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Online since: January 2015
Authors: Milan Tanić, Viktor Pukhkal, Vera Murgul, Slaviša Kondić, Milica Živković, Nikolay Vatin
However, in most cases the cause of rising moisture sorption is fencing materials and condensation of water vapor in the interior of the enclosure.
Wet materials are less frost resistance and service life in terms of their alternate freezing and thawing is sharply reduced.
Increase of energy efficiency for educational institution building. (2014) Advanced Materials Research, Vols. 953-954, pp. 854-870
Increase of energy efficiency of the building of kindergarten. (2014) Advanced Materials Research, Vols. 953-954, pp. 1537-1544
Comprehensive method of energy efficiency of residential house (2014) Advanced Materials Research, Vol. 953-954. pp. 1570-1577
Online since: January 2005
Authors: Hong Po Kim, Eun Hee Lee, Kyung Mo Kim, Uh Chul Kim, Jang Ho Bae, Chang Wan Won
The Cring specimens cut from the tubing materials were fabricated according to ASTM G38-73 [9] (Fig. 1).
Symp. on Environmental Degradation of Materials in Nuclear Power System-Water Reactors, Inc.
Symp. on Environmental Degradation of Materials in Nuclear Power System-Water Reactors, TMS, Warrendale, PA (1987), p. 517
Symp. on Environmental Degradation of Materials in Nuclear Power System-Water Reactors, Inc.
Symp. on Environmental Degradation of Materials in Nuclear Power System-Water Reactors, TMS, Warrenendale, PA (1999), p. 689
Online since: June 2012
Authors: Jung Han Song, Geun An Lee, Jong Sup Lee, Sung Jun Park
When the sheet surface is irradiated with a laser beam, a fraction of the laser energy is absorbed in the material.
This steep temperature gradients result in the differential thermal expansion of the material which produces thermal stresses in the material leading to counter-bending of the sheet away from the laser beam.
Finite Elements Simulation Model The nonlinear heat transfer equation for isotropic materials can be written as (1) where T is the temperature, which is a function of coordinate and time; ρ is the density of the material; c is the specific heat, λ is the thermal conductivity; and Q is the source of heat being expressed as heat generation per unit volume in unit time interval.
J. of Manufacturing Science and Engineering 123 (2002) 73-81
Pantelkis, Numerical and Experimental Investigation of the Laser forming process, Journal of Materials Processing Technology 87 (1999) 281-290
Online since: July 2022
Authors: Bernd-Arno Behrens, Markus Kästner, Eduard Reithmeier, Lorenz Quentin, Marcel Rothgänger, Julius Peddinghaus, Philipp Middendorf, Johanna Uhe, Kai Brunotte
[3] Kumar, D. and Mondal, S., "A review on modelling, design and optimization of forging process," IOP Conference Series: Materials Science and Engineering 1126, 012001 (mar 2021)
[5] Totten, G., Funatani, K., and Xie, L., [Handbook of Metallurgical Process Design], Materials Engineering, CRC Press (2004)
A., Sun, Y., and Chunping, C., "Deformation and wear in a h21 (3cr2w8v) steel die during hot forging: simulation, mechanical properties, and microstructural evolution," Journal of Materials Research and Technology 15, 268-277 (nov 2021)
W., ed., [Wear - Materials, Mechanisms and Practice], John Wiley & Sons Ltd (nov 2005)
Key Engineering Materials Vol. 925 1679
Online since: July 2021
Authors: Kozo Taguchi, Yosuke Ito, Dang Trang Nguyen
MWCNT is generally used for additives to polymer materials, buckypapers (BP), battery electrodes, and other composite materials; and it can improve the performance of those materials.
Table 1 lists detail electrode materials of five battery samples indicated by numbers from ① to ⑤.
On the other hand, the air-cathode materials of five samples were different.
Electrode materials.
Cosnier, Buckypaper bioelectrodes: Emerging materials for implantable and wearable biofuel cells, Energy Environ.
