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Online since: September 2013
Authors: Qi Jun Zhang
Materials and experimental apparatus
To provide three kinds of food raw materials, which consist of flour, water and mug bean that are mixed in certain proportion.
At the same time, these measurements are used to estimate the parameters’ rheological materials.
Material(1) Material(2) Material(3) a Three types of confectionery materials Material(1+2) Material(2+3) Material(1+3) b A hierarchical object compression from the top surface Material(1+2) Material(2+3) c A hierarchical object compression from the center of top surface Figure 1.
Journal of Chongqing university (Natural science edition), 2010, 29 (2):140-143
Journal of industrial Management engineering, 2009(3): 132-140
At the same time, these measurements are used to estimate the parameters’ rheological materials.
Material(1) Material(2) Material(3) a Three types of confectionery materials Material(1+2) Material(2+3) Material(1+3) b A hierarchical object compression from the top surface Material(1+2) Material(2+3) c A hierarchical object compression from the center of top surface Figure 1.
Journal of Chongqing university (Natural science edition), 2010, 29 (2):140-143
Journal of industrial Management engineering, 2009(3): 132-140
Online since: August 2013
Authors: Jin Feng Wang, Jiao Du, Xiu Dong Zhu
Experimental Procedures
Raw Materials.
The details of raw materials are as table 1.
Table 1 Raw materials used in the experiment Number Material Mean particle size Purity Molecular Weight 1 Zirconia 0.2μm 97mol% 2 Glutin A.R. 15000-70000 3 Urea A.R. 60.6 Procedures.
[3] R.Gilissen, J.P.Erauw, and A.Smoldres, et al: Materials and Design.
Bo: Journal of Ceramics (In Chinese).
The details of raw materials are as table 1.
Table 1 Raw materials used in the experiment Number Material Mean particle size Purity Molecular Weight 1 Zirconia 0.2μm 97mol% 2 Glutin A.R. 15000-70000 3 Urea A.R. 60.6 Procedures.
[3] R.Gilissen, J.P.Erauw, and A.Smoldres, et al: Materials and Design.
Bo: Journal of Ceramics (In Chinese).
Online since: June 2016
Authors: Bobby Oedy Pramoedyo Soepangkat, Hari Subiyanto, Hasriadi Hasriadi
Some of molten materials are solidified on the surface of the workpiece and form the recast layer.
R Schmid, Manufacturing Process for Engineering Materials, Pearson Education, South Asia, 2009
Tay, Relationship between EDM Parameters and Surface Crack Formation, Journal of Materials Processing Technology, vol 142, no. 3, pp 676-683, 2003
Kumar, Experimental Investigation on Material Transfer Mechanism in WEDM of Pure Titanium (Grade-2), Advances in Materials Science and Engineering, 2013
Reister, Investigation of the Effect Process Parameter on Formation and Characteristic of Recast Layer in Wire-EDM of Inconel 718, Journal of Materials Science and Engineering, vol 513, pp 203-215, 2008
R Schmid, Manufacturing Process for Engineering Materials, Pearson Education, South Asia, 2009
Tay, Relationship between EDM Parameters and Surface Crack Formation, Journal of Materials Processing Technology, vol 142, no. 3, pp 676-683, 2003
Kumar, Experimental Investigation on Material Transfer Mechanism in WEDM of Pure Titanium (Grade-2), Advances in Materials Science and Engineering, 2013
Reister, Investigation of the Effect Process Parameter on Formation and Characteristic of Recast Layer in Wire-EDM of Inconel 718, Journal of Materials Science and Engineering, vol 513, pp 203-215, 2008
Online since: August 2013
Authors: Yang Song, Chun Sheng Liu, Chun Ping Ren
Establish the Extended Liner Drucker-Prager model to simulate the materials of the coal and rock, setting the failure criterion of the coal and rock based on equivalent plastic strain and dissipated energy.
2.2 Model assembly and simulation process parameters
In the Assembly module, positioning the pick and coal with translate, so that the cutting thickness is 15 mm, which will rotate pick, so that the installation angle is 40°~45°.
Journal of China Coal Society, 2009, 34(9): 1276-1280.
Journal of China Coal Society,2004,29(2):246-248.
Journal of Heilongjiang Institute of Science&Technology, 2012,22(3):277-281.
