AN IMPROVEMENT OF ARJUNA 1.0 CONVEYOR SYSTEM FOR 3D IRRADIATION

Saefurrochman Saefurrochman, Agus Tri Purwanto, S. R. Adabiah, Sukaryono Sukaryono, Galih Setiaji, Dwi Handoko Arthanto, Karina Anggraeni, Isti Dian Rachmawati, Agus Dwiatmaja, Wijono Wijono, Elin Nuraini, W. Andriyanti, D. Darsono, Andreas Bimo Putro Adjie
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Abstract

An improved design of the conveyor system of Arjuna 1.0 electron accelerator for 3D object irradiation has been done. The penetration of low energy electrons is less than 1 cm in the surface, causing a challenge for the irradiation process for sterilization of 3D objects. We design a conveyor that can be rotated 360o to irradiate objects evenly. The dimension of this conveyor is 1750 x 600 x 800 mm and the maximum diameter of the object is 7 cm. Based on the Frame Bending Stress analysis to calculate the strength of the conveyor frame, it is shown that the maximum displacement is only 0.029 mm, which is very small so it will cause no disturbance to power transfer from the motor to the conveyor. The normal stress (Smax) is 3.926 MPa and the bending stress for Smax (Mx) and Smax (My), are 2.391 MPa and 3.925 MPa respectively. We also calculate the stress analysis of the 3 mm-thickness of the motor mount and found that the Von-Misses Stress, first, and third Principal Stress are 4.425 MPa, 5.01 MPa, and 1.95 MPa respectively. These results confirm that the design and the material used for the conveyor are safe because the stress is very low than the material’s yield strength which is 207 MPa. The power needed for this conveyor is 0.01724 kW, with a maximum speed is 880 rpm. The new model of 3D conveyor has been constructed and can be implemented to ARJUNA 1.0 to irradiate objects on all its surfaces
改进 Arjuna 1.0 输送系统,用于 3D 辐照
Arjuna 1.0 电子加速器用于三维物体辐照的传送系统的改进设计已经完成。低能电子在物体表面的穿透力小于 1 厘米,这给三维物体的辐照灭菌过程带来了挑战。我们设计了一种可 360 度旋转的传送带,以均匀辐照物体。该传送带的尺寸为 1750 x 600 x 800 毫米,物体的最大直径为 7 厘米。根据框架弯曲应力分析计算传送带框架的强度,结果表明最大位移仅为 0.029 毫米,非常小,因此不会对从电机到传送带的动力传输造成干扰。法向应力(Smax)为 3.926 兆帕,Smax(Mx)和 Smax(My)的弯曲应力分别为 2.391 兆帕和 3.925 兆帕。我们还计算了厚度为 3 毫米的电机支架的应力分析,发现 Von-Misses 应力、第一主应力和第三主应力分别为 4.425 兆帕、5.01 兆帕和 1.95 兆帕。这些结果证实,输送机的设计和所用材料是安全的,因为应力比材料的屈服强度(207 兆帕)非常低。该输送机所需的功率为 0.01724 kW,最高转速为 880 rpm。新的 3D 输送机模型已经制作完成,可以在 ARJUNA 1.0 中实施,对物体的所有表面进行辐照。
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