J-money$$$
New member
I know this comes up over and over. And I have repeatedly said I dont like them, But I came across another piece of information that was quite surprising to me.
I am currently working out a 3 link design for the rear of my truck. Its time for a change and the stock brackets are toast. Anyways I was planning on keeping the stock track bar mounts for now. I have been using the 3 link calculator that can be found on pirate.
The thing is our 4 link with a panhard operates similarly to a 3 link due to the lack of triangulation and reliance on a panhard/trackbar for axle location. So in this design the Roll Center Height is based mainly on the center of the trackbar (height of the trackbar right in the center of the axle) . This Roll Center Height is basically the imaginary axis your trucks suspension rolls over on. So the higher the RCH the more stable the truck feels. Actually you want to have a RCH right around the center of gravity height. (top of bell housing is a good guess)
So when dropping the FRAME SIDE with a panhard drop mount you lower the Roll center height by about 1" Technically causing more body roll. Compare this to if you raised the panhard mount on the axle side you could raise the Roll center height by an inch.
And if you were to run an extended trackbar you keep it the same.
This is just how it works out on paper. Our rear suspension has horrible roll oversteer and causes even more body roll. So if this few inches of difference makes a noticeable effect is unknown but would be cool to find out. It obviously would have more of an effect with more lift due to the the RCH height further from the center of gravity height. All I know is I cannot get the right RCH iI want without cutting off the trackbar mounts
I am currently working out a 3 link design for the rear of my truck. Its time for a change and the stock brackets are toast. Anyways I was planning on keeping the stock track bar mounts for now. I have been using the 3 link calculator that can be found on pirate.
The thing is our 4 link with a panhard operates similarly to a 3 link due to the lack of triangulation and reliance on a panhard/trackbar for axle location. So in this design the Roll Center Height is based mainly on the center of the trackbar (height of the trackbar right in the center of the axle) . This Roll Center Height is basically the imaginary axis your trucks suspension rolls over on. So the higher the RCH the more stable the truck feels. Actually you want to have a RCH right around the center of gravity height. (top of bell housing is a good guess)
So when dropping the FRAME SIDE with a panhard drop mount you lower the Roll center height by about 1" Technically causing more body roll. Compare this to if you raised the panhard mount on the axle side you could raise the Roll center height by an inch.
And if you were to run an extended trackbar you keep it the same.
This is just how it works out on paper. Our rear suspension has horrible roll oversteer and causes even more body roll. So if this few inches of difference makes a noticeable effect is unknown but would be cool to find out. It obviously would have more of an effect with more lift due to the the RCH height further from the center of gravity height. All I know is I cannot get the right RCH iI want without cutting off the trackbar mounts