Radiation Shielded Syringe Protection is made of high-density tungsten alloy material after a series of high-temperature sintering processes and mechanical processing. Radiation Shielded Syringe Protection can well shield medical staff and patients from gamma rays or beta rays emitted by radioactive sources. Radiation Shielded Syringe Protection has the characteristics of good processing performance, high thermal conductivity, low thermal expansion coefficient, high temperature resistance, wear resistance, corrosion resistance, impact resistance, durability, and environmental protection, and can add fixed locks and lead according to the needs of medical staff. Glass viewing window. Radiation Shielded Syringe Protection can facilitate medical staff to complete injections safely and quickly, and also reduce excess radiation exposure. Radiation Shielded Syringe Protection is a must-have protective product for every radiotherapy department.
The use of highly effective shielding materials such as lead or tungsten alloy with a wall thickness of 2–7 mm attenuates 99mTc 364 keV gamma rays by 86% or below, helping to greatly decrease the dose received by the operator's hands.
Visible Scale: Better injection precision is enhanced with a 2–5 mm lead glass window disguised as an equivalent lead, along with the aid to reduce scale reading difficulty.
Operated with one hand: Snap and quick-twist designs result in a time between 3 seconds and a set exposure time in the space of 3 seconds or less.
Portable: Model tungsten alloy shields eliminate 30 percent of the weight found in older lead shields, thus reducing the fatigue found in the tethered handling of the models.
Standards of primary sterilization: Anodized or spray-coated surfaces become compliant with the standards of sterile technique by the use of cleaning agents of alcohol or the infusion of UV light radiation.
• Nuclear Medicine Department: Radiopharmaceutical (99mTc, 18F, 131I) extraction, transport, and bedside injection.
• Radiopharmacy: Unit dose filling and quality control within the hot room.
Material | WNiFe |
Technique | Pressing, Sintering, Infiltration, Annealing, Rolling |
Shield Thickness | Tungsten(2-2.5mm) |
Volume | 1cc, 3cc, 5cc, 10cc, 20cc |
Purity | 90-99% |
Density | 17.0g/cm3-18.5g/cm3 |
Hardness | 25-28HRC |
Tensile Strength | 580-950 MPa |
Surface | Polished, Oxide, Plating, Brushing, Blackened, |
Standard | ASTM B702,DIN,GB |
Certification | ISO 9001 |
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