Isotope Transport Lead Shielded Box
Isotope Transport Lead Shielded Box
Isotope Transport Lead Shielded Box
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  • Equipped with double sealing rings
  • Shock absorption and anti-collision
  • High-efficiency shielding

Description Of Isotope Transport Lead Shielded Box

The whole Isotope Transport Lead Shielded Box is cast in one piece, with lead equivalent of 20-100 mmPb optional; the double-layer stainless steel shell is impact-resistant and corrosion-resistant, with built-in sealing rings and self-locking handles to ensure that neither gamma nor beta rays leak out during transportation; the forklift opening and shock-absorbing pad at the bottom are suitable for road, rail and air transportation, meet the IAEA TS-R-1 standard, and can be mounted with a dosimeter for real-time monitoring throughout the process.

Features Of Isotope Transport Lead Shielded Box

High density: The whole box is cast with pure lead (≥99.99%), lead equivalent 20–100 mmPb, shielding γ/X-rays, and the external surface dose rate can be reduced to below 0.5 μSv/h.

Composite structure: The lead core is wrapped with stainless steel or engineering plastic, which is both corrosion-resistant and avoids lead exposure. The surface is easy to decontaminate and has a neat appearance.

Safety seal: The screw cap or snap-on design is equipped with a double-channel sealing ring, with a lock hole and a lead seal hole to prevent accidental opening and isotope leakage during transportation.

Shock absorption and collision resistance: The outer shell is roto-molded or a double-layer metal shell, and the internal buffer pad can absorb the impact of falling, meeting the IAEA 1.5 m drop test requirements.

Applications Of Isotope Transport Lead Shielded Box

Hospital Nuclear Medicine Department: Transport diagnostic or therapeutic isotopes such as 99mTc, 131I, 18F-FDG from pharmaceutical factories to hospitals or packaging centers.

Industry and scientific research: Transfer gamma flaw detection sources, calibration sources, and small radioactive sources for experiments to meet the requirements of the "Regulations on the Safe Transportation of Radioactive Materials".

Waste temporary storage: During decommissioning or maintenance, short-lived isotopes are safely transferred from the site to a centralized storage repository.

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