Automatically deformation of the structure of 3 d printing < br / > < br / > < br / > deformable structure of 3 d printing is an interesting branch of the studies on the 3 d printing.
The characteristics of this kind of structure can be told through programming from one form into another form, but generally must have heat, electricity, the stimulation of the external conditions such as water.
Recent rapid manufacturing
service companies, famous universities break this phenomenon at the Massachusetts institute of technology -
their computer science and artificial intelligence laboratory has developed a new 3 d printing since the folding structure, it can automatically without any external stimuli deformation, just remove from the YinChuang will instantly since folded into another way.
< br / > isn't it interesting?
What is a principle?
Rapid manufacturing services companies understand that this is mainly because the structure of the layers above and below a few layers of a new material has been adopted.
Change material in the printing is complete and will stretch after curing, unlike other material shrinkage.
SO, once the entire structure will be taking it from stamp pad, its top and bottom stretching immediately, thus promote the whole structural deformation.
And deformation are in the process of printing not occurred mainly because of the structure under the platform and the surface bonding strength is very good.
< br / > other, according to MIT team such a interesting features of the new material and structure material in the molecular chain.
These molecular chains are composed of isooctyl acrylate monomer, but has long have short.
When will the material after printing layer is uv-curing, one of the long chain will link up, form a complicated network in fault.
At the same time when the second printing layer is completed, the short chain will infiltration has been cured in the first layer.
There, a short chain and long chain can form a kind of tension, which is the structure is removed immediately after the deformation of the main reasons.
< br / > < br / > one of the most interesting is that the team has succeeded to control the structure of the folding Angle.
In the lab, they set up a point of view, and then forced the structure of the four legs open to a greater Angle.
But when the external force disappears, Angle will quickly return to the original level.
< br / > for this kind of 3 d printing material, the team considered to be smart with complex 3 d structure of the sensor, display screens and antenna.
Maybe in the near future, it may also can be used for 3 d printing robot.
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