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Online since: April 2020
Authors: Zi Liang An, Zi Ye Wang, Wei Xin Wang, Yi Feng Tang
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Where D is the damage factor, ρi is the equivalent resistivity after material damage, ρ0 is the initial resistivity of the material, K is the material coefficient, and for most metal materials, K equals to 2, V0 is the initial voltage and Vi is the voltage after the material damage.
Journal of Nuclear Materials Vol. 258-263(1998), p. 281-288
D., Non-Destructive Testing and Acoustic Microscopy of Diffusion Bonds, Materials Science Vol. 18(8) (1983), p.2345-2353
Comparison of high temperature defect assessment methods, Materials as high Temperatures Vol. 15(3-4) (1998), p. 337-346
International Journal of Pressure Vessels and Piping, Vol. 80(2003), p.417-425
Journal of Nuclear Materials Vol. 258-263(1998), p. 281-288
D., Non-Destructive Testing and Acoustic Microscopy of Diffusion Bonds, Materials Science Vol. 18(8) (1983), p.2345-2353
Comparison of high temperature defect assessment methods, Materials as high Temperatures Vol. 15(3-4) (1998), p. 337-346
International Journal of Pressure Vessels and Piping, Vol. 80(2003), p.417-425
Online since: December 2011
Authors: Iwona Żmuda–Trzebiatowska, Anna Fietkiewicz, G. Sliwinski
The surface layers resulting from prolonged exposure to the indoor environment and the bulk material of metal artifacts from the collection of National Museum in Gdansk are studied by means of spectroscopic techniques.
Results of the in-depth LIBS stratigraphic analysis; elemental intensities of surface deposits related to the strongest Fe line of the bulk material vs. laser pulse number: Ba and Ca (a), and C (b) Fig. 7.
However, in case of precious historical objects a rigorous requirement of non-destructive testing can disqualify this technique because of the micro-damage due to surface ablation and removal of µgrams of the investigated material.
Śliwiński, Applied Surface Science Vol. 255 (2009), p. 5542-5545 [3] D.
Terryn, Journal of Raman Spectroscopy Vol. 37 (2006), p. 1211-1220
Results of the in-depth LIBS stratigraphic analysis; elemental intensities of surface deposits related to the strongest Fe line of the bulk material vs. laser pulse number: Ba and Ca (a), and C (b) Fig. 7.
However, in case of precious historical objects a rigorous requirement of non-destructive testing can disqualify this technique because of the micro-damage due to surface ablation and removal of µgrams of the investigated material.
Śliwiński, Applied Surface Science Vol. 255 (2009), p. 5542-5545 [3] D.
Terryn, Journal of Raman Spectroscopy Vol. 37 (2006), p. 1211-1220
Online since: January 2012
Authors: Xian Long Xu, Yan Wei Du
It is a kind of method to provide prediction and decision-making basis for enterprise management work by using data and material.
In addition, the successful learning number is not identical from many individual repeated explorations materials.
Acknowledgment The paper is supported by Xi’an Technological University Principal Science Research Fund Project (XAGDXJJ0907).
References [1] Conway R, Schultz A, “The manufacturing progress function,” Journal of Industrial Engineering, vol. 10,1959, pp.39~53
[3] Muth J D, “Search theory and the manufacturing progress functions,” management Science, vol.32(8),1986,pp:948~962
In addition, the successful learning number is not identical from many individual repeated explorations materials.
Acknowledgment The paper is supported by Xi’an Technological University Principal Science Research Fund Project (XAGDXJJ0907).
References [1] Conway R, Schultz A, “The manufacturing progress function,” Journal of Industrial Engineering, vol. 10,1959, pp.39~53
[3] Muth J D, “Search theory and the manufacturing progress functions,” management Science, vol.32(8),1986,pp:948~962
Online since: January 2013
Authors: Gang Chen, Peng Fei Xia, Quan Zhao, Hong Liu Zhang
The influence of extraction on the thermal performance of coal in Inner Mongolia
Hongliu Zhang1,a, Gang Chen1,b , Pengfei Xia1,c and Quan Zhao1,d
1School of Chemical Engineering, Anhui University of Science and Technology, Huainan 232001, China
ahlzhang@aust.edu.cn, bchengang139@126.com, cxfp1989@163.com, dtianchangzhaoquan@163.com
Keywords: Extraction;Inner Mongolia coal;GC/MS;XRD;Ash melting point;Heat;Environment.
