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Online since: September 2013
Authors: Guo Qin Liu, Nai Jun Yan, Zhao Xi Fang
Materials and methods Materials.
International Dairy Journal, 21(10), 823-830. (2011) [5] Petruccelli, S., & Añón, M.
Journal of agricultural and food chemistry, 44(10), 3005-3009. (1996) [6] Lakemond, C.
Journal of agricultural and food chemistry, 48(6), 1991-1995. (2000) [7] A.
Journal of South China University of Technology (Natural Science Edition), 5, 115-120. (2012) [9] A.M.
Online since: February 2020
Authors: Yung Chang Cheng, Pongsathorn Pornteparak
Introduction In recent years, product development trends are characterized by high degree of variability, individuality, the use of newly developed materials (composites, plastics, structured surfaces, functional materials, etc.), and combination of different material types.
In the development of materials and structures throughout centuries composite materials or composite sandwich panel, they have improved in weight reduction and functionality.
Holzapfel, Prediction of impact damage on sandwich composite panels, Computational Material Science 32(3-4), 252–260 (2005)
Akkuş, Investigation of impact force on aluminum honeycomb structures by finite element analysis, Journal of Sandwich Structures & Materials doi: 10.1177/1099636217733235 (2017)
Kulkarni, Analysis of Honeycomb Structure, International Journal for Research in Applied Science & Engineering Technology 6(V), 950-958 (2018)
Online since: October 2006
Authors: Jean Christophe Pierret, Pierre Cezard, Ahmed Rassili
The behaviour of the semi-solid material is complex to simulate and many approaches are proposed in the literature to represent it.
This change of behaviour allows to manipulate the semi-solid material as a solid and to fill dies easily as a liquid.
From a material point of view, it is linked to a break of the solid skeleton due to the disagglomeration mechanism.
References [1] Joly P.A., Mehrabian R.: The rheology of a partially solid alloy, Journal of Materials Sciences Vol. 11 (1976), pp. 1393-1418 [2] Favier V., Rouff C., Bigot R., Berveiller M., Robelet M.: Micro-macro modelling of the isothermal steady-state behaviour of semi-solid, International Journal of Forming Processes Vol. 7 (2004), pp. 177-194 [3] Spencer D.B., Mehrabian R., Flemmingd M.C.: Rheological behaviour of Sn-15%Pb in the crystallisation range, Metal.
Vol. 3 (1972), pp. 1925-1932 [4] Cezard P., Favier V., Bigot R., Balan T., Berveiller M: Simulation of semi-solid thixoforging using a micro-macro constitutive equation, Computational Materials Science Vol. 32 (2005), pp. 323-328 [5] McLelland A., Henderson N., Atkinson H., Kirkwood D.: Anomalous rheological behaviour of semi-solid alloy slurries at low shear rates, Materials Science and Engineering Vol.
Online since: April 2014
Authors: Dae Hyun Jeong, Young Il Kwon
A prominent trend in recent research is convergence between different science fields, between science and culture, and between diverse science and technology fields, for which the countries around the world have made numerous attempts and large-scale investments.
Converging technology is mainly discussed in the industries led by high-level science and technology, indicating that convergence is initiated in science fields and is completed in technology or industry fields through overlapping of science fields [6].
When betweenness centrality of IPC network structure was analyzed, it was found that the field with super conducting material had high betweenness centrality.
Especially, clustering occurred in solar energy and secondary cell fields, and links were made with the existing technology field using super conductive material.
In particular, convergence began to appear when solar cell and secondary cell field became linked to technologies using super conductive material.
Online since: May 2011
Authors: Jin Shan Chen, Li Jun Wang, He Xiao, Jin Wang
Results showed that PDADMAC with higher charge density was easier to interact with anionic trash, resulting in better removal of suspended solid materials and chemical oxygen demand(COD).
Acknowledgements This work was financially supported by Scientific Research Foundation of Tianjin University of Science & Technology(grant numbers: 20090416) and the National Natural Science Foundation of China(grant number: 31070529).
E.: APPITA Annual Conference and Exhibition, 59th, (2005), p. 115-122 [2] Tian Shengyan: Paper chemicals, 6(2005), p. 39-41, in Chinese [3] Raj.I.S.Gill: Nordic Pulp and Paper Research Journal, Vol. 1 (1993), p. 208-210 [4] Gibbs: TAPPI.
In: Papermaking Science and Technology.
