The invention relates to a method of limiting the cooling time for disks of an aircraft wheel brake, and to an aircraft wheel heat screen constituting an application of the method.
Certain aircraft wheels are associated with a brake comprising a stack of disks housed at least in part inside the wheel. It is known to place a heat screen between the disks and the wheel so as to protect the wheel and its tire from radiation from the hot disks. In particular, it is important to avoid any zones of the wheel that are in contact with the tire reaching a temperature higher than 200 degrees Celsius.
Nevertheless, such screens do not enable the heat accumulated in the brake during landing and during taxiing of the aircraft from the runway to a terminal. It turns out that the temperature of the brake is a criterion having a major influence on the aircraft. For example, takeoffs are authorized only if the temperature of the brake is less than 400 degrees. Unfortunately, it takes the brake a certain amount of time to cool, which can prevent the aircraft taking off again quickly after it has stopped at the terminal.
Various means have been proposed to reduce this cooling time, in particular by using a cooling fan. Nevertheless, such equipment is not used by all airlines.
The invention seeks to propose a method for reducing the time required for cooling the disks of an aircraft wheel brake that makes it possible to improve operating conditions for the aircraft.
In order to achieve this object, there is provided a method of reducing the cooling time for disks of a brake of an aircraft wheel fitted with a heat screen extending between the wheel and the disks of the brake, and mounted to rotate on aircraft landing gear about an axis of rotation, the method comprising making perforations through the heat screen to allow air heated by the disks to pass through the heat screen towards the wheel, the perforations being provided with obstacles to block any radiation from passing directly from the disks towards the wheel.
Thus, the perforations enable a convective stream to be set up through the perforations, thereby facilitating discharge of the heat produced by the brake disks. The air heated by the disks can thus escape more quickly to the outside without having to go round the heat screen via its end deepest inside the wheel.
The presence of obstacles nevertheless prevents radiation from the disks impacting against the wheel directly, which would contribute to heating it quickly.
The invention can be better understood in the light of the following description of non-limiting embodiments of the invention given with reference to the figures of the accompanying drawings, in which:
With reference to
In the invention, the heat screen 10 is provided with perforations enabling air heated by the disks to pass through the shield in order to be discharged to the outside, while preventing direct radiation going from the disks to the wheel. In the figures below, the convective stream is represented by thick arrows, while radiation is represented by fine arrows.
In a first embodiment of the invention shown in
In a variant shown in
In a second embodiment, as shown in
Under all circumstances, when the scoops allow pollution (external dust, carbon from the disks, . . . ) to penetrate into the inside of the heat screen, provision is made in the heat screen for discharge orifices that are regularly arranged so that when the wheels are being cleaned, cleaning liquid can easily remove and carry away the pollution, regardless of the angular position of the wheel.
In a third embodiment shown in
In a fourth embodiment as shown in
As can be seen in
The invention is not limited to the above description, but on the contrary covers any variant coming within the ambit defined by the claims.
Number | Date | Country | Kind |
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16 56865 | Jul 2016 | FR | national |
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Search Report of French Application No. 16 56865 dated Mar. 7, 2017. |
Number | Date | Country | |
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20180023647 A1 | Jan 2018 | US |