China TPCEB-500 Low-Energy Self-Shielded Electron Beam System - Efficient Solution from Top Suppliers and Factory
1. Product Overview – TPCEB-500 Electron Beam System
Electron Beam Energy
350–500 keV
Beam Current
0–100 mA / 160 mA
(equivalent to 0–2000 kGy·m/min)
(equivalent to 0–2000 kGy·m/min)
Scanning Width
1400 mm / 1600 mm
Surface Dose Non-Uniformity
≤ 3%
The self-shielded design ensures safe operation while reducing installation complexity and shielding requirements.
2. Application Fields of TPCEB-500 Electron Beam System
The TPCEB-500 low-energy electron beam system is widely used in:
1
Radiation modification of solar-grade EVA films, POF films, and other functional polymer films
2
Radiation modification of textile fabrics and nonwoven materials
3
Radiation pre-vulcanization of tire rubber, polymer films, foam materials, and related products
With its combination of high efficiency, low energy consumption, precise dose control, and industrial reliability, the TPCEB-500 is an ideal electron beam film modification solution for manufacturers seeking advanced material performance and competitive advantages in global markets.
Frequently Asked Questions (FAQ)
What is the electron beam energy range of the TPCEB-500?
The electron beam energy range for the TPCEB-500 system is between 350 and 500 keV.
What is the maximum beam current of the system?
The beam current ranges from 0 to 100 mA or 160 mA, which is equivalent to 0–2000 kGy·m/min.
Is the TPCEB-500 system safe to operate?
Yes, it features a self-shielded design that ensures safe operation while minimizing installation complexity and shielding requirements.
What are the main applications of the TPCEB-500 system?
It is widely used for radiation modification of solar-grade EVA films, POF films, textile fabrics, nonwoven materials, as well as radiation pre-vulcanization of tire rubber and foam materials.
What scanning width does the TPCEB-500 support?
The system offers a flexible scanning width of either 1400 mm or 1600 mm.
Why is the TPCEB-500 ideal for film modification?
It combines high efficiency, low energy consumption, precise dose control (surface dose non-uniformity ≤ 3%), and industrial reliability, giving manufacturers a competitive advantage in global markets.

