Tungsten Alloy Radiation Wall
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- Category: Tungsten Information
- Published on Thursday, 27 June 2013 16:29
Compared to traditional radiation shielding materials such as lead and boron carbide, tungsten alloy radiation shielding provides excellent density combined with small volume. At the same weights tungsten alloy radiation shielding with-high density alloy can provide the same energy absorption as lead using 1/3 less space.
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 radiation shielding.
Tungsten alloy radiation wall is based on the principle of attenuation, which is the ability to reduce a wave or ray’s effect by blocking or bouncing particles through a barrier material. Charged particles may be attenuated by losing energy to reactions with electrons in the barrier, while x-ray and gamma tungsten alloy radiation wall are attenuated through photoemission, scattering or pair production. Neutrons can be made less harmful through a combination of elastic and inelastic scattering, and most neutron barriers are constructed with materials that encourage these processes. Tungsten alloy radiation wall offered by us is of highest quality.
Radiation is a serious concern in nuclear power facilities, industrial or medical x-ray systems, radioisotope projects, particle accelerator work, and under number of other circumstances. Tungsten alloy radiation wall can protect us from it. Containing radiation and preventing it from causing physical harm to employees or their surroundings is an important part of operating equipment that tungsten alloy radiation wall emits potentially hazardous rays. Preserving both human safety and structural material that may be compromised from radiation exposure are vital concerns, as well as tungsten alloy radiation wall, such as electronic devices and photographic film in tungsten alloy radiation wall. Tungsten alloy radiation wall is our leading products.
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Tungsten Shielding Blanket
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- Category: Tungsten Information
- Published on Thursday, 27 June 2013 16:21
Traditionally, lead has been the product of choice for radiation shielding. Tungsten shielding blanket has the ability to field-fit, providing for attenuation of radiation totaling from 5 to 10 person-Rem/years than provided by the equivalent weight of traditional lead blanket. And since tungsten is thinner and weighs as much as 50 percent less than lead, it may be more forgiving when workers are performing the physical activities required in a nuclear power plant.
The density of tungsten shielding blanket is similar thickness than lead blankets. And highly flexible and can be molded/formed into any shape. It often competitively priced to lead alternatives. It will engineer and fabricate specialized profiles, slabs and ribbon, including lockable "High Rad" applications.
Here, the method described above has an effect of preventing direct reaction of Ti and WF.sub.6 when an adhesion layer is a laminated layer of Ti/TiN films and a tungsten shielding blanket is formed on the adhesion layer. A direct reaction of Ti and WF.sub.6 will form a solid substrate which will exhibit a volume expansion and become a cause of peeling-off of a layer.
When an adhesion layer for forming a tungsten shielding blanket is formed by sputtering, the substrate is often fixed on a mount using a holder or hooks. At portions under these hooks, a SiO.sub.2 film which is an inter-layer insulating layer is exposed because almost no film is formed under the hooks by sputtering. When a tungsten shielding blanket grows on the exposed SiO.sub.2, the tungsten shielding blanket is easily peeled off because of weak adhesion anti particles are produced.
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Tungsten Alloy Crankshaft Block
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- Category: Tungsten Information
- Published on Thursday, 27 June 2013 16:14
The tungsten alloy crankshaft, commonly called crank, is the part of an engine which has the function of translating reciprocating linear piston motion into rotation with the component of "crank throws" or "crankpins", It typically connects to a flywheel to reduce the pulsation characteristic of the four-stroke cycle, and sometimes there is a tensional or vibration damper at the opposite end for the purpose of reducing the torsion vibrations caused along the length of the crankshaft by the cylinders farthest from the output end acting on the tensional elasticity of the metal. The tungsten alloy crankshaft block is grinded to increase the mixture flow and has a special shape to reduce turbulences inside the crankcase.
The application of tungsten alloy crankshaft block is an exercise in compromise. Depending upon the engine’s number of cylinders, crank configuration, and firing order, the mass properties and location of counterweights can vary. Counterweights can balance dynamic loads and couples, tungsten alloy crankshaft block can be used to alter tensional shaft dynamics, and they can be used to reduce main bearing radial and pin bending loads.
With a crank design that has limited throw clearance in the sump, like an F1 engine, using a counterweight material with high density (like tungsten) minimizes the radial space needed for a given counterweight.
From a technical point’s view, no engine regardless of the application can benefit from balancing. As tungsten alloy crankshaft block has high density, so adding tungsten alloy crankshaft balance weight into the racing car has good effected in optimizing the performance of the racing car during the racing progress. Tungsten alloy crankshaft block contributes to the better control of the car's movement.
