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Online since: December 2012
Authors: Jian Li Lou, Han Sun, Hua Wu Liu, Ai Yun Pang, Shu Wei Yang, Tian Yang Yang
The High Temperature Stability of Asphalt Composite Reinforced by Basalt Glass Powder and Basalt Fiber
Lou Jianli1,a, Liu Huawu1, 2,b, Pang Aiyun1, Sun Han2,Yang Shuwei2,
Yang Tianyang2
1Key Lab of Advanced Textile Composites, School of Textiles, Tianjin Polytechnic University, Tianjin 300387, China
2Tianjin Dingshang Technology Co., LTD, Tianjin 300384, China
aljl19870815@163.com, bhuawu_liu@yahoo.com.cn
Keywords: Modified Asphalt, Basalt Glass Powder, Basalt Fiber, High Temperature Stability.
Online since: February 2014
Authors: Li Hao Yuan, Ben Tian Wang, Ying Fei Zan, Zhi Hui Dong
Introduction
Ships motion performance not only effect on the marine operation safety of this ‘Hai Yang Shi You 201’ deep water pipe-laying vessel, but also have a significant impact on the pipe-laying operational efficiency.
Take ‘Hai Yang Shi You 201’ as instance, the main parameters is shown in table 1.
That is to say, when wave length is infinite long, this ‘Hai Yang Shi You 201’ will follow the water particles movement, and when the wave length is near 0, this ship will have no motion respond, this results also fit the general law.
Conclusions Based on 3-D potential flow theory, this paper calculates the additional mas, damp coefficient and ship motion response of ’Hai Yang Shi You 201’on the regular wave condition.
Take ‘Hai Yang Shi You 201’ as instance, the main parameters is shown in table 1.
That is to say, when wave length is infinite long, this ‘Hai Yang Shi You 201’ will follow the water particles movement, and when the wave length is near 0, this ship will have no motion respond, this results also fit the general law.
Conclusions Based on 3-D potential flow theory, this paper calculates the additional mas, damp coefficient and ship motion response of ’Hai Yang Shi You 201’on the regular wave condition.
Online since: July 2012
Authors: Tian Long Deng, Shi Qiang Wang, Hui Zong Zhang, Dong Liang Shen, Ya Fei Guo, Dao Lin Gao
Yang et al. [16] reported a process to produce hydrochloric acid, high purified magnesia and lithium carbonate as shown in Fig. 4.
Yang and P.
Yang, C.N.
Yang and K.M.
Yang, hydrometallurgy, vol. 110 (2011), p. 99-106
Yang and P.
Yang, C.N.
Yang and K.M.
Yang, hydrometallurgy, vol. 110 (2011), p. 99-106
Online since: December 2014
Authors: Jun Ying Wei, Gang Tian Si, Ji Dai Wang
References
[1] Wang J H, Li Y, et al: Mathematical Modeling Study of Scroll Air Motors and Energy Efficiency Analysis-Part I, IEEE/ASME Transactions on Mechatronics, Vol.16 (1992), p. 112-121
[2] Jihong Wang, Li Yang, Xing Luo, Stephen Mangan, James W Derby: Mathematical Modeling Study of Scroll Air Motors and Energy Efficiency Analysis—Part I.
IEEE/ASME Transactions on Mechatronics, Vol.16 (2011), p. 122-132 [3] Weihua Ding: Exergy Research on Power System of Air Powered Vehicle(in Chinese), (Zhejiang University, 2006) [4] Shaohong Xu, Xiuqin Yang and Yu Miao:Energy analysis should be used in the energy saving design of chemical engineering industry(in Chinese),(Journal of Pingyuan University, Vol.17(2000),p. 22-23) [5] Wang J H, Li Y, et al:Mathematical Modeling Study of Scroll Air Motors and Energy Efficiency Analysis-Part II.
[7] Li Yang, Jihong Wang, Stephen Mangan, James W Derby, Nan Lu:Mathematical Model and Energy Efficiency Analysis of a Scroll-type Air Motor.
