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Influence of mechanical losses in AC superconducting coils having composite materials reinforced with Dyneema and glass fibers

机译:含有迪尼玛和玻璃纤维增​​强复合材料的交流超导线圈中机械损耗的影响

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When a Dyneema fiber reinforced plastic (DFRP) is used as a superconducting coil's bobbin, the decrease of the winding tension during cooling down is prevented. Therefore, it is expected that a mechanical loss generated in AC superconducting coils is reduced. The DFRP has the high Young's modulus to the fiber direction, however the modulus to the perpendicular direction is lower than the modulus of the glass fiber reinforced plastic (GFRP), which is generally used as a structural material in superconducting coils. Therefore, a Dyneema and glass fiber reinforced plastic (DGFRP), which was compounded the Dyneema and the glass fibers, was fabricated for the purpose of the intensification of the DFRP, and total losses of the superconducting coils having some kinds of DGFRP bobbins were measured under AC operation. In loss measurements, the coil whose loss was the smallest was the coil having the strongest winding tension at cryogenic temperature, and the coil whose loss was the largest was the coil having the weakest tension. Moreover, comparing with the results of the loss measurement in the coils fabricated with the DFRP bobbin, the losses of the coils having the DGFRP bobbins were slightly large due to the mixture of the Dyneema and the glass fibers. This paper reports the effect of the reduction of the mechanical losses in the coils having the DGFRP bobbins and the comparison with the coils whose bobbins are the DFRP and the GFRP.
机译:当将迪尼玛纤维增强塑料(DFRP)用作超导线圈的线轴时,可以防止冷却过程中绕组张力的降低。因此,期望减少交流超导线圈中产生的机械损耗。 DFRP在纤维方向上的杨氏模量高,但是在垂直方向上的模量低于玻璃纤维增​​强塑料(GFRP)的模量,后者通常用作超导线圈的结构材料。因此,为了强化DFRP,制造了将Dyneema和玻璃纤维复合的Dyneema和玻璃纤维增​​强塑料(DGFRP),并且测量了具有某些DGFRP线轴的超导线圈的总损耗。在交流电操作下。在损耗测量中,损耗最小的线圈是在低温温度下具有最强的绕组张力的线圈,而损耗最大的线圈是具有最弱的张力的线圈。而且,与用DFRP线轴制造的线圈中的损耗测量结果相比,由于Dyneema和玻璃纤维的混合,具有DGFRP线轴的线圈的损耗稍大。本文报道了降低具有DGFRP线轴的线圈的机械损耗的效果,并与采用DFRP和GFRP线轴的线圈进行了比较。

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