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Online since: January 2004
Authors: K. Sato, Kouichi Hirata, Yoshinori Kobayashi, Kenji Ito, Run Sheng Yu
Kobayashi National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Ibaraki 305-8565, Japan Keywords: Coincident Doppler broadening, polymer, positronium, S-Io-Ps plot Abstract.
Thus the electrons, which contribute to the Figure 1 The correlation between S parameter and o-Ps fraction for the C- (open circles), O- (open triangles), and F- (open squares) groups. 0 10 20 30 40 0.50 0.52 0.54 0.56 0.58 0.60 0.62 0.64 PMMA Teflon PVA PEEK PP LDPE Kapton ETFE PTFE PFA PEI PET PC UHMW PS � � S parameter o-Ps Intensity, Io-Ps [%] Figure 2 Typical example of Doppler broadening profiles separated into the components of the e + and Ps in PFA. 0 10 20 30 10 -6 10 -5 10 -4 10 -3 10 -2 10 -1 (Kapton 8 %) source component � � Normalized counts PL [10 -3 m0C] PFA raw data e + component Ps component Journal Title and Volume Number (to be inserted by the publisher) 3 pick-off annihilation of o-Ps in the O-group are mostly those bound to carbon atoms, which may be the reason for the similar Ps profiles between the C- and O-groups.
Acknowledgement This work was performed as a part of the Material Nanotechnology Program supported by New Energy and Industrial Technology Development Organization (NEDO).
acknowledge the financial supports from NEDO and the Japan Society for the Promotion of Sciences (JSPS).
Online since: August 2013
Authors: Wen Hua Qian, Zhi Ming Chen, Dan Zou, Zheng Peng Zhao, Jin Xu
Non-Photorealistic Rendering Effect of Halftoning Zou Dan1,a, Qian Wen-hua 2,b, Xu Jin2,c, Zhao Zheng-peng2,e , Chen Zhi-ming3,d 1Yunnan Open University , Kunming,Yunnan , China 2 Department of Computer Science and Engineering, Yunnan University, Yunnan,China 3 Modern Education Technology Center, Yunnan University, Yunnan, China asivacip@yahoo.com.cn,bqwhua003@sina.com,cxujin@sina.com ,ezhaozp2000@gmail.com, dczmcrc@126.comd Keywords: Non-Photorealistic Rendering; halftoning; error diffusion Abstract.
Acknowledgements This material is supported by the Natural Science Foundation of China (60663010) and (61163019), the Research Foundation of Yunnan Province (2010CD024), the Research Foundation of the Educational Department of Yunnan Province (2012Z047), and the New Teacher Fund for Doctor Station, the Ministry of Education (20125301120008).
[5] 11 [6] He Z., Bouma C.A, AM/FM halftoning: A method for digital halftoning through simult- aneousmodulation of dot size and dot density, Journal of Electronic Imaging, 2004, 13 (2): 286 - 302.
Online since: August 2013
Authors: Kai Lin Feng, Fei Wang, Guan Zhang, Jin Li
Force Analysis of Petticoat Valve of Shotcrete Machine Based on Fluent Kai-lin Feng1,a Fei Wang2,b Guan Zhang3,c Jin Li4,d 1 579 Qianwangang Road Economic & Technical Development Zone,Qingdao Shandong Province Shandong University of Science and Technology,266590 P.R.China 2 579 Qianwangang Road Economic & Technical Development Zone,Qingdao Shandong Province Shandong University of Science and Technology,266590 P.R.China afkl62@sina.com,b963892216 @qq.com Keywords: Petticoat Valve; Force Analysis; Fluent; Abstract.
And petticoat valve is subjected to the high pressure at the foot of the entrance and at the head of the export and need to add wear-resisting material on the surface.
Chinese Journal of Mechanical Engineering(2003), in press, In Chinese
Online since: August 2014
Authors: Xi Hong Li, Hai Dong Liu, Xiao Yu Jia, Chong Xiao Shao, Li Li, Xia Liu
Study on Phase-point Controlled Atmosphere Storage Technical Characteristics Xiaoyu Jia 1, §, Xihong Li 1,Haidong Liu2 ,Chongxiao Shao2 ,Li Li1 and Xia Liu1 1Key Laboratory of Food Nutrition & Safety (Tianjin University of Science & Technology), Ministry of Education, Tianjin, 300457, PR China 2 Tianjin Jie Sheng Dong Hui (Gasin-DH) Preservation Technology Co., Ltd., Tianjin, 300300, PR China §Corresponding to whom correspondence should be addressed.
Material and Method 1.1 Red grape The were harvest in the orchard Yili, and then were loaded inside the storage bag which lined with PE perforated plastic baskets, transported to phase-point controlled atmosphere storage.
