Competitive Price for Rubber Gasket/Washer to Grenada Factories
Competitive Price for Rubber Gasket/Washer to Grenada Factories Detail:
Rubber is the most cost-effective material to use where temperature and pressures are low and the chemical environment is mild. Different elastomers offer different mechanical and chemical properties. Cloth&metal inserted materials are better able to handle movement and high compression loads.
Technical Data Sheet
|
Material |
NR, NBR,SBR,BR,IR,CR,EPDM,VITON(FKM),SIR,SILICONE |
|
Hardness |
Silicone about 50~90 shore A, others about 60~90 shore A |
|
Temperature Resistance |
-40~+300℃ |
|
Technology |
Hot pressing or injection Molding |
|
Second Processing |
Vulcanizing/Deburring/silk-screen/Carving/Printing |
|
Quality Control |
Internal QC control |
|
Product Feature |
Oxidation, chemical, oil, acid, alkali, weather resistance |
|
Colorful, anti-aging, good flexibility,good elasticity |
Application Area
l Electron Components
l Medical Equipment
l Home Appliance
l Mechanical Equipment
l Office Facilities
l Aviation
l Construction
l Automobile
Product detail pictures:

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Competitive Price for Rubber Gasket/Washer to Grenada Factories, The product will supply to all over the world, such as: , , ,
Link to project page: https://www.disneyresearch.com/publication/fluid-soft-actuator/
We have developed a new method for puppeteers to remotely control mechanical characters without the use of motors. The pair of robot arms shown in this video are connected only by flexible pneumatic tubing. There are no pumps, valves, sensors, motors, or electronic controllers used. The passive connection between the two arms is made entirely by air pressure, allowing a large separation between the character and the puppeteer, and tight bends in the air control lines. The key technology is an ultra-low friction pneumatic transmission, enabled by the use of rolling diaphragm seals, instead of traditional sliding o-ring seals. If motorized, the transmission allows the motors to be placed in the body, rather than mounted to the arm, leaving the arms much lighter, and capable of faster and more graceful motion. The robot arm in this video was designed and built by Tianyao Chen, Peter Whitney, and Jessica Hodgins.





