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Online since: October 2014
Authors: Chun Ping Li, Zi Qi Zhao, Xiang Rong Zou
This built management thought or the information age management concept on the basis of information technology, which belongs to the category of management science.
Purchase, sales, inventory management is the most basic application of ERP, to realize the full range of logistics management and control based on the raw material procurement, product sales and inventory management of three major business segments,.
In the MRP/MPS production tasks alone as the source, combining the process route to produce process planning, the process planning, process scheduling, process, process, procedure of material dispatching transfer, process report and other process management functions form the shop floor control flow integrity.
Technology Innovation Herald, 2009 (1), 30 [2] Zhong Zhibin.The risk of implementation and application of ERP system.China science and technology information, 2009 (2), 28-29 [3] Zhou Qingbin.The analysis and application of ERP system in Chinese Enterprises.Economic division, 2009 (1), 56 [4] Jiang Yunqing.Application and research of ERP system in small and medium sized enterprises.coastal enterprises and science and technology, 2009 (4), 65 [5] Yi Feng.Application of ERP in small and medium sized enterprise.The cooperation of economy and technology, 2009 (18), 34-37 [6] Yin Xinhua; Shi Hong.ERP application in small and medium enterprises analysis.
Economic Research Journal, 2009 (14), 78-80
Purchase, sales, inventory management is the most basic application of ERP, to realize the full range of logistics management and control based on the raw material procurement, product sales and inventory management of three major business segments,.
In the MRP/MPS production tasks alone as the source, combining the process route to produce process planning, the process planning, process scheduling, process, process, procedure of material dispatching transfer, process report and other process management functions form the shop floor control flow integrity.
Technology Innovation Herald, 2009 (1), 30 [2] Zhong Zhibin.The risk of implementation and application of ERP system.China science and technology information, 2009 (2), 28-29 [3] Zhou Qingbin.The analysis and application of ERP system in Chinese Enterprises.Economic division, 2009 (1), 56 [4] Jiang Yunqing.Application and research of ERP system in small and medium sized enterprises.coastal enterprises and science and technology, 2009 (4), 65 [5] Yi Feng.Application of ERP in small and medium sized enterprise.The cooperation of economy and technology, 2009 (18), 34-37 [6] Yin Xinhua; Shi Hong.ERP application in small and medium enterprises analysis.
Economic Research Journal, 2009 (14), 78-80
Online since: August 2016
Authors: M.P. Deshpande, Kamakshi Patel, Vivek P. Gujarati, S.H. Chaki
Vollmer Springer Series in Materials Science25 (1995) 226-231
[9] Y.
Lin Advances in Colloid and Interface Science 145 (2009) 83–96 [15] M.Valodkar, A.Bhadoria, J.
Li KONA Powder and Particle Journal 28 (2010) 38-49 [17] M.Raffi, F.Hussain, T.M.Bhatt, J.I.Akhter, A.Hameed and M.M.Hasan J.
Godet World Academy of Science, Engineering and Technology 43 (2008) 357-364 [21] P.
Bajpai The J. of Cotton Science 12 (2008) 280–286 [22] A.C.
Lin Advances in Colloid and Interface Science 145 (2009) 83–96 [15] M.Valodkar, A.Bhadoria, J.
Li KONA Powder and Particle Journal 28 (2010) 38-49 [17] M.Raffi, F.Hussain, T.M.Bhatt, J.I.Akhter, A.Hameed and M.M.Hasan J.
Godet World Academy of Science, Engineering and Technology 43 (2008) 357-364 [21] P.
Bajpai The J. of Cotton Science 12 (2008) 280–286 [22] A.C.
Online since: August 2013
Authors: Shu Ting Li, Kun Zhou, Yin Zhang
Besides, information technology has changed the traditional using form of library, and the students can achieve material by the computers in the new libraries, the area of which are much larger than ever, and the equipments are much advanced.
Compared with the past, the new teaching resource center should accommodate and manage the growing new media material, such as internet, VCR, CD and audio tape, so the traditional book shelves and stack rooms will be eliminated in the future.
“Revitalizing nation by science and education” is the basic strategy of China, and the technology and education develop rapidly now, so this architectural design of XiFei NO.1 high school provides a good idea for other primary and secondary school design in China.
