SYNTACTIC POLY MERIC COMPOSITE MATERIALS HIGHLY COMPLETED WITH GRANULATED FOAM GLASS
( Pp. 39-46)

More about authors
Ketov Iurii Alexandrovich aspirant
Perm National Research Polytechnic University Slovikov Stanislav Vasilyevich kandidat tehnicheskih nauk, starshiy nauchnyy sotrudnik
Perm National Research Polytechnic University
Abstract:
It is proposed to use granular foam glass as an alternative aggregate for syntactic composite materials. Studies have been carried out on the preparation and physical-mechanical properties of composite materials with aggregate made of granular foam glass and a high degree of filling. To create compositions, binders based on polyester and polyurethane matrices were used. During compression in the cylinder of granular foam glass, a mechanism for the destruction of granules was revealed and the conditions for producing highly filled composites were established. The influence of the nature of the binder and the pressing pressure of the workpiece on the apparent density and strength of the resulting composite materials was studied.
How to Cite:
Ketov I.A., Slovikov S.V., (2019), SYNTACTIC POLY MERIC COMPOSITE MATERIALS HIGHLY COMPLETED WITH GRANULATED FOAM GLASS. Computational Nanotechnology, 3 => 39-46.
Reference list:
Jayavardhan M.L., Mrityunjay D. Quasi-static compressive response of compression molded glass microballoon/HDPE syntactic foam // Composites. Part B: Engineering. Vol. 149. P. 165-177.
Porfiri M., Gupta N. Effect of V. fraction and wall thickness on the elastic properties of hollow particle filled composites // Composites. Part B: Engineering. Vol. 40. № 2. P. 166-173.
Bulanov I.M., Vorobey V.V. Tekhnologiya raketnykh i aerokosmicheskikh konstruktsiy iz kompozitsionnykh materialov. M.: MGTU im. N.E. Baumana, 1998. 516 s.
Bai C., Li H., Bernardo E., Colombo P. Waste-to-resource preparation of glass-containing foams from geopolymers // Ceramics International. 2019. Vol. 45. № 6. P. 7196-7202. URL: https://doi. org/10.1016/j.ceramint.2018.12.227
Demidovich B.K. Proizvodstvo i primenenie penostekla. Minsk: Nauka i tekhnika, 1972. 301 s.
Vaisman I., Ketov A., Ketov I. Cellular glass obtained from non-powder preforms by foaming with steam // Ceramics International. 2016. Vol. 42. № 14. R. 15261-15268. URL: https://doi.org/10.1016/j. ceramint.2016.06.165
K nig J., Petersen R.R., Iversen N., Yue Y. Suppressing the effect of cullet composition on the formation and properties of foamed glass // Ceramics International. 2018. Vol. 44. № 10. R. 11143-11150. URL: https://doi.org/10.1016/j.ceramint.2018.03.130
Nazeran N., Moghaddas J. Synthesis and characterization of silica aerogel reinforced rigid polyurethane foam for thermal insulation application // J. Non-Crystalline Solids. 2017. Vol. 461. R. 1-11. URL: https://doi.org/10.1016/j.jnoncrysol.2017.01.037
Gavrilenko S.L., SHil ko S.V. Analiz prochnosti sfericheskikh granul metodami mekhanik i kontaktnogo vzaimodeystviya // Mekhanika mashin, mekhanizmov i materialov. 2014. № 2 (27). S. 56-59.
Smirnov A., Ponomarev S., Vasin A. Dense Packing of Poly-Fractional Powder of Ceramic Materials // International Conference on Modern Trends in Manufacturing Technologies and Equipment 2018: Materials Today Processing. 2019. Vol. 11. Part 1. R. 504-509. URL: https://doi.org/10.1016/j.matpr.2019.01.021
Zhao B., An X., Wang Y., Qian Q., Yang X., Sun X. DEM dynamic simulation of tetrahedral particle packing under 3D mechanical vibration // Powder Technology. 2017. Vol. 317. R. 171-180. URL: https://doi.org/10.1016/j.powtec.2017.04.048
Haitao Geng, Jiachen Liu, Anran Guo, Sue Ren, Xiqing Xu, Shan Liu. Fabrication of heat-resistant syntactic foams through binding hollow glass microspheres with phosphate adhesive // Materials Design. 5 April 2016. V. 95. R. 32-38. URL: https://doi.org/10.1016/j. matdes.2016.01.108
Pinisetty D., Shunmugasamy V.C., Gupta N. Hollow Glass Microspheres for Plastics, Elastomers, and Adhesives Compounds // Plastics Design Library. 2015. R. 147-174. URL: https://doi. org/10.1016/B978-1-4557-7443-2.00006-2
Ren S., Li X., Zhang X., Xu X., Dong X., Liu J., Du H., Guo A. Mechanical properties and high-temperature resistance of the hollow glass microspheres/borosilicate glass composite with different particle size // J. Alloys and Compounds. 2017. Vol. 722. R. 321-329. URL: https://doi.org/10.1016/j.jallcom.2017.06.092
Zhang L., Ma J. Effect of coupling agent on mechanical properties of hollow carbon microsphere/phenolic resin syntactic foam // Composites Scienceand Technology. 2010. Vol. 70. № 8. R. 1265-1271. URL: https://doi.org/10.1016/j.compscitech.2010.03.016