professional factory provide Die Formed Graphite Ring for Bahamas Factories
professional factory provide Die Formed Graphite Ring for Bahamas Factories Detail:
Die formed graphite packing ring is made of pure flexible graphite ,or Graphite with inconel /SS316/Brass wire reinforced.
Performance and Features
- Perfect self lubricant performance.
- High elasticity coefficiency.
- Scope of Application
Working temperature:~200~400℃(200~800℃ under non-oxidation atmosphere)
Working pressure:≤35MPa
Density:1.4 ~ 1.6 g/cm3
Product detail pictures:

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professional factory provide Die Formed Graphite Ring for Bahamas Factories, The product will supply to all over the world, such as: , , ,
Airtech offers a variety of quality vacuum Valves (MV407, VV402A, VV406TF, VV509, VV519, & VV425). In this video, we are highlighting the following:
Premium MV407
• Solid body designs combines the male quick disconnect & thru-bag connector, eliminating potential leak paths.
• Stainless steel construction ensures corrosion resistance & long life.
• Viton O-ring & platinum cured silicone gasket give a long service.
• Wide open design of internal mechanism allows easy inspection & repair, saving time and cost.
VV402A
• Made of lightweight aluminum for easy handling.
• Threaded locking ring creates a tight mechanical seal, reducing potential leaks.
VV406TF
• Made of machined stainless steel with a threaded base plate ensures corrosion resistance & long life.
• Machined raised ring on the base and high temperature silicone seal provide a positive seal, eliminating potential leaks.
VV509, VV519, and VV425
• Self-cutting — perforates the bagging film when the top piece is inserted and threaded into the base plate. No knives or scissors needed.
For more information, please visit: www.airtechonline.com
Link to project page and press release: https://www.disneyresearch.com/project/paper-generators/
We present a new energy harvesting technology that generates electrical energy from a user’s interactions with paper-like materials. The energy harvesters are flexible, light, and inexpensive, and they utilize a user’s gestures such as tapping, touching, rubbing and sliding to generate energy. The harvested energy is then used to actuate LEDs, e-paper displays and other devices to create interactive applications for books and other printed media.




