METHOD FOR ENHANCING THE EFFICIENCY OF GUIDANCE OF CORRECTED GRAVITATIONAL PROJECTILE OF ANTISUBMARINE BOMB SUBMERGED TARGET AND DEVICE FOR ITS REALIZATION Russian patent published in 2006 - IPC F42B21/00 

Abstract RU 2289783 C1

FIELD: ammunition, in particular, antisubmarine bombs, having a gravitational projectile as their component.

SUBSTANCE: the method consists in the fact that after alighting on water the bomb is temporarily retained at the preset depth. And separation of the corrected gravitational projectile from the bomb body and its further submergence into water under gravity are accomplished after detection of it by the on-board hydroacoustic equipment of the submarine and confirmation of its presence in the guidance zone. The antisubmarine bomb is provided with a float with a non-return valve connected to it by a flexible coupling, the valve is filled with the incoming flow of air during the bomb flight in the air trajectory. The separated corrected gravitational projectile is provided with an additional hydroacoustic channel of submerged target detection and confirmation of its presence in the guidance zone, during its retention at the preset depth. The parachute and float with the non-return valve are located in the brake compartment of the bomb.

EFFECT: enhanced efficiency of guidance on submerged target.

2 cl, 3 dwg

Similar patents RU2289783C1

Title Year Author Number
METHOD FOR INCREASING EFFICIENCY OF GUIDANCE AT UNDERWATER TARGET OF CORRECTED UNDERWATER PROJECTILE OF ANTISUBMARINE AMMUNITION, AND DEVICE FOR ITS IMPLEMENTATION 2012
  • Bachurin Sergej Pavlovich
  • Borozdin Oleg Ivanovich
  • Bochkova Irina Vladimirovna
  • Kovalenko Sergej Stepanovich
  • Popov Viktor Aleksandrovich
  • Smirnov Igor' Mikhajlovich
  • Fillipov Pavel Valer'Evich
RU2531794C2
ANTI-SUBMARINE AMMUNITION 2017
  • Bochkova Irina Vladimirovna
  • Kovalenko Sergej Stepanovich
  • Smirnov Igor Mikhajlovich
  • Tsvetkov Yurij Gennadevich
RU2651868C1
AVIATION FLOATING UNDERWATER PROJECTILE 2020
  • Novikov Aleksandr Vladimirovich
  • Forostyanyj Andrej Anatolevich
  • Shaldybin Andrej Viktorovich
RU2753986C1
UNDER-ICE CORRECTED PROJECTILE 2018
  • Novikov Aleksandr Vladimirovich
  • Forostyanyj Andrej Anatolevich
  • Ignasyuk Oleg Valerevich
RU2707233C2
JET FLOATING UNDERWATER PROJECTILE 2021
  • Novikov Aleksandr Vladimirovich
  • Forostyanyj Andrej Anatolevich
RU2788510C2
METHOD FOR DETECTING AND HITTING AN UNDERWATER TARGET 2021
  • Novikov Aleksandr Vladimirovich
  • Forostyanyj Andrej Anatolevich
  • Shaldybin Andrej Viktorovich
RU2769559C1
METHOD OF IMPROVING EFFICIENCY OF HOMING ON UNDERWATER TARGET OF GROUP OF CORRECTED UNDERWATER MISSILE 2016
  • Kovalenko Sergej Stepanovich
  • Smirnov Igor Mikhajlovich
RU2642224C1
ROCKET GLIDER WITH HOMING UNDERWATER PROJECTILE 2022
  • Novikov Aleksandr Vladimirovich
  • Savvateev Aleksandr Sergeevich
  • Forostyanyj Andrej Anatolevich
RU2796086C1
AVIATION RADIO-ACOUSTIC BUOY-GLIDER 2022
  • Novikov Aleksandr Vladimirovich
  • Forostyanyj Andrej Anatolevich
  • Chikin Vitalij Viktorovich
  • Shaldybin Andrej Viktorovich
  • Zharovov Aleksandr Klavdievich
RU2780519C1
UNDERWATER TARGET DESTRUCTION METHOD 2018
  • Novikov Aleksandr Vladimirovich
  • Vinokurov Fedor Vladimirovich
  • Forostyanyj Andrej Anatolevich
  • Dolbilin Ruslan Vladimirovich
RU2697694C1

RU 2 289 783 C1

Authors

Babich Gennadij Anatol'Evich

Bochkova Irina Vladimirovna

Egorova Nina Mikhajlovna

Ermakov Sergej Alekseevich

Kovalenko Sergej Stepanovich

Kostylev Vitalij Kuz'Mich

Krylov Igor' Vladimirovich

Popov Viktor Aleksandrovich

Pochinskij Valentin Nikolaevich

Selishchev Anatolij Alekseevich

Dates

2006-12-20Published

2005-03-21Filed