Acknowledgements This work was financially supported by the funding of the National high technology research and development program of China 2012AA101703,Tianjin SME special funds (working capital items) 13KQZZGX0632 ,Tianjin Science and Technology Project 13ZXCXNC03500 and Tianjin Dongli District SME development funds research cooperation projects - Origin mini refrigerator integrated innovation and industrialization demonstration.
Journal of Tianjin University, 2005,10:897-900
Online since: February 2011
Authors: M. Keyanpour-Rad, Alireza Hosseinmardi, F. Alikhani Hesari
Alikhani Hesari1, c 1Department of Nano Technology and Advance Materials, Materials and Energy Research Center (MERC), P.O.
Majumdar: Progress Polymer Science Vol. 29 (2004), p. 699 [13] M.
Bajgai, et al.: Materials Letters Vol. 64 (2010), p. 2087 [17] Q.
Uthirakumar, et al.: Materials Characterization Vol. 58 (2007), p. 680 [19] M.
Kim, et al.: Journal of Hazardous Materials Vol. 154 (2008), p. 118 [22] H.
Online since: October 2014
Authors: Gonasagren Govender, Heinrich Möller, Pfarelo Daswa
Introduction Al-Mg-Si aluminium alloys are an important group of age-hardenable materials.
Progress in Materials Science 49 (2004) 389-410
Stumpf, Comparison of the heat treatment response of SSM-HPDC 6082 and 6004 wrought alloys with A356 and F357 casting alloys, Materials Science Forum 690 (2011) 53-56
The effect of composition of Al-Mg-Si- (Cu) on materials properties of Rheo-HPDC components.
Materials Science Forum, 794-796 (2014), 137–142.
Online since: April 2014
Authors: Peter Groche, Jörg Avemann, Stefan Calmano, Sebastian Schmitt
Figure 12: Product variance of heat dissipater As Figure 12 shows, different materials and sheet thicknesses can be processed.
Oehler [20] proposed these characteristics for several materials as seen in Figure 14. 1: Al99,5 w 2: St 1404 3: St 1203 4: CuZn 33 w Figure 14: Springback ratio K for several materials as a function of the bending radius [20] To integrate the displayed characteristics processable by the machine control (PLC), they are approximated by polynomials of 5th order.
M α αs KMat KMat=frss0,M α=αsKMat rss0 h(α) h Figure 15: Block diagram of model to anticipate the bending radius for different materials In case a material is to be processed, for which vector is unknown, these material characteristics can be taught to the machine leading to an extension of the process knowledge.
Gerwin, Manufacturing Flexibility: A Strategic Perspective, Management Science 39(4):395-410, 1993 [7] HA.
ElMaraghy: Flexible and Reconfigurable Manufacturing Systems Paradigms, International Journal of Flexible Manufacturing Systems 17(4):261–276, 2006 [8] Son, Y.K.; Park, C.S.: Economic measure of productivity, quality and flexibility in advanced manufacturing systems, Journal of Manufaturing Systems 6(3), 193-206, 1987 [9] Zäh, M.
Online since: July 2012
Authors: Shi Jun Cheng, Ya Dong Jiang, Jian Hua Xu, Hua Jing Zheng
The absorption peak of the bulk material appears at 880 nm.
The larger particles aggregate may be in diagram the unresolved material.
Chin.J.Polymer Materials Science & Engineering, 1996, 12, 19 [2]Huang, S; Li,Y.
Chin.J.Journal of National University of Defense Technology, 1996, 16, 32 [3]Hou, S.
Journal of Jining Medical College, 1997, 20, 11 [4] Zhang, X; Lee, J.
Online since: September 2019
Authors: Janak Mistry, Artem Osipov, Victor A. Klinkov, Margarita G. Dronova, Aleksander V. Semencha
The disadvantage of the last method is the loss of mass of material, high labor intensity and process duration [3].
- It is a completely safe material at room temperature and can be handled by plotters without any health hazard
- The immersion glass material can be reused.
International Journal of Applied Glass Science, 9(1), 85-89
Journal of non-crystalline solids, 162(3), 294-300
Online since: December 2012
Authors: Yi Xi Cai, Sheng Li Wei, Xiao Hua Li, Jun Wang, Pan Wang
Table 1 Soot variation Speed /r·min-1 Load /% Soot Rb/BSU Before DPF1 Before DPF2 3600 100 2.2 1.9 50 1.0 0.8 2800 100 1.6 1.4 50 0.7 0.6 Fig.6 shows material photos of DPF1 and DPF2 before and after the experiment.
Acknowledgements This study is founded by Postdoctoral Science Foundation of China (No.20110491351) and Postdoctoral Science Foundation of Jiangsu province (No.1002032C).
Plasma Science and Technology,(6),(2004),p.2589-2592
Journal of Jiangsu University(natural science edition), Vol.29(5), (2008),p.398-401
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