首页> 外文会议>International cryogenic materials conference;ICMC;Cryogenic engineering conference;CEC >FATIGUE-INDUCED ELECTRICAL DEGRADATION OF COMPOSITE HIGH-PURITY/HIGH-STRENGTH ALUMINUM RINGS AT 4 K
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FATIGUE-INDUCED ELECTRICAL DEGRADATION OF COMPOSITE HIGH-PURITY/HIGH-STRENGTH ALUMINUM RINGS AT 4 K

机译:高纯/高强度复合铝环在4 K时的疲劳诱导电降解

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One design scenario for the Anchorage Municipal Light & Power superconducting magnetic energy storage (SMES) system uses Al to thermally stabilize and structurally support the magnet. Composite Al rings were fabricated from high-purity (99.995%) Al and high-strength Al alloy (6061-T6) to simulate the mechanical and electrical characteristics of the stabilizer during fatigue tests in liquid He. To simulate the magnet operating conditions, as the coil is periodically charged and discharged, one test was conducted where a composite ring was subjected to fatigue at 4 K, with the peak hoop stress held constant during the test and the ring's electrical resistance periodically measured at 0 and 4 T. For comparison, a second fatigue test was conducted on a similar ring where peak hoop strain was held constant. In both tests the initial peak strain was 0.21%. In the constant-strain test, the increase in resistivity at 4 T after 4000 fatigue cycles was 40% greater than for the constant-stress test, indicating a significant strengthening of the composite through work-hardening of the high-purity Al. These results, applied to the design of Al-stabilized magnets, allow a substantial reduction in the required quantity of high-purity-Al stabilizer and in the magnet's cost.
机译:安克雷奇市政轻电超导磁能存储(SMES)系统的一种设计方案是使用Al来热稳定磁体并在结构上支撑磁体。复合Al环由高纯度(99.995%)的Al和高强度的铝合金(6061-T6)制成,以模拟稳定剂在液态He中进行疲劳测试时的机械和电气特性。为了模拟磁体的工作条件,随着线​​圈的定期充电和放电,进行了一项测试,该测试使复合环在4 K下经受疲劳,在测试过程中,最大环向应力保持恒定,并且在2000℃下定期测量环的电阻。为了比较,在一个类似的环上进行了第二次疲劳测试,该环的峰值环向应变保持恒定。在这两个测试中,初始峰值应变均为0.21%。在恒应变试验中,经过4000次疲劳循环后,在4 T下的电阻率比恒应力试验大40%,这表明通过高纯度Al的加工硬化,复合材料得到了显着增强。这些结果应用于铝稳定磁体的设计,可以大大减少所需的高纯度铝稳定剂的数量和磁体的成本。

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