With they containing materials to a strong electron-donating ability of the N element [8] ,pyridine and NMP molecule can effectively weaken the hydrogen bonds between the coal molecules [9], and thus have a higher extraction rate of coal. 1.3 GC/MS analysis The extraction is analyzed by gas chromatography/mass spectrometry (GC/MS) to obtain the composition and content of the extraction.
In addition, there are eight materials structure undetermined.
Journal of Wuhan University of Science and Technology.Vol. 32 (2009), p. 631.In Chinese [7] Xiaoyan Zhao,Jingpei Cao.Applied chemical industry.Vol. 19 (2006), p. 470
Science China Press.Vol. 52 (2008), p. 183.In Chinese [9] Linbing Sun, Lifang Zhang. coal conversion.Vol. 2 5(2002), p. 178 [10] Hanxu Li, Yoshihiko Ninomiva, et. al.China Univ. of Mining& Tech( English Edition).Vol. 19 (2006), p. 162 [11] Li Cheng,Lina Wang,Qian Liu.Public Communication of Science & Technology.Vol. 8 (2011), p. 131.In Chinese
With they containing materials to a strong electron-donating ability of the N element [8] ,pyridine and NMP molecule can effectively weaken the hydrogen bonds between the coal molecules [9], and thus have a higher extraction rate of coal. 1.3 GC/MS analysis The extraction is analyzed by gas chromatography/mass spectrometry (GC/MS) to obtain the composition and content of the extraction.
In addition, there are eight materials structure undetermined.
Journal of Wuhan University of Science and Technology.Vol. 32 (2009), p. 631.In Chinese [7] Xiaoyan Zhao,Jingpei Cao.Applied chemical industry.Vol. 19 (2006), p. 470
Science China Press.Vol. 52 (2008), p. 183.In Chinese [9] Linbing Sun, Lifang Zhang. coal conversion.Vol. 2 5(2002), p. 178 [10] Hanxu Li, Yoshihiko Ninomiva, et. al.China Univ. of Mining& Tech( English Edition).Vol. 19 (2006), p. 162 [11] Li Cheng,Lina Wang,Qian Liu.Public Communication of Science & Technology.Vol. 8 (2011), p. 131.In Chinese
Identification and Primary Application of Two High-Yield Glucoamylase Moulds from Luzhou-Flavor Daqu
Online since: September 2013
Authors: Dan Huang, Guang Bin Ye, Xiao Dong Yang, Ming Hong Hong
Introduction
Daqu as the saccharifying and aroma-producing agent, was used as intermediate raw materials and starter in traditional Chinese liquor brewing process, which can influent greatly on the quality and style of Chinese liquor [1].
Material and methods Samples collection The samples of Luzhou-flavor Daqu were collected from LuzhouLaoJiao Co., Ltd.
Daqu strenghthening experiments, sensory evaluation and biochemical analysis of Daqu Preparation of seeding broth: each strain was inoculated in wort liquid medium under 30 ℃ for 72h to get the inoculated seeding broth; The Daqu-making process [8] include: Raw material → moisture → crushing + seeding broths + water → mixing → buckling → transfer to Daqu preparation room → cultivation and fermentation→ turning over of Daqu → finished Daqu products.
Acknowledgements This work was financially supported by the open fund project of Key Laboratory of Liquor-making biotechnology and applications of Sichuan Province(NJ2009-02, NJ2010-05), the important cultivation project of Department of education of Sichuan province (09ZZ015) and the project of introduced talent of Sichuan university of Science and engineering (2010XJKRL001).
Journal of Sichuan University of Science and Engineering (Natural Science edition), Vol. 24 (2011), p.515
Material and methods Samples collection The samples of Luzhou-flavor Daqu were collected from LuzhouLaoJiao Co., Ltd.
Daqu strenghthening experiments, sensory evaluation and biochemical analysis of Daqu Preparation of seeding broth: each strain was inoculated in wort liquid medium under 30 ℃ for 72h to get the inoculated seeding broth; The Daqu-making process [8] include: Raw material → moisture → crushing + seeding broths + water → mixing → buckling → transfer to Daqu preparation room → cultivation and fermentation→ turning over of Daqu → finished Daqu products.
Acknowledgements This work was financially supported by the open fund project of Key Laboratory of Liquor-making biotechnology and applications of Sichuan Province(NJ2009-02, NJ2010-05), the important cultivation project of Department of education of Sichuan province (09ZZ015) and the project of introduced talent of Sichuan university of Science and engineering (2010XJKRL001).
