Depends on traction.
15x work in 4 steps. 1,2,3 - emergency. Each will produce a different rate of air pressure on the brake cylinder. Emergency will not. It just earths the brake control unit to prevent any cross feeds. It produces the same pressure as step 3/full service.
The parking brake on 15x is spring operated. Basically the spring tightens when the air pressure drops. It unwinds at 1.9 bar on the main res gauge.
The brake pressure will be shown on the brake gauge. It reacts to the brake handle.
Other traction works in a similar fashion. The brake gauge relates to the brake handle and its position. However they may not have definitive brake steps, but more a percentage brake which allows the driver for leeway for braking
.I can give a simple or more detailed explanation whichever you would like. Here is a basic explanation. There are usually two essential separate brake systems with regard to the method of application and they have some common elements. These are the service brake and the parking brake. The service brake has two modes, service brake application and emergency brake application. The service brake application is used by the driver to control the train in normal operation. In an emergency the service brake is applied more quickly and on some vehicles e.g. Modern multiple units with a higher retardation rate. This is correctly termed an Emergency brake application Although commonly referred to even by railway organisations there is no such thing as an Emergency Brake on British Rail vehicles.
The parking brake is applied when the vehicle is stationary to prevent movement when the service brake is no longer holding the vehicle stationary.
Locomotives and some other vehicles have a third brake system, the Direct or straight air brake.
With regard to the Main Reservoir Pipe and Brake Pipe gauges these are only both present on Two pipe air brake systems and not on modern DMUs or EMUs. The Main Reservoir Pipe gauge should always read about 7 Bar. The Brake Pipe pressure will fall when a brake application is made and return to 5 Bar when the brake application is released.
Do you want a more technical explanation?
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To clarify the brake gauge referred to above is the Brake Cylinder Pressure and not the brake pipe pressure gauge. Class 15x do not have a Brake Pipe, the e.p brake system on modern DMUs and EMUs is fail safe as it is ‘energise to release’.
Unless it's a Class 800 then it doesn't have braking resistors...Unless I've missed it, nobody has yet pointed out that a lot of braking on modern EMUs and DEMUs is done by the traction motors being used to regenerate power. An EMU can return this power to the supply, if the supply is "receptive" (there is another train reasonably nearby motoring that can use the power). A DEMU, or an EMU with no receptive supply, gets rid of the power as heat in on-board resistors, but even so this is preferred over friction braking because of the saving in brake pad wear (and an emerging issue is that friction brakes also generate particulate pollution).
Regenerative/rheostatic brakes can't be relied on for an emergency stop, so every train also has friction brakes, which must be able to stop it within the required distance in emergency without any assistance from regeneration. Friction and regenerative brakes are blended together when higher levels of service braking are needed, and at lower speeds where regenerative braking becomes less effective.
Are you saying that only Class 800 have braking resistors? I think this is wrong because they are clearly visible on the roof of 22x units for example.Unless it's a Class 800 then it doesn't have braking resistors...
Thanks for clearing that up. I believe the 802s (ordered by individual TOCs rather than DfT) were designed for more prolonged running on diesel, and the weight limit on the DfT order didn't apply, so they were fitted with resistors.The latter. They're one of very few DEMU usage vehicles that aren't fitted with them.
Although there were and still are to my knowledge some 'fun' electrical issues with them on the Voyager and Voyager derived classes.
Class 70 locomotives have dynamic braking which cuts in when the train/auto brake is used.There aren't any diesel-electric locos in the UK fitted with rheostatic braking, are there? I know it's pretty much standard in North America, Australia, and I believe also on some locomotives on the continent, but I imagine we're constrained here once again by the loading gauge.
There are a few - Class 68s for one.There aren't any diesel-electric locos in the UK fitted with rheostatic braking, are there? I know it's pretty much standard in North America, Australia, and I believe also on some locomotives on the continent, but I imagine we're constrained here once again by the loading gauge.
Class 70 locomotives have dynamic braking which cuts in when the train/auto brake is used.
Cheers both.There are a few - Class 68s for one.
Going way back - The Class 50s had it as new in 1968 but it was removed on refurbishment when the traction electronics were greatly simplified.