Tungsten alloy crankshaft block often used to counterweight. The tungsten alloy crankshaft block counterweight means that the sum of all the forces is roughly equal to zero at any point in the assembly's rotation, of which the operation is done by the tungsten alloy crankshaft counterweights. It is critical that the crankshafts must be balanced to customized rod and piston combination.
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Tungsten Alloy Mobile Radiation Shielding
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- Category: Tungsten Information
- Published on Thursday, 27 June 2013 16:09
Mobile radiation is energy traveling through space in the form of waves or particles. Mobile radiation occurs naturally and has always been around, we've evolved with mobile radiation and we're bombarded with it in one form or another every day of our lives - from the earth, from space and even within our own bodies. Some experts suggest a little mobile radiation is a good thing and we all know of its uses in medical science to combat and diagnose some illnesses.
Tungsten alloy mobile radiation shielding is designed for managing large quantities of high-energy radionuclide. A convenient lever allows quick adjustment of window to optimal angle for any user and procedures. A special plate with a hex-shaped recess is mounted on the base to facilitate one-handed loading and unloading of dose pigs incorporating hex-shaped bottoms.
With high density and small volume, tungsten alloy material is now widely used for making tungsten radioactive shielding to protect body from radiation. Tungsten alloy mobile radiation shielding can provide a wide field excellent body protection. Two models are offered with varying sized tungsten alloy products.
Compared to traditional radiation shielding materials such as lead and boron carbide, tungsten alloy mobile radiation shielding provide excellent density with small capacity. At the same weights high density alloy can provide the same energy absorption as lead using 1/3 less material. When the weight is certain, more density, and the thickness would be thinner. Tungsten alloy material could be made with thinner thickness but high absorption of radiation in high density. That is why tungsten radioactive shielding is been more and more widely used.
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Tungsten Alloy Nuclear Radiation Shielding
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- Category: Tungsten Information
- Published on Thursday, 27 June 2013 16:02
Tungsten alloy nuclear radiation shielding can be broadly classified into three categories. These three categories are labeled with the first three letters of the Greek alphabet: α(alpha), β (beta) and γ (gamma). Alpha radiation consists of a stream of fast-moving helium nuclei (two protons and two neutrons). As such, an alpha particle is relatively heavy and carries two positive electrical charges. Beta radiation consists of fast-moving electrons or positron (an antimatter electron). A beta particle is much lighter than an alpha, and carries one unit of charge. Gamma radiation consists of photons, which are without mass and carry no charge. X-rays are also photons, but carry less energy than gammas. Some materials absorb beta rays. You can measure this absorption by fixing beta source and a radiation monitor so their positions do not change.
Tungsten heavy alloy has high absorption rate on X rays and gamma rays. Tungsten is 60% better than lead in shielding against X rays and gamma radiation therefore; it can be significantly reduced in size.
Tungsten alloy nuclear radiation shielding also has another characteristic, very high melting point. By this, tungsten alloy nuclear radiation shielding can be used in high temperature which can not be used with lead, for example nuclear scrap container.
Due to its unique characteristics, people use tungsten alloy nuclear radiation shielding in medicine, Tungsten alloy nuclear radiation shielding, such as collimator, tungsten alloy nuclear radiation shielding, beamline, PET syringe shield, vial shield, tungsten alloy nuclear radiation shielding is used to protect workers from the radioactive sources of the scanner used in security and aerodrome, coach stop, etc. Tungsten alloy nuclear radiation shielding is also used in the equipment of industrial radiography, pipe-line inspection (collimator or tungsten alloy nuclear radiation shielding).
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Hot Swaging of Sintered Tungsten Alloy Rod
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- Category: Tungsten Information
- Published on Wednesday, 26 June 2013 18:34
Sintered tungsten alloy rod can not be worked mechanically while cold. It is so hard that it cannot be machined by sharp edge tools, but has to be brought into desire shapes by high temperature hammering or cold grinding. The rough anode head for the Universal tube is formed from a sintered tungsten alloy rod in a swaging machine which is a nicely controlled high speed hammer used in this case to reduce, by successive operations the diameter of the a sintered tungsten alloy rod.
Sintered tungsten alloy rod is heated to about 1600°C in an atmosphere of hydrogen gas in an electric furnace, and is then rapidly passed through, the swaging machine. In this operation the diameter of sintered tungsten alloy rod is reduced 10 percent. The rod is then re-heated in the furnace and is ready for the next pair of swaging dies, which will again reduce its diameter by 10 per cent. When the rod is at the required diameter for the head of the anode, the end of the rod only is swaged down to form the taper and straight portion to which the molybdenum stem is attached. After rough grinding to approximate size and shape, the anode head and molybdenum stem are swaged together. The assembly is completed by the addition of an iron collar and a thin metal tube and the finished anode is then polished and very carefully cleaned.
