Earlier quoted context omitted.
I did read the EAD. I even quoted it. > That's probably not an easy thing with a computer undoing your work every few seconds and fighting you for control. Having the trim start running again every few seconds is EXACTLY WHY there's a trim cutout switch. A few seconds is enough time to hit the thumb trim switches right on the column under your thumb, and the then hit the cutoff switch which is right there on the cent…
> I cannot fathom ignoring it. I can see why it they wouldn't have recalled it in the first 40s of that situation. However they got the situation stabilized to a point where they could've kept going for a while and maybe came up with a better plan of action before attempting to correct the trim again (which is what ultimately doomed the flight). > Having the trim start running again every few seconds is EXACTLY WHY t…
No, it isn't.
> The way I'm reading it
What it says is to restore trim to normal and then turn it off.
> not fully grasping the danger of leaving that switch on normal
Uncommanded stabilizer trim movement is a severe problem which is why what to do about it is a "memory item", meaning you don't have time to read the checklist. All pilots should know that runaway trim is a critical danger.
> out of nowhere - entering an uncontrollable nosedive if the pilots don't properly respond within seconds
There's enough time to respond. All three crews correctly restored normal trim immediately.
> I still have trouble blaming the pilots because
I give the pilots some of the responsibility, because they had all the information needed to counter the problem. The rest goes to Boeing for a bad MCAS design. It's a pilot's job to read, understand, and remember Emergency Airworthiness Directives. If that's unreasonable for them, they need to turn in their wings and drive an Uber.
I find no fault for the pilots of the Alaska crash where the stabilizer trim jammed. There were no instructions on how to deal with that, and they were in contact with the maintenance chief who had no clue, either. The pilots kept trying to break the jam loose, doing things like engaging both trim motors to apply more torque. The result was the jackscrew nut stripped the threads, and then it slid to hard over, then broke the end of the jackscrew off, and it was game over.
Now me, as an engineer who knows how that system works, I would have advised them to leave it alone, reduce airspeed to reduce the loads on it, and land ASAP. The jackscrew motors are way too powerful to let them grind away at it. Also, when it did move, it let off a very loud screech indicating that something awful was happening.
But they weren't engineers or mechanics. They made a mistake, but it was reasonable considering what they knew. They did the best they could.