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Online since: January 2013
Authors: Aleksandar Subic, Monir Takla, Mladenko Kajtaz
Management Science. 47 (2001) 1–21
Ashby, The Optimal Selection of Material and Section-shape, Journal of Engineering Design. 7(2) (1996) 129-150
Firat, Computer aided analysis and design of sheet metal forming processes: Part I – The finite element modelling concepts, Materials and Design. 28 (2007) 1298–1303
Khalina, Mehdi Jonoobi, Concept selection of car bumper beam with developed hybrid bio-composite material, Materials and Design 32 (2011) 4857–4865
Ismailb, A note on the conceptual design of polymeric composite automotive bumper system, Journal of Materials Processing Technology. 159 (2005) 145–151
Ashby, The Optimal Selection of Material and Section-shape, Journal of Engineering Design. 7(2) (1996) 129-150
Firat, Computer aided analysis and design of sheet metal forming processes: Part I – The finite element modelling concepts, Materials and Design. 28 (2007) 1298–1303
Khalina, Mehdi Jonoobi, Concept selection of car bumper beam with developed hybrid bio-composite material, Materials and Design 32 (2011) 4857–4865
Ismailb, A note on the conceptual design of polymeric composite automotive bumper system, Journal of Materials Processing Technology. 159 (2005) 145–151
Online since: December 2019
Authors: Tsutao Katayama, Kazuto Tanaka, Kosuke Ishida, Keisuke Takemoto
Materials and Experimental Procedures.
Materials and moulding method.
Aoki, “A study on compressive behavior and failure mechanism of impact damaged CFRP laminates”, Japan Society for Composite Materials, Vol.38, No.6 (2012), pp.254-261
Katayama, “Evaluation of mechanical properties of carbon fiber reinforced polyamide 12 laminates with polyamide 12 elastomer layers”, Journal of the society of materials science, Vol.67, No. 11 (2018), pp. 1006-1012
Hojo, “Microscopic Analysis of Effect of Voids on the Strength of CFRP Laminates in Relation to the Loading Direction”, Journal of the Japan Society for Composite Materials, Vol.43, No. 5 (2017), pp. 181-192.
Materials and moulding method.
Aoki, “A study on compressive behavior and failure mechanism of impact damaged CFRP laminates”, Japan Society for Composite Materials, Vol.38, No.6 (2012), pp.254-261
Katayama, “Evaluation of mechanical properties of carbon fiber reinforced polyamide 12 laminates with polyamide 12 elastomer layers”, Journal of the society of materials science, Vol.67, No. 11 (2018), pp. 1006-1012
Hojo, “Microscopic Analysis of Effect of Voids on the Strength of CFRP Laminates in Relation to the Loading Direction”, Journal of the Japan Society for Composite Materials, Vol.43, No. 5 (2017), pp. 181-192.
Online since: October 2015
Authors: Luo Ming Zhang, Xiao Dong Wang, Chun Xia He
Design of a Microwave Vacuum drying medicine extract model of process equipment
Chunxia He1,a, Luoming Zhang2,a ,Xiaodong Wang3,b
(1Huanghe Science and Technology College, Zhengzhou, China, 450063, hehechunxia@sina.com
2.
Huanghe Science and Technology College, Zhengzhou, China, 450063, 382005449@qq.com 3.
Microwave vacuum drying and microwave drying and vacuum drying technology, increasing material water molecules placed in alternating electric field, the friction between water molecules also intensified, friction heat after the water surface evaporation of materials, material and forming a temperature gradient and humidity gradient, thus accelerating the moisture migration outward from the material, achieve the purpose of drying.
Microwave vacuum drying chamber cylinder body structure and size parameters design with the material coefficients, equipment and materials, processing, auxiliary resonant cavity mode and pressure vessel standard [4]
Journal of agricultural research, 2004 20(3), 141-144
Huanghe Science and Technology College, Zhengzhou, China, 450063, 382005449@qq.com 3.
Microwave vacuum drying and microwave drying and vacuum drying technology, increasing material water molecules placed in alternating electric field, the friction between water molecules also intensified, friction heat after the water surface evaporation of materials, material and forming a temperature gradient and humidity gradient, thus accelerating the moisture migration outward from the material, achieve the purpose of drying.
