Subject: Changing the shape of wing design using "digital materials"
From: paul lamar
Date: 11/4/2016, 8:02 PM
To: A10-Me-Earthlink


Changing the shape of wing design using "digital materials"

Though we're used to airplane wings with moving flaps that control
the craft's movements, the first flying machine built by the Wright
brothers in 1908 used a different technique called wing warping.
Instead of tilting airfoils attached to the trailing edges of wings,
warping uses wires and pulleys to alter the shape of wood and canvas
wings to perform the function that ailerons and flaps do in modern
airplanes.

According to the NASA/MIT team, there have been numerous attempts to
revive this technology, but these have relied on mechanisms inside
the wing to bend it. The problem has been that this machinery
usually turns out to be too heavy and complicated, which offsets any
increases in aerodynamic efficiency.

A newly developed wing architecture could greatly simplify the
manufacturing process and reduce fuel consumption by...

The NASA/MIT approach is to not just do away with the internal
mechanism, but to fundamentally redesign the structure of the wing
so it is capable of bending by itself. The design achieves this by
dividing the wing into lightweight, overlapping scale- or
feather-like sub-segments. These are supported by tunable and
actively deformable modular building blocks, dubbed "digital
materials," that are made of carbon fiber-reinforced polymers that
can be quickly engineered and snapped together and allow the wing to
deform while maintaining a smooth, aerodynamic surface.

This modular approach would allow the individual support pieces to
be mass produced and combined in an almost endless variety of
shapes, which could be constructed by simple minature robots that
crawl along the exterior or even the interior of the structure as it
is constructed. Though the researchers have already developed
prototype robots, they built the initial test structure by hand and
used skin panels instead of scales that would be used the ultimate
version.

The units used were morphed manually using two small motors to twist
the wingtips and bend the wing uniformly along its entire length.
The purpose of this test piece was to get the wing to twist in the
same manner as if it was made of separate scales instead of panels
by fine-tuning the structure so it twists on command into the
desired aerodynamic shape.

So far, wind tunnel tests have shown the test wing has aerodynamic
properties of a conventional wing weighing 10 times more. The team
then built a drone aircraft flown from the ground by a certified
test pilot, who found it responsive enough to do aerobatics.

Gershenfeld sees this technology as not only leading to
super-efficient long-range drones, but as having applications beyond
aerospace engineering, inlcuding in wind turbines, skyscrapers,
bridges, and space structures. It could also be used to create soft
robots that can bend wherever desired without joints, are lighter
than equivalent robots, yet can maintain the desired level of
stiffness for the job. Repairs of machines built with the units
would be cheaper and easier as damaged units could be replaced by
maintenance robots with new ones.

MIT <http://news.mit.edu/2016/morphing-airplane-wing-design-1103 View
gallery - 5 images

John Dinkel

Where are the puns?  :-)

Paul Lamar


Paul,
On an even less punishing note.  A I read these advances in aero, I think to myself that we are on the cusp of our ability to control and develop materials that will take us to the stars.  Can our control of gravity, magnetism and dark matter be that far in the future?  Maybe 10 years????

Or maybe we’ve had much of this tech since Roswell . . .
John Dinkel


IMHO all the space stuff is a huge waste of money.

Paul Lamar


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