IP Library Granted Patent US 10,843,805
Granted Patent B2
US 10,843,805 · App. 16/040,720 · Granted Nov 24, 2020

Systems to prevent inadvertent in-flight deployment of inflatable aircraft emergency evacuation slides

Inventor: Sidney de Brito Teixeira (São José dos Campos, BR)
Assignee: YABORÃ INDÚSTRIA AERONÁUTICA S.A.
B64D25/14G05D7/0617
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Quick Facts
Patent No.
US 10,843,805
App. No.
16/040,720
Granted
Nov 24, 2020
Kind
B2
Abstract

Inadvertent in-flight inflation of an inflatable slide associated with a non-co-located over-wing emergency door of an aircraft fuselage is prevented by a system having a source of compressed gas (e.g., a compress air cylinder) and a 3-way valve having an input port and a pair of output ports each being individually connectable to the input port. The 3-way valve is operable in response to a control signal so as to fluid-connect the source of compressed gas with either a vent line which vents the compress gas overboard or a supply line the inflatable slide. When the control signal fluid connects the gas source to the vent line, the system will be in a safe in-flight mode indicative of inflight operation of the aircraft in which case inadvertent inflation of the slide is prevented.

Claims (22)

1. A system to prevent inadvertent in-flight inflation of an inflatable slide associated with an over-wing emergency door of an aircraft fuselage, the system comprising:

a source of compressed gas;

a 3-way valve having an input port and a pair of output ports each being individually connectable to the input port;

a supply line to supply compressed gas from the source thereof to the input port of the 3-way valve;

a vent line which fluid-connects a first one of the output ports of the 3-way valve to a vent environment;

a supply line which fluid-connects a second one of the output ports of the 3-way valve to the inflatable slide; wherein

the 3-way valve being operable in response to a control signal so as to fluid-connect the source of compressed gas with either the vent line or the supply line so as to place the system in a safe in-flight mode or an operational ground mode in dependence upon whether the aircraft is in flight or on the ground, respectively.

2. The system according to claim 1 , wherein the source of compressed gas is a compressed air cylinder.

3. The system according to claim 1 , wherein the control signal includes an in-flight mode signal, and wherein the 3-way valve comprises an actuator which is configured to receive the in-flight mode signal to thereby operate the 3-way valve so as to fluid-connect the source of compressed gas with the vent line.

4. The system according to claim 3 , wherein the control signal includes a ground operation mode signal, and wherein the actuator is configured to receive the ground operation mode signal to operate the 3-way valve so as to fluid-connect the source of compressed gas with the supply line.

5. The system according to claim 1 , wherein the 3-way valve includes an actuator that is actuated in response to receiving a mechanical, pneumatic or electrical control signal.

6. An aircraft comprising a fuselage which includes an over-wing emergency door, an inflatable slide that is positioned within a stowage bin that is not co-located with the over-wing emergency door and a system to prevent inadvertent in-flight inflation of the inflatable slide, wherein the system comprises:

a source of compressed gas;

a 3-way valve having an input port and a pair of output ports each being individually connectable to the input port;

a supply line to supply compressed gas from the source thereof to the input port of the 3-way valve;

a vent line which fluid-connects a first one of the output ports of the 3-way valve to a vent environment;

a supply line fluid which fluid-connects a second one of the output ports of the 3-way valve to the inflatable slide; wherein

the 3-way valve is operable in response to a control signal so as to fluid-connect the source of compressed gas with either the vent line or the supply line so as to place the system in a safe in-flight mode or an operational ground mode in dependence upon whether the aircraft is in flight or on the ground, respectively.

7. The aircraft according to claim 6 , wherein the source of compressed gas is a compressed air cylinder.

8. The aircraft according to claim 6 , wherein the control signal includes an in-flight mode signal, and wherein the 3-way valve comprises an actuator which is configured to receive the in-flight mode signal to thereby operate the 3-way valve so as to fluid-connect the source of compressed gas with the vent line.

9. The aircraft according to claim 8 , wherein the control signal includes a ground operation mode signal, and wherein the actuator is configured to receive the ground operation mode signal to operate the 3-way valve so as to fluid-connect the source of compressed gas with the supply line.

10. The aircraft according to claim 6 , wherein the 3-way valve includes an actuator that is actuated in response to receiving at least one of a mechanical, pneumatic or electrical control signal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2020
From: EMBRAER S.A.
To: YABORÃ INDÚSTRIA AERONÁUTICA S.A.
Reel/Frame 052532/0244 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 16, 2019
From: DE BRITO TEIXEIRA, SIDNEY
To: EMBRAER S.A.
Reel/Frame 049195/0405 →
Continuity (2)
Provisional Application 62535662 · Jul 21, 2017
Related Publication 20190023407A1 · Jan 24, 2019