Device and method for activating a passenger protection means for a vehicle, manufacturing method for manufacturing the device, and passenger protection system for a vehicle
US-9834169-B2 · Dec 5, 2017 · US
US10336287B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10336287-B2 |
| Application number | US-201615568321-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 5, 2016 |
| Priority date | May 22, 2015 |
| Publication date | Jul 2, 2019 |
| Grant date | Jul 2, 2019 |
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The present invention provides a gas generator, including; a combustion chamber accommodating an igniter and a gas generating agent; a pressurized gas chamber filled with a gas selected from a rare gas or a nitrogen gas; a diffuser chamber located between the combustion chamber and the pressurized gas chamber and provided with a gas discharge port; a first closing member closing between the combustion chamber and the diffuser chamber, a second closing member closing between the pressurized gas chamber and the diffuser chamber; the combustion chamber having at least one of a space in which the first closing member deforms or moves, and a member which forms the space for enabling the first closing member to deform or move, when the gas generator is placed in a high-temperature atmosphere, due to a pressure increase or an impact caused by the gas inflow into the diffuser chamber, the first closing member being deformed or the first closing member being moved toward the combustion chamber, thereby making the combustion chamber and the diffuser chamber communicate with each other and making an inside of the combustion chamber and an outside of the gas generator communicate with each other.
Opening claim text (preview).
The invention claimed is: 1. A gas generator, comprising; a combustion chamber, which is located on a side of a first end portion of a cylindrical housing and accommodates an igniter and a gas generating agent; a pressurized gas chamber, which is located on a side of a second end portion opposite to the first end portion and filled with a gas selected from a rare gas or a nitrogen gas; a diffuser chamber, which is located between the combustion chamber and the pressurized gas chamber and provided with a gas discharge port; a first closing member abutting against an inner circumferential wall surface of the cylindrical housing and closing between the combustion chamber and the diffuser chamber; a second closing member being fixed to the inner circumferential wall surface of the cylindrical housing and closing between the pressurized gas chamber and the diffuser chamber, the combustion chamber having at least one of a space in which the first closing member deforms or moves, and a member which forms the space for enabling the first closing member to deform or move, when the gas generator is placed in a high-temperature atmosphere caused by fire, due to expansion of the gas in the pressurized gas chamber, the second closing member being ruptured from the pressurized gas chamber toward the diffuser chamber to allow the gas to flow into the diffuser chamber, and then, due to a pressure increase or an impact caused by the gas inflow into the diffuser chamber, the first closing member being deformed or the first closing member being moved toward the combustion chamber, thereby making the combustion chamber and the diffuser chamber communicate with each other and making an inside of the combustion chamber and an outside of the gas generator communicate with each other. 2. The gas generator according to claim 1 , wherein the space is formed in the combustion chamber to enable the first closing member to deform or move, and the space is formed between the gas generating agent and the first closing member by a retainer which is in contact with the gas generating agent, arranged at a distance from the first closing member and provided with a communication hole. 3. The gas generator according to claim 1 , wherein the space is formed in the combustion chamber to enable the first closing member to deform or move, the space is formed between the gas generating agent and the igniter by a retainer which is in contact with the gas generating agent, arranged at a distance from the igniter and provided with a communication hole, and the retainer is moved toward the igniter when the first closing member is deformed by the pressure increase or the impact caused by gas inflow into the diffuser chamber. 4. The gas generator according to claim 1 , wherein the space is formed in the combustion chamber to enable the first closing member to deform or move, the space is formed between a first retainer and a second retainer, the first retainer is disposed on a side of the first closing member and provided with a communication hole, and the second retainer is disposed on a side of the igniter, axially spaced from the first retainer and provided with a communication hole, a surface of the first retainer on the side of the first closing member and a surface of the second retainer on the side of the igniter are in contact with the gas generating agent, and the first retainer is moved toward the second retainer when the first closing member is deformed by the pressure increase or the impact caused by gas inflow into the diffuser chamber. 5. The gas generator according to claim 1 , wherein the member is arranged to form the space in the combustion chamber which enables the first closing member to deform or move, the member is a deformable member disposed in contact with both the first closing member and the gas generating agent, and the space which enables the first closing member to deform or move is formed by deformation of the first closing member and deformation of the deformable member caused by the pressure increase or the impact caused by gas inflow into the diffuser chamber. 6. The gas generator according to claim 1 , wherein the member for forming the space in the combustion chamber which enables the first closing member to deform or move is a deformable member disposed between the gas generating agent and the igniter, the deformable member is disposed in contact with the gas generating agent and the igniter in a portion excluding the ignition portion, and the space which enables the first closing member to deform or move is formed by deformation of the first closing member and deformation of the deformable member caused by the pressure increase or the impact caused by gas inflow into the diffuser chamber. 7. The gas generator according to claim 1 , wherein the member is arranged to form the space in the combustion chamber which enables the first closing member to deform or move, the member is a deformable member disposed such that at least both end surfaces thereof is surrounded by the gas generating agent, and the space which enables the first closing member to deform or move is formed by deformation of the first closing member and deformation of the deformable member caused by the pressure increase or the impact caused by gas inflow into the diffuser chamber. 8. The gas generator according to claim 1 , wherein both the space in which the first closing member deforms or moves, and the member which forms the space for enabling the first closing member to deform or move, are arranged in the combustion chamber, the space is formed between the gas generating agent and the first closing member by a retainer which is in contact with the gas generating agent, arranged at a distance from the first closing member and provided with a communication hole, and the member is a deformable member disposed in the space. 9. The gas generator according to claim 1 , wherein the first closing member has a circular bottom portion and an annular wall surface extending in one direction from an outer periphery of the circular bottom portion, an outer bottom surface of the circular bottom portion is positioned on a side of the diffuser chamber and an inner bottom surface on a side of the annular wall surface is positioned on a side of the combustion chamber, and an outer surface of the annular wall surface and the inner circumferential wall surface of the cylindrical housing are abutted against each other with a sealant being interposed therebetween. 10. The gas generator according to claim 1 , wherein the first closing member has a fragile portion for assisting the deformation or movement thereof.
with means for increasing the pressure of the gas just before or during liberation, e.g. hybrid inflators · CPC title
using instantaneous generation of gas, e.g. pyrotechnic (B60R21/268 takes precedence) · CPC title
Soft diffusers · CPC title
the air bag components being completely enclosed in a soft or semi-rigid housing or cover · CPC title
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