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Online since: August 2013
Authors: Li Li, Dong Fang Li, Fang Ru Xing, Jian Zhang Li
Effects of EVA on the Weathering Resistance Performance of Wood Plastic Composite Dongfang Lia, Fangru Xing b, Li Li*,c, and Jianzhang Li*,d College of Material Science and Technology in Beijing Forestry University, PR China Key Laboratory of Wood Science and Engineering in Beijing, PR China a lirnfr_2002@163.com, b xingfangru2006@163.com c lili_email@263.net, d lijianzhang126@126.com Keywords: Wood plastic composite; Ethylene vinyl acetate; Weathering resistance performance Abstract.
With good bond property, excellent weathering stability, and being easy mixed with any other materials, ethylene vinyl acetate (EVA) can be used to improve the weathering resistance performance of WPC [3].
Experimental Materials.
Table 2 Surface Free Energy and Surface Polarity of Raw Materials HDPE LDPE Rice Hull Pine Wood Poplar Wood Bamboo Surface Polarity 0.66 0.56 0.40 1.43 0.05 0.33 The Ageing Property of WPC.
Journal.
Online since: December 2012
Authors: Xiao Bin Zhang, Hong Ye, Zhong Lin Yan, Shi Xin Peng
For the cladding materials, Fe-Al intermetallics have unique advantages due to their oxidation resistance, high-temperature strength, high-temperature hardness and relatively low cost [3].
So if the Fe-Al intermetallics can be utilized as coating materials, it will markedly improves the surface properties of the aluminum alloy.
Xie: Material protection.
Yang: Journal of Shanghai Jiaotong University.
Rama: Materials Science and Engineering.Vol.386(204), P. 408
Online since: February 2008
Authors: Xiao Ping Liang, Hua Wu Liu, Zhi Li Zhong, Shao Bo Xin
The typical reinforcing material of polymer composites is inorganic fiber (85% of the total amount of reinforcing materials), the good strength properties of which are coupled with low price and a relatively good interfacial adhesion to the matrix.
The objective of present research is to investigate the wear property of epoxy resin composites filled with basalt fibers as a new type of friction materials of automotive brake in slurry containing sand abrasive particles using milling equipment.
Materials and Experimental Details Composite manufactured.
Acknowledgements This project is financially supported by Development Program of Science & Technology of Tianjin, China (No. 06TXTJJC14400) and Natural Science Foundation of Tianjin Municipality, China (No.06YFJMJC02600).
Sheng, P.F.Fan and H.Y.Li: Journal of Material Enginerring.Vol.44 (2004), p.50
Online since: June 2012
Authors: Xiao Ming Bai, Jun Wei Lv, Ji Hong Yu
Ship modeling procedure has three steps: gathering materials, orthographic views preprocessing, hull and weapons modeling.
Part 1: establish reference body 1) Establish a body, then a face on the top, let the plane and reference have same aspect ratio, make its length equals to the length of the ship, rename Top-Ref. 2) Open material editor, name the first material spheres Top-Reference-mat, click on the button “None” in transition color map channel, choose ship’s Top View, and set bitmap type in material/map browser. 3) Display map button, designate Top-Reference material to the plane to show image in the view. 4) Enable the button frozen objects for plane Top-Ref. 5) Select Top-Ref object in the left view, press Shift key and rotate the plane 90 degrees around Z axis, establish a new plane vertical to original body name Front-Ref. 6) Drag Top-Reference-mat to the next material window; rename Front-Reference-mat. 7) Assign ship side view in the transition color channel, Front-Reference-mat to object Front-Ref. 8) Move Front-Ref to the side of Top- Ref, and leave a space for model. 9) Similarly, establish
(a) generate lofting line (b) lofting (c) hull modeling (d) weapons modeling (e) combine hull and weapons (f) assign materials and textures Fig. 8 The whole ship modeling Conclusions Complex objects modeling on 3ds MAX platform needs to full consider the characteristics of the objects, flexible using of support software to preprocessing the original images, such as the line graph, orthographic views, etc.
Journal of Computer Aided Design & Computer Graphics (2005)
University of electronic science & technology press (2006).
Online since: January 2026
Authors: Yevhen Semenenko, Leonid Yakubenko, Natalia Koval, Svitlana Ryzhova, Larysa Tatarko, Olexander Khaminich
Poliakov Institute of Geotechnical Mechanics of the National Academy of Sciences of Ukraine were among the first to draw attention to the peculiarities of PP using hydromonitors.
Poliakov Institute of Geotechnical Mechanics of the National Academy of Sciences of Ukraine [22].
Conclusions The following conclusions can be drawn from the materials presented in the article.
[9] Beata Jaworska-Jóźwiak and Bartłomiej Szymczyk, Analysis of energy consumption and cost savings in the process of transporting a hydromixture with the addition of a deflocculant, Advances in Science and Technology Research Journal. 19(1) (2025) 36–47. https://doi.org/10.12913/22998624/193613 ISSN 2299-8624, License CC-BY 4.0 [10] Fatehi F., Semenenko Ye., Medvedieva O., Tatarko L. and HaminichOl., Argumentation for critical parameters and operating modes in the process of underwater mining of placers, International Conference Essays of Mining Science and Practice E3S Web Conf., 06 May 2020. 168 (2020) 00043
Poliakov Institute of Geotechnical Mechanics of the National Academy of Sciences of Ukraine, Dnipro, Ukraine, 2016.
