Camber adjustment system
A system for camber adjustment in a motor vehicle comprises installing an adjustable lower control arm in the vehicle. The adjustable lower control arm comprises a first component configured to couple to a front wheel of the vehicle, and a second component configured to adjustably assembly to the first component and which supports a connector element configured to couple to the vehicle's frame.
1. A method for camber adjustment in a motor vehicle, comprising:
installing an adjustable lower control arm in the vehicle, the adjustable lower control arm including a first component configured to couple to a front wheel of the vehicle, and a second component configured to adjustably assemble to the first component and which supports a connector element configured to couple to the vehicle's frame,
wherein the first component and the second component are in lateral slidable engagement that allows for adjustment in a lateral length of the control arm,
wherein the adjustable lower control arm further includes at least one elongated slot provided in one of the first component or the second component, and at least one bolt hole provided in the other one of the first component or the second component,
wherein the bolt hole aligns continuously with the elongated slot as the position of the first component is laterally adjusted with respect to the second component,
wherein the aligned bolt hole and slot are configured to receive at least one first fastener aligned in a first direction;
the method further comprising sliding the first component relative to the second component to achieve a desired camber angle;
securing the first component to the second component using said first fastener; and
reinforcing securement of the first component to the second component via at least one second fastener aligned in a second direction traverse to the first direction of the first fastener and inserted through aligned reinforcement slots within the first component and the second component.
2. The method of claim 1 , wherein the first component comprises a block structure, and the second component comprises a receptacle box structure configured to slidably receive the block structure of first component.
3. The method of claim 2 , wherein the first component includes the elongated slot, and the second component includes the bolt hole configured to receive the first fastener.
4. The method of claim 3 , wherein the first component includes two elongated slots which are symmetrically disposed within the first component.
5. The method of claim 1 , wherein the adjustable lower control arm is used to replace an existing non-adjustable lower control arm in the vehicle.
6. The method of claim 1 , wherein the vehicle is a FORD® Transit Van.