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Online since: December 2025
Authors: Muhammad Khan
Materials 2018, 11, 1–14, doi:10.3390/ma11101818
Machine Learning for Predicting Fatigue Properties of Additively Manufactured Materials.
Chinese Journal of Aeronautics 2024, 37
Materials 2023, 16, doi:10.3390/ma16083095
Textile Research Journal 2023, 93
Machine Learning for Predicting Fatigue Properties of Additively Manufactured Materials.
Chinese Journal of Aeronautics 2024, 37
Materials 2023, 16, doi:10.3390/ma16083095
Textile Research Journal 2023, 93
Online since: May 2012
Authors: Xuan Ya Liu
Increasing industrial concentration, promoting structural adjustment and upgrading, establishing the oil refining and ethylene refining enterprises mainly, including petrochemical downstream products, new materials, fine chemicals and chemical production as the main contents with a clear industrial chain of petrochemical parks, are the petrochemical industry development trend in China.
The petrochemical park fire and explosion evolution dimension are not only related with the accident causes, devices type and size, storage of flammable and explosive chemical materials, and regional security planning, but also related with the fire fighting techniques and equipments and other emergency technique factors.
[7] Xu Ming, Duo Yingquan, and Wu Tsung: "Chemical Industry Park security plan development history," China Safety Science Journal, vol. 18(2008),p.141
[9] Li Chuangui, Yanjun, and Liu, "based on the amount of the overall risk analysis of chemical park safety planning study," China Safety Science Journal, vol. 19, 2009
[10] WEI Li-jun, Duo Yingquan, Yu Lijian, Liu Ji, and Wu Zongzhi: "Chemical Industry Park planning methods and procedures of security," China Safety Science Journal, vol. 17, (2007), p. 45 [11] W.
The petrochemical park fire and explosion evolution dimension are not only related with the accident causes, devices type and size, storage of flammable and explosive chemical materials, and regional security planning, but also related with the fire fighting techniques and equipments and other emergency technique factors.
[7] Xu Ming, Duo Yingquan, and Wu Tsung: "Chemical Industry Park security plan development history," China Safety Science Journal, vol. 18(2008),p.141
[9] Li Chuangui, Yanjun, and Liu, "based on the amount of the overall risk analysis of chemical park safety planning study," China Safety Science Journal, vol. 19, 2009
[10] WEI Li-jun, Duo Yingquan, Yu Lijian, Liu Ji, and Wu Zongzhi: "Chemical Industry Park planning methods and procedures of security," China Safety Science Journal, vol. 17, (2007), p. 45 [11] W.
Online since: August 2019
Authors: Qin Tian, Yun Peng Zou, Zi Xin Wan, Cheng Hao Hang
Scholars have proposed a variety of overall strengthening schemes for this model [1, 2, 3], but all of them have the disadvantages of underutilization of materials and high construction cost.
Component name Section form Material Bailey chord Double channel steel 16Mn steel Bailey abdominal rod I8 16Mn steel Bailey support frame Angle steel 63×4 A3 steel Strengthening chord Double channel steel 16Mn steel Supporting steel tube φ609×16mm A3 steel Multiscale Finite Element Model Load Analysis.
Acknowledgments This research was funded by the National Science Foundation for Young Scientists of Jiang Xi (No. 20161BAB216113), the Natural Science Foundation of Jiang Xi (No. 20171BAB206050), and the China Postdoctoral Science Foundation (No. 2017M611993).
Journal of huazhong university of science and technology (natural science edition), 2018, 46 (5):110-114
Journal of Southeast University (Natural Science), 2009, 39 (1): 85-90.
Component name Section form Material Bailey chord Double channel steel 16Mn steel Bailey abdominal rod I8 16Mn steel Bailey support frame Angle steel 63×4 A3 steel Strengthening chord Double channel steel 16Mn steel Supporting steel tube φ609×16mm A3 steel Multiscale Finite Element Model Load Analysis.
Acknowledgments This research was funded by the National Science Foundation for Young Scientists of Jiang Xi (No. 20161BAB216113), the Natural Science Foundation of Jiang Xi (No. 20171BAB206050), and the China Postdoctoral Science Foundation (No. 2017M611993).
Journal of huazhong university of science and technology (natural science edition), 2018, 46 (5):110-114
Journal of Southeast University (Natural Science), 2009, 39 (1): 85-90.
Effect of Substrate and Film Thickness on Structural and Photocatalytic Properties of ZnO Thin Films
Online since: March 2025
Authors: Ivna Kavre Piltaver, Robert Peter, Ivana Jelovica Badovinac, Ales Omerzu, Karlo Velican
Our experiments included testing MB degradation in the absence of any photocatalyst materials and in the presence of ZnO films with varying thicknesses (6 nm, 11 nm, 20 nm, 29 nm, 54 nm, and 100 nm).