Journal of China Coal Society,2004,29(1):116-118.
Journal of China Coal Society, 2009, 34(9): 1276-1280.
Journal of China Coal Society,2004,29(2):246-248.
Journal of Heilongjiang Institute of Science&Technology, 2012,22(3):277-281.
Journal of China Coal Society,2004,29(1):116-118.
Online since: July 2012
Authors: Han Wu Liu, Zhi Ping Zhang, Xiao Xia Li
It allows complex data inputting, users actually have all control properties of any design or analysis, such as size, materials, loads, constraints, location and grid density and so on.
Plastic project journal, 2003, 10(2): 42~46.
(In Chinese) [6] Long Xiaolin,Wang Guoshun.Uses the VB application procedure to transfer AutoCAD the method.Wuhan University of Science and Technology journal, 2003, 4(23):42~44.
Based on VISUAL BASIC ANSYS parametrization project analysis.Chongqing Science and technology Institute journal, 2006, (3): 98~100.
Journal of Harbin Institute of Technology, 2000, 32(4): 86~88.
Plastic project journal, 2003, 10(2): 42~46.
(In Chinese) [6] Long Xiaolin,Wang Guoshun.Uses the VB application procedure to transfer AutoCAD the method.Wuhan University of Science and Technology journal, 2003, 4(23):42~44.
Based on VISUAL BASIC ANSYS parametrization project analysis.Chongqing Science and technology Institute journal, 2006, (3): 98~100.
Journal of Harbin Institute of Technology, 2000, 32(4): 86~88.
Online since: October 2012
Authors: Li Na Yu, Qing Li Yang, Ming Xiu Wei, Lin Tang
Membrane separation [1] can separate raw material, selectively, which using a semi-permeable membrane as mediums and be given some pressures to concentration and separation.
Materials and methods Materials High temperature peanut meal was obtaind from Ganyulianxiang Arachis Oil factory.
Acknowledgments This work was supported by the National Scientific Support Program Project (grant number 2008BAD97B04); and the Qingdao Public Domain Support Science and Technology Project (11-2-3-25-nsh), China.
References [1] Hongjuan Yao, Xiaolin Wang and Ning Ding: submitted to Food Science (2003) (In Chinese) [2] Kexue Zhu, Huiming Zhou and Haifeng Qiang: submitted to Process biochemistry (2006) [3] Huichun Wu, Huaming Chen and Chyuanyuan Shiau: submitted to Food Research International (2003) [4] Yenhun He, Fereidoon Shahidi: submitted to Journal of Agricultural and Food Chemistry (1997) [5] Chunyan Su, Kexue Zhu and Huiming Zhou: submitted to Journal of Food Science and Biotechnology (2011) (In Chinese) [6] S.N.
Yardi, Arun Sharma: submitted to Food Chemistry (2010) [7] Huicui Zhang, Lin tang, Qingli Yang, Lina Yu, Jie Sun, Shaofang Liu: submitted to Journal of Peanut Science (2012) (In Chinese) [8] Hao Yan, Hui Fu and Bing Xie: submitted to Journal of Yinbin University (2007) (In Chinese)
Materials and methods Materials High temperature peanut meal was obtaind from Ganyulianxiang Arachis Oil factory.
Acknowledgments This work was supported by the National Scientific Support Program Project (grant number 2008BAD97B04); and the Qingdao Public Domain Support Science and Technology Project (11-2-3-25-nsh), China.
References [1] Hongjuan Yao, Xiaolin Wang and Ning Ding: submitted to Food Science (2003) (In Chinese) [2] Kexue Zhu, Huiming Zhou and Haifeng Qiang: submitted to Process biochemistry (2006) [3] Huichun Wu, Huaming Chen and Chyuanyuan Shiau: submitted to Food Research International (2003) [4] Yenhun He, Fereidoon Shahidi: submitted to Journal of Agricultural and Food Chemistry (1997) [5] Chunyan Su, Kexue Zhu and Huiming Zhou: submitted to Journal of Food Science and Biotechnology (2011) (In Chinese) [6] S.N.