Online since: August 2012
Authors: Jian Mei Zhang, Wen Ping Fei, Zheng Dao Zhang
Fig. 1 Cast-steel joint Fig. 2 Strain gauge on the surface of test model 2.1 Introduction of engineering The roof system is supported by spacial truss member bars, which are made of seamless steel tube, whose material is Q235B and Q345B.
Acknowledgments The work is supported by the National Natural Science Fund of China under no. 50974091, the National Key Basic Research Program of China (973 Program) under nos. 2010CB732005, 2010CB226802, and 2011CB201201.
Journal of Southeast University (Natural Science Edition), Vol. 39(1), (2009), P. 48-52 [5] Jin Hui, Li Jing and Zhang Qilin, etc: Application of hot spot stress method to fatigue life evaluation of girth butt welds of cast steel node.
Journal of Tongji University (Natural Science), Vol. 37(1), (2009), P. 19-25 [6] Lu Yunxiang, Cai Yuanqi and Li Mingfang, etc: Analysis of ultimate load and mechanisms of failure in large cast steel joints.
Journal of Chongqing University, Vol. 33(12), (2009), P. 72-77
Online since: December 2012
Authors: Zheng Yang
The plate material is homogeneous, isotropic and elastic.
Acknowledgements This work was financially supported by the National Natural Science Foundation of China (Grant No. 50971098, 51271138) and the Scientific Research Starting Foundation for Returned Overseas Chinese Scholars, Ministry of Education, China (Grant No. 09-18).
Radi: International Journal of Engineering Science Vol. 49 (2011), p. 893 [2] T.
Miyao: International Journal of Engineering Science Vol. 18 (1980), p. 1077 [3] Y.
Beom: International Journal of Solids and Structures Vol. 45 (2008), p. 713
Online since: October 2008
Authors: Y.J. Zhou, Qiu Ju Zhang
Wang: Packaging Technology and Science, Vol. 17 (2004), pp. 287-294
Medland: Packaging Technology and Science, Vol. 18 (2005), pp. 199-206
Qian: Packaging Technology and Science, Vol. 19 (2006), pp. 97-104
Cu: Journal of Southern Yangtze University (Nat.
Zhou: Journal of Jiangnan University (Nat.
Online since: November 2010
Authors: James C. Chen, Chia Wen Chen, Kou Huang Chen, Chien Hsin Lin
Chen1 *, Chia-Wen Chen2 , Kou-Huang Chen 3, Chien-Hsin Lin4 1 Department of Industrial Management, National Taiwan University of Science and Technology, #43, Sec. 4, Keelung Rd., Taipei 106, Taiwan, R.O.C. 2 Department of Industrial and Information Management, National Cheng Kung University , #1, University Road, Tainan City 701, Taiwan, R.O.C. 3 Department of Industrial Engineering and Management, China University of Science and Technology, #245, Sec. 3, Academia Rd., Nankang, Taipei 115, Taiwan, R.O.C. 4 Department of Industrial and Systems Engineering, Chung-Yuan Christian University, #200, Chung-Pei Rd., Chung-Li 320, Taiwan, R.O.C.
Acknowledgements The research was supported by National Science Council of Taiwan, R.O.C.
Chen: International Journal of Production Research, Vol. 46 (2008), pp2565-2588
Chen: International Journal of Production Research, Vol. 48 (2010), pp3207-3223
Uzsoy: European Journal of Operational Research, Vol. 109 (1998), pp170182
Online since: July 2020
Authors: Yunn Lin Hwang, Jung Kuang Cheng, Van Thuan Truong, Khanh Duong Tran
Dynamics Analysis and Numerical Simulation of Large-Scale Hydraulic Cylinder Actuators Van-Thuan Truong1,a*, Yunn-Lin Hwang2,b, Jung-Kuang Cheng2,c and Khanh-Duong Tran1,d 1Department of Fluid Power and Automation Engineering, Hanoi University of Science and Technology, Hanoi, Vietnam 2Department of Mechanical Design Engineering, National Formosa University, Yunlin, Taiwan 63201, ROC athuan.truongvan@hust.edu.vn, bhwang@nfu.edu.tw, cd0054104@gm.nfu.edu.tw, dduong.trankhanh@hust.edu.vn Keywords: Large-scale hydraulic actuator, Vibration, Viscous friction, Numerical simulation.
References [1] Chenxiao Ning, Xushe Zhang, Study on Vibration and Noise for the Hydraulic System of Hydraulic hoist, Proceeding of 2012 International Conference on Mechanical Engineering and Material Science (MÉMS 2012), p. 126-128
[2] Riccardo Bianchi, Guido F Ritelli, Andrea Vacca, Payload oscillation reduction in load-handling machines: A frequency-based approach, Journal of Systems and Control Engineering (2017), p. 1–14
[3] Hao Feng, Qungui Du, Yuxian Huang, Yongbin Chi, Modelling Study on Stiffness Characteristics of Hydraulic Cylinder under Multi-Factors, Journal of Mechanical Engineering Vol. 63, No. 7-8 (2017), p. 447-456
[6] Van-Thuan Truong, A Study in Vibration of a Large-Scale Hydraulic Cylinder Actuator via Numerical Simulation, Journal of Science and Technology Technical Universities 130 (2018), p. 39-43.