Online since: May 2011
Authors: Dong Su, Xiang Song Li
Experimental Configuration Uniform Toyoura sand was selected as the test material, with D50=0.17 mm, Cu=1.7, emax=0.977, and emin=0.597.
Acknowledgements The first author acknowledges the financial supports provided by National Natural Science Foundation of China under Grant No. 50978165 and by Shenzhen Municipal Science and Technology Plan under Grant Nos.
Journal of Geotechnical Engineering, Vol. 109 (1983), p. 281
Journal of Geotechnical Engineering, Vol. 111 (1985), p. 265
The Hong Kong University of Science and Technology, Hong Kong, PhD Dissertation, (2005)
Online since: February 2016
Authors: Zhen Ming Zhang, Dong Xu Li
Experimental Raw Materials.
Construction and Building Materials, 2002, 16(8): 489-494
Construction and Building Materials, 2012, 34: 494-503
ACI Materials Journal, 1993, 89(1)
Journal of materials research, 1994, 9(12): 3121-3124
Online since: July 2013
Authors: Li Chan Li, Meng Yu Chai, Wen Jie Bai, Quan Duan, Yong Quan Li
Fatigue test The material used in this test is Q345R.
The fatigue crack propagation test was carried out on a MTS810-type universal material testing machine.
The financial support from National Science and Technology Major Project (No. 2011ZX06004-009) is especially acknowledged.
References [1] Ho SL and Jong HY: Processing Technology. 165, 2(2005), p. 882 [2] Colin JC, Cherfaoui M, Cazrpreau JM and Chre´ tien JF: Memoires et etudes scientifiques de la Revue de metallurgiet.89,10(1992) , p. 658 [3] Ohtsuka N, Nakano M and Ueyama H: Journal of Pressure Vessel Techonoly.103, 2(1981), p.19 [4] Shen Gongtian:NDT. 26, 9(2004), p. 457 [5] Ennaceur C, Laksimi A and Herve C: International Journal of Pressure Vessels and piping. 83, 3 (2006), p. 197 [6] Roberts TM and Talebzadeh M: Journal of construction Steel Research. 59, 6(2003) , p. 695 [7] Shen Gongtian,Geng Rongsheng and Liu Shifeng:NDT. 24, 2(2004), p. 72 [8] Li Guanghai and Liu Zhengyi: China Mechanical Engineering. 15, 13(2004) , p. 72
Online since: November 2012
Authors: Fang Li Su, Tie Liang Wang, Hai Fu Li, Sheng Yu Shi
The experimental materials and methods The experimental device.
[3] Guyuan Luo , Song Wu , Hua Xiao,et al: Journal of Chongqing University. 31(10). 1169 - 1173 2008, in Chinese
[5] Jinglei Chen, Liqing Wang, Gaohua Ji,et al: Journal of Shanghai Ocean University. 18(4). 435-442 (2009), in Chinese
[6] Ling Ding, Yaoliang Shen, Yong Huang: J. of University of science and Technology of Suzhou. 2005 18(2). 48-52 (2005), in Chinese
[8] Guyuan Luo, Faping Bu, Xiaoyi Xu, et al: Journal of Sichuan University. 41(6). 108-113 (2009), in Chinese
Online since: September 2012
Authors: Wei Dong Shi, Fei Tian, Xi Ning Lu, Yi Gao, Ming Xiong Ou
According to “Primavera Project Planner for Enterprise”, the allowable stress[σ] of the blade material QT600-3 is 60 MPa.
Journal of Anhui Agri Sci. 2009, 37 (20): 9606 – 9607
FLUENT fluid simulation calculation example with application [M] BeiJing: Beijing University of science and technology press, 2004
Canadian Journal of Chemical Engineering, 1993, 71: 42 [10] TIAN Fei, Shi Weidong, Chen Bin.
Renormalization Group Analysis of Turbulence: Basic Theory [J].Journal of Scientific Computation, London, 1986(1):3~11.