Journal of Hennan University(Natural Science) , Vol. 40(2010),p.548-550
[5] Cui Xinaglu:100 cases of the characteristics of the school(Education and Science Press, Beijing2002).
Compared with the past, the new teaching resource center should accommodate and manage the growing new media material, such as internet, VCR, CD and audio tape, so the traditional book shelves and stack rooms will be eliminated in the future.
“Revitalizing nation by science and education” is the basic strategy of China, and the technology and education develop rapidly now, so this architectural design of XiFei NO.1 high school provides a good idea for other primary and secondary school design in China.
Journal of Hennan University(Natural Science) , Vol. 40(2010),p.548-550
[5] Cui Xinaglu:100 cases of the characteristics of the school(Education and Science Press, Beijing2002).
Online since: November 2010
Authors: Guo Qing Wu, Jing Ling Zhou, Xiao Yang Chen, Jian Chun Chen
The RCF life of bearing balls is a main method to evaluate the performance of bearing materials and their production technology.
Acknowledgements The authors would like to acknowledge the support provided by the National Natural Science Foundation of China (60974049) and the National R&D Program (JPPT-115-197) and the Science and Technology Project Fund of Jiangsu Province (BE2008074 and BK2009613) and International Cooperation Project Fund of Jiangsu Province (BZ2008031) and the Science and Technology Development Fund of Nantong (W2009003) and Innovation Project of Jiangsu Province.
Choi: International Journal of Mechanical Science, (2008) No. 50, pp. 1572-1577
Acknowledgements The authors would like to acknowledge the support provided by the National Natural Science Foundation of China (60974049) and the National R&D Program (JPPT-115-197) and the Science and Technology Project Fund of Jiangsu Province (BE2008074 and BK2009613) and International Cooperation Project Fund of Jiangsu Province (BZ2008031) and the Science and Technology Development Fund of Nantong (W2009003) and Innovation Project of Jiangsu Province.
Choi: International Journal of Mechanical Science, (2008) No. 50, pp. 1572-1577
Online since: January 2012
Authors: Jin Ping Shi, Hao Dong Zhao, Pei Quan Guo
Acknowledgement
This work was supported by Shandong Natural Science Foundation of China (grant No.
Lu, et al: Journal of Chongqing University (Natural Science), Vol. 30 (2007), p.19 [5] J.
Qiao: Environmental Science and Management, Vol. 32 (2007), p.65 [6] Q.
Wang, et al: China Environmental Science, Vol. 27 (2007), p.129 [10] J.
Lu: Advanced Materials Research, Vol. 150-151 (2011), p.410.
Lu, et al: Journal of Chongqing University (Natural Science), Vol. 30 (2007), p.19 [5] J.
Qiao: Environmental Science and Management, Vol. 32 (2007), p.65 [6] Q.
Wang, et al: China Environmental Science, Vol. 27 (2007), p.129 [10] J.
Lu: Advanced Materials Research, Vol. 150-151 (2011), p.410.
Online since: January 2013
Authors: Zhi Li Long, Lu Fan Zhang, Ji Wen Fang, Jian Dong Cai, Long Sheng Nian
Control Analysis of Point-to-point Positioning Based on Macro-micro Stage
Jiwen Fang 1,3, a, Zhili Long2, b, Lufan Zhang 1, c,
Jiandong Cai4,d, Longsheng Nian1, e
1State Key Lab for Manufacturing Systems Engineering,
Xi’an Jiaotong University, Xi’an, 710049, China
2 Shenzhen Key Lab for Advanced Motion Control and Modern Automation Equipments,
Harbin Institute of Technology Shenzhen Graduate School, Shenzhen, 518055,China
3Dongguan Huazhong University of Science and Technology Manufacturing Engineering Institute, Dongguan, Guangdong, 523808, China
4Department of Mechanical and Automation Engineering,
The Chinese University of Hong Kong, Hong Kong, China
afjt_617@163.com, blongworking@163.com, czzzhanglufan@163.com,
djdcai@mae.cuhk.edu.hk, enianlong1989@126.com
Keywords: Macro-micro stage; Precision positioning; Point-to-point position; Switching control.