Yardi, Arun Sharma: submitted to Food Chemistry (2010) [7] Huicui Zhang, Lin tang, Qingli Yang, Lina Yu, Jie Sun, Shaofang Liu: submitted to Journal of Peanut Science (2012) (In Chinese) [8] Hao Yan, Hui Fu and Bing Xie: submitted to Journal of Yinbin University (2007) (In Chinese)
Online since: August 2017
Authors: Hayrettin Ahlatci, Yunus Turen, Yavuz Sun, Ismail Hakkı Kara, Huseyin Zengin
Kim: Materials Science Forum, Vols. 539-543 (2007), 1707-1712
[3] H.Yu, Y.
Kainer: Materials Science and Engineering: A, Volume 527 (2010), 7092 [5] K.
Stanford, Barnett M.R., Materials Science and Engineering: A, Volume 496 (2008), 399 [8] J.L.
Zhai, Journal of materials science, 41(17), (2006), 5409-5416
Li, Materials Science Forum, Vol. 686, (2011), 332-336
Kainer: Materials Science and Engineering: A, Volume 527 (2010), 7092 [5] K.
Stanford, Barnett M.R., Materials Science and Engineering: A, Volume 496 (2008), 399 [8] J.L.
Zhai, Journal of materials science, 41(17), (2006), 5409-5416
Li, Materials Science Forum, Vol. 686, (2011), 332-336
Online since: August 2013
Authors: Yong Fan, Ke Bin Shi
Journal of Hydrodynamics.2003, 18(5):547-552
Environmental Science.1989, 11(2):24-27
Environmental Science. 1993, 15(4):66-68
SVM algorithm for determination of river longitudinal dispersion coefficients [J].Journal of Anhui Agricultural Sciences. 201038(23):12630-12631 [14] Guo Jianqing, Li Yan, Wang Hongsheng and Zhou HongFei.
Application of chaos particle swarm optimization algorithm to determination of water quality parameter of river stream [J].Journal of Earth Sciences and Environment. 2009, 31(2):169-172.
Environmental Science.1989, 11(2):24-27
Environmental Science. 1993, 15(4):66-68
SVM algorithm for determination of river longitudinal dispersion coefficients [J].Journal of Anhui Agricultural Sciences. 201038(23):12630-12631 [14] Guo Jianqing, Li Yan, Wang Hongsheng and Zhou HongFei.
Application of chaos particle swarm optimization algorithm to determination of water quality parameter of river stream [J].Journal of Earth Sciences and Environment. 2009, 31(2):169-172.
Online since: May 2020
Authors: Saifulnizan Jamian, Muniandy Nagentrau, Mathan Sambu, Abdul Latif Mohd Tobi
In IOP Conference Series: Materials Science and Engineering (Vol. 165, No. 1, p. 012020).
In IOP Conference Series: Materials Science and Engineering (Vol. 505, No. 1, p. 012150).
In IOP Conference Series: Materials Science and Engineering (Vol. 203, No. 1, p.012014).
Journal of Materials Processing Technology, 128(1), 1-6
International Journal of Refractory Metals and Hard Materials, 82, 43-57
In IOP Conference Series: Materials Science and Engineering (Vol. 505, No. 1, p. 012150).
In IOP Conference Series: Materials Science and Engineering (Vol. 203, No. 1, p.012014).
Journal of Materials Processing Technology, 128(1), 1-6
International Journal of Refractory Metals and Hard Materials, 82, 43-57
Online since: January 2013
Authors: Bo Yang, Wen Deng, Juan Ma, Geng Lin Zhang
Furthermore, it points out promising directions for the treatment of As -containing materials.
The common stabilization materials are cement, lime, iron oxide and polymer.
At present, the solidification materials used are mainly inorganic cement, fly lime ash and plastic materials, some treatment techniques are similar with treatment of arsenic-contaminated soils in mine.
Journal of Hazardous Materials.Vol.181 No.15 (2010), p. 1016 [16] J.Y.
Journal of Hazardous Materials.Vol.142 (2007), p. 1 [22] Y.
The common stabilization materials are cement, lime, iron oxide and polymer.
At present, the solidification materials used are mainly inorganic cement, fly lime ash and plastic materials, some treatment techniques are similar with treatment of arsenic-contaminated soils in mine.
Journal of Hazardous Materials.Vol.181 No.15 (2010), p. 1016 [16] J.Y.
Journal of Hazardous Materials.Vol.142 (2007), p. 1 [22] Y.