Journal of Sichuan University of Science and Engineering (Natural Science edition), Vol. 24 (2011), p.515
Online since: November 2010
Authors: Jin Hui Zhao, Mu Hua Liu, Jie Shen, Dong Cheng Tu, Fang Yu
Materials and Methods
Experimental Materials.
Lin: Chinese Journal of Animal Nutrition, 18(Suppl): pp.347-352. (2006) [2] Savage, A.W.J., Warriss, P.D., and Jolle P.D: MeatSeienee, 27:289-303. (1990) [3] Binachi M and Fletchert D L: Poultry Science, 81:1766-1769. (2002) [4] K.
[7] Lu J, Tan J and Shatadal P: Meat Science, 56:57-60. (2000) [8] Z.N.
LI: Science and Technology of Food Industry, Vol. 29 (2008 ) No.06, pp.304-306
Liu: Food Science, Vol. 25 (2004) No.10, pp.95-100.
Lin: Chinese Journal of Animal Nutrition, 18(Suppl): pp.347-352. (2006) [2] Savage, A.W.J., Warriss, P.D., and Jolle P.D: MeatSeienee, 27:289-303. (1990) [3] Binachi M and Fletchert D L: Poultry Science, 81:1766-1769. (2002) [4] K.
[7] Lu J, Tan J and Shatadal P: Meat Science, 56:57-60. (2000) [8] Z.N.
LI: Science and Technology of Food Industry, Vol. 29 (2008 ) No.06, pp.304-306
Liu: Food Science, Vol. 25 (2004) No.10, pp.95-100.
Online since: August 2013
Authors: Xiao Ping Yang, Wei Ping Hu, Xiao Di Li
Design Thinking on Urban Agricultural Construction of Intelligent Ecological Residential Building
Xiaodi Li 1, a , Weiping Hu* 2, b , Xiaoping Yang 3, c
1 Faculity of Art and Communication, Kunming University of Science and Technology
2 Faculity of Art and Communication, Kunming University of Science and Technology
3 Art of design, Faculity of Art and Communication, Kunming University of Science and Technology
a 57612002@qq.com , byncaid@sina.com(corresponding author) , cyang_xiaoping@yahoo.com.cn
Keywords: agriculture; intelligent; residential.
Research and advocacy is also done to arouse the attention of social and civil construction developers. 3 Conception Urban agricultural residential building is based on the concept of modern intelligent ecological building and the development of science and technology, by which small-scaled family agriculture thinking is put forward to clarify its scope.
With fully use of renewable eco-friendly materials and renewable natural energy, the indoor temperature could be adjusted reasonably according to the external environment and climate change to makes life comfortable, suitable for the growth of plants, forming a cycle dependency chain of plants and animals. 4 Design of Family Agriculture Room Family agriculture room is similar to courtyard of houses on the ground and top floor, but it has the ceiling, which is the limitation of residential building. 4.1 Layout Residential agricultural rooms should be protruding from the building, so that there will be three sides to get sunshine.
In this way, sewer lines are also centralized for saving materials.
[J] Journal of Architecture, 6.2011
Research and advocacy is also done to arouse the attention of social and civil construction developers. 3 Conception Urban agricultural residential building is based on the concept of modern intelligent ecological building and the development of science and technology, by which small-scaled family agriculture thinking is put forward to clarify its scope.
With fully use of renewable eco-friendly materials and renewable natural energy, the indoor temperature could be adjusted reasonably according to the external environment and climate change to makes life comfortable, suitable for the growth of plants, forming a cycle dependency chain of plants and animals. 4 Design of Family Agriculture Room Family agriculture room is similar to courtyard of houses on the ground and top floor, but it has the ceiling, which is the limitation of residential building. 4.1 Layout Residential agricultural rooms should be protruding from the building, so that there will be three sides to get sunshine.
In this way, sewer lines are also centralized for saving materials.
[J] Journal of Architecture, 6.2011
Online since: July 2014
Authors: Zhuo Yuan Wang, Yi Gang Wang, Lin Gong Li
In order to guide students to take an active part in the activities of science and technology, the school will be equipped with college students' scientific research projects, the information science and engineering college will be equipped with college students' scientific research innovation practice projects.
Teachers will tutor the students to select a topic in June each year, students will collate materials in the summer vacation, complete the declaration fill in September, participate in declaring college students' scientific research innovation practice project in October, and conclude it in the following year.
Construct course website to provide abundant learning materials for students, construct QQ group to answer questions anytime and anywhere, Open laboratory provides students with welding, debugging field.