Acknowledgements This work was supported by the following funds: (1) the Introduction of Innovative R&D Team Program of Guangdong Province (2009010051); (2) the Guangdong Key Project (2011A080801004); (3) the Key Joint Project of National Natural Science Foundation of China (U1134004); (4) the Innovation Fund of Harbin Industrial University (HIT.NSRIF. 2013099); (5) the Basic Research Plan of Shenzhen (JC201105160586A).
Taiwan: National Kaohsiung First University of Science and Technology. ( 2005) [7] Heui Jae Pahk, Dong Sung Lee, and Jong Ho Park: International Journal of Machine Tools & Manufacture.
[8] W Dong, J Tang, and Y Eldeeb: Smart Materials and Structures.
Hefei: University of Science and Technology of China. ( 2011) [14] V.
Acknowledgements This work was supported by the following funds: (1) the Introduction of Innovative R&D Team Program of Guangdong Province (2009010051); (2) the Guangdong Key Project (2011A080801004); (3) the Key Joint Project of National Natural Science Foundation of China (U1134004); (4) the Innovation Fund of Harbin Industrial University (HIT.NSRIF. 2013099); (5) the Basic Research Plan of Shenzhen (JC201105160586A).
Taiwan: National Kaohsiung First University of Science and Technology. ( 2005) [7] Heui Jae Pahk, Dong Sung Lee, and Jong Ho Park: International Journal of Machine Tools & Manufacture.
[8] W Dong, J Tang, and Y Eldeeb: Smart Materials and Structures.
Hefei: University of Science and Technology of China. ( 2011) [14] V.
Online since: March 2011
Authors: Wei Wei Ye, Wu Lu
Background
China’s plastic machinery industry came into being in the later years of 1950s, and as an important part of China’s machinery industry, it provides plastic raw material industry and plastic products industry with key equipment.
In the teaching and experimentation of each course, parties of the college-industry linkage team will integrate their advantages in personnel, financial and material resources so as to promote students’ ability on the four stages of the CDIO.
Conclusion Since the second half of the 20th century, as engineering education experienced a transformation from practice-orientation to science-orientation, engineering graduates cultivated around the world are equipped with better theoretic knowledge but are not good at practical skills and other aspects, thus giving rise to controversy whether engineering education should aim at cultivating scientists or technical personnel.
Acknowledgement This paper is supported by Natural Science funds of Zhejiang Province (Y7100075), Humanities and Social Sciences Fund of Education Ministry in China (10YJA880166)and the construct program of the key laboratory in Hangzhou.
Further Discussion on Engineering Education [J], Journal of Higher Education Research, 1994 (1):1-6.
In the teaching and experimentation of each course, parties of the college-industry linkage team will integrate their advantages in personnel, financial and material resources so as to promote students’ ability on the four stages of the CDIO.
Conclusion Since the second half of the 20th century, as engineering education experienced a transformation from practice-orientation to science-orientation, engineering graduates cultivated around the world are equipped with better theoretic knowledge but are not good at practical skills and other aspects, thus giving rise to controversy whether engineering education should aim at cultivating scientists or technical personnel.
Acknowledgement This paper is supported by Natural Science funds of Zhejiang Province (Y7100075), Humanities and Social Sciences Fund of Education Ministry in China (10YJA880166)and the construct program of the key laboratory in Hangzhou.
Further Discussion on Engineering Education [J], Journal of Higher Education Research, 1994 (1):1-6.
Online since: January 2014
Authors: Qun Hui Wang, Yu Hui Ma, Wei Su, Xiang Guo Huang, Jin Yuan
Discharge and Disposal of Coal Gasification Methanol Production Residue and Distribution Characteristics of PAHs in It
YuHui MA 1,a, Wei SU1,b, QunHui WANG1,c , ChunYan SHAO2,d ,
XiangGuo HUANG 2,e and Jin YUAN3,f
1 Department of Environmental Engineering, University of Science and Technology Beijing,
Beijing, China
2 Shenyang Academy of Environmental Sciences, Shenyang, China
3 Shanxi Ecological Environment Research Center, Taiyuan, China
amayuhui0408@aliyun.com, btxzz0079@163.com (corresponding author), cwangqh59@sina.com, dshaocy123@163.com, ehxg1963@163.com, f yuan66@vip.sina.com
Keywords: Coal gasification; Methanol; Residue; PAHs
Abstract.