Alfano: Journal of Pulp and Paper Science, Vol. 28, (2002), p. 298-304 [10] Holmbom, B: 9th Int.
Online since: February 2012
Authors: Wen Huang, Hong Lu
Journal of the Material Processing Technology, 2002,123:209-211
Journal of the Material Processing Technology, 2003, 141:109-116
Journal of the Material Processing Technology, 2005, 159:91-98
International Journal of Mechanical Science 2004;46(7):1097-113
Materials and Design.
Online since: October 2025
Authors: Lia Nicoleta Boțilă, Raluca Faur, Lavinia Ileana Sîrbu, Gabriela Victoria Mnerie, Afroditi Anaghostopoulou, Emilia Dobrin
Materials and Technical Specifications For this study were using base material Aluminium alloy EN AW 1200 of 5 mm thick.
The chemical compositions of the materials are shown in Table 1 and the mechanical proprieties in the Table 2.
Msomi, Comparative analysis between normal and submerged friction stir processed friction stir welded dissimilar aluminium alloy joints, (2020), Journal of Materials Research and Technology, vol. 9, no. 5, pp. 9632–9644, https://doi.org/10.1016/j.jmrt. 2020.06.024 [4] S Mabuwa, V.
Materials Today: Proceedings; [7] Processing of Al-Cu-Mg alloy by FSSP: Parametric analysis and the effect of cooling environment on microstructure evolution, (2022), Materials Letters, doi: 10.1016/j.matlet.2021.131157; [8] W.
The International Journal of Advanced Manufacturing Technology; [10] C.
Online since: October 2008
Authors: Bang Yan Ye, Yong Tang, Qiang Wu, W.W. Wang, Xing Yu Lai
Acknowledgment This project is supported by the Natural Science Foundation of Guangdong Province (No. 06025546).
Cheng: International Journal of Machine Tool Design and Research, Vol. 12(1972), pp. 37
S.Agapiou: International Journal of Machine Tool Design and Research, Vol. 32 (1992), pp. 521
Chang: International Journal of Machine Tools and Manufacture, Vol. 135(1995), pp. 975
Shih: International Journal of Machine Tools & Manufacture, Vol. 44 (2004), pp. 1413
Online since: August 2015
Authors: Wen Wen Du, Deng Hui Zhao, Xin Xu, Lin Wang
Dynamic Behavior in Ti-5553 Alloy with β Phase under Compression Loading Xin Xu1,2, , Lin Wang1,2,a*, Denghui Zhao3, Wenwen Du1,2 1 School of Materials Science and Engineering,Beijing Institute of Technology, Beijing 100081, China 2 National Key Laboratory of Science and Technology on Materials under Shock and Impact, Beijing 100081 China 3 China Ordnance Industrial Standardization Research Institute,Beijing 100089, China *Corresponding author: linwang@bit.edu.cn Keywords: adiabatic shear band (ASB); Martensite; SHPB; Light gas gun.
Through the microstructure analysis,finding that the damage failures of the materials with two microstructures are both adiabatic shear failure.
The structure evolution rules and performance changes of metal materials under the effect of shock wave were concentrated on by the scholars in recent decades.
Under the extreme conditions, the mechanical, physical and chemical properties in mental materials would change a lot.
Meyers, Dynamic Behavior of Materials, John Wiley & Sons, Inc., New York, 1994
Online since: April 2012
Authors: Chun Ming Liu, Chao Lian, Run Ze Chao, Zhan Yong Zhao, Ren Guo Guan
Effects of technical parameters on process stability and microstructure during continuous rheo-extrusion process of 6201 alloy wire Renguo Guana, Zhanyong Zhaob , Chao Lianc , Runze Chaod, Chunming Liue College of Materials and Metallurgy, Northeastern University, Shenyang 110004, China aguanrg@smm.neu.edu.cn, bsyuzzy@126.com, c570255411@qq.com, dchaorunze2007@163.com, ecmliu@mail.neu.edu.cn Keywords: Semisolid, Rheo-extrusion, Parameter, Microstructre.
Experimental The experimental material was 6201 aluminum alloy whose main chemical compositions are Mg 0.8, Si 0.7, Fe 0.5, Cu 0.1 (wt. %) and Al balanced.
Zheng: Journal of Material Science Technology.
Huang, et al: Journal of Plasticity Engineering.
Ikawaand, et al: Journal of Materials Processing Technology.
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