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Lead Shielding

Lead shielding refers to the use of lead as a form of radiation protection to shield people or objects from radiation so as to reduce the effective dose. Lead can effectively attenuate certain kinds of radiation because of its high density and high atomic number; principally, it is effective at stopping gamma, and x-rays. Lead is used for shielding in x-ray machines, nuclear power plants, labs, military equipment, and other places radiation may be encountered. There is great variety in the types of shielding available both to protect people and to shield equipment and experiments. Personal shielding includes lead aprons (such as the familiar garment used during dental x-rays), thyroid shields, and lead gloves. There are also a variety of shielding devices available for laboratory equipment, including lead castles, structures composed of lead bricks, and lead pigs, thick containers for storing and transporting
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Magnetic Shielding

Magnetic fringe field from the magnet can extend outside the room based on the set of magnetic field. The magnetic shielding which can be calculated based on the equipment and surrounding requirement, Shielding contains the field strength without the periphery of the room, thereby It can reduce the image quality issues due to moving magnetic permeable items around the MRI. Frank Shields uses passive shielding using magnets permeable mentioned on the walls, floors & ceiling partially or fully based on the site requirements. The final aim is to contain the 5 gauss line in a safe limit around the magnet. Shielding refers to the magnetic field outside the magnet bore. Passive shielding is the placement of heavy ferromagnetic plating in the walls or floor of the magnet room or even the magnet itself. This concentrates magnetic flux lines, reducing the fringe field beyond the shielding. Passive shielding (see also Faraday cage) significantly eases the problems of siting a MR Image in a confined space. Ferromagnetic objects are less prone to being attracted to the magnet, ancillary electronic equipment, credit cards and computer disks can be brought closer to the magnet and the MRI safety limit for pacemaker wearers (the 5 gauss line = 0.5 mT) is reduced from, typically, 10 m to 2 m from the magnet. A passive shield for a whole-body MRI magnet weights many tons. An alternative method of controlling stray field is active shielding.
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Aluminium Shielding

Aluminium Shielding:It is a wood core with laminated aluminium on both sides of the core.It's more costly compare to copper and G.I shielding.
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Galvanized Iron Shielding

Galvanized Iron Shielding(G.I):It is a wood core with laminated metal on both sides of the core. A vapor barrier is placed on the floor to isolate the shield from the ground. Frank shields has teams of professionals in many disciplines who will ensure.
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Copper Shielding

The copper modular MRI shielding enclosure by Frank shields combines the high shielding effectiveness of copper with a modular construction that is self-supporting. This MRI shielded enclosure provides greater.
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  • Arceli (Frankshield Medical Equipment LLC)
  • , Dubai, United Arab Emirates
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