The rest of gasifier slag would be used for cement-producing and paving, which meant that the two kinds of residue could be promising building materials.
Li, Enhanced anaerobic biodegradability of real coal gasification wastewater with methanol addition, Journal of Environmental Sciences, 22 (2010) 1868-1874
Zhang, Application of PCA-LDA to Classify the Carcinogenicity of Polycyclic Aromatic Hydrocarbons, Joural of Analytical Science, 23 (2007) 717-719.
The rest of gasifier slag would be used for cement-producing and paving, which meant that the two kinds of residue could be promising building materials.
Li, Enhanced anaerobic biodegradability of real coal gasification wastewater with methanol addition, Journal of Environmental Sciences, 22 (2010) 1868-1874
Zhang, Application of PCA-LDA to Classify the Carcinogenicity of Polycyclic Aromatic Hydrocarbons, Joural of Analytical Science, 23 (2007) 717-719.
Online since: May 2014
Authors: Shi Jie Chai, Zhong Xiang Tong, Chao Zhe Wang
Among them, the infrared radiatical inhibiting technology by the exhaust system used in air-injection, inject flow ratio of 10%,with the axial direction has angle to the center; Body infrared radiation suppression stealth technology as low-emissivity materials is in the infrared emissivity of 0.3.
Acknowledgements Project supported by the National Natural Science Foundation of China.
Nanjing University of Science and Technology, In Chinese,2010
[4] WANG Bo, SUN Xiao-quan, WANG Zi-rong, Study on Stealth Effect Evaluation of Infrared Coating[J], Chinese Journal of Quantum Electronics , 2004,21(4):538~541
[7] Sun Bei, IR Seeker Image Processing[D], Nanjing University of Science and Technology, In Chinese,2005.
Acknowledgements Project supported by the National Natural Science Foundation of China.
Nanjing University of Science and Technology, In Chinese,2010
[4] WANG Bo, SUN Xiao-quan, WANG Zi-rong, Study on Stealth Effect Evaluation of Infrared Coating[J], Chinese Journal of Quantum Electronics , 2004,21(4):538~541
[7] Sun Bei, IR Seeker Image Processing[D], Nanjing University of Science and Technology, In Chinese,2005.
Online since: June 2014
Authors: Long Han Xie, Ming Jing Cai, Jie Hong Li
White, Energy Harvesting Vibration Sources for Microsystems Applications, Measurement Science and Technology, 2006(17), pp. 175-195, (2006)
Kornbluh, Electroelastomers: Applications of Dielectric Elastomer Transducers for Actuation, Generation, and Smart Structures, Smart Structures and Materials 2002: Industrial and Commercial Applications of Smart Structures Technologies, McGowan, R. ed., Vol. 4698, pp. 254-270, (2002)
Yoo, Generating Electricity While Walking with Loads, Science, 309, pp. 1725-1728, (2005)
Donelan, Biomechanical Energy Harvesting: Generating Electricity During Walking with Minimal User Effort, Science, 319, pp. 807-810, (2008). 13.
Xie, the Automatic Winding Device of a Mechanical Watch Movement and Its Application in Energy Harvesting, Trans. of ASME, Journal of Mechanical Design, Vol.131, Issue 8, (2008).
Kornbluh, Electroelastomers: Applications of Dielectric Elastomer Transducers for Actuation, Generation, and Smart Structures, Smart Structures and Materials 2002: Industrial and Commercial Applications of Smart Structures Technologies, McGowan, R. ed., Vol. 4698, pp. 254-270, (2002)
Yoo, Generating Electricity While Walking with Loads, Science, 309, pp. 1725-1728, (2005)
Donelan, Biomechanical Energy Harvesting: Generating Electricity During Walking with Minimal User Effort, Science, 319, pp. 807-810, (2008). 13.
Xie, the Automatic Winding Device of a Mechanical Watch Movement and Its Application in Energy Harvesting, Trans. of ASME, Journal of Mechanical Design, Vol.131, Issue 8, (2008).