Microwave vacuum drying chamber cylinder body structure and size parameters design with the material coefficients, equipment and materials, processing, auxiliary resonant cavity mode and pressure vessel standard [4]
Journal of agricultural research, 2004 20(3), 141-144
Online since: October 2015
Authors: Petr Prusa, Jan Chocholac, Anastasia Kuptcova, Srecko Krile, Miroslav Nadvornik
The Six-Sigma Methodology
The Six-Sigma quality process is the direct interconnection between providing chaotic material flow and improvement in quality of dynamic operations.
Dudek-Burlikowska, Application of FMEA method in enterprise focused on quality, In: Journal of Achievements in Materials and Manufacturing Engineering, Vol. 1 (2011) 89-102
Haq, Risk analysis method: FMEA/FMECA in the organizations, In: International Journal of Basic & Applied Sciences IJBAS-IJENS, 2011, pp. 74-81
Palanikumar, Modified prioritization methodology for risk priority number in failure mode and effects analysis, In: International Journal of Applied Science and Technology, Vol. 4 (2003)
Weske, Business Process Management: Concepts, Languages, Architectures, Springer Science & Business Media, 2012
Dudek-Burlikowska, Application of FMEA method in enterprise focused on quality, In: Journal of Achievements in Materials and Manufacturing Engineering, Vol. 1 (2011) 89-102
Haq, Risk analysis method: FMEA/FMECA in the organizations, In: International Journal of Basic & Applied Sciences IJBAS-IJENS, 2011, pp. 74-81
Palanikumar, Modified prioritization methodology for risk priority number in failure mode and effects analysis, In: International Journal of Applied Science and Technology, Vol. 4 (2003)
Weske, Business Process Management: Concepts, Languages, Architectures, Springer Science & Business Media, 2012
Online since: June 2011
Authors: Xiao Lin Shu, Zi Yu Chen, Da Song Shu
Periodic boundary conditions were used to simulate a spatially extended bulk material.
Wu, Journal of Applied Physics, 87 (2000) 6146
Chiang, Journal of Applied Physics, 91 (2002)8638
Harrell, Journal of Applied Physics, 99 (2006) 054304
Bader, Journal of Applied Physics, 101 (2007) 053901
Wu, Journal of Applied Physics, 87 (2000) 6146
Chiang, Journal of Applied Physics, 91 (2002)8638
Harrell, Journal of Applied Physics, 99 (2006) 054304
Bader, Journal of Applied Physics, 101 (2007) 053901
Online since: December 2010
Authors: Chao Gai Xue, Hai Wang Cao
Acknowledgements
This work is supported by National Natural Science Foundation of China Grant #70971119, #70901066, #70701031 and Aviation Science Foundation of China Grant #2008ZG55020.
International Journal of Production Research.
Proceedings of the Institution of Mechanical Engineers Part B: Journal of Engineering Manufacture.
International Journal of Production Research, Vol. 29(1991), p.2313-2330
International Journal of Production Economics, Vol. 90(2004), p. 27-45.
International Journal of Production Research.
Proceedings of the Institution of Mechanical Engineers Part B: Journal of Engineering Manufacture.
International Journal of Production Research, Vol. 29(1991), p.2313-2330
International Journal of Production Economics, Vol. 90(2004), p. 27-45.
Online since: August 2018
Authors: Masayuki Arai, Kazuki Yoshida
The material constants of the plate are denoted by the shear modulus μ, Kolosov’s constant κ and Poisson’s ratio ν.
Shieh: International Journal of Fatigue Vol. 26 (2004), p.1333-1339 [2] H.
Meggiolaro: International Journal of Fatigue Vol. 32 (2010), p. 670-677 [3] C.
Mura: Journal of the Mechanics and Physics of Solids Vol. 12 (1964), p. 177-189
Wheeler, Journal of Applied Mechanics Vol. 48 (1981), p. 313-319
Shieh: International Journal of Fatigue Vol. 26 (2004), p.1333-1339 [2] H.
