by Dayhead » Sun Jun 05, 2016 1:35 pm
I was writing as a critic on the Otto 45 thread, and I thought this may be a better place.
The basic outline for my design-in-waiting is a straight wing with a close-coupled tail, I just love looking at Otto's design and "imagineering" what it could have evolved into.
My design will have a main wing spar located at about 30% of the chord, but out in the far wingtip area it will end up much further forward, so that as loads increase due to turbulence or from maneuvering the tip area will twist and vent the extra load. This is in keeping with my desire to make the glider as light as possible.
When we strengthen a glider we add weight. Present HG designs are advertised as having been tested to carry a load rated in the US in pounds, I think it's around 1200 lbs. They aren't certified to a certain G load, but for the sake of argument let's call it 6 G's.
It seems to me that a hg capable of creating 1200 lbs of lift would weigh more than one that can only pull 600 lbs.
So my idea is to build a structure that vents extra loading past the 2G limit. I don't have any need to exceed 2G's in normal everyday soaring.
The wing will be made using materials that can bend a lot without breaking. Perhaps a spar with carbon caps and a flexible foam core would work.
The goal will be to have an airframe that maintains it's desired shape up to about the 2 G point, then as the G loading goes higher the wing bends in such a way that outboard dihedral and twist, or washout if you prefer, increase dramatically, to the point where the glider simply can't pull any more G's.
The radical distortion will increase drag greatly, rapidly slowing the glider. When the load experienced by the wing is reduced sufficiently it will return to it's regular shape.
So an engineer of such materials will be needed to make the spar so that it is stiff enough to maintain shape up to the 2G limit, and then start twisting and bending radically as loads increase.
It seems to me, an admittedly uneducated guy, that this would be one way of reducing glider weight.
I remember having a conversation with one of the Wills boys back in I guess '79 or '80 about the truck testing of HG's. He said that while testing the Raven for positive loading the airframe distorted so much that they had trouble overcoming it's drag enough to reach their goal. He said that based on his observations, the Raven probably could not be broken under positive G load while flying. Supposedly a pilot simply couldn't reach the breaking point because, while on the way there, the huge distortion would slow the glider rapidly.
Perhaps the spar could be built in such a manner as to be "preloaded", in a similar way as our leading edges in our current designs are, by pushing them into the "luff curve" sewn into the sail. This would allow the spar to maintain a desired shape up to a predetermined load, then suddenly begin distorting after that.
This would likely prevent aerobatic flight, other than rolls and wingovers anyway.
I'm looking forward to hearing from you guys about this, as weight reduction is foremost on my mind, second only to safe splat.
Steve