I shall await the news coverage
"Train disintegrates near Rugby"
I thought the reason for the re-designed windows on the recent Class 379/172/378s had something to do with the suppliers of the original ribbon glazed windows going out of business. Or was that just a rumour?
I've heard that too.
Quality down, price up?
NR's plans for the next 30 years do seem to include raising the archetypal prevailing linespeeds for each type of service.

Hi, just spoken to my colleague from Bombardier. This is not for some time yet and it won't be using our trains
Rather odd claim from the GA Twitter with regards this in response to someone's query:
I shall await the news coverage
"Train disintegrates near Rugby"
I don't know why everyone is so bothered about the crashworthiness of the thing! Trains are not like cars. Trains run on a fixed set of rails, are stopped by safety systems if it passes a red signal, signalling is interlocked so you pretty much can't signal conflicting moves. The only thing that would cause a train to crash these days is maintenance cuts in the pway or rolling stock. Besides, modern trains are heavy enough as they are adding even more crash worthiness will just make them heavier.
Trains are not always stopped by 'safety systems' if a red signal is passed. Please get your facts right.
Today's designs have far more crashworthiness features than a few decades back when Mk1 coaches and the EMU derivatives were routinely run at 90-100mph. These features include crash-friendly interiors (eg plastic mickey mouse ears as seat grab handles instead of the old metal cubes), which probably cost very little more than the old designs if fitted from new.
There are also structural crumple zones at car and unit ends, which do increase costs quite a bit, and also reduce passenger space. They are only relevant in end-on train-to-train collisions, and the risk from these has already fallen by 60-70% due to TPWS. My personal view is that these structural crashworthiness measures are no longer necessary (if they ever were in the first place).
Recently European standards have included energy absorption in unit ends, which is one reason why the noses of recent designs are a bit longer. These may have some value in level crossing collisions but are probably not very significant in collisions between trains.
Why would a train fitted with TPWS or ATP running on a line with TPWS or ATP not be stopped if it passes a red signal?
Because the vast majority of signals are not fitted with TPWS would be one reason.
Also ATP is only in use in one area.
Alright calm down...
Why would a train fitted with TPWS or ATP running on a line with TPWS or ATP not be stopped if it passes a red signal? Apart from if the driver overrides the trainstop before passing it.
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Oh right fair enough, I always thought TPWS was more widespread, it's a shame ATP never took off really.
ATP still wouldn't prevent all head on collisions, plus I think its fair to say that its not needed all over - even without it and without 100% TPWS coverage head on collisions or any kind if 'serious' incident following a spad is very rare and unlikely. Obviously steps will still be taken but I can't really see a case for ATP all over.
Agreed : there's no real need for ATP and it was calculated that it has little cost benefit over TPWS. Anyway ERTMS will come in years to come.
Bronzeonion maybe you are more familiar with the tube which on conventionally signalled lines has trip cock at every signal.