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Online since: October 2010
Authors: Jun Ma, Ying Jie Zhang, Li Zhang, Li Li, Yue Xiao Tian, Da Peng Li, Guo Rui Liu
Experimental Experimental Materials.
Hanna, N.S Deng: Journal of Hazardous Materials Vol. 166(1) (2009), p. 407 [2] Regina C.C.
Lago: Journal of Hazardous Materials Vol. 129(1-3) (2006), p. 171 [3] N.K.
Hameed: Journal of Hazardous Materials Vol. 176(1-3) (2010), p. 1118 [4] L.C.A.
Fang: Journal of Cellulose Science and Technology Vol. 18 (2010), p. 1 [9] Y.
Online since: August 2012
Authors: Hui Lan Sun, Xue Zheng Zhang, Bo Wang
The reason for the above change law is that materials expands and shrinks during heating and cooling.
So more energy is absorpted when holding time is longer and the materials expand to larger degree.
Therefore as to materials of the same partical size and leaching conditions, samples of longer holding time have more holes in it.
Journal of Mater Science. 2007, 42(6):1872-1883
Materials Science and Engineering, 2005, 25(5-8): 722-726
Online since: February 2022
Authors: Yulia Bakhracheva
Bakhracheva, The use of fractal formalism for the description of microstructures engineering materials, Solid State Phenomena. 316 (2021) 923-927
Bakhracheva, Prediction of residual life of reactor steels to ensure safe operation of nuclear power plant reactor vessels, IOP Conference Series: Materials Science and Engineering. 451(1) (2018) 012202
The influence of thermocyclic treatment on the structure and mechanical properties of pseudo-alpha titanium alloys for steam turbine blades, Materials Science Forum. 1031 (2021) 117-124
Nalimov et al., Effect of ion-plasma thermocyclic nitriding on the fatigue resistance of CHS70VI alloy, Strength of Materials. 52(2) (2020) 262-267
Guriev et al., Transition zone forming by different diffusion techniques in borating process of ferrite-pearlite steels under the thermocyclic conditions, Fundamental Problems of Modern Materials Science. 1(2) (2004) 54-60
Online since: October 2014
Authors: Xian Jun Meng, Wei Wei Liu, Yan Ma
This paper used the take off plump fresh milk and soybean oligosaccharides as the main raw material production to make SBOS goat milk health ice cream., studied and improved were proceeded aimed at the status of nutrition, color, texture, organization, flavor and cost, view to develope welcomed health ice cream, provide theoretical basis and practical guidance for industrialized production and development of new products. 1 Materials and methods 1.1 Materials and reagents Fresh milk, sugar, coconut oil, fresh eggs, are commercially available;Soybean oligosaccharide, CMC, sodium alginate, gelatin, guar gum, acacia gum, monoglycerides, sugar esters, soy lecithin, natural vanilla, shan remover are consumption level, provided by the changsha white bear food science and technology co., LTD. 1.2 Equipment NDJ-75 continuous and agitation of ice cream machine, tianjin winters of food machinery co., LTD.D-30 m type high pressure homogenizer, American PhD technology co., LTD.
1.3.2.3 Hybrid materials Separate the sugar into duplicate, one is blending with stabilizer swelled by added to the50℃~60℃water and stirred,another mixed with fresh eggs and a moderate amount of milk then stirred to the gunk,a moderate amount of milk mixed with coconut oil, emulsifier; put the prepared raw materials mixed with water and the rest of the milk added to the pounding machine of high-speed, high-speed mixing under 45℃. 1.3.2.4 Sterilization The milk pasteurized with cold and hot cylinder under temperature 85 ℃, time of 15 min condition 1.3.2.5 Homogeneous Temperature of65℃~65℃, homogeneous pressure of 18 mpa, homogeneous cooling immediately after homogeneous. 1.3.2.6 Maturing matured in2℃~4℃refrigerator,Keep 4 ~ 6 h h, guarantee the raw material combined with moisture, goat milk, colloid closely. 1.3.2.7 Flavouring Natural vanilla flavor were added after Material liquid matured then fully mixed 30 minutes. 1.3.2.8 Condensation put the handled material liquid into
Journal of dairy science and technology, 2013, 36 (1) : 25 to 28
Journal of agricultural products processing, 2013, (9) : 46 to 49
Journal of changchun university, 2010, 20 (2) : 21-22
Online since: January 2017
Authors: Xuan Cheng, Ying Zhang, Liu Ying Huang, Ziqing Zhu
Rheological Measurement of In Situ Preheating Polycarbosilane Melt Liuying Huang 1,2, Ziqing Zhu 1, Xuan Cheng 1,2 and Ying Zhang 1,2,a 1Department of Materials Science and Engineering, College of Materials, Xiamen University, Xiamen 361005, Fujian, China 2Fujian Key Laboratory of Advanced Materials, Xiamen 361005, Fujian, China ayzh@xmu.edu.cn Keywords: Polycarbosilane, In Situ preheating, Ex Situ preheating, Shear stress.