IEEE/ASME Transactions on Mechatronics, Vol.16 (2011), p. 122-132 [3] Weihua Ding: Exergy Research on Power System of Air Powered Vehicle(in Chinese), (Zhejiang University, 2006) [4] Shaohong Xu, Xiuqin Yang and Yu Miao:Energy analysis should be used in the energy saving design of chemical engineering industry(in Chinese),(Journal of Pingyuan University, Vol.17(2000),p. 22-23) [5] Wang J H, Li Y, et al:Mathematical Modeling Study of Scroll Air Motors and Energy Efficiency Analysis-Part II.
[7] Li Yang, Jihong Wang, Stephen Mangan, James W Derby, Nan Lu:Mathematical Model and Energy Efficiency Analysis of a Scroll-type Air Motor.
Online since: August 2013
Authors: Guo Hong Tian, Jie Liu, Xiu Chun Wu
References
[1] Yongsheng Yang, Research on the Crashworthiness of Car Bumper System Crash in Low Speed, Harbin Engineering University, 2009 In Chinese
[2] Xiuyue Xia, Research Relation of Structural Resistive Performance and Personal Protection on Automobile Frontal Collision, Chongqing University, 2008 In Chinese
[3] Liang Xu, Ning Hu and Hui Yang, Machinery & Electronics, No. 5 (2007), p. 17-20 In Chinese
[4] Ruhai Ge and Qunshan Wang, Transactions of the Chinese Society for Agricultural Machinery, No. 2 (2006), p. 29-32 In Chinese
[5] Yanxia Gong, Xiaohong Shen and Xuejun Nie, Journal of Beijing Technology and Business University, No. 3 (2009), p. 32-36 In Chinese
[6] Jian Gong, Jinhuan Zhang, Shilin Huang and Fengwu Liu, Journal of Vibration and Shock, No. 3 (2002), p. 18-21 In Chinese
[7] Yang Liu, Wei Yang, Zhou Liu and Wenjie Zhao, Journal of Xihua University, No. 6 (2010), p. 43-45 In Chinese
[8] Ming Qu, Simulation and Research of the Structure of Crash Box in the Low Speed
Online since: December 2012
Authors: Fang Yang, Cai Feng Liu, Xue Dong Tian
References
[1] Ningbo Zhu, Shenggen Zeng, Zhen Lou et al, Journal of Computer Aided Design & Computer Graphics.17 (2005) 1246-1251, In Chinese
[2] Lianwen Jin, Jianzhao Qin, Application Research of Computers. 12 (2004) 163-165, In Chinese
[3] Xuefeng Tong, Gang Deng, Peiqi Chai, Computer Applications. 22 (2002) 1-3, In Chinese
[4] Xianmei Wang, Ziyu Lin, Performance Analysis of Single Classifier in Recognition of Off-line Handwritten Amount in Words Based on HMM, in: Proceeding of 2006 Chinese Control and Decision Conference, Control and Decision, LiaoNing, 2006, pp. 343-346, In Chinese
[5] Wenzhuang Liu, Junli Li, System Simulation Technology and Its Application. 11 (2009) 774-777, In Chinese
[6] Xianmei Wang, Yang Yang, Hong Wang, Computer Applications. 25 (2005) 2926-2927, In Chinese
[7] Alkhateeb.
Online since: December 2012
Authors: Kai Fang Xie, Hua Wu Liu, Han Sun, Wei Wei Hu, Tian Yang Yang, Shu Wei Yang
Surface Treatment of Chopped Basalt Fibers and Mechanical Properties of Wood-based Composite
Xie Kaifang1,a, Liu Huawu1, 2,b, Hu Weiwei1, Sun Han2,Yang Shuwei2,
Yang Tianyang2
1Key Lab of Advanced Textile Composites, School of Textiles, Tianjin Polytechnic University, Tianjin 300160, China
2Tianjin Dingshang Technology Co., LTD, Tianjin 300384, China
akaifang061@163.com, bhuawu_liu@yahoo.com.cn
Keywords: Strength, Wood-based Composites, Chopped Basalt Fibers, Surface Treatment.