.Scott, I believe you are correct that with 6 masses of same size and orbital speed and distance, within a plane, then they should be able to hold their form, a 7th, central star, of either similar or larger mass, would help to stabilize the system. Each of the masses would be at 60 degrees from each other which conforms to the Lagrangian Point form of balance.
Normal Lagrangian Points L3, L4 and L5, along with the 'prime' mass, about a central point, you would need to add points between L3 and L4, and Between L3 and L5 at the same 60 degrees between masses and orbital distance/speed. As far as I know this is the only basic known theoretical stable Kempler Rosette, with 7 masses being the most stable, but it is of a special set of very unlikely configurations for it to happen very often naturally.
3 masses would be subject to outside distortion of orbits with no or diminishing stabilization from the other masses, the old 3-body problem rears it's head. The 6 or preferably 7 mass solution gets around that as it is a self-reinforcing system of reverberations of orbits that is able to maintain a reasonably long-term stability.
However, Space and Time are a very large playground within to work, and all of that energy matters!