Wednesday, July 27, 2016

New remote-controlled microrobots for medical operations



For the past few years, scientists around the world have been studying ways to use miniature robots to better treat a variety of diseases. The robots are designed to enter the human body, where they can deliver drugs at specific locations or perform precise operations like clearing clogged-up arteries. By replacing invasive, often complicated surgery, they could optimize medicine.
EPFL scientist Selman Sakar teamed up with Hen-Wei Huang and Bradley Nelson at ETHZ to develop a simple and versatile method for building such bio-inspired robots and equipping them with advanced features. They also created a platform for testing several robot designs and studying different modes of locomotion. Their work, published in Nature Communications, produced complex reconfigurable microrobots that can be manufactured with high throughput. They built an integrated manipulation platform that can remotely control the robots' mobility with electromagnetic fields, and cause them to shape-shift using heat.
A robot that looks and moves like a bacterium

Unlike conventional robots, these microrobots are soft, flexible, and motor-less. They are made of a biocompatible hydrogel and magnetic nanoparticles. These nanoparticles have two functions. They give the microrobots their shape during the manufacturing process, and make them move and swim when an electromagnetic field is applied.
Building one of these microrobots involves several steps. First, the nanoparticles are placed inside layers of a biocompatible hydrogel. Then an electromagnetic field is applied to orientate the nanoparticles at different parts of the robot, followed by a polymerization step to "solidify" the hydrogel. After this, the robot is placed in water where it folds in specific ways depending on the orientation of the nanoparticles inside the gel, to form the final overall 3D architecture of the microrobot.
Once the final shape is achieved, an electromagnetic field is used to make the robot swim. Then, when heated, the robot changes shape and "unfolds." This fabrication approach allowed the researchers to build microrobots that mimic the bacterium that causes African trypanosomiasis, otherwise known as sleeping sickness. This particular bacterium uses a flagellum for propulsion, but hides it away once inside a person's bloodstream as a survival mechanism.

The researchers tested different microrobot designs to come up with one that imitates this behavior. The prototype robot presented in this work has a bacterium-like flagellum that enables it to swim. When heated with a laser, the flagellum wraps around the robot's body and is "hidden."
A better understanding of how bacteria behave
"We show that both a bacterium's body and its flagellum play an important role in its movement," said Sakar. "Our new production method lets us test an array of shapes and combinations to obtain the best motion capability for a given task. Our research also provides valuable insight into how bacteria move inside the human body and adapt to changes in their microenvironment."
For now, the microrobots are still in development. "There are still many factors we have to take into account," says Sakar. "For instance, we have to make sure that the microrobots won't cause any side-effects in patients."

Story Source:
The above post is reprinted from materials provided by Ecole Polytechnique Fédérale de LausanneNote: Materials may be edited for content and length.

Monday, July 25, 2016

Awesome Brick Creator



Amazing



REFINING OF CRUDE OIL


Ever wondered what the refining of crude oil Entails to get subsidiary products like

AGO - Automotive Gas & Oils ( Diesel/Gas)

DPK - Dual Purpose Kerosene. Actually it is multi-purpose kerosene for highway and non-highway use (turbine engines, farm equipment, railroad equipment, etc) 

PMS - Premium Motor Spirit. Another name for gasoline. 

Jet A1 - Common jet engine fuel with a lower freezing temperature than Jet-A


Well watch a Simulation of the fractional distillation of crude Oil into these various components Below:
















COULSON AND RICHARDSON 4TH EDITION

You Can hardly graduate as a Chemical Engineer, without a copy of this....





Shear and Moment, a Prerequisite For Civil Engineering Constructions

Ever wondered How well calculated, Construction and erection of bridges Stand solidly on platforms? Building of sky scrapers and tower that withstand tonnes of wind and instructions plus weights and loads....
Well!don't think too far... Shear and Moments help Engineers Do the tricks.
A bending moment is the reaction induced in a structural element when an external force or moment is applied to the element causing the element to bend.






How Engineers see things


Pal V- One The Flying Car

The PAL-V ONE is a two seat hybrid car and gyroplane: a personal air and land vehicle. What makes the PAL-V ONE attractive is the convenience of fully integrated door-to-door transportation.On the ground this slim, aerodynamic, 3-wheeled vehicle has the comfort of a car with the agility of a motorcycle thanks to its patented, cutting-edge, ‘tilting’ system. It can be driven to the nearest airfield and take off just like any other airplane. The single rotor and propeller are unfolded to make the PAL-V ONE ready to fly.When airborne, the PAL-V ONE usually flies below 4,000 feet (1,200 m), the airspace available for uncontrolled Visual Flight Rules (VFR) traffic; so there will be no interference from commercial air traffic. Furthermore, the PAL-V ONE is powered by a very robust, flight certified aircraft engine. It runs on gasoline. It can reach speeds of up to 180 km/h (112 mph) both on land and in the air.The PAL-V ONE has a very short take off and landing capability, making it possible to land practically anywhere. When not using controlled airspace, you can take off without filing a flight plan. Flying a PAL-V ONE is like a standard gyroplane. It is quieter than helicopters due to the slower rotation of the main rotor. It takes off and lands with low speed, cannot stall, and is very easy to control. The gyroplane technology means that it can be steered and landed safely even if the engine fails, because the rotor keeps auto rotating.


watch Video below