Professional development and reformin science education: the role of teachers' practical knowledge.
Journal of Research in Science Education, vol. 38(2001), p. 137–158
Teachers will tutor the students to select a topic in June each year, students will collate materials in the summer vacation, complete the declaration fill in September, participate in declaring college students' scientific research innovation practice project in October, and conclude it in the following year.
Construct course website to provide abundant learning materials for students, construct QQ group to answer questions anytime and anywhere, Open laboratory provides students with welding, debugging field.
Professional development and reformin science education: the role of teachers' practical knowledge.
Journal of Research in Science Education, vol. 38(2001), p. 137–158
Online since: September 2013
Authors: Bo Chi, Zeng Min Shi, Ji Bin Liu, Kai Liu, Li Jian
Optimization of the product of strength and plasticity of hot-stamped WHT1300HF high strength steel
Kai Liu1,a, Bo Chi1,b, Zengmin Shi2,c, Liu Jibin3,d, Li Jian1,e*
1School of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, PR China
2College of Mechanical and Material Engineering, China Three Gorges University, Yichang 443002, PR China
3R&D Center, Wuhan Iron and Steel (group) corporation, Wuhan 430080, PR China
a jky0296@sina.com, b chibo@hust.edu.cn, c shizengmin2003@163.com,
d liujibin@wisco.com.cn, e lijian@hust.edu.cn
* Corresponding author, Tel.
The volume fraction of retained austenite was estimated by X-ray diffraction (XRD, X350A), and the mechanical properties were tested by a material testing machine (SHIMADZU AG-IC100) at room temperature.
The maximum value of the PSP is 17.6 GPa% achieved at 300 °C for 60 s Acknowledgement This research was financially supported by the Ministry of Science and Technology of China under the auspice of the National “973” program (2010CB630802), and Wuhan Iron and Steel (group) corporation (WISCO-HUST Joint Laboratory, WG/01T1/QR070303).
The microstructure characterizations were performed with the assistance of the Analytical and Testing Center of Huazhong University of Science and Technology.
[3] Hong Xu, Yongbo Shen, Zhengwei Gu, Jia Meng, Sibin Yu, Xin Li, Journal of Jilin University (Engineering and Technology Edition). 41 (2011) 111-114
The volume fraction of retained austenite was estimated by X-ray diffraction (XRD, X350A), and the mechanical properties were tested by a material testing machine (SHIMADZU AG-IC100) at room temperature.
The maximum value of the PSP is 17.6 GPa% achieved at 300 °C for 60 s Acknowledgement This research was financially supported by the Ministry of Science and Technology of China under the auspice of the National “973” program (2010CB630802), and Wuhan Iron and Steel (group) corporation (WISCO-HUST Joint Laboratory, WG/01T1/QR070303).
The microstructure characterizations were performed with the assistance of the Analytical and Testing Center of Huazhong University of Science and Technology.
[3] Hong Xu, Yongbo Shen, Zhengwei Gu, Jia Meng, Sibin Yu, Xin Li, Journal of Jilin University (Engineering and Technology Edition). 41 (2011) 111-114
Online since: February 2013
Authors: Jun Liang Sun, Xin Hong Liang, Song Ling Chen, Ying Bin Fan
Effect of Folin Reagent from Different Sources
on Protease Determination
Junliang Sun1,a, Xinhong Liang 1,b, Songling Chen1, and Yingbin Fan 1
1 School of Food Science, Henan Institute of Science and Technology, Xinxiang, 453003, China
asjl338@163.com
bliangxinhong2005@163.com
Keywords: Folin reagent; Protease; Significant difference
Abstract.
Materials and Methods Chemicals.
Standard curves were set up according to Standard protein calibration curve in Materials and method (Table 4).
Acknowledgements This work was financially supported by the Chinese Nature Science Foundation (311641/C200101), Research Fund for the Doctoral Program of Henan Institute of Science and Technology (08001), and Technology and Foundation of He’nan Educational Committee (2010A550004).
Journal of Chongqing Institute of Technology.
Materials and Methods Chemicals.
Standard curves were set up according to Standard protein calibration curve in Materials and method (Table 4).
Acknowledgements This work was financially supported by the Chinese Nature Science Foundation (311641/C200101), Research Fund for the Doctoral Program of Henan Institute of Science and Technology (08001), and Technology and Foundation of He’nan Educational Committee (2010A550004).
Journal of Chongqing Institute of Technology.