Rotational rheometer has been widely used in studying rheological properties of materials.
Omori, Synthesis of continuous silicon carbide fibre with high tensile strength and high Young's modulus, Journal of Materials Science. 13 (1978) 2569-2576
Zhang, Steady-State Rheological Characterizations of Polycarbosilane Melts, Polymer Materials Science and Engineering. 25 (2009) 53-56
Zhang, Experimental Observations of Time-Dependent Behaviors for Polycarbosilane Melt, Journal of Applied Polymer Science. 120 (2011) 3395-3400.
Online since: July 2014
Authors: Fu Wei Kang, Yu Xiong, Xin Bai, Dong Dong Zhang, Peng Liu, Tian Long Yang, Yi Cheng Feng
Study on Preparation and Refining Efficiency of Al-5Ti-1C Master Alloy Refiner Fuiwei Kanga, Yu Xiong, Xin Bai, Dongdong Zhang, Peng Liu, Tianlong Yang, Yicheng Feng School of Materials Science and Engineering, Harbin University of Science and Technology, Harbin 150040, China afuwei_kang@163.com Keywords: Al-5Ti-1C master alloy, refiner, microstructure.
The present work aims at preparing the Al-5Ti-1C master alloy by the melt reaction process which add the compacted mixture of titanium, aluminum and graphite powder into molten Al at different conditions, and evaluating its refining efficiency to purity aluminum. 2.Experimental procedure 2.1 Material preparation Commercial purity aluminum powder (99.8%, 200 grid), titanium powder (99.5%, 200 grid) and graphite powder (99.9%, 1200 grid) were used in the experiments as a source of titanium and carbon, respecitively.
References [1] Z.S.Gao: Light Metal (1999) [2] M.A.Doheim, A.M.Omaran, A.Abdel-Gwad: Metallurgical and Materials Transactions A(2011) [3] T.Sagstad , E.
Mruty and M.Chakraborty : Materials Science and Technology (1997) [5] Q.B.Zhang, H.S.Fang, J.G.Li, H.T.Ma: Journal of Material Science Letters (2000) [6] D.H.Wen, M.G.Yang, H.Zhang: Light Alloy Fabrication Technology (2007) [7] X.C.Xu, J.S.Zhang: Materials Science and Technology (2001) [8] H.M.Ding, X.F.Liu, L.N.Yu: Journal of Materials Science (2007) [9] J.G.Li, L.Wang: Light Alloy Fabrication Technology (2003) [10] X.Q.Jiang,C.K.
Lu: Sichuan Nonferrous Metals (2002) [11] P.Moldovan, G.Popescu: Journal of Metal (2004)
Online since: July 2013
Authors: Quan Ping Sun, Hai Bing Wu, Qian Liang Chen
The Measurement of ZrO2 Ceramic Thermal Expansion 2.1 Experimental Materials.
Davie:Journal of Materials Science(2001) [2] É.
Ulyanov:Translated from Steklo i Keramika(1978) [3] Fang-Fang Xu, Li-Tai Ma, Shu-Lin Wen: Journal of Material Science(1996) [4] J.Janardhana Reddy, Amitavo Chakraborty, Sarit, B.
Bhaduri: Journal of Materials Science Letters(1989) [5] M.
Fahim, et al :Journal of Metrology Society of India(2012) [6] Vilupanur Ravi, Samad Firdosy: Journal of Electronic Materials(2009)
Online since: June 2011
Authors: Xiang Tian Xie, Jin Shan Zhang
Journal of Inner Mongolia University of Science and technology.
Journal of Anhui Agri.Sci.
Journal of Fujian Agriculture and Forestry University(Natural Science Edition).
[5] LI Nai-xiong: Inventory models and optimal replenishment policies for a kind of materials.
JOURNAL OF GUANGXI UNIVERSITY OF TECHNOLOGY.
Online since: September 2011
Authors: Meng Hong Shen, De Yi Song, Hui Di Zhang
Principle 37 Thermal expansion Use thermal expansion (or contraction) of materials.
If thermal expansion is being used, use multiple materials with different coefficients of thermal expansion.
Altshuller: Creativity As an Exact Science,(Gordon and Breach Science Publishers, 1984)
[6] Information on TRIZ Journal Website.
journal.com> (retrieved January 2010).
Online since: August 2013
Authors: Peng Hui Zhang, Yong Yuan, Jing Liang Zhang, Zhong Qin Luo, Yan Li, Lei Qin, Cun Lei Li, Jing Zhe Li, Fang Ding, Xue Li
Sequence stratigraphic features of the Jurassic succession in Central Junggar Basin were investigated by integrating multiple materials including cores, well and seismic data.
Cross, uses core, outcrop, well and seismic data as main studying materials.
Owing to their distinct features in conventional materials and extensive occurrence in the research area, these coal seams are of great significance in sequence identifying and tracking.
Journal Of African Earth Sciences, 2002(35): p. 1-43
Journal of stratigraphy, 2007. 31: p. 573-580.