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Tungsten Alloy Particle Accelerator
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- Category: Tungsten Information
- Published on Wednesday, 26 June 2013 18:04

Accelerator is short for tungsten alloy particle accelerator. There are various kinds of tungsten alloy particle accelerator. According to the different energy of particles being accelerated, tungsten alloy particle accelerator can be classified into high energy particle accelerator (GeV grade), moderate energy particle accelerator (above 2000MeV) and low energy particle accelerator (below 50MeV). Based on the different accelerating orbit of particles being accelerated, tungsten alloy particle accelerator can be classified into liner accelerator and cyclotron.
Electronic liner accelerator and electronic induction accelerator used for radiotherapeutics belong to low energy tungsten alloy particle accelerator. Electronic liner accelerator belongs to liner accelerator. Electronic induction accelerator is attributed to cyclotron. Electron energy output by electronic liner accelerator is usually 5~40MeV and electron energy output by electronic induction accelerator is usually 4~45MeV. The two accelerators can transfer electron into X-ray through target.
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Tungsten Alloy Radiation Shielding for Ionizing Radiation
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- Category: Tungsten Information
- Published on Tuesday, 25 June 2013 18:04
Ionizing radiation refers to electromagnetic radiation and ionizing radiation which can make atom or atomic group produce ionization. Electromagnetic radiation which can cause ionization contains X-ray and γ-ray. Ionizing radiation contains α-ray, β-ray, neutron, proton and other charged particle. In nuclear medical, primary source of radioactivity is various kind of radioactive medicine, unsealed source also called as open source. Its characteristic is spreading easily and polluting working space and environment. Working space of operating unsealed source has externalir radiation exposure caused by X-ray, γ-ray andβ-ray. It also has internal radiation exposure caused by radionuclide which is produced by radioactive pollution entering into organism.
In recent years, PET/CT centers have been established in some large medical therapy units gradually, in China. Source of radioactivity is more complicated. It comes from the externalir radiation exposure and internal exposure radiation caused by radionuclide of positron which utilized by tungsten alloy PET and marked medicine. It also comes from externalir radiation exposure produced by tungsten alloy CT. It even comes from externalir radiation exposure and induced radioactivity caused by small cyclotron when producing radioactive element and internal radiation exposure caused by pollution of radionuclide. Tungsten alloy radiation shielding can be used for protecting doctors and patients from ionizing radiation.
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Swaged Tungsten Rods
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- Category: Tungsten Information
- Published on Tuesday, 25 June 2013 16:41
Swaged tungsten rods are frequently swaged. After the centerless grinder proces, the surface intergrity and accuracy of the diameter are improved. They can be produced in a variety of near-final shapes, but the most frequently encountered shape is cylindrical rods.
After being swaged, tungsten rods will greatly enhance their tensile strength from 1050 MPa to 1200 MPa at least. Tungsten swaging rods are produced by Forging and sintering tungsten rods into billets and swaging into rods.
Features:
1.Swaged tungsten rod's tensile strength is better than the same kind of tungsten alloy rod;
2.The diameters of tungsten alloy rod through swaging can reach 3mm or larger;
3.The single weight of the common rod can reach 100 kilograms.
Advantages of Swaged Tungsten Rods:
Titanium is also a popular used material for producing swaging rod. It possesses high strength, toughness, durability, corrosion resistance and biological compatibility physical qualities. However, Titanium's density is much lower than tungsten, which makes it difficult in the situation of needing high mass with limited volume. Relatively speaking, swaged tungsten rod is with high density, high melting point, excellent hardness, high tensile strength, high temperature resistance, superior wearing resistance and low vapor pressure. Therefore, swaged tungsten rod gradually stands out among the various swaging rod making materials.
Parameter of Swaged Tungsten Rods:
Diameter (mm) Length (mm)
Ø3.0 - 6.0 >6000
Ø6.0 - 10.0 >5500
Ø10.0 - 15.0 >4000
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Tungsten Poly Radiation Shielding
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- Category: Tungsten Information
- Published on Tuesday, 25 June 2013 15:59
Tungsten poly combines tungsten powder and poly, so it has the good properties of tungsten alloy and poly, such as: high radiation shielding, high temperature resistance, high density, low cost, non-toxic and environmentally friendly.
As these good advantages , tungsten poly is the best material and first choice to make radiation shielding. Compared with lead in radiation shielding material, tungsten poly weights less than lead, tungsten poly radiation shielding is more durable than other lead substitutes and offers equal or better radiation shielding capabilities, the most important point is that tungsten poly is lead-free, and non-toxic, so more and more radiation shielding are made from tungsten material instead of lead, especially the radiation shielding used in medical field such as: tungsten poly collimator, tungsten poly PET, tungsten poly syringe shielding and so on.
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