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Electron linear accelerator system for natural rubber vulcanization

机译:电子线性促进剂系统,用于天然橡胶硫化

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Development of an electron accelerator system, beam diagnostic instruments, an irradiation apparatus and electron beam processing methodology for natural rubber vulcanization is underway at the Plasma and Beam Physics Research Facility, Chiang Mai University, Thailand. The project is carried out with the aims to improve the qualities of natural rubber products. The system consists of a DC thermionic electron gun, 5-cell standing-wave radio-frequency (RF) linear accelerator (linac) with side-coupling cavities and an electron beam irradiation apparatus. This system is used to produce electron beams with an adjustable energy between 0.5 and 4 MeV and a pulse current of 10-100 mA at a pulse repetition rate of 20-400 Hz. An average absorbed dose between 160 and 640 Gy is expected to be archived for 4 MeV electron beam when the accelerator is operated at 400 Hz. The research activities focus firstly on assembling of the accelerator system, study on accelerator properties and electron beam dynamic simulations. The resonant frequency of the RF linac in π/2 operating mode is 2996.82 MHz for the operating temperature of 35 °C. The beam dynamic simulations were conducted by using the code ASTRA. Simulation results suggest that electron beams with an average energy of 4.002 MeV can be obtained when the linac accelerating gradient is 41.7 MV/m. The rms transverse beam size and normalized rms transverse emittance at the linac exit are 0.91 mm and 10.48 π mm·mrad, respectively. This information can then be used as the input data for Monte Carlo simulations to estimate the electron beam penetration depth and dose distribution in the natural rubber latex. The study results from this research will be used to define optimal conditions for natural rubber vulcanization with different electron beam energies and doses. This is very useful for development of future practical industrial accelerator units.
机译:泰国清迈大学等离子和束物理研究设施正在开发用于天然橡胶硫化的电子加速器系统,束诊断仪,辐照设备和电子束处理方法。该项目旨在提高天然橡胶产品的质量。该系统由一个直流热电子枪,一个带有侧面耦合腔的5单元驻波射频(RF)线性加速器(linac)和一个电子束辐照设备组成。该系统用于产生电子束,其能量在0.5和4 MeV之间可调,脉冲电流为10-100 mA,脉冲重复频率为20-400 Hz。当加速器在400Hz下运行时,对于4MeV电子束,预计将记录160至640Gy的平均吸收剂量。研究活动首先集中在加速器系统的组装,加速器特性的研究和电子束动力学模拟。在35°C的工作温度下,π/ 2工作模式下的线性加速器的谐振频率为2996.82 MHz。光束动态仿真是通过使用ASTRA代码进行的。仿真结果表明,当直线加速器的加速梯度为41.7MV / m时,可以获得平均能量为4.002MeV的电子束。直线加速器出口处的均方根横向光束大小和归一化均方根横向发射率分别为0.91mm和10.48πmm·mrad。然后,该信息可用作蒙特卡洛模拟的输入数据,以估算天然胶乳中的电子束穿透深度和剂量分布。这项研究的研究结果将用于定义不同电子束能量和剂量的天然橡胶硫化的最佳条件。这对于未来实用的工业加速器单元的开发非常有用。

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