Lgb indicated 20%. As i recall, this was in the 1988 catalogue. There was a diagram of using shorty track sections, bent, to get into the grade.
What Chris wrote is better.
My experience has been, too steep results in short, or very short, trains, buffers that climb over each other, more difficult transition from level to incline, and, curves , on incline make all of the above worse, not to mention trying to keep the curves level, and not torqued. Or simply, the train being pushed over and off the curve. Best kept level.
Initially, i loved the drama of a steeper incline. I have 2 electric locos and the ballenberg.
I recall a Great American Train Store lgb store layout which had a marvelous, lovely, in store display rack layout. From memory, 6 ft rise across 30ft. 1 electric rack with 1 OBB style coach. Swiss style catenary and light signals. Very dramatic. Very noisy rack clackity. Ran on an LGB pendulum.alas, i digress.
In my experience, even 2 shorty 2 axel euro starter coaches create quite a load on steep grades. All you need to do is push the cars by hand to realize how heavy these can get.
Change these to the 4 axel, longer, heavier OBB styled coaches, eg, Schoellenbahn, Zillertall, Zugspitz liveried versions really dramatically increase the load. So do the 3 axel swiss rack coaches. In my experience, a 3 car 3 axel train on a 10-15% grade is a huge load.
And….these heavier trains create the necessity of longer rack sections in the grade transition lead sections, ie the level sections . Otherwise, depending upon which end of the train the loco is on, the train can either cause the loco to slide (downgrade) , or fail to engage to short a rack sections, ie the train, as it enters the grade causes loss of traction (ie it ‘stalls’)due to the incline before loco can get over the rack. Also, the heavier the train, the more pronounced is the herky jerky tooth-into- rack movement of the loco, not to mention wear. Remember, at some amount of grade and load combination, there is essentially no wheel adhesion and the only force is the rack and large loco rack gear. So, literally, each single tooth of the rack gear, as it engages the rack, is carrying the entire train load…yoiks! Too much, and the gear will simply be forced up and out.
So, depending on your train length, curves, etc, moderation is a consideration. Dead straight, should make things easier.
Hope this is useful.