Hate to hijack the thread and have an ongoing discussion on geometry across 3 different threads at this point but yea I certainly see what you're saying.
If I'm understanding the ackerman geometry, it should not be impacted at all by the steering rack/tierod setup, but rather only by the the angle originating from the centerline of the rear axle and being drawn through the balljoints up front, correct? If so, I agree that simply shifting the knuckle mounting point for the outer tie rod closer or further away from its origin would definitely impact the ackerman. But since the front-steering setup would ideally have the pivot for the steering point be forward of the ball joint and towards the centerline of the tire, I imagine that if you were to move this point not only closer to the rotor, but also significantly forward, you would be able to retain close-to-good ackerman?
with regards to toe in/out at droop vs bump, I tend to agree here 100%. Whether you are crawling or high-speed desert running, it certainly seems to reason that you would want the worst case scenario to happen under the least amount of possible loading on your tire. For the angles, interestingly enough.. if you look at my current setup with the lc200 rack, my tie rods seems to be more or less parallel to the lower control arm, but at an offset angle to the CV joint shaft. For the RCLT, their tie rod also seems to be dead inline with the lower arm, but also just about parallel to the CV shaft. I'm certain a lot of this has to do with the high-clearance shape of the lower arm, but just something that jumped out at me that makes it look like there definitely was some thought and experimenting that went into their kit.
From my guestimate of how much the pivot point would need to move up I would say its within .5-.75" from where it sits now. This is purely visual feel as my rig sits now. I feel like that would put me in a sweet spot on the arc length of the tie rod for bump steer both at full droop and full bump.
But the deeper I get into the rabbit hole of suspension geometry the more I realize I don't know and understand it :lookout: lol.