Meggiolaro: International Journal of Fatigue Vol. 32 (2010), p. 670-677 [3] C.
Mura: Journal of the Mechanics and Physics of Solids Vol. 12 (1964), p. 177-189
Wheeler, Journal of Applied Mechanics Vol. 48 (1981), p. 313-319
Online since: July 2017
Authors: Li Jin Fang, Long Fei Sun
Acknowledgements
This work is supported by the National Natural Science Foundation of China (51575092) and Collaborative Innovation Center of Major Machine Manufacturing in Liaoning.
[3] Longfei Sun, Lijin Fang, Design of a novel A/B bi-rotary head based on differential drive, Journal of Northeastern University: Natural Science, 2016, 37(9): 1269-1273
An analytical approach for crucial geometric errors identification of multi-axis machine tool based on global sensitivity analysis, International Journal of Advanced Manufacturing Technology, 2014, 75(1-4): 107-121
Precision design for machine tool based on error prediction, Chinese Journal of Mechanical Engineering, 2013, 26(1): 151-157
A general approach for error modeling of machine tools, International Journal of Machine Tools &Manufacture, 2014, 79(4): 17-23.
[3] Longfei Sun, Lijin Fang, Design of a novel A/B bi-rotary head based on differential drive, Journal of Northeastern University: Natural Science, 2016, 37(9): 1269-1273
An analytical approach for crucial geometric errors identification of multi-axis machine tool based on global sensitivity analysis, International Journal of Advanced Manufacturing Technology, 2014, 75(1-4): 107-121
Precision design for machine tool based on error prediction, Chinese Journal of Mechanical Engineering, 2013, 26(1): 151-157
A general approach for error modeling of machine tools, International Journal of Machine Tools &Manufacture, 2014, 79(4): 17-23.
Online since: November 2011
Authors: Lu Dong, Shu Hua Zhai, Qian Gao, Bin Yue
Acknowledgements
This work was financially supported by the "eleventh five-year plan" national science and technology support plan (2008BAB32B01) and 863 national high technology research and development program (2008AA062104).
References [1] Guofan Zhang: Engineering structure reliability theory and application ( Dalian University of Technology Press, Dalian 1999) (in chinese) [2] Yonghua Su, Zulie Fang and Qian Gao: Chinese Journal of Rock Mechanics and Engineering.Vol. 19(1) (2000), p. 55 (in chinese) [3] Xiaohui Pan, Jianguo Wang and Xinrong Liu: Chinses Journal of Rock Mechanics and Engineering.
Vol. 12(3) (1993), p. 885 [8] Youliang Ding, Aiqun Li and Xiaozheng Yao: Chinese Journal of Applied Mechanics.
Vol. 13 (1951), p. 1 [10] Kunming Wu, Jianguo Wang and Xiaohui Tan. et al: Journal of Hefei University of technology.
Vol. 32(6) (2009), p. 885(in chinese) [11] Qian Gao, Shunchuan Wu and Linhai Wan: Civil engineering reliability theory and its application (china Building Material Industry Publishing House, Beijing 2007) (in chinese)
References [1] Guofan Zhang: Engineering structure reliability theory and application ( Dalian University of Technology Press, Dalian 1999) (in chinese) [2] Yonghua Su, Zulie Fang and Qian Gao: Chinese Journal of Rock Mechanics and Engineering.Vol. 19(1) (2000), p. 55 (in chinese) [3] Xiaohui Pan, Jianguo Wang and Xinrong Liu: Chinses Journal of Rock Mechanics and Engineering.
Vol. 12(3) (1993), p. 885 [8] Youliang Ding, Aiqun Li and Xiaozheng Yao: Chinese Journal of Applied Mechanics.
Vol. 13 (1951), p. 1 [10] Kunming Wu, Jianguo Wang and Xiaohui Tan. et al: Journal of Hefei University of technology.
Vol. 32(6) (2009), p. 885(in chinese) [11] Qian Gao, Shunchuan Wu and Linhai Wan: Civil engineering reliability theory and its application (china Building Material Industry Publishing House, Beijing 2007) (in chinese)