Have you checked there's not too much oil in the tubes... even in just one leg..?
When I did my R1 USD conversion, I was surprised at how harsh and unyielding they felt compared to the STD TRX jobbies. I wasn't convinced they were working at all until I used the cable tie to see how much travel I was using .. and yup, it was just about right. I backed the pre-load right off and set the damping rates to middle clicks on both C & R ..
One thing I was alway foxed by was the sag thing... when I sat on the bike, the forks didn't compress at all (beyond the static sag limit anyway) - if i just bounced on the seat the rear would compress but the front would not. However, sitting on the bike with the
front brake on and bouncing gave me a lovely equal sag at both ends.... I never got round to measuring the weight bias of the TRX...
It's a lot easier to look at the pre-load adjuster more as a ride-height adjuster
idl1975 wrote:
I guess I'm having trouble with the concept.
If we assume two sets of forks with straight-rate springs, one preloaded with 50% of the load needed to compress it completely and one with zero preload, and then subject them over a few seconds to an increasing load up to 100% of their maximum, I thought the only difference would be that the preloaded fork would not appear to move until the load reached more than 50% of maximum. Both forks should end up with the springs fully compressed (other otherwise run out of travel).
That's exactly correct ... even easier is just to imagine two plain old springs - they both have the same spring rate, in other words they both require the same load to deflect the same distance. Pushing one through half it's deflection pre-loads it and, as Kayla rightly says, doing so requires a certain effort and the other spring will behave in exactly the same way once it's been applied with the same force.
A spring with a higher spring-rate requires more force to get it to deflect the same distance - changing the pre-load doesn't change the spring's rate.
My thoughts --- Unless you've got an absolute Frankenstein fork, it's unlikely that it's going to get coil-bound before the full travel is used up - even if full pre-load is applied (the manufacturers will have built that into their calculations...) . Even with higher rate springs you'll be able to get the fork to compress to max travel, you just have to apply more force, which is why I'm thinking you've too much oil. Air compresses exponentially (I think that's correct) in that each time you halve its volume you double the previously required level of force (PSI or pascal/mm2 if you want to split hairs).. So in your forks, there's a volume of air above to oil which when compressed will also act as a spring (but not in a linear fashion..) If the forkleg is correctly filled, then that air spring effect is less than the spring's spring effect so the metal spring becomes the principal resistance to overcome. If however the fork is overfilled, the force required to compress that air can be so great that you'll get to a point where you simply cannot compress the air any further - and travel appears to be all used up even though the
metal spring is not at full deflection.... Geddit?
Usual disclaimer applies here - I'm probably talking complete bollocks YMMV etc ...
Greg