Impellizzeri, ZnO for application in photocatalysis: From thin films to nanostructures, Materials Science in Semiconductor Processing, 69 (2017) 44–51
Shang, Recent Advances on Porous Materials for Synergetic Adsorption and Photocatalysis, Energy & Environmental Materials, 5 (2022) 711–730
Su, Hierarchically structured porous materials for energy conversion and storage, Advanced Functional Materials, 22 (2012) 4634–4667
Zhou, Enhanced photocatalytic activity of ZnO thin films deriving from a porous structure, Materials Letters,150 (2015) 1-4.
Impellizzeri, ZnO for application in photocatalysis: From thin films to nanostructures, Materials Science in Semiconductor Processing, 69 (2017) 44–51
Shang, Recent Advances on Porous Materials for Synergetic Adsorption and Photocatalysis, Energy & Environmental Materials, 5 (2022) 711–730
Su, Hierarchically structured porous materials for energy conversion and storage, Advanced Functional Materials, 22 (2012) 4634–4667
Zhou, Enhanced photocatalytic activity of ZnO thin films deriving from a porous structure, Materials Letters,150 (2015) 1-4.
Online since: October 2011
Authors: Zhi Xiang Zhang, Wei Liu, Xiao Yan Li
Research and Application on the Crumb Rubber Modified Low-Noise Asphalt Pavement
Zhang Zhixiang1, a, Liu Wei1, b and Li Xiaoyan1, c
1 Jiangsu Transportation Research Institute, Nanjing, China
azzx@jstri.com, blw@jstri.com, clxy97@jstri.com
Keywords: Asphalt rubber, Low-noise asphalt pavement, Tire-pavement noise
Abstract: In this paper, the research of Low-Noise Asphalt Pavement(LNAP)mix design with the crumb rubber has been studied, including materials selection, gradation selection, asphalt content selection, performance tests, and so on.
The LNAP pavement can get the low noise by the special material selection and mix design.
Noise reduction and environmental protection asphalt technology research, Jiangsu transportation science and technology program, 2008
Indoor Measurement of Porous Material Permeability Coefficient [J].
Journal of highway and transportation research and development, 2002(4), P31-34
The LNAP pavement can get the low noise by the special material selection and mix design.
Noise reduction and environmental protection asphalt technology research, Jiangsu transportation science and technology program, 2008
Indoor Measurement of Porous Material Permeability Coefficient [J].
Journal of highway and transportation research and development, 2002(4), P31-34
Online since: January 2013
Authors: Wen Ling Tian, Li Min Zhang
TRC is considered as one of the most promising materials in this century because of its favorable bearing capacity, corrosion resistance, preventing magnetizing as well as thin thickness and light self-weight [2].
[3] Zhandarov Serge, Mader Edith, Characterization of fiber/matrix interface strength: applicability of different tests, Composites Science and Technology.65 (2005) 149-160
[4] Piggott M K, A new model for interface failure in fiber-reinforced polymers, Composites science and technology. 55 (2009) 269-276
[8] Xu Shi-lang, Reinhardt Hans-W, Kruger Markus, Bond Characteristics of Carbon, Alkali-resistant Glass and Aramid Textile in Mortar, Journal of Materials in Civil Engineering, ASCE, 16 (2004) 356-364
G., Micromechanics of Stress Transfer Between Fibre and Matrix in Polypropylene Fibre Cement Composites, Advancing with Composites, International Conference on Composite Materials, (1988)167–174
[3] Zhandarov Serge, Mader Edith, Characterization of fiber/matrix interface strength: applicability of different tests, Composites Science and Technology.65 (2005) 149-160
[4] Piggott M K, A new model for interface failure in fiber-reinforced polymers, Composites science and technology. 55 (2009) 269-276
[8] Xu Shi-lang, Reinhardt Hans-W, Kruger Markus, Bond Characteristics of Carbon, Alkali-resistant Glass and Aramid Textile in Mortar, Journal of Materials in Civil Engineering, ASCE, 16 (2004) 356-364
G., Micromechanics of Stress Transfer Between Fibre and Matrix in Polypropylene Fibre Cement Composites, Advancing with Composites, International Conference on Composite Materials, (1988)167–174
Online since: June 2013
Authors: Gu Yue Jiao, Ruo Jing Zhang
The erythrocyte membrane was defined as a hyperelastic material.
This material was described in terms of strain energy potential U, which defined the strain energy stored in the material per unit volume in the initial configuration as a function of the strain at that point in the material.
For homogeneous isotropic materials, the Young’s modulus E can be calculated using shear modulus G and Poisson’s ratio ν, E = 2G (1+ν) (4) Since we assume the membrane to be incompressible, the Poisson’s ratio ν should be ½.
Zhou E.H., Li A., et al., Experimental techniques for single cell and single molecule biomechanics, C Proceedings of the First TMS Symposium on Biological Materials Science, 26 (2006) 1278-1288
Tozeren, Theoretical and experimental studies on viscoelastic properties of erythrocyte membrane, Biophysical Journal 24(2) (1978) 463-487.
