Tungsten alloy collimator is made of tungsten nickel iron alloy, which is ideal for this purpose because they have a high density and can effectively absorb radiation.
The tungsten alloy collimator contains and directs the beam of radiation during exposure. This results in improved radiograph quality and safer operating conditions. Tungsten panoramic collimators consist of a stainless steel housing containing two tungsten inserts. Tungsten directional collimators direct the radiation beam from a side port as a 60° conical side throw. All of our collimators can be attached directly to a source guide tube. A wide range of collimators has been developed to meet the variety of applications and techniques used.
We can supply most of the main collimators, or other special collimators can be customized.
High density and strong radiation shielding ability: Tungsten alloy has a high density. Its radiation shielding ability is over 1.7 times that of lead. It performs well in shielding X-rays and γ-rays, effectively reducing radiation leakage and protecting the safety of operators and the surrounding environment.
Non-toxic and eco-friendly: Unlike toxic lead, tungsten alloy is non-toxic, making it safer for humans and the environment.
Good machinability: Tungsten alloy is easy to process. It can be made into parts with uniform thickness and high precision, meeting various size and shape requirements.
Excellent mechanical properties: It has high hardness and can withstand mechanical stress, ensuring stability and durability during use.
High absorption capacity: It has a strong absorption capacity for X-rays and γ-rays, allowing more effective control and guidance of radiation beams.
Industrial Radiographic Testing:
In industrial non-destructive testing, it is used to control the shape and size of the radiation beam. This improves the quality of inspection images, making results clearer and more accurate. It helps detect internal material defects and structural issues.
Medical Radiation Therapy:
It can be used in medical radiation therapy equipment, such as linear accelerators and cyclotrons. Precisely controlling the shape and direction of the radiation beam ensures accurate targeting of tumors. This minimizes damage to surrounding healthy tissues and improves treatment effectiveness.
Weight: 1.75 lb. (0.79 kg)
Dimensions: Length: 1.88 in, Diameter: 1.5 in
Attentuation: Co-60: 0.46 Ir-192: 0.05
Half Value Layers :Ir-192: 4.30 Co-60: 1.12
Beam Size: 60° conical side throw
Weight: 9.5 lb 4.32 kg
Dimensions: Length: 3.5 in, Diameter: 2.5 in
Attentuation: Co-60: 0.17 Ir-192: 0.003
Half Value Layers: Ir-192: 8.30 Co-60: 2.50
Beam Size: 60° conical side throw
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