[1]
R.V. Gavariev, I.A. Savin, I.O. Leushin, Impact of the functional coating on service durability of injection molds for the zinc alloys pressure casting, Tsvetnye Metally. 1 (2016) 66-70.
DOI: 10.17580/tsm.2016.01.11
Google Scholar
[2]
I.I. Goryunov, A compression mold for casting under pressure, Mechanical engineering, (1974).
Google Scholar
[3]
D.L. Pankratov, R.V. Gavariev, K.N. Gavarieva, Influence of multilayer coatings on the operational stability of molds for injection molding, IOP Conference Series: Materials Science and Engineering, 134(1) (2016) 012031.
DOI: 10.1088/1757-899x/134/1/012031
Google Scholar
[4]
A. Shaparev, I. Savin, Calculation of the Amount of the Reduction Required for the Formation of Compound Layers during Cold Rolling of Bimetals, Materials Science Forum, 870 (2016) 328-333.
DOI: 10.4028/www.scientific.net/msf.870.328
Google Scholar
[5]
S. -S. Shin, K. -M. Lim, I. -M. Park, Characteristics and microstructure of newly designed Al-Zn-based alloys for the die-casting process, Journal of Alloys and Compounds. 671 (2016) 517-526.
DOI: 10.1016/j.jallcom.2016.02.127
Google Scholar
[6]
D. Rollez, A. Pola, F. Prenger, Zinc alloy family for foundry purposes, World of Metallurgy. 68 (6) (2015) 354-358.
Google Scholar
[7]
S. Yan, J. Xie, Z. Liu, W. Wang, A. Wang, J. Li, Influence of Different Al Contents on Microstructure, Tensile and Wear Properties of Zn-based Alloy, Journal of Materials Science and Technology. 26(7) (2010) 648-652.
DOI: 10.1016/s1005-0302(10)60100-4
Google Scholar
[8]
H. Cuvalci, H.S. Celik, Investigation of the abrasive wear behaviour of ZA-27 alloy and CuSn10 bronze, Journal of Materials Science. 46(14) (2011) 4850-4857.
DOI: 10.1007/s10853-011-5396-9
Google Scholar
[9]
P. Kapranos, D. Brabazon, S.P. Midson, S. Naher, T. Haga, Advanced casting methodologies: inert environment vacuum casting and solidification, die casting, compocasting, and roll casting, casting, semi-solid forming and hot metal forming, Comprehensive Materials Processing, Elsevier Ltd. 5 (2014).
DOI: 10.1016/b978-0-08-096532-1.00503-3
Google Scholar
[10]
A.P. Hekimoğlu, T. Savaşkan, Effects of Contact Pressure and Sliding Speed on the Unlubricated Friction and Wear Properties of Zn-15Al-3Cu-1Si Alloy, Tribology Transactions, 59(6) (2016) 1114-1121.
DOI: 10.1080/10402004.2016.1141443
Google Scholar
[11]
L.J. Yang, The effect of casting temperature on the properties of squeeze cast aluminium and zinc alloys, Journal of Materials Processing Technology. 140 (2003) 391-396.
DOI: 10.1016/s0924-0136(03)00763-5
Google Scholar
[12]
I.A. Savin, I.O. Leushin, V.A. Ulyanov, L.I. Leushina, A theoretical estimate of the crack resistance of shell molds precision castings manufactured using low calcination, Directory technology, Engineers with the application log. 9(222) (2015).
Google Scholar
[13]
I.A. Savin, V.V. Markov, A.V. Nishenkov, S.V. Plohov, The methodology of the theoretical calculation of the surface tension of molten metal on the basis of a physical model of the energy state of the liquid, Directory. Engineering Journal, 5 (2014).
Google Scholar
[14]
A.D. Jayal, F. Badurdeen, O.W. Dillon Jr., I.S. Jawahir, Sustainable manufacturing: Modeling and optimization challenges at the product, process and system levels, CIRP Journal of Manufacturing Science and Technology. 2(3) (2010) 144-152.
DOI: 10.1016/j.cirpj.2010.03.006
Google Scholar
[15]
D.A. Dornfeld, Moving towards green and sustainable manufacturing, International Journal of Precision Engineering and Manufacturing - Green Technology, 1 (2014) 63-66.
DOI: 10.1007/s40684-014-0010-7
Google Scholar
[16]
S.Z.M. Dawal, F. Tahriri, Y.H. Jen, K. Case, N.H. Tho, A. Zuhdi, M. Mousavi, N. Sakundarini, Empirical evidence of AMT practices and sustainable environmental initiatives in malaysian automotive SMEs, International Journal of Precision Engineering and Manufacturing, 16(6) (2015).
DOI: 10.1007/s12541-015-0154-6
Google Scholar