This material was described in terms of strain energy potential U, which defined the strain energy stored in the material per unit volume in the initial configuration as a function of the strain at that point in the material.
For homogeneous isotropic materials, the Young’s modulus E can be calculated using shear modulus G and Poisson’s ratio ν, E = 2G (1+ν) (4) Since we assume the membrane to be incompressible, the Poisson’s ratio ν should be ½.
Zhou E.H., Li A., et al., Experimental techniques for single cell and single molecule biomechanics, C Proceedings of the First TMS Symposium on Biological Materials Science, 26 (2006) 1278-1288
Tozeren, Theoretical and experimental studies on viscoelastic properties of erythrocyte membrane, Biophysical Journal 24(2) (1978) 463-487.
Online since: June 2012
Authors: Ze Kun Wang, Jing Da Huang, Chu Wang Su, Li Wei Hu, Qi Jian Li
Material and Method
Test Materials.
The Picea spp. testing materials were purchased in Nanning market and the Castanopsis hystrix were provided by DaQingShan testing-center of China forestry science and technology institute.
The Picea spp. testing materials was taken from plates of 28 years, density 0.382g/cm3, moisture content 11%.The Castanopsis hystrix testing material was taken from plates of 17 years, diameter 22cm, the core plank from the ground about 3.3~5.3 meters, density 0.491g/cm3, moisture content 12%.The sizes and quantities of the specimens were shown in Table1.
Vol. 17(2003), p.3-5 (In Chinese) [3] Bustos Cecilia, Hernández Roger E and Fortin Yves: Forest Products Journal.
(In Chinese) [5] Jinghui Jiang, Jianxiong Lv: Forestry Science.
The Picea spp. testing materials were purchased in Nanning market and the Castanopsis hystrix were provided by DaQingShan testing-center of China forestry science and technology institute.
The Picea spp. testing materials was taken from plates of 28 years, density 0.382g/cm3, moisture content 11%.The Castanopsis hystrix testing material was taken from plates of 17 years, diameter 22cm, the core plank from the ground about 3.3~5.3 meters, density 0.491g/cm3, moisture content 12%.The sizes and quantities of the specimens were shown in Table1.
Vol. 17(2003), p.3-5 (In Chinese) [3] Bustos Cecilia, Hernández Roger E and Fortin Yves: Forest Products Journal.
(In Chinese) [5] Jinghui Jiang, Jianxiong Lv: Forestry Science.
Online since: July 2013
Authors: Rong Xiang Zhang, Wei Zhang, Xiao Hui Zhao, Yan Wei Zhang, Guang Li, Xiao Wei Li
The Identification of Green Tea Based on Feature Extraction
Rongxiang Zhang, Wei Zhang, Xiaohui Zhao, Yanwei Zhang, Guang Li, and Xiaowei Li
Key Laboratory of Photo-Electricity Information Materials of Hebei Province
College of Physics Science and Technology, Hebei University
Baoding, China
zrx@hbu.edu.cn
Keywords: Feature Extraction; Identification; Green Tea; Infrared Spectroscopy
Abstract.
However, the former is vulnerable to subjective effects, and the second can detect single component, but it is difficult to analyze the multi-component material.
Acknowledgment This experimental group thanks the Hebei Province Natural Science Foundation (F2010000309); Science and Technology Research Guide Project of Higher School of Hebei Province (Z2011132); Postdoctoral Foundation of Hebei University.
Wang, Application of near infrared spectra in rapid inspection of cotton content, Journal of Jiangsu University (Natural Science Edition). 28(2007) 185–188
Ye, Tea Chemistry, University of Science and Technology of China Press, 2005
However, the former is vulnerable to subjective effects, and the second can detect single component, but it is difficult to analyze the multi-component material.
Acknowledgment This experimental group thanks the Hebei Province Natural Science Foundation (F2010000309); Science and Technology Research Guide Project of Higher School of Hebei Province (Z2011132); Postdoctoral Foundation of Hebei University.
Wang, Application of near infrared spectra in rapid inspection of cotton content, Journal of Jiangsu University (Natural Science Edition). 28(2007) 185–188
Ye, Tea Chemistry, University of Science and Technology of China Press, 2005
Online since: August 2013
Authors: Chao Kui Li, Li Dong Wang, Hao Chen
Two main method of land area and material product have been used for calculating of ecological carrying capacity.
Ecological carrying capacity is calculated by the method of material product.
J.Cao: Journal of Hubei University (Natural Science ).
[3] W.Zhang: Environmental Science and Management.
[4] F.F.Wang and F.Chen: Journal of Fujian Normal University(Natural Science Edition).
Ecological carrying capacity is calculated by the method of material product.
J.Cao: Journal of Hubei University (Natural Science ).
[3] W.Zhang: Environmental Science and Management.
[4] F.F.Wang and F.Chen: Journal of Fujian Normal University(Natural Science Edition).