarbon steels, widely used as base materials of bandsaw blades, have very good fatigue properties, but the welding of these materials raises several problems.
Suresh: Fatigue of Materials.
Materials Science Forum Vols. 414-415 (2003), pp. 275-280 [3] X.
Journal of Materials Processing Technology, 88 (1999), pp. 284-294 [5] J.
Journal of Materials Processing Technology, 68 (1997), pp. 68-70 [6] J.
Online since: October 2014
Authors: Jun Wang, Qiang Zhang, Ao Xiang Liu, Jun Xian Kang, Qi Lin Shu
Chinese Journal of Mechanical Engineering, 2013, 49(21), 25-30.
Journal of vibration and control, 2008, 14(5): 645-668
Journal of Manufacturing Science and Engineering, 2007, 129(5): 943-950
Journal of Vibration and Shock, 2013, 32(3): 95-98.
Chinese Journal of Mechanical Engineering, 2002, 38(10): 114-117.
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