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Development of indigenous insulation material for superconducting magnets and study of its characteristics under influence of intense neutron irradiation

机译:超导磁体的土着绝缘材料的研制及其在激烈中子辐射影响下的特征研究

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Epoxy based glass fiber reinforced composites are the main insulation system for the superconducting magnets of fusion machines. 14MeV neutrons are generated during the DT fusion process, however the energy spectra and flux gets modified to a great extent when they reach the superconducting magnets. Mechanical properties of the GFRP insulation material is reported to degrade up to 30%.As a part of R & D activity, a joint collaboration with IGCAR, Kalpakkam has been established. The indigenous insulation material is subjected to fast neutron fluence of 10~(14) - 10~(19) n/m~2 (E>0.1 MeV) in FBTR and KAMINI Reactor, India. TRIM software has been used to simulate similar kind of damage produced by neutrons by ion irradiation with 5 MeV Al ions and 3 MeV protons. Fluence of the ions was adjusted to get the same dpa. We present the test experiment of neutron irradiation of the composite material (E-glass, S-glass fiber boron free and DGEBA epoxy). The test results of tensile, inter laminar shear and electrical breakdown strength as per ASTM standards, assessment of micro-structure surface degradation before and after irradiation will be presented. MCNP simulations are carried out for neutron flux, dose and damages produced in the insulation material.
机译:环氧基玻璃纤维增​​强复合材料是用于融合机的超导磁体的主要绝缘系统。在DT融合过程中产生14mev中子,然而,当它们到达超导磁体时,能量光谱和磁通在很大程度上被修改。据报道,GFRP绝缘材料的力学性能降低高达30%.AAS研发活动的一部分,与IGCAR,Kalpakkam共同合作。本土绝缘材料对FBTR和Kamini反应器,印度FBTR和Kamini反应器的快速中子流量为10〜(14) - 10〜(19)N / M〜2(E> 0.1 MeV)。修剪软件已被用于模拟中子通过离子照射和3meV质子的离子照射模拟类似的损坏。调整离子的流量以获得相同的DPA。我们介绍了复合材料的中子辐射的测试实验(E-玻璃,S玻璃纤维硼免费和DGEBA环氧树脂)。根据ASTM标准的拉伸,层间剪切和电击穿强度的测试结果,将介绍辐照前后微结构表面降解的微观结构表面劣化。 MCNP模拟用于绝缘材料的中子通量,剂量和损坏。

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