New universal tungsten alloy vial shield with outer acrylic window protection. Two large lead glass windows set at 180°. Base contains spring to hold vial against top orifice. Supplied with plastic cup to hold small diameter vials centrally against orifice. Push-on plastic cap with lead insert provides complete shielding and protects vial septum.
Tungsten alloy vial shielding with lead gladd attenuates beta and bremsstrahlung radiation
Inside height and diameter sized specifically for Y-90 reaction vial
Pivoting aperture cover for quick and convenient access to vial septum
Removable top and bottom to minimize exposure during vial transfer
Dimensions: 2.2Øx3.2" H (56x81mm)
Inside Dimensions: 1.06Øx 2" H (40x 51mm)
2013-10-12
2013-08-31
Chinatungsten Could Offer High Quality Tungsten Alloy Shielding
Chinatungsten could offer shielding for laboratory equipment and associated products. They are mainly of tungsten alloy radiation shield and containment page.
You could find a variety of beta and gamma shielding - particularly suitable for users of high energy beta emitters like P-32, and those using I-125/Cr-51. They also provide a large range of shielded handling boxes and waste containment bins.
Chinatungsten would also advise that you consult with radiation protection adviser if you are not sure about your shielding requirements.
You could find a variety of beta and gamma shielding - particularly suitable for users of high energy beta emitters like P-32, and those using I-125/Cr-51. They also provide a large range of shielded handling boxes and waste containment bins.
Chinatungsten would also advise that you consult with radiation protection adviser if you are not sure about your shielding requirements.
Tungsten Alloy is Suitable for Gamma Radiation Shielding
Gamma radiation and X-rays are absorbed most effectively by high-density materials. Chinatungsten high-density materials are a family of tungsten-based materials with densities 50% greater than that of lead.The high-density, good mechanical strength and excellent machinability of Chinatungsten materials make them ideal for shielding applications. A variety of sizes and shapes are available.
Property:
Tungsten content(wt%): 90-97
High density 16.0~18.5g/cm3
High strength 580~950Mpa
Good corrosion-resistant
Good machining property
High thermal conductivity
Low coefficient of thermal expansion
High mass absorption coefficient
Property:
Tungsten content(wt%): 90-97
High density 16.0~18.5g/cm3
High strength 580~950Mpa
Good corrosion-resistant
Good machining property
High thermal conductivity
Low coefficient of thermal expansion
High mass absorption coefficient
Tungsten Alloy is Superior to Traditional Shielding Material
Compared to traditional radiation shielding materials, tungsten alloys provide excellent value. A high-density alloy can provide the same energy absorption as lead using 1/3 less material! Unlike lead, you’ll also reduce administration costs by eliminating the need to obtain special licensing, it’s not required.
Clients all across the globe are taking advantage of tungsten alloy’s reliable radiation shielding properties. If you need to protect yourself, your patients or your equipment from the harmful effects of excess radiation.
Chinatungsten could offer finished machined parts as rod, bar, sheet, strip, blank and rectangular blocks.
Clients all across the globe are taking advantage of tungsten alloy’s reliable radiation shielding properties. If you need to protect yourself, your patients or your equipment from the harmful effects of excess radiation.
Chinatungsten could offer finished machined parts as rod, bar, sheet, strip, blank and rectangular blocks.
Tungsten Alloy as Radiation Protection Materials
The radiation shielding effects of some tungsten alloy was evaluated usig 133Ba(356 keV) and 137Cs(660 keV)γ-ray sources. Tungsten carbide had about the same effect as the commonly used lead, while tungsten copper alloy gave as good a performance as tungsten. The results of transmittance measurements for these materials, as well as of their Monte-Carlo simulation, are reported.
The denser the material, the better able it is to protect from radiation. That is why tungsten alloy material absorb X-rays and gamma radiation particularly well. Lead is still the most frequently used shielding material. Because it is a very soft material, it is mostly used only in combination with support structures made of steel.
The denser the material, the better able it is to protect from radiation. That is why tungsten alloy material absorb X-rays and gamma radiation particularly well. Lead is still the most frequently used shielding material. Because it is a very soft material, it is mostly used only in combination with support structures made of steel.
Tungsten Alloy Shielding for Plasma Accelerator
Tungsten alloy shielding for plasma accelerator is used to protect
staffs from radiation. Depending on heaviest density but small capacity,
tungsten alloy material is more and more popular be used for making
tungsten alloy shielding to protect body from plasma accelerator
radiation. Compared with lead, tungsten alloy is much smaller but with
heavier density, which is very helpful for high radiation absorption. It
is more than 60% denser than lead, meanwhile, it has excellent
machinability, good corrosion resistance. The most important thing is
that, tungsten alloy is environment-friendly.
Tungsten Alloy Radiation Focusing Ring
Compared to traditional radiation shielding materials such as lead and boron carbide, tungsten alloy radiation shieldings provide excellent density with small capacity. At the same weights tungsten alloy radiation shielding with high density alloy can provide the same energy absorption as lead using 1/3 less material.
When the tungsten alloy radiation shielding weight is certain, more density, more denser, and the thickness would be thinner. Tungsten alloy radiation shielding material could be made with thinner thickness but high absorption of radiation in high density. That is why tungsten alloy radiation shielding material is suitable for raidation shielding.
When the tungsten alloy radiation shielding weight is certain, more density, more denser, and the thickness would be thinner. Tungsten alloy radiation shielding material could be made with thinner thickness but high absorption of radiation in high density. That is why tungsten alloy radiation shielding material is suitable for raidation shielding.
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