FIELD: electronic equipment.
SUBSTANCE: use to protect electronic unit. Essence of invention lies in fact that electronic unit housing in form of base with walls is filled with damping material, and as damping material, composition of high strength composite is used comprising polymer matrices with small percentage addition of vertically oriented multilayer carbon nanotubes and binder that ensures homogeneity of composite selected so that in zone of inertial action due to proposed damping material, natural frequency of electronic unit is shifted to high frequency region.
EFFECT: providing possibility of increasing efficiency of protection of electronic unit from shock and vibration effects.
1 cl, 4 dwg
Title | Year | Author | Number |
---|---|---|---|
NANOCOMPOSITE BASED ON CARBON NANOTUBES FOR PROTECTION OF RADIO ELECTRONIC ELEMENTS AGAINST IMPACT ACCELERATION | 2015 |
|
RU2604838C2 |
METHOD OF TESTING POLYMER COMPOSITE MATERIALS FOR IMPACT RESISTANCE | 2020 |
|
RU2730055C1 |
MULTIFUNCTIONAL NANOCOMPOSITE MATERIALS WITH 3D REINFORCEMENT | 2006 |
|
RU2423394C2 |
METHOD FOR IMPROVEMENT OF HEAD MULTIFUNCTIONAL FUSE IN BREAKAGE OF STRONG OBSTACLES | 2018 |
|
RU2710640C1 |
PROTECTIVE COATING BASED ON POLYMER COMPOSITE RADIO MATERIAL | 2015 |
|
RU2606350C1 |
COMPOSITE MATERIAL WITH INCREASED DAMPING PROPERTIES BASED ON ULTRA-HIGH MOLECULAR POLYETHYLENE | 2013 |
|
RU2567958C2 |
METHOD OF DETERMINATION OF COEFFICIENTS OF HYSTERESIS AND LINEAR VISCOUS INTERNAL IN VISCOELASTIC MATERIAL | 2000 |
|
RU2183320C2 |
COMPOSITE BASED ON ALUMINOSILICATE GLASS CERAMICS AND METHOD OF OBTAINING THEREOF (VERSIONS) | 2013 |
|
RU2534229C2 |
OSCILLATION EFFECTING METHOD | 2014 |
|
RU2567719C1 |
CARBON-CERAMIC FIBER-REINFORCED COMPOSITE MATERIAL AND METHOD FOR ITS OBTAINING | 2017 |
|
RU2684538C1 |
Authors
Dates
2018-09-13—Published
2017-11-16—Filed